IP Library Granted Patent US 10,211,771
Granted Patent B2
US 10,211,771 · App. 15/480,188 · Granted Feb 19, 2019

Drive apparatus and electric power steering apparatus using the same

Inventor: Masashi Yamasaki (Kariya, JP)
Assignee: DENSO CORPORATION
H02P27/06B62D5/04B62D5/0406H02K5/225H02K9/22H02K11/215H02K11/33H02P6/16
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Quick Facts
Patent No.
US 10,211,771
App. No.
15/480,188
Granted
Feb 19, 2019
Kind
B2
Abstract

A drive apparatus is provided with a motor, a plurality of substrates and a plurality of connectors. The substrates are provided in one side of the motor in the axial direction thereof, the substrates including switching elements and control components mounted thereon. The connectors are provided in an opposite side against the motor across the substrates, the connectors including connector terminals connected to one of the substrates. The substrates include two or more non-overlapped regions where no substrates are overlapped when projecting the substrates in the axial direction. The non-overlapped regions include a connector connecting region connected to the connector terminals, and a motor line connecting region connected to winding groups of the motor corresponding to every phase of each winding group.

Claims (49)

1. A drive apparatus comprising:

a motor having a plurality of winding groups and a rotational axis that extends in an axial direction of the motor, wherein the motor rotates about the rotational axis of the motor;

a plurality of substrates provided in one side of the motor relative to the axial direction, each comprising at least one surface that faces another surface of another substrate in the axial direction, wherein the substrates are arranged such that the surfaces extend in a direction perpendicular to the axial direction of the motor, the substrates including switching elements and control components mounted on at least one of the substrate surfaces, the switching elements serving as a conduction control of the winding groups, and the control components being related to a driving control of the motor; and

a plurality of connectors provided in an opposite side against the motor across the substrates, the plurality of connectors having connector terminals connected to one of the substrates, wherein

the substrates include two or more non-overlapped regions where no substrates are overlapped when projecting the substrates in the axial direction of the motor;

a connector connecting region is defined as at least one of regions in the non-overlapped regions, the connector connecting region being connected to the connector terminals; and

a motor line connecting region is defined as at least one of regions in the non-overlapped regions excluding the connector connecting region, the motor line connecting region being connected to the winding groups corresponding to every phase of each winding group.

2. The drive apparatus according to claim 1 , wherein

the substrates are formed in the same shape.

3. The drive apparatus according to claim 1 , wherein

the substrates are two in number, and disposed such that one substrate is rotated by 90 degrees with respect to the other substrate.

4. The drive apparatus according to claim 1 , wherein

a rotation sensor is provided on one of the substrates disposed in the most motor side.

5. The drive apparatus according to claim 1 , wherein

the substrates are two in number, and a heat sink is provided between a first substrate and a second substrate in the axial direction, where the first substrate is located in the motor side and the second substrate is located in a connector side; and

at least one switching element is mounted on the surface of at least one of the first or second substrates that is facing the heat sink such that the at least one switching element is positioned to radiate heat to the heat sink.

6. The drive apparatus according to claim 5 , wherein

the plurality of winding groups are two in number;

the first substrate is connected to the motor lines connected to one winding group, the first substrate includes the switching elements related to the conduction control of the winding groups and the control components; and

the second substrate is connected to the motor lines connected to the other winding group, the second substrate includes the switching elements related to the conduction control of the winding groups and the control components.

7. The drive apparatus according to claim 5 , wherein

the switching elements mounted on the first substrate are provided to be capable of radiating heat towards a frame which forms an outline of the motor in one side in the axial direction; and

the switching elements mounted on the second substrate are provided to be capable of radiating heat towards the heat sink.

8. The drive apparatus according to claim 1 , wherein

spring terminals are provided on the substrates; and

the spring terminals are elastic-deformed under a state where the terminals are inserted into the spring terminals, to allow the spring terminals to come into contact with the terminals.

9. An electric power steering apparatus comprising:

a drive apparatus including:

a motor having a plurality of winding groups and a rotational axis that extends in an axial direction of the motor, wherein the motor rotates about rotational axis of the motor;

a plurality of substrates provided in one side of the motor relative to the axial direction, each comprising at least one surface that faces another surface of another substrate in the axial direction, wherein the substrates are arranged such that the surfaces extend in a direction perpendicular to the axial direction of the motor, the substrates including switching elements and control components mounted on at least one of the substrate surfaces, the switching elements serving as a conduction control of the winding groups, and the control components being related to a driving control of the motor; and

a plurality of connectors provided in an opposite side against the motor across the substrates, the plurality of connectors having connector terminals connected to one of the substrates, wherein

the substrates include two or more non-overlapped regions where no substrates are overlapped when projecting the substrates in the axial direction of the motor;

a connector connecting region is defined as at least one of regions in the non-overlapped regions, the connector connecting region being connected to the connector terminals; and

a motor line connecting region is defined as at least one of regions in the non-overlapped regions excluding the connector connecting region, the motor line connecting region being connected to the winding groups corresponding to every phase of each winding group; and

a power transmission member that transmits power of the motor outputting an auxiliary torque to a drive object, the auxiliary torque assisting a steering operation of a steering used by a driver.

10. A drive apparatus comprising:

a motor having a plurality of winding groups and a rotational axis that extends in an axial direction of the motor, wherein the motor rotates about the rotational axis of the motor;

a plurality of substrates provided in one side of the motor relative to the axial direction, the substrates including switching elements and control components mounted thereon, the switching element serving as a conduction control of the winding groups, and the control components being related to a driving control of the motor; and

a plurality of connectors provided in an opposite side against the motor across the substrates, the plurality of connectors having connector terminals connected to one of the substrates, wherein

the plurality of substrates includes a first substrate and a second substrate, a first projection region being defined such that the first substrate is projected in the axial direction and a second projection region being defined such that the second substrate is projected in the axial direction of the motor;

wherein at least a part of the first projection region and a part of the second substrate are overlapped from each other;

the first substrate includes a first connector connecting region connected to the connecter terminals and a first motor line connecting region connected to motor lines corresponding to every phase of each winding group;

the second substrate includes a second connector connecting region connected to the connecter terminals and a second motor line connecting region connected to motor lines corresponding to every phase of each winding group; and

wherein each respective region of each of the first substrate and the second substrate are located to be symmetrical to each other with respect to the rotational axis of the motor.

11. The drive apparatus according to claim 10 , wherein

a first connector projection region is defined such that the first connector connecting region is projected in the axial direction, a second connector projection region is defined such that the second connector connecting region is projected in the axial direction;

a first motor line projection region is defined such that the first motor line connecting region is projected in the axial direction and a second motor line projection region is defined such that the second motor line connecting region is projected in the axial direction;

wherein the first connection projection region and the second connector projection region are not overlapped; and

wherein the first motor line projection portion and the second motor line projection portion are not overlapped.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 14, 2017
From: YAMASAKI, MASASHI
To: DENSO CORPORATION
Reel/Frame 042705/0194 →
Priority Claims (1)
JP 2016-076675 · Apr 6, 2016 · national
Continuity (1)
Related Publication 20170294860A1 · Oct 12, 2017
Cited By (1)
US 12,512,731