Thinkdyn Motor Platform

Core Technologies

Leveraging the Thinkdyn motor technology platform, six core technologies establish our competitive edge in portable micro-wind power generation and high-end custom motors.

Axial flux topology

Axial Flux Topology

Features a flat disk axial flux design with magnetic flux lines transmitted axially. Compared to traditional radial flux motors, it delivers over 30% higher power density. Its compact structure makes it ideal for portable and embedded applications with strict volume and weight constraints.

Core AdvantagesPower density increased by 30%+

Coreless design

Coreless Design

Eliminate the stator core to completely remove iron losses (hysteresis and eddy current losses), significantly improving motor efficiency and reducing temperature rise. Also eliminates cogging for exceptionally smooth low-speed operation.

Core AdvantagesZero core loss, higher efficiency, lower temperature rise

Halbach array

Halbach Array

A Halbach array arrangement of permanent magnets enhances the magnetic field on one side while canceling it on the opposite side, achieving a magnetic steel utilization rate of nearly 100%. This configuration generates a stronger air gap magnetic field with the same amount of magnetic steel, significantly boosting motor torque output.

Core AdvantagesMagnet utilization rate approaches 100%

Rare-earth-free magnetic circuit

No Heavy Rare Earth

Optimized magnetic circuit design and magnet arrangement deliver high performance without relying on heavy rare earth elements like dysprosium or terbium. This reduces exposure to raw material cost volatility and aligns with sustainable supply chain trends.

Core AdvantagesNo reliance on heavy rare earths for a safer supply chain

Dual-rotor structure

Dual-Rotor

The dual-rotor, single-stator sandwich structure features symmetrical magnetic flux from both rotors acting on the central stator. This design delivers smoother torque output, offers a compact footprint with radial force self-balancing, and effectively reduces vibration and noise.

Core AdvantagesSmooth torque, compact design, low vibration

Zero cogging torque

Zero Cogging Torque

The coreless structure eliminates cogging effects at the source, with cogging torque below 5 mN·m, enabling start-up in light winds (2.0m/s). The motor operates smoothly even at extremely low speeds, with no low-speed torque ripple.

Core AdvantagesCogging torque < 5 mN·m; starts in light breeze.

R&D Strength

Top 10 R&D Directions, Full-Process Coverage

01Axial flux topology optimization
02Coreless Winding Design
03Halbach array arrangement
04Magnetic Circuit Simulation and Optimization
05Dual-rotor structural mechanics
06Low torque ripple control
07MPPT Algorithm Development
08Thermal Management and Heat Dissipation Design
09Lightweight material application
10System Integration and Testing
01Requirement AnalysisDefine use cases, performance metrics, and constraints.
02Solution DesignElectromagnetic Topology Selection, Magnetic Circuit Design, and Preliminary Simulation
03Simulation VerificationMultiphysics Coupled Simulation: Electromagnetic, Thermal, Structural, and Fluid
04Prototype ManufacturingPrecision Machining, Winding Fabrication, and Assembly Commissioning
05Test optimizationPerformance Testing, Reliability Validation, and Iterative Optimization