Integrated fingerprint electronic lock for aluminum alloy frame box
By integrating fingerprint module, motherboard, locking hook mechanism and motor on one main box, the existing hard-shell bag fingerprint electronic locks are solved, and a smaller size and simpler installation is achieved, suitable for aluminum alloy frame bags.
Patent Information
- Application Number
- CN202422237628.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-11
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-09-11
AI Technical Summary
The fingerprint driver module of existing hard-shell bag fingerprint electronic locks is separated from the lock body, resulting in large overall size, complex installation and space occupancy, affecting the layout of the bag.
The fingerprint module, the motherboard, the first locking mechanism, the first motor and the power supply module are integrated into a locking part of the main box body. The second locking mechanism and the second motor are provided in the secondary locking box. The motherboard control is used to achieve integrated integration.
The volume of the electronic lock is reduced, the installation process is simplified, the layout on the aluminum alloy frame bag is facilitated, and the installation efficiency and appearance simplicity is improved.
Smart Images

Figure CN223269786U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of electronic locks for luggage, and in particular to an integrated fingerprint electronic lock suitable for luggage and boxes with aluminum alloy frames. Background Art
[0002] When people travel, they often carry their clothing and other belongings in luggage, making the convenience of luggage increasingly important. Luggage on the market is generally categorized as soft-shell or hard-shell. Soft-shell luggage typically uses a combination of fabric and plastic for the outer shell, with the two halves connected by a zipper. Hard-shell luggage typically has two halves connected by an aluminum alloy frame. The two halves lock together with a lock. Hard-shell luggage is typically made of PC, ABS, PP, or aluminum alloy.
[0003] Many existing hard-shell luggage and bags, after entering the high-end market, have adopted automatic unlocking with fingerprint electronic locks, making them increasingly convenient to use. The general principle of a fingerprint electronic lock for luggage and bags is that a fingerprint driver drives a motor, which in turn drives the internal mechanism of the lock body to unlock. When the motor resets, the internal mechanism of the lock body resets due to the action of a spring. Of course, a power module is also provided to provide power to the fingerprint electronic lock.
[0004] Luggage fingerprint electronic locks typically consist of a fingerprint driver module and a lock body, meaning they contain at least two parts. If two lock bodies are used, they comprise three parts. The fingerprint driver module typically contains a fingerprint module and a mainboard, while the lock body includes a lock box and a lock catch. The lock box typically contains a lock hook mechanism and a motor for driving the lock hook mechanism. Existing luggage fingerprint electronic locks have either completely separate fingerprint driver modules and lock bodies, with the fingerprint driver module and lock body electrically connected via wires, or simply have the outer shell connected together via a connector, but the fingerprint driver module and lock body themselves are still arranged separately. This results in a larger overall size for the luggage electronic lock. During assembly, the fingerprint driver module and lock body must be installed separately, resulting in multiple installation steps, increasing the difficulty and time required for installation. Furthermore, more space must be reserved on the luggage to install the luggage fingerprint electronic lock, impacting the layout of the luggage. Utility Model Content
[0005] The purpose of the utility model is to provide an integrated fingerprint electronic lock for an aluminum alloy frame box, which has a small overall volume and is easy to install.
[0006] The purpose of this utility model is achieved through the following technical solutions:
[0007] An integrated fingerprint electronic lock for aluminum alloy frame boxes, characterized in that it includes a main box body, a fingerprint module, a main board, a first lock hook mechanism, a first motor, a power module and a lock buckle for locking with the first lock hook mechanism. The main box body includes a base part fixed to the box and a locking part hinged to the base part. The fingerprint module, main board, first lock hook mechanism and first motor are integrated together in the locking part of the main box body, and the power module is arranged in the base part of the main box body.
[0008] A further technical solution of the utility model is: the luggage fingerprint electronic lock also includes a secondary lock box and a secondary lock buckle, the secondary lock box is provided with a second lock hook mechanism and a second motor, the second motor is connected to the main board through wires, and the secondary lock buckle is used to cooperate with the second lock hook mechanism to lock.
[0009] A further technical solution of the present invention is as follows: the locking part of the main box body includes a panel and a bottom plate, the fingerprint module, the main board, the first lock hook mechanism and the first motor are all installed on the inner side of the panel, the bottom plate covers the bottom surface of the panel, the fingerprint entry surface of the fingerprint module is exposed in front of the panel, and a lock hole is provided on the bottom plate corresponding to the first lock hook mechanism.
[0010] A further technical solution of the present utility model is: the base part of the main box body includes a rear bottom shell and a seat plate, the rear bottom shell and the seat plate are fixedly connected by bolts, and when installed, the rear bottom shell and the seat plate are respectively located on the inside and outside of the luggage, the locking part of the main box body is hinged to the seat plate, and the power module is arranged on the rear bottom shell.
[0011] A further technical solution of the utility model is: the base part of the main box body is provided with a power installation slot, one end of the power installation slot is open, and the other end is provided with a first USB female socket, a USB plug is provided on the power module, the power module is installed in the power installation slot, and the USB plug is inserted into the first USB female socket.
[0012] A further technical solution of the present invention is that the locking part of the main box body is also integrated with a second USB female socket, the second USB female socket is exposed in front of the locking part, and the second USB female socket can also be connected to the USB plug of the power module.
[0013] A further technical solution of the utility model is: the luggage fingerprint electronic lock is provided with an interface board, the interface board is arranged on the inner side of the base part, the first USB female socket is arranged on the interface board, and the interface board is connected to the mainboard wire.
[0014] A further technical solution of the utility model is as follows: the first lock hook mechanism includes a cam, a moving block and a reset spring, the cam is installed on the output shaft of the first motor, a spiral portion is provided on the side wall of the cam, the moving block can slide back and forth and is arranged in the locking part of the main box body, a sleeve hole is provided at the rear end of the moving block, a slider is provided in the sleeve hole, the sleeve hole is fitted on the cam, the slider slides on the spiral portion, the reset spring provides backward restoring force for the moving block, and a lock hook is provided on the moving block for fittingly hooked on the lock buckle.
[0015] A further technical solution of the present utility model is: the locking part of the main box body is also integrated with a mechanical lock core, a protrusion is provided at the bottom of the mechanical lock core, a block is provided on the moving block, and the protrusion is located behind the block. When the mechanical lock core is unlocked and rotated, the protrusion will drive the rotation, and then push the block through the protrusion.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] This innovative fingerprint electronic lock for aluminum-alloy framed cases integrates the fingerprint module, mainboard, first locking hook mechanism, and first motor into the locking portion of a main case body. The power module is located at the base of the main case body, resulting in a compact design and easier installation on luggage. The mounting area for this electronic lock is smaller, making it easier to install and simplifying the appearance of the luggage.
[0018] The utility model is a solution designed for bags and boxes with aluminum alloy frames and is suitable for bags and boxes with aluminum alloy frames. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is one of the three-dimensional schematic diagrams of the fingerprint electronic lock according to the first embodiment of the present utility model;
[0020] Figure 2 This is the second three-dimensional schematic diagram of the fingerprint electronic lock of the first embodiment of the present utility model;
[0021] Figure 3 This is an exploded schematic diagram of the fingerprint electronic lock according to the first embodiment of the present utility model;
[0022] Figure 4 This is a three-dimensional schematic diagram of the locking portion of the main box body of the first embodiment of the present utility model;
[0023] Figure 5 This is a three-dimensional schematic diagram of the first embodiment of the present invention when the locking portion of the main box body hides the bottom plate;
[0024] Figure 6 This is a three-dimensional schematic diagram of the locking portion of the main box body of the first embodiment of the present invention when the bottom plate and the main board are hidden;
[0025] Figure 7 This is a three-dimensional schematic diagram of a panel according to the first embodiment of the present invention;
[0026] Figure 8 This is a three-dimensional schematic diagram of the first locking hook mechanism and the lock buckle when locked in cooperation with each other in the first embodiment of the present invention;
[0027] Figure 9 This is a schematic diagram of the assembly structure of the first lock hook mechanism and the mechanical lock core in the first embodiment of the present utility model;
[0028] Figure 10 This is a structural diagram of the first locking hook mechanism of the first embodiment of the present utility model;
[0029] Figure 11 This is one of the three-dimensional schematic diagrams of the base portion of the main box body of the first embodiment of the present utility model;
[0030] Figure 12 This is the second three-dimensional schematic diagram of the base portion of the main box body of the first embodiment of the present utility model;
[0031] Figure 13 This is a schematic diagram of the electrical connection structure of the luggage fingerprint electronic lock according to the first embodiment of the present utility model;
[0032] Figure 14 This is one of the three-dimensional schematic diagrams of a bag installed with the bag fingerprint electronic lock according to the first embodiment of the present utility model;
[0033] Figure 15 This is a second three-dimensional schematic diagram of a bag installed with the bag fingerprint electronic lock according to the first embodiment of the present invention. In this figure, the power module is plugged into the second USB female socket;
[0034] Figure 16 This is one of the three-dimensional schematic diagrams of a bag installed with the fingerprint electronic lock according to the first embodiment of the present utility model when it is opened;
[0035] Figure 17 This is the second three-dimensional schematic diagram of a bag installed with the fingerprint electronic lock according to the first embodiment of the present invention when it is opened;
[0036] Figure 18 This is a three-dimensional schematic diagram of a bag equipped with a fingerprint electronic lock according to the second embodiment of the present utility model;
[0037] Figure 19 This is a three-dimensional schematic diagram of the first half of the box body in which the fingerprint electronic lock according to the second embodiment of the present utility model is installed;
[0038] Figure 20 This is a schematic structural diagram of the auxiliary lock box and auxiliary lock buckle installed in the second embodiment of the present utility model;
[0039] Figure 21 This is a schematic diagram of the electrical connection structure of the fingerprint electronic lock according to the second embodiment of the present invention.
[0040] Meaning of the reference numerals in the figure:
[0041] 1-Panel; 1.1-Hinge slot; 1.2-First opening; 1.3-Second opening; 1.4-Third opening; 1.5-Mainboard mounting position; 1.6-Motor mounting slot; 1.7-Slide slot; 1.8-Lock cylinder mounting hole; 2-Fingerprint module; 3-First pressure piece; 4-Mainboard; 4.1-Fingerprint entry button; 4.2-Second USB socket; 4.3-U-shaped notch; 5-First motor; 6-Cam; 6.1-Spiral part; 7-Moving block; 7.1-Lock hook; 7.2-Block lever; 7.3-Limiting column; 7.4-Hole; 7.5-Slider; 7.6-Inclined surface; 8-Mechanical lock cylinder; 8.1-Bump; 9-Bottom plate; 9.1-Lock hole; 9.2-Button hole; 9.3-Spring Mounting hole; 10-second pressing piece; 11-interface board; 11.1-first USB socket; 12-seat plate; 12.1-hinge ear; 12.2-hinge hole; 12.3-spring mounting column; 13-locking buckle; 13.1-locking buckle hole; 14-rear bottom shell; 14.1-interface board mounting slot; 14.2-power supply mounting slot; 14.3-bayonet; 15-power module; 15.1-card block; 15.2-USB plug; 16-rubber plug; 17-connecting pin; 18-reset spring; 19-electric wire; 20-socket; 21-first half box; 22-second half box; 23-electronic lock installation position; 24-secondary lock box; 25-secondary lock; 26-second motor; 27-unlocking spring. DETAILED DESCRIPTION
[0042] The present invention is further described below in conjunction with the embodiments.
[0043] In the description of the present invention, it should be understood that descriptions involving orientations, such as up, down, front, back, left, right, etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limitations on the present invention.
[0044] In the description of this utility model, "several" means one or more, "many" means more than two, "greater than," "less than," and "exceed" are understood to exclude the number itself, while "above," "below," and "within" are understood to include the number itself. The use of "first" and "second" in the description is solely for the purpose of distinguishing technical features and is not to be construed as indicating or implying relative importance, implicitly specifying the number of the indicated technical features, or implicitly specifying the order of the indicated technical features.
[0045] In the description of the present invention, unless otherwise clearly defined, terms such as setting, installing, and connecting should be understood in a broad sense, and technicians in the relevant technical field can reasonably determine the specific meanings of the above terms in the present invention based on the specific content of the technical solution.
[0046] Example 1:
[0047] like Figures 1 to 13 The figure shows an integrated fingerprint electronic lock for an aluminum alloy frame box of embodiment 1, which includes a main box body, a fingerprint module 2, a main board 4, a first lock hook mechanism, a first motor 5, a power module 15 and a lock buckle 13. The first lock hook mechanism includes a cam 6, a moving block 7 and a return spring 18.
[0048] The main case includes a base portion secured to the bag and a locking portion hingedly connected to the base portion. The locking portion comprises a panel 1 and a bottom plate 9. The fingerprint module 2, mainboard 4, first locking hook mechanism, and first motor 5 are all mounted on the inside of panel 1. The bottom plate 9 covers the bottom surface of panel 1 and is secured with screws, thereby integrating the fingerprint module 2, mainboard 4, first locking hook mechanism, and first motor 5 within the locking portion of the main case.
[0049] The specific layout structure inside the locking part of the main box is as follows: Figure 7 As shown, in this embodiment, a mainboard mounting position 1.5, a motor mounting slot 1.6 and a slide slot 1.7 are provided on the inner side of the panel 1. Figure 5 and Figure 6 As shown, the main board 4 is installed in the main board installation position 1.5 and fixed by screws. The main board 4 of this embodiment is U-shaped, forming a U-shaped notch 4.3. The motor mounting groove 1.6 is located in the U-shaped notch 4.3 of the main board 4. The first motor 5 is correspondingly embedded and installed in the motor mounting groove 1.6, so that the first motor 5 is located in the U-shaped notch 4.3 of the main board 4. The moving block 7 is located in the slide groove 1.7, and the moving block 7 can slide back and forth. Figure 9 and Figure 10As shown, cam 6 is cylindrical in shape and mounted on the output shaft of first motor 5. Cam 6 is driven by first motor 5 for rotation. A spiral portion 6.1 is provided on the sidewall of cam 6. A sleeve 7.4 is provided at the rear end of movable block 7. A slider 7.5 is located within sleeve 7.4. Sleeve 7.4 fits over cam 6, and slider 7.5 slides over spiral portion 6.1. A stop post 7.3 is provided in front of movable block 7. One end of a return spring 18 fits over stop post 7.3, while the other end abuts against the inner side of panel 1. Return spring 18 provides a rearward restoring force for movable block 7. The movable block 7 is provided with a lock hook 7.1, which is used to cooperate with the hook on the lock hole 13.1 of the lock buckle 13. A lock hole 9.1 is provided on the base plate 9 corresponding to the lock hook 7.1. The side of the lock hook 7.1 close to the lock hole 9.1 is a slope 7.6. When the lock buckle 13 passes through the lock hole 9.1, the movable block 7 can be pushed forward by the slope 7.6, so that the lock buckle 13 can be buckled in.
[0050] Panel 1 is provided with a first opening 1.2. Fingerprint module 2 is fixedly mounted on the inner surface of panel 1 in correspondence with first opening 1.2, with the fingerprint entry surface of fingerprint module 2 exposed through first opening 1.2. Fingerprint module 2 is secured by a first pressure member 3, which presses against the back of fingerprint module 2 and is fixedly connected to the inner surface of panel 1 via screws. Fingerprint module 2 is electrically connected to mainboard 4. During use, fingerprint module 2 is used to enter fingerprints or unlock electronic fingerprint locks on luggage.
[0051] The base of the main case includes a rear bottom shell 14 and a seat plate 12. During installation, the rear bottom shell 14 and seat plate 12 are positioned on the inside and outside of the case, respectively, and then bolted together to secure the base to the case. The end of the main case's locking portion, away from the hook 7.1, is hingedly connected to the seat plate 12. The hinged connection is structured as follows: hinge slots 1.1 are provided on either side of the bottom of the panel 1, away from the hook 7.1. Connecting pins 17 are located within these slots. Hinge ears 12.1 are provided on either side of the seat plate 12. These ears extend into these slots, and the connecting pins 17 extend through hinge holes 12.2 in the ears 12.1.
[0052] In this embodiment, two unlocking springs 27 are provided between the seat plate 12 and the bottom plate 9. Spring mounting posts 12.3 are provided on both sides of the upper side of the seat plate 12, and spring mounting holes 9.3 are provided on both sides of the bottom plate 9. One end of the unlocking spring 27 is sleeved on the spring mounting post 12.3, and the other end is embedded in the spring mounting hole 9.3. When unlocking, the unlocking spring 27 automatically pops up the locking part.
[0053] The power module 15 of this embodiment is detachable and movable, and is shaped like a USB flash drive. It is equipped with a battery and a charge and discharge control circuit board. One end of the connection is equipped with a USB plug 15.2. The battery and the USB plug are electrically connected to the charge and discharge control circuit board. Figure 12 As shown, the rear bottom case 14 is provided with a power supply mounting slot 14.2. One end of the power supply mounting slot 14.2 is open, and the other end is provided with a first USB female connector 11.1. A latch 14.3 is provided on the side of the opening of the power supply mounting slot 14.2. A latch block 15.1 is provided on the side of the end of the power module 15 away from the USB plug 15.2. The power module 15 can be inserted into the power supply mounting slot 14.2, and the latch block 15.1 is engaged with the latch 14.3. The USB plug 15.2 is then inserted into the first USB female connector 11.1, completing the electrical connection.
[0054] This embodiment is provided with an interface board 11, a first USB female connector 11.1 is provided on the interface board 11, and a through hole is provided on the end surface of the power supply mounting slot 14.2 corresponding to the first USB female connector 11.1, so that the first USB female connector 11.1 can be exposed in the power supply mounting slot 14.2. An interface board mounting slot 14.1 is provided on the rear bottom shell 14, and the interface board mounting slot 14.1 is close to the end of the power supply mounting slot 14.2 away from the opening. The interface board 11 is installed in the interface board mounting slot 14.1, and a second pressing piece 10 is covered at the notch of the interface board mounting slot 14.1, and the second pressing piece 10 is fixed by screws. Figure 13 As shown, the interface board 11 is electrically connected to the main board 4 through the wire 19, so that the power module 15 plugged into the first USB socket 11.1 can power the luggage fingerprint electronic lock, and the connection between the wire 19 and the main board 4 and the interface board 11 is realized through a conventional socket 20.
[0055] In this embodiment, a second USB female connector 4.2 is provided on the mainboard 4, corresponding to a second opening 1.3 on the front panel 1. The second USB female connector 4.2 is exposed through the second opening 1.3. The second USB female connector 4.2 can also connect to the USB plug 15.2 of the power module 14. During use, the power module 15 can be removed from the power mounting slot 14.2 and then inserted into the second USB female connector 4.2 to power the luggage fingerprint electronic lock. In this embodiment, a conventional openable and closable rubber plug 16 is provided at the outer end of the second opening 1.3.
[0056] The first USB female socket 11.1, the second USB female socket 4.2, and the USB plug 15.2 of this embodiment adopt a matching standard Type-C interface structure. In other embodiments, other USB interface structures may also be adopted.
[0057] In this embodiment, a mechanical lock cylinder 8 is integrated into the locking portion of the main box. The mechanical lock cylinder 8 is a conventional lock cylinder, which is commonly used in existing electronic locks. A lock cylinder mounting hole 1.8 is provided on the inner side of the panel 1, and a third opening 1.4 is provided on the front of the panel 1 corresponding to the lock cylinder mounting hole 1.8. The mechanical lock cylinder 8 is embedded and fixed in the lock cylinder mounting hole 1.8, with the front end exposed from the third opening 1.4. A protrusion 8.1 is provided at the bottom of the mechanical lock cylinder 8, and a blocking rod 7.2 is provided on the movable block 7. Figure 9 As shown, the protrusion 8.1 is located behind the blocking rod 7.2. When the mechanical lock core 8 rotates to unlock, it will drive the protrusion 8.1 to rotate, and then push the blocking rod 7.2 through the protrusion 8.1, so that the moving block 7 moves forward to complete the unlocking.
[0058] This embodiment also includes a fingerprint registration button 4.1 on the mainboard 4 for controlling fingerprint registration and clearing. A corresponding button hole 9.2 is provided on the bottom plate 9, through which the fingerprint registration button 4.1 emerges. When the electronic luggage fingerprint lock is locked, the fingerprint registration button 4.1 is located on the inside of the lock and not exposed on the outside. This prevents outsiders from operating the lock, ensuring safe use. Subsequently, during use, a single press of the fingerprint registration button 4.1 causes the fingerprint module 2 to enter the fingerprint registration state, allowing fingerprint registration. Pressing the fingerprint registration button 4.1 for longer than a set time allows internal fingerprint information to be cleared, making operation even more convenient.
[0059] like Figures 14 to 17 The luggage of this embodiment is shown, comprising a first half-case 21, a second half-case 22, and the aforementioned fingerprint electronic lock. Only one lock is installed. An aluminum alloy frame surrounds the first and second half-cases 21, 22. The aluminum alloy frames on one side of the first and second half-cases 21, 22 are hinged together, and the center of each side is provided with an inwardly recessed electronic lock mounting position 23. The main body of the fingerprint electronic lock for luggage is mounted in the electronic lock mounting position 23 of the first half-case 21. The specific mounting structure is as follows: a mounting hole is provided in the electronic lock mounting position 23 of the first half-case 21. The rear bottom shell 14 is positioned on the inner side of the first half-case 21, and the seat plate 12 is positioned on the outer side of the first half-case 21. The lock is then fixedly connected by screws, thereby securely mounting the lock in the electronic lock mounting position 23 of the first half-case 21. The lock catch 13 is mounted in the electronic lock mounting position 23 of the second half-case.
[0060] The specific usage process of this embodiment is as follows:
[0061] When the bag needs to be locked, the first half box body 21 and the second half box body 22 are closed, and then the locking part of the main box body is rotated so that the lock buckle 13 is inserted into the lock hole 9.1 accordingly. At this time, the unlocking spring 27 will be compressed. During the insertion process, the lock buckle 13 is against the inclined surface 7.6 of the lock hook 7.1 and pushes the moving block 7 through the inclined surface so that the lock hook 7.1 avoids to one end. When the lock buckle 13 is fully inserted, the moving block 7 will be reset under the action of the reset spring 18, so that the lock hook 7.1 is inserted into the lock buckle hole 13.1 of the lock buckle 13 accordingly, completing the locking of the lock buckle 13 and achieving locking.
[0062] When the bag needs to be unlocked, a correct fingerprint is input into the fingerprint module 2. The mainboard 4 then controls the first motor 5 to rotate, which in turn drives the cam 6. The spiral portion 6.1 of the cam 6 pushes the movable block 7 forward, causing the lock hook 7.1 to exit the lock hole 13.1 of the lock buckle 13, completing the unlocking process. At this point, the unlocking spring 27 automatically causes the locked portion to flip outward, allowing the first half 21 and the second half 22 to be opened. After the unlocking time has passed, the first motor 5 automatically rotates in the opposite direction, and the movable block 7 is reset by the reset spring 18.
[0063] To unlock the bag, you can also use a key to unlock it. Insert the correct key into the mechanical lock cylinder 8 and then rotate it, so that the protrusion 8.1 pushes the blocking rod 7.2, and then pushes the moving block 7 forward, so that the lock hook 7.1 withdraws from the lock hole 13.1 of the lock buckle 13, completing the unlocking.
[0064] Among them, the use of the power module of this embodiment is very flexible: the power module 15 can be installed in the power installation slot 14.2 and connected to the first USB female socket 11.1 to power the luggage fingerprint electronic lock, or it can be taken out of the power installation slot 14.2 and inserted into the second USB female socket 4.2 to power the luggage fingerprint electronic lock. Figure 15 The figure shows a schematic diagram of the power module 15 being plugged into the second USB female socket 4.2. When charging is required, the power module 15 can be directly removed and plugged into an external charging head for charging. One convenient use scenario for the power module 15 is: when a user needs to take a plane with luggage, the power module 15 can be easily removed from the power installation slot 14.2 and carried by the user, while the luggage can be checked. After getting off the plane, when retrieving the luggage, the power module 15 is plugged into the second USB female socket 4.2 to power the luggage fingerprint electronic lock, and the luggage can be easily unlocked again without the need for mechanical unlocking.
[0065] Example 2:
[0066] like Figure 18 and Figure 21The second embodiment shows an integrated fingerprint electronic lock for aluminum alloy frame boxes. Compared with the first embodiment, the second embodiment is provided with a secondary lock box 24 and a secondary lock buckle 25, so that both sides of the box can be locked.
[0067] The auxiliary lock box 24 is provided with a second lock hook mechanism and a second motor 26. Figure 21 As shown, the second motor 26 is connected to the main board 4 in the main box body through the wire 19, and the rotation of the second motor 26 is controlled by the main board 4. Among them, the auxiliary lock buckle 25 is used to cooperate with the second lock hook mechanism to lock.
[0068] The structure of the second lock hook mechanism in the auxiliary lock box can be the same as the first lock hook mechanism in embodiment 1, or can be the lock hook mechanism in other existing lock bodies. A corresponding mechanical lock core is also provided in the auxiliary lock box 24.
[0069] like Figure 18 and Figure 19 This is a schematic diagram of the structure of the second embodiment of the luggage fingerprint electronic lock when installed on a luggage. The luggage still includes a first half case 21 and a second half case 22. One side of the first half case 21 and the second half case 22 are hinged together, and the other side is provided with an inwardly recessed electronic lock installation position 23 on both sides. The main box of the luggage fingerprint electronic lock is installed at the electronic lock installation position 23 on one side of the first half case 21, and the lock buckle 13 is installed at the electronic lock installation position 23 on the same side of the second half case 22 as the main box. The secondary lock box 24 is installed at the electronic lock installation position 23 on the other side of the first half case 21, and the secondary lock buckle 25 is installed at the electronic lock installation position 23 on the same side of the second half case 22 as the secondary lock box 24.
[0070] In another embodiment, three or more locks can be configured on the luggage. In this case, the luggage fingerprint electronic lock can be equipped with two or more secondary lock boxes and secondary lock buckles. The motors in the secondary lock boxes are respectively connected to the main board and are controlled by the main board.
[0071] The above embodiments of the present invention are not intended to limit the scope of protection of the present invention, and the implementation methods of the present invention are not limited thereto. All other modifications, replacements or changes made to the above structure of the present invention based on the above contents of the present invention, in accordance with common technical knowledge and customary means in this field, without departing from the above basic technical ideas of the present invention, should fall within the scope of protection of the present invention.
Claims
1. An integrated fingerprint electronic lock for aluminum alloy frame boxes, characterized by: The luggage bag comprises a main box body, a fingerprint module, a main board, a first locking hook mechanism, a first motor, a power module and a lock buckle for cooperating with the first locking hook mechanism for locking. The main box body comprises a base portion fixed to the luggage bag and a locking portion hinged to the base portion. The fingerprint module, main board, first locking hook mechanism and first motor are integrated together in the locking portion of the main box body. The power module is arranged at the base portion of the main box body.
2. The integrated fingerprint electronic lock for aluminum alloy frame box according to claim 1 is characterized by: The fingerprint electronic lock also includes a secondary lock box and a secondary lock buckle. The secondary lock box is provided with a second lock hook mechanism and a second motor. The second motor is connected to the main board through wires. The secondary lock buckle is used to cooperate with the second lock hook mechanism to lock.
3. The integrated fingerprint electronic lock for aluminum alloy frame box according to claim 1 is characterized by: The locking part of the main box body includes a panel and a bottom plate. The fingerprint module, main board, first lock hook mechanism and first motor are all installed on the inner side of the panel. The bottom plate covers the bottom surface of the panel. The fingerprint entry surface of the fingerprint module is exposed in front of the panel. A lock hole is provided on the bottom plate corresponding to the first lock hook mechanism.
4. The integrated fingerprint electronic lock for aluminum alloy frame box according to claim 3 is characterized by: The base portion of the main box body includes a rear bottom shell and a seat plate, which are fixedly connected by bolts. When installed, the rear bottom shell and the seat plate are respectively located on the inner and outer sides of the bag. The locking portion of the main box body is hinged to the seat plate, and the power module is arranged on the rear bottom shell.
5. The integrated fingerprint electronic lock for aluminum alloy frame box according to claim 1 is characterized by: The base portion of the main box body is provided with a power installation slot, one end of the power installation slot is open, and the other end is provided with a first USB female socket. The power module is provided with a USB plug, and the power module is installed in the power installation slot, and the USB plug is inserted into the first USB female socket.
6. The integrated fingerprint electronic lock for aluminum alloy frame box according to claim 5 is characterized by: The locking portion of the main box body is further integrated with a second USB female socket, which is exposed in front of the locking portion. The second USB female socket can also be connected to the USB plug of the power module.
7. The integrated fingerprint electronic lock for aluminum alloy frame box according to claim 5 is characterized by: The fingerprint electronic lock is provided with an interface board, which is arranged on the inner side of the base part. The first USB female socket is arranged on the interface board, and the interface board is connected to the mainboard by wires.
8. The integrated fingerprint electronic lock for aluminum alloy frame box according to claim 1 is characterized by: The first lock hook mechanism includes a cam, a moving block and a return spring. The cam is installed on the output shaft of the first motor. A spiral portion is provided on the side wall of the cam. The moving block can slide back and forth in the locking part of the main box body. A sleeve hole is provided at the rear end of the moving block. A slider is provided in the sleeve hole. The sleeve hole is fitted on the cam. The slider slides on the spiral portion. The return spring provides a backward restoring force for the moving block. A lock hook for fitting and hooking on the lock buckle is provided on the moving block.
9. The integrated fingerprint electronic lock for aluminum alloy frame box according to claim 8 is characterized by: The locking part of the main box body is also integrated with a mechanical lock core, a protrusion is provided at the bottom of the mechanical lock core, and a baffle is provided on the moving block. The protrusion is located behind the baffle, and the mechanical lock core will drive the protrusion to rotate when it is unlocked and rotated, and then push the baffle through the protrusion.