T-shaped wire clamp convenient for cable locking

By introducing longitudinal and transverse cable sleeves equipped with sensors and observation windows into the T-type cable clamp, and utilizing a micro DC motor drive structure, the problems of inconvenient installation and unstable locking of traditional T-type cable clamps are solved, realizing intelligent monitoring of cable status and stable installation.

CN224006151UActive Publication Date: 2026-03-17ZHONGWANG ELECTRIC POWER TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

Traditional T-type cable clamps are inconvenient to install, not secure enough, and cannot monitor cable status in a timely manner, making them prone to loosening when pulled or vibrated by external forces.

Method used

A T-shaped cable clamp for easy cable locking was designed, which uses longitudinal and transverse cable sleeves equipped with sensors and observation windows, combined with a micro DC motor drive structure, to achieve intelligent monitoring and convenient installation of the cable.

Benefits of technology

It enables intelligent monitoring and stable installation of cable status, and can monitor cable temperature and current in real time, improving the reliability and convenience of cable connection.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224006151U_ABST
    Figure CN224006151U_ABST
Patent Text Reader

Abstract

The utility model discloses a T-shaped wire clamp convenient for cable locking, which comprises a longitudinal cable sleeve, a transverse cable sleeve, an inner frame plate and a T-shaped wire clamp body, the longitudinal cable sleeve is arranged in a longitudinal channel of the T-shaped wire clamp body, the transverse cable sleeve is arranged in a transverse channel of the T-shaped wire clamp body, and the inner frame plate is arranged in the longitudinal channel of the T-shaped wire clamp body. The T-shaped cable clamp comprises a T-shaped cable clamp body, a transverse cable sleeve, a longitudinal cable sleeve and an inner frame plate, the transverse cable sleeve and the longitudinal cable sleeve are arranged in the T-shaped cable clamp body, the inner frame plate is installed on the right side in a longitudinal channel of the T-shaped cable clamp body, and cable bodies are arranged in the transverse cable sleeve and the longitudinal cable sleeve. The second integrated sensor timely and intelligently monitors the temperature of the transverse cable in real time and intelligently monitors the current running state, a transparent transverse observation window and a transparent longitudinal observation window can conveniently and rapidly visualize some abrasion or installation conditions of the cable, and intelligent monitoring of the running state of the cable is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of power transmission line technology, specifically a T-type cable clamp that facilitates cable locking. Background Technology

[0002] In the fields of power transmission and electrical equipment connection, cable connection and fixation are crucial. Traditional T-clamps have several shortcomings in cable locking: they cannot promptly monitor cable installation status and wear, installation is inconvenient, and some clamps do not lock the cable securely enough, allowing the cable to loosen under external pulling or vibration. Their usability is also limited. Therefore, developing a T-clamp that facilitates cable locking is of significant practical importance, meeting the requirements of the power industry and other sectors for reliable and convenient cable connections. Utility Model Content

[0003] The purpose of this utility model is to provide a T-type cable clamp that facilitates cable locking, in order to solve the shortcomings of the traditional T-type cable clamp mentioned in the background art in terms of cable locking, such as the inability to timely check the installation status and wear of the cable, inconvenient installation, and the fact that some clamps do not lock the cable securely enough, making the cable easy to loosen when subjected to external force or vibration.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a T-shaped cable clamp for easy cable locking, comprising a longitudinal cable sleeve, a transverse cable sleeve, an inner frame plate, and a T-shaped cable clamp body. The longitudinal cable sleeve is disposed within the longitudinal channel of the T-shaped cable clamp body, and the transverse cable sleeve is disposed within the transverse channel of the T-shaped cable clamp body. The longitudinal cable sleeve has a first through groove evenly distributed on it, and the transverse cable sleeve has a second through groove evenly distributed on it. The inner frame plate is installed on the right side of the longitudinal channel of the T-shaped cable clamp body. Cable bodies are disposed within both the transverse and longitudinal cable sleeves. A longitudinal clamping block is installed on the right side of the longitudinal cable sleeve, and the longitudinal clamping block is slidably connected to the left side of the inner frame plate. A transverse clamping block is installed on the rear side of the transverse cable sleeve. The clamping block has an integrated sensor 2 mounted on its top, with multiple multi-head sensors 2 connected to the integrated sensor 2. A transparent horizontal observation window is mounted on the top of the horizontal channel position on the T-shaped clamp body, and a sensor display 2 is mounted on the left side of the transparent horizontal observation window. The integrated sensor 2 is connected to the sensor display 2. An integrated sensor 1 is mounted on the top of the inner frame plate, with multiple multi-head sensors 1 connected to the integrated sensor 1. A transparent vertical observation window is mounted on the top of the vertical channel position on the T-shaped clamp body, and a sensor display 1 is mounted on the rear side of the transparent vertical observation window. The integrated sensor 1 is connected to the sensor display 1. Both the vertical cable sleeve and the horizontal cable sleeve have clamping pads inside.

[0005] As a preferred embodiment of this utility model, a groove is provided in the middle of the left side of the inner frame plate. The groove is slidably connected to the longitudinal clamping block. Movable blocks are installed on the upper and lower parts of the longitudinal clamping block. The two movable blocks are slidably connected to the corresponding movable slots. The two movable slots are respectively located at the upper and lower ends of the groove on the inner frame plate. A conveyor belt is provided inside the groove. The conveyor belt is connected to the right side of the longitudinal clamping block. A front rotating wheel and a rear rotating wheel are respectively connected to the front and rear sides of the conveyor belt. A front fixed rod and a rear fixed rod are respectively installed in the middle of the front and rear rotating wheels. The front fixed rod and the rear fixed rod pass through the front and rear sides of the inner frame plate. The top of the rear fixed rod is fixedly connected to the output end of the micro DC motor.

[0006] As a preferred embodiment of this utility model, a longitudinal front plate is installed at the front end of the longitudinal channel of the T-shaped wire clamp body, and transverse side plates are installed at both ends of the transverse channel of the T-shaped wire clamp body. A transverse wire-passing port is provided in the middle of the two transverse side plates, and a longitudinal wire-passing port is provided in the middle of one of the longitudinal front plates. Two through holes are provided on each of the two transverse side plates and one longitudinal front plate. Multiple through holes pass through the front and rear ends of the transverse channel and the two sides of the longitudinal channel on the T-shaped wire clamp body, respectively. An internally threaded fixing sleeve is installed in each of the multiple through holes. An externally threaded insert is threaded inside each of the multiple internally threaded fixing sleeves. A wire clamping frame is installed on the side of two externally threaded inserts that are close to each other. A fastening cap is installed on each of the multiple externally threaded inserts.

[0007] As a preferred embodiment of this utility model, the transparent longitudinal observation window corresponds to the top of the longitudinal channel of the T-shaped clamp body, and the transparent transverse observation window corresponds to the top of the transverse channel of the T-shaped clamp body.

[0008] As a preferred technical solution of this utility model, the middle crack of the plurality of clamping pads engages with the cable body, and the two clamping frames in a group engage with one cable body.

[0009] As a preferred embodiment of this utility model, the longitudinal cable sleeve is located near or away from the longitudinal cable insertion port.

[0010] As a preferred embodiment of this utility model, the transverse channel and the longitudinal channel of the T-shaped clamp body are connected.

[0011] Compared with the prior art, the beneficial effects of this utility model are:

[0012] 1. The longitudinal cable sleeve has evenly distributed through grooves, which facilitate the integration of sensors to monitor the temperature and current of the longitudinal cable in real time. The wireless communication technology of the integrated sensors transmits the data to the monitoring center's sensor display, enabling intelligent monitoring of the cable's operating status within the longitudinal channel of the T-clamp body. The transparent longitudinal observation window at the top of the longitudinal channel of the T-clamp body allows for easy visualization of cable wear or installation conditions. Similarly, the transverse cable sleeve has evenly distributed through grooves, which facilitate the integration of sensors to monitor the temperature and current of the transverse cable in real time. The wireless communication technology of the integrated sensors transmits the data to the monitoring center's sensor display, enabling intelligent monitoring of the cable's operating status within the transverse channel of the T-clamp body. The transparent transverse observation window at the top of the transverse channel of the T-clamp body allows for easy visualization of cable wear or installation conditions, thus achieving intelligent monitoring of the cable's operating status.

[0013] 2. The longitudinal cable sleeve installed by the T-type clamp body can move to a different position, facilitating cable installation. The structure within the longitudinal channel of the T-type clamp body that moves the cable, including a miniature DC motor, conveyor belt, front wheel, and rear wheel, can also be located within the transverse channel of the T-type clamp body. Both the transverse and longitudinal channels of the T-type clamp body are functional. The longitudinal channel of the T-type clamp body primarily fixes branch lines, which are numerous. To facilitate installation, the longitudinal cable sleeve is equipped with a movable function, allowing it to move to the longitudinal cable entry point. This is mainly driven by a miniature DC motor. Under the drive of the miniature DC motor, the rear wheel rotates, and the rear wheel connects to the front wheel via the conveyor belt. The rotation of the conveyor belt moves the longitudinal clamp block, and the longitudinal cable sleeve installed on the longitudinal clamp block also moves accordingly, facilitating the distribution and installation of branch lines.

[0014] 3. Cable installation in both the longitudinal and transverse channels of the T-type clamp body is secured by a pair of clamping frames, increasing installation stability. The clamping frames are rotated and moved by their respective external threaded rods, bringing the two clamping frames closer or further apart to accommodate the cable diameter. Then, the two clamping frames are brought closer together to clamp and secure the cable. Attached Figure Description

[0015] Figure 1 This is a front perspective view of the present invention;

[0016] Figure 2 This is a side perspective view of the present invention;

[0017] Figure 3This is a side view of the internal structure of this utility model;

[0018] Figure 4 This is a schematic diagram of the structure of the inner frame plate, groove, movable groove, rear fixed rod, front fixed rod, integrated sensor 1, multi-head sensor 1, longitudinal cable sleeve, through groove 1, clamping pad, internal threaded fixed sleeve rod, external threaded insert rod and wire clamping frame of this utility model.

[0019] Figure 5 This is a schematic diagram showing the structural breakdown of this utility model;

[0020] Figure 6 This is a top view of the internal structure of this utility model.

[0021] In the diagram: 1. T-shaped wire clamp body; 2. Horizontal wire threading port; 3. Vertical wire threading port; 4. Inner frame plate; 5. Groove; 6. Movable groove; 7. Movable block; 8. Vertical clamping block; 9. Conveyor belt; 10. Front roller; 11. Rear roller; 12. Miniature DC motor; 13. Rear fixing rod; 14. Front fixing rod; 15. Transparent vertical observation window; 16. Sensor display one; 17. Integrated sensor one; 18. Multi-head sensor one; 19. Vertical... 20. Cable sleeve; 21. Through slot one; 22. Clamping pad; 23. Transparent transverse observation window; 24. Sensor two; 25. Integrated sensor two; 26. Multi-head sensor two; 27. Transverse clamping block; 28. Transverse cable sleeve; 29. ​​Through slot two; 30. Longitudinal front plate; 31. Transverse side plate; 32. Through hole; 33. Internal threaded fixing sleeve rod; 34. External threaded insertion rod; 35. Cable clamping frame; 36. Fastening cap; 37. Cable body. Detailed Implementation

[0022] The technical solutions of this utility model will be clearly and completely described below with reference to the embodiments of this utility model. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of this utility model.

[0023] Please see Figure 1-6This utility model provides a T-type cable clamp for easy cable locking, including a longitudinal cable sleeve 19, a transverse cable sleeve 27, an inner frame plate 4, and a T-type cable clamp body 1. The longitudinal cable sleeve 19 is disposed in the longitudinal channel of the T-type cable clamp body 1, and the transverse cable sleeve 27 is disposed in the transverse channel of the T-type cable clamp body 1. The longitudinal cable sleeve 19 has through slots 20 evenly distributed, and the transverse cable sleeve 27 has through slots 28 evenly distributed. The inner frame plate 4 is installed on the right side of the longitudinal channel of the T-type cable clamp body 1. Cable bodies 36 are disposed in both the transverse cable sleeve 27 and the longitudinal cable sleeve 19. A longitudinal clamping block 8 is installed on the right side of the longitudinal cable sleeve 19 and is slidably connected to the left side of the inner frame plate 4. A transverse clamping block 26 is installed on the rear side of the transverse cable sleeve 27. An integrated sensor 24 is installed on the top of block 26. Multiple multi-head sensors 25 are connected to the integrated sensor 24. A transparent horizontal observation window 22 is installed on the top of the horizontal channel position on the T-shaped clamp body 1. A sensor display 23 is installed on the left side of the transparent horizontal observation window 22. The integrated sensor 24 is connected to the sensor display 23. An integrated sensor 17 is installed on the top of the inner frame plate 4. Multiple multi-head sensors 18 are connected to the integrated sensor 17. A transparent vertical observation window 15 is installed on the top of the vertical channel position on the T-shaped clamp body 1. A sensor display 16 is installed on the rear side of the transparent vertical observation window 15. The integrated sensor 17 is connected to the sensor display 16. A clamping pad 21 is provided inside both the vertical cable sleeve 19 and the horizontal cable sleeve 27.

[0024] The longitudinal cable sleeve 19 directly covers the cable in the longitudinal channel of the T-shaped clamp body 1, and the transverse cable sleeve 27 directly covers the cable in the transverse channel of the T-shaped clamp body 1. The longitudinal cable sleeve 19 and the transverse cable sleeve 27 prevent the cable from becoming tangled during installation. Both the longitudinal cable sleeve 19 and the transverse cable sleeve 27 have evenly distributed through-slots 20 and 28. The evenly distributed through-slots 20 on the longitudinal cable sleeve 19 facilitate the integrated sensor 17 to intelligently monitor the temperature and current of the longitudinal cable in real time. The wireless communication technology sensed by the integrated sensor 17 transmits the data to the monitoring display 16 at the monitoring center, thus enabling monitoring of the cable in the longitudinal channel of the T-shaped clamp body 1. Intelligent monitoring of cable operation status is achieved through a transparent longitudinal observation window 15 at the top of the longitudinal channel of the T-type clamp body 1, which allows for easy visualization of cable wear or installation conditions. The evenly distributed through grooves 28 on the transverse cable sleeve 27 facilitate the integration of sensors 24 for timely and intelligent real-time monitoring of the transverse cable temperature and current. The wireless communication technology sensed by the integrated sensors 24 transmits the data to the monitoring center's sensor display 23, enabling intelligent monitoring of the cable operation status within the transverse channel of the T-type clamp body 1. Furthermore, the transparent transverse observation window 22 at the top of the transverse channel of the T-type clamp body 1 allows for easy visualization of cable wear or installation conditions, thus achieving intelligent monitoring of the cable operation status.

[0025] A groove 5 is provided in the middle of the left side of the inner frame plate 4. The groove 5 is slidably connected to the longitudinal clamping block 8. Movable blocks 7 are installed on the upper and lower parts of the longitudinal clamping block 8. The two movable blocks 7 are slidably connected to the corresponding movable slots 6. The two movable slots 6 are respectively located on the inner frame plate 4 at the upper and lower ends of the groove 5. A conveyor belt 9 is provided inside the groove 5. The conveyor belt 9 is connected to the right side of the longitudinal clamping block 8. The front and rear sides of the conveyor belt 9 are respectively connected to the front wheel 10 and the rear wheel 11. The front fixed rod 14 and the rear fixed rod 13 are respectively installed in the middle of the front wheel 10 and the rear wheel 11. The front fixed rod 14 and the rear fixed rod 13 pass through the front and rear sides of the inner frame plate 4 respectively. The top of the rear fixed rod 13 is fixedly connected to the output end of the micro DC motor 12.

[0026] The longitudinal channel of the T-type clamp body 1 allows the longitudinal cable sleeve 19, which is used to hold and install the cable, to move, facilitating cable installation. The structure within the longitudinal channel of the T-type clamp body 1 that allows cable movement—a miniature DC motor 12, a conveyor belt 9, a front wheel 10, and a rear wheel 11—can also be located within the transverse channel of the T-type clamp body 1. Both the transverse and longitudinal channels of the T-type clamp body 1 are functional. The longitudinal channel of the T-type clamp body 1 primarily fixes branch lines, which are numerous. To facilitate installation, the longitudinal cable sleeve 19 is equipped with a movable function, allowing it to move to the longitudinal cable entry port 3. This is mainly driven by the miniature DC motor 12. Under the drive of the miniature DC motor 12, the rear wheel 11 rotates, and the rear wheel 11 connects to the front wheel 10 via the conveyor belt 9. The rotation of the conveyor belt 9 causes the longitudinal clamp block 8 to move, and the longitudinal cable sleeve 19 installed on the longitudinal clamp block 8 also moves accordingly, facilitating the distributed installation of branch lines.

[0027] The T-type clamp body 1 has a longitudinal front plate 29 installed at the front end of the longitudinal channel. The T-type clamp body 1 has transverse side plates 30 installed at both ends of the transverse channel. The transverse side plates 30 have transverse wire passages 2 in the middle. The longitudinal front plate 29 has a longitudinal wire passage 3 in the middle. The two transverse side plates 30 and the longitudinal front plate 29 each have two through holes 31. Multiple through holes 31 pass through the front and rear ends of the transverse channel and the two sides of the longitudinal channel on the T-type clamp body 1. Multiple through holes 31 each have internal threaded fixing sleeves 32 installed in the multiple through holes 31. Multiple internal threaded fixing sleeves 32 each have external threaded inserts 33 threaded inside. Two sets of external threaded inserts 33 are installed on the side close to each other. Multiple external threaded inserts 33 each have fastening caps 35 installed on them.

[0028] In both the longitudinal and transverse cable installations of the T-type clamp body 1, the cable is fixed and clamped by a set of two clamping frames 34 to increase the stability of the installation. The clamping frames 34 are rotated and moved by their respective external threaded rods 33, and the two clamping frames 34 are moved closer or further apart to adapt to the diameter of the cable. Then, the two clamping frames 34 are brought closer together to clamp and fix the cable.

[0029] The transparent vertical observation window 15 corresponds to the top of the vertical channel of the T-type clamp body 1, and the transparent horizontal observation window 22 corresponds to the top of the horizontal channel of the T-type clamp body 1. The transparent vertical observation window 15 makes it convenient to observe the cable in the vertical channel of the T-type clamp body 1, and the transparent horizontal observation window 22 makes it convenient to observe the cable in the horizontal channel of the T-type clamp body 1.

[0030] Multiple clamping pads 21 engage with the cable body 36 at the middle crack, and two clamping frames 34 engage with one cable body 36. After the cable is secured by the longitudinal cable sleeve 19 and the transverse cable sleeve 27, the clamping pads 21 can make the cable more securely attached to the longitudinal cable sleeve 19 and the transverse cable sleeve 27. The clamping pads 21 are made of insulating rubber with a crack in the middle and are elastic, which can directly clamp the cable.

[0031] The longitudinal cable sleeve 19 is positioned near or away from the longitudinal cable entry port 3, and its position can be moved by the drive of the miniature DC motor 12. The transverse channel of the T-type clamp body 1 is connected to the longitudinal channel, and the transverse channel of the T-type clamp body 1 is used for horizontal cable installation, while the longitudinal channel of the T-type clamp body 1 is used for horizontal cable installation.

[0032] In this invention, the longitudinal cable sleeve 19 directly covers the cable in the longitudinal channel of the T-shaped clamp body 1, and the transverse cable sleeve 27 directly covers the cable in the transverse channel of the T-shaped clamp body 1. The longitudinal cable sleeve 19 and the transverse cable sleeve 27 prevent the cable from becoming tangled during installation. Both the longitudinal cable sleeve 19 and the transverse cable sleeve 27 have evenly distributed through-slots 20 and 28. The evenly distributed through-slots 20 on the longitudinal cable sleeve 19 facilitate the integrated sensor 17 to intelligently monitor the temperature and current of the longitudinal cable in real time. The wireless communication technology sensed by the integrated sensor 17 transmits the data to the monitoring display 16 at the monitoring center, thus realizing the monitoring of the longitudinal cable of the T-shaped clamp body 1. The system enables intelligent monitoring of the cable's operating status within the channel. The transparent longitudinal observation window 15 at the top of the longitudinal channel of the T-type clamp body 1 allows for convenient visualization of cable wear or installation conditions. The evenly distributed through-slots 28 on the transverse cable sleeve 27 facilitate the integration of sensors 24 for timely and intelligent real-time monitoring of the transverse cable's temperature and current. The wireless communication technology sensed by the integrated sensors 24 transmits the data to the monitoring center's sensor display 23, thus achieving intelligent monitoring of the cable's operating status within the transverse channel of the T-type clamp body 1. The transparent transverse observation window 22 at the top of the transverse channel of the T-type clamp body 1 also allows for convenient visualization of cable wear or installation conditions, enabling intelligent monitoring of the cable's operating status.

[0033] The longitudinal cable sleeve 19, which is installed by fitting the cable through the longitudinal channel of the T-type clamp body 1, can move to a different position, facilitating cable installation. The structure for moving the cable within the longitudinal channel of the T-type clamp body 1, including the miniature DC motor 12, the conveyor belt 9, the front wheel 10, and the rear wheel 11, can also be located within the transverse channel of the T-type clamp body 1. Both the transverse and longitudinal channels of the T-type clamp body 1 are functional. The longitudinal channel of the T-type clamp body 1 primarily fixes branch lines, which are numerous. To facilitate installation, the longitudinal cable sleeve 19 is equipped with a movable function, allowing it to move to the longitudinal cable entry port 3. This is mainly driven by the miniature DC motor 12. Under the drive of the miniature DC motor 12, the rear wheel 11 rotates, and the rear wheel 11 connects to the front wheel 10 via the conveyor belt 9. The rotation of the conveyor belt 9 causes the longitudinal clamp block 8 to move, and the longitudinal cable sleeve 19 installed on the longitudinal clamp block 8 also moves accordingly, facilitating the distributed installation of branch lines.

[0034] The cable installation in the longitudinal channel and the transverse channel of the T-type clamp body 1 is fixed and clamped by two clamping frames 34 as a group, which increases the stability of the installation. The clamping frames 34 are rotated and moved by their respective external threaded rods 33, and the two clamping frames 34 are moved closer or further away to adapt to the diameter of the cable. Then, the two clamping frames 34 are brought closer together to clamp and fix the cable.

[0035] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A T-lug facilitating cable latching, comprising a longitudinal cable sleeve (19), a transverse cable sleeve (27), an inner shelf plate (4) and a T-lug body (1), characterized in that: The longitudinal cable sleeve (19) is arranged in the longitudinal channel of the T-shaped wire clamp body (1), the transverse cable sleeve (27) is arranged in the transverse channel of the T-shaped wire clamp body (1), the longitudinal cable sleeve (19) is equidistantly provided with through grooves (20), the transverse cable sleeve (27) is equidistantly provided with through grooves (28), the inner shelf plate (4) is installed on the right side of the longitudinal channel of the T-shaped wire clamp body (1), the transverse cable sleeve (27) and the longitudinal cable sleeve (19) are both provided with cable bodies (36), the right side of the longitudinal cable sleeve (19) is provided with a longitudinal clamping block (8), the longitudinal clamping block (8) is slidably connected to the left side of the inner shelf plate (4), the rear side of the transverse cable sleeve (27) is provided with a transverse clamping block (26), the top of the transverse clamping block (26) is provided with an integrated sensor two (24), a plurality of multi-head sensors two (25) are connected to the integrated sensor two (24), a transparent transverse observation window (22) is installed on the top of the transverse channel of the T-shaped wire clamp body (1), an induction display two (23) is installed on the left side of the transparent transverse observation window (22), the integrated sensor two (24) is connected with the induction display two (23), an integrated sensor one (17) is installed on the top of the inner shelf plate (4), a plurality of multi-head sensors one (18) are connected to the integrated sensor one (17), a transparent longitudinal observation window (15) is installed on the top of the longitudinal channel of the T-shaped wire clamp body (1), an induction display one (16) is installed on the rear side of the transparent longitudinal observation window (15), the integrated sensor one (17) is connected with the induction display one (16), and the interiors of the longitudinal cable sleeve (19) and the transverse cable sleeve (27) are both provided with clamping pads (21).

2. A T-lug for facilitating cable latching according to claim 1, characterized in that: The left side of the inner shelf plate (4) is provided with a recess (5), the recess (5) is slidably connected with the longitudinal clamping block (8), the upper part and the lower part of the longitudinal clamping block (8) are both provided with movable blocks (7), the two movable blocks (7) are respectively slidably connected with corresponding movable grooves (6), the two movable grooves (6) are respectively arranged on the inner shelf plate (4) and located at the upper end and the lower end of the recess (5), the interior of the recess (5) is provided with a transmission belt (9), the transmission belt (9) is connected with the right side of the longitudinal clamping block (8), the front and rear sides of the transmission belt (9) are respectively connected with a front rotating wheel (10) and a rear rotating wheel (11), the middle parts of the front rotating wheel (10) and the rear rotating wheel (11) are respectively provided with a front fixed rod (14) and a rear fixed rod (13), the front fixed rod (14) and the rear fixed rod (13) respectively penetrate through the front and rear sides of the inner shelf plate (4), and the top of the rear fixed rod (13) is fixedly connected with the output end of a micro DC motor (12).

3. A T-lug for facilitating cable latching according to claim 1, wherein: The longitudinal front plate (29) is installed at the front end of the longitudinal channel of the T-shaped wire clamp body (1), the lateral side plates (30) are installed at the left and right ends of the transverse channel of the T-shaped wire clamp body (1), the middle part of each of the two lateral side plates (30) is provided with a transverse wire passing hole (2), the middle part of the longitudinal front plate (29) is provided with a longitudinal wire passing hole (3), two through holes (31) are arranged on each of the two lateral side plates (30) and the longitudinal front plate (29), the plurality of through holes (31) are arranged through the front and rear ends of the two sides of the transverse channel and the two sides of the longitudinal channel of the T-shaped wire clamp body (1) respectively, the internally threaded fixing sleeve rods (32) are installed in the plurality of through holes (31), the externally threaded plug rods (33) are threadedly connected in the plurality of internally threaded fixing sleeve rods (32), the wire clamping frames (34) are installed on the side close to each of the two groups of externally threaded plug rods (33), and the fastening caps (35) are installed on the plurality of externally threaded plug rods (33).

4. The T-lug for facilitating cable locking of claim 1, wherein: The transparent longitudinal observation window (15) is arranged at the top of the longitudinal channel of the T-shaped wire clamp body (1), and the transparent transverse observation window (22) is arranged at the top of the transverse channel of the T-shaped wire clamp body (1).

5. A T-lug for facilitating cable latching according to claim 3, wherein: The middle part cracks of the plurality of clamping pads (21) are clamped with the cable body (36), and the two groups of wire clamping frames (34) are clamped with the cable body (36).

6. A T-lug for facilitating cable latching according to claim 1, wherein: The longitudinal cable sleeve (19) is close to or away from the longitudinal wire passing hole (3).

7. A T-lug for facilitating cable latching according to claim 1, wherein: The transverse channel and the longitudinal channel of the T-shaped wire clamp body (1) are through.