US 12,454,307 B2
Electric drive device and electric power steering device
Akio Maruhashi, Tokyo (JP)
Assigned to NSK STEERING & CONTROL, INC., Tokyo (JP)
Appl. No. 18/865,916
Filed by NSK Steering & Control, Inc., Tokyo (JP)
PCT Filed Oct. 26, 2023, PCT No. PCT/JP2023/038657
§ 371(c)(1), (2) Date Nov. 14, 2024,
PCT Pub. No. WO2024/095882, PCT Pub. Date May 10, 2024.
Claims priority of application No. 2022-175020 (JP), filed on Oct. 31, 2022.
Prior Publication US 2025/0171074 A1, May 29, 2025
Int. Cl. B62D 5/04 (2006.01); H02K 3/28 (2006.01); H02K 11/00 (2016.01); H02K 11/33 (2016.01)
CPC B62D 5/046 (2013.01) [H02K 3/28 (2013.01); H02K 11/0094 (2013.01); H02K 11/33 (2016.01); H02K 2211/03 (2013.01)] 7 Claims
OG exemplary drawing
 
1. An electric drive device comprising:
a shaft extending in an axial direction from a load side to an anti-load side;
a motor rotor interlocked with the shaft;
a motor stator including a stator core that rotates the motor rotor and a plurality of coil groups that are divided into at least two systems of coil groups of a first coil group and a second coil group for every three phases and excite the stator core with three-phase alternating current;
an electric motor including a housing having a tubular shape that accommodates the motor rotor, the motor stator, and the plurality of coil groups inside;
a magnet provided at an end on the anti-load side of the shaft to drive and control the electric motor;
an electronic control device including one circuit board disposed on the anti-load side of the shaft and on an extension line in the axial direction of the shaft;
a heat sink disposed between the circuit board and the electric motor; and
a connector including a terminal connected to the circuit board,
the circuit board including:
a disposition area for a detection circuit that is on an extension line in an axial direction of the magnet, is attached to the circuit board, and includes a magnetic sensor that detects rotation of the magnet;
a mounting area for a plurality of drive elements of a first inverter circuit that supplies a current to the first coil group;
a mounting area for a plurality of drive elements of a second inverter circuit that supplies a current to the second coil group;
a mounting area for a first current detection element that detects a current flowing through the first inverter circuit;
a mounting area for a second current detection element that detects a current flowing through the second inverter circuit;
a mounting area for a first motor driver circuit including a first current detection circuit that amplifies a detection value detected by the first current detection element, and a first gate driver circuit that drives the plurality of drive elements of the first inverter circuit;
a mounting area for a second motor driver circuit including a second current detection circuit that amplifies a detection value detected by the second current detection element, and a second gate driver circuit that drives the plurality of drive elements of the second inverter circuit;
a mounting area for a control circuit that controls the first gate driver circuit based on a current value obtained by amplifying, with the first current detection circuit, the detection value detected by the first current detection element, and controls the second gate driver circuit based on a current value obtained by amplifying, with the second current detection circuit, the detection value detected by the second current detection element;
a disposition area for first coil wires being an area in which each of the first coil wires of the first coil group is connected to a board body of the circuit board; and
a disposition area for second coil wires being an area in which each of the second coil wires of the second coil group is connected to the board body of the circuit board, wherein
the mounting area for the first motor driver circuit, the mounting area for the first current detection element, the mounting area for the plurality of drive elements of the first inverter circuit, and the disposition area for the first coil wires are disposed in order from a reference position to one side in a first direction with a position on the extension line in the axial direction of the shaft as the reference position,
the mounting area for the second motor driver circuit, the mounting area for the second current detection element, the mounting area for the plurality of drive elements of the second inverter circuit, and the disposition area for the second coil wires are disposed in this order from the reference position to the other side in the first direction, and
the mounting area for the control circuit and the terminal of the connector sandwich the reference position in a second direction intersecting the first direction.