Explore our foundational range of customizable DC motors, worm gears, stepper motors, and planetary drives engineered to your unique mechanical parameters.
Engineering the invisible mechanical pulse that ensures smooth, quiet, and reliable operation across high-end consumer, medical, and industrial systems.
Open up a premium smart door lock, a high-end medical pump, a robotic cleaner, or an automotive electronic seat—and you’ll likely find the silent, reliable pulse of a WICCA Motor.
We don’t just build hardware; we power the user experiences that define your brand. Our micro DC and brushless motors are engineered to be invisible—operating with ultra-low noise, high energy efficiency, and a compact footprint that allows product designers to push the limits of their industrial design. When your product’s reputation relies on flawless, repeated mechanical motion, WICCA Motor delivers the precision engineering that keeps your customers happy.
Analyzing global demand paradigms for custom micro-electromechanical drive systems across next-generation industrial structures.
The global motion control market is undergoing a structural transition toward electrification, power-density maximization, and localized intelligent feedback mechanisms. As industries move toward automated cyber-physical systems, traditional standardized electric drives no longer satisfy constraints related to form factor, weight, and energy efficiency. Industrial designers require micro-drives that optimize magnetic flux density while minimizing heat generation.
In Europe and North America, strict efficiency standards (such as ErP directives and NEMA specifications) mandate energy conservation at every level of the drive train. Custom OEM micro-motors with integrated gearboxes and digital encoders allow systems to execute complex kinematic paths with minimized energy losses. Whether managing battery-operated portable medical devices or autonomous robotics, design constraints necessitate micro-drives that deliver torque-to-weight ratios previously only possible in larger formats.
Enabling silent mechanical movements in automated smart locks, window actuators, motorized blinds, and smart appliances requiring long operational cycles with minimal battery draw.
Powering liquid handling robots, insulin delivery systems, clinical diagnostics, and high-precision blood pressure monitoring devices with pulse-free torque delivery.
Delivering high-torque, reliable planetary gearbox assemblies for robotic joints, LiDAR sensor scanners, AGV steering wheels, and automated sorting grippers.
Transparency in manufacturing: How we process raw materials into ultra-reliable custom electric motors.
Raw Material
Soldering
Assembling
Testing
Packing
Storage
Our facility is equipped with advanced CNC machining, gear hobbing, and electrical discharge machining (EDM) equipment to guarantee sub-micron component tolerances.
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
Hobbing Machine
Glue Dispenser
We verify magnetic torque characteristics, thermal behavior, noise profiles, and lifetime longevity in our dedicated quality assurance facility.
Qc Checking
Programmable Constant Temp & Humidity Chamber
Noise Testing Chamber
Salt Spray Testing Machine
Dynamometer Machine
Hardness Tester
Video Measuring Instrument
Aging Shelf
Motor Testing Machine
Microscope
Digital Oscilloscope
Soundproof Room
Magnetic Powder Testing Machine
Designing reliability from the initial concept: How our development cycle incorporates environmental and mechanical stress testing.
Design
Programmable Constant Temp & Humidity Chamber
Noise Testing Chamber
Salt Spray Testing Machine
Deep engineering dive into our custom micro-electromechanical technologies and our strategic research directions.
Our engineering team focuses on maximizing torque density and reliability in constrained envelopes. To achieve this, we optimize three core areas of micro-motor design:
By employing finite element analysis (FEA) software, we model the magnetic flux distribution within the stator and rotor structure. For our brushless planetary gear motors, we utilize high-coercivity NdFeB (Neodymium Iron Boron) permanent magnets combined with optimized slot-pole configurations (e.g., 9-slot 6-pole or 12-slot 8-pole topologies). This decreases cogging torque, enabling smooth rotation even at minimal speeds.
Precision reduction gearboxes (both planetary and worm gear variants) are computed for specific load cases. Our horizontal gear hobbing machines produce spur and helical gears with tooth geometry profiles that reduce sliding friction. Depending on application requirements, we specify advanced engineering plastics (such as POM or PEEK) for quiet running, or sintered steel and case-hardened alloy steels to handle high torque peaks up to 10Nm.
| Motor Category | Voltage Options (V) | Maximum Speed (RPM) | Torque Range (Nm) | Primary Applications |
|---|---|---|---|---|
| Brushless DC Motors (BLDC) | 12V, 24V, 36V | Up to 28,000 RPM | 0.5 to 8.0 Nm | Medical pumps, continuous duty robotics |
| Micro Stepper Motors | 5V, 12V | Up to 1,500 RPM | 0.1 to 1.5 Nm | CCTV lenses, positioning systems |
| Planetary Gear Motors | 1.5V to 24V | 10 to 1,000 RPM | 1.0 to 10.0 Nm | Smart locks, high-torque actuators |
| Worm Geared Drives | 12V, 24V | Up to 300 RPM | Up to 10.0 Nm | Vending systems, self-locking mechanisms |
We are incorporating high-resolution magnetic and optical encoders directly into the motor housing. This allows real-time position, speed, and current feedback for closed-loop motion control systems.
Developing new motor casing designs using thermally conductive plastics and optimized alloy cooling fins to dissipate thermal energy quickly under stall conditions, protecting internal stator windings.
Researching ultra-low inertia coreless rotor configurations. Eliminating the iron core removes cogging torque and magnetic losses, resulting in high acceleration dynamics and operational efficiencies exceeding 85%.
We support global OEMs through stringent regulatory alignment, supply stability, and dedicated engineering consultation.
Operating as an international supplier requires compliance with global technical regulations and environment directives. Every motor that departs our factory conforms to modern environmental standards, enabling smooth integration into products targeted for the North American, European, and Asia-Pacific markets.
Compliance with RoHS, REACH, CE, and UL standards. Our materials are traceable from source to final testing, preventing environmental issues for your finished products.
Dual-sourcing strategies for critical raw materials (such as magnet wire, rare-earth alloys, and high-performance lubricants) protect production lines from market volatility.
Collaborate directly with our design engineers. We review technical drawings, configure shaft outputs, match stator winding profiles to custom voltages, and conduct prototype evaluations.
Providing direct, engineering-grade answers to the most common configuration and integration questions asked by design engineers.
Further options for specific load configurations, positioning accuracy, high speed profiles, and micro-scale form factors.