A monitoring device for power information communication cabinet

CN224638289UActive Publication Date: 2026-08-14SHANDONG QINGZE INFORMATION TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-09
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0004]本实用新型为解决若是线缆受到外力的拉扯,则可能导致线缆接头和插孔之间的连接发生松动,严重的甚至会导致接头脱离插孔,进而会导致信号不良或是信号中断的问题,不便于电力信息通信柜用监控装置的正常使用的问题所提出的一种电力信息通信柜用监控装置

Benefits of technology

[0006]上述部件所达到的效果为:通过设置橡胶环,橡胶环设置在监控装置本体的一侧,则对橡胶环进行调节,使得橡胶环发生形变,直至橡胶环的外表面与接头之间完全抵接,则橡胶环能够对接头和监控装置本体之间进行辅助固定,有利于防止线缆接头和插孔之间的连接发生松动或是相互脱离的问题,进而确保监控装置的信号稳定,便于电力信息通信柜用监控装置的正常使用。

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Abstract

This utility model provides a monitoring device for a power information communication cabinet, relating to the field of monitoring device technology. The utility model includes a monitoring device body, a display screen on one side of the monitoring device body, and a plurality of sockets evenly arranged on the other side of the monitoring device. An auxiliary device is provided on one side of each of the sockets. The auxiliary device uses a deformable rubber ring to compress and fix the connectors connected to the sockets. By setting the rubber ring on one side of the monitoring device body, the rubber ring can be adjusted to deform until its outer surface completely abuts against the connector. This provides auxiliary fixation between the connector and the monitoring device body, preventing the connection between the cable connector and the socket from loosening or detaching, thereby ensuring signal stability and facilitating the normal use of the monitoring device for the power information communication cabinet.
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Description

Technical Field

[0001] This utility model relates to the field of monitoring device technology, and in particular to a monitoring device for power information communication cabinets. Background Technology

[0002] The monitoring device for power information communication cabinets is a device used to monitor and control the operating status of power information communication cabinets. It integrates sensing, communication and data processing technologies to achieve real-time monitoring of equipment and power parameters inside the cabinet, ensuring the stable operation of the power system.

[0003] The monitoring device for the power information communication cabinet has several sockets on one side, into which cable connectors can be inserted for connection to the communication system. However, after installation, if the cable is pulled by external force, the connection between the cable connector and the socket may become loose, and in severe cases, the connector may even come off the socket, which may lead to poor signal or signal interruption, making it inconvenient to use the monitoring device for the power information communication cabinet normally. Utility Model Content

[0004] This utility model addresses the problem that when cables are pulled by external forces, the connection between the cable connector and the socket may become loose, or even cause the connector to detach from the socket, leading to poor signal or signal interruption, which hinders the normal use of the monitoring device for the power information communication cabinet. Therefore, this utility model proposes a monitoring device for the power information communication cabinet.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: a monitoring device for a power information communication cabinet, comprising a monitoring device body, a display screen on one side of the monitoring device body, a plurality of sockets evenly arranged on the other side of the monitoring device, an auxiliary device on one side of the plurality of sockets, the auxiliary device using a deformable rubber ring to press and fix the connectors connected to the sockets.

[0006] The effect achieved by the above components is as follows: by setting a rubber ring on one side of the monitoring device body, the rubber ring is adjusted to deform until the outer surface of the rubber ring is fully in contact with the connector. The rubber ring can then provide auxiliary fixation between the connector and the monitoring device body, which helps to prevent the connection between the cable connector and the socket from becoming loose or detaching. This ensures the signal stability of the monitoring device and facilitates the normal use of the monitoring device in the power information communication cabinet.

[0007] Preferably, the auxiliary device includes a double-cavity sleeve, which is fixedly installed on one side of the monitoring device body. A plurality of the sockets are symmetrically arranged on one side of the double-cavity sleeve. Rubber rings are symmetrically arranged on the inner wall of the double-cavity sleeve, and the rubber rings are fixedly installed on one side of the monitoring device body. Rectangular tubes are slidably installed on the inner wall of the double-cavity sleeve. One end of the rectangular tube is located on one side of the rubber ring, and the other end of the two rectangular tubes is fixedly installed with the same connecting ring.

[0008] The effect achieved by the above components is as follows: pushing the connecting ring causes the two rectangular cylinders to slide on the inner wall of the double-cavity sleeve, so that the two rectangular cylinders squeeze the rubber ring, causing the rubber ring to deform until the outer surface of the rubber ring abuts against the outer surface of the plug, thus the rubber ring can provide auxiliary fixation between the plug and the monitoring device body.

[0009] Preferably, the rubber ring has a hollow structure.

[0010] The effect achieved by the above-mentioned components is that by setting a hollow rubber ring, the rubber ring has a stronger deformation capacity. When the rectangular cylinder squeezes the rubber ring, it is easier to deform, thus making it easier to adjust the rubber ring.

[0011] Preferably, a silicone ring is fixedly installed at one end of the rectangular tube, and one side of the silicone ring abuts against one side of the rubber ring.

[0012] The effect achieved by the above-mentioned components is that by setting a silicone ring instead of one end of the rectangular tube abutting against one side of the rubber ring, it helps to prevent the rubber ring from being damaged during the process of the rectangular ring squeezing the rubber ring.

[0013] Preferably, a slot plate is symmetrically installed on one side of the connecting ring, and a threaded pin is symmetrically installed on one side of the top of the monitoring device body. The threaded pin is slidably inserted into the inner wall of the slot plate, and a nut is threaded onto the outer surface of the threaded pin.

[0014] The effect achieved by the above components is as follows: when the rectangular tube slides on the inner wall of the double-cavity sleeve, it will drive the slot plate to move synchronously on the outer surface of the threaded pin, thereby rotating the nut so that one side of the nut abuts against one side of the slot plate. The nut can fix the threaded pin and the slot plate, thereby providing auxiliary fixation between the rectangular tube and the double-cavity sleeve, which helps to prevent the rectangular tube from shifting and causing the rubber ring to reset.

[0015] Preferably, a rubber plate is fixedly installed on one side of the slot plate, and the threaded pin is disposed inside the rubber plate.

[0016] The effect achieved by the above components is that by setting a rubber plate, one side of the slot plate can be replaced to abut against one side of the nut, thereby increasing the friction between the nut and the slot plate, making the nut less likely to loosen.

[0017] Preferably, springs are symmetrically installed on both sides of the connecting ring, and one end of the spring is fixedly installed on one side of the double-cavity sleeve.

[0018] The effect achieved by the above components is as follows: by setting a spring, when the rectangular cylinder pushing the connecting ring squeezes the rubber ring, it will squeeze the spring, causing the spring to deform. When it is necessary to pull out the connector, it is only necessary to release the nut's limit on the connecting ring, and the spring will reset, which will drive the rectangular cylinder to automatically reset, so that the rubber ring is no longer squeezed and resets, thus making it easier to pull out the connector.

[0019] Preferably, the spring has a round rod inside, one end of which is fixedly installed on one side of the connecting ring, and the outer surface of the round rod is slidably installed on one side of the double-cavity sleeve.

[0020] The effect achieved by the above components is that by setting up the round rod, the round rod can limit and guide the spring, which helps to prevent the spring from bending easily.

[0021] Compared with the prior art, the advantages and positive effects of this utility model are as follows: In this invention, by setting a rubber ring on one side of the monitoring device body, the rubber ring is adjusted to deform until its outer surface is fully in contact with the connector. This rubber ring can then provide auxiliary fixation between the connector and the monitoring device body, which helps prevent the connection between the cable connector and the socket from becoming loose or detaching. This ensures the signal stability of the monitoring device and facilitates its normal use in power information communication cabinets. Attached Figure Description

[0022] Figure 1 This is a three-dimensional structural diagram of the main body of this utility model; Figure 2 This is a three-dimensional structural diagram of the rubber ring of this utility model; Figure 3 This utility model Figure 2 A magnified structural diagram at point A; Figure 4 This is a three-dimensional structural diagram of the auxiliary device of this utility model; Figure 5 This utility model Figure 4 A magnified structural diagram at point B.

[0023] Legend: 1. Monitoring device body; 2. Display screen; 3. Socket; 4. Auxiliary device; 41. Double-cavity sleeve; 42. Rubber ring; 43. Rectangular tube; 44. Connecting ring; 45. Silicone ring; 46. Slot plate; 47. Threaded pin; 48. Nut; 49. Rubber plate; 410. Spring; 411. Round rod. Detailed Implementation

[0024] Example 1, referring to Figures 1-3 As shown, this embodiment discloses a monitoring device for a power information communication cabinet, including a monitoring device body 1 (the monitoring device body 1 can be an SMU02C monitoring module). A display screen 2 is provided on one side of the monitoring device body 1, and a plurality of sockets 3 are evenly arranged on the other side of the monitoring device. An auxiliary device 4 is provided on one side of the plurality of sockets 3. The auxiliary device 4 uses a deformable rubber ring 42 to compress and fix the connector connected to the socket 3. By setting the rubber ring 42 on one side of the monitoring device body 1, the rubber ring 42 is adjusted to deform until the outer surface of the rubber ring 42 is completely in contact with the connector. The rubber ring 42 can provide auxiliary fixation between the connector and the monitoring device body 1, which helps to prevent the connection between the cable connector and the socket 3 from becoming loose or detached, thereby ensuring the signal stability of the monitoring device and facilitating the normal use of the monitoring device for the power information communication cabinet.

[0025] Reference Figure 2 and Figure 3 As shown, the auxiliary device 4 includes a double-cavity sleeve 41, which is fixedly installed on one side of the monitoring device body 1. Several insertion holes 3 are symmetrically arranged on one side of the double-cavity sleeve 41. Rubber rings 42 are symmetrically arranged on the inner wall of the double-cavity sleeve 41 and are fixedly installed on one side of the monitoring device body 1. Rectangular cylinders 43 are slidably installed on the inner wall of the double-cavity sleeve 41. One end of the rectangular cylinder 43 is located on one side of the rubber ring 42, and the other end of the two rectangular cylinders 43 is fixedly installed with the same connecting ring 44. Pushing the connecting ring 44 drives the two rectangular cylinders. The two rectangular cylinders 43 slide on the inner wall of the double-cavity sleeve 41, causing the rubber ring 42 to be squeezed and deformed until the outer surface of the rubber ring 42 abuts against the outer surface of the plug. The rubber ring 42 can then provide auxiliary fixation between the plug and the monitoring device body 1. The rubber ring 42 has a hollow structure. By setting the rubber ring 42 with a hollow structure, the rubber ring 42 has a stronger deformation capacity. When the rectangular cylinders 43 squeeze the rubber ring 42, it is easier to deform, which makes it easier to adjust the rubber ring 42.

[0026] Reference Figure 2 and Figure 3As shown, a silicone ring 45 is fixedly installed at one end of the rectangular tube 43. One side of the silicone ring 45 abuts against one side of the rubber ring 42. By setting the silicone ring 45 instead of one end of the rectangular tube 43 abutting against one side of the rubber ring 42, it is beneficial to prevent the rubber ring 42 from being damaged during the process of the rectangular ring squeezing the rubber ring 42.

[0027] Reference Figure 4 and Figure 5 As shown, a slot plate 46 is symmetrically installed on one side of the connecting ring 44, and a threaded pin 47 is symmetrically installed on one side of the top of the monitoring device body 1. The threaded pin 47 is slidably inserted into the inner wall of the slot plate 46, and a nut 48 is threadedly connected to the outer surface of the threaded pin 47. When the rectangular tube 43 slides on the inner wall of the double-cavity sleeve 41, it will drive the slot plate 46 to move synchronously on the outer surface of the threaded pin 47, thereby rotating the nut 48 so that one side of the nut 48 abuts against one side of the slot plate 46, and the nut 48 can engage the threaded pin. The 47 and the slot plate 46 are fixed together, which can further fix the rectangular tube 43 and the double cavity sleeve 41, and help prevent the rectangular tube 43 from shifting and causing the rubber ring 42 to reset. A rubber plate 49 is fixedly installed on one side of the slot plate 46, and the threaded pin 47 is set inside the rubber plate 49. By setting the rubber plate 49, it can replace one side of the slot plate 46 to abut against one side of the nut 48, thereby increasing the friction between the nut 48 and the slot plate 46, making the nut 48 less likely to loosen.

[0028] Reference Figure 4 and Figure 5 As shown, springs 410 are symmetrically installed on both sides of the connecting ring 44. One end of the spring 410 is fixedly installed on one side of the double-cavity sleeve 41. By setting the spring 410, when the rectangular tube 43 of the connecting ring 44 is pushed to squeeze the rubber ring 42, the spring 410 will be squeezed, causing the spring 410 to deform. When the connector needs to be pulled out, it is only necessary to release the nut 48 from the limiting position of the connecting ring 44, and the spring 410 will reset, and drive the rectangular tube 43 to automatically reset, so that the rubber ring 42 is no longer squeezed and resets, thus facilitating the removal of the plug. A round rod 411 is set inside the spring 410. One end of the round rod 411 is fixedly installed on one side of the connecting ring 44, and the outer surface of the round rod 411 is slidably installed on one side of the double-cavity sleeve 41. By setting the round rod 411, the round rod 411 can limit and guide the spring 410, which helps to prevent the spring 410 from bending easily.

[0029] Working principle: Pushing the connecting ring 44 causes the two rectangular cylinders 43 to slide on the inner wall of the double-cavity sleeve 41, so that the silicone rings 45 at one end of the two rectangular cylinders 43 compress the hollow rubber ring 42, causing the rubber ring 42 to deform. During this process, the connecting ring 44 also compresses the spring 410, causing the spring 410 to deform, until the outer surface of the rubber ring 42 completely abuts against the outer surface of the plug. Then, rotate the nut 48 so that one side of the nut 48 abuts against the rubber plate 49 on one side of the slot plate 46, so that the nut 48 can engage the threaded pin 47. The rectangular tube 43 and the double-cavity sleeve 41 are fixed together, which helps to fix the rectangular tube 43 and the double-cavity sleeve 41. This helps to prevent the rectangular tube 43 from shifting and causing the rubber ring 42 to reset. The rubber ring 42 can then help fix the plug and the monitoring device body 1. When the connector needs to be pulled out, the nut 48 is rotated in the opposite direction to release the nut 48 from the limit of the connecting ring 44. The spring 410 will then reset and drive the rectangular tube 43 to reset automatically, so that the rubber ring 42 is no longer squeezed and resets, which makes it easier to pull out the plug.

Claims

1. A monitoring device for a power information communication cabinet, comprising a monitoring device body (1), characterized in that: The monitoring device body (1) has a display screen (2) on one side and several sockets (3) evenly arranged on the other side. An auxiliary device (4) is provided on one side of the several sockets (3). The auxiliary device (4) uses a deformable rubber ring (42) to press and fix the connector connected to the socket (3).

2. The monitoring device for a power information communication cabinet according to claim 1, characterized in that: The auxiliary device (4) includes a double-cavity sleeve (41), which is fixedly installed on one side of the monitoring device body (1). Several of the insertion holes (3) are symmetrically arranged on one side of the double-cavity sleeve (41). Rubber rings (42) are symmetrically arranged on the inner wall of the double-cavity sleeve (41). The rubber rings (42) are fixedly installed on one side of the monitoring device body (1). A rectangular tube (43) is slidably installed on the inner wall of the double-cavity sleeve (41). One end of the rectangular tube (43) is arranged on one side of the rubber ring (42), and the other end of the two rectangular tubes (43) is fixedly installed with the same connecting ring (44).

3. The monitoring device for a power information communication cabinet according to claim 2, characterized in that: The rubber ring (42) has a hollow structure.

4. The monitoring device for a power information communication cabinet according to claim 2, characterized in that: A silicone ring (45) is fixedly installed at one end of the rectangular tube (43), and one side of the silicone ring (45) abuts against one side of the rubber ring (42).

5. A monitoring device for a power information communication cabinet according to claim 2, characterized in that: A slot plate (46) is symmetrically installed on one side of the connecting ring (44), and a threaded pin (47) is symmetrically installed on one side of the top of the monitoring device body (1). The threaded pin (47) is slidably inserted into the inner wall of the slot plate (46), and a nut (48) is threadedly connected to the outer surface of the threaded pin (47).

6. A monitoring device for a power information communication cabinet according to claim 5, characterized in that: A rubber plate (49) is fixedly installed on one side of the slot plate (46), and the threaded pin (47) is located inside the rubber plate (49).

7. A monitoring device for a power information communication cabinet according to claim 2, characterized in that: Springs (410) are symmetrically installed on both sides of the connecting ring (44), and one end of the spring (410) is fixedly installed on one side of the double-cavity sleeve (41).

8. A monitoring device for a power information communication cabinet according to claim 7, characterized in that: The spring (410) has a round rod (411) inside. One end of the round rod (411) is fixedly installed on one side of the connecting ring (44), and the outer surface of the round rod (411) is slidably installed on one side of the double-cavity sleeve (41).