ROTATING ELECTRIC MACHINE
A rotating electric machine includes a plurality of windings, and the plurality windings include a first winding in which a jumper wire portion is disposed on one side in a rotational axis direction of an armature core and a second winding in which a jumper wire portion is disposed on the other side in the rotational axis direction of the armature core.
1 . A rotating electric machine comprising:
an armature core which includes a plurality of core portions divided in a circumferential direction; and
a winding which includes winding portions wound around the plurality of core portions and a jumper wire portion connecting the winding portions to each other,
wherein a plurality of the windings are provided to correspond to a plurality of phases, and
wherein the plurality of windings includes a first winding in which the jumper wire portion is disposed on one side in a rotational axis direction of the armature core and a second winding in which the jumper wire portion is disposed on the other side in the rotational axis direction of the armature core.
2 . The rotating electric machine according to claim 1 ,
wherein three windings are provided to correspond to three phases, and
wherein the three windings includes the first winding of a first phase, the second winding of a second phase, and the first winding of a third phase.
3 . The rotating electric machine according to claim 2 ,
wherein in each of the first winding of the first phase and the first winding of the third phase, winding starts from one side in a circumferential direction of the core portion on one end side in a circumferential direction among the plurality of core portions, and the winding ends on the other side in the circumferential direction of the core portion on the other end side in the circumferential direction among the plurality of core portions via the jumper wire portion disposed on the one side in the rotational axis direction, and
wherein in the second winding of the second phase, winding starts from one side in the circumferential direction of the core portion on the other end side in the circumferential direction among the plurality of core portions, and the winding ends on the other side in the circumferential direction of the core portion on one end side in the circumferential direction among the plurality of core portions via the jumper wire portion disposed on the other side in the rotational axis direction.
4 . The rotating electric machine according to claim 2 ,
wherein a winding start portion of the first winding of the first phase and a winding end portion of the first winding of the third phase are disposed to extend to the one side in the rotational axis direction from a portion between the adjacent core portions,
wherein a winding start portion of the second winding of the second phase and a winding end portion of the first winding of the first phase are disposed to extend to the one side in the rotational axis direction from the portion between the adjacent core portions, and
wherein a winding start portion of the first winding of the third phase and a winding end portion of the second winding of the second phase are disposed to extend to the one side in the rotational axis direction from the portion between the adjacent core portions.
5 . The rotating electric machine according to claim 2 ,
wherein the jumper wire portion of the second winding of the second phase is disposed on a lead wire side, and
wherein the jumper wire portions of the first winding of the first phase and the first winding of the third phase are disposed on a side opposite to the lead wire side.
6 . The rotating electric machine according to claim 1 ,
wherein the jumper wire portion of each of the first winding and the second winding is disposed outside an inner diameter-side surface of the armature core when viewed in the rotational axis direction.