Intelligent fingerprint lock for aviation case
By designing a smart fingerprint lock on the flight case, combining fingerprint recognition and control system with drive device, the flight case can be automatically controlled, solving the problem of insufficient security of traditional locks, improving the security and convenience of the flight case, and making it suitable for the transportation of valuables and precision instruments.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN T-BRISUN CASE CO LTD
- Filing Date
- 2025-04-03
- Publication Date
- 2026-05-01
AI Technical Summary
Traditional airline case locks are not secure enough, cannot achieve remote monitoring and intelligent management, and cannot meet the safety and convenience requirements of modern air transport.
Design an intelligent fingerprint lock for flight cases, which combines fingerprint recognition and control system with drive device to achieve automated control of the lock. The system includes fingerprint recognition module, control board, drive motor and locking mechanism to achieve intelligent and reliable lock.
It improves the security and ease of use of the flight case, eliminating the need for users to carry keys. It supports remote management and monitoring and is suitable for air transport of valuables and precision instruments.
Smart Images

Figure CN224187353U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of aircraft case lock technology, and in particular to an intelligent fingerprint lock for aircraft cases. Background Technology
[0002] Flight cases, as specialized containers used in air transport, are typically used to carry valuables, precision instruments, or important documents. Traditional flight case locks mostly employ mechanical locks, whose security relies on the safekeeping of the key and the complexity of the lock cylinder. However, mechanical locks have numerous security vulnerabilities, such as the ease with which keys can be lost or stolen, and the possibility of the lock cylinder being forcibly broken or technically unlocked. Furthermore, traditional locks cannot achieve remote monitoring and intelligent management, making it difficult to meet the high security and convenience requirements of modern air transport.
[0003] In recent years, with the rapid development of biometric technology, fingerprint recognition technology has been widely used in various security fields due to its uniqueness, stability, and convenience. Applying fingerprint recognition technology to flight case locks can effectively improve the security and ease of use of flight cases. However, currently, there is no smart fingerprint lock on the market specifically designed for flight cases that can organically combine fingerprint recognition, electronic control, and mechanical locking mechanisms to achieve intelligent, safe, and reliable lock functions. Utility Model Content
[0004] The purpose of this utility model is to provide a smart fingerprint lock for flight cases to solve the problems mentioned in the background section. To achieve the above objective, this utility model provides the following technical solution:
[0005] A smart fingerprint lock for an aircraft case includes a first lock body, a second lock body, a fingerprint recognition and control system, a power supply, a drive device, and a locking mechanism. The first lock body and the second lock body are separately disposed at the junction of the case body and the case lid. The locking mechanism is connected between the first lock body and the second lock body for locking and fixing the first lock body and the second lock body. The fingerprint recognition and control system, the power supply, and the drive device are respectively disposed on the second lock body. The power supply is used to power the fingerprint recognition and control system and the drive device. The fingerprint recognition and control system and the drive device are electrically connected, and the drive device is used to drive the locking mechanism to lock or unlock.
[0006] Preferably, the fingerprint recognition and control system includes a fingerprint recognition module and a control board, wherein the fingerprint recognition module and the driving device are electrically connected to the control board.
[0007] Preferably, the fingerprint recognition and control system further includes a status prompt module, which is electrically connected to the control board.
[0008] Preferably, the locking mechanism includes a locking pin and a latch, the locking pin is disposed on the first lock body, the latch is disposed on the second lock body, and the driving device drives the latch to engage with or disengage from the locking pin.
[0009] Preferably, the driving device is a forward and reverse drive motor.
[0010] The beneficial effects of this utility model are as follows: This utility model achieves automated control of the lock by combining fingerprint recognition and control system with drive device. Users do not need to carry traditional keys, but can complete the opening and locking operations of the lock by fingerprint recognition, which improves the security and ease of use of the flight case. It can be widely used in the field of air transport, and is especially suitable for flight cases carrying valuables, precision instruments or important documents. It can effectively improve the security and intelligence level of the flight case and has broad market application prospects. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the structure of this utility model.
[0012] Figure 2 This is an exploded structural diagram of the present invention.
[0013] Figure 3 This is another exploded structural diagram of the present invention. Detailed Implementation
[0014] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.
[0015] like Figures 1 to 3 As shown, a smart fingerprint lock for an aviation case includes a first lock body 1, a second lock body 2, a fingerprint recognition and control system 3, a power supply 4, a drive device 5, and a locking mechanism 6. The first lock body 1 and the second lock body 2 are separately disposed at the junction of the case body and the case lid, with the first lock body 1 installed on the case body side and the second lock body 2 installed on the case lid side. The locking mechanism 6 connects the first lock body 1 and the second lock body 2, used to lock and fix the first lock body 1 and the second lock body 2, achieving a secure connection between the case body and the case lid. The fingerprint recognition and control system 3, the power supply 4, and the drive device 5 are respectively disposed on the second lock body 2. The power supply 4 supplies power to the fingerprint recognition and control system 3 and the drive device 5; the power supply 4 can be a rechargeable battery and is equipped with a charging interface 41, allowing users to charge the lock at any time during use, ensuring the normal operation of the lock. The fingerprint recognition and control system 3 and the drive device 5 are electrically connected, and the drive device 5 is used to drive the locking mechanism 6 to lock or unlock.
[0016] The process is as follows: The user identifies and compares their fingerprint information through the fingerprint recognition and control system 3. If the fingerprint information matches a pre-stored authorized fingerprint, the fingerprint recognition and control system 3 sends an unlock command to the drive device 5. Upon receiving the command, the drive device 5 drives the locking mechanism 6 to open, unlocking the flight case. If the fingerprint information does not match a pre-stored fingerprint, the fingerprint recognition and control system 3 determines that the fingerprint recognition has failed, and the lock remains locked to prevent unauthorized personnel from opening the flight case. When the user closes the flight case lid, the user verifies their fingerprint again through the fingerprint recognition and control system 3. If the fingerprint recognition is successful, the fingerprint recognition and control system 3 sends a locking command to the drive device 5. Upon receiving the command, the drive device 5 drives the locking mechanism 6 to lock the first lock body 1 and the second lock body 2, completing the locking operation of the flight case.
[0017] This application achieves automated control of locks by combining fingerprint recognition and control system with drive device. Users do not need to carry traditional keys; they can complete the opening and locking operations of the lock simply by fingerprint recognition, which improves the security and ease of use of flight cases. It can be widely used in the field of air transport, and is especially suitable for flight cases carrying valuables, precision instruments or important documents. It can effectively improve the security and intelligence level of flight cases and has broad market application prospects.
[0018] As an example, such as Figure 2 and Figure 3 As shown, the fingerprint recognition and control system 3 of this application includes a fingerprint recognition module 31 and a control board 32. The fingerprint recognition module 31 and the driving device 5 are electrically connected to the control board 32. The fingerprint recognition module 31 is used to collect user fingerprint information. It adopts a high-precision optical or capacitive fingerprint sensor, which can quickly identify and collect user fingerprint information and transmit it to the control board 32. The control board 32 adopts a built-in microprocessor and storage chip, which can store multiple sets of fingerprint information and support users to perform fingerprint enrollment, deletion and other operations, flexibly managing fingerprint information. During the unlocking process, the control board 32 processes and analyzes the collected fingerprint information, compares it with the pre-stored authorized fingerprint information, determines whether it is an authorized fingerprint, and controls the action of the driving device 5 according to the determination result, thereby improving the security and convenience of use.
[0019] In addition, the control board 32 of this application also integrates remote control function, allowing users to remotely manage the lock through mobile devices such as mobile APP, such as checking the lock status and receiving abnormal alarms, to achieve comprehensive security monitoring.
[0020] As an example, such as Figures 1 to 3As shown, the fingerprint recognition and control system 3 of this application also includes a status indication module 33, specifically configured as an LED indicator. The status indication module 33 is electrically connected to the control board 32 and can provide feedback to the user on the working status of the lock through light indications, such as green when unlocking, blue when locking, and red when fingerprint recognition is incorrect. Simultaneously, the control board 32 also integrates a low battery reminder function. When the battery power is insufficient, it will remind the user to charge the lock through the flashing yellow light effect of the status indication module 33, ensuring the normal use of the smart lock. Furthermore, in other embodiments, the status indication module 33 can also use sound or other methods to provide prompts.
[0021] As an example, such as Figure 2 and Figure 3 As shown, the locking mechanism 6 of this application includes a locking pin 61 and a latch 62. The locking pin 61 is disposed on the first lock body 1, and the latch 62 is a latch structure with a U-shaped opening, disposed on the second lock body 2. The driving device 5 adopts a forward and reverse drive motor, and the latch 62 is connected to the output shaft of the forward and reverse drive motor. The forward and reverse drive motor can precisely control the movement direction and force of the latch 62, ensuring reliable locking and unlocking of the lock. The driving device 5 drives the U-shaped opening of the latch 62 to latch onto the locking pin 61, thereby locking and fixing the first lock body 1 and the second lock body 2; or the driving device 5 drives the U-shaped opening of the latch 62 to disengage from the locking pin 61, thereby unlocking and separating the first lock body 1 and the second lock body 2; thus controlling the opening and closing of the flight case.
[0022] The above description is merely a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.
Claims
1. A smart fingerprint lock for an airline case, characterized in that, The system includes a first lock body (1), a second lock body (2), a fingerprint recognition and control system (3), a power supply (4), a drive device (5), and a locking mechanism (6). The first lock body (1) and the second lock body (2) are separately disposed at the junction of the case body and the case lid. The locking mechanism (6) is connected between the first lock body (1) and the second lock body (2) and is used to lock and fix the first lock body (1) and the second lock body (2). The fingerprint recognition and control system (3), the power supply (4), and the drive device (5) are respectively disposed on the second lock body (2). (4) Used to power the fingerprint recognition and control system (3) and the drive device (5); the fingerprint recognition and control system (3) and the drive device (5) are electrically connected, and the drive device (5) is used to drive the locking mechanism (6) to lock or open; the locking mechanism (6) includes a locking pin (61) and a latch (62), the locking pin (61) is disposed on the first lock body (1), the latch (62) is disposed on the second lock body (2), and the drive device (5) drives the latch (62) to latch onto the locking pin (61) or disengage from the locking pin (61).
2. The smart fingerprint lock for flight cases according to claim 1, characterized in that, The fingerprint recognition and control system (3) includes a fingerprint recognition module (31) and a control board (32), wherein the fingerprint recognition module (31) and the driving device (5) are electrically connected to the control board (32).
3. The smart-fingerprint lock for the aviation case according to claim 2, wherein, The fingerprint recognition and control system (3) further includes a status prompt module (33), which is electrically connected to the control board (32).
4. The smart-fingerprint lock for the aviation case according to claim 1, wherein, The drive device (5) adopts a forward and reverse drive motor.
5. The intelligent fingerprint lock for flight cases according to claim 1, characterized in that, The power supply (4) is equipped with a charging interface (41).