Electric motor
A DC motor, has a stator housing accommodating a permanent magnet stator; a rotor, rotatably mounted confronting the stator, the rotor having a shaft, a rotor core fitted to the shaft and having laminations forming salient poles, a commutator fitted to the shaft adjacent one end of the rotor core, windings wound about poles of the rotor core and terminated on the commutator, the windings each being wound around a single pole of the rotor; and brush gear comprising brushes in sliding contact with the commutator for transferring electrical power to the windings.
1. A cooling fan module for an internal combustion engine of a vehicle, comprising: a housing adapted to engage a radiator of the vehicle and forming a cowling; a fan located within the cowling for generating a flow of air through the cowling; and a motor supported by the housing and driving the fan, the motor comprising:
a permanent magnet stator which has an even number of magnetic poles; and
a rotor which has a shaft, a rotor core fitted to the shaft, a commutator fitted to the shaft adjacent the core, and windings wound about teeth of the rotor core and electrically connected to segments of the commutator,
wherein each winding has at least one coil wound around a respective single one of the rotor teeth;
wherein the windings are arranged such that each coil is connected, at each end, to a coil wound in the opposite direction; and
wherein the rotor core has m teeth and the windings have 2 m coils, each coil being wound around a respective single one of the teeth and each tooth supporting two of said coils.
2. The cooling fan module of claim 1 , wherein the stator has 2 n magnetic poles and m is equal to 3 n.
3. The cooling fan module of claim 1 , wherein the commutator has 2 m commutator segments with each coil being connected to a respective pair of adjacent commutator segments.
4. The cooling fan module of claim 1 , wherein the two coils supported on the same tooth are wound in opposite directions.
5. The cooling fan module of claim 1 , wherein the two coils supported on the same tooth are wound with opposite polarity and the ends of each coil are connected to adjacent segments of the commutator.