Product: Drone PCBA
Material:FR4 (Tg 140–180℃, 0.26–0.29 W/m·K), aluminum PCB (80–240 W/m·K), ceramic (AlN ≥165 W/m·K)
Quality standard:IPC-6012 (Class 2/3), AEC-Q200, RoHS 3.0, UL94 V-0
Dielectric constant:FR4: 4.0–4.5 @1MHz;
aluminum hybrid: 3.3–3.5 @6GHz
Layers:2–12 layers (max 12 for HDI designs)
Thickness:0.7–3.3 mm (FR4: 0.8–2.4 mm; aluminum: 1.0–3.2 mm)
Copper thickness:1–4 oz (35–140 μm)
Surface technology:OSP (0.18–0.45 μm), ENIG (Ni 2.5–4.5 μm / Au 0.02–0.06 μm), immersion silver (0.1–0.22 μm)
Special requirements:Operating temp: -40℃~125℃; vibration resistance: 18G+; IP65/67 (industrial)
Application:Consumer drones, industrial inspection UAVs, military drones, agricultural UAVs
Drone PCBA isn’t just a circuit board—it’s the “flight brain” that keeps UAVs stable, powerful, and reliable, whether they’re capturing aerial photos, inspecting power lines, or operating in harsh military zones. Unlike generic PCBs, it’s engineered to solve the unique challenges of drone flight: heat from high-speed motors, vibration during takeoff/landing, and extreme temperatures in outdoor missions.
Drone PCBA
Built for the Demands of Flight
Every design choice in our Drone PCBA ties back to better UAV performance:
Heat Management for Longer Flights: Aluminum Drone PCBA (80–240 W/m·K thermal conductivity) dissipates heat from ESCs and multi-motor setups—critical for industrial drones that need 2+ hours of continuous flight. For consumer drones, FR4 variants (0.26–0.29 W/m·K) balance efficiency and cost, keeping camera drones light and affordable.
Vibration & Weather Resistance: Withstands 18G+ vibration (enough to handle rough landings) and operates from -40℃ (arctic inspections) to 125℃ (desert missions). Industrial variants add IP65/67 protection, so dust or rain won’t disrupt crop-spraying or infrastructure-check UAVs.
Power & Compactness: 2–12 layer HDI designs (with 1–4 oz copper) fit into mini consumer drones while supporting high-current circuits—like the 4 oz copper needed for racing drones’ 200A peak motor output.
Tailored to Every Drone Mission
Drone PCBA adapts to what the UAV needs to do:
Consumer Drones: FR4-based PCBs integrate Wi-Fi/Bluetooth for easy remote control and camera interfaces, keeping the drone lightweight (under 250g for regulatory compliance).
Industrial UAVs: Aluminum or high-Tg FR4 PCBs power LiDAR, GPS, and long-range 4G modules—perfect for power line inspections or agricultural mapping that requires precise data collection.
Military/Specialized Drones: Ceramic (AlN) PCBs (≥165 W/m·K) handle extreme heat and radiation, while encrypted communication ports ensure secure missions.
Trusted by Flight Standards
Meets IPC-6012 (Class 2/3) for precision, AEC-Q200 for automotive-grade reliability (for drone taxis), and RoHS 3.0—so it’s compliant for global markets, from hobbyist shops to industrial fleets.
Product: Drone PCBA
Material:FR4 (Tg 140–180℃, 0.26–0.29 W/m·K), aluminum PCB (80–240 W/m·K), ceramic (AlN ≥165 W/m·K)
Quality standard:IPC-6012 (Class 2/3), AEC-Q200, RoHS 3.0, UL94 V-0
Dielectric constant:FR4: 4.0–4.5 @1MHz;
aluminum hybrid: 3.3–3.5 @6GHz
Layers:2–12 layers (max 12 for HDI designs)
Thickness:0.7–3.3 mm (FR4: 0.8–2.4 mm; aluminum: 1.0–3.2 mm)
Copper thickness:1–4 oz (35–140 μm)
Surface technology:OSP (0.18–0.45 μm), ENIG (Ni 2.5–4.5 μm / Au 0.02–0.06 μm), immersion silver (0.1–0.22 μm)
Special requirements:Operating temp: -40℃~125℃; vibration resistance: 18G+; IP65/67 (industrial)
Application:Consumer drones, industrial inspection UAVs, military drones, agricultural UAVs
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