• FR4 Rigid-Flex Printed Circuit Board with White Silkscreen and Coustomized Design
FR4 Rigid-Flex Printed Circuit Board with White Silkscreen and Coustomized Design

FR4 Rigid-Flex Printed Circuit Board with White Silkscreen and Coustomized Design

Thông tin chi tiết sản phẩm:

Hàng hiệu: Xingqiang
Chứng nhận: ROHS,CE
Model Number: Varies By Goods Condition

Thanh toán:

Minimum Order Quantity: Sample,1 Pc(5 Square Meters)
Giá bán: NA
Khả năng cung cấp: 3000㎡
Giá tốt nhất nói chuyện ngay.

Thông tin chi tiết

Xử lý bề mặt: OSP Lớp: 2-30
Kích thước bảng điều khiển: Tùy chỉnh Màu mặt nạ hàn: màu xanh lá
Silkscreen: Trắng Phương pháp vận chuyển: DHL UPS Hoặc Fedex
Vật liệu cơ bản: FR4 Tối thiểu. Kích thước lỗ: 0,1mm
Làm nổi bật:

FR4 rigid-flex PCB with white silkscreen

,

custom rigid-flex printed circuit board

,

FR4 rigid-flex PCB customized design

Mô tả sản phẩm

FR4 Rigid-Flex Printed Circuit Board:

One of the standout features of our Rigid-Flex Circuit Boards is the high-quality white silkscreen that enhances the visibility of component labels and markings. This not only improves the aesthetics of the board but also aids in easier assembly and troubleshooting processes.The solder mask color of our Rigid-Flex PCBs is a vibrant green, providing a visually appealing contrast to the white silkscreen and enhancing the overall look of the board. The green solder mask also offers excellent protection against environmental factors and solder bridging during assembly.These Rigid-Flex Circuit Boards are crafted using high-quality FR4 base material, known for its excellent thermal and electrical properties. The FR4 material ensures the reliability and longevity of the boards, making them suitable for both prototype development and mass production.


The main characteristics of rigid-flex PCB :

Combination of Rigid and Flexible Sections: They integrate rigid sections (for component mounting and structural support, often using materials like FR4) and flexible sections (for bending, folding, and interconnection, often using polyimide).
• Space and Weight Savings: They eliminate the need for connectors, cables, and wire harnesses between rigid boards, leading to a lighter, more compact final assembly.
• Enhanced Reliability: By removing connectors and reducing solder joints, they eliminate common points of failure, making them more durable, especially against vibration and mechanical stress.
• Three-Dimensional Design Capability: The flexible parts allow the board to be folded or bent to fit into irregular or tight three-dimensional spaces, enabling highly efficient spatial utilization.
• Improved Durability: They offer excellent resistance to harsh environments, including mechanical stress, high temperatures, and chemical exposure.


Applications:

Aerospace and Defense (Avionics and Military): Used in satellites, radar systems, guidance systems, and communication equipment due to their low weight, compact size, and exceptional resistance to shock, vibration, and extreme environmental conditions.

Medical Devices: Essential for life-critical and portable equipment like pacemakers, cochlear implants, diagnostic imaging systems, and handheld monitors, where miniaturization and high reliability are paramount.

Consumer Electronics (Portable and Wearable): Found in sleek, compact devices such as smartphones, tablets, digital cameras, smartwatches, and fitness trackers, allowing for complex circuitry to fit into small, three-dimensional enclosures.

Automotive: Integrated into systems that require durability and heat resistance, such as engine control units (ECUs), advanced driver-assistance systems (ADAS), infotainment systems, and battery management systems (BMS) in electric vehicles.

Industrial and Robotics: Used in industrial automation, testing equipment, and robotics, where components must be reliable and withstand mechanical stress and repeated movement or flexing.

Telecommunications: Applied in base stations, communication satellites, and handheld units, benefiting from the enhanced signal integrity and ability to fit into complex hardware designs.

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