The present disclosure relates to a lock device with double-unlocking mode which includes two types of unlocking mode in a manual unlocking manner and in an electric unlocking manner.
Lock device is a necessary product for every family in current society. The lock device has a function of preventing stranger from opening the door and further invading the room, so as to further achieve effects for protecting home property, personal safety, and preventing stranger from invading, or increasing anti-theft capabilities for storage devices where valuables are placed, such as double-lock serving for the safety deposit box, luggage locks, airport locks, spare key lock boxes, etc.
With the advancement of technology, various types of electronic unlocking for the lock device have begun to appear, such as face recognition, fingerprint recognition, etc., so as to quickly open the lock device.
However, the aforementioned electronic lock has a very serious defect. That is, if power of the lock device is neglected so that the electronic lock completely loses power, the electronic lock is not able to be unlocked immediately by normal means. This is a very troublesome matter.
In view of the above, it is known that it is necessary to improve the issue that the electronic lock is not able to be unlocked immediately by normal means in power failure case.
In order to solve the issue existing in conventional electronic lock devices, the coded wheel lock set for manual locking and manual unlocking and the fingerprint unlocking module for electric unlocking are configured in the present disclosure respectively, and both of the two said unlocking mode are able to complete the unlocking action independently. It means that even though the power is out or failed in the present disclosure, the unlocking operation can be still completed in a manual operation manner after operating the coded wheel lock set immediately. Indeed, the present disclosure improves the issue that the current electronic lock is not able to be unlocked immediately by normal means in a power failure case, therefore the present disclosure is novelty and non-obviousness.
In order to achieve the purpose and effect, the present disclosure provides a lock device with double-unlocking mode comprising: a lock box comprising a box and a front cover, the box is mutually pivoted to the front cover, the box has a receiving space, the box has a lock groove; a lock cover set disposed at the front cover, and the lock cover set comprises an active bolt, when the lock cover set is presented in a locking state, the active bolt is inserted in the lock groove, when the lock cover set is presented in an unlocking state, the active bolt is separated from the lock groove; a fingerprint unlocking module disposed at the front cover, and the fingerprint unlocking module comprises a master unit electrically connected with a power, a charging hole, an electric unlocking component, and a fingerprint sensor, the master unit controls the electric unlocking component to lock, or the master unit controls the electric unlocking component to unlock in accordance with sensing results of the fingerprint sensor; and a coded wheel lock set disposed at the front cover, when a code of the coded wheel lock set is set correctly, the lock cover set is able to be manually operated to unlock.
In order to fully understand the implementation of the present disclosure, please refer this specification in conjunction with the accompanying drawings. As shown in
The lock box 1 comprises a box 11 and a front cover 12, the box 11 is mutually pivoted to the front cover 12. The box 11 has a receiving space 114. The box 11 has a lock groove 111.
The lock cover set 2 is disposed at the front cover 12, and the lock cover set 2 comprises an active bolt 21. When the lock cover set 2 is in a locking state, the active bolt 21 is inserted in the lock groove 111. When the lock cover set 2 is in an unlocking state, the active bolt 21 is separated from the lock groove 111.
The fingerprint unlocking module 6 is disposed at the front cover 12, and the fingerprint unlocking module 6 comprises a master unit 61 electrically connected with a power 62, a charging hole 63, an electric unlocking component 64, and a fingerprint sensor 65.
The master unit 61 controls the electric unlocking component 64 to lock, or the master unit 61 controls the electric unlocking component 64 to unlock in accordance with sensing results of the fingerprint sensor 65.
The coded wheel lock set 7 is disposed at the front cover 12. When a code of the coded wheel lock set 7 is set correctly, the lock cover set 2 is able to be manually operated to unlock.
Followed by the content mentioned above, the implementation of the present disclosure is further illustrated in detail. The drawing of the present disclosure is the form with two active bolts 21 as an example, an amount of the elements associated with the active bolts 21 will be two, for example, the lock groove 111 etc.
Various embodiments for locking and unlocking associated with the lock cover set 2 of the present disclosure is illustrated in conjunction with the accompanying drawings. As shown in
Wherein the linking member 3 has a guiding groove 34 which has a guiding incline wall surface 35. The active bolt 21 comprises a guide projection 211 which is inserted into the guiding groove 34, and the guide projection 211 abuts against the guiding incline wall surface 35. Thus, the guide projection 211 will be guided by the guiding incline wall surface 35 when the linking member 3 shifts, so that the active bolt 21 shifts.
As shown in
The content that how a user shifts the linking member 3 to achieve an unlocking purpose is further described in detail. As shown in
In the locking state presented as
When the user operates the rotation wheel 72, as shown in
Then the implementation for electric unlocking is introduced, as shown in
The block 642 comprises a shaft coupling portion 6421 and a line-shaped protrusion portion 6422.
The state shown in
Even though the fingerprint unlocking module 6 is locked, the manual unlocking form is not affected. When the code sensed by the fingerprint sensor 65 is correct, the master unit 61 will control the motor 641 of the electric unlocking component 64 to rotate. When the motor 641 rotates, the block 642 is driven to rotate by the shaft 643. The thumb piece 4 is poked to shift by the line-shaped protrusion portion 6422 when the block 642 rotates, as shown in
In order to summery the content as mentioned above, it is understood that the coded wheel lock set 7 for manual locking and manual unlocking and the fingerprint unlocking module 6 for electric unlocking are configured in the present disclosure respectively, and both of the two said unlocking modes are able to complete the unlocking action independently. It means that even though the power is out or failed in the present disclosure so that unlocking operation is not performed by the fingerprint unlocking module 6, the unlocking operation is completed in a manual operation of the manual unlocking component 5 manner after operating the coded wheel lock set 7 immediately. Indeed, the present disclosure improves the issue that the current electronic lock is not able to be unlocked immediately by normal means in a power failure case, therefore the present disclosure is novelty and non-obviousness.
Furthermore, an implementation associated with how to release the lock shackle 112 after unlocking is introduced by the present disclosure. Wherein the lock box 1 is provided with a lock shackle 112 and an unlocking deflector rod 113, the unlocking deflector rod 113 is partially exposed by the box. After the user unlock the present disclosure, the front cover is opened as shown in
Number | Name | Date | Kind |
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20100223170 | Bahar | Sep 2010 | A1 |
20110220521 | Parker | Sep 2011 | A1 |
20130117176 | Oler | May 2013 | A1 |
20170234038 | Sanford | Aug 2017 | A1 |
20190234113 | Neau | Aug 2019 | A1 |
Number | Date | Country | |
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20240384565 A1 | Nov 2024 | US |