Drone 4-Layer Rigid-Flex PCB
Drone 4-Layer Rigid-Flex PCB
  • Drone 4-Layer Rigid-Flex PCB
  • Drone 4-Layer Rigid-Flex PCB
  • Drone 4-Layer Rigid-Flex PCB
  • Drone 4-Layer Rigid-Flex PCB
  • Drone 4-Layer Rigid-Flex PCB
  • Drone 4-Layer Rigid-Flex PCB

Brief Introduction:

Type: Multi-layer Rigid-Flex PCB

Surface Finish: Immersion Gold

Number of Layers: 4 layers

Board Thickness: Flexible Layer: 0.18mm, Rigid Layer: 1mm

Solder Mask: White characters, through-hole board

Dimensions: 42*88.2mm

Caboer Services:

Custom manufacturing of 1-30 layer FPC flexible PCBs, 2-32 layer rigid-flex PCBs, and 1-60 layer rigid PCBs. Reliable rapid turnaround PCB prototyping and fast SMT PCB assembly.

Industries Served:

Medical devices, IoT, TUT, drones, aviation, automotive, telecommunications, consumer electronics, military, aerospace, industrial control, artificial intelligence, electric vehicles, and more...

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Caboer’s 4-Layer Rigid-Flex PCB for Drones is tailor-made for core drone components such as flight control modules, gimbal control units, HD video transmission modules, and multi-sensor integration assemblies. It precisely meets the core demands of drones—lightweight design, strong vibration resistance, stable high-speed signal transmission, and compact space adaptation. With the robust configuration of "rigid-flex synergy + immersion gold finish", it stands as a preferred performance solution for consumer and industrial drone R&D, empowering brands to create flagship products with stable flight, precise control, and long battery life!

Adopting a 4-layer rigid-flex synergy structure, it perfectly balances the lightweight needs and extreme working condition adaptability of drones: the 0.18mm ultra-thin flexible layer offers excellent bending toughness and fatigue resistance, flexibly fitting drone folding arm connections, fuselage curved layouts, and internal complex wiring paths. It easily avoids wiring damage from pulling, withstands high-frequency vibrations and airflow impacts during flight, and completely solves the problem of traditional rigid PCBs breaking easily in drone dynamic structures; the 1mm lightweight yet stable rigid layer meets the high-load operation standards of drones, reliably supporting core components such as flight control chips, GPS modules, HD video transmission chips, and motor drive units. This achieves efficient integration of "flexible adaptation to dynamic structures + rigid fixation of precision parts". With precise dimensions of 42*88.2mm, the optimized slender layout perfectly fits the "space-critical" internal environment of drones, saving valuable space and providing ample installation room for key components such as batteries and antennas—helping drones achieve lightweight design and extended battery life.

Key advantages directly address drone scenario pain points, demonstrating flight-grade robustness: ① Full-board immersion gold finish delivers superior low signal loss, oxidation resistance, and wear resistance. Low contact resistance ensures high-speed, distortion-free transmission of GPS positioning signals, HD video transmission signals (supporting 4K/60fps), and flight control commands, reducing signal delay and packet loss. This results in more stable drone flight attitudes, more responsive control, and clearer image transmission; ② Solder mask with white characters + through-hole design features clear markings, facilitating automated module assembly, rapid debugging, and post-maintenance. It adapts to the mass production needs of drones, significantly improving production efficiency and operational convenience; ③ 4-layer scientific wiring layout rationally separates signal, power, and ground layers, building a strong anti-interference system. It effectively suppresses electromagnetic interference (EMI) and signal crosstalk, ensuring seamless collaboration across the full process of "positioning - flight control - video transmission - sensing" even in complex electromagnetic environments with multiple co-frequency devices. This guarantees stable drone operation in scenarios such as aerial photography, surveying and mapping, and inspection, meeting industrial-grade high-precision operation requirements.

Backed by Caboer’s profound technical accumulation in drone PCBs and strict quality control system, this 4-layer rigid-flex board can be customized for wiring density, interface types, and power optimization based on drone application scenarios (consumer aerial photography/industrial inspection/agricultural spraying). Paired with rapid prototyping (sample delivery within 7 days) and efficient SMT assembly services, it helps customers shorten R&D cycles and accelerate time-to-market. Whether for the lightweight and cost-effective needs of consumer drones, or the harsh environment resistance and high-precision operation requirements of industrial drones, it serves as the "flight control hub" with stable performance—helping brands enhance product competitiveness and seize mid-to-high-end market share!
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Capel manufacturing PCBs since 2009. Professional technology and high-precision Printed Circuit Boards involved in Medical, IOT, UAV, Aviation, Automotive, Aerospace, Industrial Control, Artificial Intelligence, Consumer Electronics etc..

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