IP Library Granted Patent US 9,287,821
Granted Patent B2
US 9,287,821 · App. 13/763,158 · Granted Mar 15, 2016

DC electric motor control device

Inventors: Takayuki Fukuoka (Aichi, JP); Yoshiki Yamagishi (Aichi, JP); Satoshi Kido (Aichi, JP); Yasutaka Shirota (Aichi, JP)
Assignee: OMRON AUTOMOTIVE ELECTRONICS CO., LTD.
H02P31/00E05F15/40E05F15/63E05F15/70H02P7/0044H02P29/021E05Y2400/32E05Y2400/50E05Y2900/546
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Quick Facts
Patent No.
US 9,287,821
App. No.
13/763,158
Granted
Mar 15, 2016
Kind
B2
Abstract

A DC electric motor control device has a motor driving circuit that is constructed by a plurality of switching elements, a controller that operates the motor driving circuit to control a normal rotation or a reverse rotation of a DC electric motor, and an abnormality determination part that determines whether an abnormality is generated while the controller controls the DC electric motor. The controller previously performs reverse rotation control of the DC electric motor for a predetermined time using the motor driving circuit when performing normal rotation control of the DC electric motor, and the controller performs the normal rotation control only when the abnormality determination part determines that the abnormality is not generated during the reverse rotation control.

Claims (43)

1. A DC electric motor control device comprising:

a motor driving circuit that is constructed by a plurality of switching elements;

a controller that operates the motor driving circuit to control a normal rotation and a reverse rotation of a DC electric motor; and

an abnormality determination part that determines whether an abnormality is generated while the controller controls the DC electric motor,

wherein, when performing the normal rotation control of the DC electric motor, the controller initially performs reverse rotation control of the DC electric motor for a predetermined time using the motor driving circuit, and the controller performs the normal rotation control only when the abnormality determination part determines that the abnormality is not generated during the reverse rotation control, and

wherein, when performing the reverse rotation control of the DC electric motor, the controller initially performs the normal rotation control of the DC electric motor for a predetermined time using the motor driving circuit and the controller performs the reverse rotation control only when the abnormality determination part determines that the abnormality is not generated during the normal rotation control.

2. The DC electric motor control device according to claim 1 , further comprising:

a rotation angle detector that detects a rotation angle of the DC electric motor,

wherein the controller performs the normal rotation control or the reverse rotation control of the DC electric motor in a range of a predetermined rotation angle based on a detection value of the rotation angle detector, and

wherein the controller initially performs the control of the DC electric motor for the predetermined time and the abnormality determination of the abnormality determination part when the DC electric motor is located at an angle of a normal rotation end or a reverse rotation end.

3. The DC electric motor control device according to claim 2 , further comprising:

a current detector that detects a current passed through the DC electric motor,

wherein the abnormality determination part determines whether the abnormality is generated based on the current detected by the current detector.

4. The DC electric motor control device according to claim 1 , further comprising:

a position detector that detects a position of an object vertically moved by power of the DC electric motor,

wherein the controller performs the normal rotation control or the reverse rotation control to lift or lower the object in a predetermined range based on a detection value of the position detector, and

wherein the controller initially performs the control of the DC electric motor for the predetermined time and the abnormality determination of the abnormality determination part when the object is located at an upper end.

5. The DC electric motor control device according to claim 4 , further comprising:

a current detector that detects a current passed through the DC electric motor,

wherein the abnormality determination part determines whether the abnormality is generated based on the current detected by the current detector.

6. The DC electric motor control device according to claim 1 , further comprising:

a position detector that detects a position of an object vertically moved by power of the DC electric motor,

wherein the controller performs the normal rotation control or the reverse rotation control to lift or lower the object in a predetermined range based on a detection value of the position detector, and

wherein the controller initially performs the control of the DC electric motor for the predetermined time and the abnormality determination of the abnormality determination part when the object is located at a lower end.

7. The DC electric motor control device according to claim 6 , further comprising:

a current detector that detects a current passed through the DC electric motor,

wherein the abnormality determination part determines whether the abnormality is generated based on the current detected by the current detector.

8. The DC electric motor control device according to claim 1 , further comprising:

a current detector that detects a current passed through the DC electric motor,

wherein the abnormality determination part determines whether the abnormality is generated based on the current detected by the current detector.

9. The DC electric motor control device according to claim 8 ,

wherein, when the current detected by the current detector is greater than a threshold while the DC electric motor is initially controlled for the predetermined time:

the abnormality determination part determines that the abnormality is not generated, and

the controller stops the control of the DC electric motor.

10. The DC electric motor control device according to claim 8 ,

wherein, when the current detected by the current detector is greater than a threshold while the DC electric motor is initially controlled for the predetermined time:

the abnormality determination part determines that the abnormality is not generated after the predetermined time elapses, and

the controller stops the control of the DC electric motor.

11. A DC electric motor control device comprising:

a motor driving circuit that is constructed by a plurality of switching elements;

a controller that operates the motor driving circuit to control a normal rotation and a reverse rotation of a DC electric motor for opening and closing a rear hatch of a vehicle; and

an abnormality determination part that determines whether an abnormality is generated while the controller controls the DC electric motor,

wherein, when performing reverse rotation control of the DC electric motor, the controller initially performs normal rotation control of the DC electric motor for a predetermined time using the motor driving circuit such that the DC electric motor rotates in a direction to open the rear hatch to close the rear hatch while the rear hatch is in a fully-opened state, and the controller performs the reverse rotation control to close the rear hatch only when the abnormality determination part determines that the abnormality is not generated during the normal rotation control.

Assignments (1)
CHANGE OF NAME Recorded Jul 10, 2013
From: FUKUOKA, TAKAYUKI; YAMAGISHI, YOSHIKI; KIDO, SATOSHI; SHIROTA, YASUTAKA
To: OMRON AUTOMOTIVE ELECTRONICS CO., LTD.
Reel/Frame 030765/0130 →
Priority Claims (1)
JP 2012-024682 · Feb 8, 2012 · national
Continuity (1)
Related Publication 20130207576A1 · Aug 15, 2013