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Customized 6 Layer Rigid Flex Circuit Design From Shenzhen Manufacture

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Customized 6 Layer Rigid Flex Circuit Design From Shenzhen Manufacture

Country/Region china
City & Province foshan
Categories Active Components
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Product Details

Customized 6 Layer Rigid Flex Circuit Design From Shenzhen Manufacture

 

 

Quick details:

 

Number of layer:6

Board thickness:1.2mm

Brand: ONESEINE

Sample order:Acceptable

Application: Electronics products

Surface finish:Immersion gold

Item:rigid-flex PCB boards

 

Our Services

 

Our Services

We are able to provide you best electronics services We are able to provide you best electronics services.

1)    PCB Production

2)    Service.(FR-4,HI-TG,Aluminum,FPC,TEFLON,Rogers,CEM-1 )

2)       FPC,PCB Copy Service.

3)       PCB Assembly Service. (SMT, BGA, DIP)

4)       IC program with HEX file.

5)       PCBA Housing assembly serivce.

6)       PCBA Final Functional Testing.

7)       PCBA Copy Service.

8)       Electronic Components Purchasing & BOM List Purchasing Services.

9)       PCB SMT Stencil. (Laser cut & Etching)

10)     Cable assembly

 

Why us ?

 

1)  Professional engineer team --help you to check design and do engineering before production

2)  Rich expierences in pcb production industry--provide high quality and competitive price pcb.

3)  After-sales service--every problem you have will get our professional advice and solution.

4)  Constant follow up-- make us have the fast reaction of your requirement.

5)  Inspected by the Inspection Institution--ISO,UL,ROHS cerfiticated

 

Process Capability

 

1) Bare Printed Circuit Board Process Capability:

1

Layers

Single Sided,2 to 18 Layer

2

Board material type

FR4,CEM-1,CEM-3,ceramic substrate board, aluminum based board, high-Tg, Rogers and more

3

Compound material lamination

4 to 6 layers

4

Maximum dimension

610 x 1,100mm

5

Dimension tolerance

±0.13mm

6

Board thickness coverage

0.2 to 6.00mm

7

Board thickness tolerance

±10%

8

DK thickness

0.076 to 6.00mm

9

Minimum line width

0.10mm

10

Minimum line space

0.10mm

11

Outer layer copper thickness

8.75 to 175µm

12

Inner layer copper thickness

17.5 to 175µm

13

Drilling hole diameter (mechanical drill)

0.25 to 6.00mm

14

Finished hole diameter (mechanical drill)

0.20 to 6.00mm

15

Hole diameter tolerance (mechanical drill)

0.05mm

16

Hole position tolerance (mechanical drill)

0.075mm

17

Laser drill hole size

0.10mm

18

Board thickness and hole diameter ratio

10:1

19

Solder mask type

Green, Yellow, Black, Purple, Blue, White and Red

20

Minimum solder mask

Ø0.10mm

21

Minimum size of solder mask separation ring

0.05mm

22

Solder mask oil plug hole diameter

0.25 to 0.60mm

23

Impedance control tolerance

±10%

24

Surface finish

Hot air level, ENIG, immersion silver, gold plating, immersion tin and gold finger

www.oneseine.com

 

Rigid-flex PCB introduction:

 

A rigid-flex PCB (printed circuit board) is a type of circuit board that combines both rigid and flexible materials in its construction. It offers the advantages of both rigid and flexible PCBs, making it suitable for applications where space constraints, complex geometries, and reliable interconnections are important.

 

In a rigid-flex PCB, the board consists of multiple layers of rigid materials, typically FR4, and flexible materials, such as polyimide. The rigid portions provide structural support and accommodate components, while the flexible areas allow the board to bend or fold as needed.

 

Rigid-flex PCBs are commonly used in electronic devices that require a compact form factor, such as smartphones, tablets, wearables, and aerospace applications. They offer several benefits over traditional rigid PCBs, including:

 

Size reduction: Rigid-flex PCBs can eliminate the need for connectors and cables, enabling a significant reduction in space requirements.

Increased reliability: Rigid-flex PCBs have fewer interconnects and solder joints compared to traditional PCBs, reducing the potential points of failure. They also offer better resistance to vibration and thermal stress.

Improved signal integrity: The combination of rigid and flexible materials allows for optimized signal routing, reducing signal loss, and improving overall signal integrity.

Enhanced design flexibility: Rigid-flex PCBs can be designed to fit complex and irregular shapes, conforming to the available space in a device. This flexibility enables innovative product designs.

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