
We are the #1 versatile PCB maker in China. For over more than a decade, we have perfected the craft of Blind Vias PCBs as well as HDI PCBs.
If you are seeking a great producer of PCBs from China, you’re right to look us up. At SMTFAB, we give you high-value Blind Vias PCBs at a low price.
We do not fall short on quality, as it is our credo to be the best in the PCB industry.
If you partner with us, your brand will accelerate, because no one does PCBs better than us.
Let us help you with your Blind Vias PCB needs. Call now!
The range of Multilayer Blind Vias PCB expands to more than 10 layers. SMTFAB has the capacity to make up to 40 Layer PCBs, such as some Industrial PCBs or Backplane PCBs.
The best value HDI Blind Vias PCB allows making high-density device designs. HDI PCB is applied in mobile devices. SMTFAB’s HDI Blind Vias PCBs have different fill material types.
An 8 Layer Blind Vias PCB will have enough interconnects. We use Dry Film Resist to minimize the risk of defects during LDI printing. With this method, finer lines are printed precisely.
This product can have solid-filled vias, so that heat management is improved. Our 10 Layer Blind Vias PCB uses copper that is coated with resin in order to make hole quality superb.
With HDMI Blind Vias PCB the main goal is to enrich the multimedia experience of consumers. As such, equipment that has HDMI Blind Vias PCB targets TV PCB, Camera PCB, Audio PCB, etc.
Many customers favor FR4 Blind Vias PCB in large volumes because FR4 material is dependable. Multipurpose, FR4 PCBs can be Flex or Rigid-flex PCBs, with sound thermal quality.
Do you want to know how SMTFAB fabricates its Blind Vias PCB? We present you with a video that shows how the process is done.
Aside from this type of PCB, our facility also produces other Multilayer, High-power, Microwave, and Stretchable PCBs. You can see the proof of our superior PCB producing equipment and process.
We exercise strict quality control, as we conform to UL certification and RoHS standards.
Please get in touch to avail yourself of our Blind Vias PCBs.













| Item | Capability |
| Layer Count | 1-40layers |
| Base Material | KB、Shengyi、ShengyiSF305、FR408、FR408HR、IS410、FR406、GETEK、370HR、IT180A、Rogers4350B、Rogers4000、PTFE Laminates(Rogers series、Taconic series、Arlon series、Nelco series)、Rogers/Taconic/Arlon/Nelco laminate with FR-4 material(including partial Ro4350B hybrid laminating with FR-4) |
| Board Type | Backplane、HDI、High multi-layer 、blind&buried PCB、Embedded Capacitance、Embedded resistance board 、Heavy copper power PCB、Backdrill. |
| Board Thickness | 0.2-5.0mm |
| Copper Thickness | Min. 1/2 OZ, Max. 10 OZ |
| PTH Wall | 25um(1mil) |
| Maximum Board Size | 1100*500mm(43”*19”) |
| Min laser drilling size | 4mil |
| Min. Spacing/Tracing | 2.7mil/2.7mil |
| Solder Mask | Green, Black, Blue, Red, White, Yellow,Purple matte/glossy |
| Surface Treatment | Flash gold(electroplated gold)、ENIG、Hard gold、Flash gold、HASL Lead free、OSP、ENEPIG、Soft gold、Immersion silver、Immersion Tin、ENIG+OSP,ENIG+Gold finger,Flash gold(electroplated gold)+Gold finger,Immersion silver+Gold finger,Immersion Tin+Gold finger. |
| Min. Annular Ring | 3mil |
| Aspect ratio | 10:1(HASL Lead free、HASL Lead、ENIG、Immersion Tin、Immersion silver、ENEPIG);8:1(OSP) |
| Impedance control | ±5ohm(<50ohm), ±10%(≥50ohm) |
| Other Techniques | Blind/Buried Via |
| Gold Fingers | |
| Press Fit | |
| Via in Pad | |
| Electrical Test |
Here there’re many laminate material datasheets, they’re useful and helpful for you, please see them:
| SUPPLIER | PCB LAMINATE | TYPE | MATERIAL DATASHEET | TG | TD | DK(1MHZ) | DK(1GHZ) | DK(10GHZ) |
| KB | KB-6160 | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – |
| KB-6160A | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – | |
| KB-6160C | FR4 | DOWNLOAD | 135 | 314 | 4.7 | – | – | |
| KB-6150 KB-6150C | FR4 | DOWNLOAD | 132 | 305 | 4.6 | – | – | |
| KB-6164 | FR4 | DOWNLOAD | 142 | 330 | 4.8 | – | – | |
| KB-6164F | FR4 | DOWNLOAD | 145 | 340 | 4.8 | – | – | |
| KB-6165F | FR4 | DOWNLOAD | 150 | 346 | 4.8 | – | – | |
| KB-6167F | FR4 | DOWNLOAD | 170 | 349 | 4.8 | – | – | |
| SHENGYI | S1141 | FR4 | DOWNLOAD | 135 | 310 | 4.6 | – | – |
| S1141KF | FR4 | DOWNLOAD | 140 | 350 | 4.7 | – | – | |
| S1000 | FR4 | DOWNLOAD | 155 | 335 | 4.9 | – | – | |
| S1170 | FR4 | DOWNLOAD | 170 | 335 | 4.6 | – | – | |
| S1000-2 | FR4 | DOWNLOAD | 170 | 335 | 4.8 | – | – | |
| S1155 | FR4 | DOWNLOAD | 135 | 370 | 4.7 | – | – | |
| ITEQ | IT-158 | FR4 | DOWNLOAD | 150 | 340 | 4.6-4.8 | – | – |
| IT-180 | FR4 | DOWNLOAD | 180 | 350 | 4.5-4.7 | – | – | |
| TUC | TU-768 | FR4 | DOWNLOAD | 180 | 350 | – | 4.3-4.4 | 4.3 |
| TU-872 | Modified Epoxy | DOWNLOAD | 200 | 340 | – | 3.8-4.0 | 3.8 | |
| ROGERS | RO 3003 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 3 |
| RO 3010 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 10.2 | |
| RO 4003 | Hydrocarbon/Cer | DOWNLOAD | >280 | 425 | – | – | 3.38 | |
| RO 4350B | Hydrocarbon/Cer | DOWNLOAD | >280 | 390 | – | – | 3.48 | |
| RT/duroid 5880 | PTFE/Glass | DOWNLOAD | – | 500 | – | – | 2.2 | |
| ISOLA | Polyclad 370HR | FR4 | DOWNLOAD | 170 | 340 | 4.8-5.1 | – | – |
| FR406-HR | FR4 | DOWNLOAD | 190 | 325 | 3.91 | 3.86 | 3.81 | |
| FR408-HR | FR4 | DOWNLOAD | 200 | 360 | 3.72 | 3.69 | 3.65 | |
| P96 | Polyimide | DOWNLOAD | 260 | 416 | – | 3.78 | 3.73 | |
| Hitachi | MCL-BE- 67G | Modified Epoxy | DOWNLOAD | 140 | 340 | 4.9 | 4.4 | – |
| MCL-E-679F | FR4 | DOWNLOAD | 170 | 350 | 4.2-4.4 | 4.3-4.5 | – | |
| MCL-LX-67Y | Special Laminate | DOWNLOAD | 185-195 | 325-345 | – | 3.4-3.6 | – | |
| Nelco | N4000-13 | Modified Epoxy | DOWNLOAD | 210-240 | 365 | – | 3.7 | 3.6 |
| N4000-13EP | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13EP SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| Taconic | TLX-6 | PTFE | DOWNLOAD | – | – | – | – | 2.65 |
| TLX-7 | PTFE | DOWNLOAD | – | – | – | – | 2.6 | |
| TLX-8 | PTFE | DOWNLOAD | – | – | – | – | 2.55 | |
| TLX-9 | PTFE | DOWNLOAD | – | – | – | – | 2.45 | |
| RF35 | PTFE | DOWNLOAD | <315 | – | 3.5 | – | 3.5 | |
| TLC-27 | PTFE | DOWNLOAD | – | – | – | – | 2.75 | |
| TLC-30 | PTFE | DOWNLOAD | – | – | – | – | 3 | |
| TLC-32 | PTFE | DOWNLOAD | – | – | – | – | 3.2 | |
| Arlon | Arlon 25N | Cer | DOWNLOAD | 260 | – | – | – | 3.38 |
| Arlon 25FR | Cer | DOWNLOAD | 260 | – | – | – | 3.58 | |
| Arlon 33N | Polymide | DOWNLOAD | >250 | 353 | 4 | – | – | |
| Arlon 35N | Polymide | DOWNLOAD | >250 | 363 | 4.2 | – | – | |
| Arlon 85N | Polymide | DOWNLOAD | 250 | 387 | 4.2 | – | – | |
| Stablcor | ST325 | – | DOWNLOAD | Thermal conductivity:75w/m.k(with 1oz copper) | ||||
| ST10 | – | DOWNLOAD | Thermal conductivity:325w/m.k(with 1oz copper) | |||||
| Panasonic | R-1566W | FR4 | DOWNLOAD | 140 | 330 | 4.95 | 4.7 | 4.65 |
| Ventec | VT-901 | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – |
| VT-90H | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – | |
| Bergquist | ht-04503 | – | DOWNLOAD | Thermal conductivity:2.2w/m.k(with 1oz copper) | ||||
Delivery
SMTFAB offers flexible shipping methods for our customers, you may choose from one of the methods below.
1. DHL
DHL offers international express services in over 220 countries.
DHL partners with SMTFAB and offers very competitive rates to customers of SMTFAB.
It normally takes 3-7 business days for the package to be delivered around the world.

2. UPS
UPS gets the facts and figures about the world’s largest package delivery company and one of the leading global providers of specialized transportation and logistics services.
It normally takes 3-7 business days to deliver a package to most of the addresses in the world.

3. TNT
TNT has 56,000 employees in 61 countries.
It takes 4-9 business days to deliver the packages to the hands
of our customers.

4. FedEx
FedEx offers delivery solutions for customers around the world.
It takes 4-7 business days to deliver the packages to the hands
of our customers.

5. Air, Sea/Air, and Sea
If your order is of large volume with SMTFAB, you can also choose
to ship via air, sea/air combined, and sea when necessary.
Please contact your sales representative for shipping solutions.
Note: if you need others, please contact your sales representative for shipping solutions.
On our website you can use the following payment methods:
Telegraphic Transfer(TT): A telegraphic transfer (TT) is an electronic method of transferring funds utilized primarily for overseas wire transactions. It’s very convenient to transfer.
Bank/Wire transfer: To pay by wire transfer using your bank account, you need to visit your nearest bank branch with the wire transfer information. Your payment will be completed 3-5 business days after you have finished the money transfer.
Paypal: Pay easily, fast and secure with PayPal. many other credit and debit cards via PayPal.
Credit Card: You can pay with credit card: Visa, Visa Electron, MasterCard, Maestro.
[contact-form-7 id=”764″ title=”Quick Quote”]
Due to the miniaturization of digital products, Blind Vias PCBs are in great demand. SMTFAB has upped production of High-density and high-frequency boards. With SMTFAB, these Blind Vias PCBs are 100% well-made to satisfy you.
When you need a trustworthy supplier of PCBs, you can turn to SMTFAB. We have refined the production of Blind Vias PCB as well as Microvia PCBs. So, every PCB that comes out of our plant is defect-free.
SMTFAB is also considerate of your needs as an EMS. If you need a huge order, we will make it a possibility. Aside from being the go-to supplier of giant companies domestically, we have customers all over the world. This is why our sales team is trained to focus on your needs.
Whatever type of Blind Vias PCB you require, just tell us. We will accommodate all sorts and types of design requests. SMTFAB will give you too the CAD and CAM reports, which are very much necessary.
For Quality Assurance, you can be sure that our Blind Vias PCBs follow updated rules. As all reputable PCB manufacturers should be, we are ISO 9001 (QMS) and 14001 (environmental standards) compliant.

You will find our payment terms flexible, depending on the type of your order. As well, our easy-to-access payment channels make transactions speedy for you.
So, reduce delays in your business. Call SMTFAB now to order your Blind Vias PCB!
PCBs are the core powerhouse of electronics that connect the electronic components. The components generate the functionality of the electronics. Blind vias PCB is one kind of PCB that is made with particular vias.
You may have questions about vias and its objective. You are in the right place if you want to know about blind vias printed circuit boards. You will find here a discussion and many answers about blind vias PCB and related facts to production.
Go through the article thoroughly to find the things unveiled.
We must first understand what a via is before proceeding to the blind vias PCB. The term “via” refers to the electrical connections through the copper layers of multilayer printed circuit boards. Blind vias are an effective form of vias.
Blind vias are drilled in the PCB, starting from any outer to one or more inner layers. This is referred to as a blind via. However, it does not pass through the opposing outer layer and out the other side. PCBs with blind vias are referred to as blind vias PCBs.

Blind Via With Other Vias On PCB
Blind vias are used to make electrical connections between layers of a PCB. You will find blind vias in HDI PCBs. Besides this, blind vias help to reduce the size of PCBs. Additionally, signal integrity is guaranteed.
Blind vias in blind vias PCBs allow for the connecting of components according to requirements. Unlike through-hole vias, they do not needlessly pass through all layers, even if they are not required to do so in some instances. It provides PCB designers and engineers with a new routing option to choose from.
If you want to know more about PCB vias, the following video is for you:
In electronics, the fundamental idea is that short conductive routes should be used to minimize interference and signal noise to a minimum. Long pathways cause signal interference, which causes the signals to be disrupted. And at this moment, blind vias PCB demonstrate their abilities.
Blind vias are short and used as per needs. They avoid unnecessary length, unlike through-hole vias. This helps to reduce parasitic capacitance. As a straightforward type of path, blind vias ensure and intensify signal integrity.

Blind Vias Ensure Signal Integrity On PCBs
Blind vias also prevent signal degradation and reflections. If the signal is discontinued, it could affect the signal and power integrity. And this will harm the high-speed designs. But, blind vias PCBs prevent the mentioned cons. For this benefit, high-speed signal lines utilize blind vias.
Primarily, four types of PCB blind via fabrication process are used in blind vias PCBs. They are discussed below.
Sequential lamination begins at the very beginning of the PCB layer techniques and proceeds in a clockwise direction. In all products, a very thin laminate is subjected to a series of processes step by step. It is most often used for double-sided printed circuit boards (PCBs).
Blind vias PCBs complete coating on all layers with a sequential process. Drilling, etching, and plating are the last steps in the manufacturing process. It is also a little expensive process.
The sequential blind vias procedure becomes costly as a result of the process complexity.
A photosensitive resin is applied to the core of the printed circuit board (PCB) in the photo-defined process. After this, you need to bring the board to light. The light will help to harden the substrates.
The etching solution is used to remove the material from the photosensitive sheet once it has hardened. The copper is then placed into the holes in the steel.
When utilized in large quantities, photo-defined blind vias PCBs are a cost-effective solution.
The controlled depth process uses drilling techniques to create holes on the PCBs. In contrast to through-hole drilling, the controlled drilling is halted in a specific layer of the blind vias PCB.
It is the most cost-effective method of producing blind vias on printed circuit boards. The regulated depth procedure requires the smallest drill size possible, which is 0.15 mm.
The laser drilling is utilized after finishing the lamination of all internal layers of the PCB. But you have to do this before finishing the outer layers. An advantage of laser drilling is that it could be done together in copper and dielectric materials.

Laser Drilling Is A Cost-Effective Blind VIa Fabrication
It is one of the most cost-effective blind vias PCB processes.
The general design steps for making PCBs follow several gradual tasks. Here are the complete steps to design a blind vias PCB.
Any electronics starts with a diagram. The diagram is the primary design blueprint for the circuit. A schematic diagram determines how the shape will be, how the components will be placed on the board.
Also, other details are described in the schematic diagram. So, you have to plan your blind vias PCB and implement the design in the schematic diagram.
After drawing the diagram, you have to import the schematic capture to your layout design software to design the PCB layout. Based on the diagram, design the basic and a blank layout of the blind vias PCB.
Determine and design the layer stack-ups.
After successfully designing the layout, now the time is to print the final layout into the blind vias PCB board. You have to ensure the proper printing of the layout on the board. You can use different PCB printing technology such as 3D printing, laser printing, or heat-and-pressure printing.
Check on how 3D PCB printing works:
Now, the time is to etch the conductive traces. When using chemical, heat, and pressure printing, you must etch the traces separately after PCB printing. Ferric chloride, Alkaline, sulfuric acid, etc., are used to etch the conductive traces.

Conductive Traces On The PCB
After etching, drill the blind vias on your blind vias PCB.
After successfully etching and via creating, now the time is for placing the components. You need to determine the elements during the schematic drawing. Because the purposes of the PCBs decide which features would be used.
Place the digital and analog components separated. Take utmost care during the soldering process. You also can use press-fit PCB components assembling technology to assemble the parts.
The components assembling is the final step of making the blind vias PCB. After placing the components correctly, your PCB is ready to perform in real-life applications.
You will find the following features on blind vias PCB:

Blind Vias PCB Features More Holes
In typical through-hole vias PCB, through-hole creates unnecessary holes from the surface layer to the bottom layer. But, in the blind vias PCBs, there is no need for extra drilling. For this, matching impedance is adequately sustained, which helps to keep the consistent signal integrity.
Also, the workload is significantly reduced in blind vias PCB, which increases the lifespan of the PCBs.

Blind Vias PCB Ensure More Space
PCB designs consistently reduce the pad’s and via’s size gradually. If the PCB thickness does not comply with reducing proportionally, the reliability of the PCB will be a failure. The blind vias PCB fixes the matter.
Blind vias PCB ensure more spaces for proper wiring. Also, the appropriate spacing provides shielding for the wiring, which significantly increases the electrical performance of the PCB.
Before starting blind vias implementation on your blind vias PCBs, there are things to consider. Because there are cost facts, value for money facts are related to this. So, let’s check the items.
The vias’ pads will not fit if you don’t consider the annular ring size. The size of the pad is critical while drilling vias.

Keeping Sufficient Annular Ring Is Essential
You need to remember the tiniest acceptable drill size based on the PCB board thickness because the mechanical drill has its limit. So, you have to choose the drill size to its limit to drill the hole before being unreliable.
The standard blind via ratio with the mechanical drill is 10:1. That means, if the board is 62 mils thick, the drill will be six mils. If you need extra smaller holes, you can go for micro stacked vias which feature an aspect ratio of 1:1.
Since via is very tiny in length, you must ensure that your blind vias comprise the signal integrity. You have to remove the leftovers of unnecessary metal after drilling from the hole lines.
The designers must consider the route design and the surroundings. Since the routing area extends over the whole board, you must be careful that drilling does not interfere with the routing routes.
Corrosion is the process of oxidation that drives the conductive metal parts of your blind vias PCB to destruction. When the metal is exposed to the environment, it gradually starts a chemical reaction with oxygen.
Due to moisture and water in the open environment, the oxidation accelerated, and the metal corrodes. There are two types of corrosion that might happen in your blind vias PCB traces and vias.
After completing soldering, you will see some leftovers on the boards. These leftovers cause corrosion if not cleaned properly. Also, the older flux materials may include corrosive compounds that might contribute to decay.

Corrosion Is Destructive For PCBs
After the soldering process is completed, removing any chlorine and other solder flux residues is necessary. Any acid that has been used in the soldering process, on the other hand, must be removed as well.
Galvanic and electrolytic corrosion is both electrochemical. Galvanic corrosion occurs when two metals touch on the PCB blind vias. Ionic pollution speeds up deterioration.
When two or more adjacent traces are polluted by electrolytic solution, electrolytic corrosion happens. In this instance, silvers grow. Metal oxides and hydroxides oxidize metal traces contaminated by water.
You can conclude that metal components such as copper and other base metals are the ones that erode the most. So, you must guarantee that the metallic components of your blind vias PCB are protected from corrosion.

Conformal Coating Is One Of The Best Solutions Against Corrosion
Corrosion may be prevented, and it is not an arduous task. One of the most effective ways to avoid corrosion is conformal coating. Surface finishes using gold, silver, tin, and nickel, on the other hand, are an efficient option. All of the remedies described above act as protective barriers against oxidation and corrosion.
Besides these, you can use aerosol spray, and solder masks. Also, the epoxy coating would be another best way to protect your boards from corrosion. All that remains is for you to decide the most appropriate option to use.
EMI refers to Electromagnetic Interference. It does not matter that you follow the best design rules to design your blind vias PCB. Some parts of your PCB will indeed produce EMI. But EMI shielding and filtering can help you to keep the quantity of EMI low.
Following are some effective EMI shielding and filtering that you may use for your PCBs.

Component Shielding Prevents EMI
The shielding technique will prevent the entering of EMI into the circuitry. A Faraday Cage, for example, may be used to encapsulate the board to avoid radiofrequency waves.
The high heating issue is one of the alarming issues in electronics. High heat can harm and damage your blind vias PCB in many ways. They may help to raise interferences, signal distortion, oxidation, and overall failure.
There are many reasons behind introducing the high heat on the PCBs. Following are some of the high-heat causes in PCBs.

High Heat Causes Malfunction To The Blind Vias PCB Parts
There are several effective ways to prevent the rise of high heat. But, these are the combination of various attempts. So, different practical steps may help you reduce the high heat on your blind vias PCBs.

Properly Placed Heatsink Dissipate The High Heat From PCB
Surface finishes are coating the conductive metals of the blind vias PCBs from oxidation and corrosion. The copper area of the blind vias PCBs can quickly oxidize. The surface finishes are one of the most effective preventions against oxidation.
There are different types of surface finishes or surface coatings available. They are mentioned with their basic features as follows.

ENIG Surface Coating On PCB
Among the RoHS compliant surface coatings, immersion silver and immersion tin are also popular. They are cost-effective and efficiently can handle their responsibilities.
You should know the electrical property compliance before choosing PCB material for your blind vias PCB. The material should comply with the range of the following electrical properties.
For choosing the blind vias PCB material, you should keep the following things in mind.

Conductive Copper Foil
The dimensions and position of the conductive trace should be chosen following the features of the blind vias PCB materials. This matching is required for the PCB’s signal strength to be as high as possible. Furthermore, the signal range will be specific. This phenomenon is referred to as impedance matching of the PCB.
The primary purpose of the conductive PCB traces is to carry the signal from the transmitter to the receiver as quickly as possible. Additionally, the signal must be transferred across the travel length of the traces. And it is here that the matching impedance is of the utmost importance.
To ensure that the signal is successfully transmitted, the impedance of the traces must be matched. Because of the distorted signal caused by mismatched impedance, the desired output will not be received.
Grounding is the return path of the current flow to the earth to avoid the unusual current. Grounding is one of the essential parts for the blind vias PCBs, for instance, for the electronics for proper functioning.

A Dedicated Grounding Point Is An Ideal Option For Proper Grounding
There are some basic rules of proper grounding. The rules can be mentioned as follows.
It is essential to catch a reliable, experienced, professional manufacturer to produce the best blind vias PCB.
So, how could you consider a manufacturer perfect among the hundreds of manufacturers?
There are some essential features they must have. Then you can consider them as a perfect manufacturer for your PCB production.
The features mentioned above verify the manufacturer as a great PCB manufacturer.
We hope you got the things about blind vias PCB. Producing efficient blind vias PCBs is the precondition for a profitable business. You must have a concern about this matter. And a great reliable PCB manufacturer can ensure you excellent quality products.
You can get your PCB production from SMTFAB. SMTFAB is one of the leading PCB manufacturers in China. We provide excellent quality blind vias PCB production with the utmost experience and skills.
We are the #1 versatile PCB maker in China. For over more than a decade, we have perfected the craft of Blind Vias PCBs as well as HDI PCBs.
If you are seeking a great producer of PCBs from China, you’re right to look us up. At SMTFAB, we give you high-value Blind Vias PCBs at a low price.
We do not fall short on quality, as it is our credo to be the best in the PCB industry.
If you partner with us, your brand will accelerate, because no one does PCBs better than us.
Let us help you with your Blind Vias PCB needs. Call now!
The range of Multilayer Blind Vias PCB expands to more than 10 layers. SMTFAB has the capacity to make up to 40 Layer PCBs, such as some Industrial PCBs or Backplane PCBs.
The best value HDI Blind Vias PCB allows making high-density device designs. HDI PCB is applied in mobile devices. SMTFAB’s HDI Blind Vias PCBs have different fill material types.
An 8 Layer Blind Vias PCB will have enough interconnects. We use Dry Film Resist to minimize the risk of defects during LDI printing. With this method, finer lines are printed precisely.
This product can have solid-filled vias, so that heat management is improved. Our 10 Layer Blind Vias PCB uses copper that is coated with resin in order to make hole quality superb.
With HDMI Blind Vias PCB the main goal is to enrich the multimedia experience of consumers. As such, equipment that has HDMI Blind Vias PCB targets TV PCB, Camera PCB, Audio PCB, etc.
Many customers favor FR4 Blind Vias PCB in large volumes because FR4 material is dependable. Multipurpose, FR4 PCBs can be Flex or Rigid-flex PCBs, with sound thermal quality.
Do you want to know how SMTFAB fabricates its Blind Vias PCB? We present you with a video that shows how the process is done.
Aside from this type of PCB, our facility also produces other Multilayer, High-power, Microwave, and Stretchable PCBs. You can see the proof of our superior PCB producing equipment and process.
We exercise strict quality control, as we conform to UL certification and RoHS standards.
Please get in touch to avail yourself of our Blind Vias PCBs.













| Item | Capability |
| Layer Count | 1-40layers |
| Base Material | KB、Shengyi、ShengyiSF305、FR408、FR408HR、IS410、FR406、GETEK、370HR、IT180A、Rogers4350B、Rogers4000、PTFE Laminates(Rogers series、Taconic series、Arlon series、Nelco series)、Rogers/Taconic/Arlon/Nelco laminate with FR-4 material(including partial Ro4350B hybrid laminating with FR-4) |
| Board Type | Backplane、HDI、High multi-layer 、blind&buried PCB、Embedded Capacitance、Embedded resistance board 、Heavy copper power PCB、Backdrill. |
| Board Thickness | 0.2-5.0mm |
| Copper Thickness | Min. 1/2 OZ, Max. 10 OZ |
| PTH Wall | 25um(1mil) |
| Maximum Board Size | 1100*500mm(43”*19”) |
| Min laser drilling size | 4mil |
| Min. Spacing/Tracing | 2.7mil/2.7mil |
| Solder Mask | Green, Black, Blue, Red, White, Yellow,Purple matte/glossy |
| Surface Treatment | Flash gold(electroplated gold)、ENIG、Hard gold、Flash gold、HASL Lead free、OSP、ENEPIG、Soft gold、Immersion silver、Immersion Tin、ENIG+OSP,ENIG+Gold finger,Flash gold(electroplated gold)+Gold finger,Immersion silver+Gold finger,Immersion Tin+Gold finger. |
| Min. Annular Ring | 3mil |
| Aspect ratio | 10:1(HASL Lead free、HASL Lead、ENIG、Immersion Tin、Immersion silver、ENEPIG);8:1(OSP) |
| Impedance control | ±5ohm(<50ohm), ±10%(≥50ohm) |
| Other Techniques | Blind/Buried Via |
| Gold Fingers | |
| Press Fit | |
| Via in Pad | |
| Electrical Test |
Here there’re many laminate material datasheets, they’re useful and helpful for you, please see them:
| SUPPLIER | PCB LAMINATE | TYPE | MATERIAL DATASHEET | TG | TD | DK(1MHZ) | DK(1GHZ) | DK(10GHZ) |
| KB | KB-6160 | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – |
| KB-6160A | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – | |
| KB-6160C | FR4 | DOWNLOAD | 135 | 314 | 4.7 | – | – | |
| KB-6150 KB-6150C | FR4 | DOWNLOAD | 132 | 305 | 4.6 | – | – | |
| KB-6164 | FR4 | DOWNLOAD | 142 | 330 | 4.8 | – | – | |
| KB-6164F | FR4 | DOWNLOAD | 145 | 340 | 4.8 | – | – | |
| KB-6165F | FR4 | DOWNLOAD | 150 | 346 | 4.8 | – | – | |
| KB-6167F | FR4 | DOWNLOAD | 170 | 349 | 4.8 | – | – | |
| SHENGYI | S1141 | FR4 | DOWNLOAD | 135 | 310 | 4.6 | – | – |
| S1141KF | FR4 | DOWNLOAD | 140 | 350 | 4.7 | – | – | |
| S1000 | FR4 | DOWNLOAD | 155 | 335 | 4.9 | – | – | |
| S1170 | FR4 | DOWNLOAD | 170 | 335 | 4.6 | – | – | |
| S1000-2 | FR4 | DOWNLOAD | 170 | 335 | 4.8 | – | – | |
| S1155 | FR4 | DOWNLOAD | 135 | 370 | 4.7 | – | – | |
| ITEQ | IT-158 | FR4 | DOWNLOAD | 150 | 340 | 4.6-4.8 | – | – |
| IT-180 | FR4 | DOWNLOAD | 180 | 350 | 4.5-4.7 | – | – | |
| TUC | TU-768 | FR4 | DOWNLOAD | 180 | 350 | – | 4.3-4.4 | 4.3 |
| TU-872 | Modified Epoxy | DOWNLOAD | 200 | 340 | – | 3.8-4.0 | 3.8 | |
| ROGERS | RO 3003 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 3 |
| RO 3010 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 10.2 | |
| RO 4003 | Hydrocarbon/Cer | DOWNLOAD | >280 | 425 | – | – | 3.38 | |
| RO 4350B | Hydrocarbon/Cer | DOWNLOAD | >280 | 390 | – | – | 3.48 | |
| RT/duroid 5880 | PTFE/Glass | DOWNLOAD | – | 500 | – | – | 2.2 | |
| ISOLA | Polyclad 370HR | FR4 | DOWNLOAD | 170 | 340 | 4.8-5.1 | – | – |
| FR406-HR | FR4 | DOWNLOAD | 190 | 325 | 3.91 | 3.86 | 3.81 | |
| FR408-HR | FR4 | DOWNLOAD | 200 | 360 | 3.72 | 3.69 | 3.65 | |
| P96 | Polyimide | DOWNLOAD | 260 | 416 | – | 3.78 | 3.73 | |
| Hitachi | MCL-BE- 67G | Modified Epoxy | DOWNLOAD | 140 | 340 | 4.9 | 4.4 | – |
| MCL-E-679F | FR4 | DOWNLOAD | 170 | 350 | 4.2-4.4 | 4.3-4.5 | – | |
| MCL-LX-67Y | Special Laminate | DOWNLOAD | 185-195 | 325-345 | – | 3.4-3.6 | – | |
| Nelco | N4000-13 | Modified Epoxy | DOWNLOAD | 210-240 | 365 | – | 3.7 | 3.6 |
| N4000-13EP | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13EP SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| Taconic | TLX-6 | PTFE | DOWNLOAD | – | – | – | – | 2.65 |
| TLX-7 | PTFE | DOWNLOAD | – | – | – | – | 2.6 | |
| TLX-8 | PTFE | DOWNLOAD | – | – | – | – | 2.55 | |
| TLX-9 | PTFE | DOWNLOAD | – | – | – | – | 2.45 | |
| RF35 | PTFE | DOWNLOAD | <315 | – | 3.5 | – | 3.5 | |
| TLC-27 | PTFE | DOWNLOAD | – | – | – | – | 2.75 | |
| TLC-30 | PTFE | DOWNLOAD | – | – | – | – | 3 | |
| TLC-32 | PTFE | DOWNLOAD | – | – | – | – | 3.2 | |
| Arlon | Arlon 25N | Cer | DOWNLOAD | 260 | – | – | – | 3.38 |
| Arlon 25FR | Cer | DOWNLOAD | 260 | – | – | – | 3.58 | |
| Arlon 33N | Polymide | DOWNLOAD | >250 | 353 | 4 | – | – | |
| Arlon 35N | Polymide | DOWNLOAD | >250 | 363 | 4.2 | – | – | |
| Arlon 85N | Polymide | DOWNLOAD | 250 | 387 | 4.2 | – | – | |
| Stablcor | ST325 | – | DOWNLOAD | Thermal conductivity:75w/m.k(with 1oz copper) | ||||
| ST10 | – | DOWNLOAD | Thermal conductivity:325w/m.k(with 1oz copper) | |||||
| Panasonic | R-1566W | FR4 | DOWNLOAD | 140 | 330 | 4.95 | 4.7 | 4.65 |
| Ventec | VT-901 | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – |
| VT-90H | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – | |
| Bergquist | ht-04503 | – | DOWNLOAD | Thermal conductivity:2.2w/m.k(with 1oz copper) | ||||
Delivery
SMTFAB offers flexible shipping methods for our customers, you may choose from one of the methods below.
1. DHL
DHL offers international express services in over 220 countries.
DHL partners with SMTFAB and offers very competitive rates to customers of SMTFAB.
It normally takes 3-7 business days for the package to be delivered around the world.

2. UPS
UPS gets the facts and figures about the world’s largest package delivery company and one of the leading global providers of specialized transportation and logistics services.
It normally takes 3-7 business days to deliver a package to most of the addresses in the world.

3. TNT
TNT has 56,000 employees in 61 countries.
It takes 4-9 business days to deliver the packages to the hands
of our customers.

4. FedEx
FedEx offers delivery solutions for customers around the world.
It takes 4-7 business days to deliver the packages to the hands
of our customers.

5. Air, Sea/Air, and Sea
If your order is of large volume with SMTFAB, you can also choose
to ship via air, sea/air combined, and sea when necessary.
Please contact your sales representative for shipping solutions.
Note: if you need others, please contact your sales representative for shipping solutions.
On our website you can use the following payment methods:
Telegraphic Transfer(TT): A telegraphic transfer (TT) is an electronic method of transferring funds utilized primarily for overseas wire transactions. It’s very convenient to transfer.
Bank/Wire transfer: To pay by wire transfer using your bank account, you need to visit your nearest bank branch with the wire transfer information. Your payment will be completed 3-5 business days after you have finished the money transfer.
Paypal: Pay easily, fast and secure with PayPal. many other credit and debit cards via PayPal.
Credit Card: You can pay with credit card: Visa, Visa Electron, MasterCard, Maestro.
[contact-form-7 id=”764″ title=”Quick Quote”]
Due to the miniaturization of digital products, Blind Vias PCBs are in great demand. SMTFAB has upped production of High-density and high-frequency boards. With SMTFAB, these Blind Vias PCBs are 100% well-made to satisfy you.
When you need a trustworthy supplier of PCBs, you can turn to SMTFAB. We have refined the production of Blind Vias PCB as well as Microvia PCBs. So, every PCB that comes out of our plant is defect-free.
SMTFAB is also considerate of your needs as an EMS. If you need a huge order, we will make it a possibility. Aside from being the go-to supplier of giant companies domestically, we have customers all over the world. This is why our sales team is trained to focus on your needs.
Whatever type of Blind Vias PCB you require, just tell us. We will accommodate all sorts and types of design requests. SMTFAB will give you too the CAD and CAM reports, which are very much necessary.
For Quality Assurance, you can be sure that our Blind Vias PCBs follow updated rules. As all reputable PCB manufacturers should be, we are ISO 9001 (QMS) and 14001 (environmental standards) compliant.

You will find our payment terms flexible, depending on the type of your order. As well, our easy-to-access payment channels make transactions speedy for you.
So, reduce delays in your business. Call SMTFAB now to order your Blind Vias PCB!
PCBs are the core powerhouse of electronics that connect the electronic components. The components generate the functionality of the electronics. Blind vias PCB is one kind of PCB that is made with particular vias.
You may have questions about vias and its objective. You are in the right place if you want to know about blind vias printed circuit boards. You will find here a discussion and many answers about blind vias PCB and related facts to production.
Go through the article thoroughly to find the things unveiled.
We must first understand what a via is before proceeding to the blind vias PCB. The term “via” refers to the electrical connections through the copper layers of multilayer printed circuit boards. Blind vias are an effective form of vias.
Blind vias are drilled in the PCB, starting from any outer to one or more inner layers. This is referred to as a blind via. However, it does not pass through the opposing outer layer and out the other side. PCBs with blind vias are referred to as blind vias PCBs.

Blind Via With Other Vias On PCB
Blind vias are used to make electrical connections between layers of a PCB. You will find blind vias in HDI PCBs. Besides this, blind vias help to reduce the size of PCBs. Additionally, signal integrity is guaranteed.
Blind vias in blind vias PCBs allow for the connecting of components according to requirements. Unlike through-hole vias, they do not needlessly pass through all layers, even if they are not required to do so in some instances. It provides PCB designers and engineers with a new routing option to choose from.
If you want to know more about PCB vias, the following video is for you:
In electronics, the fundamental idea is that short conductive routes should be used to minimize interference and signal noise to a minimum. Long pathways cause signal interference, which causes the signals to be disrupted. And at this moment, blind vias PCB demonstrate their abilities.
Blind vias are short and used as per needs. They avoid unnecessary length, unlike through-hole vias. This helps to reduce parasitic capacitance. As a straightforward type of path, blind vias ensure and intensify signal integrity.

Blind Vias Ensure Signal Integrity On PCBs
Blind vias also prevent signal degradation and reflections. If the signal is discontinued, it could affect the signal and power integrity. And this will harm the high-speed designs. But, blind vias PCBs prevent the mentioned cons. For this benefit, high-speed signal lines utilize blind vias.
Primarily, four types of PCB blind via fabrication process are used in blind vias PCBs. They are discussed below.
Sequential lamination begins at the very beginning of the PCB layer techniques and proceeds in a clockwise direction. In all products, a very thin laminate is subjected to a series of processes step by step. It is most often used for double-sided printed circuit boards (PCBs).
Blind vias PCBs complete coating on all layers with a sequential process. Drilling, etching, and plating are the last steps in the manufacturing process. It is also a little expensive process.
The sequential blind vias procedure becomes costly as a result of the process complexity.
A photosensitive resin is applied to the core of the printed circuit board (PCB) in the photo-defined process. After this, you need to bring the board to light. The light will help to harden the substrates.
The etching solution is used to remove the material from the photosensitive sheet once it has hardened. The copper is then placed into the holes in the steel.
When utilized in large quantities, photo-defined blind vias PCBs are a cost-effective solution.
The controlled depth process uses drilling techniques to create holes on the PCBs. In contrast to through-hole drilling, the controlled drilling is halted in a specific layer of the blind vias PCB.
It is the most cost-effective method of producing blind vias on printed circuit boards. The regulated depth procedure requires the smallest drill size possible, which is 0.15 mm.
The laser drilling is utilized after finishing the lamination of all internal layers of the PCB. But you have to do this before finishing the outer layers. An advantage of laser drilling is that it could be done together in copper and dielectric materials.

Laser Drilling Is A Cost-Effective Blind VIa Fabrication
It is one of the most cost-effective blind vias PCB processes.
The general design steps for making PCBs follow several gradual tasks. Here are the complete steps to design a blind vias PCB.
Any electronics starts with a diagram. The diagram is the primary design blueprint for the circuit. A schematic diagram determines how the shape will be, how the components will be placed on the board.
Also, other details are described in the schematic diagram. So, you have to plan your blind vias PCB and implement the design in the schematic diagram.
After drawing the diagram, you have to import the schematic capture to your layout design software to design the PCB layout. Based on the diagram, design the basic and a blank layout of the blind vias PCB.
Determine and design the layer stack-ups.
After successfully designing the layout, now the time is to print the final layout into the blind vias PCB board. You have to ensure the proper printing of the layout on the board. You can use different PCB printing technology such as 3D printing, laser printing, or heat-and-pressure printing.
Check on how 3D PCB printing works:
Now, the time is to etch the conductive traces. When using chemical, heat, and pressure printing, you must etch the traces separately after PCB printing. Ferric chloride, Alkaline, sulfuric acid, etc., are used to etch the conductive traces.

Conductive Traces On The PCB
After etching, drill the blind vias on your blind vias PCB.
After successfully etching and via creating, now the time is for placing the components. You need to determine the elements during the schematic drawing. Because the purposes of the PCBs decide which features would be used.
Place the digital and analog components separated. Take utmost care during the soldering process. You also can use press-fit PCB components assembling technology to assemble the parts.
The components assembling is the final step of making the blind vias PCB. After placing the components correctly, your PCB is ready to perform in real-life applications.
You will find the following features on blind vias PCB:

Blind Vias PCB Features More Holes
In typical through-hole vias PCB, through-hole creates unnecessary holes from the surface layer to the bottom layer. But, in the blind vias PCBs, there is no need for extra drilling. For this, matching impedance is adequately sustained, which helps to keep the consistent signal integrity.
Also, the workload is significantly reduced in blind vias PCB, which increases the lifespan of the PCBs.

Blind Vias PCB Ensure More Space
PCB designs consistently reduce the pad’s and via’s size gradually. If the PCB thickness does not comply with reducing proportionally, the reliability of the PCB will be a failure. The blind vias PCB fixes the matter.
Blind vias PCB ensure more spaces for proper wiring. Also, the appropriate spacing provides shielding for the wiring, which significantly increases the electrical performance of the PCB.
Before starting blind vias implementation on your blind vias PCBs, there are things to consider. Because there are cost facts, value for money facts are related to this. So, let’s check the items.
The vias’ pads will not fit if you don’t consider the annular ring size. The size of the pad is critical while drilling vias.

Keeping Sufficient Annular Ring Is Essential
You need to remember the tiniest acceptable drill size based on the PCB board thickness because the mechanical drill has its limit. So, you have to choose the drill size to its limit to drill the hole before being unreliable.
The standard blind via ratio with the mechanical drill is 10:1. That means, if the board is 62 mils thick, the drill will be six mils. If you need extra smaller holes, you can go for micro stacked vias which feature an aspect ratio of 1:1.
Since via is very tiny in length, you must ensure that your blind vias comprise the signal integrity. You have to remove the leftovers of unnecessary metal after drilling from the hole lines.
The designers must consider the route design and the surroundings. Since the routing area extends over the whole board, you must be careful that drilling does not interfere with the routing routes.
Corrosion is the process of oxidation that drives the conductive metal parts of your blind vias PCB to destruction. When the metal is exposed to the environment, it gradually starts a chemical reaction with oxygen.
Due to moisture and water in the open environment, the oxidation accelerated, and the metal corrodes. There are two types of corrosion that might happen in your blind vias PCB traces and vias.
After completing soldering, you will see some leftovers on the boards. These leftovers cause corrosion if not cleaned properly. Also, the older flux materials may include corrosive compounds that might contribute to decay.

Corrosion Is Destructive For PCBs
After the soldering process is completed, removing any chlorine and other solder flux residues is necessary. Any acid that has been used in the soldering process, on the other hand, must be removed as well.
Galvanic and electrolytic corrosion is both electrochemical. Galvanic corrosion occurs when two metals touch on the PCB blind vias. Ionic pollution speeds up deterioration.
When two or more adjacent traces are polluted by electrolytic solution, electrolytic corrosion happens. In this instance, silvers grow. Metal oxides and hydroxides oxidize metal traces contaminated by water.
You can conclude that metal components such as copper and other base metals are the ones that erode the most. So, you must guarantee that the metallic components of your blind vias PCB are protected from corrosion.

Conformal Coating Is One Of The Best Solutions Against Corrosion
Corrosion may be prevented, and it is not an arduous task. One of the most effective ways to avoid corrosion is conformal coating. Surface finishes using gold, silver, tin, and nickel, on the other hand, are an efficient option. All of the remedies described above act as protective barriers against oxidation and corrosion.
Besides these, you can use aerosol spray, and solder masks. Also, the epoxy coating would be another best way to protect your boards from corrosion. All that remains is for you to decide the most appropriate option to use.
EMI refers to Electromagnetic Interference. It does not matter that you follow the best design rules to design your blind vias PCB. Some parts of your PCB will indeed produce EMI. But EMI shielding and filtering can help you to keep the quantity of EMI low.
Following are some effective EMI shielding and filtering that you may use for your PCBs.

Component Shielding Prevents EMI
The shielding technique will prevent the entering of EMI into the circuitry. A Faraday Cage, for example, may be used to encapsulate the board to avoid radiofrequency waves.
The high heating issue is one of the alarming issues in electronics. High heat can harm and damage your blind vias PCB in many ways. They may help to raise interferences, signal distortion, oxidation, and overall failure.
There are many reasons behind introducing the high heat on the PCBs. Following are some of the high-heat causes in PCBs.

High Heat Causes Malfunction To The Blind Vias PCB Parts
There are several effective ways to prevent the rise of high heat. But, these are the combination of various attempts. So, different practical steps may help you reduce the high heat on your blind vias PCBs.

Properly Placed Heatsink Dissipate The High Heat From PCB
Surface finishes are coating the conductive metals of the blind vias PCBs from oxidation and corrosion. The copper area of the blind vias PCBs can quickly oxidize. The surface finishes are one of the most effective preventions against oxidation.
There are different types of surface finishes or surface coatings available. They are mentioned with their basic features as follows.

ENIG Surface Coating On PCB
Among the RoHS compliant surface coatings, immersion silver and immersion tin are also popular. They are cost-effective and efficiently can handle their responsibilities.
You should know the electrical property compliance before choosing PCB material for your blind vias PCB. The material should comply with the range of the following electrical properties.
For choosing the blind vias PCB material, you should keep the following things in mind.

Conductive Copper Foil
The dimensions and position of the conductive trace should be chosen following the features of the blind vias PCB materials. This matching is required for the PCB’s signal strength to be as high as possible. Furthermore, the signal range will be specific. This phenomenon is referred to as impedance matching of the PCB.
The primary purpose of the conductive PCB traces is to carry the signal from the transmitter to the receiver as quickly as possible. Additionally, the signal must be transferred across the travel length of the traces. And it is here that the matching impedance is of the utmost importance.
To ensure that the signal is successfully transmitted, the impedance of the traces must be matched. Because of the distorted signal caused by mismatched impedance, the desired output will not be received.
Grounding is the return path of the current flow to the earth to avoid the unusual current. Grounding is one of the essential parts for the blind vias PCBs, for instance, for the electronics for proper functioning.

A Dedicated Grounding Point Is An Ideal Option For Proper Grounding
There are some basic rules of proper grounding. The rules can be mentioned as follows.
It is essential to catch a reliable, experienced, professional manufacturer to produce the best blind vias PCB.
So, how could you consider a manufacturer perfect among the hundreds of manufacturers?
There are some essential features they must have. Then you can consider them as a perfect manufacturer for your PCB production.
The features mentioned above verify the manufacturer as a great PCB manufacturer.
We hope you got the things about blind vias PCB. Producing efficient blind vias PCBs is the precondition for a profitable business. You must have a concern about this matter. And a great reliable PCB manufacturer can ensure you excellent quality products.
You can get your PCB production from SMTFAB. SMTFAB is one of the leading PCB manufacturers in China. We provide excellent quality blind vias PCB production with the utmost experience and skills.
We are the #1 versatile PCB maker in China. For over more than a decade, we have perfected the craft of Blind Vias PCBs as well as HDI PCBs.
We are the #1 versatile PCB maker in China. For over more than a decade, we have perfected the craft of Blind Vias PCBs as well as HDI PCBs.
We are the #1 versatile PCB maker in China. For over more than a decade, we have perfected the craft of Blind Vias PCBs as well as HDI PCBs.
We are the #1 versatile PCB maker in China. For over more than a decade, we have perfected the craft of Blind Vias PCBs as well as HDI PCBs.
We are the #1 versatile PCB maker in China. For over more than a decade, we have perfected the craft of Blind Vias PCBs as well as HDI PCBs.
We are the #1 versatile PCB maker in China. For over more than a decade, we have perfected the craft of Blind Vias PCBs as well as HDI PCBs.
If you are seeking a great producer of PCBs from China, you’re right to look us up. At SMTFAB, we give you high-value Blind Vias PCBs at a low price.
We do not fall short on quality, as it is our credo to be the best in the PCB industry.
If you partner with us, your brand will accelerate, because no one does PCBs better than us.
Let us help you with your Blind Vias PCB needs. Call now!
If you are seeking a great producer of PCBs from China, you’re right to look us up. At SMTFAB, we give you high-value Blind Vias PCBs at a low price.
We do not fall short on quality, as it is our credo to be the best in the PCB industry.
If you partner with us, your brand will accelerate, because no one does PCBs better than us.
Let us help you with your Blind Vias PCB needs. Call now!
If you are seeking a great producer of PCBs from China, you’re right to look us up. At SMTFAB, we give you high-value Blind Vias PCBs at a low price.
We do not fall short on quality, as it is our credo to be the best in the PCB industry.
If you partner with us, your brand will accelerate, because no one does PCBs better than us.
Let us help you with your Blind Vias PCB needs. Call now!
If you are seeking a great producer of PCBs from China, you’re right to look us up. At SMTFAB, we give you high-value Blind Vias PCBs at a low price.
We do not fall short on quality, as it is our credo to be the best in the PCB industry.
If you partner with us, your brand will accelerate, because no one does PCBs better than us.
Let us help you with your Blind Vias PCB needs. Call now!
If you are seeking a great producer of PCBs from China, you’re right to look us up. At SMTFAB, we give you high-value Blind Vias PCBs at a low price.
We do not fall short on quality, as it is our credo to be the best in the PCB industry.
If you partner with us, your brand will accelerate, because no one does PCBs better than us.
Let us help you with your Blind Vias PCB needs. Call now!
If you are seeking a great producer of PCBs from China, you’re right to look us up. At SMTFAB, we give you high-value Blind Vias PCBs at a low price.
We do not fall short on quality, as it is our credo to be the best in the PCB industry.
If you partner with us, your brand will accelerate, because no one does PCBs better than us.
Let us help you with your Blind Vias PCB needs. Call now!
The range of Multilayer Blind Vias PCB expands to more than 10 layers. SMTFAB has the capacity to make up to 40 Layer PCBs, such as some Industrial PCBs or Backplane PCBs.
The best value HDI Blind Vias PCB allows making high-density device designs. HDI PCB is applied in mobile devices. SMTFAB’s HDI Blind Vias PCBs have different fill material types.
An 8 Layer Blind Vias PCB will have enough interconnects. We use Dry Film Resist to minimize the risk of defects during LDI printing. With this method, finer lines are printed precisely.
This product can have solid-filled vias, so that heat management is improved. Our 10 Layer Blind Vias PCB uses copper that is coated with resin in order to make hole quality superb.
With HDMI Blind Vias PCB the main goal is to enrich the multimedia experience of consumers. As such, equipment that has HDMI Blind Vias PCB targets TV PCB, Camera PCB, Audio PCB, etc.
Many customers favor FR4 Blind Vias PCB in large volumes because FR4 material is dependable. Multipurpose, FR4 PCBs can be Flex or Rigid-flex PCBs, with sound thermal quality.
The range of Multilayer Blind Vias PCB expands to more than 10 layers. SMTFAB has the capacity to make up to 40 Layer PCBs, such as some Industrial PCBs or Backplane PCBs.
The best value HDI Blind Vias PCB allows making high-density device designs. HDI PCB is applied in mobile devices. SMTFAB’s HDI Blind Vias PCBs have different fill material types.
An 8 Layer Blind Vias PCB will have enough interconnects. We use Dry Film Resist to minimize the risk of defects during LDI printing. With this method, finer lines are printed precisely.
This product can have solid-filled vias, so that heat management is improved. Our 10 Layer Blind Vias PCB uses copper that is coated with resin in order to make hole quality superb.
With HDMI Blind Vias PCB the main goal is to enrich the multimedia experience of consumers. As such, equipment that has HDMI Blind Vias PCB targets TV PCB, Camera PCB, Audio PCB, etc.
Many customers favor FR4 Blind Vias PCB in large volumes because FR4 material is dependable. Multipurpose, FR4 PCBs can be Flex or Rigid-flex PCBs, with sound thermal quality.
The range of Multilayer Blind Vias PCB expands to more than 10 layers. SMTFAB has the capacity to make up to 40 Layer PCBs, such as some Industrial PCBs or Backplane PCBs.
The best value HDI Blind Vias PCB allows making high-density device designs. HDI PCB is applied in mobile devices. SMTFAB’s HDI Blind Vias PCBs have different fill material types.
An 8 Layer Blind Vias PCB will have enough interconnects. We use Dry Film Resist to minimize the risk of defects during LDI printing. With this method, finer lines are printed precisely.
This product can have solid-filled vias, so that heat management is improved. Our 10 Layer Blind Vias PCB uses copper that is coated with resin in order to make hole quality superb.
With HDMI Blind Vias PCB the main goal is to enrich the multimedia experience of consumers. As such, equipment that has HDMI Blind Vias PCB targets TV PCB, Camera PCB, Audio PCB, etc.
Many customers favor FR4 Blind Vias PCB in large volumes because FR4 material is dependable. Multipurpose, FR4 PCBs can be Flex or Rigid-flex PCBs, with sound thermal quality.
The range of Multilayer Blind Vias PCB expands to more than 10 layers. SMTFAB has the capacity to make up to 40 Layer PCBs, such as some Industrial PCBs or Backplane PCBs.
The range of Multilayer Blind Vias PCB expands to more than 10 layers. SMTFAB has the capacity to make up to 40 Layer PCBs, such as some Industrial PCBs or Backplane PCBs.
The range of Multilayer Blind Vias PCB expands to more than 10 layers. SMTFAB has the capacity to make up to 40 Layer PCBs, such as some Industrial PCBs or Backplane PCBs.
The range of Multilayer Blind Vias PCB expands to more than 10 layers. SMTFAB has the capacity to make up to 40 Layer PCBs, such as some Industrial PCBs or Backplane PCBs.
The best value HDI Blind Vias PCB allows making high-density device designs. HDI PCB is applied in mobile devices. SMTFAB’s HDI Blind Vias PCBs have different fill material types.
The best value HDI Blind Vias PCB allows making high-density device designs. HDI PCB is applied in mobile devices. SMTFAB’s HDI Blind Vias PCBs have different fill material types.
The best value HDI Blind Vias PCB allows making high-density device designs. HDI PCB is applied in mobile devices. SMTFAB’s HDI Blind Vias PCBs have different fill material types.
The best value HDI Blind Vias PCB allows making high-density device designs. HDI PCB is applied in mobile devices. SMTFAB’s HDI Blind Vias PCBs have different fill material types.
An 8 Layer Blind Vias PCB will have enough interconnects. We use Dry Film Resist to minimize the risk of defects during LDI printing. With this method, finer lines are printed precisely.
An 8 Layer Blind Vias PCB will have enough interconnects. We use Dry Film Resist to minimize the risk of defects during LDI printing. With this method, finer lines are printed precisely.
An 8 Layer Blind Vias PCB will have enough interconnects. We use Dry Film Resist to minimize the risk of defects during LDI printing. With this method, finer lines are printed precisely.
An 8 Layer Blind Vias PCB will have enough interconnects. We use Dry Film Resist to minimize the risk of defects during LDI printing. With this method, finer lines are printed precisely.
This product can have solid-filled vias, so that heat management is improved. Our 10 Layer Blind Vias PCB uses copper that is coated with resin in order to make hole quality superb.
This product can have solid-filled vias, so that heat management is improved. Our 10 Layer Blind Vias PCB uses copper that is coated with resin in order to make hole quality superb.
This product can have solid-filled vias, so that heat management is improved. Our 10 Layer Blind Vias PCB uses copper that is coated with resin in order to make hole quality superb.
This product can have solid-filled vias, so that heat management is improved. Our 10 Layer Blind Vias PCB uses copper that is coated with resin in order to make hole quality superb.
With HDMI Blind Vias PCB the main goal is to enrich the multimedia experience of consumers. As such, equipment that has HDMI Blind Vias PCB targets TV PCB, Camera PCB, Audio PCB, etc.
With HDMI Blind Vias PCB the main goal is to enrich the multimedia experience of consumers. As such, equipment that has HDMI Blind Vias PCB targets TV PCB, Camera PCB, Audio PCB, etc.
With HDMI Blind Vias PCB the main goal is to enrich the multimedia experience of consumers. As such, equipment that has HDMI Blind Vias PCB targets TV PCB, Camera PCB, Audio PCB, etc.
With HDMI Blind Vias PCB the main goal is to enrich the multimedia experience of consumers. As such, equipment that has HDMI Blind Vias PCB targets TV PCB, Camera PCB, Audio PCB, etc.
Many customers favor FR4 Blind Vias PCB in large volumes because FR4 material is dependable. Multipurpose, FR4 PCBs can be Flex or Rigid-flex PCBs, with sound thermal quality.
Many customers favor FR4 Blind Vias PCB in large volumes because FR4 material is dependable. Multipurpose, FR4 PCBs can be Flex or Rigid-flex PCBs, with sound thermal quality.
Many customers favor FR4 Blind Vias PCB in large volumes because FR4 material is dependable. Multipurpose, FR4 PCBs can be Flex or Rigid-flex PCBs, with sound thermal quality.
Many customers favor FR4 Blind Vias PCB in large volumes because FR4 material is dependable. Multipurpose, FR4 PCBs can be Flex or Rigid-flex PCBs, with sound thermal quality.
Do you want to know how SMTFAB fabricates its Blind Vias PCB? We present you with a video that shows how the process is done.
Aside from this type of PCB, our facility also produces other Multilayer, High-power, Microwave, and Stretchable PCBs. You can see the proof of our superior PCB producing equipment and process.
We exercise strict quality control, as we conform to UL certification and RoHS standards.
Please get in touch to avail yourself of our Blind Vias PCBs.
Do you want to know how SMTFAB fabricates its Blind Vias PCB? We present you with a video that shows how the process is done.
Aside from this type of PCB, our facility also produces other Multilayer, High-power, Microwave, and Stretchable PCBs. You can see the proof of our superior PCB producing equipment and process.
We exercise strict quality control, as we conform to UL certification and RoHS standards.
Please get in touch to avail yourself of our Blind Vias PCBs.
Do you want to know how SMTFAB fabricates its Blind Vias PCB? We present you with a video that shows how the process is done.
Aside from this type of PCB, our facility also produces other Multilayer, High-power, Microwave, and Stretchable PCBs. You can see the proof of our superior PCB producing equipment and process.
We exercise strict quality control, as we conform to UL certification and RoHS standards.
Please get in touch to avail yourself of our Blind Vias PCBs.
Do you want to know how SMTFAB fabricates its Blind Vias PCB? We present you with a video that shows how the process is done.
Aside from this type of PCB, our facility also produces other Multilayer, High-power, Microwave, and Stretchable PCBs. You can see the proof of our superior PCB producing equipment and process.
We exercise strict quality control, as we conform to UL certification and RoHS standards.
Please get in touch to avail yourself of our Blind Vias PCBs.
Do you want to know how SMTFAB fabricates its Blind Vias PCB? We present you with a video that shows how the process is done.
Aside from this type of PCB, our facility also produces other Multilayer, High-power, Microwave, and Stretchable PCBs. You can see the proof of our superior PCB producing equipment and process.
We exercise strict quality control, as we conform to UL certification and RoHS standards.
Please get in touch to avail yourself of our Blind Vias PCBs.












































| Item | Capability |
| Layer Count | 1-40layers |
| Base Material | KB、Shengyi、ShengyiSF305、FR408、FR408HR、IS410、FR406、GETEK、370HR、IT180A、Rogers4350B、Rogers4000、PTFE Laminates(Rogers series、Taconic series、Arlon series、Nelco series)、Rogers/Taconic/Arlon/Nelco laminate with FR-4 material(including partial Ro4350B hybrid laminating with FR-4) |
| Board Type | Backplane、HDI、High multi-layer 、blind&buried PCB、Embedded Capacitance、Embedded resistance board 、Heavy copper power PCB、Backdrill. |
| Board Thickness | 0.2-5.0mm |
| Copper Thickness | Min. 1/2 OZ, Max. 10 OZ |
| PTH Wall | 25um(1mil) |
| Maximum Board Size | 1100*500mm(43”*19”) |
| Min laser drilling size | 4mil |
| Min. Spacing/Tracing | 2.7mil/2.7mil |
| Solder Mask | Green, Black, Blue, Red, White, Yellow,Purple matte/glossy |
| Surface Treatment | Flash gold(electroplated gold)、ENIG、Hard gold、Flash gold、HASL Lead free、OSP、ENEPIG、Soft gold、Immersion silver、Immersion Tin、ENIG+OSP,ENIG+Gold finger,Flash gold(electroplated gold)+Gold finger,Immersion silver+Gold finger,Immersion Tin+Gold finger. |
| Min. Annular Ring | 3mil |
| Aspect ratio | 10:1(HASL Lead free、HASL Lead、ENIG、Immersion Tin、Immersion silver、ENEPIG);8:1(OSP) |
| Impedance control | ±5ohm(<50ohm), ±10%(≥50ohm) |
| Other Techniques | Blind/Buried Via |
| Gold Fingers | |
| Press Fit | |
| Via in Pad | |
| Electrical Test |
Here there’re many laminate material datasheets, they’re useful and helpful for you, please see them:
| SUPPLIER | PCB LAMINATE | TYPE | MATERIAL DATASHEET | TG | TD | DK(1MHZ) | DK(1GHZ) | DK(10GHZ) |
| KB | KB-6160 | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – |
| KB-6160A | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – | |
| KB-6160C | FR4 | DOWNLOAD | 135 | 314 | 4.7 | – | – | |
| KB-6150 KB-6150C | FR4 | DOWNLOAD | 132 | 305 | 4.6 | – | – | |
| KB-6164 | FR4 | DOWNLOAD | 142 | 330 | 4.8 | – | – | |
| KB-6164F | FR4 | DOWNLOAD | 145 | 340 | 4.8 | – | – | |
| KB-6165F | FR4 | DOWNLOAD | 150 | 346 | 4.8 | – | – | |
| KB-6167F | FR4 | DOWNLOAD | 170 | 349 | 4.8 | – | – | |
| SHENGYI | S1141 | FR4 | DOWNLOAD | 135 | 310 | 4.6 | – | – |
| S1141KF | FR4 | DOWNLOAD | 140 | 350 | 4.7 | – | – | |
| S1000 | FR4 | DOWNLOAD | 155 | 335 | 4.9 | – | – | |
| S1170 | FR4 | DOWNLOAD | 170 | 335 | 4.6 | – | – | |
| S1000-2 | FR4 | DOWNLOAD | 170 | 335 | 4.8 | – | – | |
| S1155 | FR4 | DOWNLOAD | 135 | 370 | 4.7 | – | – | |
| ITEQ | IT-158 | FR4 | DOWNLOAD | 150 | 340 | 4.6-4.8 | – | – |
| IT-180 | FR4 | DOWNLOAD | 180 | 350 | 4.5-4.7 | – | – | |
| TUC | TU-768 | FR4 | DOWNLOAD | 180 | 350 | – | 4.3-4.4 | 4.3 |
| TU-872 | Modified Epoxy | DOWNLOAD | 200 | 340 | – | 3.8-4.0 | 3.8 | |
| ROGERS | RO 3003 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 3 |
| RO 3010 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 10.2 | |
| RO 4003 | Hydrocarbon/Cer | DOWNLOAD | >280 | 425 | – | – | 3.38 | |
| RO 4350B | Hydrocarbon/Cer | DOWNLOAD | >280 | 390 | – | – | 3.48 | |
| RT/duroid 5880 | PTFE/Glass | DOWNLOAD | – | 500 | – | – | 2.2 | |
| ISOLA | Polyclad 370HR | FR4 | DOWNLOAD | 170 | 340 | 4.8-5.1 | – | – |
| FR406-HR | FR4 | DOWNLOAD | 190 | 325 | 3.91 | 3.86 | 3.81 | |
| FR408-HR | FR4 | DOWNLOAD | 200 | 360 | 3.72 | 3.69 | 3.65 | |
| P96 | Polyimide | DOWNLOAD | 260 | 416 | – | 3.78 | 3.73 | |
| Hitachi | MCL-BE- 67G | Modified Epoxy | DOWNLOAD | 140 | 340 | 4.9 | 4.4 | – |
| MCL-E-679F | FR4 | DOWNLOAD | 170 | 350 | 4.2-4.4 | 4.3-4.5 | – | |
| MCL-LX-67Y | Special Laminate | DOWNLOAD | 185-195 | 325-345 | – | 3.4-3.6 | – | |
| Nelco | N4000-13 | Modified Epoxy | DOWNLOAD | 210-240 | 365 | – | 3.7 | 3.6 |
| N4000-13EP | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13EP SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| Taconic | TLX-6 | PTFE | DOWNLOAD | – | – | – | – | 2.65 |
| TLX-7 | PTFE | DOWNLOAD | – | – | – | – | 2.6 | |
| TLX-8 | PTFE | DOWNLOAD | – | – | – | – | 2.55 | |
| TLX-9 | PTFE | DOWNLOAD | – | – | – | – | 2.45 | |
| RF35 | PTFE | DOWNLOAD | <315 | – | 3.5 | – | 3.5 | |
| TLC-27 | PTFE | DOWNLOAD | – | – | – | – | 2.75 | |
| TLC-30 | PTFE | DOWNLOAD | – | – | – | – | 3 | |
| TLC-32 | PTFE | DOWNLOAD | – | – | – | – | 3.2 | |
| Arlon | Arlon 25N | Cer | DOWNLOAD | 260 | – | – | – | 3.38 |
| Arlon 25FR | Cer | DOWNLOAD | 260 | – | – | – | 3.58 | |
| Arlon 33N | Polymide | DOWNLOAD | >250 | 353 | 4 | – | – | |
| Arlon 35N | Polymide | DOWNLOAD | >250 | 363 | 4.2 | – | – | |
| Arlon 85N | Polymide | DOWNLOAD | 250 | 387 | 4.2 | – | – | |
| Stablcor | ST325 | – | DOWNLOAD | Thermal conductivity:75w/m.k(with 1oz copper) | ||||
| ST10 | – | DOWNLOAD | Thermal conductivity:325w/m.k(with 1oz copper) | |||||
| Panasonic | R-1566W | FR4 | DOWNLOAD | 140 | 330 | 4.95 | 4.7 | 4.65 |
| Ventec | VT-901 | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – |
| VT-90H | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – | |
| Bergquist | ht-04503 | – | DOWNLOAD | Thermal conductivity:2.2w/m.k(with 1oz copper) | ||||
Delivery
SMTFAB offers flexible shipping methods for our customers, you may choose from one of the methods below.
1. DHL
DHL offers international express services in over 220 countries.
DHL partners with SMTFAB and offers very competitive rates to customers of SMTFAB.
It normally takes 3-7 business days for the package to be delivered around the world.

2. UPS
UPS gets the facts and figures about the world’s largest package delivery company and one of the leading global providers of specialized transportation and logistics services.
It normally takes 3-7 business days to deliver a package to most of the addresses in the world.

3. TNT
TNT has 56,000 employees in 61 countries.
It takes 4-9 business days to deliver the packages to the hands
of our customers.

4. FedEx
FedEx offers delivery solutions for customers around the world.
It takes 4-7 business days to deliver the packages to the hands
of our customers.

5. Air, Sea/Air, and Sea
If your order is of large volume with SMTFAB, you can also choose
to ship via air, sea/air combined, and sea when necessary.
Please contact your sales representative for shipping solutions.
Note: if you need others, please contact your sales representative for shipping solutions.
On our website you can use the following payment methods:
Telegraphic Transfer(TT): A telegraphic transfer (TT) is an electronic method of transferring funds utilized primarily for overseas wire transactions. It’s very convenient to transfer.
Bank/Wire transfer: To pay by wire transfer using your bank account, you need to visit your nearest bank branch with the wire transfer information. Your payment will be completed 3-5 business days after you have finished the money transfer.
Paypal: Pay easily, fast and secure with PayPal. many other credit and debit cards via PayPal.
Credit Card: You can pay with credit card: Visa, Visa Electron, MasterCard, Maestro.
[contact-form-7 id=”764″ title=”Quick Quote”]





| Item | Capability |
| Layer Count | 1-40layers |
| Base Material | KB、Shengyi、ShengyiSF305、FR408、FR408HR、IS410、FR406、GETEK、370HR、IT180A、Rogers4350B、Rogers4000、PTFE Laminates(Rogers series、Taconic series、Arlon series、Nelco series)、Rogers/Taconic/Arlon/Nelco laminate with FR-4 material(including partial Ro4350B hybrid laminating with FR-4) |
| Board Type | Backplane、HDI、High multi-layer 、blind&buried PCB、Embedded Capacitance、Embedded resistance board 、Heavy copper power PCB、Backdrill. |
| Board Thickness | 0.2-5.0mm |
| Copper Thickness | Min. 1/2 OZ, Max. 10 OZ |
| PTH Wall | 25um(1mil) |
| Maximum Board Size | 1100*500mm(43”*19”) |
| Min laser drilling size | 4mil |
| Min. Spacing/Tracing | 2.7mil/2.7mil |
| Solder Mask | Green, Black, Blue, Red, White, Yellow,Purple matte/glossy |
| Surface Treatment | Flash gold(electroplated gold)、ENIG、Hard gold、Flash gold、HASL Lead free、OSP、ENEPIG、Soft gold、Immersion silver、Immersion Tin、ENIG+OSP,ENIG+Gold finger,Flash gold(electroplated gold)+Gold finger,Immersion silver+Gold finger,Immersion Tin+Gold finger. |
| Min. Annular Ring | 3mil |
| Aspect ratio | 10:1(HASL Lead free、HASL Lead、ENIG、Immersion Tin、Immersion silver、ENEPIG);8:1(OSP) |
| Impedance control | ±5ohm(<50ohm), ±10%(≥50ohm) |
| Other Techniques | Blind/Buried Via |
| Gold Fingers | |
| Press Fit | |
| Via in Pad | |
| Electrical Test |
Here there’re many laminate material datasheets, they’re useful and helpful for you, please see them:
| SUPPLIER | PCB LAMINATE | TYPE | MATERIAL DATASHEET | TG | TD | DK(1MHZ) | DK(1GHZ) | DK(10GHZ) |
| KB | KB-6160 | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – |
| KB-6160A | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – | |
| KB-6160C | FR4 | DOWNLOAD | 135 | 314 | 4.7 | – | – | |
| KB-6150 KB-6150C | FR4 | DOWNLOAD | 132 | 305 | 4.6 | – | – | |
| KB-6164 | FR4 | DOWNLOAD | 142 | 330 | 4.8 | – | – | |
| KB-6164F | FR4 | DOWNLOAD | 145 | 340 | 4.8 | – | – | |
| KB-6165F | FR4 | DOWNLOAD | 150 | 346 | 4.8 | – | – | |
| KB-6167F | FR4 | DOWNLOAD | 170 | 349 | 4.8 | – | – | |
| SHENGYI | S1141 | FR4 | DOWNLOAD | 135 | 310 | 4.6 | – | – |
| S1141KF | FR4 | DOWNLOAD | 140 | 350 | 4.7 | – | – | |
| S1000 | FR4 | DOWNLOAD | 155 | 335 | 4.9 | – | – | |
| S1170 | FR4 | DOWNLOAD | 170 | 335 | 4.6 | – | – | |
| S1000-2 | FR4 | DOWNLOAD | 170 | 335 | 4.8 | – | – | |
| S1155 | FR4 | DOWNLOAD | 135 | 370 | 4.7 | – | – | |
| ITEQ | IT-158 | FR4 | DOWNLOAD | 150 | 340 | 4.6-4.8 | – | – |
| IT-180 | FR4 | DOWNLOAD | 180 | 350 | 4.5-4.7 | – | – | |
| TUC | TU-768 | FR4 | DOWNLOAD | 180 | 350 | – | 4.3-4.4 | 4.3 |
| TU-872 | Modified Epoxy | DOWNLOAD | 200 | 340 | – | 3.8-4.0 | 3.8 | |
| ROGERS | RO 3003 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 3 |
| RO 3010 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 10.2 | |
| RO 4003 | Hydrocarbon/Cer | DOWNLOAD | >280 | 425 | – | – | 3.38 | |
| RO 4350B | Hydrocarbon/Cer | DOWNLOAD | >280 | 390 | – | – | 3.48 | |
| RT/duroid 5880 | PTFE/Glass | DOWNLOAD | – | 500 | – | – | 2.2 | |
| ISOLA | Polyclad 370HR | FR4 | DOWNLOAD | 170 | 340 | 4.8-5.1 | – | – |
| FR406-HR | FR4 | DOWNLOAD | 190 | 325 | 3.91 | 3.86 | 3.81 | |
| FR408-HR | FR4 | DOWNLOAD | 200 | 360 | 3.72 | 3.69 | 3.65 | |
| P96 | Polyimide | DOWNLOAD | 260 | 416 | – | 3.78 | 3.73 | |
| Hitachi | MCL-BE- 67G | Modified Epoxy | DOWNLOAD | 140 | 340 | 4.9 | 4.4 | – |
| MCL-E-679F | FR4 | DOWNLOAD | 170 | 350 | 4.2-4.4 | 4.3-4.5 | – | |
| MCL-LX-67Y | Special Laminate | DOWNLOAD | 185-195 | 325-345 | – | 3.4-3.6 | – | |
| Nelco | N4000-13 | Modified Epoxy | DOWNLOAD | 210-240 | 365 | – | 3.7 | 3.6 |
| N4000-13EP | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13EP SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| Taconic | TLX-6 | PTFE | DOWNLOAD | – | – | – | – | 2.65 |
| TLX-7 | PTFE | DOWNLOAD | – | – | – | – | 2.6 | |
| TLX-8 | PTFE | DOWNLOAD | – | – | – | – | 2.55 | |
| TLX-9 | PTFE | DOWNLOAD | – | – | – | – | 2.45 | |
| RF35 | PTFE | DOWNLOAD | <315 | – | 3.5 | – | 3.5 | |
| TLC-27 | PTFE | DOWNLOAD | – | – | – | – | 2.75 | |
| TLC-30 | PTFE | DOWNLOAD | – | – | – | – | 3 | |
| TLC-32 | PTFE | DOWNLOAD | – | – | – | – | 3.2 | |
| Arlon | Arlon 25N | Cer | DOWNLOAD | 260 | – | – | – | 3.38 |
| Arlon 25FR | Cer | DOWNLOAD | 260 | – | – | – | 3.58 | |
| Arlon 33N | Polymide | DOWNLOAD | >250 | 353 | 4 | – | – | |
| Arlon 35N | Polymide | DOWNLOAD | >250 | 363 | 4.2 | – | – | |
| Arlon 85N | Polymide | DOWNLOAD | 250 | 387 | 4.2 | – | – | |
| Stablcor | ST325 | – | DOWNLOAD | Thermal conductivity:75w/m.k(with 1oz copper) | ||||
| ST10 | – | DOWNLOAD | Thermal conductivity:325w/m.k(with 1oz copper) | |||||
| Panasonic | R-1566W | FR4 | DOWNLOAD | 140 | 330 | 4.95 | 4.7 | 4.65 |
| Ventec | VT-901 | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – |
| VT-90H | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – | |
| Bergquist | ht-04503 | – | DOWNLOAD | Thermal conductivity:2.2w/m.k(with 1oz copper) | ||||
Delivery
SMTFAB offers flexible shipping methods for our customers, you may choose from one of the methods below.
1. DHL
DHL offers international express services in over 220 countries.
DHL partners with SMTFAB and offers very competitive rates to customers of SMTFAB.
It normally takes 3-7 business days for the package to be delivered around the world.

2. UPS
UPS gets the facts and figures about the world’s largest package delivery company and one of the leading global providers of specialized transportation and logistics services.
It normally takes 3-7 business days to deliver a package to most of the addresses in the world.

3. TNT
TNT has 56,000 employees in 61 countries.
It takes 4-9 business days to deliver the packages to the hands
of our customers.

4. FedEx
FedEx offers delivery solutions for customers around the world.
It takes 4-7 business days to deliver the packages to the hands
of our customers.

5. Air, Sea/Air, and Sea
If your order is of large volume with SMTFAB, you can also choose
to ship via air, sea/air combined, and sea when necessary.
Please contact your sales representative for shipping solutions.
Note: if you need others, please contact your sales representative for shipping solutions.
On our website you can use the following payment methods:
Telegraphic Transfer(TT): A telegraphic transfer (TT) is an electronic method of transferring funds utilized primarily for overseas wire transactions. It’s very convenient to transfer.
Bank/Wire transfer: To pay by wire transfer using your bank account, you need to visit your nearest bank branch with the wire transfer information. Your payment will be completed 3-5 business days after you have finished the money transfer.
Paypal: Pay easily, fast and secure with PayPal. many other credit and debit cards via PayPal.
Credit Card: You can pay with credit card: Visa, Visa Electron, MasterCard, Maestro.
[contact-form-7 id=”764″ title=”Quick Quote”]





| Item | Capability |
| Layer Count | 1-40layers |
| Base Material | KB、Shengyi、ShengyiSF305、FR408、FR408HR、IS410、FR406、GETEK、370HR、IT180A、Rogers4350B、Rogers4000、PTFE Laminates(Rogers series、Taconic series、Arlon series、Nelco series)、Rogers/Taconic/Arlon/Nelco laminate with FR-4 material(including partial Ro4350B hybrid laminating with FR-4) |
| Board Type | Backplane、HDI、High multi-layer 、blind&buried PCB、Embedded Capacitance、Embedded resistance board 、Heavy copper power PCB、Backdrill. |
| Board Thickness | 0.2-5.0mm |
| Copper Thickness | Min. 1/2 OZ, Max. 10 OZ |
| PTH Wall | 25um(1mil) |
| Maximum Board Size | 1100*500mm(43”*19”) |
| Min laser drilling size | 4mil |
| Min. Spacing/Tracing | 2.7mil/2.7mil |
| Solder Mask | Green, Black, Blue, Red, White, Yellow,Purple matte/glossy |
| Surface Treatment | Flash gold(electroplated gold)、ENIG、Hard gold、Flash gold、HASL Lead free、OSP、ENEPIG、Soft gold、Immersion silver、Immersion Tin、ENIG+OSP,ENIG+Gold finger,Flash gold(electroplated gold)+Gold finger,Immersion silver+Gold finger,Immersion Tin+Gold finger. |
| Min. Annular Ring | 3mil |
| Aspect ratio | 10:1(HASL Lead free、HASL Lead、ENIG、Immersion Tin、Immersion silver、ENEPIG);8:1(OSP) |
| Impedance control | ±5ohm(<50ohm), ±10%(≥50ohm) |
| Other Techniques | Blind/Buried Via |
| Gold Fingers | |
| Press Fit | |
| Via in Pad | |
| Electrical Test |
Here there’re many laminate material datasheets, they’re useful and helpful for you, please see them:
| SUPPLIER | PCB LAMINATE | TYPE | MATERIAL DATASHEET | TG | TD | DK(1MHZ) | DK(1GHZ) | DK(10GHZ) |
| KB | KB-6160 | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – |
| KB-6160A | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – | |
| KB-6160C | FR4 | DOWNLOAD | 135 | 314 | 4.7 | – | – | |
| KB-6150 KB-6150C | FR4 | DOWNLOAD | 132 | 305 | 4.6 | – | – | |
| KB-6164 | FR4 | DOWNLOAD | 142 | 330 | 4.8 | – | – | |
| KB-6164F | FR4 | DOWNLOAD | 145 | 340 | 4.8 | – | – | |
| KB-6165F | FR4 | DOWNLOAD | 150 | 346 | 4.8 | – | – | |
| KB-6167F | FR4 | DOWNLOAD | 170 | 349 | 4.8 | – | – | |
| SHENGYI | S1141 | FR4 | DOWNLOAD | 135 | 310 | 4.6 | – | – |
| S1141KF | FR4 | DOWNLOAD | 140 | 350 | 4.7 | – | – | |
| S1000 | FR4 | DOWNLOAD | 155 | 335 | 4.9 | – | – | |
| S1170 | FR4 | DOWNLOAD | 170 | 335 | 4.6 | – | – | |
| S1000-2 | FR4 | DOWNLOAD | 170 | 335 | 4.8 | – | – | |
| S1155 | FR4 | DOWNLOAD | 135 | 370 | 4.7 | – | – | |
| ITEQ | IT-158 | FR4 | DOWNLOAD | 150 | 340 | 4.6-4.8 | – | – |
| IT-180 | FR4 | DOWNLOAD | 180 | 350 | 4.5-4.7 | – | – | |
| TUC | TU-768 | FR4 | DOWNLOAD | 180 | 350 | – | 4.3-4.4 | 4.3 |
| TU-872 | Modified Epoxy | DOWNLOAD | 200 | 340 | – | 3.8-4.0 | 3.8 | |
| ROGERS | RO 3003 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 3 |
| RO 3010 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 10.2 | |
| RO 4003 | Hydrocarbon/Cer | DOWNLOAD | >280 | 425 | – | – | 3.38 | |
| RO 4350B | Hydrocarbon/Cer | DOWNLOAD | >280 | 390 | – | – | 3.48 | |
| RT/duroid 5880 | PTFE/Glass | DOWNLOAD | – | 500 | – | – | 2.2 | |
| ISOLA | Polyclad 370HR | FR4 | DOWNLOAD | 170 | 340 | 4.8-5.1 | – | – |
| FR406-HR | FR4 | DOWNLOAD | 190 | 325 | 3.91 | 3.86 | 3.81 | |
| FR408-HR | FR4 | DOWNLOAD | 200 | 360 | 3.72 | 3.69 | 3.65 | |
| P96 | Polyimide | DOWNLOAD | 260 | 416 | – | 3.78 | 3.73 | |
| Hitachi | MCL-BE- 67G | Modified Epoxy | DOWNLOAD | 140 | 340 | 4.9 | 4.4 | – |
| MCL-E-679F | FR4 | DOWNLOAD | 170 | 350 | 4.2-4.4 | 4.3-4.5 | – | |
| MCL-LX-67Y | Special Laminate | DOWNLOAD | 185-195 | 325-345 | – | 3.4-3.6 | – | |
| Nelco | N4000-13 | Modified Epoxy | DOWNLOAD | 210-240 | 365 | – | 3.7 | 3.6 |
| N4000-13EP | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13EP SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| Taconic | TLX-6 | PTFE | DOWNLOAD | – | – | – | – | 2.65 |
| TLX-7 | PTFE | DOWNLOAD | – | – | – | – | 2.6 | |
| TLX-8 | PTFE | DOWNLOAD | – | – | – | – | 2.55 | |
| TLX-9 | PTFE | DOWNLOAD | – | – | – | – | 2.45 | |
| RF35 | PTFE | DOWNLOAD | <315 | – | 3.5 | – | 3.5 | |
| TLC-27 | PTFE | DOWNLOAD | – | – | – | – | 2.75 | |
| TLC-30 | PTFE | DOWNLOAD | – | – | – | – | 3 | |
| TLC-32 | PTFE | DOWNLOAD | – | – | – | – | 3.2 | |
| Arlon | Arlon 25N | Cer | DOWNLOAD | 260 | – | – | – | 3.38 |
| Arlon 25FR | Cer | DOWNLOAD | 260 | – | – | – | 3.58 | |
| Arlon 33N | Polymide | DOWNLOAD | >250 | 353 | 4 | – | – | |
| Arlon 35N | Polymide | DOWNLOAD | >250 | 363 | 4.2 | – | – | |
| Arlon 85N | Polymide | DOWNLOAD | 250 | 387 | 4.2 | – | – | |
| Stablcor | ST325 | – | DOWNLOAD | Thermal conductivity:75w/m.k(with 1oz copper) | ||||
| ST10 | – | DOWNLOAD | Thermal conductivity:325w/m.k(with 1oz copper) | |||||
| Panasonic | R-1566W | FR4 | DOWNLOAD | 140 | 330 | 4.95 | 4.7 | 4.65 |
| Ventec | VT-901 | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – |
| VT-90H | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – | |
| Bergquist | ht-04503 | – | DOWNLOAD | Thermal conductivity:2.2w/m.k(with 1oz copper) | ||||
Delivery
SMTFAB offers flexible shipping methods for our customers, you may choose from one of the methods below.
1. DHL
DHL offers international express services in over 220 countries.
DHL partners with SMTFAB and offers very competitive rates to customers of SMTFAB.
It normally takes 3-7 business days for the package to be delivered around the world.

2. UPS
UPS gets the facts and figures about the world’s largest package delivery company and one of the leading global providers of specialized transportation and logistics services.
It normally takes 3-7 business days to deliver a package to most of the addresses in the world.

3. TNT
TNT has 56,000 employees in 61 countries.
It takes 4-9 business days to deliver the packages to the hands
of our customers.

4. FedEx
FedEx offers delivery solutions for customers around the world.
It takes 4-7 business days to deliver the packages to the hands
of our customers.

5. Air, Sea/Air, and Sea
If your order is of large volume with SMTFAB, you can also choose
to ship via air, sea/air combined, and sea when necessary.
Please contact your sales representative for shipping solutions.
Note: if you need others, please contact your sales representative for shipping solutions.
On our website you can use the following payment methods:
Telegraphic Transfer(TT): A telegraphic transfer (TT) is an electronic method of transferring funds utilized primarily for overseas wire transactions. It’s very convenient to transfer.
Bank/Wire transfer: To pay by wire transfer using your bank account, you need to visit your nearest bank branch with the wire transfer information. Your payment will be completed 3-5 business days after you have finished the money transfer.
Paypal: Pay easily, fast and secure with PayPal. many other credit and debit cards via PayPal.
Credit Card: You can pay with credit card: Visa, Visa Electron, MasterCard, Maestro.
[contact-form-7 id=”764″ title=”Quick Quote”]





| Item | Capability |
| Layer Count | 1-40layers |
| Base Material | KB、Shengyi、ShengyiSF305、FR408、FR408HR、IS410、FR406、GETEK、370HR、IT180A、Rogers4350B、Rogers4000、PTFE Laminates(Rogers series、Taconic series、Arlon series、Nelco series)、Rogers/Taconic/Arlon/Nelco laminate with FR-4 material(including partial Ro4350B hybrid laminating with FR-4) |
| Board Type | Backplane、HDI、High multi-layer 、blind&buried PCB、Embedded Capacitance、Embedded resistance board 、Heavy copper power PCB、Backdrill. |
| Board Thickness | 0.2-5.0mm |
| Copper Thickness | Min. 1/2 OZ, Max. 10 OZ |
| PTH Wall | 25um(1mil) |
| Maximum Board Size | 1100*500mm(43”*19”) |
| Min laser drilling size | 4mil |
| Min. Spacing/Tracing | 2.7mil/2.7mil |
| Solder Mask | Green, Black, Blue, Red, White, Yellow,Purple matte/glossy |
| Surface Treatment | Flash gold(electroplated gold)、ENIG、Hard gold、Flash gold、HASL Lead free、OSP、ENEPIG、Soft gold、Immersion silver、Immersion Tin、ENIG+OSP,ENIG+Gold finger,Flash gold(electroplated gold)+Gold finger,Immersion silver+Gold finger,Immersion Tin+Gold finger. |
| Min. Annular Ring | 3mil |
| Aspect ratio | 10:1(HASL Lead free、HASL Lead、ENIG、Immersion Tin、Immersion silver、ENEPIG);8:1(OSP) |
| Impedance control | ±5ohm(<50ohm), ±10%(≥50ohm) |
| Other Techniques | Blind/Buried Via |
| Gold Fingers | |
| Press Fit | |
| Via in Pad | |
| Electrical Test |
Here there’re many laminate material datasheets, they’re useful and helpful for you, please see them:
| SUPPLIER | PCB LAMINATE | TYPE | MATERIAL DATASHEET | TG | TD | DK(1MHZ) | DK(1GHZ) | DK(10GHZ) |
| KB | KB-6160 | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – |
| KB-6160A | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – | |
| KB-6160C | FR4 | DOWNLOAD | 135 | 314 | 4.7 | – | – | |
| KB-6150 KB-6150C | FR4 | DOWNLOAD | 132 | 305 | 4.6 | – | – | |
| KB-6164 | FR4 | DOWNLOAD | 142 | 330 | 4.8 | – | – | |
| KB-6164F | FR4 | DOWNLOAD | 145 | 340 | 4.8 | – | – | |
| KB-6165F | FR4 | DOWNLOAD | 150 | 346 | 4.8 | – | – | |
| KB-6167F | FR4 | DOWNLOAD | 170 | 349 | 4.8 | – | – | |
| SHENGYI | S1141 | FR4 | DOWNLOAD | 135 | 310 | 4.6 | – | – |
| S1141KF | FR4 | DOWNLOAD | 140 | 350 | 4.7 | – | – | |
| S1000 | FR4 | DOWNLOAD | 155 | 335 | 4.9 | – | – | |
| S1170 | FR4 | DOWNLOAD | 170 | 335 | 4.6 | – | – | |
| S1000-2 | FR4 | DOWNLOAD | 170 | 335 | 4.8 | – | – | |
| S1155 | FR4 | DOWNLOAD | 135 | 370 | 4.7 | – | – | |
| ITEQ | IT-158 | FR4 | DOWNLOAD | 150 | 340 | 4.6-4.8 | – | – |
| IT-180 | FR4 | DOWNLOAD | 180 | 350 | 4.5-4.7 | – | – | |
| TUC | TU-768 | FR4 | DOWNLOAD | 180 | 350 | – | 4.3-4.4 | 4.3 |
| TU-872 | Modified Epoxy | DOWNLOAD | 200 | 340 | – | 3.8-4.0 | 3.8 | |
| ROGERS | RO 3003 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 3 |
| RO 3010 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 10.2 | |
| RO 4003 | Hydrocarbon/Cer | DOWNLOAD | >280 | 425 | – | – | 3.38 | |
| RO 4350B | Hydrocarbon/Cer | DOWNLOAD | >280 | 390 | – | – | 3.48 | |
| RT/duroid 5880 | PTFE/Glass | DOWNLOAD | – | 500 | – | – | 2.2 | |
| ISOLA | Polyclad 370HR | FR4 | DOWNLOAD | 170 | 340 | 4.8-5.1 | – | – |
| FR406-HR | FR4 | DOWNLOAD | 190 | 325 | 3.91 | 3.86 | 3.81 | |
| FR408-HR | FR4 | DOWNLOAD | 200 | 360 | 3.72 | 3.69 | 3.65 | |
| P96 | Polyimide | DOWNLOAD | 260 | 416 | – | 3.78 | 3.73 | |
| Hitachi | MCL-BE- 67G | Modified Epoxy | DOWNLOAD | 140 | 340 | 4.9 | 4.4 | – |
| MCL-E-679F | FR4 | DOWNLOAD | 170 | 350 | 4.2-4.4 | 4.3-4.5 | – | |
| MCL-LX-67Y | Special Laminate | DOWNLOAD | 185-195 | 325-345 | – | 3.4-3.6 | – | |
| Nelco | N4000-13 | Modified Epoxy | DOWNLOAD | 210-240 | 365 | – | 3.7 | 3.6 |
| N4000-13EP | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13EP SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| Taconic | TLX-6 | PTFE | DOWNLOAD | – | – | – | – | 2.65 |
| TLX-7 | PTFE | DOWNLOAD | – | – | – | – | 2.6 | |
| TLX-8 | PTFE | DOWNLOAD | – | – | – | – | 2.55 | |
| TLX-9 | PTFE | DOWNLOAD | – | – | – | – | 2.45 | |
| RF35 | PTFE | DOWNLOAD | <315 | – | 3.5 | – | 3.5 | |
| TLC-27 | PTFE | DOWNLOAD | – | – | – | – | 2.75 | |
| TLC-30 | PTFE | DOWNLOAD | – | – | – | – | 3 | |
| TLC-32 | PTFE | DOWNLOAD | – | – | – | – | 3.2 | |
| Arlon | Arlon 25N | Cer | DOWNLOAD | 260 | – | – | – | 3.38 |
| Arlon 25FR | Cer | DOWNLOAD | 260 | – | – | – | 3.58 | |
| Arlon 33N | Polymide | DOWNLOAD | >250 | 353 | 4 | – | – | |
| Arlon 35N | Polymide | DOWNLOAD | >250 | 363 | 4.2 | – | – | |
| Arlon 85N | Polymide | DOWNLOAD | 250 | 387 | 4.2 | – | – | |
| Stablcor | ST325 | – | DOWNLOAD | Thermal conductivity:75w/m.k(with 1oz copper) | ||||
| ST10 | – | DOWNLOAD | Thermal conductivity:325w/m.k(with 1oz copper) | |||||
| Panasonic | R-1566W | FR4 | DOWNLOAD | 140 | 330 | 4.95 | 4.7 | 4.65 |
| Ventec | VT-901 | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – |
| VT-90H | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – | |
| Bergquist | ht-04503 | – | DOWNLOAD | Thermal conductivity:2.2w/m.k(with 1oz copper) | ||||
Delivery
SMTFAB offers flexible shipping methods for our customers, you may choose from one of the methods below.
1. DHL
DHL offers international express services in over 220 countries.
DHL partners with SMTFAB and offers very competitive rates to customers of SMTFAB.
It normally takes 3-7 business days for the package to be delivered around the world.

2. UPS
UPS gets the facts and figures about the world’s largest package delivery company and one of the leading global providers of specialized transportation and logistics services.
It normally takes 3-7 business days to deliver a package to most of the addresses in the world.

3. TNT
TNT has 56,000 employees in 61 countries.
It takes 4-9 business days to deliver the packages to the hands
of our customers.

4. FedEx
FedEx offers delivery solutions for customers around the world.
It takes 4-7 business days to deliver the packages to the hands
of our customers.

5. Air, Sea/Air, and Sea
If your order is of large volume with SMTFAB, you can also choose
to ship via air, sea/air combined, and sea when necessary.
Please contact your sales representative for shipping solutions.
Note: if you need others, please contact your sales representative for shipping solutions.
On our website you can use the following payment methods:
Telegraphic Transfer(TT): A telegraphic transfer (TT) is an electronic method of transferring funds utilized primarily for overseas wire transactions. It’s very convenient to transfer.
Bank/Wire transfer: To pay by wire transfer using your bank account, you need to visit your nearest bank branch with the wire transfer information. Your payment will be completed 3-5 business days after you have finished the money transfer.
Paypal: Pay easily, fast and secure with PayPal. many other credit and debit cards via PayPal.
Credit Card: You can pay with credit card: Visa, Visa Electron, MasterCard, Maestro.
[contact-form-7 id=”764″ title=”Quick Quote”]





| Item | Capability |
| Layer Count | 1-40layers |
| Base Material | KB、Shengyi、ShengyiSF305、FR408、FR408HR、IS410、FR406、GETEK、370HR、IT180A、Rogers4350B、Rogers4000、PTFE Laminates(Rogers series、Taconic series、Arlon series、Nelco series)、Rogers/Taconic/Arlon/Nelco laminate with FR-4 material(including partial Ro4350B hybrid laminating with FR-4) |
| Board Type | Backplane、HDI、High multi-layer 、blind&buried PCB、Embedded Capacitance、Embedded resistance board 、Heavy copper power PCB、Backdrill. |
| Board Thickness | 0.2-5.0mm |
| Copper Thickness | Min. 1/2 OZ, Max. 10 OZ |
| PTH Wall | 25um(1mil) |
| Maximum Board Size | 1100*500mm(43”*19”) |
| Min laser drilling size | 4mil |
| Min. Spacing/Tracing | 2.7mil/2.7mil |
| Solder Mask | Green, Black, Blue, Red, White, Yellow,Purple matte/glossy |
| Surface Treatment | Flash gold(electroplated gold)、ENIG、Hard gold、Flash gold、HASL Lead free、OSP、ENEPIG、Soft gold、Immersion silver、Immersion Tin、ENIG+OSP,ENIG+Gold finger,Flash gold(electroplated gold)+Gold finger,Immersion silver+Gold finger,Immersion Tin+Gold finger. |
| Min. Annular Ring | 3mil |
| Aspect ratio | 10:1(HASL Lead free、HASL Lead、ENIG、Immersion Tin、Immersion silver、ENEPIG);8:1(OSP) |
| Impedance control | ±5ohm(<50ohm), ±10%(≥50ohm) |
| Other Techniques | Blind/Buried Via |
| Gold Fingers | |
| Press Fit | |
| Via in Pad | |
| Electrical Test |
Here there’re many laminate material datasheets, they’re useful and helpful for you, please see them:
| SUPPLIER | PCB LAMINATE | TYPE | MATERIAL DATASHEET | TG | TD | DK(1MHZ) | DK(1GHZ) | DK(10GHZ) |
| KB | KB-6160 | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – |
| KB-6160A | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – | |
| KB-6160C | FR4 | DOWNLOAD | 135 | 314 | 4.7 | – | – | |
| KB-6150 KB-6150C | FR4 | DOWNLOAD | 132 | 305 | 4.6 | – | – | |
| KB-6164 | FR4 | DOWNLOAD | 142 | 330 | 4.8 | – | – | |
| KB-6164F | FR4 | DOWNLOAD | 145 | 340 | 4.8 | – | – | |
| KB-6165F | FR4 | DOWNLOAD | 150 | 346 | 4.8 | – | – | |
| KB-6167F | FR4 | DOWNLOAD | 170 | 349 | 4.8 | – | – | |
| SHENGYI | S1141 | FR4 | DOWNLOAD | 135 | 310 | 4.6 | – | – |
| S1141KF | FR4 | DOWNLOAD | 140 | 350 | 4.7 | – | – | |
| S1000 | FR4 | DOWNLOAD | 155 | 335 | 4.9 | – | – | |
| S1170 | FR4 | DOWNLOAD | 170 | 335 | 4.6 | – | – | |
| S1000-2 | FR4 | DOWNLOAD | 170 | 335 | 4.8 | – | – | |
| S1155 | FR4 | DOWNLOAD | 135 | 370 | 4.7 | – | – | |
| ITEQ | IT-158 | FR4 | DOWNLOAD | 150 | 340 | 4.6-4.8 | – | – |
| IT-180 | FR4 | DOWNLOAD | 180 | 350 | 4.5-4.7 | – | – | |
| TUC | TU-768 | FR4 | DOWNLOAD | 180 | 350 | – | 4.3-4.4 | 4.3 |
| TU-872 | Modified Epoxy | DOWNLOAD | 200 | 340 | – | 3.8-4.0 | 3.8 | |
| ROGERS | RO 3003 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 3 |
| RO 3010 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 10.2 | |
| RO 4003 | Hydrocarbon/Cer | DOWNLOAD | >280 | 425 | – | – | 3.38 | |
| RO 4350B | Hydrocarbon/Cer | DOWNLOAD | >280 | 390 | – | – | 3.48 | |
| RT/duroid 5880 | PTFE/Glass | DOWNLOAD | – | 500 | – | – | 2.2 | |
| ISOLA | Polyclad 370HR | FR4 | DOWNLOAD | 170 | 340 | 4.8-5.1 | – | – |
| FR406-HR | FR4 | DOWNLOAD | 190 | 325 | 3.91 | 3.86 | 3.81 | |
| FR408-HR | FR4 | DOWNLOAD | 200 | 360 | 3.72 | 3.69 | 3.65 | |
| P96 | Polyimide | DOWNLOAD | 260 | 416 | – | 3.78 | 3.73 | |
| Hitachi | MCL-BE- 67G | Modified Epoxy | DOWNLOAD | 140 | 340 | 4.9 | 4.4 | – |
| MCL-E-679F | FR4 | DOWNLOAD | 170 | 350 | 4.2-4.4 | 4.3-4.5 | – | |
| MCL-LX-67Y | Special Laminate | DOWNLOAD | 185-195 | 325-345 | – | 3.4-3.6 | – | |
| Nelco | N4000-13 | Modified Epoxy | DOWNLOAD | 210-240 | 365 | – | 3.7 | 3.6 |
| N4000-13EP | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13EP SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| Taconic | TLX-6 | PTFE | DOWNLOAD | – | – | – | – | 2.65 |
| TLX-7 | PTFE | DOWNLOAD | – | – | – | – | 2.6 | |
| TLX-8 | PTFE | DOWNLOAD | – | – | – | – | 2.55 | |
| TLX-9 | PTFE | DOWNLOAD | – | – | – | – | 2.45 | |
| RF35 | PTFE | DOWNLOAD | <315 | – | 3.5 | – | 3.5 | |
| TLC-27 | PTFE | DOWNLOAD | – | – | – | – | 2.75 | |
| TLC-30 | PTFE | DOWNLOAD | – | – | – | – | 3 | |
| TLC-32 | PTFE | DOWNLOAD | – | – | – | – | 3.2 | |
| Arlon | Arlon 25N | Cer | DOWNLOAD | 260 | – | – | – | 3.38 |
| Arlon 25FR | Cer | DOWNLOAD | 260 | – | – | – | 3.58 | |
| Arlon 33N | Polymide | DOWNLOAD | >250 | 353 | 4 | – | – | |
| Arlon 35N | Polymide | DOWNLOAD | >250 | 363 | 4.2 | – | – | |
| Arlon 85N | Polymide | DOWNLOAD | 250 | 387 | 4.2 | – | – | |
| Stablcor | ST325 | – | DOWNLOAD | Thermal conductivity:75w/m.k(with 1oz copper) | ||||
| ST10 | – | DOWNLOAD | Thermal conductivity:325w/m.k(with 1oz copper) | |||||
| Panasonic | R-1566W | FR4 | DOWNLOAD | 140 | 330 | 4.95 | 4.7 | 4.65 |
| Ventec | VT-901 | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – |
| VT-90H | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – | |
| Bergquist | ht-04503 | – | DOWNLOAD | Thermal conductivity:2.2w/m.k(with 1oz copper) | ||||
Delivery
SMTFAB offers flexible shipping methods for our customers, you may choose from one of the methods below.
1. DHL
DHL offers international express services in over 220 countries.
DHL partners with SMTFAB and offers very competitive rates to customers of SMTFAB.
It normally takes 3-7 business days for the package to be delivered around the world.

2. UPS
UPS gets the facts and figures about the world’s largest package delivery company and one of the leading global providers of specialized transportation and logistics services.
It normally takes 3-7 business days to deliver a package to most of the addresses in the world.

3. TNT
TNT has 56,000 employees in 61 countries.
It takes 4-9 business days to deliver the packages to the hands
of our customers.

4. FedEx
FedEx offers delivery solutions for customers around the world.
It takes 4-7 business days to deliver the packages to the hands
of our customers.

5. Air, Sea/Air, and Sea
If your order is of large volume with SMTFAB, you can also choose
to ship via air, sea/air combined, and sea when necessary.
Please contact your sales representative for shipping solutions.
Note: if you need others, please contact your sales representative for shipping solutions.
On our website you can use the following payment methods:
Telegraphic Transfer(TT): A telegraphic transfer (TT) is an electronic method of transferring funds utilized primarily for overseas wire transactions. It’s very convenient to transfer.
Bank/Wire transfer: To pay by wire transfer using your bank account, you need to visit your nearest bank branch with the wire transfer information. Your payment will be completed 3-5 business days after you have finished the money transfer.
Paypal: Pay easily, fast and secure with PayPal. many other credit and debit cards via PayPal.
Credit Card: You can pay with credit card: Visa, Visa Electron, MasterCard, Maestro.
[contact-form-7 id=”764″ title=”Quick Quote”]
| Item | Capability |
| Layer Count | 1-40layers |
| Base Material | KB、Shengyi、ShengyiSF305、FR408、FR408HR、IS410、FR406、GETEK、370HR、IT180A、Rogers4350B、Rogers4000、PTFE Laminates(Rogers series、Taconic series、Arlon series、Nelco series)、Rogers/Taconic/Arlon/Nelco laminate with FR-4 material(including partial Ro4350B hybrid laminating with FR-4) |
| Board Type | Backplane、HDI、High multi-layer 、blind&buried PCB、Embedded Capacitance、Embedded resistance board 、Heavy copper power PCB、Backdrill. |
| Board Thickness | 0.2-5.0mm |
| Copper Thickness | Min. 1/2 OZ, Max. 10 OZ |
| PTH Wall | 25um(1mil) |
| Maximum Board Size | 1100*500mm(43”*19”) |
| Min laser drilling size | 4mil |
| Min. Spacing/Tracing | 2.7mil/2.7mil |
| Solder Mask | Green, Black, Blue, Red, White, Yellow,Purple matte/glossy |
| Surface Treatment | Flash gold(electroplated gold)、ENIG、Hard gold、Flash gold、HASL Lead free、OSP、ENEPIG、Soft gold、Immersion silver、Immersion Tin、ENIG+OSP,ENIG+Gold finger,Flash gold(electroplated gold)+Gold finger,Immersion silver+Gold finger,Immersion Tin+Gold finger. |
| Min. Annular Ring | 3mil |
| Aspect ratio | 10:1(HASL Lead free、HASL Lead、ENIG、Immersion Tin、Immersion silver、ENEPIG);8:1(OSP) |
| Impedance control | ±5ohm(<50ohm), ±10%(≥50ohm) |
| Other Techniques | Blind/Buried Via |
| Gold Fingers | |
| Press Fit | |
| Via in Pad | |
| Electrical Test |
| Item | Capability |
| Layer Count | 1-40layers |
| Base Material | KB、Shengyi、ShengyiSF305、FR408、FR408HR、IS410、FR406、GETEK、370HR、IT180A、Rogers4350B、Rogers4000、PTFE Laminates(Rogers series、Taconic series、Arlon series、Nelco series)、Rogers/Taconic/Arlon/Nelco laminate with FR-4 material(including partial Ro4350B hybrid laminating with FR-4) |
| Board Type | Backplane、HDI、High multi-layer 、blind&buried PCB、Embedded Capacitance、Embedded resistance board 、Heavy copper power PCB、Backdrill. |
| Board Thickness | 0.2-5.0mm |
| Copper Thickness | Min. 1/2 OZ, Max. 10 OZ |
| PTH Wall | 25um(1mil) |
| Maximum Board Size | 1100*500mm(43”*19”) |
| Min laser drilling size | 4mil |
| Min. Spacing/Tracing | 2.7mil/2.7mil |
| Solder Mask | Green, Black, Blue, Red, White, Yellow,Purple matte/glossy |
| Surface Treatment | Flash gold(electroplated gold)、ENIG、Hard gold、Flash gold、HASL Lead free、OSP、ENEPIG、Soft gold、Immersion silver、Immersion Tin、ENIG+OSP,ENIG+Gold finger,Flash gold(electroplated gold)+Gold finger,Immersion silver+Gold finger,Immersion Tin+Gold finger. |
| Min. Annular Ring | 3mil |
| Aspect ratio | 10:1(HASL Lead free、HASL Lead、ENIG、Immersion Tin、Immersion silver、ENEPIG);8:1(OSP) |
| Impedance control | ±5ohm(<50ohm), ±10%(≥50ohm) |
| Other Techniques | Blind/Buried Via |
| Gold Fingers | |
| Press Fit | |
| Via in Pad | |
| Electrical Test |
Here there’re many laminate material datasheets, they’re useful and helpful for you, please see them:
| SUPPLIER | PCB LAMINATE | TYPE | MATERIAL DATASHEET | TG | TD | DK(1MHZ) | DK(1GHZ) | DK(10GHZ) |
| KB | KB-6160 | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – |
| KB-6160A | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – | |
| KB-6160C | FR4 | DOWNLOAD | 135 | 314 | 4.7 | – | – | |
| KB-6150 KB-6150C | FR4 | DOWNLOAD | 132 | 305 | 4.6 | – | – | |
| KB-6164 | FR4 | DOWNLOAD | 142 | 330 | 4.8 | – | – | |
| KB-6164F | FR4 | DOWNLOAD | 145 | 340 | 4.8 | – | – | |
| KB-6165F | FR4 | DOWNLOAD | 150 | 346 | 4.8 | – | – | |
| KB-6167F | FR4 | DOWNLOAD | 170 | 349 | 4.8 | – | – | |
| SHENGYI | S1141 | FR4 | DOWNLOAD | 135 | 310 | 4.6 | – | – |
| S1141KF | FR4 | DOWNLOAD | 140 | 350 | 4.7 | – | – | |
| S1000 | FR4 | DOWNLOAD | 155 | 335 | 4.9 | – | – | |
| S1170 | FR4 | DOWNLOAD | 170 | 335 | 4.6 | – | – | |
| S1000-2 | FR4 | DOWNLOAD | 170 | 335 | 4.8 | – | – | |
| S1155 | FR4 | DOWNLOAD | 135 | 370 | 4.7 | – | – | |
| ITEQ | IT-158 | FR4 | DOWNLOAD | 150 | 340 | 4.6-4.8 | – | – |
| IT-180 | FR4 | DOWNLOAD | 180 | 350 | 4.5-4.7 | – | – | |
| TUC | TU-768 | FR4 | DOWNLOAD | 180 | 350 | – | 4.3-4.4 | 4.3 |
| TU-872 | Modified Epoxy | DOWNLOAD | 200 | 340 | – | 3.8-4.0 | 3.8 | |
| ROGERS | RO 3003 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 3 |
| RO 3010 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 10.2 | |
| RO 4003 | Hydrocarbon/Cer | DOWNLOAD | >280 | 425 | – | – | 3.38 | |
| RO 4350B | Hydrocarbon/Cer | DOWNLOAD | >280 | 390 | – | – | 3.48 | |
| RT/duroid 5880 | PTFE/Glass | DOWNLOAD | – | 500 | – | – | 2.2 | |
| ISOLA | Polyclad 370HR | FR4 | DOWNLOAD | 170 | 340 | 4.8-5.1 | – | – |
| FR406-HR | FR4 | DOWNLOAD | 190 | 325 | 3.91 | 3.86 | 3.81 | |
| FR408-HR | FR4 | DOWNLOAD | 200 | 360 | 3.72 | 3.69 | 3.65 | |
| P96 | Polyimide | DOWNLOAD | 260 | 416 | – | 3.78 | 3.73 | |
| Hitachi | MCL-BE- 67G | Modified Epoxy | DOWNLOAD | 140 | 340 | 4.9 | 4.4 | – |
| MCL-E-679F | FR4 | DOWNLOAD | 170 | 350 | 4.2-4.4 | 4.3-4.5 | – | |
| MCL-LX-67Y | Special Laminate | DOWNLOAD | 185-195 | 325-345 | – | 3.4-3.6 | – | |
| Nelco | N4000-13 | Modified Epoxy | DOWNLOAD | 210-240 | 365 | – | 3.7 | 3.6 |
| N4000-13EP | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13EP SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| Taconic | TLX-6 | PTFE | DOWNLOAD | – | – | – | – | 2.65 |
| TLX-7 | PTFE | DOWNLOAD | – | – | – | – | 2.6 | |
| TLX-8 | PTFE | DOWNLOAD | – | – | – | – | 2.55 | |
| TLX-9 | PTFE | DOWNLOAD | – | – | – | – | 2.45 | |
| RF35 | PTFE | DOWNLOAD | <315 | – | 3.5 | – | 3.5 | |
| TLC-27 | PTFE | DOWNLOAD | – | – | – | – | 2.75 | |
| TLC-30 | PTFE | DOWNLOAD | – | – | – | – | 3 | |
| TLC-32 | PTFE | DOWNLOAD | – | – | – | – | 3.2 | |
| Arlon | Arlon 25N | Cer | DOWNLOAD | 260 | – | – | – | 3.38 |
| Arlon 25FR | Cer | DOWNLOAD | 260 | – | – | – | 3.58 | |
| Arlon 33N | Polymide | DOWNLOAD | >250 | 353 | 4 | – | – | |
| Arlon 35N | Polymide | DOWNLOAD | >250 | 363 | 4.2 | – | – | |
| Arlon 85N | Polymide | DOWNLOAD | 250 | 387 | 4.2 | – | – | |
| Stablcor | ST325 | – | DOWNLOAD | Thermal conductivity:75w/m.k(with 1oz copper) | ||||
| ST10 | – | DOWNLOAD | Thermal conductivity:325w/m.k(with 1oz copper) | |||||
| Panasonic | R-1566W | FR4 | DOWNLOAD | 140 | 330 | 4.95 | 4.7 | 4.65 |
| Ventec | VT-901 | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – |
| VT-90H | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – | |
| Bergquist | ht-04503 | – | DOWNLOAD | Thermal conductivity:2.2w/m.k(with 1oz copper) | ||||
Here there’re many laminate material datasheets, they’re useful and helpful for you, please see them:
| SUPPLIER | PCB LAMINATE | TYPE | MATERIAL DATASHEET | TG | TD | DK(1MHZ) | DK(1GHZ) | DK(10GHZ) |
| KB | KB-6160 | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – |
| KB-6160A | FR4 | DOWNLOAD | 135 | 305 | 4.35 | – | – | |
| KB-6160C | FR4 | DOWNLOAD | 135 | 314 | 4.7 | – | – | |
| KB-6150 KB-6150C | FR4 | DOWNLOAD | 132 | 305 | 4.6 | – | – | |
| KB-6164 | FR4 | DOWNLOAD | 142 | 330 | 4.8 | – | – | |
| KB-6164F | FR4 | DOWNLOAD | 145 | 340 | 4.8 | – | – | |
| KB-6165F | FR4 | DOWNLOAD | 150 | 346 | 4.8 | – | – | |
| KB-6167F | FR4 | DOWNLOAD | 170 | 349 | 4.8 | – | – | |
| SHENGYI | S1141 | FR4 | DOWNLOAD | 135 | 310 | 4.6 | – | – |
| S1141KF | FR4 | DOWNLOAD | 140 | 350 | 4.7 | – | – | |
| S1000 | FR4 | DOWNLOAD | 155 | 335 | 4.9 | – | – | |
| S1170 | FR4 | DOWNLOAD | 170 | 335 | 4.6 | – | – | |
| S1000-2 | FR4 | DOWNLOAD | 170 | 335 | 4.8 | – | – | |
| S1155 | FR4 | DOWNLOAD | 135 | 370 | 4.7 | – | – | |
| ITEQ | IT-158 | FR4 | DOWNLOAD | 150 | 340 | 4.6-4.8 | – | – |
| IT-180 | FR4 | DOWNLOAD | 180 | 350 | 4.5-4.7 | – | – | |
| TUC | TU-768 | FR4 | DOWNLOAD | 180 | 350 | – | 4.3-4.4 | 4.3 |
| TU-872 | Modified Epoxy | DOWNLOAD | 200 | 340 | – | 3.8-4.0 | 3.8 | |
| ROGERS | RO 3003 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 3 |
| RO 3010 | Cer/PTFE | DOWNLOAD | – | 500 | – | – | 10.2 | |
| RO 4003 | Hydrocarbon/Cer | DOWNLOAD | >280 | 425 | – | – | 3.38 | |
| RO 4350B | Hydrocarbon/Cer | DOWNLOAD | >280 | 390 | – | – | 3.48 | |
| RT/duroid 5880 | PTFE/Glass | DOWNLOAD | – | 500 | – | – | 2.2 | |
| ISOLA | Polyclad 370HR | FR4 | DOWNLOAD | 170 | 340 | 4.8-5.1 | – | – |
| FR406-HR | FR4 | DOWNLOAD | 190 | 325 | 3.91 | 3.86 | 3.81 | |
| FR408-HR | FR4 | DOWNLOAD | 200 | 360 | 3.72 | 3.69 | 3.65 | |
| P96 | Polyimide | DOWNLOAD | 260 | 416 | – | 3.78 | 3.73 | |
| Hitachi | MCL-BE- 67G | Modified Epoxy | DOWNLOAD | 140 | 340 | 4.9 | 4.4 | – |
| MCL-E-679F | FR4 | DOWNLOAD | 170 | 350 | 4.2-4.4 | 4.3-4.5 | – | |
| MCL-LX-67Y | Special Laminate | DOWNLOAD | 185-195 | 325-345 | – | 3.4-3.6 | – | |
| Nelco | N4000-13 | Modified Epoxy | DOWNLOAD | 210-240 | 365 | – | 3.7 | 3.6 |
| N4000-13EP | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| N4000-13EP SI | Modified Epoxy | DOWNLOAD | 210-240 | 350 | – | 3.4 | 3.2 | |
| Taconic | TLX-6 | PTFE | DOWNLOAD | – | – | – | – | 2.65 |
| TLX-7 | PTFE | DOWNLOAD | – | – | – | – | 2.6 | |
| TLX-8 | PTFE | DOWNLOAD | – | – | – | – | 2.55 | |
| TLX-9 | PTFE | DOWNLOAD | – | – | – | – | 2.45 | |
| RF35 | PTFE | DOWNLOAD | <315 | – | 3.5 | – | 3.5 | |
| TLC-27 | PTFE | DOWNLOAD | – | – | – | – | 2.75 | |
| TLC-30 | PTFE | DOWNLOAD | – | – | – | – | 3 | |
| TLC-32 | PTFE | DOWNLOAD | – | – | – | – | 3.2 | |
| Arlon | Arlon 25N | Cer | DOWNLOAD | 260 | – | – | – | 3.38 |
| Arlon 25FR | Cer | DOWNLOAD | 260 | – | – | – | 3.58 | |
| Arlon 33N | Polymide | DOWNLOAD | >250 | 353 | 4 | – | – | |
| Arlon 35N | Polymide | DOWNLOAD | >250 | 363 | 4.2 | – | – | |
| Arlon 85N | Polymide | DOWNLOAD | 250 | 387 | 4.2 | – | – | |
| Stablcor | ST325 | – | DOWNLOAD | Thermal conductivity:75w/m.k(with 1oz copper) | ||||
| ST10 | – | DOWNLOAD | Thermal conductivity:325w/m.k(with 1oz copper) | |||||
| Panasonic | R-1566W | FR4 | DOWNLOAD | 140 | 330 | 4.95 | 4.7 | 4.65 |
| Ventec | VT-901 | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – |
| VT-90H | Polymide | DOWNLOAD | 250 | 390 | 4.2-4.5 | 4.0-4.3 | – | |
| Bergquist | ht-04503 | – | DOWNLOAD | Thermal conductivity:2.2w/m.k(with 1oz copper) | ||||
Delivery
SMTFAB offers flexible shipping methods for our customers, you may choose from one of the methods below.
1. DHL
DHL offers international express services in over 220 countries.
DHL partners with SMTFAB and offers very competitive rates to customers of SMTFAB.
It normally takes 3-7 business days for the package to be delivered around the world.

2. UPS
UPS gets the facts and figures about the world’s largest package delivery company and one of the leading global providers of specialized transportation and logistics services.
It normally takes 3-7 business days to deliver a package to most of the addresses in the world.

3. TNT
TNT has 56,000 employees in 61 countries.
It takes 4-9 business days to deliver the packages to the hands
of our customers.

4. FedEx
FedEx offers delivery solutions for customers around the world.
It takes 4-7 business days to deliver the packages to the hands
of our customers.

5. Air, Sea/Air, and Sea
If your order is of large volume with SMTFAB, you can also choose
to ship via air, sea/air combined, and sea when necessary.
Please contact your sales representative for shipping solutions.
Note: if you need others, please contact your sales representative for shipping solutions.
SMTFAB offers flexible shipping methods for our customers, you may choose from one of the methods below.
DHL offers international express services in over 220 countries.
DHL partners with SMTFAB and offers very competitive rates to customers of SMTFAB.
It normally takes 3-7 business days for the package to be delivered around the world.
UPS gets the facts and figures about the world’s largest package delivery company and one of the leading global providers of specialized transportation and logistics services.
It normally takes 3-7 business days to deliver a package to most of the addresses in the world.
TNT has 56,000 employees in 61 countries.
It takes 4-9 business days to deliver the packages to the hands
of our customers.
FedEx offers delivery solutions for customers around the world.
It takes 4-7 business days to deliver the packages to the hands
of our customers.
5. Air, Sea/Air, and Sea
If your order is of large volume with SMTFAB, you can also choose
to ship via air, sea/air combined, and sea when necessary.
Please contact your sales representative for shipping solutions.
Note: if you need others, please contact your sales representative for shipping solutions.
On our website you can use the following payment methods:
Telegraphic Transfer(TT): A telegraphic transfer (TT) is an electronic method of transferring funds utilized primarily for overseas wire transactions. It’s very convenient to transfer.
Bank/Wire transfer: To pay by wire transfer using your bank account, you need to visit your nearest bank branch with the wire transfer information. Your payment will be completed 3-5 business days after you have finished the money transfer.
Paypal: Pay easily, fast and secure with PayPal. many other credit and debit cards via PayPal.
Credit Card: You can pay with credit card: Visa, Visa Electron, MasterCard, Maestro.
On our website you can use the following payment methods:
Telegraphic Transfer(TT): A telegraphic transfer (TT) is an electronic method of transferring funds utilized primarily for overseas wire transactions. It’s very convenient to transfer.
Bank/Wire transfer: To pay by wire transfer using your bank account, you need to visit your nearest bank branch with the wire transfer information. Your payment will be completed 3-5 business days after you have finished the money transfer.
Paypal: Pay easily, fast and secure with PayPal. many other credit and debit cards via PayPal.
Credit Card: You can pay with credit card: Visa, Visa Electron, MasterCard, Maestro.
[contact-form-7 id=”764″ title=”Quick Quote”]
[contact-form-7 id=”764″ title=”Quick Quote”]
Due to the miniaturization of digital products, Blind Vias PCBs are in great demand. SMTFAB has upped production of High-density and high-frequency boards. With SMTFAB, these Blind Vias PCBs are 100% well-made to satisfy you.
When you need a trustworthy supplier of PCBs, you can turn to SMTFAB. We have refined the production of Blind Vias PCB as well as Microvia PCBs. So, every PCB that comes out of our plant is defect-free.
SMTFAB is also considerate of your needs as an EMS. If you need a huge order, we will make it a possibility. Aside from being the go-to supplier of giant companies domestically, we have customers all over the world. This is why our sales team is trained to focus on your needs.
Whatever type of Blind Vias PCB you require, just tell us. We will accommodate all sorts and types of design requests. SMTFAB will give you too the CAD and CAM reports, which are very much necessary.
For Quality Assurance, you can be sure that our Blind Vias PCBs follow updated rules. As all reputable PCB manufacturers should be, we are ISO 9001 (QMS) and 14001 (environmental standards) compliant.

You will find our payment terms flexible, depending on the type of your order. As well, our easy-to-access payment channels make transactions speedy for you.
So, reduce delays in your business. Call SMTFAB now to order your Blind Vias PCB!
PCBs are the core powerhouse of electronics that connect the electronic components. The components generate the functionality of the electronics. Blind vias PCB is one kind of PCB that is made with particular vias.
You may have questions about vias and its objective. You are in the right place if you want to know about blind vias printed circuit boards. You will find here a discussion and many answers about blind vias PCB and related facts to production.
Go through the article thoroughly to find the things unveiled.
We must first understand what a via is before proceeding to the blind vias PCB. The term “via” refers to the electrical connections through the copper layers of multilayer printed circuit boards. Blind vias are an effective form of vias.
Blind vias are drilled in the PCB, starting from any outer to one or more inner layers. This is referred to as a blind via. However, it does not pass through the opposing outer layer and out the other side. PCBs with blind vias are referred to as blind vias PCBs.

Blind Via With Other Vias On PCB
Blind vias are used to make electrical connections between layers of a PCB. You will find blind vias in HDI PCBs. Besides this, blind vias help to reduce the size of PCBs. Additionally, signal integrity is guaranteed.
Blind vias in blind vias PCBs allow for the connecting of components according to requirements. Unlike through-hole vias, they do not needlessly pass through all layers, even if they are not required to do so in some instances. It provides PCB designers and engineers with a new routing option to choose from.
If you want to know more about PCB vias, the following video is for you:
In electronics, the fundamental idea is that short conductive routes should be used to minimize interference and signal noise to a minimum. Long pathways cause signal interference, which causes the signals to be disrupted. And at this moment, blind vias PCB demonstrate their abilities.
Blind vias are short and used as per needs. They avoid unnecessary length, unlike through-hole vias. This helps to reduce parasitic capacitance. As a straightforward type of path, blind vias ensure and intensify signal integrity.

Blind Vias Ensure Signal Integrity On PCBs
Blind vias also prevent signal degradation and reflections. If the signal is discontinued, it could affect the signal and power integrity. And this will harm the high-speed designs. But, blind vias PCBs prevent the mentioned cons. For this benefit, high-speed signal lines utilize blind vias.
Primarily, four types of PCB blind via fabrication process are used in blind vias PCBs. They are discussed below.
Sequential lamination begins at the very beginning of the PCB layer techniques and proceeds in a clockwise direction. In all products, a very thin laminate is subjected to a series of processes step by step. It is most often used for double-sided printed circuit boards (PCBs).
Blind vias PCBs complete coating on all layers with a sequential process. Drilling, etching, and plating are the last steps in the manufacturing process. It is also a little expensive process.
The sequential blind vias procedure becomes costly as a result of the process complexity.
A photosensitive resin is applied to the core of the printed circuit board (PCB) in the photo-defined process. After this, you need to bring the board to light. The light will help to harden the substrates.
The etching solution is used to remove the material from the photosensitive sheet once it has hardened. The copper is then placed into the holes in the steel.
When utilized in large quantities, photo-defined blind vias PCBs are a cost-effective solution.
The controlled depth process uses drilling techniques to create holes on the PCBs. In contrast to through-hole drilling, the controlled drilling is halted in a specific layer of the blind vias PCB.
It is the most cost-effective method of producing blind vias on printed circuit boards. The regulated depth procedure requires the smallest drill size possible, which is 0.15 mm.
The laser drilling is utilized after finishing the lamination of all internal layers of the PCB. But you have to do this before finishing the outer layers. An advantage of laser drilling is that it could be done together in copper and dielectric materials.

Laser Drilling Is A Cost-Effective Blind VIa Fabrication
It is one of the most cost-effective blind vias PCB processes.
The general design steps for making PCBs follow several gradual tasks. Here are the complete steps to design a blind vias PCB.
Any electronics starts with a diagram. The diagram is the primary design blueprint for the circuit. A schematic diagram determines how the shape will be, how the components will be placed on the board.
Also, other details are described in the schematic diagram. So, you have to plan your blind vias PCB and implement the design in the schematic diagram.
After drawing the diagram, you have to import the schematic capture to your layout design software to design the PCB layout. Based on the diagram, design the basic and a blank layout of the blind vias PCB.
Determine and design the layer stack-ups.
After successfully designing the layout, now the time is to print the final layout into the blind vias PCB board. You have to ensure the proper printing of the layout on the board. You can use different PCB printing technology such as 3D printing, laser printing, or heat-and-pressure printing.
Check on how 3D PCB printing works:
Now, the time is to etch the conductive traces. When using chemical, heat, and pressure printing, you must etch the traces separately after PCB printing. Ferric chloride, Alkaline, sulfuric acid, etc., are used to etch the conductive traces.

Conductive Traces On The PCB
After etching, drill the blind vias on your blind vias PCB.
After successfully etching and via creating, now the time is for placing the components. You need to determine the elements during the schematic drawing. Because the purposes of the PCBs decide which features would be used.
Place the digital and analog components separated. Take utmost care during the soldering process. You also can use press-fit PCB components assembling technology to assemble the parts.
The components assembling is the final step of making the blind vias PCB. After placing the components correctly, your PCB is ready to perform in real-life applications.
You will find the following features on blind vias PCB:

Blind Vias PCB Features More Holes
In typical through-hole vias PCB, through-hole creates unnecessary holes from the surface layer to the bottom layer. But, in the blind vias PCBs, there is no need for extra drilling. For this, matching impedance is adequately sustained, which helps to keep the consistent signal integrity.
Also, the workload is significantly reduced in blind vias PCB, which increases the lifespan of the PCBs.

Blind Vias PCB Ensure More Space
PCB designs consistently reduce the pad’s and via’s size gradually. If the PCB thickness does not comply with reducing proportionally, the reliability of the PCB will be a failure. The blind vias PCB fixes the matter.
Blind vias PCB ensure more spaces for proper wiring. Also, the appropriate spacing provides shielding for the wiring, which significantly increases the electrical performance of the PCB.
Before starting blind vias implementation on your blind vias PCBs, there are things to consider. Because there are cost facts, value for money facts are related to this. So, let’s check the items.
The vias’ pads will not fit if you don’t consider the annular ring size. The size of the pad is critical while drilling vias.

Keeping Sufficient Annular Ring Is Essential
You need to remember the tiniest acceptable drill size based on the PCB board thickness because the mechanical drill has its limit. So, you have to choose the drill size to its limit to drill the hole before being unreliable.
The standard blind via ratio with the mechanical drill is 10:1. That means, if the board is 62 mils thick, the drill will be six mils. If you need extra smaller holes, you can go for micro stacked vias which feature an aspect ratio of 1:1.
Since via is very tiny in length, you must ensure that your blind vias comprise the signal integrity. You have to remove the leftovers of unnecessary metal after drilling from the hole lines.
The designers must consider the route design and the surroundings. Since the routing area extends over the whole board, you must be careful that drilling does not interfere with the routing routes.
Corrosion is the process of oxidation that drives the conductive metal parts of your blind vias PCB to destruction. When the metal is exposed to the environment, it gradually starts a chemical reaction with oxygen.
Due to moisture and water in the open environment, the oxidation accelerated, and the metal corrodes. There are two types of corrosion that might happen in your blind vias PCB traces and vias.
After completing soldering, you will see some leftovers on the boards. These leftovers cause corrosion if not cleaned properly. Also, the older flux materials may include corrosive compounds that might contribute to decay.

Corrosion Is Destructive For PCBs
After the soldering process is completed, removing any chlorine and other solder flux residues is necessary. Any acid that has been used in the soldering process, on the other hand, must be removed as well.
Galvanic and electrolytic corrosion is both electrochemical. Galvanic corrosion occurs when two metals touch on the PCB blind vias. Ionic pollution speeds up deterioration.
When two or more adjacent traces are polluted by electrolytic solution, electrolytic corrosion happens. In this instance, silvers grow. Metal oxides and hydroxides oxidize metal traces contaminated by water.
You can conclude that metal components such as copper and other base metals are the ones that erode the most. So, you must guarantee that the metallic components of your blind vias PCB are protected from corrosion.

Conformal Coating Is One Of The Best Solutions Against Corrosion
Corrosion may be prevented, and it is not an arduous task. One of the most effective ways to avoid corrosion is conformal coating. Surface finishes using gold, silver, tin, and nickel, on the other hand, are an efficient option. All of the remedies described above act as protective barriers against oxidation and corrosion.
Besides these, you can use aerosol spray, and solder masks. Also, the epoxy coating would be another best way to protect your boards from corrosion. All that remains is for you to decide the most appropriate option to use.
EMI refers to Electromagnetic Interference. It does not matter that you follow the best design rules to design your blind vias PCB. Some parts of your PCB will indeed produce EMI. But EMI shielding and filtering can help you to keep the quantity of EMI low.
Following are some effective EMI shielding and filtering that you may use for your PCBs.

Component Shielding Prevents EMI
The shielding technique will prevent the entering of EMI into the circuitry. A Faraday Cage, for example, may be used to encapsulate the board to avoid radiofrequency waves.
The high heating issue is one of the alarming issues in electronics. High heat can harm and damage your blind vias PCB in many ways. They may help to raise interferences, signal distortion, oxidation, and overall failure.
There are many reasons behind introducing the high heat on the PCBs. Following are some of the high-heat causes in PCBs.

High Heat Causes Malfunction To The Blind Vias PCB Parts
There are several effective ways to prevent the rise of high heat. But, these are the combination of various attempts. So, different practical steps may help you reduce the high heat on your blind vias PCBs.

Properly Placed Heatsink Dissipate The High Heat From PCB
Surface finishes are coating the conductive metals of the blind vias PCBs from oxidation and corrosion. The copper area of the blind vias PCBs can quickly oxidize. The surface finishes are one of the most effective preventions against oxidation.
There are different types of surface finishes or surface coatings available. They are mentioned with their basic features as follows.

ENIG Surface Coating On PCB
Among the RoHS compliant surface coatings, immersion silver and immersion tin are also popular. They are cost-effective and efficiently can handle their responsibilities.
You should know the electrical property compliance before choosing PCB material for your blind vias PCB. The material should comply with the range of the following electrical properties.
For choosing the blind vias PCB material, you should keep the following things in mind.

Conductive Copper Foil
The dimensions and position of the conductive trace should be chosen following the features of the blind vias PCB materials. This matching is required for the PCB’s signal strength to be as high as possible. Furthermore, the signal range will be specific. This phenomenon is referred to as impedance matching of the PCB.
The primary purpose of the conductive PCB traces is to carry the signal from the transmitter to the receiver as quickly as possible. Additionally, the signal must be transferred across the travel length of the traces. And it is here that the matching impedance is of the utmost importance.
To ensure that the signal is successfully transmitted, the impedance of the traces must be matched. Because of the distorted signal caused by mismatched impedance, the desired output will not be received.
Grounding is the return path of the current flow to the earth to avoid the unusual current. Grounding is one of the essential parts for the blind vias PCBs, for instance, for the electronics for proper functioning.

A Dedicated Grounding Point Is An Ideal Option For Proper Grounding
There are some basic rules of proper grounding. The rules can be mentioned as follows.
It is essential to catch a reliable, experienced, professional manufacturer to produce the best blind vias PCB.
So, how could you consider a manufacturer perfect among the hundreds of manufacturers?
There are some essential features they must have. Then you can consider them as a perfect manufacturer for your PCB production.
The features mentioned above verify the manufacturer as a great PCB manufacturer.
We hope you got the things about blind vias PCB. Producing efficient blind vias PCBs is the precondition for a profitable business. You must have a concern about this matter. And a great reliable PCB manufacturer can ensure you excellent quality products.
You can get your PCB production from SMTFAB. SMTFAB is one of the leading PCB manufacturers in China. We provide excellent quality blind vias PCB production with the utmost experience and skills.
Due to the miniaturization of digital products, Blind Vias PCBs are in great demand. SMTFAB has upped production of High-density and high-frequency boards. With SMTFAB, these Blind Vias PCBs are 100% well-made to satisfy you.
When you need a trustworthy supplier of PCBs, you can turn to SMTFAB. We have refined the production of Blind Vias PCB as well as Microvia PCBs. So, every PCB that comes out of our plant is defect-free.
SMTFAB is also considerate of your needs as an EMS. If you need a huge order, we will make it a possibility. Aside from being the go-to supplier of giant companies domestically, we have customers all over the world. This is why our sales team is trained to focus on your needs.
Whatever type of Blind Vias PCB you require, just tell us. We will accommodate all sorts and types of design requests. SMTFAB will give you too the CAD and CAM reports, which are very much necessary.
For Quality Assurance, you can be sure that our Blind Vias PCBs follow updated rules. As all reputable PCB manufacturers should be, we are ISO 9001 (QMS) and 14001 (environmental standards) compliant.

You will find our payment terms flexible, depending on the type of your order. As well, our easy-to-access payment channels make transactions speedy for you.
So, reduce delays in your business. Call SMTFAB now to order your Blind Vias PCB!
PCBs are the core powerhouse of electronics that connect the electronic components. The components generate the functionality of the electronics. Blind vias PCB is one kind of PCB that is made with particular vias.
You may have questions about vias and its objective. You are in the right place if you want to know about blind vias printed circuit boards. You will find here a discussion and many answers about blind vias PCB and related facts to production.
Go through the article thoroughly to find the things unveiled.
We must first understand what a via is before proceeding to the blind vias PCB. The term “via” refers to the electrical connections through the copper layers of multilayer printed circuit boards. Blind vias are an effective form of vias.
Blind vias are drilled in the PCB, starting from any outer to one or more inner layers. This is referred to as a blind via. However, it does not pass through the opposing outer layer and out the other side. PCBs with blind vias are referred to as blind vias PCBs.

Blind Via With Other Vias On PCB
Blind vias are used to make electrical connections between layers of a PCB. You will find blind vias in HDI PCBs. Besides this, blind vias help to reduce the size of PCBs. Additionally, signal integrity is guaranteed.
Blind vias in blind vias PCBs allow for the connecting of components according to requirements. Unlike through-hole vias, they do not needlessly pass through all layers, even if they are not required to do so in some instances. It provides PCB designers and engineers with a new routing option to choose from.
If you want to know more about PCB vias, the following video is for you:
In electronics, the fundamental idea is that short conductive routes should be used to minimize interference and signal noise to a minimum. Long pathways cause signal interference, which causes the signals to be disrupted. And at this moment, blind vias PCB demonstrate their abilities.
Blind vias are short and used as per needs. They avoid unnecessary length, unlike through-hole vias. This helps to reduce parasitic capacitance. As a straightforward type of path, blind vias ensure and intensify signal integrity.

Blind Vias Ensure Signal Integrity On PCBs
Blind vias also prevent signal degradation and reflections. If the signal is discontinued, it could affect the signal and power integrity. And this will harm the high-speed designs. But, blind vias PCBs prevent the mentioned cons. For this benefit, high-speed signal lines utilize blind vias.
Primarily, four types of PCB blind via fabrication process are used in blind vias PCBs. They are discussed below.
Sequential lamination begins at the very beginning of the PCB layer techniques and proceeds in a clockwise direction. In all products, a very thin laminate is subjected to a series of processes step by step. It is most often used for double-sided printed circuit boards (PCBs).
Blind vias PCBs complete coating on all layers with a sequential process. Drilling, etching, and plating are the last steps in the manufacturing process. It is also a little expensive process.
The sequential blind vias procedure becomes costly as a result of the process complexity.
A photosensitive resin is applied to the core of the printed circuit board (PCB) in the photo-defined process. After this, you need to bring the board to light. The light will help to harden the substrates.
The etching solution is used to remove the material from the photosensitive sheet once it has hardened. The copper is then placed into the holes in the steel.
When utilized in large quantities, photo-defined blind vias PCBs are a cost-effective solution.
The controlled depth process uses drilling techniques to create holes on the PCBs. In contrast to through-hole drilling, the controlled drilling is halted in a specific layer of the blind vias PCB.
It is the most cost-effective method of producing blind vias on printed circuit boards. The regulated depth procedure requires the smallest drill size possible, which is 0.15 mm.
The laser drilling is utilized after finishing the lamination of all internal layers of the PCB. But you have to do this before finishing the outer layers. An advantage of laser drilling is that it could be done together in copper and dielectric materials.

Laser Drilling Is A Cost-Effective Blind VIa Fabrication
It is one of the most cost-effective blind vias PCB processes.
The general design steps for making PCBs follow several gradual tasks. Here are the complete steps to design a blind vias PCB.
Any electronics starts with a diagram. The diagram is the primary design blueprint for the circuit. A schematic diagram determines how the shape will be, how the components will be placed on the board.
Also, other details are described in the schematic diagram. So, you have to plan your blind vias PCB and implement the design in the schematic diagram.
After drawing the diagram, you have to import the schematic capture to your layout design software to design the PCB layout. Based on the diagram, design the basic and a blank layout of the blind vias PCB.
Determine and design the layer stack-ups.
After successfully designing the layout, now the time is to print the final layout into the blind vias PCB board. You have to ensure the proper printing of the layout on the board. You can use different PCB printing technology such as 3D printing, laser printing, or heat-and-pressure printing.
Check on how 3D PCB printing works:
Now, the time is to etch the conductive traces. When using chemical, heat, and pressure printing, you must etch the traces separately after PCB printing. Ferric chloride, Alkaline, sulfuric acid, etc., are used to etch the conductive traces.

Conductive Traces On The PCB
After etching, drill the blind vias on your blind vias PCB.
After successfully etching and via creating, now the time is for placing the components. You need to determine the elements during the schematic drawing. Because the purposes of the PCBs decide which features would be used.
Place the digital and analog components separated. Take utmost care during the soldering process. You also can use press-fit PCB components assembling technology to assemble the parts.
The components assembling is the final step of making the blind vias PCB. After placing the components correctly, your PCB is ready to perform in real-life applications.
You will find the following features on blind vias PCB:

Blind Vias PCB Features More Holes
In typical through-hole vias PCB, through-hole creates unnecessary holes from the surface layer to the bottom layer. But, in the blind vias PCBs, there is no need for extra drilling. For this, matching impedance is adequately sustained, which helps to keep the consistent signal integrity.
Also, the workload is significantly reduced in blind vias PCB, which increases the lifespan of the PCBs.

Blind Vias PCB Ensure More Space
PCB designs consistently reduce the pad’s and via’s size gradually. If the PCB thickness does not comply with reducing proportionally, the reliability of the PCB will be a failure. The blind vias PCB fixes the matter.
Blind vias PCB ensure more spaces for proper wiring. Also, the appropriate spacing provides shielding for the wiring, which significantly increases the electrical performance of the PCB.
Before starting blind vias implementation on your blind vias PCBs, there are things to consider. Because there are cost facts, value for money facts are related to this. So, let’s check the items.
The vias’ pads will not fit if you don’t consider the annular ring size. The size of the pad is critical while drilling vias.

Keeping Sufficient Annular Ring Is Essential
You need to remember the tiniest acceptable drill size based on the PCB board thickness because the mechanical drill has its limit. So, you have to choose the drill size to its limit to drill the hole before being unreliable.
The standard blind via ratio with the mechanical drill is 10:1. That means, if the board is 62 mils thick, the drill will be six mils. If you need extra smaller holes, you can go for micro stacked vias which feature an aspect ratio of 1:1.
Since via is very tiny in length, you must ensure that your blind vias comprise the signal integrity. You have to remove the leftovers of unnecessary metal after drilling from the hole lines.
The designers must consider the route design and the surroundings. Since the routing area extends over the whole board, you must be careful that drilling does not interfere with the routing routes.
Corrosion is the process of oxidation that drives the conductive metal parts of your blind vias PCB to destruction. When the metal is exposed to the environment, it gradually starts a chemical reaction with oxygen.
Due to moisture and water in the open environment, the oxidation accelerated, and the metal corrodes. There are two types of corrosion that might happen in your blind vias PCB traces and vias.
After completing soldering, you will see some leftovers on the boards. These leftovers cause corrosion if not cleaned properly. Also, the older flux materials may include corrosive compounds that might contribute to decay.

Corrosion Is Destructive For PCBs
After the soldering process is completed, removing any chlorine and other solder flux residues is necessary. Any acid that has been used in the soldering process, on the other hand, must be removed as well.
Galvanic and electrolytic corrosion is both electrochemical. Galvanic corrosion occurs when two metals touch on the PCB blind vias. Ionic pollution speeds up deterioration.
When two or more adjacent traces are polluted by electrolytic solution, electrolytic corrosion happens. In this instance, silvers grow. Metal oxides and hydroxides oxidize metal traces contaminated by water.
You can conclude that metal components such as copper and other base metals are the ones that erode the most. So, you must guarantee that the metallic components of your blind vias PCB are protected from corrosion.

Conformal Coating Is One Of The Best Solutions Against Corrosion
Corrosion may be prevented, and it is not an arduous task. One of the most effective ways to avoid corrosion is conformal coating. Surface finishes using gold, silver, tin, and nickel, on the other hand, are an efficient option. All of the remedies described above act as protective barriers against oxidation and corrosion.
Besides these, you can use aerosol spray, and solder masks. Also, the epoxy coating would be another best way to protect your boards from corrosion. All that remains is for you to decide the most appropriate option to use.
EMI refers to Electromagnetic Interference. It does not matter that you follow the best design rules to design your blind vias PCB. Some parts of your PCB will indeed produce EMI. But EMI shielding and filtering can help you to keep the quantity of EMI low.
Following are some effective EMI shielding and filtering that you may use for your PCBs.

Component Shielding Prevents EMI
The shielding technique will prevent the entering of EMI into the circuitry. A Faraday Cage, for example, may be used to encapsulate the board to avoid radiofrequency waves.
The high heating issue is one of the alarming issues in electronics. High heat can harm and damage your blind vias PCB in many ways. They may help to raise interferences, signal distortion, oxidation, and overall failure.
There are many reasons behind introducing the high heat on the PCBs. Following are some of the high-heat causes in PCBs.

High Heat Causes Malfunction To The Blind Vias PCB Parts
There are several effective ways to prevent the rise of high heat. But, these are the combination of various attempts. So, different practical steps may help you reduce the high heat on your blind vias PCBs.

Properly Placed Heatsink Dissipate The High Heat From PCB
Surface finishes are coating the conductive metals of the blind vias PCBs from oxidation and corrosion. The copper area of the blind vias PCBs can quickly oxidize. The surface finishes are one of the most effective preventions against oxidation.
There are different types of surface finishes or surface coatings available. They are mentioned with their basic features as follows.

ENIG Surface Coating On PCB
Among the RoHS compliant surface coatings, immersion silver and immersion tin are also popular. They are cost-effective and efficiently can handle their responsibilities.
You should know the electrical property compliance before choosing PCB material for your blind vias PCB. The material should comply with the range of the following electrical properties.
For choosing the blind vias PCB material, you should keep the following things in mind.

Conductive Copper Foil
The dimensions and position of the conductive trace should be chosen following the features of the blind vias PCB materials. This matching is required for the PCB’s signal strength to be as high as possible. Furthermore, the signal range will be specific. This phenomenon is referred to as impedance matching of the PCB.
The primary purpose of the conductive PCB traces is to carry the signal from the transmitter to the receiver as quickly as possible. Additionally, the signal must be transferred across the travel length of the traces. And it is here that the matching impedance is of the utmost importance.
To ensure that the signal is successfully transmitted, the impedance of the traces must be matched. Because of the distorted signal caused by mismatched impedance, the desired output will not be received.
Grounding is the return path of the current flow to the earth to avoid the unusual current. Grounding is one of the essential parts for the blind vias PCBs, for instance, for the electronics for proper functioning.

A Dedicated Grounding Point Is An Ideal Option For Proper Grounding
There are some basic rules of proper grounding. The rules can be mentioned as follows.
It is essential to catch a reliable, experienced, professional manufacturer to produce the best blind vias PCB.
So, how could you consider a manufacturer perfect among the hundreds of manufacturers?
There are some essential features they must have. Then you can consider them as a perfect manufacturer for your PCB production.
The features mentioned above verify the manufacturer as a great PCB manufacturer.
We hope you got the things about blind vias PCB. Producing efficient blind vias PCBs is the precondition for a profitable business. You must have a concern about this matter. And a great reliable PCB manufacturer can ensure you excellent quality products.
You can get your PCB production from SMTFAB. SMTFAB is one of the leading PCB manufacturers in China. We provide excellent quality blind vias PCB production with the utmost experience and skills.
Due to the miniaturization of digital products, Blind Vias PCBs are in great demand. SMTFAB has upped production of High-density and high-frequency boards. With SMTFAB, these Blind Vias PCBs are 100% well-made to satisfy you.
When you need a trustworthy supplier of PCBs, you can turn to SMTFAB. We have refined the production of Blind Vias PCB as well as Microvia PCBs. So, every PCB that comes out of our plant is defect-free.
SMTFAB is also considerate of your needs as an EMS. If you need a huge order, we will make it a possibility. Aside from being the go-to supplier of giant companies domestically, we have customers all over the world. This is why our sales team is trained to focus on your needs.
Whatever type of Blind Vias PCB you require, just tell us. We will accommodate all sorts and types of design requests. SMTFAB will give you too the CAD and CAM reports, which are very much necessary.
For Quality Assurance, you can be sure that our Blind Vias PCBs follow updated rules. As all reputable PCB manufacturers should be, we are ISO 9001 (QMS) and 14001 (environmental standards) compliant.

You will find our payment terms flexible, depending on the type of your order. As well, our easy-to-access payment channels make transactions speedy for you.
So, reduce delays in your business. Call SMTFAB now to order your Blind Vias PCB!
PCBs are the core powerhouse of electronics that connect the electronic components. The components generate the functionality of the electronics. Blind vias PCB is one kind of PCB that is made with particular vias.
You may have questions about vias and its objective. You are in the right place if you want to know about blind vias printed circuit boards. You will find here a discussion and many answers about blind vias PCB and related facts to production.
Go through the article thoroughly to find the things unveiled.
We must first understand what a via is before proceeding to the blind vias PCB. The term “via” refers to the electrical connections through the copper layers of multilayer printed circuit boards. Blind vias are an effective form of vias.
Blind vias are drilled in the PCB, starting from any outer to one or more inner layers. This is referred to as a blind via. However, it does not pass through the opposing outer layer and out the other side. PCBs with blind vias are referred to as blind vias PCBs.

Blind Via With Other Vias On PCB
Blind vias are used to make electrical connections between layers of a PCB. You will find blind vias in HDI PCBs. Besides this, blind vias help to reduce the size of PCBs. Additionally, signal integrity is guaranteed.
Blind vias in blind vias PCBs allow for the connecting of components according to requirements. Unlike through-hole vias, they do not needlessly pass through all layers, even if they are not required to do so in some instances. It provides PCB designers and engineers with a new routing option to choose from.
If you want to know more about PCB vias, the following video is for you:
In electronics, the fundamental idea is that short conductive routes should be used to minimize interference and signal noise to a minimum. Long pathways cause signal interference, which causes the signals to be disrupted. And at this moment, blind vias PCB demonstrate their abilities.
Blind vias are short and used as per needs. They avoid unnecessary length, unlike through-hole vias. This helps to reduce parasitic capacitance. As a straightforward type of path, blind vias ensure and intensify signal integrity.

Blind Vias Ensure Signal Integrity On PCBs
Blind vias also prevent signal degradation and reflections. If the signal is discontinued, it could affect the signal and power integrity. And this will harm the high-speed designs. But, blind vias PCBs prevent the mentioned cons. For this benefit, high-speed signal lines utilize blind vias.
Primarily, four types of PCB blind via fabrication process are used in blind vias PCBs. They are discussed below.
Sequential lamination begins at the very beginning of the PCB layer techniques and proceeds in a clockwise direction. In all products, a very thin laminate is subjected to a series of processes step by step. It is most often used for double-sided printed circuit boards (PCBs).
Blind vias PCBs complete coating on all layers with a sequential process. Drilling, etching, and plating are the last steps in the manufacturing process. It is also a little expensive process.
The sequential blind vias procedure becomes costly as a result of the process complexity.
A photosensitive resin is applied to the core of the printed circuit board (PCB) in the photo-defined process. After this, you need to bring the board to light. The light will help to harden the substrates.
The etching solution is used to remove the material from the photosensitive sheet once it has hardened. The copper is then placed into the holes in the steel.
When utilized in large quantities, photo-defined blind vias PCBs are a cost-effective solution.
The controlled depth process uses drilling techniques to create holes on the PCBs. In contrast to through-hole drilling, the controlled drilling is halted in a specific layer of the blind vias PCB.
It is the most cost-effective method of producing blind vias on printed circuit boards. The regulated depth procedure requires the smallest drill size possible, which is 0.15 mm.
The laser drilling is utilized after finishing the lamination of all internal layers of the PCB. But you have to do this before finishing the outer layers. An advantage of laser drilling is that it could be done together in copper and dielectric materials.

Laser Drilling Is A Cost-Effective Blind VIa Fabrication
It is one of the most cost-effective blind vias PCB processes.
The general design steps for making PCBs follow several gradual tasks. Here are the complete steps to design a blind vias PCB.
Any electronics starts with a diagram. The diagram is the primary design blueprint for the circuit. A schematic diagram determines how the shape will be, how the components will be placed on the board.
Also, other details are described in the schematic diagram. So, you have to plan your blind vias PCB and implement the design in the schematic diagram.
After drawing the diagram, you have to import the schematic capture to your layout design software to design the PCB layout. Based on the diagram, design the basic and a blank layout of the blind vias PCB.
Determine and design the layer stack-ups.
After successfully designing the layout, now the time is to print the final layout into the blind vias PCB board. You have to ensure the proper printing of the layout on the board. You can use different PCB printing technology such as 3D printing, laser printing, or heat-and-pressure printing.
Check on how 3D PCB printing works:
Now, the time is to etch the conductive traces. When using chemical, heat, and pressure printing, you must etch the traces separately after PCB printing. Ferric chloride, Alkaline, sulfuric acid, etc., are used to etch the conductive traces.

Conductive Traces On The PCB
After etching, drill the blind vias on your blind vias PCB.
After successfully etching and via creating, now the time is for placing the components. You need to determine the elements during the schematic drawing. Because the purposes of the PCBs decide which features would be used.
Place the digital and analog components separated. Take utmost care during the soldering process. You also can use press-fit PCB components assembling technology to assemble the parts.
The components assembling is the final step of making the blind vias PCB. After placing the components correctly, your PCB is ready to perform in real-life applications.
You will find the following features on blind vias PCB:

Blind Vias PCB Features More Holes
In typical through-hole vias PCB, through-hole creates unnecessary holes from the surface layer to the bottom layer. But, in the blind vias PCBs, there is no need for extra drilling. For this, matching impedance is adequately sustained, which helps to keep the consistent signal integrity.
Also, the workload is significantly reduced in blind vias PCB, which increases the lifespan of the PCBs.

Blind Vias PCB Ensure More Space
PCB designs consistently reduce the pad’s and via’s size gradually. If the PCB thickness does not comply with reducing proportionally, the reliability of the PCB will be a failure. The blind vias PCB fixes the matter.
Blind vias PCB ensure more spaces for proper wiring. Also, the appropriate spacing provides shielding for the wiring, which significantly increases the electrical performance of the PCB.
Before starting blind vias implementation on your blind vias PCBs, there are things to consider. Because there are cost facts, value for money facts are related to this. So, let’s check the items.
The vias’ pads will not fit if you don’t consider the annular ring size. The size of the pad is critical while drilling vias.

Keeping Sufficient Annular Ring Is Essential
You need to remember the tiniest acceptable drill size based on the PCB board thickness because the mechanical drill has its limit. So, you have to choose the drill size to its limit to drill the hole before being unreliable.
The standard blind via ratio with the mechanical drill is 10:1. That means, if the board is 62 mils thick, the drill will be six mils. If you need extra smaller holes, you can go for micro stacked vias which feature an aspect ratio of 1:1.
Since via is very tiny in length, you must ensure that your blind vias comprise the signal integrity. You have to remove the leftovers of unnecessary metal after drilling from the hole lines.
The designers must consider the route design and the surroundings. Since the routing area extends over the whole board, you must be careful that drilling does not interfere with the routing routes.
Corrosion is the process of oxidation that drives the conductive metal parts of your blind vias PCB to destruction. When the metal is exposed to the environment, it gradually starts a chemical reaction with oxygen.
Due to moisture and water in the open environment, the oxidation accelerated, and the metal corrodes. There are two types of corrosion that might happen in your blind vias PCB traces and vias.
After completing soldering, you will see some leftovers on the boards. These leftovers cause corrosion if not cleaned properly. Also, the older flux materials may include corrosive compounds that might contribute to decay.

Corrosion Is Destructive For PCBs
After the soldering process is completed, removing any chlorine and other solder flux residues is necessary. Any acid that has been used in the soldering process, on the other hand, must be removed as well.
Galvanic and electrolytic corrosion is both electrochemical. Galvanic corrosion occurs when two metals touch on the PCB blind vias. Ionic pollution speeds up deterioration.
When two or more adjacent traces are polluted by electrolytic solution, electrolytic corrosion happens. In this instance, silvers grow. Metal oxides and hydroxides oxidize metal traces contaminated by water.
You can conclude that metal components such as copper and other base metals are the ones that erode the most. So, you must guarantee that the metallic components of your blind vias PCB are protected from corrosion.

Conformal Coating Is One Of The Best Solutions Against Corrosion
Corrosion may be prevented, and it is not an arduous task. One of the most effective ways to avoid corrosion is conformal coating. Surface finishes using gold, silver, tin, and nickel, on the other hand, are an efficient option. All of the remedies described above act as protective barriers against oxidation and corrosion.
Besides these, you can use aerosol spray, and solder masks. Also, the epoxy coating would be another best way to protect your boards from corrosion. All that remains is for you to decide the most appropriate option to use.
EMI refers to Electromagnetic Interference. It does not matter that you follow the best design rules to design your blind vias PCB. Some parts of your PCB will indeed produce EMI. But EMI shielding and filtering can help you to keep the quantity of EMI low.
Following are some effective EMI shielding and filtering that you may use for your PCBs.

Component Shielding Prevents EMI
The shielding technique will prevent the entering of EMI into the circuitry. A Faraday Cage, for example, may be used to encapsulate the board to avoid radiofrequency waves.
The high heating issue is one of the alarming issues in electronics. High heat can harm and damage your blind vias PCB in many ways. They may help to raise interferences, signal distortion, oxidation, and overall failure.
There are many reasons behind introducing the high heat on the PCBs. Following are some of the high-heat causes in PCBs.

High Heat Causes Malfunction To The Blind Vias PCB Parts
There are several effective ways to prevent the rise of high heat. But, these are the combination of various attempts. So, different practical steps may help you reduce the high heat on your blind vias PCBs.

Properly Placed Heatsink Dissipate The High Heat From PCB
Surface finishes are coating the conductive metals of the blind vias PCBs from oxidation and corrosion. The copper area of the blind vias PCBs can quickly oxidize. The surface finishes are one of the most effective preventions against oxidation.
There are different types of surface finishes or surface coatings available. They are mentioned with their basic features as follows.

ENIG Surface Coating On PCB
Among the RoHS compliant surface coatings, immersion silver and immersion tin are also popular. They are cost-effective and efficiently can handle their responsibilities.
You should know the electrical property compliance before choosing PCB material for your blind vias PCB. The material should comply with the range of the following electrical properties.
For choosing the blind vias PCB material, you should keep the following things in mind.

Conductive Copper Foil
The dimensions and position of the conductive trace should be chosen following the features of the blind vias PCB materials. This matching is required for the PCB’s signal strength to be as high as possible. Furthermore, the signal range will be specific. This phenomenon is referred to as impedance matching of the PCB.
The primary purpose of the conductive PCB traces is to carry the signal from the transmitter to the receiver as quickly as possible. Additionally, the signal must be transferred across the travel length of the traces. And it is here that the matching impedance is of the utmost importance.
To ensure that the signal is successfully transmitted, the impedance of the traces must be matched. Because of the distorted signal caused by mismatched impedance, the desired output will not be received.
Grounding is the return path of the current flow to the earth to avoid the unusual current. Grounding is one of the essential parts for the blind vias PCBs, for instance, for the electronics for proper functioning.

A Dedicated Grounding Point Is An Ideal Option For Proper Grounding
There are some basic rules of proper grounding. The rules can be mentioned as follows.
It is essential to catch a reliable, experienced, professional manufacturer to produce the best blind vias PCB.
So, how could you consider a manufacturer perfect among the hundreds of manufacturers?
There are some essential features they must have. Then you can consider them as a perfect manufacturer for your PCB production.
The features mentioned above verify the manufacturer as a great PCB manufacturer.
We hope you got the things about blind vias PCB. Producing efficient blind vias PCBs is the precondition for a profitable business. You must have a concern about this matter. And a great reliable PCB manufacturer can ensure you excellent quality products.
You can get your PCB production from SMTFAB. SMTFAB is one of the leading PCB manufacturers in China. We provide excellent quality blind vias PCB production with the utmost experience and skills.
Due to the miniaturization of digital products, Blind Vias PCBs are in great demand. SMTFAB has upped production of High-density and high-frequency boards. With SMTFAB, these Blind Vias PCBs are 100% well-made to satisfy you.
When you need a trustworthy supplier of PCBs, you can turn to SMTFAB. We have refined the production of Blind Vias PCB as well as Microvia PCBs. So, every PCB that comes out of our plant is defect-free.
SMTFAB is also considerate of your needs as an EMS. If you need a huge order, we will make it a possibility. Aside from being the go-to supplier of giant companies domestically, we have customers all over the world. This is why our sales team is trained to focus on your needs.
Whatever type of Blind Vias PCB you require, just tell us. We will accommodate all sorts and types of design requests. SMTFAB will give you too the CAD and CAM reports, which are very much necessary.
For Quality Assurance, you can be sure that our Blind Vias PCBs follow updated rules. As all reputable PCB manufacturers should be, we are ISO 9001 (QMS) and 14001 (environmental standards) compliant.

You will find our payment terms flexible, depending on the type of your order. As well, our easy-to-access payment channels make transactions speedy for you.
So, reduce delays in your business. Call SMTFAB now to order your Blind Vias PCB!
PCBs are the core powerhouse of electronics that connect the electronic components. The components generate the functionality of the electronics. Blind vias PCB is one kind of PCB that is made with particular vias.
You may have questions about vias and its objective. You are in the right place if you want to know about blind vias printed circuit boards. You will find here a discussion and many answers about blind vias PCB and related facts to production.
Go through the article thoroughly to find the things unveiled.
We must first understand what a via is before proceeding to the blind vias PCB. The term “via” refers to the electrical connections through the copper layers of multilayer printed circuit boards. Blind vias are an effective form of vias.
Blind vias are drilled in the PCB, starting from any outer to one or more inner layers. This is referred to as a blind via. However, it does not pass through the opposing outer layer and out the other side. PCBs with blind vias are referred to as blind vias PCBs.

Blind Via With Other Vias On PCB
Blind vias are used to make electrical connections between layers of a PCB. You will find blind vias in HDI PCBs. Besides this, blind vias help to reduce the size of PCBs. Additionally, signal integrity is guaranteed.
Blind vias in blind vias PCBs allow for the connecting of components according to requirements. Unlike through-hole vias, they do not needlessly pass through all layers, even if they are not required to do so in some instances. It provides PCB designers and engineers with a new routing option to choose from.
If you want to know more about PCB vias, the following video is for you:
In electronics, the fundamental idea is that short conductive routes should be used to minimize interference and signal noise to a minimum. Long pathways cause signal interference, which causes the signals to be disrupted. And at this moment, blind vias PCB demonstrate their abilities.
Blind vias are short and used as per needs. They avoid unnecessary length, unlike through-hole vias. This helps to reduce parasitic capacitance. As a straightforward type of path, blind vias ensure and intensify signal integrity.

Blind Vias Ensure Signal Integrity On PCBs
Blind vias also prevent signal degradation and reflections. If the signal is discontinued, it could affect the signal and power integrity. And this will harm the high-speed designs. But, blind vias PCBs prevent the mentioned cons. For this benefit, high-speed signal lines utilize blind vias.
Primarily, four types of PCB blind via fabrication process are used in blind vias PCBs. They are discussed below.
Sequential lamination begins at the very beginning of the PCB layer techniques and proceeds in a clockwise direction. In all products, a very thin laminate is subjected to a series of processes step by step. It is most often used for double-sided printed circuit boards (PCBs).
Blind vias PCBs complete coating on all layers with a sequential process. Drilling, etching, and plating are the last steps in the manufacturing process. It is also a little expensive process.
The sequential blind vias procedure becomes costly as a result of the process complexity.
A photosensitive resin is applied to the core of the printed circuit board (PCB) in the photo-defined process. After this, you need to bring the board to light. The light will help to harden the substrates.
The etching solution is used to remove the material from the photosensitive sheet once it has hardened. The copper is then placed into the holes in the steel.
When utilized in large quantities, photo-defined blind vias PCBs are a cost-effective solution.
The controlled depth process uses drilling techniques to create holes on the PCBs. In contrast to through-hole drilling, the controlled drilling is halted in a specific layer of the blind vias PCB.
It is the most cost-effective method of producing blind vias on printed circuit boards. The regulated depth procedure requires the smallest drill size possible, which is 0.15 mm.
The laser drilling is utilized after finishing the lamination of all internal layers of the PCB. But you have to do this before finishing the outer layers. An advantage of laser drilling is that it could be done together in copper and dielectric materials.

Laser Drilling Is A Cost-Effective Blind VIa Fabrication
It is one of the most cost-effective blind vias PCB processes.
The general design steps for making PCBs follow several gradual tasks. Here are the complete steps to design a blind vias PCB.
Any electronics starts with a diagram. The diagram is the primary design blueprint for the circuit. A schematic diagram determines how the shape will be, how the components will be placed on the board.
Also, other details are described in the schematic diagram. So, you have to plan your blind vias PCB and implement the design in the schematic diagram.
After drawing the diagram, you have to import the schematic capture to your layout design software to design the PCB layout. Based on the diagram, design the basic and a blank layout of the blind vias PCB.
Determine and design the layer stack-ups.
After successfully designing the layout, now the time is to print the final layout into the blind vias PCB board. You have to ensure the proper printing of the layout on the board. You can use different PCB printing technology such as 3D printing, laser printing, or heat-and-pressure printing.
Check on how 3D PCB printing works:
Now, the time is to etch the conductive traces. When using chemical, heat, and pressure printing, you must etch the traces separately after PCB printing. Ferric chloride, Alkaline, sulfuric acid, etc., are used to etch the conductive traces.

Conductive Traces On The PCB
After etching, drill the blind vias on your blind vias PCB.
After successfully etching and via creating, now the time is for placing the components. You need to determine the elements during the schematic drawing. Because the purposes of the PCBs decide which features would be used.
Place the digital and analog components separated. Take utmost care during the soldering process. You also can use press-fit PCB components assembling technology to assemble the parts.
The components assembling is the final step of making the blind vias PCB. After placing the components correctly, your PCB is ready to perform in real-life applications.
You will find the following features on blind vias PCB:

Blind Vias PCB Features More Holes
In typical through-hole vias PCB, through-hole creates unnecessary holes from the surface layer to the bottom layer. But, in the blind vias PCBs, there is no need for extra drilling. For this, matching impedance is adequately sustained, which helps to keep the consistent signal integrity.
Also, the workload is significantly reduced in blind vias PCB, which increases the lifespan of the PCBs.

Blind Vias PCB Ensure More Space
PCB designs consistently reduce the pad’s and via’s size gradually. If the PCB thickness does not comply with reducing proportionally, the reliability of the PCB will be a failure. The blind vias PCB fixes the matter.
Blind vias PCB ensure more spaces for proper wiring. Also, the appropriate spacing provides shielding for the wiring, which significantly increases the electrical performance of the PCB.
Before starting blind vias implementation on your blind vias PCBs, there are things to consider. Because there are cost facts, value for money facts are related to this. So, let’s check the items.
The vias’ pads will not fit if you don’t consider the annular ring size. The size of the pad is critical while drilling vias.

Keeping Sufficient Annular Ring Is Essential
You need to remember the tiniest acceptable drill size based on the PCB board thickness because the mechanical drill has its limit. So, you have to choose the drill size to its limit to drill the hole before being unreliable.
The standard blind via ratio with the mechanical drill is 10:1. That means, if the board is 62 mils thick, the drill will be six mils. If you need extra smaller holes, you can go for micro stacked vias which feature an aspect ratio of 1:1.
Since via is very tiny in length, you must ensure that your blind vias comprise the signal integrity. You have to remove the leftovers of unnecessary metal after drilling from the hole lines.
The designers must consider the route design and the surroundings. Since the routing area extends over the whole board, you must be careful that drilling does not interfere with the routing routes.
Corrosion is the process of oxidation that drives the conductive metal parts of your blind vias PCB to destruction. When the metal is exposed to the environment, it gradually starts a chemical reaction with oxygen.
Due to moisture and water in the open environment, the oxidation accelerated, and the metal corrodes. There are two types of corrosion that might happen in your blind vias PCB traces and vias.
After completing soldering, you will see some leftovers on the boards. These leftovers cause corrosion if not cleaned properly. Also, the older flux materials may include corrosive compounds that might contribute to decay.

Corrosion Is Destructive For PCBs
After the soldering process is completed, removing any chlorine and other solder flux residues is necessary. Any acid that has been used in the soldering process, on the other hand, must be removed as well.
Galvanic and electrolytic corrosion is both electrochemical. Galvanic corrosion occurs when two metals touch on the PCB blind vias. Ionic pollution speeds up deterioration.
When two or more adjacent traces are polluted by electrolytic solution, electrolytic corrosion happens. In this instance, silvers grow. Metal oxides and hydroxides oxidize metal traces contaminated by water.
You can conclude that metal components such as copper and other base metals are the ones that erode the most. So, you must guarantee that the metallic components of your blind vias PCB are protected from corrosion.

Conformal Coating Is One Of The Best Solutions Against Corrosion
Corrosion may be prevented, and it is not an arduous task. One of the most effective ways to avoid corrosion is conformal coating. Surface finishes using gold, silver, tin, and nickel, on the other hand, are an efficient option. All of the remedies described above act as protective barriers against oxidation and corrosion.
Besides these, you can use aerosol spray, and solder masks. Also, the epoxy coating would be another best way to protect your boards from corrosion. All that remains is for you to decide the most appropriate option to use.
EMI refers to Electromagnetic Interference. It does not matter that you follow the best design rules to design your blind vias PCB. Some parts of your PCB will indeed produce EMI. But EMI shielding and filtering can help you to keep the quantity of EMI low.
Following are some effective EMI shielding and filtering that you may use for your PCBs.

Component Shielding Prevents EMI
The shielding technique will prevent the entering of EMI into the circuitry. A Faraday Cage, for example, may be used to encapsulate the board to avoid radiofrequency waves.
The high heating issue is one of the alarming issues in electronics. High heat can harm and damage your blind vias PCB in many ways. They may help to raise interferences, signal distortion, oxidation, and overall failure.
There are many reasons behind introducing the high heat on the PCBs. Following are some of the high-heat causes in PCBs.

High Heat Causes Malfunction To The Blind Vias PCB Parts
There are several effective ways to prevent the rise of high heat. But, these are the combination of various attempts. So, different practical steps may help you reduce the high heat on your blind vias PCBs.

Properly Placed Heatsink Dissipate The High Heat From PCB
Surface finishes are coating the conductive metals of the blind vias PCBs from oxidation and corrosion. The copper area of the blind vias PCBs can quickly oxidize. The surface finishes are one of the most effective preventions against oxidation.
There are different types of surface finishes or surface coatings available. They are mentioned with their basic features as follows.

ENIG Surface Coating On PCB
Among the RoHS compliant surface coatings, immersion silver and immersion tin are also popular. They are cost-effective and efficiently can handle their responsibilities.
You should know the electrical property compliance before choosing PCB material for your blind vias PCB. The material should comply with the range of the following electrical properties.
For choosing the blind vias PCB material, you should keep the following things in mind.

Conductive Copper Foil
The dimensions and position of the conductive trace should be chosen following the features of the blind vias PCB materials. This matching is required for the PCB’s signal strength to be as high as possible. Furthermore, the signal range will be specific. This phenomenon is referred to as impedance matching of the PCB.
The primary purpose of the conductive PCB traces is to carry the signal from the transmitter to the receiver as quickly as possible. Additionally, the signal must be transferred across the travel length of the traces. And it is here that the matching impedance is of the utmost importance.
To ensure that the signal is successfully transmitted, the impedance of the traces must be matched. Because of the distorted signal caused by mismatched impedance, the desired output will not be received.
Grounding is the return path of the current flow to the earth to avoid the unusual current. Grounding is one of the essential parts for the blind vias PCBs, for instance, for the electronics for proper functioning.

A Dedicated Grounding Point Is An Ideal Option For Proper Grounding
There are some basic rules of proper grounding. The rules can be mentioned as follows.
It is essential to catch a reliable, experienced, professional manufacturer to produce the best blind vias PCB.
So, how could you consider a manufacturer perfect among the hundreds of manufacturers?
There are some essential features they must have. Then you can consider them as a perfect manufacturer for your PCB production.
The features mentioned above verify the manufacturer as a great PCB manufacturer.
We hope you got the things about blind vias PCB. Producing efficient blind vias PCBs is the precondition for a profitable business. You must have a concern about this matter. And a great reliable PCB manufacturer can ensure you excellent quality products.
You can get your PCB production from SMTFAB. SMTFAB is one of the leading PCB manufacturers in China. We provide excellent quality blind vias PCB production with the utmost experience and skills.
Due to the miniaturization of digital products, Blind Vias PCBs are in great demand. SMTFAB has upped production of High-density and high-frequency boards. With SMTFAB, these Blind Vias PCBs are 100% well-made to satisfy you.
When you need a trustworthy supplier of PCBs, you can turn to SMTFAB. We have refined the production of Blind Vias PCB as well as Microvia PCBs. So, every PCB that comes out of our plant is defect-free.
SMTFAB is also considerate of your needs as an EMS. If you need a huge order, we will make it a possibility. Aside from being the go-to supplier of giant companies domestically, we have customers all over the world. This is why our sales team is trained to focus on your needs.
Whatever type of Blind Vias PCB you require, just tell us. We will accommodate all sorts and types of design requests. SMTFAB will give you too the CAD and CAM reports, which are very much necessary.
For Quality Assurance, you can be sure that our Blind Vias PCBs follow updated rules. As all reputable PCB manufacturers should be, we are ISO 9001 (QMS) and 14001 (environmental standards) compliant.
You will find our payment terms flexible, depending on the type of your order. As well, our easy-to-access payment channels make transactions speedy for you.
So, reduce delays in your business. Call SMTFAB now to order your Blind Vias PCB!
PCBs are the core powerhouse of electronics that connect the electronic components. The components generate the functionality of the electronics. Blind vias PCB is one kind of PCB that is made with particular vias.
You may have questions about vias and its objective. You are in the right place if you want to know about blind vias printed circuit boards. You will find here a discussion and many answers about blind vias PCB and related facts to production.
Go through the article thoroughly to find the things unveiled.
We must first understand what a via is before proceeding to the blind vias PCB. The term “via” refers to the electrical connections through the copper layers of multilayer printed circuit boards. Blind vias are an effective form of vias.
Blind vias are drilled in the PCB, starting from any outer to one or more inner layers. This is referred to as a blind via. However, it does not pass through the opposing outer layer and out the other side. PCBs with blind vias are referred to as blind vias PCBs.
Blind Via With Other Vias On PCB
Blind vias are used to make electrical connections between layers of a PCB. You will find blind vias in HDI PCBs. Besides this, blind vias help to reduce the size of PCBs. Additionally, signal integrity is guaranteed.
Blind vias in blind vias PCBs allow for the connecting of components according to requirements. Unlike through-hole vias, they do not needlessly pass through all layers, even if they are not required to do so in some instances. It provides PCB designers and engineers with a new routing option to choose from.
If you want to know more about PCB vias, the following video is for you:
In electronics, the fundamental idea is that short conductive routes should be used to minimize interference and signal noise to a minimum. Long pathways cause signal interference, which causes the signals to be disrupted. And at this moment, blind vias PCB demonstrate their abilities.
Blind vias are short and used as per needs. They avoid unnecessary length, unlike through-hole vias. This helps to reduce parasitic capacitance. As a straightforward type of path, blind vias ensure and intensify signal integrity.
Blind Vias Ensure Signal Integrity On PCBs
Blind vias also prevent signal degradation and reflections. If the signal is discontinued, it could affect the signal and power integrity. And this will harm the high-speed designs. But, blind vias PCBs prevent the mentioned cons. For this benefit, high-speed signal lines utilize blind vias.
Primarily, four types of PCB blind via fabrication process are used in blind vias PCBs. They are discussed below.
Sequential lamination begins at the very beginning of the PCB layer techniques and proceeds in a clockwise direction. In all products, a very thin laminate is subjected to a series of processes step by step. It is most often used for double-sided printed circuit boards (PCBs).
Blind vias PCBs complete coating on all layers with a sequential process. Drilling, etching, and plating are the last steps in the manufacturing process. It is also a little expensive process.
The sequential blind vias procedure becomes costly as a result of the process complexity.
A photosensitive resin is applied to the core of the printed circuit board (PCB) in the photo-defined process. After this, you need to bring the board to light. The light will help to harden the substrates.
The etching solution is used to remove the material from the photosensitive sheet once it has hardened. The copper is then placed into the holes in the steel.
When utilized in large quantities, photo-defined blind vias PCBs are a cost-effective solution.
The controlled depth process uses drilling techniques to create holes on the PCBs. In contrast to through-hole drilling, the controlled drilling is halted in a specific layer of the blind vias PCB.
It is the most cost-effective method of producing blind vias on printed circuit boards. The regulated depth procedure requires the smallest drill size possible, which is 0.15 mm.
The laser drilling is utilized after finishing the lamination of all internal layers of the PCB. But you have to do this before finishing the outer layers. An advantage of laser drilling is that it could be done together in copper and dielectric materials.
Laser Drilling Is A Cost-Effective Blind VIa Fabrication
It is one of the most cost-effective blind vias PCB processes.
The general design steps for making PCBs follow several gradual tasks. Here are the complete steps to design a blind vias PCB.
Any electronics starts with a diagram. The diagram is the primary design blueprint for the circuit. A schematic diagram determines how the shape will be, how the components will be placed on the board.
Also, other details are described in the schematic diagram. So, you have to plan your blind vias PCB and implement the design in the schematic diagram.
After drawing the diagram, you have to import the schematic capture to your layout design software to design the PCB layout. Based on the diagram, design the basic and a blank layout of the blind vias PCB.
Determine and design the layer stack-ups.
After successfully designing the layout, now the time is to print the final layout into the blind vias PCB board. You have to ensure the proper printing of the layout on the board. You can use different PCB printing technology such as 3D printing, laser printing, or heat-and-pressure printing.
Check on how 3D PCB printing works:
Now, the time is to etch the conductive traces. When using chemical, heat, and pressure printing, you must etch the traces separately after PCB printing. Ferric chloride, Alkaline, sulfuric acid, etc., are used to etch the conductive traces.
Conductive Traces On The PCB
After etching, drill the blind vias on your blind vias PCB.
After successfully etching and via creating, now the time is for placing the components. You need to determine the elements during the schematic drawing. Because the purposes of the PCBs decide which features would be used.
Place the digital and analog components separated. Take utmost care during the soldering process. You also can use press-fit PCB components assembling technology to assemble the parts.
The components assembling is the final step of making the blind vias PCB. After placing the components correctly, your PCB is ready to perform in real-life applications.
You will find the following features on blind vias PCB:
Blind Vias PCB Features More Holes
In typical through-hole vias PCB, through-hole creates unnecessary holes from the surface layer to the bottom layer. But, in the blind vias PCBs, there is no need for extra drilling. For this, matching impedance is adequately sustained, which helps to keep the consistent signal integrity.
Also, the workload is significantly reduced in blind vias PCB, which increases the lifespan of the PCBs.
Blind Vias PCB Ensure More Space
PCB designs consistently reduce the pad’s and via’s size gradually. If the PCB thickness does not comply with reducing proportionally, the reliability of the PCB will be a failure. The blind vias PCB fixes the matter.
Blind vias PCB ensure more spaces for proper wiring. Also, the appropriate spacing provides shielding for the wiring, which significantly increases the electrical performance of the PCB.
Before starting blind vias implementation on your blind vias PCBs, there are things to consider. Because there are cost facts, value for money facts are related to this. So, let’s check the items.
The vias’ pads will not fit if you don’t consider the annular ring size. The size of the pad is critical while drilling vias.
Keeping Sufficient Annular Ring Is Essential
You need to remember the tiniest acceptable drill size based on the PCB board thickness because the mechanical drill has its limit. So, you have to choose the drill size to its limit to drill the hole before being unreliable.
The standard blind via ratio with the mechanical drill is 10:1. That means, if the board is 62 mils thick, the drill will be six mils. If you need extra smaller holes, you can go for micro stacked vias which feature an aspect ratio of 1:1.
Since via is very tiny in length, you must ensure that your blind vias comprise the signal integrity. You have to remove the leftovers of unnecessary metal after drilling from the hole lines.
The designers must consider the route design and the surroundings. Since the routing area extends over the whole board, you must be careful that drilling does not interfere with the routing routes.
Corrosion is the process of oxidation that drives the conductive metal parts of your blind vias PCB to destruction. When the metal is exposed to the environment, it gradually starts a chemical reaction with oxygen.
Due to moisture and water in the open environment, the oxidation accelerated, and the metal corrodes. There are two types of corrosion that might happen in your blind vias PCB traces and vias.
After completing soldering, you will see some leftovers on the boards. These leftovers cause corrosion if not cleaned properly. Also, the older flux materials may include corrosive compounds that might contribute to decay.
Corrosion Is Destructive For PCBs
After the soldering process is completed, removing any chlorine and other solder flux residues is necessary. Any acid that has been used in the soldering process, on the other hand, must be removed as well.
Galvanic and electrolytic corrosion is both electrochemical. Galvanic corrosion occurs when two metals touch on the PCB blind vias. Ionic pollution speeds up deterioration.
When two or more adjacent traces are polluted by electrolytic solution, electrolytic corrosion happens. In this instance, silvers grow. Metal oxides and hydroxides oxidize metal traces contaminated by water.
You can conclude that metal components such as copper and other base metals are the ones that erode the most. So, you must guarantee that the metallic components of your blind vias PCB are protected from corrosion.
Conformal Coating Is One Of The Best Solutions Against Corrosion
Corrosion may be prevented, and it is not an arduous task. One of the most effective ways to avoid corrosion is conformal coating. Surface finishes using gold, silver, tin, and nickel, on the other hand, are an efficient option. All of the remedies described above act as protective barriers against oxidation and corrosion.
Besides these, you can use aerosol spray, and solder masks. Also, the epoxy coating would be another best way to protect your boards from corrosion. All that remains is for you to decide the most appropriate option to use.
EMI refers to Electromagnetic Interference. It does not matter that you follow the best design rules to design your blind vias PCB. Some parts of your PCB will indeed produce EMI. But EMI shielding and filtering can help you to keep the quantity of EMI low.
Following are some effective EMI shielding and filtering that you may use for your PCBs.
Component Shielding Prevents EMI
The shielding technique will prevent the entering of EMI into the circuitry. A Faraday Cage, for example, may be used to encapsulate the board to avoid radiofrequency waves.
The high heating issue is one of the alarming issues in electronics. High heat can harm and damage your blind vias PCB in many ways. They may help to raise interferences, signal distortion, oxidation, and overall failure.
There are many reasons behind introducing the high heat on the PCBs. Following are some of the high-heat causes in PCBs.
High Heat Causes Malfunction To The Blind Vias PCB Parts
There are several effective ways to prevent the rise of high heat. But, these are the combination of various attempts. So, different practical steps may help you reduce the high heat on your blind vias PCBs.
Properly Placed Heatsink Dissipate The High Heat From PCB
Surface finishes are coating the conductive metals of the blind vias PCBs from oxidation and corrosion. The copper area of the blind vias PCBs can quickly oxidize. The surface finishes are one of the most effective preventions against oxidation.
There are different types of surface finishes or surface coatings available. They are mentioned with their basic features as follows.
ENIG Surface Coating On PCB
Among the RoHS compliant surface coatings, immersion silver and immersion tin are also popular. They are cost-effective and efficiently can handle their responsibilities.
You should know the electrical property compliance before choosing PCB material for your blind vias PCB. The material should comply with the range of the following electrical properties.
For choosing the blind vias PCB material, you should keep the following things in mind.
Conductive Copper Foil
The dimensions and position of the conductive trace should be chosen following the features of the blind vias PCB materials. This matching is required for the PCB’s signal strength to be as high as possible. Furthermore, the signal range will be specific. This phenomenon is referred to as impedance matching of the PCB.
The primary purpose of the conductive PCB traces is to carry the signal from the transmitter to the receiver as quickly as possible. Additionally, the signal must be transferred across the travel length of the traces. And it is here that the matching impedance is of the utmost importance.
To ensure that the signal is successfully transmitted, the impedance of the traces must be matched. Because of the distorted signal caused by mismatched impedance, the desired output will not be received.
Grounding is the return path of the current flow to the earth to avoid the unusual current. Grounding is one of the essential parts for the blind vias PCBs, for instance, for the electronics for proper functioning.
A Dedicated Grounding Point Is An Ideal Option For Proper Grounding
There are some basic rules of proper grounding. The rules can be mentioned as follows.
It is essential to catch a reliable, experienced, professional manufacturer to produce the best blind vias PCB.
So, how could you consider a manufacturer perfect among the hundreds of manufacturers?
There are some essential features they must have. Then you can consider them as a perfect manufacturer for your PCB production.
The features mentioned above verify the manufacturer as a great PCB manufacturer.
We hope you got the things about blind vias PCB. Producing efficient blind vias PCBs is the precondition for a profitable business. You must have a concern about this matter. And a great reliable PCB manufacturer can ensure you excellent quality products.
You can get your PCB production from SMTFAB. SMTFAB is one of the leading PCB manufacturers in China. We provide excellent quality blind vias PCB production with the utmost experience and skills.
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