0.5Oz Copper Single Layer Flex PCB Board with 3M Sticker
| Attribute | Value |
|---|---|
| Surface Finish | Immersion Gold, HASL, OSP |
| Adhesive | 3M sticker Tesa8853 |
| Flexible Type | Single-sided, Double-sided, Multilayer |
| RoHS Compliance | Yes |
| Product Nature | New |
| Layers | 1-8 layers |
| Copper Thickness | 0.5Oz |
| Bend Radius | 1-5 times board thickness |
| Board Thickness | 0.1MM |
| Operating Temperature | -40°C to 125°C |
Flex PCB Design FPC Single Layer Flex PCB Board With 3M Sticker
- Product category: FPC single panel
- Application: Car navigation
- Type: Single-sided FPC flexible circuit board
- Size: 68.2 * 115mm
- Tolerance: ± 0.03mm
- Plate thickness: 0.13mm
- PI reinforcement: 0.225mm
- Surface treatment: Sinking gold 1 mile
Two different 3MTESA (Tesa8853) should be sticked to the specified two areas (on BOTTOM).
- Part1 and Part2 are two separate stickers
- 3MTESA (Tesa8853) should be sticked to the specified out of square area in Part1
Flexible printed circuit boards are essential technology used in manufacturing a wide variety of products, from electronic panels and medical equipment to smartphones and space satellites.
- Slim Base: Reduces device size with foldable design
- Lightweight: 70-80% lighter than rigid PCBs
- Improved Heat Transfer: Thin base distributes heat evenly
- High Installation Speed: Eliminates complex wiring
- Reliable Connections: Better control of impedance and noise
- Space Saving: Reduces mounting area by 75%
- Durability: Resistant to shock and vibration
- Versatility: Can include rigid sections for component mounting
All boards undergo rigorous quality control for metallization, solderability, and flatness. Pricing depends on materials, size, design complexity, foil thickness, hole count, and accuracy requirements.
A flexible circuit board is made of polyimide or similar materials with bending capabilities for space-efficient designs.
Common applications include medical devices, consumer electronics, and automotive components.
Flex PCBs offer bending capability while rigid boards provide structural strength for demanding applications.
Rigid-flex circuits combine rigid and flexible substrates in a single structure, offering the benefits of both technologies. These multilayer constructions are interconnected through plated holes and have become common in high-end electronics.
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