Intelligent glass door lock

By incorporating fingerprint recognition, facial recognition, and automatic locking functions, smart glass door locks address the issues of low convenience and security associated with traditional glass door locks, achieving enhanced convenience and security through keyless unlocking and automatic locking.

CN224048894UActive Publication Date: 2026-03-27ZHONGSHAN YILIAN INTELLIGENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing glass door locks offer low convenience and security. Keys are easily lost, keys are forgotten, lock cylinders rust and cannot be opened, they are easily stolen, and they are inconvenient to use frequently.

Method used

A smart glass door lock has been designed, which uses a fingerprint module, a face module, control components and a motor clutch to realize fingerprint recognition, face recognition and password unlocking. Combined with a Hall sensor, it automatically locks, supports Bluetooth APP control, and provides multiple unlocking methods to improve convenience and security.

Benefits of technology

It enables convenient unlocking without the need to carry a key, and features automatic locking, improving security and convenience, and avoiding the problems of lost or forgotten keys.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224048894U_ABST
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Abstract

The utility model provides an intelligent glass door lock, and belongs to the technical field of door locks. The intelligent glass door lock mainly aims at solving the problems of convenience and safety of an existing intelligent glass door lock. According to the technical scheme, the lock comprises a main lock and an auxiliary lock; the main lock comprises a front shell, a main lock support, a control assembly, a fingerprint module, a telescopic lock cylinder, a face module, a rear shell, a motor clutch and a hook spring bolt, the front shell and the rear shell are connected through the main lock support, the control assembly, the fingerprint module, the telescopic lock cylinder and the face module are all arranged in the front shell, and the motor clutch and the hook spring bolt are both arranged in the rear shell; the auxiliary lock comprises an upper shell, an auxiliary lock support and a lower shell, and the upper shell and the lower shell are connected through the auxiliary lock support. According to the intelligent glass door lock, through cooperation of the main lock support, the control assembly, the fingerprint module, the telescopic lock cylinder and other parts, the functions of fingerprint recognition, face recognition, password unlocking and automatic door locking are achieved, and convenience and safety are improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to door lock technical field, more specifically, it is especially related to a kind of intelligent glass door lock. BACKGROUND

[0002] Current most glass door lock is still using mechanical lock, only through key unlocking, there is key easy to lose, forget to take key, lock core rust cannot be unlocked, easy to be stolen and other defects.And the existing glass door lock needs to be unlocked with key each time, and it is inconvenient to use and carry, which brings a lot of annoyance to people's life, and the convenience and safety are low. INVENTION CONTENTS

[0003] To solve the above technical problems, the utility model provides a kind of intelligent glass door lock, to solve the technical problems of low convenience and safety in prior art, traditional intelligent glass door lock.

[0004] The purpose and effect of the intelligent glass door lock of the utility model are achieved by the following specific technical means:

[0005] A kind of intelligent glass door lock, including main lock and vice lock;

[0006] Main lock includes front shell, main lock support, control assembly, fingerprint module telescopic lock core, face module, rear shell, motor clutch and hook lock tongue, the front shell with the rear shell is connected by the main lock support, control assembly, the fingerprint module, the telescopic lock core and the face module are all set in the front shell, the motor clutch and hook lock tongue are all set in the rear shell;

[0007] Vice lock includes upper shell, vice lock support and lower shell, the upper shell with the lower shell is connected by the vice lock support.

[0008] As a further scheme of the utility model, a touch opening, a lock core hole, a camera hole and an infrared lamp hole are formed in the front shell, a face module groove is formed in one end of the front shell, the face module is arranged in the face module groove, the fingerprint module is arranged in the touch opening, the fingerprint module is exposed through the touch opening, a lens is arranged in one end of the front shell, one end of the lens is in contact with the fingerprint module, the telescopic lock core is arranged in the lock core hole, a camera is arranged in the camera hole, and an infrared lamp is arranged in the infrared lamp hole.

[0009] As a further scheme of the utility model, a knob hole is formed in the rear shell, a knob is arranged in the knob hole, a rotatable gear is sleeved on the knob, a sliding slot is formed in the rear shell, a rack is arranged in the sliding slot, a hook lock tongue groove is formed in the rear shell, the hook lock tongue is arranged in the hook lock tongue groove, and a hall sensor for detecting door opening and closing state is arranged in the rear shell.

[0010] As a further scheme of the utility model, the rack is connected with the gear, the motor clutch is connected with the gear and the rack, and a cylinder is arranged on the top of the rack and connected with the hook lock tongue.

[0011] As a further scheme of the utility model, the rear shell is fixedly connected with a power panel through screws, and a first magnet is arranged on the hook lock tongue.

[0012] As a further scheme of the utility model, a magnet groove and a lock tongue groove are arranged in the lower shell, a second magnet is arranged in the magnet groove and fixed through the auxiliary lock support.

[0013] As a further scheme of the utility model, the rear shell is provided with a normally open button, a reverse lock button and a one-key switch lock.

[0014] As a further scheme of the utility model, a touchpad groove is arranged in the front shell, a touchpad mainboard is arranged in the touchpad groove, an electronic button is fixedly connected in the front shell through screws, and the electronic button is connected with the telescopic lock core.

[0015] As a further scheme of the utility model, a wire outlet groove is arranged in the main lock support.

[0016] Compared with the prior art, the utility model has the following beneficial effects:

[0017] The fingerprint module of the door lock is in communication connection with the control assembly to send the acquired fingerprint information to the control assembly, and after the fingerprint information is verified, the control assembly drives the gear and the rack to rotate, the rack drives the hook lock tongue to rotate and retract inward, so that the hook lock tongue is separated from the lock tongue groove on the auxiliary lock to achieve the purpose of unlocking; the face module is exposed by the camera hole and the infrared lamp hole to acquire face information; the face module is in communication connection with the control assembly to send the acquired face information to the control assembly, and after the face information is verified, the control assembly drives the gear and the rack to rotate, the rack drives the hook lock tongue to rotate and retract inward, so that the hook lock tongue is separated from the lock tongue groove on the auxiliary lock to achieve the purpose of unlocking; the rear shell is provided with a Hall sensor for detecting the door opening and closing state, the auxiliary lock is provided with a magnet, and after the door is opened, the door is slowly closed and is basically parallel to the auxiliary lock, the Hall and the magnet are inducted to automatically lock, without waiting for the door to be closed to manually lock, so that the use is convenient and the forgetting of locking is avoided; the rear lock is connected with the gear and the rack through a knob, the knob can be directly rotated to unlock, the telescopic lock core is arranged in the front shell and used for electronic key unlocking, the intelligent glass door lock adopts fingerprint identification, face recognition and password unlocking, and is convenient to unlock, and a key is not needed for traveling, so that the convenience and safety are improved. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1The utility model provides a structure schematic drawing of an intelligent glass door lock.

[0019] Figure 2 The utility model provides a sectional view of an intelligent glass door lock.

[0020] Figure 3 The utility model provides a structure schematic drawing of a main lock in an intelligent glass door lock.

[0021] Figure 4 The utility model provides a structure schematic drawing of a hook-shaped lock tongue in an intelligent glass door lock.

[0022] Figure 5 The utility model provides a structure schematic drawing of a sub lock in an intelligent glass door lock.

[0023] In the drawing, the correspondence between the component name and the drawing number is as follows:

[0024] 1, main lock;2, sub lock;3, touch mouth;4, fingerprint module;5, lens;6, face module;7, front shell;8, main lock support;9, touch plate mainboard;10, telescopic lock core;11, lock core hole;12, rear shell;14, power board;15, knob;16, gear;17, motor clutch;18, upper shell;19, sub lock support;20, lower shell;22, face module groove;23, touch plate groove;24, electronic key;26, control assembly;27, one-key switch lock;28, always-on key;29, anti-lock key;30, rack;31, hook-shaped lock tongue;32, cylinder;33, knob hole;35, hook-shaped lock tongue groove;36, second magnet;37, magnet groove;38, first magnet;40, hall sensor;41, camera hole;42, infrared lamp hole;43, camera;44, infrared lamp;45, outgoing line groove;46, sliding groove;47, lock tongue groove. DETAILED DESCRIPTION

[0025] The embodiments of the utility model will be further described in detail below in combination with the drawings and examples. The following examples are used to illustrate the utility model, but cannot be used to limit the scope of the utility model.

[0026] Example:

[0027] As shown in the accompanying Figure 1 to the accompanying Figure 5 The utility model provides an intelligent glass door lock, including main lock 1 and sub lock 2.

[0028] The utility model provides an intelligent glass door lock, including main lock 1 and sub lock 2.

[0029] The main lock 1 comprises a front shell 7, a main lock support 8, a control assembly 26, a fingerprint module 4, a telescopic lock cylinder 10, a face module 6, a rear shell 12, a motor clutch 17 and a hook-shaped lock tongue 31. The front shell 7 is connected with the rear shell 12 through the main lock support 8. The control assembly 26, the fingerprint module 4, the telescopic lock cylinder 10 and the face module 6 are arranged in the front shell 7. The motor clutch 17 and the hook-shaped lock tongue 31 are arranged in the rear shell 12.

[0030] The auxiliary lock 2 comprises an upper shell 18, an auxiliary lock support 19 and a lower shell 20. The upper shell 18 is connected with the lower shell 20 through the auxiliary lock support 19.

[0031] The front shell 7 is provided with a touch opening 3, a lock cylinder hole 11, a camera hole 41 and an infrared lamp hole 42. The fingerprint module 4 is exposed from the touch opening 3 to obtain fingerprint information. The face module 6 is fixed in a face module groove 22 of the front shell 7 through screws. The fingerprint module 4 is glued in the touch opening 3 of the front shell 7 and is fixed by being attached to the surface of the front shell 7 through the back glue of a lens 5. The telescopic lock cylinder 10 is fixed in the lock cylinder hole 11 of the front shell 7 through screws. A touch panel main board 9 is fixed in a touch panel groove 23 of the front shell 7 through screws. The lens 5 is attached to the surface of the front shell 7 through back glue. An electronic button 24 is fixed in the front shell 7 through screws and is used to be connected with the telescopic lock cylinder 10. When the lock is opened by fingerprint, after the fingerprint information is verified, the motor clutch 17 drives the gear 16 and the rack 30 to rotate in the forward direction. The rack 30 drives the hook-shaped lock tongue 31 to rotate and retract inward, so that the hook-shaped lock tongue 31 is separated from the lock tongue groove 47 of the auxiliary lock 2 to achieve the purpose of opening the lock. When the lock is closed, the motor clutch 17 drives the gear 16 and the rack 30 to rotate in the reverse direction. The rack 30 drives the hook-shaped lock tongue 31 to rotate and extend outward, so that the hook-shaped lock tongue 31 extends and is inserted into the lock tongue groove 47 of the auxiliary lock 2 to achieve the purpose of locking. When the lock is opened by face, after the face information is verified, the motor clutch 17 drives the gear 16 and the rack 30 to rotate in the forward direction. The rack 30 drives the hook-shaped lock tongue 31 to rotate and retract inward, so that the hook-shaped lock tongue 31 is separated from the lock tongue groove 47 of the auxiliary lock 2 to achieve the purpose of opening the lock. When the lock is opened by key, the telescopic lock cylinder 10 extends outward and is connected with the electronic button 24 and is powered on. The control assembly 26 drives the gear 16 and the rack 30 to rotate. The rack 30 drives the hook-shaped lock tongue 31 to rotate and retract inward, so that the hook-shaped lock tongue 31 is separated from the lock tongue groove 47 of the auxiliary lock 2 to achieve the purpose of opening the lock.

[0032] The main lock support 8 is provided with a wire outlet groove 45. The components of the front shell 7 and the rear shell 12 are fixed on the main lock support 8 through screws to form the main lock 1.

[0033] The control assembly 26 is arranged in the front shell 7 and is fixed with the front shell 7 through screws. The fingerprint module 4 is exposed from the touch opening 3 to receive fingerprint signals and obtain fingerprint information.

[0034] The telescopic lock core 10 is arranged in the front shell 7 and fixed in the lock core hole 11 of the front shell 7 by screws; when the lock is opened by a key, the telescopic lock core 10 extends outward and is connected with the electronic button 24 and powered, the control assembly 26 drives the gear 16 and the rack 30 to rotate, the rack 30 drives the hook-shaped lock tongue 31 to rotate and retract inward, so that the hook-shaped lock tongue 31 is separated from the lock tongue groove 47 of the secondary lock 2 to achieve the purpose of opening the lock.

[0035] The face module 6 is arranged in the front shell 7 and fixed in the face module groove 22 of the front shell 7 by screws; the face module 6 is exposed through the camera hole 41 and the infrared lamp hole 42 to receive the face signal and obtain the face information. When the camera 43 obtains the face information, the infrared lamp 44 flashes to send the obtained face information to the control assembly 26, and the lock is opened after the face information is verified.

[0036] The rear shell 12 is provided with a knob hole 33 and a hook-shaped lock tongue groove 35, the knob 15 is arranged in the knob hole 33, the gear 16 is sleeved on the knob 15 and fixed by screws and can move, the rack 30 is arranged in the sliding groove 46 of the rear shell and connected with the gear 16, the motor clutch 17 is fixed in the rear shell 12 by screws and connected with the gear 16 and the rack 30, the hook-shaped lock tongue 31 is fixed in the hook-shaped lock tongue groove 35 of the rear shell 12, the cylinder 32 on the rack 30 is connected with the hook-shaped lock tongue 31, the motor clutch 17 drives the rack 30 to move up and down when rotating, the hook-shaped lock tongue 31 extends outward or retracts inward to realize the opening and closing of the lock. The power board 14 is fixed with the rear shell 12 by screws, the Hall sensor 40 is arranged in the rear shell 12 and used for detecting the opening and closing state of the door, the secondary lock 2 is provided with a second magnet 36, after the door is opened, the door slowly closes and is basically parallel to the secondary lock 2, the Hall sensor 40 and the second magnet 36 are inducted to automatically lock after the door is closed. The Hall sensor 40 is arranged in the rear shell 12, the hook-shaped lock tongue 31 is provided with a first magnet 38, the Hall sensor 40 and the first magnet 38 are inducted when the lock is opened or closed, and used for detecting whether the hook-shaped lock tongue 31 is turned to the position. The rear shell 12 is provided with a normally open button 28, a reverse lock button 29 and a one-key lock button 27; the normally open mode is opened, the hook-shaped lock tongue 31 is separated from the lock tongue groove 47, and the user is convenient to enter and exit the frequently-used scene; the reverse lock mode is opened, the rear shell 12 is provided with the Hall sensor 40, the motor clutch 17 does not rotate and cannot open the lock, the privacy of the user is protected, the rear shell 12 rotates to open the lock and cancel the reverse lock mode, and the one-key lock button 27 is convenient for the user to quickly open the lock indoors.

[0037] The hook-shaped lock tongue 31 is provided with the first magnet 38, which is used for detecting whether the hook-shaped lock tongue 31 is turned to the position when the lock is opened or closed.

[0038] The motor clutch 17 is arranged in the rear shell 12 and connected with the gear 16 and the rack 30, the motor clutch 17 drives the gear 16 and the rack 30 to rotate when rotating, the rack 30 drives the hook-shaped lock tongue 31 to rotate and retract inward, so that the hook-shaped lock tongue 31 is separated from the lock tongue groove 47 of the secondary lock 2 to achieve the purpose of opening the lock.

[0039] The lower shell 20 is provided with a magnet slot 37 and a lock tongue slot 47, the second magnet 36 is fixed in the magnet slot 37 of the lower shell 20 and is screwed on the lower shell 20 through the auxiliary lock support 19 to be tightly fixed, for detecting the door opening state, after the door is opened, the door slowly closes and is basically parallel to the auxiliary lock 2, the Hall sensor 40 and the second magnet 36 are inducted to automatically lock after the door is closed.

[0040] The Bluetooth APP unlocking function is that the user uses the mobile phone APP to connect with the intelligent glass door lock through Bluetooth and carries out verification, and the door is unlocked after the verification is passed.

[0041] The door lock can be unlocked through the fingerprint, face recognition, password, Bluetooth, emergency key and the like, avoids the troubles caused by key loss, forgetting to take the key, inconvenient carrying and the like, the door lock has novel appearance, can detect the door opening state, automatically locks, is safe and theftproof, is convenient to use, breaks away from the restriction of single key unlocking, and only needs to press the fingerprint and password to unlock when in use, so as to meet the requirement of the user.

[0042] The embodiments of the present application are given for the purpose of example and description, and are not exhaustive or limit the present application to the disclosed forms. Many modifications and variations will be apparent to those skilled in the art. The embodiments are chosen and described in order to better illustrate the principles and practical application of the present application, and to enable those skilled in the art to understand the present application so as to design various embodiments with various modifications suitable for specific purposes.

Claims

1. An intelligent glass door lock, characterized by, The main lock (1) and the auxiliary lock (2) are included. The main lock (1) includes a front shell (7), a main lock support (8), a control assembly (26), a fingerprint module (4), a telescopic lock cylinder (10), a face module (6), a rear shell (12), a motor clutch (17) and a hook-shaped lock tongue (31), the front shell (7) and the rear shell (12) are connected through the main lock support (8), the control assembly (26), the fingerprint module (4), the telescopic lock cylinder (10) and the face module (6) are all arranged in the front shell (7), and the motor clutch (17) and the hook-shaped lock tongue (31) are all arranged in the rear shell (12). The auxiliary lock (2) includes an upper shell (18), an auxiliary lock support (19) and a lower shell (20), and the upper shell (18) and the lower shell (20) are connected through the auxiliary lock support (19).

2. An intelligent glass door lock as defined in claim 1, wherein, A touch opening (3), a lock cylinder hole (11), a camera hole (41) and an infrared lamp hole (42) are formed in the front shell (7), a face module groove (22) is formed at one end of the front shell (7), the face module (6) is arranged in the face module groove (22), the fingerprint module (4) is arranged in the touch opening (3) and exposed outside the touch opening (3), a lens (5) is arranged at one end of the front shell (7), one end of the lens (5) is in contact with the fingerprint module (4), the telescopic lock cylinder (10) is arranged in the lock cylinder hole (11), a camera (43) is arranged in the camera hole (41), and an infrared lamp (44) is arranged in the infrared lamp hole (42).

3. The smart glass door lock of claim 1, wherein, A knob hole (33) is formed in the rear shell (12), a knob (15) is arranged in the knob hole (33), a rotatable gear (16) is sleeved on the knob (15), a sliding groove (46) is formed in the rear shell (12), a rack (30) is arranged in the sliding groove (46), a hook-shaped lock tongue groove (35) is formed in the rear shell (12), the hook-shaped lock tongue is arranged in the hook-shaped lock tongue groove (35), and a Hall sensor (40) for detecting an opening and closing state is arranged in the rear shell (12).

4. An intelligent glass door lock as defined in claim 3, wherein, The rack (30) is connected with the gear (16), the motor clutch (17) is connected with the gear (16) and the rack (30), and a cylinder (32) is arranged at the top of the rack (30) and connected with the hook-shaped lock tongue (31).

5. An intelligent glass door lock as defined in claim 3, wherein, The rear shell (12) is fixedly connected with a power board (14) through screws, and a first magnet (38) is arranged on the hook-shaped lock tongue (31).

6. An intelligent glass door lock as defined in claim 1, wherein, A magnet groove (37) and a lock tongue groove (47) are formed in the lower shell (20), a second magnet (36) is arranged in the magnet groove (37), and the second magnet (36) is fixed through the auxiliary lock support (19).

7. An intelligent glass door lock as defined in claim 1, wherein, The rear shell (12) is provided with a normally open button (28), a reverse lock button (29) and a one-key switch lock (27).

8. An intelligent glass door lock as defined in claim 1, wherein, The front shell (7) is provided with a touch panel slot (23), and a touch panel mainboard (9) is arranged in the touch panel slot (23); the front shell (7) is fixedly connected with an electronic button (24) through a screw, and the electronic button (24) is connected with the telescopic lock cylinder (10).

9. An intelligent glass door lock as defined in claim 1, wherein, The main lock support (8) is provided with a wire outlet slot (45).