Electronic lock system having proximity mobile device
11913253 ยท 2024-02-27
Assignee
Inventors
- Nedal ALMOMANI (Mission Viejo, CA, US)
- Thuan NGUYEN (Mission Viejo, CA, US)
- Elena GORKOVENKO (Mission Viejo, CA, US)
- Wei Hsu (Lake Forest, CA, US)
- Yos SINGTOROJ (Anaheim, CA, US)
Cpc classification
G07C9/00309
PHYSICS
G07C2209/08
PHYSICS
Y10T70/7062
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
E05B47/0001
FIXED CONSTRUCTIONS
International classification
Abstract
An electronic lock, such as a deadbolt, with a locking device movable between a locked position and an unlocked position. The lock includes a key fob including a RFID circuit indicative of a valid access code for the locking device. A circuit is provided that is configured to control movement of the locking device between the locked position and the unlocked position. The circuit includes a sensor, such as a contract sensor or a proximity sensor, which detects when a user is within range of a RFID device. When this happens, the sensor is configured to generate an electrical signal, which is used to activate the RFID device for a predetermined period of time. If the RFID device reads a valid access code, the device is unlocked.
Claims
1. A method for actuating an electronic lock with an exterior contact sensor and an interior contact sensor, the method comprising: detecting a physical contact from a user at a first contact region of the exterior contact sensor or at a second contact region of the interior contact sensor; in response to detecting the physical contact, generating an electrical signal at the exterior contact sensor or the interior contact sensor; providing the electrical signal to a processing unit electrically coupled to the exterior contact sensor and the interior contact sensor, the processing unit being housed within an interior chassis of the electronic lock; in response to receiving the electrical signal at the processing unit, activating, using the processing unit, a wireless communication device for a predetermined time period, the wireless communication device being housed within the interior chassis of the electronic lock; during the predetermined time period, wirelessly reading, using the wireless communication device, an access code from a wireless communication circuit embedded in a mobile device carried by the user, the wireless communication circuit being in communication range of the wireless communication device using a wireless communication protocol; determining, at the processing unit, whether the access code is valid; and in response to determining that the access code is valid, actuating, using the processing unit, a locking device of the electronic lock to move a locking bolt from a locked state to an unlocked state; wherein the first contact region is exposed on an exterior chassis of the electronic lock; and wherein the second contact region is exposed on the interior chassis of the electronic lock.
2. The method of claim 1, further comprising, after the predetermined time period expires, automatically actuating, using the processing unit, the locking device of the electronic lock to move the locking bolt from the unlocked state to the locked state.
3. The method of claim 1, wherein the predetermined time period is between approximately 5 to 20 seconds.
4. The method of claim 1, wherein the exterior contact sensor is a capacitive sensor, an inductive sensor, or a pressure sensor.
5. The method of claim 1, wherein the mobile device is a key fob or a mobile phone.
6. The method of claim 1, wherein the wireless communication device is an RFID reader; and wherein the wireless communication circuit is an RFID circuit.
7. The method of claim 1, wherein the wireless communication protocol is a near-field communication protocol.
8. The method of claim 1, wherein the wireless communication protocol implements IEEE 802.15.4.
9. The method of claim 1, wherein determining whether the access code is valid comprises comparing the access code with a valid access code stored in a memory housed within the interior chassis of the electronic lock.
10. The method of claim 1, wherein wirelessly reading, using the wireless communication device, the access code from the wireless communication circuit embedded in the mobile device carried by the user comprises providing electrical power from the wireless communication device to the wireless communication circuit.
11. A method for actuating an electronic lock with a proximity sensor and an interior contact sensor, the method comprising: detecting a user input at the proximity sensor or the interior contact sensor, wherein detecting the user input is performed by either: (1) using the proximity sensor, detecting an approach of a user to the electronic lock without a physical contact from the user; or (2) detecting a physical contact of the user with a contact region of the interior contact sensor, the contact region being exposed on an interior chassis of the electronic lock; in response to detecting the user input, generating an electrical signal at the proximity sensor or the interior contact sensor; providing the electrical signal to a processing unit electrically coupled to the proximity sensor and the interior contact sensor, the processing unit being housed within the interior chassis of the electronic lock; in response to receiving the signal at the processing unit, activating, using the processing unit, a wireless communication device for a predetermined time period, the wireless communication device being housed within the interior chassis of the electronic lock; during the predetermined time period, wirelessly reading, using the wireless communication device, an access code from a wireless communication circuit embedded in a mobile device carried by the user, the wireless communication circuit being in communication range of the wireless communication device using a wireless communication protocol; determining, at the processing unit, whether the access code is valid; and in response to determining that the access code is valid, actuating, using the processing unit, a locking device of the electronic lock to move a locking bolt from a locked state to an unlocked state.
12. The method of claim 11, wherein the proximity sensor is an infrared sensor.
13. The method of claim 11, wherein the electronic lock is mounted to a door; wherein the method further comprises determining that the mobile device is on an exterior side of the door; and wherein wirelessly reading, using the wireless communication device, the access code from the wireless communication circuit embedded in the mobile device carried by the user is performed after determining that the mobile device is on the exterior side of the door.
14. The method of claim 13, wherein determining that the mobile device is on the exterior side of the door comprises performing RF triangulation with the wireless communication device.
15. The method of claim 11, wherein the access code is preprogrammed into the wireless communication circuit.
16. The method of claim 11, wherein detecting the approach of the user to the electronic lock comprises detecting that the user is within a programmable range of the electronic lock.
17. The method of claim 16, wherein the programmable range is between 1 foot to 6 feet.
18. A method of actuating an electronic lock, the method comprising: detecting a user input at the electronic lock, wherein detecting the user input at the electronic lock is performed by: (1) using a proximity sensor, detecting a presence of a user within a range of the electronic lock without contact on the proximity sensor; (2) detecting a physical contact of the user with a first contact region of an exterior contact sensor; or (3) detecting the physical contact of the user with a second contact region of an interior contact sensor; in response to detecting the user input, generating a signal at the proximity sensor, the exterior contact sensor, or the interior contact sensor; providing the signal to a processing unit of the electronic lock; in response to receiving the signal, activating, using the processing unit, a wireless communication device of the electronic lock for a predetermined time period; using the wireless communication device, powering a wireless communication circuit disposed within a mobile device carried by the user; using the wireless communication device, reading lock information from the wireless communication circuit; based on the lock information, determining that the mobile device is operatively associated with the electronic lock; and in response to determining that the mobile device is operatively associated with the electronic lock, actuating, using the processing unit, a locking device of the electronic lock to move a locking bolt from a locked state to an unlocked state; wherein the first contact region is exposed on an exterior chassis of the electronic lock; and wherein the second contact region is exposed on an interior chassis of the electronic lock.
19. The method of claim 18, wherein the wireless communication device is an RFID reader; and wherein the mobile device is within 3 feet of the RFID reader.
20. The method of claim 18, wherein the wireless electronic circuit is attached to a key.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) The present disclosure will be described hereafter with reference to the attached drawings which are given as non-limiting examples only, in which:
(2)
(3)
(4)
(5)
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(8) Corresponding reference characters indicate corresponding parts throughout the several views. The exemplifications set out herein illustrate an embodiment of the invention, and such exemplifications are not to be construed as limiting the scope of the invention in any manner.
DETAILED DESCRIPTION OF THE DRAWINGS
(9) Referring now to the drawings and particularly to
(10) As shown in
(11) For manual operation of electronic lock (EL), a key actuator 16, having a removable key K, is provided to manually operate latch assembly 5 from the exterior of the door D.
(12) Referring also to
(13) Referring again to
(14) As an alternative embodiment, contact sensor 14 may be replaced with a proximity sensor, e.g., an infrared sensor, which detects the approach of a user and generates signal S without requiring the user to physically contact the sensor.
(15) Referring particularly to
(16) Referring to
(17) RFID device 18 may be a standard RFID reader device known in the art, having a maximum communication range of about 3 feet, e.g., the factory default. In an embodiment of the present invention, RFID device 18 includes an electrically powered RFID circuit reader, which may be incorporated, for example, into daughter card 12. RFID device 18 is configured to be selectively activated by an actuation of contact sensor 14, as further described below.
(18) As a part of the system in some embodiments, there is also included a user carried mobile device 20 configured to communicate with RFID device 18 when RFID device 18 is activated. User carried mobile device 20 has an embedded RFID circuit that contains lock information, such as an access code, that operatively associates mobile device 20 with electronic lock (EL). In some embodiments, the lock information is preprogrammed into mobile device 20, and may be configured to correspond to a particular electronic lock, or to a set of electronic locks. Mobile device 20 may be, for example, a key fob. Alternatively, the key fob could be in the form of a RFID circuit attached to key.
(19) As is typical in the art, the RFID circuit of mobile device 20 receives electrical power via electromagnetic induction from the reader circuit of RFID device 18 when the RFID circuit of mobile device 20 is within the communications range of RFID device 18. However, such communication is only possible when RFID device 18 is activated. RFID device 18 establishes electromagnetic induction through a RFID antenna that is embedded in exterior chassis 2 (see, e.g.,
(20) In an embodiment of the present invention, RFID device 18 is selectively activated for a predetermined period of time (e.g., 5 to 20 seconds) following the generation of the signal S by contact sensor 14. In operation, a user touches contact sensor 14 to generate signal S, which is then delivered to processing unit 17. Processing unit 17, upon receiving signal S, then activates RFID device 18 for communication. If RFID device 18 establishes communication with the mobile device 20, then RFID device 18 reads the RFID circuit of mobile device 20. Processing unit 17 then determines from the RFID information read from mobile device 20 whether mobile device 20 is authorized for use with electronic lock (EL).
(21) If authorized, then processing unit 17 of electronic circuitry 9 responds by actuating the lock actuator mechanism, i.e., latch assembly 5, to unlock electronic lock (EL). The actuation of latch assembly 5 may be effected by energizing an electric motor (not shown) to retract the bolt 8 of latch assembly 5, thus permitting door D (see Fig. IB) to be opened from a closed position. After the predetermined period of time has expired, electronic lock (EL) will return to the locked state.
(22) In an embodiment where a non-contact proximity sensor is used as a replacement for contact sensor 14, electronic circuitry 9 is configured to determine that mobile device 20 is on the exterior side of the door by enabling RFID device 18 to perform RF triangulation prior to having the lock actuator mechanism energized by processing unit 17 of electronic circuitry 9. In addition, triangulation may be used as a technique to program the distance range within which the user carrying mobile device 20 must be in order to activate the electronic lock (EL) to an unlocked state. For example, the user programmable range may be a distance of 1 foot to 6 feet.
(23) In operation, when a valid proximity mobile device 20, i.e., a proximity key fob, using RFID communication is within a predetermined range of electronic lock (EL) and the user touches a contact sensor 14 of electronic lock (EL) with the user's hand, or alternatively the user is within range of the alternative lock proximity sensor, then electronic lock (EL) will be activated to an unlocked state. In other words, the valid proximity mobile device 20 may remain in the user's pocket, but when the user touches a designated portion of electronic lock (EL) (e.g., escutcheon, face plate, handle, etc.), or alternatively approaches electronic lock (EL), then electronic lock (EL) automatically goes to an unlocked state.
(24) Advantageously, in embodiments of the present invention, there is no need to manipulate the lock mechanism with a key or keypad in order to unlock the lock.
(25) Although the present disclosure has been described with reference to particular means, materials and embodiments, from the foregoing description, one skilled in the art can easily ascertain the essential characteristics of the present disclosure and various changes and modifications may be made to adapt the various uses and characteristics without departing from the spirit and scope of the present invention as set forth in the following claims.