The present invention relates in general to locking systems and more particularly to intelligent locking systems comprising at least one electromechanical component.
Known traditional lock systems are based on stand-alone, hard to access mechanical units (usually made from steel), each having a matching key that enables locking or unlocking a lock unit. Any person who holds a matching key can open the lock.
Stand-alone electronic lock systems are also known, and widely used in places like hotels, office buildings, security locations with restricted access, etc. Some systems of this type use an electronic card (usually a credit card type), which includes the information required to access a specific lock. The information is stored on the electronic card itself. The card is entered into or swiped through the lock, enabling or disabling (e.g. opening or closing) the lock. Other electronic lock systems may include biometric type cards.
Electrical locking systems are also known. US Patent Application No. 20020099945 by G. McLintock et al. discloses a door access control and key management system, in which a number of doors and door users are involved. The application discusses in its background the state of the art and lists its problems and disadvantages. The system disclosed in 20020099945 comprises a door/key administering system and a door lock/control assembly mounted on each door, which are communicatively interconnected with each other via a communications network. The door/key administering system serves to store a key unique to each of the users, store an identification code unique to each of the doors, and assign access authorization to at least one user for each door. The door lock/control assembly serves to read the key presented by the user, verify that the key has access authorization, and operate the door in response to the authorization for access. Each user can gain access to the doors authorized to the user with a unique key and each door can provide access to the user or users assigned thereto. Since the lock system in McLintock's application is purely electrical, it is prone to power failures.
Existing dual-element locks that combine electronic features with mechanical parts (i.e. a cylinder) in one unit (“unitary” design) are also known, an example being the “CLIQ” cylinder manufactured by Multilock Technologies Ltd., P.O.B 637, Yavne 81104, Israel . A major disadvantage of such combined units is that physical damage to the mechanical part damages the electronic part too. The key in such combined units supplies the power to the cylinder, and the electrical contact is prone to disruption. Another major disadvantage of “single part” unitary locks, either electrical, mechanical, or combined electromechanical (EM), is that tampering may disable the lock functionality.
In view of the disadvantages presented by such locks, it would be advantageous to have a sturdier, safer lock, which is less prone to tampering. Moreover, it would be advantageous to provide a lock and locking system having high security, high break-in protection, real-time key management and control, real time interactivity capability and real time entry control.
The present invention discloses an intelligent lock and locking system with novel features, which provide significant advantages non-existent in prior art locks and locking systems. In particular, the invention discloses a “two-part” mechanical lock in which the locking mechanism is actuated by two separate elements: a mechanical element (cylinder) and an EM element (also referred to as “trigger”). The EM trigger is operative to communicate with a monitoring and control unit that enables to monitor a lock status and provides controlled access to the lock. In this disclosure, “intelligent lock system” refers in a restricted sense to the intelligent lock and the monitoring and control unit, and in a larger sense to an architecture that enables remote operation of the intelligent lock by at least one remote user.
In some embodiments, the intelligent lock is a stand-alone lock that communicates with remote users/control entities through a wireless communication system. In other embodiments, the intelligent lock is incorporated in a door.
According to the present invention there is provided an intelligent lock comprising a mechanical element operative to provide two lock positions upon a proper actuation; and an electromechanical trigger separate from and coupled to the mechanical element and operative to control the actuation.
According to one feature of the intelligent lock of the present invention, the mechanical element is a cylinder actuable by a smart key, and the two positions are an open lock position and a closed lock position.
According to another feature of the intelligent lock of the present invention, the EM trigger control is responsive to information relayed by the smart key.
According to yet another feature of the intelligent lock of the present invention, the EM trigger control is responsive information is relayed by at least one sensor external to the lock.
According to yet another feature of the intelligent lock of the present invention, the information relay and the trigger control are effected through a monitoring and control system coupled to both the mechanical element and the EM trigger.
According to yet another feature of the intelligent lock of the present invention the relay is wireless.
According to yet another feature of the intelligent lock of the present invention, the information includes at least one lock status parameter and wherein the control includes at least one command to change the lock status parameter.
According to yet another feature of the intelligent lock of the present invention, the lock is coupled to a door, wherein the information includes at least one door status parameter and wherein the control includes at least one command to change the door status parameter.
According to the present invention there is provided an intelligent lock comprising a mechanical cylinder operative to receive a smart key; an electromechanical trigger physically separate from the cylinder; and a mechanism for controlling a position of the trigger based on inputs provided by the smart key or a separate lock event generator, whereby the trigger position determines a lock status.
According to one feature of the intelligent lock of the present invention, the smart key includes a unique identification element used in the input.
According to another feature of the intelligent lock of the present invention, the mechanism for controlling the trigger position includes a mechanism for relaying commands from a monitoring and control unit.
According to yet another feature of the intelligent lock of the present invention, the mechanism for relaying commands includes electrical connections to the monitoring and control unit.
According to yet another feature of the intelligent lock of the present invention, the mechanism for relaying commands includes wireless connections to the monitoring and control unit.
According to the present invention there is provided an intelligent lock system comprising an intelligent lock comprising a mechanical element operative to provide two lock positions upon a proper actuation; and an EM trigger separate from and coupled to the mechanical element and operative to control the actuation, and a monitoring and control unit communicatively coupled to the EM trigger and used to provide actuation commands.
According to one feature of the intelligent lock system of the present invention, the intelligent lock is included in a door.
According to another feature of the intelligent lock system of the present invention, the door is selected from the group of a home door, a safe door and an armored car door.
According to yet another feature of the intelligent lock system of the present invention, the system further comprises communication means for communication between the monitoring and control unit and at least one remote user.
According to yet another feature of the intelligent lock system of the present invention, the communication means include wireless means.
According to yet another feature of the intelligent lock system of the present invention, the actuation commands are generated by the at least one remote user.
The present invention is described herein by way of example only, with reference to the accompanying drawings. With specific reference now to the drawings in detail, it is stressed that the particulars shown are by way of example and for purposes of illustrative discussion of the preferred embodiments of the present invention only, and are presented in the cause of providing what is believed to be the most useful and readily understood description of the principles and conceptual aspects of the present invention. In this regard, no attempt is made to show structural details of the present invention in more detail than is necessary for a fundamental understanding of the invention, the description taken with the drawings making apparent to those skilled in the art how the several forms of the invention may be embodied in practice. Identical structures, elements or parts which appear in more than one figure are preferably labeled with a same or similar number in all the figures in which they appear. In the drawings:
Advantageously and in contrast with prior art, the intelligent lock of the present invention comprises two separate parts that are required to work in coordination to allow a lock status change. The two parts are a mechanical part (the cylinder) and an electro-mechanical part (the trigger). Both are designed to operatively engage the locking mechanism. The tampering with one (e.g. the cylinder) does not affect the other.
LIM 204 typically communicates with the EM trigger by electrical means (wired or wireless) and with the smart key by wireless means. The trigger is operative to receive commands (instructions) from unit 204 and to act upon such commends to engage or disengage mechanism 101. This action is independent of and separate from the engaging/disengaging action of cylinder 108′, which is actuated by the key. As mentioned and emphasized, the physical separation of the EM trigger from the cylinder provides unique advantages in terms of functionality and reliability as described above.
Endowed with transmitting/receiving functions of an LIM, the intelligent lock may be remotely controlled and activated through a variety of means.
A major advantage of any of the architectures in
Returning now to
In general use, a smart key is inserted in the cylinder to open or close the lock. Information on the smart key, obtained through its RFID, is relayed to the LIM, preferably in an encoded form through any of the communication means and schemes described in
In more detail, a lock event software located typically in a user device such as PC 324 analyses data received through wireless server 322. According to a predefined set of rules (example below), the software decides to transmit messages to a specific client, exemplarily a phone 330. Example of rules may include:
The intelligent lock system has advantages over traditional locks, some of which are:
All patents and patent applications mentioned in this specification are herein incorporated in their entirety by reference into the specification, to the same extent as if each individual patent or patent application was specifically and individually indicated to be incorporated herein by reference. In addition, citation or identification of any reference in this application shall not be construed as an admission that such reference is available as prior art to the present invention.
While the invention has been described with respect to a limited number of embodiments, it will be appreciated that many variations, modifications and other applications of the invention may be made.
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/IL05/00715 | 7/6/2005 | WO | 7/5/2007 |
Number | Date | Country | |
---|---|---|---|
60585089 | Jul 2004 | US |