Segmented converter modules manage uneven capacitor capacitance by dynamically adjusting switching elements to balance voltage distribution.
A rotary electric machine stator winding design equalizes conductor distribution across slots to suppress wind-splitting noise.
Composite ring shields rotation sensor from switching noise while maintaining mechanical strength and detection accuracy.
Orthogonal oblong pole surfaces enable contactless power transfer and integrated position sensing, eliminating external sensors.
Ferrite shielding weakens interfering magnetic fields to enable reliable non-contact energy transmission.
A dual-sided electrical machine extracts power from gas turbine spools using independent rotors and stator windings.
A separately excited electric machine design featuring primary and secondary magnetic circuits enables efficient torque generation without permanent magnets.
A voltage regulator modifies pole wheel current to control alternator output.
Segmented litz wire reduces current displacement and internal stresses while maintaining high copper cross-sections for transverse flux machine stators.
A segmented stator design uses daughter PCBs to electrically connect multiple printed circuit board layers arranged in an annular array.
Dual generators connected via a cross diverter improve energy conversion efficiency while reducing operational noise through alloy steel components.
Reinforcing members mounted on the high-side heatsink increase rigidity near the output terminal, reducing cyclic vibration loads on rectifying elements.
Relocating excitation coils to the stator eliminates rotor windings, reducing weight and complexity.
Segmented connectors and universal stators resolve the trade-off between adaptability and manufacturing costs.