Multilayer Rigid Flex PCB Board for Aerospace Electronics
Reinforced Fiberglass Electronic Flex PCB Board Full Turnkey Service For Aerospace Product Specifications Attribute Value Layers multilayer Pcb Layer 1-28layers Software altium Outer Carton Box Model oneseine Material FR-4, Polyimide Application Electronics Device Min Line Space 5mil Au Thickness 0.03-1.5um Finished Treatment Chemical gold 6 Layer Customized Rigid Flex Circuit PCB PCB Quick details: Number of layer: 6 Board thickness: Rigid part: 1.2mm Flex part: 0.1mm Brand:
Place of Origin
Shenzhen,China
Packaging Details
Vacuun bag
Material
FR-4, Polyimide
Outer
Carton Box
Model Number
ONE-102
Supply Ability
1000000000pcs/mon
Product Description
Reinforced Fiberglass Electronic Flex PCB Board Full Turnkey Service For Aerospace
Product Specifications
| Attribute | Value |
|---|---|
| Layers | multilayer |
| Pcb Layer | 1-28layers |
| Software | altium |
| Outer | Carton Box |
| Model | oneseine |
| Material | FR-4, Polyimide |
| Application | Electronics Device |
| Min Line Space | 5mil |
| Au Thickness | 0.03-1.5um |
| Finished Treatment | Chemical gold |
6 Layer Customized Rigid Flex Circuit PCB
PCB Quick details:
Number of layer: 6
Board thickness: Rigid part: 1.2mm Flex part: 0.1mm
Brand: ONESEINE
Sample order: Acceptable
Application: Electronics products
Surface finish: Immersion gold
Item: rigid-flex PCB boards
Number of layer: 6
Board thickness: Rigid part: 1.2mm Flex part: 0.1mm
Brand: ONESEINE
Sample order: Acceptable
Application: Electronics products
Surface finish: Immersion gold
Item: rigid-flex PCB boards
Technical Challenges of Rigid-Flex PCBs
Rigid-flex PCBs present unique challenges compared to traditional rigid PCBs due to their complex nature:
- Design Complexity: Requires careful component placement and routing across rigid and flexible sections, with advanced CAD software and specialized knowledge
- Manufacturing Challenges: Demands specialized equipment and tight process control for lamination, plating, and assembly
- Testing and Reliability: Requires extensive flexibility, bending, and environmental testing to ensure performance
- Design Constraints: Flexible materials introduce limitations on component placement and routing
- Supply Chain: Limited suppliers can result in longer lead times and higher costs
Rigid-Flex PCB Technology Overview
Rigid-flex PCBs combine rigid and flexible circuit board materials within the same board, offering compact and versatile solutions:
Key Components:
- Rigid Layers: Standard FR-4 material providing structural support for components
- Flexible Layers: Polyimide or polyester films allowing bending and conforming to shapes
- Interconnections: Plated through-holes connecting rigid and flexible sections
Advantages:
- Compact, space-saving design with reduced footprint
- Improved reliability under flexing, bending, and vibration
- Enhanced functionality with integrated rigid and flexible components
- Reduced assembly time with pre-assembled flexible sections
Applications of Rigid-Flex PCB Technology
Rigid-flex PCBs are essential in various industries where space and reliability are critical:
- Consumer Electronics: Smartphones, tablets, and wearable devices for compact component integration
- Medical Devices: Endoscopes, catheters, and prosthetics requiring flexible navigation
- Aerospace & Defense: Avionics and satellite systems where weight and reliability are crucial
- Automotive: Infotainment and driver assistance systems in tight spaces
- Industrial: Robotics and CNC machines with moving mechanical components
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