IP Library › Granted Patent US 11,447,981
Granted Patent B2
US 11,447,981 · App. 16/223,692 · Granted Sep 20, 2022

Smart lock having an electromechanical key with three positions

Inventors: Damien Fauvel (Chatillon, FR); Minglai Chen (Ivry sur Seine, FR); Romain Cazalis (Viroflay, FR); Martin Lespinasse (Boulogne-Billancourt, FR); Frédéric Potter (Neuilly-sur-Seine, FR)
Assignee: NETATMO
E05B63/0065E05B13/005E05B47/0001E05B47/0676G07C9/28E05B43/005E05B47/0638E05B2047/0067E05B2047/0094E05B2047/0095E05C9/00E05Y2900/132
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Quick Facts
Patent No.
US 11,447,981
App. No.
16/223,692
Granted
Sep 20, 2022
Kind
B2
Abstract

The invention concerns a locking mechanism ( 10 ) comprising an indoor mechanical actuation lever ( 11 ), an outdoor mechanical actuation lever ( 12 ) and a lock clutch ( 13 ), each mechanical actuation lever being configured to switch between a closed configuration and an open configuration, wherein the lock clutch ( 13 ) is configured to take at least three positions: a first position where the lock clutch is disengaged from the indoor mechanical actuation lever and outdoor mechanical actuation lever, a second position where the lock clutch is engaged with the indoor mechanical actuation lever and outdoor mechanical actuation lever, a third position where the lock clutch is engaged with the indoor mechanical actuation lever and disengaged from the outdoor mechanical actuation lever.

Claims (34)

1. A locking mechanism configured to cooperate with at least one identification key having an identification code, the locking mechanism comprising an indoor mechanical actuation lever, an outdoor mechanical actuation lever and a lock clutch, each mechanical actuation lever being configured to switch between a closed configuration and an open configuration, wherein the lock clutch is configured to take at least three positions:

a first position where the lock clutch is disengaged from the indoor mechanical actuation lever and outdoor mechanical actuation lever,

a second position where the lock clutch is engaged with the indoor mechanical actuation lever and outdoor mechanical actuation lever,

a third position where the lock clutch is engaged with the indoor mechanical actuation lever and disengaged from the outdoor mechanical actuation lever,

each mechanical actuation lever being configured to switch between the closed configuration and the open configuration when moved if the identification code of the at least one identification key is an authorized code of the locking mechanism, the locking mechanism further comprising:

a processor configured to read the identification code of the at least one identification key and determine if the identification code is an authorized code of the locking mechanism,

an access to a presence sensor, and

the processor is further configured to send to the lock clutch switching commands to an engaged state when the presence sensor detects an authorized user to be present in the room as the authorized user was authorized to enter, and to be switched to a disengaged state when the presence sensor detects nobody to be present in the room.

2. The locking mechanism according to claim 1 , wherein the sensor is a movement sensor configured to detect an authorized movement of the outdoor mechanical actuation lever, wherein the processor is configured to send to the lock clutch through the communication link the switching command from the first position to the second position and vice versa, or from the third position to the second position if the movement sensor detects an authorized movement of the outdoor mechanical actuation lever.

3. The locking mechanism according to claim 1 , wherein the processor is further configured to send to the lock clutch through a communication link a switching command from the second position to the third position, after a predetermined duration of inactivity of the locking mechanism.

4. The locking mechanism according to claim 1 , wherein the processor is further configured to send to the lock clutch switching commands between the second position and the third position, according to a predetermined schedule.

5. The locking mechanism of claim 1 wherein the presence sensor is a camera configured to recognize a number of authorized users.

6. The locking mechanism according to claim 1 , wherein the at least one identification key is a remote control and the processor is configured to receive from the remote control a switching command from any one of the three positions to any other one and to send to the lock clutch through a communication link said switching command.

7. A locking system comprising the locking mechanism according to claim 1 and the at least one identification key, wherein the at least one identification key comprises a transmitter of the identification code.

8. The locking system according to claim 7 , wherein the at least one identification key is a remote control.

9. The locking system according to claim 7 , wherein the at least one identification key is a remote control, and the remote control is a smart phone configured to receive the identification code from an external connection or generate the identification code.

10. A locking system comprising the locking mechanism according to claim 1 , wherein the at least one identification key is an electronic key.

11. A method for switching a locking mechanism from a position to another one, the locking mechanism being configured to cooperate with at least one identification key having an identification code, the locking mechanism comprising an indoor mechanical actuation lever, an outdoor mechanical actuation lever and a lock clutch, the lock clutch being configured to take three positions:

a first position where the lock clutch is disengaged from the indoor mechanical actuation lever and outdoor mechanical actuation lever,

a second position where the lock clutch is engaged with the indoor mechanical actuation lever and outdoor mechanical actuation lever,

a third position where the lock clutch is engaged with the indoor mechanical actuation lever and disengaged from the outdoor mechanical actuation lever,

each mechanical actuation lever being configured to switch between the closed configuration and the open configuration when moved if the identification code of the at least one identification key is an authorized code of the locking mechanism,

the locking mechanism further comprising:

a processor configured to read the identification code of the at least one identification key and determine if the identification code is an authorized code of the locking mechanism,

an access to a presence sensor, and

the processor being further configured to send to the lock clutch switching commands to an engaged state when the presence sensor detects an authorized user to be present in the room as the authorized user was authorized to enter, and to be switched to a disengaged state when the presence sensor detects nobody to be present in the room, and

wherein the method comprises:

cooperating the at least one identification key with the locking mechanism,

moving the indoor, respectively outdoor, mechanical actuation lever, and

switching the lock clutch depending on the switching command according to a determination by the sensor of a presence of a user.

12. The method of claim 11 , wherein the cooperating the at least one identification key with the locking mechanism takes place in the vicinity of the locking mechanism and comprises a step of generating a code by an algorithm of the processor which is transmitted from the processor to the identification key.

13. The method according to claim 12 comprising:

reading the identification code of the at least one identification key by the processor,

determining by the processor if the identification code is an authorized code of the locking mechanism.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 4, 2019
From: FAUVEL, DAMIEN; CHEN, MINGLAI; CAZALIS, ROMAIN; LESPINASSE, MARTIN; POTTER, FRÉDÉRIC
To: NETATMO
Reel/Frame 048226/0821 →
Priority Claims (1)
EP 17306964 · Dec 28, 2017 · regional
Continuity (1)
Related Publication 20190203504A1 · Jul 4, 2019