Compression processing on flat plate connecting portions eliminates burrs, removing the need for time-consuming inspection steps.
An asymmetric coil fastening part eliminates thermal expansion steps to improve workability while maintaining reliable attachment.
Deformable sleeve clamps winding wire and stranded conductor via force-locking connection, reducing manufacturing effort.
Integrating conductive means into contact ring bores eliminates complex wiring, reducing device weight while maintaining reliable electrical connections.
Deforming a shield plate protrusion secures the bearing holder, reducing assembly complexity and magnetic sensor misalignment.
An annular fixing member secures stator wiring between the core back and the cover to prevent rotor interference.
A flexible fiberglass member compresses between stator portions to retain winding coils in wind turbine generators.
A fuel pump ground terminal held by a resin layer provides electrical insulation from supplying terminals.
Recesses on the stator carrier shoulder enable continuous coolant drainage to prevent accumulation and temperature imbalances.
Groove portions on connection terminal holes contain brazing material during rotary electric machine assembly.
A slot closure device uses a spring element between a sliding block and pressure plate to mechanically activate prestress forces for winding retention.
Resin partial moldings stabilize magnetic characteristics by preventing core piece separation caused by winding and annealing stresses.
Triangular wedge with outward tabs prevents winding displacement under centrifugal force, eliminating complex fastening methods and reducing aerodynamic drag.
A coil retainer with a longitudinal spine and central rib constrains windings in electric machine rotors against centrifugal forces at high speeds.
Merging multiple windings into one continuous path reduces coil terminals and manufacturing man-hours while maintaining electrical reliability.
Segmenting magnetic bearings into modular sectors enables automated assembly, reducing labor time while increasing load capacity.