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Lightweight 4 Layer Flex PCB Future-Proof For Electronic Manufacturing
  • Lightweight 4 Layer Flex PCB Future-Proof For Electronic Manufacturing

Lightweight 4 Layer Flex PCB Future-Proof For Electronic Manufacturing

Place of Origin Shenzhen,China
Brand Name ONESEINE
Certification ISO9001,ISO14001
Model Number ONE-102
Product Details
Solder Mask Color:
Green, Red, Blue, Black, White, Yellow
Marketing Method:
Factory Direct Sales
Product Description:
Flexible Pcb 4 Layer
Layer Count:
2
Surface Finishing:
ENIG
Product:
Flexible Pcb
Highlight: 

Lightweight 4 Layer Flex PCB

,

Future-Proof 4 Layer Flex PCB

Payment & Shipping Terms
Minimum Order Quantity
1pcs
Price
USD0.1-1000
Packaging Details
Vacuun bag
Delivery Time
5-8 working days
Payment Terms
T/T, Western Union
Supply Ability
1000000000pcs/mon
Product Description

Flex PCB The Future-proof Choice for Your Electronic Manufacturing Needs

 

PCB parameter:

 

Brand:Oneseine

Number of layers: 4

Plate thickness: 0.13mm

Minimum aperture: 0.2

Minimum line width/line spacing: 0.1mm

Copper thickness: 1OZ

Solder resistance: yellow film

Surface technology: ENIG

Sample time: 3-5 days

Batch time: 15 working days

 

Introduction to Flexible PCBs
 
Flexible Printed Circuits (FPCBs) are a type of printed circuit board that can bend and flex without breaking. Unlike traditional rigid PCBs, flexible PCBs offer unique advantages that make them suitable for a variety of applications.
 
Key Features
 
Flexibility: FPCBs can be bent and twisted, allowing them to fit into compact and intricate spaces.
Lightweight: They are generally lighter than rigid boards, making them ideal for portable devices.
Space-saving: Their ability to conform to different shapes helps save space in electronic devices.
Durability: FPCBs are often more resistant to vibrations and shocks, leading to greater longevity in robust applications.
Applications
Consumer Electronics: Smartphones, tablets, and wearables often use flexible PCBs for their compact designs.
Medical Devices: FPCBs are used in devices like pacemakers and diagnostic equipment, where space and flexibility are critical.
Automotive: In modern vehicles, flexible circuits are used in dashboards and control systems to enhance connectivity and reduce weight.
Aerospace: Their lightweight and durable nature make them suitable for aircraft systems.
Manufacturing Process
The production of flexible PCBs involves several steps:
 
Material Selection: The base material is usually a flexible substrate like polyimide or polyester.
Circuit Design: Designs are created using CAD software, focusing on layout and functionality.
Etching: Copper layers are etched to form the circuit patterns.
Lamination: Multiple layers can be laminated together to create complex circuits.
Testing: Finished circuits undergo rigorous testing for quality and reliability.

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