IP Library › Granted Patent US 11,482,951
Granted Patent B2
US 11,482,951 · App. 16/771,675 · Granted Oct 25, 2022

Brake driving control circuit and breakdown detection method thereof

Inventor: Hideyuki Odagiri (Nagano, JP)
Assignee: NIDEC CORPORATION
H02P3/08G01R31/343H02M7/06B25J9/1628
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Quick Facts
Patent No.
US 11,482,951
App. No.
16/771,675
Granted
Oct 25, 2022
Kind
B2
Abstract

The brake driving control circuit, which controls an electromagnetic brake that releases the brake by applying a current, is provided with: a first rectifying element provided between a first power supply of a first circuit voltage and one terminal of the electromagnetic brake; a cut-off switch inserted into a line through which the first power supply supplies power; a first switching element provided between the other terminal of the electromagnetic brake and a ground point; and a second switching element and a second rectifying element provided in series between a second power supply of a second circuit voltage, which is different from the first circuit voltage, and the one terminal of the electromagnetic brake.

Claims (19)

1. A brake driving control circuit, for controlling an electromagnetic brake configured to release a brake by being energized, the brake driving control circuit comprising: a first rectifying element provided between a first power supply for a first circuit voltage and one terminal of the electromagnetic brake; a cut-off switch inserted into a line through which a power is supplied to the first power supply to operate the first power supply; a first switching element provided between another terminal of the electromagnetic brake and a ground point; and a second switching element and a second rectifying element provided in series between a second power supply for a second circuit voltage lower than the first circuit voltage and the one terminal of the electromagnetic brake, wherein the second circuit voltage is greater than 0; a monitoring means configured to monitor a voltage of the one terminal and the other terminal of the electromagnetic brake; wherein the monitoring means includes a first monitoring circuit configured to detect a voltage at a connection point between the other terminal of the electromagnetic brake and the first switching element, and a second monitoring circuit configured to detect a voltage at a connection point between the second switching element and the second rectifying element.

2. The brake driving control circuit according to claim 1 , wherein the monitoring means includes a first monitoring circuit configured to detect a voltage at a connection point between the other terminal of the electromagnetic brake and the first switching element, and a second monitoring circuit configured to detect a voltage at a connection point between the second switching element and the second rectifying element.

3. The brake driving control circuit according to claim 1 , further comprising:

a breakdown detection circuit configured to output a breakdown detection signal on the basis of a monitoring result of the monitoring means and maintain the cut-off switch in an open state.

4. The brake driving control circuit according to claim 3 , wherein the breakdown detection circuit is configured such that an output of the first power supply is discharged when the breakdown detection signal is output.

5. The brake driving control circuit according to claim 1 , comprising:

a monitoring means including a circuit configured to monitor a voltage between two terminals of the electromagnetic brake.

6. The brake driving control circuit according to claim 5 , further comprising:

a breakdown detection circuit configured to output a breakdown detection signal on the basis of a monitoring result of the monitoring means and maintain the cut-off switch in an open state.

7. The brake driving control circuit according to claim 6 , wherein the breakdown detection circuit is configured such that an output of the first power supply is discharged when the breakdown detection signal is output.

8. The brake driving control circuit according to claim 1 , wherein when the cut-off switch is open and the first power supply is not in operation, the first switching element and the second switching element enter an operating state on the basis of an operation of a brake release switch or an input of a brake release command, and the electromagnetic brake is released.

9. The brake driving control circuit according to claim 8 , wherein the first switching element is PWM-driven so that a voltage applied to the electromagnetic brake when a released state of the electromagnetic brake is maintained is lower than a voltage applied to the electromagnetic brake when the electromagnetic brake transitions to the released state.

10. The brake driving control circuit according to claim 1 , wherein the first switching element is PWM-driven so that a voltage applied to the electromagnetic brake when a released state of the electromagnetic brake is maintained is lower than a voltage applied to the electromagnetic brake when the electromagnetic brake transitions to the released state.

11. A breakdown detection method in a brake driving control circuit for controlling an electromagnetic brake configured to release a brake by being energized, the brake driving control circuit including a first rectifying element provided between a first power supply for a first circuit voltage and one terminal of the electromagnetic brake, a first switching element provided between an other terminal of the electromagnetic brake and a ground point, and a second switching element and a second rectifying element provided in series between a second power supply for a second circuit voltage different from the first circuit voltage and the one terminal of the electromagnetic brake, the breakdown detection method comprising:

driving the second switching element using a pulse having a length in which the electromagnetic brake does not respond when the first power supply is not in operation; and

monitoring a voltage at a connection point between the other terminal of the electromagnetic brake and the first switching element and a voltage at a connection point between the second switching element and the second rectifying element.

12. The breakdown detection method according to claim 11 , comprising:

PWM-driving the first switching element when the electromagnetic brake is released, and

monitoring the voltage at the connection point between the other terminal of the electromagnetic brake and the first switching element in synchronization with the PWM driving.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2026
From: NIDEC CORPORATION
To: ZEUS CO., LTD.
Reel/Frame 076043/0581 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2020
From: ODAGIRI, HIDEYUKI
To: NIDEC CORPORATION
Reel/Frame 052934/0680 →
Priority Claims (1)
JP JP2017-236877 · Dec 11, 2017 · national
Continuity (1)
Related Publication 20200313578A1 · Oct 1, 2020