Steel wire rope padlock

By incorporating a rope detection component and main control circuit into the padlock, the locking status of the wire rope can be monitored in real time, solving the problem that existing padlocks cannot monitor the hook status and enabling real-time monitoring of the hook and detection of abnormal pull-out.

CN223838842UActive Publication Date: 2026-01-27ZHUHAI UNITECH POWER TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423320017.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-27
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing padlocks cannot monitor the locking and unlocking status of the hook in real time, nor can they monitor abnormal removal of the hook.

Method used

A wire rope padlock was designed. By setting up a lock rope detection component, including a first detection element and a first sensing element, and combining the position information of the lock cylinder, the locking status of the wire rope is monitored in real time, and the monitoring signal is sent to the monitoring equipment through the main control circuit.

Benefits of technology

It enables real-time monitoring of the unlocking, locking, and abnormal removal of the wire rope lock, thereby improving the safety and reliability of the lock.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a steel wire rope padlock, and belongs to the technical field of locks. The steel wire rope padlock comprises a lock body provided with a lock hole. The first end of the steel wire lock rope is fixedly mounted on the lock body, and the second end of the steel wire lock rope is suitable for being inserted into the lock hole; the lock cylinder is rotationally mounted on the lock body, and the lock cylinder is provided with an unlocking position and a locking position; a rope locking detection assembly; and a master control circuit. Wherein the lock rope detection assembly comprises a first detection piece and a first induction piece, the first detection piece is installed on the lock body, and the first induction piece is arranged at the second end of the steel wire lock rope; the first detection piece is matched with the first induction piece and is combined with the unlocking position of the lock cylinder to generate an unlocking signal, a locking signal and an abnormal signal; the master control circuit is used for obtaining the unlocking signal, the locking signal and the abnormal signal and sending the unlocking signal, the locking signal and the abnormal signal to the monitoring device. According to the steel wire rope padlock, the locking state of the steel wire lock rope can be monitored, and abnormal pulling-out of the steel wire lock rope can be monitored.
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Description

Technical Field

[0001] This application relates to the field of lock technology, specifically to a wire rope padlock. Background Technology

[0002] Most padlocks currently available are mechanical or electronic locks. They work by rotating the lock cylinder relative to the lock body, which in turn drives the bolt, connected to the lock cylinder, to unlock or lock the hook, allowing the hook to be pulled out or engaged with the lock body. However, existing padlocks cannot monitor the unlocking or locking status of the hook in real time, nor can they monitor abnormal hook removal. Utility Model Content

[0003] In view of the above problems, this application provides a wire rope padlock that can monitor the locking status of the wire rope in real time and monitor the abnormal pull-out of the wire rope.

[0004] This application provides a wire rope padlock, comprising:

[0005] The lock body has a keyhole;

[0006] A steel wire lock rope, wherein the first end of the steel wire lock rope is fixedly installed on the lock body, and the second end of the steel wire lock rope is adapted to be inserted into the lock hole;

[0007] A lock cylinder is rotatably mounted on the lock body; the lock cylinder has an unlocked position and a locked position.

[0008] Rope locking detection component; and

[0009] Main control circuit;

[0010] The lock rope detection component includes a first detection element and a first sensing element. The first detection element is installed on the lock body, and the first sensing element is disposed at the second end of the steel wire lock rope. When the lock cylinder is in the unlocked position and the second end of the steel wire lock rope is not inserted into the keyhole, the first detection element cannot detect the first sensing element and generate an unlocking signal. When the lock cylinder is in the locked position and the second end of the steel wire lock rope is inserted into the keyhole, the first detection element can detect the first sensing element and generate a locking signal. When the lock cylinder is in the locked position and the second end of the steel wire lock rope is not inserted into the keyhole, the first detection element cannot detect the first sensing element and generates an abnormal signal.

[0011] The main control circuit is used to acquire the unlock signal, the lock signal, and the abnormal signal, and send the unlock signal, the lock signal, and the abnormal signal to the monitoring equipment.

[0012] In the technical solution of this application embodiment, a lock rope detection component consisting of a first detection element and a first sensing element is set up, and the information on whether the first detection element can detect the first sensing element is combined with the position information of the lock cylinder to monitor the locking state (including unlocking, locking, and abnormal pull-out) of the steel wire lock rope in real time. Specifically, when the lock cylinder rotates to the unlocking position and the first detection element cannot detect the first sensing element, the steel wire lock rope will be in a normal unlocking state, and the first detection element will generate an unlocking signal accordingly; when the lock cylinder rotates to the locking position and the first detection element can detect the first sensing element, the steel wire lock rope will be in a normal locking state, and the first detection element will generate a locking signal accordingly; when the lock cylinder rotates to the locking position but the first detection element cannot detect the first sensing element, the steel wire lock rope will be in an abnormal pull-out state, and the first detection element will generate an abnormal signal accordingly. After the first detection element generates the corresponding detection signal, the main control circuit can send the detection signal to the monitoring equipment for the user to know.

[0013] In some embodiments, the lock cylinder includes a lock cylinder body, a first bolt, a first elastic element, and a drive module; the lock cylinder body is rotatably mounted on the lock body, and the lock cylinder body is provided with a type-C interface, which is used to connect a compatible computer key and can drive the lock cylinder body to rotate relative to the lock body under the action of the computer key, so that the lock cylinder reciprocates between the unlocked position and the locked position;

[0014] The first bolt is movably disposed on the lock cylinder body, and the first bolt has a first locked position and a first unlocked position;

[0015] In the first locked position, the first bolt extends from the lock cylinder body to prevent the lock cylinder body from rotating relative to the lock body; in the first unlocked position, the first bolt retracts from the lock cylinder body to allow the lock cylinder body to rotate relative to the lock body.

[0016] The drive module is disposed in the lock cylinder body and electrically connected to the type-C interface. The drive module can stop or avoid the first bolt to lock the first bolt in the first locking position or unlock it from the first locking position.

[0017] The first elastic element is elastically connected between the lock cylinder body and the first bolt, and is used to drive the first bolt to move from the first unlock position to the first lock position.

[0018] In the above scheme, the rotation of the lock cylinder body relative to the lock body is controlled by moving the first bolt between the first locked position and the first unlocked position. Specifically, when the Type-C interface is connected to the compatible computer key, the computer key authorizes the wire rope padlock, and the drive module avoids the first bolt, allowing the first bolt to retract into the lock cylinder body and move to the first unlocked position. At this time, the lock cylinder body can rotate relative to the lock body. Once the lock cylinder has rotated to the unlocked or locked position, the first bolt will move to the first locked position under the elastic force of the first elastic element. If the connection between the Type-C interface and the computer key is disconnected at this time, ending the authorization of the computer key, the drive module can stop the first bolt, locking the first bolt in the first locked position to prevent the rotation of the lock cylinder body relative to the lock body, thereby fixing the lock cylinder in the unlocked or locked position.

[0019] In some embodiments, the lock body is provided with a first limiting part and a second limiting part;

[0020] In the unlocked position, the first latch moves to the first locked position and engages with the first limiting part; in the locked position, the first latch moves to the first locked position and engages with the second limiting part.

[0021] In the above scheme, when the lock cylinder rotates to the unlocked position, the lock cylinder body is prevented from continuing to rotate relative to the lock body by the engagement of the first bolt with the first limiting part and the stop of the first bolt by the drive module after the computer key authorization ends or the computer key is removed, thus fixing the lock cylinder body in the unlocked position. When the lock cylinder rotates to the locked position, the lock cylinder body is prevented from continuing to rotate relative to the lock body by the engagement of the first bolt with the second limiting part and the stop of the first bolt by the drive module after the computer key authorization ends or the computer key is removed, thus fixing the lock cylinder body in the locked position.

[0022] In some embodiments, the drive module includes a solenoid drive, an iron core, and a second elastic element; the iron core has a first position for blocking the first locking tongue and a second position for avoiding the first locking tongue;

[0023] The solenoid driver is electrically connected to the type-C interface, and the solenoid driver is used to drive the iron core to move from the first position to the second position when the computer key is connected to the type-C interface;

[0024] The second elastic element is elastically connected between the iron core and the solenoid drive. The second elastic element is used to drive the iron core to move from the second position to the first position when the type-C interface is disconnected from the computer key.

[0025] In the above scheme, when the lock cylinder is moving from the unlocked position to the locked position, or from the locked position to the unlocked position, the solenoid drive can move the iron core from the first position to the second position to avoid the first bolt, allowing the first bolt to move to the first unlocked position and ensuring the rotation of the lock cylinder body relative to the lock body. When the lock cylinder rotates to the unlocked or locked position and the authorization of the computer key ends, the second elastic element can drive the iron core from the second position to the first position to stop the first bolt in the first locked position, fixing the lock cylinder body in the unlocked or locked position.

[0026] In some embodiments, the wire rope padlock further includes a second detection element, a second sensing element, and a third sensing element. The second detection element is installed on the lock cylinder body and is communicatively connected to the type-C interface. The second sensing element and the third sensing element are respectively installed on the lock body.

[0027] In the locked position, the second detection element can detect the second sensor; in the unlocked position, the second detection element can detect the third sensor.

[0028] In the above scheme, when the lock cylinder is rotated to the unlocked position, the second detection element can detect the third sensor to obtain the unlocked status information of the wire rope padlock; when the lock cylinder is rotated to the locked position, the second detection element can detect the second sensor to obtain the locked status information of the wire rope padlock. By sensing different sensors, the second detection element obtains the corresponding status information of the wire rope padlock. Simultaneously, through the communication connection between the second detection element and the Type-C interface, the acquired status information can be transmitted to the computer key via the Type-C interface for recording.

[0029] In some embodiments, the second end is provided with a locking groove;

[0030] The wire rope padlock also includes an unlocking assembly, which includes a second latch, an unlocking shaft, and a third elastic element. The unlocking shaft is installed on the lock cylinder body, and the second latch is installed on the unlocking shaft. The second latch has a third position and a fourth position.

[0031] In the locked position, the second bolt is located in the third position and partially engaged in the locking groove to lock the second end to the lock body; in the unlocked position, the second bolt is located in the fourth position and disengaged from the locking groove to release the locking of the second end.

[0032] The third elastic element is elastically connected between the unlocking shaft and the lock body, and the third elastic element is used to move the second bolt from the fourth position to the third position.

[0033] In the above scheme, a locking groove is provided at the second end, and the second bolt can engage with the locking groove when the lock cylinder is rotated to the locked position to lock the second end of the wire rope, thus locking the second end of the wire rope to the lock body. When the lock cylinder is rotated to the unlocked position, the second bolt moves with the lock cylinder body and disengages from the locking groove, thereby releasing the locking of the second end of the wire rope.

[0034] In some embodiments, the first end is provided with a fixing head, which is fixedly installed on the lock body;

[0035] The second end is provided with a lock head, which is movably connected to the lock body, and the locking groove is provided in the lock head.

[0036] In the above scheme, a lock head and a fixing head are respectively set at both ends of the steel wire lock rope. The fixing head is the fixed end fixed to the lock body, and the lock head is the movable end movably connected to the lock body. At this time, the locking groove is set in the lock head, so that when the lock cylinder is rotated to the unlock position, the lock head can be disengaged from the lock body.

[0037] In some embodiments, a limited rotation structure is provided between the unlocking shaft and the lock body, the limited rotation structure being used to limit the rotation angle of the unlocking shaft relative to the lock body.

[0038] In the above solution, a rotation limiting structure is set between the unlocking shaft and the lock body to limit the rotation angle of the unlocking shaft and the lock cylinder body relative to the lock body.

[0039] In some embodiments, the lock rope detection assembly further includes a fourth elastic element and a top pin, the top pin being movably connected to the lock hole, the fourth elastic element being elastically connected between the top pin and the lock body, and the top pin having a fifth position and a sixth position;

[0040] In the locked position, the top pin moves to the fifth position under the action of the second end and compresses the fourth elastic member, and the first detection member can detect the first sensing member;

[0041] In the unlocked position, the third elastic element can drive the top pin to move from the fifth position to the sixth position, and the first detection element cannot detect the first sensing element.

[0042] In the above scheme, the lock rope detection assembly consists of a first detection element, a first sensing element, a fourth elastic element, and a top pin. In the locked position, the top pin can abut against the lock head. At this time, under the abutment of the lock head, the top pin will move to the fifth position and compress the fourth elastic element, causing the first sensing element to approach the first detection element, and the first detection element can detect the first sensing element. In the unlocked position, the top pin can disengage from the lock body under the action of the fourth elastic element. At the same time, under the action of the fourth elastic element, the top pin moves from the fifth position to the sixth position, causing the first sensing element to move away from the first detection element, and the first detection element cannot detect the first sensing element. Through the sensing of the first sensing element by the first detection element, the corresponding locking state of the wire rope is obtained.

[0043] In some embodiments, the main control circuit includes a circuit board and a wireless communication module. The first detection element and the wireless communication module are electrically connected to the circuit board, and the wireless communication module is used to send the unlocking signal, the locking signal and the abnormal signal to the monitoring device.

[0044] The wire rope padlock also includes a battery module, which is installed in the lock body. The circuit board is electrically connected to the battery module, and the battery module is used to power the circuit board.

[0045] In the above scheme, the wire rope padlock is equipped with a battery module, which can power the circuit board, and then power the first detection element and the wireless communication module, so that the first detection element can perform real-time sensing of the first sensing element.

[0046] The above description is only an overview of the technical solution of this application. In order to better understand the technical means of this application and to implement it in accordance with the contents of the specification, and to make the other objects, features and advantages of this application more obvious and understandable, specific embodiments of this application are given below. Attached Figure Description

[0047] Various other advantages and benefits will become apparent to those skilled in the art upon reading the detailed description of the preferred embodiments below. The accompanying drawings are for illustrative purposes only and are not intended to limit the scope of this application. Furthermore, the same reference numerals denote the same parts throughout the drawings. In the drawings:

[0048] Figure 1 This is a schematic diagram of the structure of a wire rope padlock according to some embodiments of this application;

[0049] Figure 2 This is an exploded schematic diagram of a wire rope padlock according to some embodiments of this application;

[0050] Figure 3This is a schematic diagram of the internal structure of the lock cylinder in the locked position of a wire rope padlock according to some embodiments of this application;

[0051] Figure 4 for Figure 3 An enlarged schematic diagram of the internal structure of the central lock cylinder;

[0052] Figure 5 This is a schematic diagram of the internal structure of a wire rope padlock in the locked position according to some embodiments of this application;

[0053] Figure 6 This is a schematic diagram of the internal structure of a wire rope padlock in the locked position from another angle, according to some embodiments of this application.

[0054] Figure 7 This is a schematic diagram of the internal structure of the wire rope padlock in some embodiments of this application when the lock cylinder is near the unlocking position;

[0055] Figure 8 for Figure 7 An enlarged schematic diagram of the internal structure of the central lock cylinder;

[0056] Figure 9 This is a schematic diagram of the internal structure of a wire rope padlock in the unlocked position according to some embodiments of this application;

[0057] Figure 10 This is a schematic diagram of the internal structure of a wire rope padlock in the unlocked position from another angle, according to some embodiments of this application.

[0058] Figure 11 This is a schematic diagram of the structure of the locking hook of a wire rope padlock according to some embodiments of this application;

[0059] Figure 12 This is a schematic diagram of the structure of the first lock body portion of the lock body of a wire rope padlock according to some embodiments of this application;

[0060] Figure 13 This is a schematic diagram of the unlocking shaft of a wire rope padlock according to some embodiments of this application.

[0061] The reference numerals in the detailed embodiments are as follows:

[0062] 1. Lock body; 11. First limiting part; 12. Second limiting part; 13. Rotation hole; 14. Second mounting part; 15. Rotation limiting groove; 16. Outer shell; 17. First lock body part; 18. Second lock body part; 19. Bottom cover; 191. Ring groove; 110. Sealing element;

[0063] 2. Lock cylinder; 21. Lock cylinder body; 211. Limiting hole; 212. Assembly hole; 2121. First hole section; 2122. Second hole section; 22. First bolt; 221. First bolt section; 222. Second bolt section; 23. First elastic element; 24. Drive module; 241. Solenoid drive element; 242. Iron core; 243. Second elastic element; 25. Rotating shaft;

[0064] 3. Second inspection item;

[0065] 4. Second sensing element;

[0066] 5. Third sensing element;

[0067] 6. Locking hook; 61. Locking groove; 62. Steel wire lock rope; 63. Lock head; 64. Fixing head; 641. Waterproof sealing ring groove; 65. Sealing ring;

[0068] 7. Unlocking component; 71. Second locking tongue; 72. Unlocking shaft; 721. First mounting part; 722. First transmission part; 723. Second transmission part; 724. Restricting protrusion; 73. Third elastic element;

[0069] 8. Rope locking detection assembly; 81. First detection component; 82. First sensing component; 83. Fourth elastic component; 84. Top pin; 841. Anti-detachment groove; 85. Battery module;

[0070] 9. Anti-detachment components;

[0071] 10. Main control circuit; 101. Bracket. Detailed Implementation

[0072] The embodiments of the technical solution of this application will now be described in detail with reference to the accompanying drawings. These embodiments are only used to more clearly illustrate the technical solution of this application and are therefore merely examples, and should not be used to limit the scope of protection of this application.

[0073] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains; the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the application; the terms “comprising” and “having”, and any variations thereof, in the specification, claims, and foregoing description of the drawings are intended to cover non-exclusive inclusion.

[0074] In the description of the embodiments of this application, technical terms such as "first" and "second" are used only to distinguish different objects and should not be construed as indicating or implying relative importance or implicitly specifying the number, specific order, or primary and secondary relationship of the indicated technical features. In the description of the embodiments of this application, "multiple" means two or more, unless otherwise explicitly defined.

[0075] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0076] According to some embodiments of this application, refer to Figures 1-13 This application provides a wire rope padlock, including a lock body 1 and a lock cylinder 2. The lock body 1 is provided with a lock hole, and the lock cylinder 2 is rotatably installed on the lock body 1, and the lock cylinder 2 has an unlocked position and a locked position.

[0077] Furthermore, the wire rope padlock also includes a hook 6, which includes a wire rope 62. The first end of the wire rope 62 is fixedly installed on the lock body 1, and the second end of the wire rope 62 is movably connected to the lock body 1.

[0078] In addition, the wire rope padlock also includes a main control circuit 10 and a lock rope detection component 8. The lock rope detection component 8 includes a first detection element 81 and a first sensing element 82. The first detection element 81 is installed on the lock body 1, and the first sensing element 82 is located at the second end of the wire rope 62.

[0079] When the lock cylinder 2 is in the unlocked position and the second end of the steel wire rope 62 is not inserted into the keyhole, the first detection element 81 cannot detect the first sensing element 82 and generate an unlock signal. When the lock cylinder 2 is in the locked position and the second end of the steel wire rope 62 is inserted into the keyhole, the first detection element 81 can detect the first sensing element 82 and generate a locking signal. When the lock cylinder 2 is in the locked position and the second end of the steel wire rope 62 is not inserted into the keyhole, the first detection element 81 cannot detect the first sensing element 82 and generates an abnormal signal.

[0080] The main control circuit 10 is installed on the lock body 1. The main control circuit 10 is used to acquire unlocking signals, locking signals and abnormal signals, and send the unlocking signals, locking signals and abnormal signals to the monitoring equipment.

[0081] Specifically, the first detection element 81 can be a first Hall sensor, and the first sensing element 82 can be a first magnet.

[0082] The monitoring equipment can be a computer key or other communication devices.

[0083] In the technical solution of this application embodiment, a lock rope detection component 8, consisting of a first detection element 81 and a first sensing element 82, is set up. The information on whether the first detection element 81 can detect the first sensing element 82 is combined with the position information of the lock cylinder 2 to monitor the locking state of the steel wire lock rope 62 (whether the second end is inserted into the keyhole) in real time. Specifically, when the lock cylinder 2 is rotated to the unlock position and the first detection element 81 cannot detect the first sensing element 82, the steel wire lock rope 62 will be in a normal unlocked state, and the first detection element 81 will generate an unlock signal accordingly. When the lock cylinder 2 is rotated to the locked position and the first detection element 81 can detect the first sensing element 82, the steel wire lock rope 62 will be in a normal locked state, and the first detection element 81 will generate a locked signal accordingly. When the lock cylinder 2 is rotated to the locked position but the first detection element 81 cannot detect the first sensing element 82, the steel wire lock rope 62 will be in an abnormal pull-out state, and the first detection element 81 will generate an abnormal signal accordingly. By setting up a wireless communication module, the detection information of the rope locking component 8 is sent to the monitoring equipment so that the user can be aware of it.

[0084] According to some embodiments of this application, refer to Figures 1-13 The lock cylinder 2 includes a lock cylinder body 21, a first bolt 22, a first elastic element 23, and a drive module 24. The lock cylinder body 21 is rotatably mounted on the lock body 1. The lock cylinder body 21 is provided with a Type-C interface exposed on the lock body 1. The Type-C interface is used to connect a compatible computer key and can drive the lock cylinder body 21 to rotate relative to the lock body 1 under the action of the computer key, so that the lock cylinder 2 reciprocates between the unlocked position and the locked position.

[0085] The first bolt 22 is movably mounted on the lock cylinder body 21, and the first bolt 22 has a first locked position (see reference). Figure 3 and Figure 4 The positions of the first locking tongue 22 and the first unlocking position (see reference) are shown. Figure 7 and Figure 8 (The position of the first locking tongue 22 is shown).

[0086] Reference Figure 3 and Figure 4 In the locked or unlocked position, the first bolt 22 extends from the lock cylinder body 21 to move to the first locked position, preventing the lock cylinder body 21 from rotating relative to the lock body 1. (See reference...) Figure 7 and Figure 8 When the lock cylinder 2 moves between the unlocked position and the locked position, the first bolt 22 retracts into the lock cylinder body 21 to move to the first unlocked position, allowing the lock cylinder body 21 to rotate relative to the lock body 1.

[0087] The drive module 24 is disposed within the lock cylinder body 21 and electrically connected to the Type-C interface. The drive module 24 can stop or avoid the first bolt 22 to lock the first bolt 22 in a first locked position or unlock it from the first locked position. Specifically, the drive module 24 can avoid the first bolt 22 when a computer key is connected to the Type-C interface, allowing the first bolt 22 to retract into the lock cylinder body and move to the first locked position. The drive module 24 can also stop the first bolt 22 when the connection between the Type-C interface and the computer key is disconnected, locking the first bolt 22 in the first locked position.

[0088] The first elastic element 23 is elastically connected between the lock cylinder body 21 and the first bolt 22, and is used to drive the first bolt 22 to move from the first unlock position to the first locked position.

[0089] In the above scheme, the rotation of the lock cylinder body 21 and the lock cylinder 2 relative to the lock body 1 is controlled by moving the first bolt 22 between the first locked position and the first unlocked position. Specifically, when the Type-C interface is connected to the compatible computer key, the computer key authorizes the wire rope padlock, and the drive module 24 avoids the first bolt 22, allowing the first bolt 22 to retract the lock cylinder body 21 to move to the first unlocked position. At this time, the lock cylinder body 21 can rotate relative to the lock body 1. When the lock cylinder 2 rotates to the unlocked or locked position, the first bolt 22 will move to the first locked position under the elastic force of the first elastic element 23. If the connection between the Type-C interface and the computer key is disconnected at this time, ending the authorization of the computer key, the drive module 24 can stop the first bolt 22, locking the first bolt 22 in the first locked position to prevent the lock cylinder 2 from rotating relative to the lock body 1, thereby fixing the lock cylinder 2 in the unlocked or locked position.

[0090] According to some embodiments of this application, refer to Figure 3 , Figure 4 , Figure 7 and Figure 8 The lock body 1 is provided with a first limiting part 11 and a second limiting part 12.

[0091] In the unlocked position, the first latch 22 moves to the first locked position and engages with the first limiting part 11. In the locked position, the first latch 22 moves to the first locked position and engages with the second limiting part 12.

[0092] In the above scheme, when the lock cylinder 2 rotates to the unlocked position, the lock cylinder body 21 is prevented from continuing to rotate relative to the lock body 1 by the engagement of the first latch 22 with the first limiting part 11 and the stop of the first latch 22 by the drive module 24 after the computer key authorization ends or the computer key is removed, thereby fixing the lock cylinder 2 in the unlocked position. When the lock cylinder 2 rotates to the locked position, the lock cylinder body 21 is prevented from continuing to rotate relative to the lock body 1 by the engagement of the first latch 22 with the second limiting part 12 and the stop of the first latch 22 by the drive module 24 after the computer key authorization ends or the computer key is removed, thereby fixing the lock cylinder body 21 in the locked position.

[0093] According to some embodiments of this application, refer to Figure 3 , Figure 4 , Figure 7 and Figure 8 The first limiting part 11 and the second limiting part 12 may each be provided with a limiting groove. When the lock cylinder 2 is rotated to the unlocked position, the first bolt 22 engages with the limiting groove of the first limiting part 11. When the lock cylinder 2 is rotated to the locked position, the first bolt 22 engages with the limiting groove of the second limiting part 12.

[0094] According to some embodiments of this application, refer to Figure 3 , Figure 4 , Figure 7 and Figure 8 The lock body 1 is also provided with a rotating hole 13. The lock cylinder body 21 is rotatably installed in the rotating hole 13.

[0095] The first limiting part 11 and the second limiting part 12 are provided on the wall of the rotating hole 13.

[0096] The lock cylinder body 21 is provided with a limiting hole 211 and an assembly hole 212. The limiting hole 211 is connected to the rotating hole 13 through the assembly hole 212. The first lock tongue 22 is slidably connected to the assembly hole 212 in a direction intersecting with the axial direction of the lock cylinder body 21. The drive module 24 is installed in the limiting hole 211.

[0097] In the above scheme, by rotatably installing the lock cylinder body 21 into the rotation hole 13 of the lock body 1, and by providing the first limiting part 11 and the second limiting part 12 on the hole wall of the rotation hole 13, the first locking tongue 22 installed on the lock cylinder body 21 can engage with the first limiting part 11 or the second limiting part 12 when the lock cylinder 2 rotates to the unlocked position or the locked position. In addition, by sliding the first locking tongue 22 along the direction intersecting with the axial direction of the lock cylinder body 21 into the mounting hole 212 of the lock cylinder body 21, and by installing the drive module 24 into the limiting hole 211 of the lock cylinder body 21, the installation of the first locking tongue 22 and the drive module 24 on the lock cylinder body 21 is realized.

[0098] According to some embodiments of this application, refer to Figures 3-4The assembly hole 212 includes a first hole segment 2121 and a second hole segment 2122. The second hole segment 2122 connects the first hole segment 2121 and the limiting hole 211. The diameter of the first hole segment 2121 is larger than the diameter of the second hole segment 2122. A first step surface is formed at the position where the first hole segment 2121 and the second hole segment 2122 connect.

[0099] The first locking tongue 22 includes a first locking tongue segment 221 and a second locking tongue segment 222 connected to the first locking tongue segment 221. The cross-sectional area of ​​the first locking tongue segment 221 is larger than the cross-sectional area of ​​the second locking tongue segment 222. A second stepped surface is formed at the position where the first locking tongue segment 221 and the second locking tongue segment 222 are connected.

[0100] The second locking tongue segment 222 passes through the first elastic member 23 and is slidably connected to the second hole segment 2122. The first elastic member 23 is housed in the first hole segment 2121 and is elastically supported between the first step surface and the second step surface.

[0101] In the above scheme, the structure of the mounting hole 212 and the structure of the first locking tongue 22 are refined. The second locking tongue section 222 of the first locking tongue 22 is slidably connected to the second hole section 2122 through the first elastic member 23, and the first elastic member 23 is elastically supported between the first step surface and the second step surface, so as to realize the installation of the first locking tongue 22 and the first elastic member 23 on the lock cylinder body 21.

[0102] According to some embodiments of this application, refer to Figures 3-8 The extending direction of the limiting hole 211 is parallel to the axial direction of the lock cylinder body 21. The extending direction of the assembly hole 212 is perpendicular to the extending direction of the limiting hole 211.

[0103] In the above scheme, since the extension direction of the limiting hole 211 is parallel to the axial direction of the lock cylinder body 21 and the extension direction of the mounting hole 212 is perpendicular to the extension direction of the limiting hole 211, the extension direction of the mounting hole 212 can be made parallel to the radial direction of the lock cylinder body 21. In this way, the direction of the force of the first bolt 22 against the lock body 1 can be parallel to the radial direction of the lock cylinder body 21. At this time, the first bolt 22 can more stably fix the lock cylinder 2 in the unlocked position or the locked position.

[0104] According to some embodiments of this application, refer to Figure 3 , Figure 4 , Figure 7 and Figure 8 The drive module 24 includes a solenoid drive element 241, an iron core 242, and a second elastic element 243. The iron core 242 has a first position that stops the first locking tongue 22 (see reference). Figure 3 and Figure 4 The position of the iron core 242 shown) and the second position to avoid the first locking tongue 22 (refer to the position shown). Figure 7 and Figure 8(The position of the iron core 242 is shown).

[0105] The solenoid drive 241 is electrically connected to the type-C interface. The solenoid drive 241 is used to drive the iron core 242 from the first position to the second position when the computer key is connected to the type-C interface.

[0106] The second elastic element 243 is elastically connected between the iron core 242 and the solenoid drive element 241. The second elastic element 243 is used to drive the iron core 242 from the second position to the first position when the type-C interface is disconnected from the computer key.

[0107] In the above scheme, refer to Figure 7 and Figure 8 When the lock cylinder 2 is moving from the unlocked position to the locked position, or from the locked position to the unlocked position, the solenoid drive 241 can drive the iron core 242 from the first position to the second position to avoid the first bolt 22, allowing the first bolt 22 to move to the first unlocked position and ensuring the rotation of the lock cylinder body 21 relative to the lock body 1. (Refer to...) Figure 3 and Figure 4 When the lock cylinder 2 rotates to the unlocked or locked position and the authorization of the computer key ends, the iron core 242 can be driven to move from the second position to the first position through the second elastic element 243, so as to stop the first bolt 22 in the first locked position and fix the lock cylinder 2 in the unlocked or locked position.

[0108] According to some embodiments of this application, refer to Figures 1-11 The wire rope padlock also includes a second detection element 3, a second sensing element 4, and a third sensing element 5. The second detection element 3 is installed on the lock cylinder 2 and communicates with the type-C interface. The second sensing element 4 and the third sensing element 5 are installed on the lock body 1.

[0109] In the locked position, the second detection element 3 can detect the second sensor 4. In the unlocked position, the second detection element 3 can detect the third sensor 5.

[0110] In the above scheme, when the lock cylinder 2 is rotated to the unlocked position, the second detection element 3 can detect the third sensor 5 to obtain the unlocked status information of the wire rope padlock. When the lock cylinder 2 is rotated to the locked position, the second detection element 3 can detect the second sensor 4 to obtain the locked status information of the wire rope padlock. By sensing different sensors, the second detection element 3 obtains the corresponding status information of the wire rope padlock. Simultaneously, through the communication connection between the second detection element 3 and the Type-C interface, the obtained status information can be transmitted to the computer key via the Type-C interface for recording.

[0111] According to some embodiments of this application, refer to Figures 1-11The second detection component 3 includes a second Hall sensor, which is installed on the lock cylinder body 21.

[0112] The second sensing element 4 includes a second magnet, and the third sensing element 5 includes a third magnet. The second magnet and the third magnet are respectively installed on the lock body 1.

[0113] In the locked position, the second Hall sensor can detect the second magnet. In the unlocked position, the second Hall sensor can detect the third magnet.

[0114] In the above scheme, the second detection element 3 is composed of a second Hall sensor, and each sensing element is set as a magnet, so as to obtain the corresponding status information of the lock cylinder body 21 through the sensing of the second Hall sensor and different magnets.

[0115] According to some embodiments of this application, the lock body 1 may be provided with a first mounting area and a second mounting area, the second sensing element 4 is mounted in the first mounting area, and the third sensing element 5 is mounted in the second mounting area, thereby realizing the installation of each sensing element on the lock body 1. Specifically, each mounting area may be configured as a groove structure or a hole structure.

[0116] According to some embodiments of this application, refer to Figures 1-13 The second end of the steel wire lock rope 62 is provided with a locking groove 61.

[0117] The wire rope padlock also includes an unlocking assembly 7, which includes a second bolt 71, an unlocking shaft 72, and a third elastic element 73. The unlocking shaft 72 is mounted on the lock cylinder body 21, and the second bolt 71 is mounted on the unlocking shaft 72. The second bolt 71 has a third position (see reference). Figure 5 The second locking tongue 71 position is shown) and the fourth position (refer to) Figure 9 (The position of the second locking tongue 71 is shown).

[0118] Reference Figure 5 In the locked position, the second latch 71 is in the third position and partially engaged in the locking groove 61 to lock the second end of the wire rope 62 to the lock body 1. (Refer to...) Figure 9 In the unlocked position, the second locking tongue 71 is in the fourth position and disengages from the locking groove 61, thereby releasing the lock on the second end of the wire rope 62.

[0119] The third elastic element 73 is elastically connected between the unlocking shaft 72 and the lock body 1. The third elastic element 73 is used to move the second bolt 71 from the fourth position to the third position.

[0120] The third elastic element 73 is preferably a torsion spring.

[0121] In the above scheme, a locking groove 61 is provided at the second end of the wire rope 62, and the second bolt 71 can engage with the locking groove 61 when the lock cylinder 2 rotates to the locked position to lock the second end of the wire rope 62 and lock the hook 6 to the lock body 1. When the lock cylinder 2 rotates to the unlocked position, the second bolt 71 moves with the lock cylinder body 21 and disengages from the locking groove 61, thereby releasing the lock on the hook 6. Regarding the third elastic element 73, when the lock cylinder 2 rotates from the locked position to the unlocked position, the second bolt 71 moves from the third position to the fourth position under the drive of the unlocking shaft 72, simultaneously stretching the third elastic element 73. When the lock cylinder 2 rotates from the unlocked position to the locked position, the third elastic element 73 can provide tension to the unlocking shaft 72, causing the unlocking shaft 72 to reset and driving the second bolt 71 to move from the fourth position to the third position.

[0122] According to some embodiments of this application, refer to Figures 1-13 The lock cylinder 2 also includes a rotating shaft 25 connected to the lock cylinder body 21, and an unlocking shaft 72 is installed on the rotating shaft 25.

[0123] By setting a pivot 25 to connect the unlocking shaft 72 and the lock cylinder body 21, the unlocking shaft 72 can rotate with the lock cylinder body 21.

[0124] According to some embodiments of this application, refer to Figure 11 The first end of the steel wire lock rope 62 is provided with a fixing head 64, which is fixedly installed on the lock body 1.

[0125] The second end of the steel wire lock rope 62 is provided with a lock head 63, which is movably connected to the lock body 1, and the locking groove 61 is provided in the lock head 63.

[0126] Reference Figure 5 and Figure 6 In the locked position, the lock head 63 is locked to the lock body 1. (Refer to...) Figure 9 and Figure 10 In the unlocked position, the lock head 63 can disengage from the lock body 1.

[0127] The steel wire rope 62 can deform.

[0128] A waterproof sealing ring groove 641 may be provided on the fixing head 64 for installing an annular sealing ring 65, so that the connection between the fixing head 64 and the lock body 1 can be sealed by the annular sealing ring 65.

[0129] In the above scheme, a lock head 63 and a fixing head 64 are respectively set at both ends of the steel wire lock rope 62. The fixing head 64 is a fixed end fixed to the lock body 1, and the lock head 63 is a movable end movably connected to the lock body 1. At this time, the locking groove 61 is set in the lock head 63, so that when the lock cylinder 2 is rotated to the unlock position, the lock head 63 can be disengaged from the lock body 1.

[0130] According to some embodiments of this application, refer to Figure 5 , Figure 9 and Figure 13 The unlocking shaft 72 includes a first mounting part 721, a first transmission part 722 and a second transmission part 723. The first transmission part 722 is connected between the first mounting part 721 and the second transmission part 723. The second transmission part 723 is mounted on the lock cylinder body 21, and the second lock tongue 71 is mounted on the first transmission part 722.

[0131] The lock body 1 is provided with a second mounting part 14.

[0132] The third elastic element 73 is elastically connected between the first mounting part 721 and the second mounting part 14.

[0133] In the above scheme, the unlocking shaft 72 is composed of a first mounting part 721, a first transmission part 722 and a second transmission part 723. The second transmission part 723 realizes the connection between the unlocking shaft 72 and the lock cylinder body 21, and the second transmission part 723 realizes the connection between the unlocking shaft 72 and the second lock tongue 71. At the same time, the first mounting part 721 cooperates with the second mounting part 14 on the lock body 1 to realize the installation of the third elastic element 73.

[0134] According to some embodiments of this application, refer to Figures 12-13 A limited rotation structure is provided between the unlocking shaft 72 and the lock body 1. The limited rotation structure is used to limit the rotation angle of the unlocking shaft 72 relative to the lock body 1.

[0135] In the above scheme, a rotation limiting structure is set between the unlocking shaft 72 and the lock body 1 to limit the rotation angle of the unlocking shaft 72 and the lock cylinder body 21 relative to the lock body 1.

[0136] According to some embodiments of this application, refer to Figures 12-13 The rotation limiting structure includes a rotation limiting groove 15 disposed on the lock body 1 and a limiting protrusion 724 disposed on the unlocking shaft 72. Specifically, the limiting protrusion 724 may be disposed on the first mounting portion 721.

[0137] The rotation limiting groove 15 slides with the limiting protrusion 724 to limit the rotation angle of the unlocking shaft 72 relative to the lock body 1.

[0138] In the above scheme, by setting a rotation limiting groove 15 on the lock body 1 and a limiting protrusion 724 on the unlocking shaft 72, the rotation angle of the unlocking shaft 72 and the lock cylinder body 21 relative to the lock body 1 is limited by the sliding cooperation between the rotation limiting groove 15 and the limiting protrusion 724.

[0139] According to some embodiments of this application, refer to Figures 1-12The lock body 1 includes a housing 16, a first lock body portion 17, a second lock body portion 18, and a bottom cover 19. The bottom cover 19 is installed on the housing 16 and forms a receiving cavity with the housing 16. The first lock body portion 17 and the second lock body portion 18 are installed in the receiving cavity, and the second lock body portion 18 is located between the first lock body portion 17 and the bottom cover 19 to form the lock body 1.

[0140] The second mounting part 14 and the rotation limiting groove 15 are disposed on the first lock body part 17, the lock cylinder 2 is rotatably connected to the second lock body part 18, the second sensor 4, the third sensor 5 and the lock rope detection assembly 8 are installed on the second lock body part 18, and the unlocking assembly 7 is disposed between the first lock body part 17 and the second lock body part 18, thereby realizing the installation of each structure on the lock body 1.

[0141] Furthermore, the bottom cover 19 is provided with a groove 191 for installing a seal 110. By providing the seal 110, the connection between the bottom cover 19 and the outer casing 16 is sealed, preventing water and dust from entering.

[0142] According to some embodiments of this application, refer to Figures 2-10 The lock rope detection component 8 also includes a fourth elastic element 83 and a top pin 84. The top pin 84 is movably connected to the lock hole of the lock body 1. The first sensing element 82 is installed on the top pin 84. The fourth elastic element 83 is elastically connected between the top pin 84 and the lock body 1. The top pin 84 has a fifth position and a sixth position.

[0143] In the locked position, the top pin 84 moves to the fifth position under the action of the second end of the steel wire lock rope 62 and compresses the fourth elastic element 83, and the first detection element 81 can detect the first sensing element 82.

[0144] In the unlocked position, the third elastic element 73 can drive the top pin 84 to move from the fifth position to the sixth position, and the first detection element 81 cannot detect the first sensing element 82.

[0145] In the above scheme, the locking rope detection component 8 consists of a first detection element 81, a first sensing element 82, a fourth elastic element 83, and a top pin 84. In the locked position, the top pin 84 can abut against the lock head 63. At this time, the top pin 84 will move to the fifth position under the abutment of the lock head 63 and compress the fourth elastic element 83, causing the first sensing element 82 to approach the first detection element 81, and the first detection element 81 can detect the first sensing element 82. In the unlocked position, the top pin 84 can disengage from the lock body 1 under the action of the fourth elastic element 83. At the same time, the top pin 84 moves from the fifth position to the sixth position under the action of the fourth elastic element 83, causing the first sensing element 82 to move away from the first detection element 81, and the first detection element 81 cannot detect the first sensing element 82. The corresponding locking state of the steel wire locking rope 62 is obtained by the sensing of the first sensing element 82 by the first detection element 81.

[0146] According to some embodiments of this application, refer to Figures 1-10 An anti-disengagement structure is provided between the top pin 84 and the lock body 1 to prevent the top pin 84 from disengaging from the lock body 1.

[0147] In the above scheme, by setting an anti-disengagement structure between the top pin 84 and the lock body 1, the top pin 84 is prevented from disengaging from the lock body 1 when it moves from the fifth position to the sixth position under the elastic force of the fourth elastic member 83.

[0148] According to some embodiments of this application, refer to Figures 1-10 The anti-disengagement structure includes an anti-disengagement groove 841 disposed on the top pin 84 and an anti-disengagement component 9 installed on the lock body 1. The anti-disengagement component 9 passes through the lock body 1 and is partially inserted into the anti-disengagement groove 841. When the top pin 84 moves between the fifth position and the sixth position, the anti-disengagement groove 841 will slide against the anti-disengagement component 9 to prevent the top pin 84 from disengaging from the lock body 1.

[0149] According to some embodiments of this application, refer to Figures 2-10 The main control circuit 10 includes a circuit board and a wireless communication module. The first detection element 81 and the wireless communication module are electrically connected to the circuit board. The wireless communication module is used to send unlocking signals, locking signals and abnormal signals to the monitoring equipment.

[0150] The wire rope padlock also includes a battery module 85, which is installed in the lock body 1. The circuit board is electrically connected to the battery module 85, and the battery module 85 is used to power the circuit board.

[0151] The wireless communication module can be a Bluetooth module.

[0152] In the above scheme, the wire rope padlock is equipped with a battery module 85, which can power the circuit board, and then power the first detection element 81 and the wireless communication module, so that the first detection element 81 can perform real-time sensing of the first sensing element 82.

[0153] According to some embodiments of this application, refer to Figures 2-10 The wire rope padlock may also include a bracket 101, which is mounted on the lock body 1 and is used to mount the circuit board.

[0154] The working principle of the wire rope padlock in this embodiment is as follows:

[0155] (1) Unlocking process (lock cylinder 2 rotates from the locked position to the unlocked position).

[0156] When the computer key is plugged into the Type-C interface, it supplies power to the lock cylinder 2 and sends an authorized unlocking command. The solenoid drive 241 inside the lock cylinder body 21 generates a magnetic field, causing the iron core 242 to move from the first position to the second position, while simultaneously compressing the second elastic element 243. At this time, the computer key can be turned clockwise to rotate the lock cylinder body 21. The lock cylinder body 21 drives the rotating shaft 25 to rotate, which in turn drives the unlocking shaft 72 to rotate. The first transmission part 722 of the unlocking shaft 72 drives the second bolt 71 to move, causing the second bolt 71 to disengage from the locking groove 61 of the lock hook 6, thus completing the unlocking process.

[0157] Simultaneously, the second detection element 3 identifies the third sensor 5 located in the unlocked position. The second detection element 3 records and transmits the unlocked status information to the computer key. After authorization, the lock cylinder 2 is de-energized, and the iron core 242 resets under the elastic force of the second elastic element 243 (moving from the second position to the first position). The lock cylinder 2 will remain in the unlocked state.

[0158] After unlocking, the top pin 84 moves from the fifth position to the sixth position under the elastic force of the fourth elastic element 83. At this time, the first sensing element 82 changes position with the top pin 84, and the first detection element 81 cannot detect the first sensing element 82. The detection information is sent to the monitoring device through the wireless communication module.

[0159] (2) Locking process (lock cylinder 2 rotates from the unlocked position to the locked position).

[0160] When the computer key is inserted into the Type-C interface, it begins to supply power to the lock cylinder 2 and sends an authorized locking command. The computer key can then be turned counterclockwise to push the lock head 63 of the lock hook 6 back into the lock body 1. Once the computer key has turned the lock cylinder 2 to the locked position, the lock cylinder body 21 drives the rotating shaft 25 to rotate. The rotating shaft 25 then drives the unlocking shaft 72 to rotate. The first transmission part 722 of the unlocking shaft 72 drives the second latch 71 to move, causing the second latch 71 to slide into the locking groove 61 of the lock hook 6 and engage with it, thus completing the locking process.

[0161] Simultaneously, the second detection element 3 identifies the second sensor 4 located in the locked position. The second detection element 3 records and transmits the locked status information to the computer key. After the computer key is removed, the lock cylinder 2 is de-energized, and the iron core 242 resets under the elastic force of the second elastic element 243 (moving from the second position to the first position), thus completing the locking process.

[0162] After the lock head 63 of the lock hook 6 is pressed into the lock body 1 to lock, the top pin 84 moves from the sixth position to the fifth position under the action of the lock head 63. At this time, the first detection element 81 can detect the first sensing element 82 and send the detection information to the monitoring equipment through the wireless communication module.

[0163] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and not to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features. These modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application, and they should all be covered within the scope of the claims and specification of this application. In particular, as long as there is no structural conflict, the various technical features mentioned in the embodiments can be combined in any way. This application is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

Claims

1. A wire rope padlock, characterized in that, include: The lock body has a keyhole; A steel wire lock rope, wherein the first end of the steel wire lock rope is fixedly installed on the lock body, and the second end of the steel wire lock rope is adapted to be inserted into the lock hole; A lock cylinder is rotatably mounted on the lock body, and the lock cylinder has an unlocked position and a locked position; Rope locking detection component; as well as Main control circuit; The lock rope detection component includes a first detection element and a first sensing element. The first detection element is installed on the lock body, and the first sensing element is disposed at the second end of the steel wire lock rope. When the lock cylinder is in the unlocked position and the second end of the steel wire lock rope is not inserted into the lock hole, the first detection element cannot detect the first sensing element and generate an unlocking signal. When the lock cylinder is in the locked position and the second end of the steel wire lock rope is inserted into the keyhole, the first detection element can detect the first sensing element and generate a locking signal; when the lock cylinder is in the locked position and the second end of the steel wire lock rope is not inserted into the keyhole, the first detection element cannot detect the first sensing element and generates an abnormal signal. The main control circuit is used to acquire the unlock signal, the lock signal, and the abnormal signal, and send the unlock signal, the lock signal, and the abnormal signal to the monitoring equipment.

2. The wire rope padlock according to claim 1, characterized in that, The lock cylinder includes a lock cylinder body, a first bolt, a first elastic element, and a drive module; the lock cylinder body is rotatably mounted on the lock body, and the lock cylinder body is provided with a type-C interface, which is used to connect a compatible computer key and can drive the lock cylinder body to rotate relative to the lock body under the action of the computer key, so that the lock cylinder reciprocates between the unlocked position and the locked position; The first bolt is movably disposed on the lock cylinder body, and the first bolt has a first locked position and a first unlocked position; In the first locked position, the first bolt extends from the lock cylinder body to prevent the lock cylinder body from rotating relative to the lock body; In the first unlocked position, the first bolt retracts the lock cylinder body to allow the lock cylinder body to rotate relative to the lock body; The drive module is disposed in the lock cylinder body and electrically connected to the type-C interface. The drive module can stop or avoid the first bolt to lock the first bolt in the first locking position or unlock it from the first locking position. The first elastic element is elastically connected between the lock cylinder body and the first bolt, and is used to drive the first bolt to move from the first unlock position to the first lock position.

3. The wire rope padlock according to claim 2, characterized in that, The lock body is provided with a first limiting part and a second limiting part; In the unlocked position, the first latch moves to the first locked position and engages with the first limiting part; in the locked position, the first latch moves to the first locked position and engages with the second limiting part.

4. The wire rope padlock according to claim 2, characterized in that, The drive module includes a solenoid drive component, an iron core, and a second elastic component; the iron core has a first position for blocking the first locking tongue and a second position for avoiding the first locking tongue. The solenoid driver is electrically connected to the type-C interface, and the solenoid driver is used to drive the iron core to move from the first position to the second position when the computer key is connected to the type-C interface; The second elastic element is elastically connected between the iron core and the solenoid drive. The second elastic element is used to drive the iron core to move from the second position to the first position when the type-C interface is disconnected from the computer key.

5. The wire rope padlock according to claim 2, characterized in that, The wire rope padlock also includes a second detection element, a second sensing element, and a third sensing element. The second detection element is installed on the lock cylinder body and is connected to the type-C interface for communication. The second sensing element and the third sensing element are respectively installed on the lock body. In the locked position, the second detection element can detect the second sensing element; In the unlocked position, the second detector can detect the third sensor.

6. The wire rope padlock according to claim 1, characterized in that, The second end is provided with a locking groove; The wire rope padlock also includes an unlocking assembly, which includes a second latch, an unlocking shaft, and a third elastic element. The unlocking shaft is installed on the lock cylinder, and the second latch is installed on the unlocking shaft. The second latch has a third position and a fourth position. In the locked position, the second bolt is located in the third position and partially engaged in the locking groove to lock the second end to the lock body; in the unlocked position, the second bolt is located in the fourth position and disengaged from the locking groove to release the locking of the second end. The third elastic element is elastically connected between the unlocking shaft and the lock body, and the third elastic element is used to move the second bolt from the fourth position to the third position.

7. The wire rope padlock according to claim 6, characterized in that, The first end is provided with a fixing head, which is fixedly installed on the lock body; The second end is provided with a lock head, which is movably connected to the lock body, and the locking groove is provided in the lock head.

8. The wire rope padlock according to claim 6, characterized in that, A limited rotation structure is provided between the unlocking shaft and the lock body, the limited rotation structure being used to limit the rotation angle of the unlocking shaft relative to the lock body.

9. The wire rope padlock according to claim 6, characterized in that, The locking rope detection assembly further includes a fourth elastic element and a top pin. The top pin is movably connected to the lock hole, and the fourth elastic element is elastically connected between the top pin and the lock body. The top pin has a fifth position and a sixth position. In the locked position, the top pin moves to the fifth position under the action of the second end and compresses the fourth elastic member, and the first detection member can detect the first sensing member; In the unlocked position, the third elastic element can drive the top pin to move from the fifth position to the sixth position, and the first detection element cannot detect the first sensing element.

10. The wire rope padlock according to claim 1, characterized in that, The main control circuit includes a circuit board and a wireless communication module. The first detection element and the wireless communication module are electrically connected to the circuit board. The wireless communication module is used to send the unlock signal, the lock signal and the abnormal signal to the monitoring device. The wire rope padlock also includes a battery module, which is installed in the lock body. The circuit board is electrically connected to the battery module, and the battery module is used to power the circuit board.