IP Library › Granted Patent US 12,503,887
Granted Patent B2
US 12,503,887 · App. 18/497,391 · Granted Dec 23, 2025

Electronically controlled door latch

Inventors: Carlo Mutti (Origlio, CH); Marco Merletti (Gazzada Schianno, IT)
Assignee: Kiekert AG
E05B81/56B60R16/03E05B81/04E05B81/82
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Quick Facts
Patent No.
US 12,503,887
App. No.
18/497,391
Granted
Dec 23, 2025
Kind
B2
Abstract

An electronically controlled door latch for a motor vehicle, the electronically controlled door latch being configured for operating in at least three different operation conditions including a normal operating condition, a sleep operating condition and a crash operating condition, and comprising a system basis chip configured for receiving a main supply voltage from a main power source of the motor vehicle during the normal operating condition and a backup supply voltage during the crash operating condition, an electric motor configured for actuating the electronically controlled door latch based on the main supply voltage (Vbatt) during the normal operating condition and on the backup supply voltage during the crash operating condition, and an electronic control unit configured, when being triggered by the system basis chip, for falling asleep during the sleep operating condition and for being wakening up during the normal operating condition and the crash operating condition and configured for controlling the electric motor during the normal operating condition and during the crash operating condition.

Claims (20)

1 . An electronically controlled door latch for a motor vehicle, the electronically controlled door latch being configured for operating in at least three different operation conditions including a normal operating condition, a sleep operating condition and a crash operating condition, the electronically controlled door latch comprising:

a system basis chip configured for receiving a main supply voltage from a main power source of the motor vehicle during the normal operating condition and a backup supply voltage during the crash operating condition,

an electric motor configured for actuating the electronically controlled door latch based on the main supply voltage during the normal operating condition and on the backup supply voltage during the crash operating condition, and

an electronic control unit configured for controlling the electric motor during the normal operating condition and during the crash operating condition,

wherein the electronic control unit is configured to determine a change from the normal operating condition to the crash operating condition when the main supply voltage is below a threshold value,

wherein in at least the crash operating condition, the system basis chip is further configured to cause the electronic control unit to fall asleep by powering off, and

wherein responsive to receiving a wakening up signal, the system basis chip is configured to awaken the electronic control unit by providing power to the electronic control unit via the backup supply voltage.

2 . The electronically controlled door latch according to claim 1 , whereby the system basis chip comprises a low-dropout, LDO, regulator configured for receiving the main supply voltage and the backup supply voltage, a wakeup manager configured for receiving a wakening up signal and a bus transceiver configured for communicating with the motor vehicle.

3 . The electronically controlled door latch according to claim 2 , whereby the system basis chip is further configured, to power off the LDO regulator and/or the bus transceiver when the system basis chip power offs the electronic control unit.

4 . The electronically controlled door latch according to claim 1 , whereby the system basis chip comprises a low-dropout, LDO, regulator and/or a wakeup manager configured for awakening the electronic control unit by powering on the electronic control unit in response to the wakening up signal.

5 . The electronically controlled door latch according to claim 4 , whereby the electronic control unit is configured for processing a wakening up request associated with the wakening up signal.

6 . The electronically controlled door latch according to claim 1 , whereby the system basis chip is configured to awaken the electronic control unit by powering on the electronic control unit in response to an i/o status signal change, a bus transition and/or a change from the normal operating condition to the crash operating condition.

7 . The electronically controlled door latch according to claim 1 , comprising a supercapacitor group configured to store energy during the normal operating condition and to provide the backup supply voltage during the crash operating condition.

8 . The electronically controlled door latch according to claim 7 , whereby the supercapacitor group comprises at least a first supercapacitor cell, at least a first and a second supercapacitor cells, connected to each other, to jointly provide the backup supply voltage.

9 . A motor vehicle comprising an electronically controlled door latch according to claim 1 and the main power source, whereby the main power source is connected to the system basis chip.

10 . A method for operating an electronically controlled door latch of a motor vehicle, the electronically controlled door latch being configured for operating in at least three different operation conditions including a normal operating condition, a sleep operating condition and a crash operating condition, and the electronically controlled door latch comprising

a system basis chip configured for receiving a main supply voltage from a main power source of the motor vehicle during the normal operating condition and a backup supply voltage during the crash operating condition, and

an electric motor configured for actuating the electronically controlled door latch based on the main supply voltage during the normal operating condition and on the backup supply voltage during the crash operating condition, the method comprising the step of:

triggering an electronic control unit for falling asleep via the system basis chip by powering off the electronic control unit during at least the crash operating condition and

responsive to the system basis chip receiving a wakening up signal, causing the electronic control unit to awaken by powering on and providing power to the electronic control unit via the backup supply voltage, whereby the electronic control unit is configured for controlling the electric motor during the crash operating condition.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2025
From: MUTTI, CARLO; MERLETTI, MARCO
To: KIEKERT AKTIENGESELLSCHAFT
Reel/Frame 070288/0959 →
Priority Claims (1)
EP 22205295 · Nov 3, 2022 · regional
Continuity (1)
Related Publication 20240151074A1 · May 9, 2024
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