IP Library › Granted Patent US 11,667,271
Granted Patent B2
US 11,667,271 · App. 16/733,853 · Granted Jun 6, 2023

Method for activation and deactivation of a control device

Inventors: Bernd Stoehr (Sachsenheim, DE); Christian Jelenowski (Kupferzell, DE); Frank Baehrle-Miller (Schoenaich, DE); Steffen Zechmeister (Bad Wimpfen, DE)
Assignee: Robert Bosch GmbH
B60T8/171B60T1/065B60T8/3205B60T13/741F16D55/226F16D65/183B60T2220/03B60T2240/00F16D2121/24F16D2125/40
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Quick Facts
Patent No.
US 11,667,271
App. No.
16/733,853
Granted
Jun 6, 2023
Kind
B2
Abstract

In a method for activating and deactivating a control unit which can be used to control an electrically activatable assembly, the control unit is switched between a waking state, a sleep state and a deactivated state, wherein in the sleep state, the control device is disabled but can be transferred into the waking state by means of a sensor signal.

Claims (34)

1. A method for activation and deactivation of a control unit configured to control an electrically activatable assembly, the method comprising:

controlling, with the control unit, the electrically activatable assembly in a waking state of the control unit, the control unit being active in the waking state;

switching the control unit from a sleep state of the control unit to the waking state based on a sensor signal of at least one monitoring sensor, the control unit being unable to control the electrically activatable assembly in the sleep state;

maintaining the control unit in the sleep state over a specified time interval and automatically switching the control unit from the sleep state to the deactivated state after expiry of the specified time interval; and

switching the control unit from a deactivated state of the control unit to the waking state only in response to switching on the control unit, the control unit being disabled and unable to control the electrically activatable assembly in the deactivated state.

2. The method according to claim 1 further comprising:

one of (i) actively energizing and (ii) supplying energy to the at least one monitoring sensor in the sleep state.

3. The method according to claim 1 further comprising:

automatically switching the control unit from the sleep state to the waking state after expiry of the specified time interval; and

monitoring, with the control unit, in the waking state, a condition of one of (i) the electrically activatable assembly and (ii) an environment of the electrically activatable assembly.

4. The method according to claim 3 further comprising one of:

controlling an actuator during the monitoring of the condition; and

monitoring a behavior of the actuator during the monitoring of the condition.

5. The method according to claim 3 further comprising:

automatically switching the control unit into the deactivated state after a completion of the monitoring of the condition.

6. The method according to claim 1 , wherein the electrically activatable assembly is an electric brake motor of a vehicle parking brake, the controlling further comprising:

controlling, with the control unit, in the waking state, the electric brake motor.

7. The method according to claim 6 , wherein the at least one monitoring sensor is at least one of (i) a wheel speed sensor and (ii) an acceleration sensor, the method further comprising:

monitoring a sensor signal of the least one of (i) the wheel speed sensor and (ii) the acceleration sensor during the sleep state of the control unit.

8. The method according to claim 6 further comprising:

monitoring a hydraulic brake pressure in a vehicle footbrake.

9. A control unit for controlling an electrically activatable assembly, the control unit configured to:

control the electrically activatable assembly in a waking state of the control unit, the control unit being active in the waking state;

switch from a sleep state of the control unit to the waking state based on a sensor signal of at least one monitoring sensor, the control unit being unable to control the electrically activatable assembly in the sleep state;

maintain the control unit in the sleep state over a specified time interval and automatically switch the control unit from the sleep state to the deactivated state after expiry of the specified time interval; and

switch from a deactivated state of the control unit to the waking state only in response to switching on the control unit, the control unit being disabled and unable to control the electrically activatable assembly in the deactivated state.

10. The control unit according to claim 9 , wherein the control unit executes program code of a computer program product having to control the electrically activatable assembly and to switch between the waking state, the sleep state, and the deactivated state.

11. A parking brake for a vehicle, the parking brake comprising:

at least one electro-mechanical braking system on a vehicle wheel, the at least one electro-mechanical braking system having an electric brake motor configured to move a brake piston towards a brake disc to generate a braking force; and

a control unit for controlling adjustable components of the parking brake, the control unit configured to:

control the adjustable components of the parking brake in a waking state of the control unit, the control unit being active in the waking state;

switch from a sleep state of the control unit to the waking state based on a sensor signal of at least one monitoring sensor, the control unit being unable to control the adjustable components of the parking brake in the sleep state;

maintain the control unit in the sleep state over a specified time interval and automatically switch the control unit from the sleep state to the deactivated state after expiry of the specified time interval; and

switch from a deactivated state of the control unit to the waking state only in response to switching on the control unit, the control unit being disabled and unable to control the adjustable components of the parking brake in the deactivated state.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2020
From: STOEHR, BERND; JELENOWSKI, CHRISTIAN; BAEHRLE-MILLER, FRANK; ZECHMEISTER, STEFFEN
To: ROBERT BOSCH GMBH
Reel/Frame 053441/0480 →
Priority Claims (1)
DE 10 2019 200 955.7 · Jan 25, 2019 · national
Continuity (1)
Related Publication 20200238962A1 · Jul 30, 2020