Integrated luggage lock integrating fingerprint lock, key lock and coded lock

By integrating fingerprint lock, key lock and combination lock into one design, the problem of difficulty in unlocking existing luggage locks caused by a single unlocking method is solved. It achieves a close combination of multiple unlocking methods, improving the reliability of luggage locks and user experience.

CN224078892UActive Publication Date: 2026-04-03TRAVEL TU (GUANGZHOU) INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing luggage locks typically only have one unlocking method, which can lead to the inability to unlock them properly in certain situations, affecting the user experience. In particular, in emergency situations, this may result in being unable to board the plane or having one's luggage confiscated.

Method used

An integrated bag lock combining fingerprint lock, key lock, and combination lock was designed. It can be unlocked in multiple ways, including fingerprint recognition, mechanical combination, and key lock. The motor-driven translation component pushes the rotating component to achieve a tight combination of the various locks.

Benefits of technology

It enables normal unlocking through other methods even when one unlocking method fails, improving the reliability and user experience of luggage locks and avoiding unlocking difficulties caused by the failure of a single unlocking method.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an integrated luggage lock integrating a fingerprint lock, a key lock and a coded lock, which comprises a lock box, a lock hook, a lock catch matched with the lock hook for locking, the fingerprint lock, the key lock, the mechanical coded lock, an unlocking key and a rotating piece provided with the lock hook, a motor of the fingerprint lock is connected with a translation piece with one end extending to the side of a rotating piece, the translation piece is driven by the motor to translate to push the rotating piece to rotate during unlocking, a push block located beside the rotating piece is arranged at the inner end of a key lock cylinder of the key lock, and the key lock cylinder is rotated during unlocking to push the rotating piece to rotate through the push block. One end of a movable lock piece of the mechanical coded lock extends to the side of a rotating piece, and when the mechanical coded lock is unlocked by a correct password, an unlocking key is pressed to push the movable lock piece to move so as to push the rotating piece to rotate. According to the luggage unlocking device, the luggage can be unlocked in various modes, and the situation that unlocking is difficult does not occur basically.
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Description

Technical Field

[0001] This utility model relates to the field of luggage locks, specifically to an integrated luggage lock that combines a fingerprint lock, a key lock, and a combination lock. Background Technology

[0002] When traveling, people generally carry personal belongings such as clothes in bags, making the convenience of bags increasingly important. Bags on the market are generally divided into soft-shell bags and hard-shell bags. Soft-shell bags typically use a combination of fabric and plastic to form the outer shell, with the two halves connected by zippers. Hard-shell bags usually have the upper and lower halves connected by an aluminum alloy frame, and the two halves are locked together by a lock. The main materials for hard-shell bags are PC, ABS, PP, and aluminum alloy.

[0003] Luggage locks are generally divided into electronic locks, mechanical combination locks, and key locks. Electronic locks typically use fingerprint locks; when the correct fingerprint is recognized, its motor is activated, which drives the lock hook to disengage from the latch, thus unlocking the lock. Mechanical combination locks typically use a digit dial; when the correct combination is entered, the moving locking mechanism is activated, which pushes the lock hook to disengage from the latch, thus unlocking the lock. Key locks unlock the lock by turning the correct key.

[0004] Most existing bags only have one of the aforementioned types of locks. The main reason for this is that combining multiple locks requires a more ingenious design of the internal structure, which is difficult to design. At the same time, the structure of the bag lock needs to be designed to be more compact, and the overall size of the lock needs to be controlled. The bag lock cannot be too large due to its dispersed structure, because the size of the bag determines the installation size of the bag lock.

[0005] Existing luggage locks only have one of the aforementioned types of locks, often leading to difficulties in unlocking. For example, fingerprint locks may run out of power when no power bank is available; mechanical combination locks may have forgotten the combination; and key locks may have been forgotten. This is especially problematic during boarding or customs procedures. If staff suspect prohibited items and require inspection, the inability to open the luggage due to these issues can result in being denied boarding, luggage being detained by customs, or even forced entry in an emergency, negatively impacting user experience. Therefore, the inventor has continuously developed a luggage lock that integrates fingerprint, mechanical combination, and key lock technologies. This hybrid smart luggage lock technology fills a market gap, solves the anxiety associated with single-password or single-fingerprint unlocking, and allows for multiple unlocking modes (fingerprint, password, mobile phone, power bank, mechanical key). The product is constantly being improved and optimized to meet diverse customer needs. Utility Model Content

[0006] The purpose of this invention is to provide an integrated bag lock that combines a fingerprint lock, a key lock, and a combination lock, enabling the bag to be unlocked in multiple ways.

[0007] The objective of this utility model is achieved through the following technical solution:

[0008] An integrated bag lock combining a fingerprint lock, a key lock, and a combination lock includes a lock case, a lock hook, and a latch that engages with the lock hook. The lock case further includes a fingerprint lock, a key lock, a mechanical combination lock, an unlock button, and a rotating component with a lock hook. The rotating component is rotatable. A translational component extending to the side of the rotating component is connected to the motor of the fingerprint lock. During unlocking, the motor drives the translational component to move, thereby rotating the rotating component. The key lock cylinder of the key lock has a push block located next to the rotating component. During unlocking, rotating the key lock cylinder pushes the rotating component through the push block. One end of the movable locking component of the mechanical combination lock extends to the side of the rotating component. When the mechanical combination lock is unlocked with the correct combination, pressing the unlock button moves the movable locking component, thereby rotating the rotating component.

[0009] A further technical solution of this utility model is as follows: a mechanical combination lock is located at one end of the lock box, a rotating component is located close to the mechanical combination lock, a motor and a translation component are located on the side of the rotating component away from the mechanical combination lock, a key lock is located between the rotating component and the front wall of the lock box, and the other end of the lock box is provided with the main board and fingerprint module of the fingerprint lock.

[0010] A further technical solution of this utility model is as follows: the middle part of the rotating component is rotatably connected to the rotating pin inside the lock box, one end of the rotating component is provided with a limiting part, the lock box is provided with a blocking part, a lock hook return spring is connected to the limiting part, and the force of the lock hook return spring acting on the limiting part is directed towards the blocking part.

[0011] A further technical solution of this utility model is as follows: one end of the rotating member is provided with a first force-bearing part extending to the side, the translation member and the movable locking member both act on the first force-bearing part, the other end of the rotating member is provided with a second force-bearing part and a lock hook, and the push block at the inner end of the key lock cylinder acts on the second force-bearing part.

[0012] A further technical solution of this utility model is as follows: the movable locking part of the mechanical combination lock can be translated, one end of the movable locking part is connected to the combination lock return spring, and the other end of the movable locking part is provided with a third force-bearing part extending to the side of the rotating part. The unlock button is located at the position of the third force-bearing part, and pressing the unlock button will act on the third force-bearing part.

[0013] A further technical solution of this utility model is: the unlock button is located on the side of the lock box.

[0014] A further technical solution of this utility model is as follows: a cam is connected to the output shaft of the motor, a helical part is provided on the side of the cam, a sleeve hole is provided on the translation component, a slider is provided on the inner wall of the sleeve hole, the cam passes through the sleeve hole, the slider is located in front of the helical part, when the cam rotates, it can push the slider through the helical part, a fingerprint lock reset spring is connected to the translation component, the force of the fingerprint lock reset spring on the translation component is opposite to the pushing force of the helical part on the slider.

[0015] A further technical solution of this utility model is as follows: The lock box is provided with a digital display hole on the front and a dial hole on the end face at one end of the mechanical combination lock. The numbers on the digital dial of the mechanical combination lock will correspond to the position of the digital display hole, and part of the digital dial of the mechanical combination lock will be exposed from the dial hole.

[0016] A further technical solution of this utility model is: one end of the translation member is provided with a fourth force-receiving part that extends to the side of the first force-receiving part of the rotating member.

[0017] A further technical solution of this utility model is as follows: the fingerprint lock includes a power bank module, the power bank module is provided with a USB plug, the bag lock also includes a base, the inner surface of the base is provided with a power fixing groove, the power bank module can be inserted into the power fixing groove, the front of the lock box and the inner end of the power fixing groove are respectively provided with a first USB female and a second USB female, both of which can be connected to the USB plug.

[0018] Compared with the prior art, the present invention has the following beneficial effects:

[0019] This utility model's bag lock integrates a fingerprint lock, a key lock, and a combination lock, allowing bags using this design to be unlocked in multiple ways. Even if one or two of the locks fail, the third lock can be used to unlock the bag promptly, thus largely eliminating the unlocking difficulties encountered in the prior art. Furthermore, unlocking of the fingerprint lock, key lock, and combination lock in this utility model is achieved by rotating a rotating component, which ensures that the fingerprint lock, key lock, and combination lock are tightly integrated. Attached Figure Description

[0020] Figure 1 This is one of the perspective schematic diagrams of the bag lock according to an embodiment of this utility model;

[0021] Figure 2 This is a second perspective view of the bag lock according to an embodiment of this utility model;

[0022] Figure 3 This is one of the exploded schematic diagrams of the bag lock according to an embodiment of this utility model;

[0023] Figure 4This is the second exploded schematic diagram of the bag lock according to an embodiment of this utility model;

[0024] Figure 5 This is a three-dimensional schematic diagram of the lock box and the base plate assembled together according to an embodiment of the present utility model;

[0025] Figure 6 This is a perspective view of the lock box with the bottom cover hidden in an embodiment of this utility model;

[0026] Figure 7 This is a three-dimensional schematic diagram of the lock box after the bottom cover is hidden and the movable lock and inner plate are separated according to an embodiment of this utility model;

[0027] Figure 8 This is a three-dimensional schematic diagram of the lock box with the bottom cover hidden, the movable lock, and the translation component in an embodiment of this utility model;

[0028] Figure 9 This is a schematic diagram of the structure of the lock buckle inserted into the lock box and hooked together with the lock hook according to an embodiment of the present utility model;

[0029] Figure 10 This is a schematic diagram of the assembly structure between the motor and the translation component according to an embodiment of the present invention;

[0030] Figure 11 This is an exploded view of the base according to an embodiment of the present invention;

[0031] Figure 12 This is a three-dimensional schematic diagram of the base according to an embodiment of the present utility model;

[0032] Figure 13 This is a three-dimensional schematic diagram of a luggage lock installed on a luggage and the luggage being opened, according to an embodiment of the present utility model.

[0033] Figure 14 This is a three-dimensional schematic diagram of a luggage lock installed on a luggage and the luggage being locked, according to an embodiment of the present invention.

[0034] Meaning of the labels in the attached diagram:

[0035] 1-Panel; 1.1-Fingerprint module mounting hole; 1.2-USB hole; 1.3-Key lock mounting hole; 1.4-Digital display hole; 1.5-Dial hole; 1.6-Hinge; 1.7-Rotating pin; 1.8-Blocking part; 1.9-Motor mounting slot; 2-Key lock; 2.1-Push block; 3-Fingerprint module; 4-Main board; 5-Inner board; 5.1-Rotating hole; 6-Rotating component; 6.1-First force-bearing part; 6.2-Second force-bearing part; 6.3-Lock hook; 6.4-Limiting part; 7-Moving lock component; 7.1-Elongated hole; 7.2-Straight rod part; 7.3-Third force-bearing part; 8-Translating component; 8.1-Sleeve hole; 8.2-Fourth force-bearing part; 8.3-Slider; 9-Digital dial; 9. 1-Notch; 9.2-Digital disk spring; 10-Cam; 10.1-Screw; 11-Motor; 12-Unlock button; 13-Button spring; 14-First USB female connector; 15-Fingerprint lock reset spring; 16-Lock hook reset spring; 17-Password lock reset spring; 18-Bottom cover; 18.1-Lock hole; 19-Plastic cover; 20-Power bank module; 20.1-USB plug; 21-Slot cover plate; 22-Inner bottom shell; 22.1-Power supply fixing slot; 23-Lock; 23.1-Snap hole; 23.2-Lock mounting plate; 24-Bottom plate; 25-Lock box spring-loaded spring; 26-Interface board; 27-Second USB female connector; 28-First half-box; 29-Second half-box. Detailed Implementation

[0036] The present invention will be further described below with reference to embodiments.

[0037] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, front, back, left, right, etc., indicate the directional or positional relationship based on the directional or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0038] In the description of this utility model, "several" means one or more, "multiple" means two or more, "greater than," "less than," and "exceeding" are understood to exclude the stated number, while "above," "below," and "within" are understood to include the stated number. If "first" or "second" is used in the description, it is only for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance, or implicitly indicating the number of indicated technical features, or implicitly indicating the order of the indicated technical features.

[0039] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.

[0040] Example:

[0041] like Figures 1 to 12 The image shows an integrated bag lock that combines a fingerprint lock, a key lock, and a combination lock according to this embodiment. It includes a lock box, a base, a lock hook 6.3, a lock buckle 23, a fingerprint lock, a key lock, a mechanical combination lock, an unlock button 12, and a rotating component 6. The fingerprint lock includes a main board 4, a fingerprint module 3, a power supply module 20, a motor 11, and a sliding component 8.

[0042] The lock box in this embodiment includes a panel 1 and a bottom cover 18 covering the bottom surface of the panel 1. A mechanical combination lock is located at one end of the panel 1. A rotating component 6 is positioned close to the mechanical combination lock, and its center is rotatably connected to a rotating pin 1.7 within the panel 1. A motor 11 and a translation component 8 are located on the side of the rotating component 6 away from the mechanical combination lock. A key lock 2 is located between the rotating component 6 and the front wall of the panel 1. The other end of the panel 1 houses the main board 4 of a fingerprint lock and a fingerprint module 3. This arrangement of the fingerprint lock, key lock, and mechanical combination lock allows for a more compact internal structure, thus enabling better control over the size of the lock.

[0043] The rotating component 6 in this embodiment has the following structure: one end of the rotating component 6 is provided with a first force-receiving part 6.1 extending to the side, and the other end of the rotating component 6 is provided with a second force-receiving part 6.2 and a locking hook 6.3, which are integrally formed with the rotating component 6. The end of the rotating component 6 with the locking hook 6.3 is provided with a limiting part 6.4, which extends inward. A blocking part 1.8 is provided inside the panel 1. A locking hook return spring 16 is connected to the limiting part 6.4. The two ends of the locking hook return spring 16 are respectively sleeved on the limiting part 6.4 and the protrusion inside the panel 1. The force exerted by the locking hook return spring 16 on the limiting part 6.4 is directed towards the blocking part 1.8, so that when the bag lock is not operated, the limiting part 6.4 remains against the blocking part 1.8, and the locking hook 6.3 remains in the locked position.

[0044] This embodiment of the mechanical combination lock includes a movable locking component 7, an inner plate 5, and three digit dials 9. The panel 1 has three digit display holes 1.4 on the front and three dial holes 1.5 on the end face. The digit dials 9 are rotatably mounted on a rotating shaft 1.6 inside the panel 1. A digit dial spring 9.2 is located in the middle of the digit dial 9. The inner plate 5 covers the inside of the digit dial 9 and presses against the digit dial spring 9.2. The elastic force of the digit dial spring 9.2 acts on the digit dial 9, limiting its movement. The end of the rotating shaft 1.6 passes through a rotating hole 5.1 in the inner plate 5. The movable locking component 7 rests flat against the inner plate 5. The end of the rotating shaft 1.6 also passes through an elongated hole 7.1 on the movable locking component 7. The direction and range of the movable locking component 7's translation are limited by the elongated hole 7.1. The numbers on the numeric dial 9 correspond to the positions of the numeric display holes 1.4. Part of the numeric dial 9 protrudes from the dial hole 1.5, allowing it to be moved through the dial hole 1.5 during use. The interior of the numeric dial 9 has notches 9.1 corresponding to the correct password numbers. The movable locking member 7 has a straight rod 7.2 for each numeric dial 9, located on the side of the numeric dial 9. When all numeric dials 9 are moved to the correct password numbers, the notches 9.1 of all numeric dials 9 will align with the straight rods 7.2, at which point the movable locking member 7 can move in the unlocking direction.

[0045] One end of the movable locking member 7 is connected to a combination lock return spring 17, with both ends of the return spring 17 respectively fitted onto the movable locking member 7 and the protrusion inside the panel 1. The other end of the movable locking member 7 has a third force-receiving part 7.3 extending to the side of the first force-receiving part 6.1 of the rotating member 6. The unlock button 12 is conventionally mounted on one side of the panel 1, located on the side of the third force-receiving part 7.3. The unlock button 12 can be pressed inwards. Pressing the unlock button 12 acts on the third force-receiving part 7.3, thereby pushing the unlocked movable locking member 7. This, in turn, acts on the first force-receiving part 6.1, pushing the rotating member 6 to rotate and unlock. The unlock button 12 has a button spring 13 inside. The force exerted by the button spring 13 on the unlock button 12 is outwards. After pressing the unlock button 12, the unlock button 1 can be reset by the button spring 13.

[0046] Panel 1 has a key lock mounting hole 1.3. Key lock 2 is installed in key lock mounting hole 1.3. The center of key lock 2 is the key lock cylinder, which can be rotated when the correct key is inserted. A push block 2.1 is provided at the inner end of the key lock cylinder. (The rest of the text appears to be unrelated and possibly machine-generated.) Figure 6 As shown, the push block 2.1 is located next to the second force-receiving part 6.2 of the rotating member 6. When the key lock cylinder is turned with the correct key, the push block 2.1 will rotate together, and the push block 2.1 will act on the second force-receiving part 6.2, pushing the rotating member 6 to rotate and unlock.

[0047] The motor 11 is installed in the motor mounting slot 1.9 inside the panel 1. The translation component 8 is connected to the motor 11, and the motor 11 can drive the translation component 8 to translate. The specific structure is as follows: a cam 10 is connected to the output shaft of the motor 11. The side of the cam 10 is provided with a helical part 10.1. The translation component 8 is provided with a sleeve hole 8.1. A slider 8.3 is provided on the inner wall of the sleeve hole 8.1. The cam 10 passes through the sleeve hole 8.1. The slider 8.3 is located in front of the helical part 10.1. When the cam 10 rotates, it can push the slider 8.3 through the helical part 10.1, thereby pushing the translation component 8 to move. A fingerprint lock reset spring 15 is connected to the translation component 8. The two ends of the fingerprint lock reset spring 15 abut against the translation component 8 and the protrusion inside the panel 1, respectively. The force of the fingerprint lock reset spring 15 on the translation component 8 is opposite to the pushing force of the helical part 10.1 on the slider 8.3. The end of the translation member 8 away from the sleeve hole 8.1 is provided with a fourth force-receiving part 8.2 extending to the side of the first force-receiving part 6.1 of the rotating member 6. The fourth force-receiving part 8.2 is located between the first force-receiving part 6.1 and the third force-receiving part 7.3, and they are together.

[0048] The fingerprint module 3 is installed in the fingerprint module mounting hole 1.1 of the panel 1. The fingerprint input surface of the fingerprint module 3 is exposed on the front of the panel 1. The fingerprint module 3 is directly mounted on the motherboard 4, and the motor 11 is wired to the motherboard 4. During the unlocking process, when the correct fingerprint is entered through the fingerprint module 3, the motor 11 is controlled to rotate. The motor 11 drives the translation component 8 to move. The translation component 8 acts on the first force component 6.1 through the fourth force receiving part 8.2, thereby pushing the rotating component 6 to rotate and unlock.

[0049] In this embodiment, a lock hole 18.1 is provided at the position corresponding to the lock hook 18 on the bottom cover. When locking, the lock buckle 23 can be inserted through the lock hole 18.1, and the lock hook 6.3 will hook onto the buckle hole 23.1 of the lock buckle 23, thereby locking the lock buckle 23. The structure of the lock buckle 23 and the lock hook 6.3 locking is a conventional structure. The lock buckle 23 is provided on the lock buckle mounting plate 23.2, and is fixed to the bag by the lock buckle mounting plate 23.2 during installation.

[0050] In this embodiment, the USB port of the panel 1 is provided with a first USB female connector 14, which is mounted on the motherboard 4. A rubber cover 19 is provided on the panel 1 corresponding to the position of the first USB female connector 14. The power bank module 20 is provided with a USB plug 20.1, and the first USB female connector 14 can be inserted into the USB plug 20.1, so that the power bank module 20 can be plugged into the panel 1 to provide power to the fingerprint lock.

[0051] The base is used for fixed installation on the metal frame of the bag, such as... Figure 10 and Figure 11As shown, the base in this embodiment includes a base plate 24 and an inner bottom shell 22. During fixed installation, the base plate 24 and the inner bottom shell 22 are located on the outer and inner sides of the metal frame of the bag, respectively, and are connected together by bolts. One end of the lock box is hinged to the base plate 24 through a conventional hinge structure, allowing the lock box to flip outward. At the same time, a conventional lock box spring 25 is provided between the base plate 24 and the bottom cover 18, so that the lock box can automatically pop outward after unlocking.

[0052] The inner surface of the inner bottom shell 22 is provided with a power fixing slot 22.1, into which the mobile power module 20 can be inserted. A second USB female connector 27 is located at the inner end of the power fixing slot 22.1, which can also be inserted into the USB plug 20.1. An interface board 26 is connected to the inner side of the second USB female connector 27, and the interface board 26 is wired to the main board 4. The interface board 26 is installed in the interface board mounting slot of the inner bottom shell 22, and a slot cover plate 21 covers the interface board mounting slot. When the mobile power module 20 is inserted into the power fixing slot 22.1, the mobile power module 20 will connect via USB, thereby providing power to the fingerprint lock.

[0053] In this embodiment, the first USB female connector 14, the second USB female connector 27, and the USB plug 20.1 adopt a matching standard Type-C interface structure. In other embodiments, other USB interface structures may also be used.

[0054] like Figure 12 and Figure 13 The diagram shows the installation of the bag lock of this embodiment on a bag. The bag has a first half-box 28 and a second half-box 29. One side of the first half-box 28 and the second half-box 29 are hinged together, and the other side is locked by two bag locks. The two bag locks are located near the two ends. The first bag lock adopts the structure of this embodiment, while the second bag lock does not have an inner bottom shell 22, a power bank module 20, an interface board 26, a main board 4, a fingerprint module 3, etc. The motor of the second bag lock is wired to the main board 4 of the first bag lock, and the main board 4 of the first bag lock controls the motors of both bag locks at the same time.

[0055] When installing the bag lock, the latch 23 is fixedly installed on the first half of the box 28, the base is fixedly installed on the second half of the box 29, and the lock box is hinged to the base. The mobile power module 20 can be plugged into the panel 1 to supply power to the bag lock, or it can be plugged into the power fixing slot 22.1 to supply power to the bag lock.

[0056] When locking, the first half of the housing 28 and the second half of the housing 29 are closed together. Then, the lock box is rotated so that the latch 23 is inserted into the lock box through the lock hole 18.1. During the insertion process, the latch 23 will push the lock hook 6.3 to the side to avoid it. When the latch 23 is fully inserted, the lock hook 6.3 will be reset by the action of the lock hook return spring 16. The lock hook 6.3 returns to the locked position and hooks onto the latch 23, completing the locking process. Figure 13 As shown.

[0057] There are three ways to unlock bags:

[0058] When unlocking the mechanical combination lock, dial the numeric keypad 9 to the correct combination numbers, then press the unlock button 12 on the side. Unlock button 12 will push the movable locking element 7, which in turn will push the rotating element 6 to rotate. The rotation of the rotating element 6 will cause the lock hook 6.3 to rotate around the rotating pin 1.7, and the lock hook 6.3 will retract to the side of the latch 23. The lock box will then pop outwards under the action of the spring, completing the unlocking process. Afterwards, release unlock button 12. The movable locking element 7 and unlock button 12 will reset under the action of the combination lock reset spring 17 and the button spring 13, and the rotating element 6 and lock hook 6.3 will reset under the action of the lock hook reset spring 16.

[0059] When unlocking via the key lock, insert the correct key into key lock 2, then turn the key lock cylinder with the key. This will move the push block 2.1 at the inner end of the key lock cylinder, which in turn will push the rotating component 6 to rotate. The rotation of the rotating component 6 will cause the lock hook 6.3 to rotate around the rotating pin 1.7. The lock hook 6.3 will then retract to the side of the latch 23, and the lock box will pop outward under the action of the spring, completing the unlocking process. After unlocking, the key lock cylinder will reset, and the rotating component 6 and the lock hook 6.3 will reset under the action of the lock hook reset spring 16.

[0060] When unlocking via fingerprint lock, the correct fingerprint is entered through fingerprint module 3. Then, motherboard 4 controls motor 11 to start. Motor 11 drives cam 10 to rotate, and the spiral part 10.1 of cam 10 pushes translation component 8 forward. Translation component 8 pushes rotating component 6 to rotate. The rotation of rotating component 6 will cause lock hook 6.3 to rotate around rotating pin 1.7. Lock hook 6.3 will retract to the side of latch 23, and the lock box will pop outward under the action of spring, completing the unlocking. After the unlocking set time is completed, motor 11 automatically resets, translation component 8 will reset under the action of fingerprint lock reset spring 15, and rotating component 6 and lock hook 6.3 will reset under the action of lock hook reset spring 16.

[0061] Regarding this utility model, we observed many bag brands that have begun to combine practicality with futuristic design, paying more attention to users' actual travel needs and equipping their bags with the latest technology locks. The hybrid integrated design allows for unlocking via multiple methods, including TSA customs locks (key locks), passwords, fingerprints, and mobile phones, solving the problem of unlocking with a single password or fingerprint.

[0062] The above embodiments of this utility model are not intended to limit the scope of protection of this utility model. The implementation of this utility model is not limited thereto. All other modifications, substitutions or alterations made to the above structure of this utility model based on the above content of this utility model and in accordance with the common technical knowledge and conventional means in the field, without departing from the basic technical idea of ​​this utility model, shall fall within the scope of protection of this utility model.

Claims

1. An integrated luggage lock of a fingerprint lock, a key lock and a password lock, comprising a lock box, a lock hook and a lock catch cooperating with the lock hook to lock, characterized in that: Also include the fingerprint lock, key lock, mechanical password lock, unlock button and set the rotating piece of the lock hook in the lock box, the rotating piece is rotationally arranged, the motor of the fingerprint lock is connected with a translation piece extending to the side of the rotating piece, and the translation piece is translated by the motor to drive the rotating piece to rotate when unlocking. The key lock cylinder of the key lock is provided with a push block beside the rotating piece, and the key lock cylinder is rotated to push the rotating piece through the push block when unlocking. One end of the movable lock piece of the mechanical password lock extends to the side of the rotating piece, and the movable lock piece is pressed to move the rotating piece to rotate when the mechanical password lock is unlocked by the correct password.

2. The integrated fingerprint lock, key lock and password lock one-piece luggage lock according to claim 1, characterized in that: The mechanical password lock is arranged at one end of the lock box, the position of the rotating piece is close to the mechanical password lock, the motor and the translation piece are arranged on the side of the rotating piece away from the mechanical password lock, the key lock is arranged between the rotating piece and the front wall of the lock box, and the main board and the fingerprint module of the fingerprint lock are arranged at the other end of the lock box.

3. The integrated fingerprint, key and combination lock for a piece of luggage according to claim 1, wherein: The middle part of the rotating piece is rotationally connected to the rotating pin in the lock box, one end of the rotating piece is provided with a limiting part, a blocking part is arranged in the lock box, a lock hook reset spring is connected to the limiting part, and the force of the lock hook reset spring acting on the limiting part is towards the blocking part.

4. The integrated fingerprint lock, key lock and password lock one-piece luggage lock according to claim 3, characterized in that: One end of the rotating piece is provided with a first stress receiving part extending to the side, the translation piece and the movable lock piece act on the first stress receiving part, the other end of the rotating piece is provided with a second stress receiving part and the lock hook, and the push block in the key cylinder acts on the second stress receiving part.

5. The integrated fingerprint, key and combination lock for a piece of luggage as recited in claim 1, wherein: The movable lock piece of the mechanical password lock can translate, one end of the movable lock piece is connected with a password lock reset spring, the other end of the movable lock piece is provided with a third stress receiving part extending to the side of the rotating piece, the unlocking button is located at the position of the third stress receiving part, and the unlocking button is pressed to act on the third stress receiving part.

6. The integrated fingerprint, key and combination lock for a piece of luggage of claim 1, wherein: The unlocking button is arranged on the side of the lock box.

7. The integrated fingerprint, key and combination lock for a piece of luggage of claim 1, wherein: The output shaft of the motor is connected with a cam, the side surface of the cam is provided with a spiral part, the translation piece is provided with a sleeve hole, the inner wall of the sleeve hole is provided with a sliding block, the cam is arranged in the sleeve hole, the sliding block is located in front of the spiral part, the cam can push the sliding block through the spiral part when rotating, the translation piece is connected with a fingerprint lock reset spring, and the force of the fingerprint lock reset spring acting on the translation piece is opposite to the thrust of the spiral part on the sliding block.

8. The integrated fingerprint, key and combination lock for a piece of luggage of claim 2, wherein: One end of the lock box provided with the mechanical password lock is provided with a digital display hole located in the front and a dial hole located in the end surface, the numbers on the number disc of the mechanical password lock will correspond to the position of the digital display hole, and part of the number disc of the mechanical password lock is exposed from the dial hole.

9. The integrated fingerprint, key and combination lock for a piece of luggage of claim 4, wherein: One end of the translation piece is provided with a fourth stress receiving part extending to the side of the first stress receiving part of the rotating piece.

10. The integrated fingerprint, key and combination lock for a piece of luggage as defined in claim 9, wherein: The fingerprint lock comprises a mobile power module, a USB plug is arranged on the mobile power module, the luggage lock further comprises a base, a power supply fixing groove is arranged on the inner surface of the base, the mobile power module can be inserted into the power supply fixing groove, a first USB female seat and a second USB female seat are respectively arranged on the front surface of the lock box and the inner end of the power supply fixing groove, and the first USB female seat and the second USB female seat can be matched with the USB plug for plug-in connection.