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Double Side Customized FR4 Rigid-Flex PCB For Smart TOY 1OZ Copper

Shenzhen Xinchenger Electronic Co.,Ltd

Double Side Customized FR4 Rigid-Flex PCB For Smart TOY 1OZ Copper

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Brand Name : XCE

Model Number : XCERigidFlex PCB

Certification : CE,ROHS, FCC,ISO9008,SGS,UL

Place of Origin : China

MOQ : 1pc

Price : negotiation

Supply Ability : 1, 000, 000 PCS / week

Packaging Details : inner: vacuum-packed bubble bag outer: carton box

Material : FR4,Ployimide

PCB layer : 1-28layers

Min. Hole Size : 6mil

Board size : Min 6 x 6mm | Max 457 x 610m

Surface Finishing : ENIG, Immersion silver, etc.

Copper Thickness : 0.5oz - 2.0oz

Assembly Option : yes

Electronics Source : yes

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Model NO.

MQ-32

Structure

Double-Sided Rigid Flex PCB

Material

FR4,Polyimide

Combination Mode

Adhesive Flexible Plate

Application

Smart Toy

Conductive Adhesive

Anisotropic Conductive Adhesive

Flame Retardant Properties

V0

Processing Technology

Delay Pressure Foil

Base Material

Copper

Insulation Materials

Epoxy Resin

Brand

XCE

Trademark

XCE

Transport Package

Vacuum Packing

Specification

/

Origin

China

HS Code

8534001000




What is a Rigid Flex PCB?
Printed Circuits Rigid Flex PCBA rigid flex printed circuit board (PCB) is a hybrid circuit board design that integrates elements from both hardboard and flexible circuits. Rigid flex PCBs are rigid at some points on the board and flexible at others. Because of this, rigid flex circuits can be folded or continuously flexed while maintaining the shape of areas that need extra support. The circuits are typically multi-layered and are comprised of flexible circuit substrates joined with rigid boards. The flexible layers are buried internally and completely penetrate the rigid sections of the PCB.


One of the key benefits of a rigid flex PCB is its slim profile. The standard dielectric in flexible circuits is .001 – .002”, making it a great choice for ultra thin—and ultra light—packaging needs. Adhesiveless laminates, HDI, and thin copper layers make it ideal for fine line technology, giving you the smallest, thinnest, and lightest solution for your circuit designs.


The proper application of Rigid-Flex circuit boards offers optimum solutions for difficult, limited space conditions. This technology offers the possibility of a secure connection of device components with the assurance of polarity and contact stability, as well as a reduction in plug and connector components.


Additional advantages of Rigid-Flex circuit boards are dynamic and mechanical stability, the resulting 3-dimensional freedom of design, simplified installation, space savings, and maintenance of uniform electrical characteristics.


Use of Rigid-Flex circuit boards can reduce the total cost of the final product.



PCB/PCBA Product Specification:

Surface processing

Lead- Free HASL/Plating gold / immersion gold /Plating gold finger/OSP

Layers

1~24 layers

Copper Thickness

0.5OZ~1 OZ

Board Thickness

0.2mm~3.2mm

Min Hole Size

0.2mm

Min Line Width

0.1mm

Min Line Spacing

0.1mm

Max board Size

Depends on customer’s requirements

Solder mask type

Green/ Black/ Red/ Yellow/ White/Blue...

Silk legend color

White / Yellow/ Black

Data file format

GERBER file and corresponding drilling file, PROTEL series,BOM list

Base material

FR4,aluminum based board,High TG board, Rogers,Taconic,F4B,Arlon

Certifications

ISO9001:2000 ; TS16949; ROHS; SGS;

PCB Assembly

DIP, SMD


While they come at a higher cost, rigid flex boards are extremely versatile and can be tailored to applications across a wide range of industries. They are highly suitable for military, aerospace, and medical devices, but they can also be implemented towards certain commercial products.


There are several circumstances that make rigid flex PCBs as an optimal solution. In such situations, these boards are not only worth the investment, but also may be the most cost-effective choice. These include:

High-shock and high-vibration environments. Rigid flex PCBs are highly shock resistant and can survive in high-stress environments that would otherwise cause equipment failure.


High-precision applications where reliability is more important than cost considerations. In situations where a cable or connector failure would be dangerous, the more durable rigid flex PCBs are preferable.
High-density applications.Some assemblies lack the requisite surface area for all the necessary connectors and cables. A rigid flex circuit can economize space to solve this problem.


Applications requiring multiple rigid boards. When assemblies get crowded with more than four connected boards, it may be optimal and more cost effective to replace them with a single rigid flex PCB.


More broadly, rigid flex PCBs have the following advantages:

Survive high levels of shock and vibration
Survive hundreds of thousands of flex cycles
Reduce package weight
Increase circuit density
Decrease necessary assembly operations
Rigid flex circuit assemblies are ideal for reducing and/or eliminating connectors, as well as the labor, yield, transmission, and reliability issues that are inherent in their application. Any assembly that can benefit from these features can benefit from a rigid flex PCB.


A Rigid-Flex PCB is a hybrid board that consists of a combination of rigid and flexible printed circuit boards. These boards are designed by combining flexible circuit boards with one or more rigid boards.


The flexible part of the board is usually used for providing interconnections between rigid boards, which allows narrow conductor lines which take up less space making the boards smaller. Using flexible PCBs for interconnections also eliminates the need for connectors, which are bulky and heavy making rigid-flex printed circuit boards much lighter. Interconnections using flexible PCBs over connectors also provide lower losses and accommodate controlled impedance and eliminate connection problems such as cold joints.


Another major advantage of Rigid-Flex boards is the use of different substrate materials in different sections on the board. Some sections of the board might require high performance substrates which are expensive while others sections might not could use a standard FR-4 substrate. This flexibility in terms of substrate selection can optimize the performance and cost of Rigid-Flex PCBs.


Designers often use Rigid-Flex PCBs as they provide a lot of design flexibility. These boards are also more cost effective than flexible PCB boards.




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