2024 – 2025 · ICEMS 2025
Flexible Annular Receiving Coil
A rolled-up flexible-PCB coil with two oppositely wound sub-coils that keeps power flowing while a wireless motor rotates.
- 0–60°
- rotation range with stable power transfer
- ~20 V
- DC bus held within ±20% across that range
- ~68%
- system efficiency, up to ~10 W received
Problem
In existing wireless motors the receiving coil must stay precisely aligned with the transmitter. That rules out applications that need wide rotation — robot joint motors, for example, which otherwise need slip rings or rotary joints.
Approach
- A 60-mm PCB transmitting coil with sparse-inside, dense-outside winding for a more uniform field, verified in Ansys HFSS.
- A flexible polyimide receiving coil (198.5 × 50 mm, 0.24 mm thick) rolled into a 62-mm ring around the transmitter.
- Two sub-coils wound in opposite directions, so the opposing fields on the two faces of the transmitter induce currents in the same direction — effectively a parallel configuration.
- A GaN Class E amplifier at 6.78 MHz and a converter board with half-bridge rectifier, buck converter and three-phase inverter.
Results
Under a 40-Ω load the DC bus stays at about 20 V (within ±20%) from 0 to 60° of rotation, with system efficiency around 68%. Beyond 60° the sub-coils start to see opposing flux and the voltage drops, reaching zero at 90° — consistent with the analysis.
Related publication
ICEMS2025
A MHz-Class Integrated Wireless Motor Supporting Wide-Range Rotation
28th International Conference on Electrical Machines and Systems