Explore our leading-edge catalog of micro gear motors engineered for precise speed reduction, high torque transmission, and absolute longevity in severe environments.
At TTM Motor, we don’t just manufacture motors—we engineering motion. We understand that in the world of advanced robotics, medical equipment, and smart automation, a fraction of a millimeter or a micro-level torque variance can dictate the success of your entire project. That is why our Shanghai-based R&D facility is dedicated entirely to pushing the boundaries of micro-drive performance.
Every micro DC motor, planetary gearhead, and brushless drive (BLDC) we produce is a result of rigorous cross-disciplinary engineering. Armed with advanced CAD/CAM software, automated winding technologies, and precision dynamic balancing testing equipment, our in-house engineering team bridges the gap between your conceptual design and volume manufacturing.
True to our Top Quality & Customization ethos, we specialize in solving complex integration challenges. Whether your application requires an integrated encoder for precise feedback, a custom-molded lead screw shaft, or a high-vacuum-compatible enclosure, TTM Motor has the technical expertise to customize and deliver ready-to-install motion sub-assemblies that meet your exact specifications.
Technological shifts, energy efficiency mandates, and spatial optimization constraints are drastically redesigning the micro-motion and transmission landscapes globally.
Traditional brushed systems are increasingly replaced by Brushless DC (BLDC) planetary geared systems. These offer higher power density, lower thermal generation, and drastically reduced electromagnetic interference, critical for precision robotics and medical devices requiring longer service lives.
Modern applications demand space optimization. The transition from inline spur gearboxes to high-precision planetary gearboxes enables significant reduction ratios and high output torques within outer diameters ranging from 12mm to 36mm without sacrificing dimensional stability.
The standard motor is now a smart device. Integrating high-resolution magnetic and optical encoders, integrated drive controllers, and thermal sensors directly into the motor housing provides real-time diagnostic parameters, enabling predictive maintenance protocols.
Industrial buyers and engineers do not purchase components; they purchase operational uptime, predictable lifetimes, and risk mitigation.
Products entering Western and Asian markets must strictly align with CE, RoHS, REACH, and UL standards. Documented traceability of core raw materials ensures seamless customs and regulatory approval pathways.
Standard motors rarely fit exact mechanical configurations. Custom gear ratios, shaft profiles (D-cuts, spline shafts, keyways), custom winding profiles for low voltage inputs, and special cabling/harness options are non-negotiable procurement parameters.
For high-load industrial applications, buyers require heavy-duty powder metallurgy gears or micro-machined steel pinions instead of POM plastics to guarantee maximum torsional load and fatigue resistance.
Our advanced production line features ultra-precision Japanese and domestic machinery, ensuring sub-micron accuracy, complete vertical integration, and structural cost advantages.






Every step of our process—from gear hobbing to final wire winding—is driven by high-tech automated equipment to eliminate human variance.
Every production batch undergoes comprehensive electromechanical, environmental, and acoustic testing to ensure compliance with our zero-defect policy.
How our customized mini gear motors are deployed across major industrial sectors around the world to ensure system efficiency.
Our planetary gearbox micro DC motors drive the steering and articulation units of industrial Automated Guided Vehicles (AGVs) and warehouse cobots, providing massive torque in ultra-slim geometries.
Deploying low-noise 13mm brush and brushless planetary gearboxes in drug delivery systems, surgical power tools, and diagnostics, meeting strict biomechanical reliability limits.
High-torque worm and spur gear configurations are integrated into vehicle tailgates, electronic parking locks, and smart home entry systems, guaranteeing performance under high loads and temperature fluctuations.
Direct engineering answers to technical queries raised by global procurement departments during design phases.
Discover additional configurations designed to meet specific engineering challenges, featuring integrated magnetic encoders, high speed vibration, and low-RPM high torque outputs.