Taunton Motors
Explore our leading custom precision electric motors, built to achieve maximum torque density and exceptional thermal efficiency in compact footprints.
At Taunton Motors, we measure our success in micrometers and decibels. We understand that inside a premium robotic joint, a medical dosing pump, or a high-end smart lock, space is the ultimate luxury. Our mission is to pack maximum torque, unyielding durability, and near-silent acoustics into the most compact footprints imaginable.
Our expertise lies in the harmony of miniature engineering. From precision-wound rotors and high-purity copper commutators to custom-designed planetary gearheads, every component inside a Taunton Motors micro motor is optimized for low energy consumption and a friction-free lifespan. We constantly push the limits of micro-drive tech, utilizing advanced automated Swiss-style hobbing and Japanese dynamic balancing to ensure that our internal gear trains operate with zero-backlash precision. When the integrity of your high-tech device hangs on repeated mechanical perfection, Taunton Motors delivers the silent power that anchors your design.







By leveraging high-speed Swiss-type sliding headstocks, we machine shafts and pinion gears with geometric tolerances narrower than ±2 microns. This guarantees absolute concentricity, minimizing axial runout and reducing acoustic emissions during high-speed operations.
Our slotless coreless motor designs incorporate highly optimized self-supporting copper coils. The absence of an iron core eliminates cogging torque, enabling exceptionally smooth velocity regulation and high acceleration dynamics in medical pumps and surgical robotic systems.
Using proprietary synthetic lubricants formulated for low outgassing and temperature variations ranging from -40°C to +125°C, our planetary micro gearboxes are engineered to provide maximum torque transmission efficiency over millions of commutation cycles.
From the input of certified premium raw materials to the final micro-assembly and dynamic diagnostic screening, every phase of production is monitored by our multi-layered Quality Management System (QMS) matching IATF 16949 standards.
Raw Material
Soldering
Assembling
Testing
Packing
Storage
We invest heavily in ultra-precision machine tools imported from Japan and Switzerland, alongside high-precision domestic CNC machinery. Our machining infrastructure enables mass production with unparalleled unit-to-unit consistency, eliminating mechanical variations that compromise control loops.
NINGJIANG MACHINE TOOL
High Precision Horizontal Gear Hobbing Machine
Lathing Machine
Milling Machine
Drying Oven
Automatic Gear Riveting Machine
Packing Machine
Pneumatic Pressing Machine
Manual Pressing Machine
Computer Wire Winding Machine
Injection Machine
Slow-feeding NC Wire-cut Machine
EDM (Electrical Discharge Machine)
Hobbing Machine
Automatic Glue Dispenser
We prove reliability through science. Every motor batch is subjected to comprehensive thermal chamber profiling, electromagnetic compatibility (EMC) diagnostics, acoustic chamber mapping, and continuous torque-curve dynamometer checks to verify design margins.
Design & CAD Center
Constant Temp & Humidity Chamber
Noise Testing Chamber
Salt Spray Testing Machine
QC Inspection & Checking
Secondary Temp Chamber (Lab)
Acoustic Analysis Lab
Corrosion Resistance Tester
Dynamometer Machine
Material Hardness Tester
Video Measuring Instrument
Continuous Aging Shelf
Comprehensive Motor Testing Station
Optical Microscope Metrology
Digital Oscilloscope Lab
Anechoic Soundproof Room
Magnetic Powder Testing Machine
Precision micro-drive assemblies are critical links in modern mechatronic integrations. From medical operating rooms to harsh marine environments, our motors provide deterministic motion control under tight volumetric limits.
Infusion pumps, laboratory liquid handlers, and insulin delivery systems require precise volumetric flow control. Using our 16mm Planetary Gearbox Brush Motors and low-voltage miniature BLDC designs, manufacturers secure extremely flat torque curves and non-pulsating fluid delivery. Cogging-free coreless windings prevent mechanical stress on delicate fluids during diagnostic runs.
Premium electronic smart locks require maximum lock-bolt actuation torque delivered from minimal battery capacities. Our low-power, high-torque miniature worm gearmotors (such as the 370 series worm gear reducer) generate self-locking mechanisms, preventing manual tampering while maintaining minimal operating currents to extend battery lifespan up to 5 years.
Collaborative robotic endpoints and advanced prosthetics demand high torque-to-weight ratios and low rotary inertia. Our custom-designed coreless motors combined with integrated magnetic encoders give controllers instantaneous feedback, ensuring delicate force control and safe human-robot interaction.
The motion control market is transitioning away from standard raw motors toward intelligent, integrated, software-defined drive nodes. We are leading this evolution by embedding micro-processors directly onto motor PCB enclosures.
By shrinking Field Oriented Control (FOC) circuitry to match the diameter of our 24mm and 36mm BLDC motors, we enable CANopen, Modbus, and EtherCAT network control directly on the actuator frame. This limits EMI emissions and cuts installation wiring overhead.
We are incorporating high-coercivity UH-grade and EH-grade NdFeB magnets. These raw materials allow our coreless motors to operate continuously at high temperatures without experiencing demagnetization, ensuring stable torque performance under load.
By moving to fully automated, Orthocyclic winding machines, we increase copper fill factor to over 78%. This significantly reduces internal resistive losses, leading to cooler operational temperatures and higher continuous torque output.
As a leading Chinese precision motor exporter, our factory leverages a localized ecosystem of raw material processing, heat treatment, and precision mold manufacturing. This clustered supply chain enables rapid scaling from engineering prototypes to high-volume production.
| Performance Vector | Standard OEM Supplier | Taunton Motors Engineering Advantage |
|---|---|---|
| Prototype Lead Time | 4 - 6 Weeks | 7 - 14 Days (Using rapid in-house tooling & 3D modeling verification) |
| Planetary Gear Backlash | < 3.0° (Standard Tolerances) | < 0.8° (Using ultra-precision Swiss gear hobbing machines) |
| Integrated Electronics Options | External Driver Required | Integrated FOC Drivers, Encoders, & Communication Protocols |
| Raw Material Traceability | Basic Certification | Full material batch heat trace, RoHS, REACH, & ISO9001 compliance documentation |
We control costs not by compromising quality, but by maximizing automation. By utilizing automated gear-riveting machines, computerized high-speed wire winders, and custom-designed robotic testing tables, we maintain superior quality control and pricing competitiveness on high-volume production runs.
For international tier-1 industrial integrators, supply chain transparency is non-negotiable. Taunton Motors provides comprehensive engineering files, testing reports, and regulatory compliance protocols for seamless system integration.
All motor configurations are manufactured in strict compliance with RoHS, REACH, and CE directives. We support medical device and automotive component integrators with comprehensive testing logs, verifying zero hazardous chemical usage in internal components.
We work directly with your engineering departments. We supply native 3D step files, detailed electrical simulation profiles, and motor thermal maps. This reduces design iterations and accelerates your product's time-to-market.
Whether you require EXW, FOB, CIF, or DDP delivery, our logistics team manages shipping schedules efficiently. We work with leading international freight forwarders to ensure customs clearances run smoothly and transit times remain predictable.
Find technical answers regarding our manufacturing tolerances, custom configurations, raw materials, and ordering procedures below.
Browse our selection of heavy-duty worm-gear combinations, planetary hybrid steppers, and integrated motor wheel hub systems.