Motor and method of manufacturing stator used therefor
View Patent ↗A motor includes: a rotor in which 10 poles are magnetized at regular intervals; a stator having 12 core pieces and facing the rotor, all core pieces having a concentrated winding wound in the same direction and being annularly arranged; and a wiring board for making 3-phase connection of the windings. A wire connection is made through the wiring board in such a manner that electric currents of adjacent same phase windings flow in opposite directions and of electric currents of adjacent different phase windings flow in same directions.
1. A motor comprising:
a rotor in which 10 poles are magnetized at regular intervals;
a stator having 12 core pieces and facing the rotor, all core pieces having a concentrated winding wound in a same winding direction and being annularly arranged; and
a wiring board for making 3-phase connection of the windings, wherein
a wire connection is made through the wiring board in such a manner that electric currents of adjacent same phase windings flow in opposite directions and electric currents of adjacent different phase windings flow in same directions.
2. The motor of claim 1 , wherein two circuits, in which the adjacent same phase windings are connected in series, are connected in parallel with each other, and
the 3-phase connection is made by Y-connection.
3. The motor of claim 1 , wherein the wiring board is a multiple layer printed wiring board, and
the wire connection is made through a multiple layer wiring pattern at the multiple layer printed wiring board.
4. The motor of claim 2 , wherein the wiring board is a multiple layer printed wiring board, and
the Y-connection is made through a multiple layer wiring pattern at the multiple layer printed wiring board.
5. A method of manufacturing a stator comprising:
a step of arranging 12 core pieces laterally and conducting concentrated winding continuously in a same winding direction with respect to all of the core pieces;
a step of arranging the 12 core pieces having the windings annularly;
a step of cutting off crossover lines connecting all of the core pieces when the windings are continuously wound; and
a step of connecting end portions of the windings, which are made by the cutting of the crossover lines, to each other by 3-phase-connection through the wiring board in such a manner that electric currents of adjacent same phase windings flow in opposite directions and electric currents of adjacent different phase windings flow in same directions.