China’s Royally Manufactured Purple PCB Producer | PCBTok
For years now, PCBTok helped customers around the world get their electronics business off the ground with our PCBs. Our products are used by startups and established companies alike. We can help you too!
- 24h quick-turn service for your prototype PCB
- Engineering questions(EQ) will be sending within 1-2hours
- Files receive full CAM review prior to manufacturing
- Offer COC report,micro-section, and soldering sample for your order
PCBTok’s Remarkable Purple PCB
PCBTok’s Purple PCB is a PCB that is made in China and is used for a wide range of applications, such as home appliances, automotive electronics, and industrial control systems. It can be used to build a variety of projects and products, from simple circuits to complex computers.
The board itself is purple and comes with all of the components needed to make it work. The user simply needs to add their own microprocessor or microcontroller along with some memory chips and other components.
This board makes it easy for anyone to create their own custom circuit boards without having any experience with wiring up a circuit on a breadboard or soldering components together. The kit comes with everything you need to make your own project come alive!
Purple PCBs are a unique and colorful way to stand out from the crowd. If you’re looking for a way to make your next project stand out from the rest, purple PCB is the perfect solution.
Purple PCB by Type
Single-sided PCBs are a good choice for a number of reasons. They are often chosen by hobbyists and casual users, but they are also used in professional applications as well because of it’s easiness of usage and simplicity.
This purple PCB has a double-sided design, which means that it is both the top and bottom of the circuit board. It is also very popular because it has a low price point and high quality.
Multilayer PCB is a new kind of printed circuit board that can be used in a variety of applications. It is made with copper, but it has a purple color and is designed to be much stronger than the traditional green PCBs.
High-quality purple PCB that is ideal for many uses. It features high-density copper and low thickness, making it the perfect choice for any application where a rigid board would be useful.
Rigid-Flex PCB is a flexible, rigid printed circuit board that combines the best of both worlds: the flexibility of a flexible circuit board and the durability of a rigid circuit board for better performance of electronic devices.
A custom-built circuit board that allows you to prototype, or test, your electronics designs. For anyone who wants to make their own electronics without having to spend a lot of money.
Purple PCB by Feature (5)
Purple PCB by Surface Finish (6)
PCBTok’s Purple PCB Advantages
PCBTok’s purple PCBs are made of a purple-tinted resin that is UV resistant, making it an ideal choice for outdoor usage. The pigment used to create this color has been tested by a third-party lab and approved for outdoor use, so you can be confident that your boards will be able to withstand the elements.
The Purple PCB is a high quality, inexpensive way to get the professional look you want. The purple color is a perfect match for your favorite purple components and will show off your work in a way that other colors just can’t. This is a great option for those who want their project to stand out without breaking the bank.
The lower price point for PCBTok’s purple PCB means that it’s easier to take risks with this material than with other boards. If something goes wrong, it doesn’t cost as much money to fix or replace the board before moving on to another iteration.

PCBTok’s Purple PCB Advance Fabrication Process
PCBTok is the leading manufacturer of purple PCBs, and we take pride in our process. We understand that purple PCBs have a number of advantages over traditional green PCBs, including improved thermal resistance, increased reliability and durability, and enhanced moisture resistance. But what about the fabrication process?
Our Purple PCB Advance Fabrication Process begins with an advanced thin-film dielectric material that has been specially developed for use with purple PCBs in order to ensure optimal performance. This dielectric material is then laminated onto a top layer of copper foil using standard lamination equipment. In addition, we are able to offer our customers a wide variety of other options such as conformal coating and gold electroplating in order to further enhance their product’s performance characteristics.
Our goal at PCBTok is to provide you with top-quality products at competitive prices so you can focus on what matters most: building your business!
PCBTok’s Purple PCB: What Makes It Advanced?
PCBTok’s Purple PCB is an advanced, highly efficient and versatile product that can be used for a variety of applications. The Purple PCB is made using the latest technology and ensures high quality at affordable prices.
The Purple PCB has many advantages over other products on the market. First, it is lightweight and easy to carry around without any trouble. Second, it is energy efficient and does not require much power to run. Third, the Purple PCB provides high performance in all weather conditions without any need for maintenance or repair. Fourth, it offers excellent connectivity at high speeds with minimal latency which makes it ideal for high-speed applications such as data transfer or video streaming among others. Fifth, this product comes with a 1-year warranty against defects in material or workmanship; therefore, you do not have to worry about buying a defective item from our store!

PCBTok’s Purple PCB in your Electronic Devices


Purple PCB is a type of PCB which has a purple color instead of the common green color that is used for most PCBs. The purple color of PCBs is achieved by using carbon nanotubes to conduct electricity, which are then deposited over copper lines. This process allows for better thermal management and improved signal quality. The use of purple PCBs has become more common as it can be used in both digital and analog circuits, whereas other PCB technologies are usually only used in one or the other.
Due to its high thermal conductivity and low resistivity, purple PCBs are often used in high-power applications such as power supplies and microprocessor cooling systems. In addition to this, these types of circuits often have high requirements for mechanical stability and reliability due to their high current densities; therefore, they require stable materials that can withstand harsh environments such as high temperatures or humidity levels.
White PCB Fabrication
At PCBTok, we believe in the importance of a quality product. Our Purple PCB Quality Assurance program is what sets us apart from other PCB manufacturers and provides you with the best product possible.
Purple PCB Quality Assurance means that every single board we make goes through a rigorous quality control process before it is shipped to you.
This process involves:
- Visible and non-visible inspection of each board by trained staff
- Extensive testing, including a full electrical test
- A thorough review by our board engineers to ensure that each board meets all specifications.
With the unique color and high-quality performance, Superior Purple PCB is a must-have for any electronics project. It also provides excellent heat resistance and moisture resistance, which makes it ideal for use in harsh environments.
Superior Purple PCB has been widely used in many industries such as military equipment, aerospace equipment, medical equipment, communications equipment, power electronics and so on. The superior purple color gives it a unique look that sets it apart from other kinds of PCBs.
This makes it an excellent choice for designers looking to add some style to their products or projects.
OEM & ODM Purple PCB Applications
We provide our customers with the highest quality, lowest-cost and most reliable medical device boards.
Purple PCB is a unique, non-toxic and eco-friendly material that is specially designed to be used in space. It is a great alternative to traditional materials because it has many benefits.
It can increase the speed of your network and make it easier to connect to other devices. The Purple PCB will also help you connect to the internet in less time than before.
Purple PCB for Automotive is that the surface finish is smooth and glossy so that there are no bumps or ridges on the surface which could affect how well your components fit together.
We specialize in manufacturing purple PCBs for aviation equipment such as airplanes and helicopters. We have years of experience working with this type of technology.
Purple PCB Production Details As Following Up
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NO | Item | Technical Specification | ||||||
Standard | Advanced | |||||||
1 | Layer Count | 1-20 layers | 22-40 layer | |||||
2 | Base Material | KB、Shengyi、ShengyiSF305、FR408、FR408HR、IS410、FR406、GETEK、370HR、IT180A、Rogers4350、Rogers400、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) | ||||||
3 | PCB Type | Rigid PCB/FPC/Flex-Rigid | Backplane、HDI、High multi-layer blind&buried PCB、Embedded Capacitance、Embedded resistance board 、Heavy copper power PCB、Backdrill. | |||||
4 | Lamination type | Blind&buried via type | Mechanical blind&burried vias with less than 3 times laminating | Mechanical blind&burried vias with less than 2 times laminating | ||||
HDI PCB | 1+n+1,1+1+n+1+1,2+n+2,3+n+3(n buried vias≤0.3mm),Laser blind via can be filling plating | 1+n+1,1+1+n+1+1,2+n+2,3+n+3(n buried vias≤0.3mm),Laser blind via can be filling plating | ||||||
5 | Finished Board Thickness | 0.2-3.2mm | 3.4-7mm | |||||
6 | Minimum Core Thickness | 0.15mm(6mil) | 0.1mm(4mil) | |||||
7 | Copper Thickness | Min. 1/2 OZ, Max. 4 OZ | Min. 1/3 OZ, Max. 10 OZ | |||||
8 | PTH Wall | 20um(0.8mil) | 25um(1mil) | |||||
9 | Maximum Board Size | 500*600mm(19”*23”) | 1100*500mm(43”*19”) | |||||
10 | Hole | Min laser drilling size | 4mil | 4mil | ||||
Max laser drilling size | 6mil | 6mil | ||||||
Max aspect ratio for Hole plate | 10:1(hole diameter>8mil) | 20:1 | ||||||
Max aspect ratio for laser via filling plating | 0.9:1(Depth included copper thickness) | 1:1(Depth included copper thickness) | ||||||
Max aspect ratio for mechanical depth- control drilling board(Blind hole drilling depth/blind hole size) |
0.8:1(drilling tool size≥10mil) | 1.3:1(drilling tool size≤8mil),1.15:1(drilling tool size≥10mil) | ||||||
Min. depth of Mechanical depth-control(back drill) | 8mil | 8mil | ||||||
Min gap between hole wall and conductor (None blind and buried via PCB) |
7mil(≤8L),9mil(10-14L),10mil(>14L) | 5.5mil(≤8L),6.5mil(10-14L),7mil(>14L) | ||||||
Min gap between hole wall conductor (Blind and buried via PCB) | 8mil(1 times laminating),10mil(2 times laminating), 12mil(3 times laminating) | 7mil(1 time laminating), 8mil(2 times laminating), 9mil(3 times laminating) | ||||||
Min gab between hole wall conductor(Laser blind hole buried via PCB) | 7mil(1+N+1);8mil(1+1+N+1+1 or 2+N+2) | 7mil(1+N+1);8mil(1+1+N+1+1 or 2+N+2) | ||||||
Min space between laser holes and conductor | 6mil | 5mil | ||||||
Min space between hole walls in different net | 10mil | 10mil | ||||||
Min space between hole walls in the same net | 6mil(thru-hole& laser hole PCB),10mil(Mechanical blind&buried PCB) | 6mil(thru-hole& laser hole PCB),10mil(Mechanical blind&buried PCB) | ||||||
Min space bwteen NPTH hole walls | 8mil | 8mil | ||||||
Hole location tolerance | ±2mil | ±2mil | ||||||
NPTH tolerance | ±2mil | ±2mil | ||||||
Pressfit holes tolerance | ±2mil | ±2mil | ||||||
Countersink depth tolerance | ±6mil | ±6mil | ||||||
Countersink hole size tolerance | ±6mil | ±6mil | ||||||
11 | Pad(ring) | Min Pad size for laser drillings | 10mil(for 4mil laser via),11mil(for 5mil laser via) | 10mil(for 4mil laser via),11mil(for 5mil laser via) | ||||
Min Pad size for mechanical drillings | 16mil(8mil drillings) | 16mil(8mil drillings) | ||||||
Min BGA pad size | HASL:10mil, LF HASL:12mil, other surface technics are 10mil(7mil is ok for flash gold) | HASL:10mil, LF HASL:12mil, other surface technics are 7mi | ||||||
Pad size tolerance(BGA) | ±1.5mil(pad size≤10mil);±15%(pad size>10mil) | ±1.2mil(pad size≤12mil);±10%(pad size≥12mil) | ||||||
12 | Width/Space | Internal Layer | 1/2OZ:3/3mil | 1/2OZ:3/3mil | ||||
1OZ: 3/4mil | 1OZ: 3/4mil | |||||||
2OZ: 4/5.5mil | 2OZ: 4/5mil | |||||||
3OZ: 5/8mil | 3OZ: 5/8mil | |||||||
4OZ: 6/11mil | 4OZ: 6/11mil | |||||||
5OZ: 7/14mil | 5OZ: 7/13.5mil | |||||||
6OZ: 8/16mil | 6OZ: 8/15mil | |||||||
7OZ: 9/19mil | 7OZ: 9/18mil | |||||||
8OZ: 10/22mil | 8OZ: 10/21mil | |||||||
9OZ: 11/25mil | 9OZ: 11/24mil | |||||||
10OZ: 12/28mil | 10OZ: 12/27mil | |||||||
External Layer | 1/3OZ:3.5/4mil | 1/3OZ:3/3mil | ||||||
1/2OZ:3.9/4.5mil | 1/2OZ:3.5/3.5mil | |||||||
1OZ: 4.8/5mil | 1OZ: 4.5/5mil | |||||||
1.43OZ(positive):4.5/7 | 1.43OZ(positive):4.5/6 | |||||||
1.43OZ(negative ):5/8 | 1.43OZ(negative ):5/7 | |||||||
2OZ: 6/8mil | 2OZ: 6/7mil | |||||||
3OZ: 6/12mil | 3OZ: 6/10mil | |||||||
4OZ: 7.5/15mil | 4OZ: 7.5/13mil | |||||||
5OZ: 9/18mil | 5OZ: 9/16mil | |||||||
6OZ: 10/21mil | 6OZ: 10/19mil | |||||||
7OZ: 11/25mil | 7OZ: 11/22mil | |||||||
8OZ: 12/29mil | 8OZ: 12/26mil | |||||||
9OZ: 13/33mil | 9OZ: 13/30mil | |||||||
10OZ: 14/38mil | 10OZ: 14/35mil | |||||||
13 | Dimension Tolerance | Hole Position | 0.08 ( 3 mils) | |||||
Conductor Width(W) | 20% Deviation of Master A/W |
1mil Deviation of Master A/W |
||||||
Outline Dimension | 0.15 mm ( 6 mils) | 0.10 mm ( 4 mils) | ||||||
Conductors & Outline ( C – O ) |
0.15 mm ( 6 mils) | 0.13 mm ( 5 mils) | ||||||
Warp and Twist | 0.75% | 0.50% | ||||||
14 | Solder Mask | Max drilling tool size for via filled with Soldermask (single side) | 35.4mil | 35.4mil | ||||
Soldermask color | Green, Black, Blue, Red, White, Yellow,Purple matte/glossy | |||||||
Silkscreen color | White, Black,Blue,Yellow | |||||||
Max hole size for via filled with Blue glue aluminium | 197mil | 197mil | ||||||
Finish hole size for via filled with resin | 4-25.4mil | 4-25.4mil | ||||||
Max aspect ratio for via filled with resin board | 8:1 | 12:1 | ||||||
Min width of soldermask bridge | Base copper≤0.5 oz、Immersion Tin: 7.5mil(Black), 5.5mil(Other color) , 8mil( on copper area) | |||||||
Base copper≤0.5 oz、Finish treatment not Immersion Tin : 5.5 mil(Black,extremity 5mil), 4mil(Other color,extremity 3.5mil) , 8mil( on copper area |
||||||||
Base coppe 1 oz: 4mil(Green), 5mil(Other color) , 5.5mil(Black,extremity 5mil),8mil( on copper area) | ||||||||
Base copper 1.43 oz: 4mil(Green), 5.5mil(Other color) , 6mil(Black), 8mil( on copper area) | ||||||||
Base copper 2 oz-4 oz: 6mil, 8mil( on copper area) | ||||||||
15 | Surface Treatment | Lead free | 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 finge | |||||
Leaded | Leaded HASL | |||||||
Aspect ratio | 10:1(HASL Lead free、HASL Lead、ENIG、Immersion Tin、Immersion silver、ENEPIG);8:1(OSP) | |||||||
Max finished size | HASL Lead 22″*39″;HASL Lead free 22″*24″;Flash gold 24″*24″;Hard gold 24″*28″;ENIG 21″*27″;Flash gold(electroplated gold) 21″*48″;Immersion Tin 16″*21″;Immersion silver 16″*18″;OSP 24″*40″; | |||||||
Min finished size | HASL Lead 5″*6″;HASL Lead free 10″*10″;Flash gold 12″*16″;Hard gold 3″*3″;Flash gold(electroplated gold) 8″*10″;Immersion Tin 2″*4″;Immersion silver 2″*4″;OSP 2″*2″; | |||||||
PCB thickness | HASL Lead 0.6-4.0mm;HASL Lead free 0.6-4.0mm;Flash gold 1.0-3.2mm;Hard gold 0.1-5.0mm;ENIG 0.2-7.0mm;Flash gold(electroplated gold) 0.15-5.0mm;Immersion Tin 0.4-5.0mm;Immersion silver 0.4-5.0mm;OSP 0.2-6.0mm | |||||||
Max high to gold finger | 1.5inch | |||||||
Min space between gold fingers | 6mil | |||||||
Min block space to gold fingers | 7.5mil | |||||||
16 | V-Cutting | Panel Size | 500mm X 622 mm ( max. ) | 500mm X 800 mm ( max. ) | ||||
Board Thickness | 0.50 mm (20mil) min. | 0.30 mm (12mil) min. | ||||||
Remain Thickness | 1/3 board thickness | 0.40 +/-0.10mm( 16+/-4 mil ) | ||||||
Tolerance | ±0.13 mm(5mil) | ±0.1 mm(4mil) | ||||||
Groove Width | 0.50 mm (20mil) max. | 0.38 mm (15mil) max. | ||||||
Groove to Groove | 20 mm (787mil) min. | 10 mm (394mil) min. | ||||||
Groove to Trace | 0.45 mm(18mil) min. | 0.38 mm(15mil) min. | ||||||
17 | Slot | Slot size tol.L≥2W | PTH Slot: L:+/-0.13(5mil) W:+/-0.08(3mil) | PTH Slot: L:+/-0.10(4mil) W:+/-0.05(2mil) | ||||
NPTH slot(mm) L+/-0.10 (4mil) W:+/-0.05(2mil) | NPTH slot(mm) L:+/-0.08 (3mil) W:+/-0.05(2mil) | |||||||
18 | Min Spacing from hole edge to hole edge | 0.30-1.60 (Hole Diameter) | 0.15mm(6mil) | 0.10mm(4mil) | ||||
1.61-6.50 (Hole Diameter) | 0.15mm(6mil) | 0.13mm(5mil) | ||||||
19 | Min spacing between hole edge to circuitry pattern | PTH hole: 0.20mm(8mil) | PTH hole: 0.13mm(5mil) | |||||
NPTH hole: 0.18mm(7mil) | NPTH hole: 0.10mm(4mil) | |||||||
20 | Image transfer Registration tol | Circuit pattern vs.index hole | 0.10(4mil) | 0.08(3mil) | ||||
Circuit pattern vs.2nd drill hole | 0.15(6mil) | 0.10(4mil) | ||||||
21 | Registration tolerance of front/back image | 0.075mm(3mil) | 0.05mm(2mil) | |||||
22 | Multilayers | Layer-layer misregistration | 4layers: | 0.15mm(6mil)max. | 4layers: | 0.10mm(4mil) max. | ||
6layers: | 0.20mm(8mil)max. | 6layers: | 0.13mm(5mil) max. | |||||
8layers: | 0.25mm(10mil)max. | 8layers: | 0.15mm(6mil) max. | |||||
Min. Spacing from Hole Edge to Innerlayer Pattern | 0.225mm(9mil) | 0.15mm(6mil) | ||||||
Min.Spacing from Outline to Innerlayer Pattern | 0.38mm(15mil) | 0.225mm(9mil) | ||||||
Min. board thickness | 4layers:0.30mm(12mil) | 4layers:0.20mm(8mil) | ||||||
6layers:0.60mm(24mil) | 6layers:0.50mm(20mil) | |||||||
8layers:1.0mm(40mil) | 8layers:0.75mm(30mil) | |||||||
Board thickness tolerance | 4layers:+/-0.13mm(5mil) | 4layers:+/-0.10mm(4mil) | ||||||
6layers:+/-0.15mm(6mil) | 6layers:+/-0.13mm(5mil) | |||||||
8-12 layers:+/-0.20mm (8mil) | 8-12 layers:+/-0.15mm (6mil) | |||||||
23 | Insulation Resistance | 10KΩ~20MΩ(typical:5MΩ) | ||||||
24 | Conductivity | <50Ω(typical:25Ω) | ||||||
25 | Test voltage | 250V | ||||||
26 | Impedance control | ±5ohm(<50ohm), ±10%(≥50ohm) |
PCBTok 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 PCBTok and offers very competitive rates to customers of PCBTok.
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 PCBTok, 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.
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 a credit card: Visa, Visa Electron, MasterCard, Maestro.
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Purple PCB: The Ultimate FAQ Guide
If you’ve never worked with purple PCBs before, you may be confused by all the acronyms and buzzwords. Fortunately, we’ve created the ultimate FAQ guide that outlines the best way to use this versatile material. We’ll define a purple PCB and explain why it’s so useful for high-end commercial electronics. The following are brief descriptions of the most frequently asked questions about purple PCBs.
How is a purple PCB manufactured? Depending on the required depth and design constraints, purple PCBs may contain a variety of components. FR-1 and FR-2 paperboard, as well as CEM-1 and CEM-3 laminates, are common boards. Specialty boards, such as ceramic and metal PCBs, are also available. Various types of epoxy glass cloth are also used. For example, FR-4 is made of epoxy resin and woven glass.
What components are available on a purple PCB? High-end boards can be made from any material containing copper, as long as it is the correct size and type. Copper is a common material for PCBs and is necessary to reduce costs. This is also true for copper, the most common copper-based material. Copper-based PCBs can be made from a variety of materials, making them ideal for a variety of applications.
How did you get your hands on purple PCBs? Finding purple PCBs is fairly simple if you know where to look. Purple PCB manufacturers offer a variety of shipping options, including air, ocean, and ground shipping. Air freight is the most expensive and fastest way to obtain PCBs, but ocean freight is also cost-effective. If you are looking for purple PCBs, be sure to work with a reputable, professional manufacturer such as PCBTok.