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Micro GaN servo PCBA and robotic joint servo OEM manufacturing from prototype to mass production.

Inquiry Email

[email protected]

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Include target torque/speed, quantity, and delivery location.

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+8618857971991

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Direct response from our engineering team.

Products
  • Micro GaN Servo PCBA
  • Robotic Joint Servo OEM
  • Low Voltage GaN Module
  • Driver-Encoder Stack
  • 48 V Bare-Board Driver
  • Ring-Shaped Joint PCBA
  • Micro GaN Surgical Drive
  • High-Frequency UAV GaN ESC
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  • Humanoid Micro Actuators
  • Drone and eVTOL Servo Control
  • Medical Robotic Arms
  • Precision Grippers
OEM Capabilities
  • OEM Manufacturing
  • SMT PCBA Assembly
  • Firmware and Control Loop
  • Robot Joint BOM Turnkey
  • Prototype to Mass Production
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Humanoid Micro Actuator Electronics

Micro GaN servo electronics for humanoid fingers, wrists, ankles, and compact joint modules where volume and heat are the hardest constraints.

Target Buyer:For humanoid robot teams that need custom servo electronics manufacturing without building a full internal PCBA operation.
Driver encoder integrated electronics for humanoid micro actuators

Solution Highlights

  • Low-voltage servo electronics for battery-powered embodied AI platforms
  • Compact board and stacked driver-encoder options for tight joint housings
  • Prototype, pilot, and batch manufacturing support for fast hardware iteration

Common Use Cases

  • Dexterous robot hands
  • Humanoid joint modules
  • Compact quasi-direct-drive actuators

Implementation Focus

  • Board envelope, heat path, wiring, and encoder feedback
  • Production test flow for many repeated joints
  • BOM stability for pilot and early production

Application Evaluation Matrix

Evaluation MetricTypical RangeBuyer Relevance
Mechanical envelopeCustomer-defined compact board or stackHumanoid programs usually fail when electronics cannot fit the mechanical joint package.

RFQ Preparation Checklist

  1. Joint size, motor data, and target torque/speed
  2. Battery voltage, peak current, and duty cycle
  3. Mechanical CAD envelope and connector constraints
  4. Expected joint count per robot and annual build target

Risk and Mitigation

  • Different joints use uncontrolled board variants: Standardize platform architecture while customizing only the necessary power and connector sections.

Recommended Products

Precision actuator electronics for bipedal robots
Precision actuator electronics for bipedal robots

Buyer FAQ

Can one architecture cover multiple humanoid joints?

Often yes. A shared control architecture with adjusted current stage, connector, and form factor can reduce validation burden.

Related Resources

  • Contact / RFQ

Inquiry Email

[email protected]

Email app

Include target torque/speed, quantity, and delivery location.

Instant Chat

+8618857971991

Chat on WhatsApp

Direct response from our engineering team.