Shenzhen Weike Precision Manufacturing specializes in CNC machining of high-precision metal and plastic components for the robotics, UAV (drone), and automation industries. We deliver mission-critical parts with tolerances as tight as ±0.005mm.
With a 5,000m² facility equipped with 30+ CNC machines from DMG MORI, MAZAK, and Sodick, we serve top-tier robotics companies and drone manufacturers across 30+ countries. Our expertise in 5-axis simultaneous machining, micro-machining, and complex geometry parts has earned us ISO 9001 and IATF 16949 certifications.
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3-axis, 4-axis, and 5-axis CNC milling with DMG MORI and MAZAK machines. We process aluminum alloys (6061, 7075), stainless steel (303, 304, 316), titanium (TC4), brass, copper, and engineering plastics like PEEK and POM for robotics and UAV applications.

Swiss-type CNC lathes and multi-axis turning centers for high-precision shafts, pins, bushings, connectors, and motor housings. Live tooling and sub-spindle capabilities enable complex features in a single setup.

Sodick and Mitsubishi wire EDM machines for cutting complex profiles in hardened steel, carbide, and conductive materials. Essential for intricate drone frame connectors and gear components requiring ±0.002mm accuracy.

Anodizing (Type II & III), hard chrome plating, nickel plating, black oxide, passivation, bead blasting, brushing, polishing, and powder coating. We ensure parts meet both functional and aesthetic requirements.

Frame mounts, motor brackets, gimbal parts, landing gear joints, propeller hubs — CNC machined from AL7075, TC4, and stainless steel for commercial and industrial drones.
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Precision machined arm joints, servo mounts, planetary gears, end effectors, and encoder rings for industrial robots, cobots, and AGVs with tight tolerance control.
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BLDC motor housings, rotor shafts, stator mounts, and heatsinks in aluminum and stainless steel. Precision ground and anodized for brushless motor applications.
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From single prototypes to 100K+ batch production. Complete turnkey solutions including DFM review, machining, surface treatment, inspection, and assembly.
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Discover how 5-axis simultaneous machining enables complex geometries for UAV frame components that traditional 3-axis cannot achieve.
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Explosive growth in collaborative robots and autonomous systems is driving demand for precision-machined hardware components.
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Expanding capacity with state-of-the-art DMU 50 machines to meet growing demand from drone and robotics clients.
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A detailed comparison of Ti6Al4V and AL7075-T6 for drone load-bearing components covering strength, weight, and cost.
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