Electrical equipment safety monitoring device
By using assembly slots and assembly plates to hold the wires, baffles and elastic clamps to organize the wires, flexible protective covers to protect the panel, and long-handled bolts for easy installation, the problems of unstable wire connections and lack of panel protection are solved, enabling stable monitoring and convenient installation of electrical equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-31
- Publication Date
- 2026-03-20
AI Technical Summary
During the operation of electrical equipment, unstable wire connections can lead to interruptions or inaccuracies in monitoring data, posing safety hazards. Furthermore, tangled wires and lack of panel protection can cause maintenance difficulties and equipment damage.
The system uses assembly slots and assembly plates to hold the wires, and uses screws and nuts to fix them. It also features baffles and elastic clamps to organize the wires, a flexible protective cover to protect the panel, and long-handled bolts for easy installation.
Ensure stable wire connections, avoid tangling, improve maintenance efficiency, extend equipment life, and reduce installation costs.
Smart Images

Figure CN121703549A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of smart grid, in particular to an electrical equipment safety monitoring device. BACKGROUND
[0002] In the process of electrical equipment operation, safety monitoring is crucial, and the stability of the connected wire of the intelligent power safety detector as a key device directly affects the monitoring effect and equipment safety. However, in actual application scenarios, there are many problems affecting the stability of wire connection.
[0003] On the one hand, external pulling force is easy to act on the wire, causing the wire to fall off the connection end of the intelligent power safety detector. This falling off not only causes monitoring data to be interrupted or inaccurate, affecting accurate judgment of the running state of the electrical equipment, but also may cause electrical faults, even safety accidents, posing a threat to personnel and equipment safety.
[0004] On the other hand, when multiple wires are drawn out from the intelligent power safety detector, entanglement is easy to occur. Wire entanglement not only makes the line messy and inconvenient for daily maintenance and management, increasing the work difficulty and time cost of maintenance personnel, but also makes it difficult to quickly and accurately locate the problem wire when troubleshooting, delaying the opportunity for fault handling and further affecting the normal operation of the electrical equipment.
[0005] In addition, the panel of the intelligent power safety detector lacks effective protection when not in use. As a key part of operation and display, the panel is exposed for a long time and is easy to be eroded and collided by dust, foreign matter, etc. Dust accumulation may affect the sensitivity and display clarity of the panel, and foreign matter collision may cause the panel to be damaged, shorten the service life of the equipment, and increase the cost of equipment replacement and maintenance.
[0006] At the same time, there are inconveniences in the process of installing the intelligent power safety detector to the power distribution cabinet. The traditional installation method may lack convenient bolt storage and access design, causing the bolt to be easily lost or the installation process to be cumbersome, affecting the installation efficiency and increasing the installation time and labor cost. SUMMARY
[0007] The purpose of the present application is to provide an electrical equipment safety monitoring device to solve the problems raised in the background.
[0008] To achieve the above purpose, the present application provides the following technical scheme: an electrical equipment safety monitoring device, comprising an intelligent power safety detector, a panel is fixed to the front end of the intelligent power safety detector, a splicing groove is formed in the top surface of the panel, a splicing plate is inserted into the splicing groove, and the wire connected to the connection end of the intelligent power safety detector is clamped between the splicing plate and the splicing groove after winding around the intelligent power safety detector upwards. The front end of the panel is fixed with a connecting strip, one end of the connecting strip is fixed with a baffle, the wire passes through the upper slot between the baffle and the panel, the inside of the baffle is fixed with a flexible protective cover, the flexible protective cover covers the front side of the panel after being pulled out from the baffle, and the bottom end of the flexible protective cover is connected to the bottom end of the panel through a magic tape. The left and right sides of the panel are both provided with a side slot, and the inside of the side slot is fixed with an elastic storage card strip.
[0009] Preferably, the assembling groove is an inverted "convex" shaped groove, a plurality of wire bundling grooves one are arranged on the bottom surface of the assembling groove, the assembling plate is an inverted "convex" shaped plate, a plurality of wire bundling grooves two are arranged on the bottom surface of the assembling plate, the wire is clamped between the wire bundling grooves two and the wire bundling grooves one, the two ends of the assembling plate are both provided with a through hole, the inside of the through hole is inserted with a screw rod, the bottom end of the screw rod is fixed on the surface of the assembling groove, and the top end of the screw rod is sleeved with a screw.
[0010] Preferably, the surface of the assembling plate is provided with a through hole, a rubber strip is fixed between the two parallel side walls of the through hole, a plurality of screw holes are arranged on the top surface of the through hole, the screw holes and the wire bundling grooves two are one-to-one corresponding, a through hole is arranged on the bottom surface of the through hole, the through hole is communicated with the wire bundling grooves two, the hole diameter of the through hole is larger than that of the screw hole, and the inside of the screw hole is inserted and screwed with the screw rod.
[0011] Preferably, the top surface of the assembling plate is fixed with a plurality of elastic hoop pieces, the elastic hoop pieces are circular arc strips, each group of elastic hoop pieces is provided with two, and the wire is clamped between the two elastic hoop pieces.
[0012] Preferably, the baffle is an "L" shaped plate structure, the top end of the baffle is integrally formed with a circular arc plate, the surface of the baffle is fixed with two connecting strips, and the bottom plate surface of the baffle is provided with a picking slot.
[0013] Preferably, a gap is left between the bottom plate of the baffle and the panel, the side of the bottom plate of the baffle close to the panel is fixed with a rubber clamping strip, and the rubber clamping strip is elastically deformed when clamped between the baffle and the panel.
[0014] Preferably, the bottom end of the flexible protective cover is fixed with a magic male tape, the bottom surface of the panel is fixed with a magic female tape, and the bottom end of the flexible protective cover is fixed at the bottom end of the panel through cooperation of the magic male tape and the magic female tape.
[0015] Preferably, the front and rear sides of the elastic storage card strip are both provided with a clamping groove, the clamping groove is a circular arc groove, the rod body of the long handle bolt is inserted into the inside of the clamping groove, and the four corners of the panel are all provided with a bolt hole.
[0016] Compared with the prior art, the present application has the following advantages: The electrical equipment safety monitoring device proposed in this invention uses an assembly slot and an assembly plate on the top surface of the panel. The wires are clamped between the first wire harness groove of the assembly slot and the second wire harness groove of the assembly plate, and then secured with screws and nuts. A washer is placed before installing the nut to reinforce the screw connection. This design effectively avoids the problem of the wires and the connection point of the intelligent electrical safety detector becoming loose when the wires are pulled externally, ensuring the stability of the wire connection and guaranteeing the continuity and accuracy of the electrical equipment safety monitoring data.
[0017] A perforation is made on the surface of the assembly plate, and a rubber strip and a hand-tightening screw are installed. After the assembly plate securely clamps the wire, the hand-tightening screw is turned downwards. The screw falls and stretches the rubber strip, clamping the wire through the rubber strip. This design further enhances the limiting effect of the wire between the assembly plate and the assembly slot, effectively preventing the wire from being pulled and moved, and providing double protection for the stability of the wire connection.
[0018] A baffle and elastic clamps are installed at the front end of the panel. The wires pass through the upper groove between the baffle and the panel, are clamped between the arc plate at the top of the baffle and the panel, and are then pushed between the two corresponding elastic clamps. This design avoids the problem of multiple wires getting tangled, keeps the wiring neat and orderly, facilitates daily maintenance and management, reduces the workload of maintenance personnel, and improves the efficiency of troubleshooting.
[0019] A flexible protective cover is fixed inside the baffle. When the panel is not in use, the flexible protective cover is pulled out to cover the front side of the panel and secured with Velcro. When using the panel, fingers are used to pry open the slots on the bottom plate of the baffle to stretch the bottom of the baffle, increasing the gap between the bottom plate and the panel. The flexible protective cover is then rolled up and tucked into the top of the bottom plate for storage. The bottom end of the baffle springs back and pushes the rubber clip against the panel surface to prevent the flexible protective cover from falling off. This design effectively protects the panel from long-term idleness, reducing the corrosion and impact of dust and foreign objects on the panel, extending the service life of the equipment, and reducing equipment replacement and maintenance costs.
[0020] The panel features side grooves on both sides, with elastic storage clips fixed inside. Long-handled bolts are inserted into the grooves on both sides, with the bolt shafts inserted into the arc-shaped slots on the front and back of the elastic storage clips. Bolt holes are located at the four corners of the panel. When the intelligent electrical safety detector is not installed, the long-handled bolts are stored in the elastic storage clips. During installation, the long-handled bolts are removed from the slots, passed through the bolt holes, and fixed to the distribution cabinet panel. This design facilitates the storage and retrieval of the long-handled bolts, prevents bolt loss, improves installation efficiency, and saves installation time and labor costs. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of the present invention; Figure 2 for Figure 1Enlarged schematic diagram of the structure at point B; Figure 3 for Figure 1 Sectional view of the structure at point AA; Figure 4 for Figure 3 Enlarged schematic diagram of the structure at point C; Figure 5 for Figure 3 Enlarged schematic diagram of the structure at point D; Figure 6 This is a schematic diagram of the intelligent power safety detector and panel connection structure of the present invention; Figure 7 for Figure 6 Structural section view at the EE section; Figure 8 for Figure 7 Enlarged schematic diagram of the structure at point F; Figure 9 This is a schematic diagram of the connection structure between the assembly plate and the baffle of the present invention; Figure 10 This is a schematic diagram of the elastic storage clip structure of the present invention; Figure 11 This is a schematic diagram of the panel structure of the present invention.
[0022] In the diagram: 1. Intelligent electrical safety detector; 2. Panel; 3. Assembly slot; 4. Cable tray; 5. Side slot; 6. Bolt hole; 7. Assembly plate; 8. Cable tray; 9. Through hole; 10. Screw; 11. Nut; 12. Through opening; 13. Rubber strip; 14. Screw hole; 15. Through hole; 16. Hand-tightening screw; 17. Elastic clamp; 18. Baffle; 19. Connecting strip; 10. Clip groove; 10. Rubber clip strip; 10. Flexible protective cover; 11. Male Velcro; 12. Female Velcro; 13. Elastic storage clip; 14. Slot; 15. Long shank bolt. Detailed Implementation
[0023] To make the objectives, technical solutions, and advantages of the present invention clear and complete, the embodiments of the present invention will be further described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only some, not all, embodiments of the present invention, and are merely illustrative of the embodiments of the present invention. They are not intended to limit the embodiments of the present invention. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0024] Please see Figures 1 to 11, the present invention provides a technical solution: an electrical equipment safety monitoring device, including a smart power consumption safety detector 1, with the model configuration using the ATS180Y series of smart power consumption safety monitoring devices. A panel 2 is fixed at the front end of the smart power consumption safety detector 1. An assembly groove 201 is opened on the top surface of the panel 2. An assembly board 3 is inserted into the interior of the assembly groove 201. The wire connected to the connection end of the smart power consumption safety detector 1 is wound upward around the smart power consumption safety detector 1 and clamped between the assembly board 3 and the assembly groove 201; the assembly groove 201 is an inverted "convex" - shaped groove, and a plurality of wire bundling grooves one 202 are opened on the bottom surface of the assembly groove 201. The assembly board 3 is an inverted "convex" - shaped board, and a plurality of wire bundling grooves two 301 are opened on the bottom surface of the assembly board 3. The wire is clamped between the wire bundling groove two 301 and the wire bundling groove one 202. Through holes 302 are opened at both ends of the assembly board 3, and a screw rod 303 is inserted into the interior of the through holes 302. The bottom end of the screw rod 303 is fixed on the surface of the assembly groove 201, and a nut 304 is sleeved and screwed on the top end of the screw rod 303.
[0025] After pre - fixing the wire at the connection end of the smart power consumption safety detector 1, the wire is wound around the smart power consumption safety detector 1 and pushed into the wire bundling groove one 202. Then the assembly board 3 is inserted into the assembly groove 201. At this time, the wire bundling groove two 301 presses on the upper side of the wire, and the screw rod 303 penetrates through the through hole 302. After sleeving and screwing the nut 304 on the top of the screw rod 303 and tightening it by screwing, at this time the wire is clamped between the assembly groove 201 and the assembly board 3, avoiding the loosening of the connection between the wire and the connection end of the smart power consumption safety detector 1 when the wire is externally pulled; it should be noted that a gasket is sleeved on the screw rod 303 before installing the nut 304 to strengthen the screwing firmness between the nut 304 and the screw rod 303.
[0026] In order to further limit the wire between the assembly board 3 and the assembly groove 201, it is proposed that: A through - hole 305 is opened on the surface of the assembly board 3. A rubber strip 306 is fixed between two parallel side walls of the through - hole 305. A plurality of screw holes 307 are opened on the top surface of the through - hole 305. The screw holes 307 correspond to the wire bundling grooves two 301 one by one. A through - hole 308 is opened on the bottom surface of the through - hole 305. The through - hole 308 communicates with the wire bundling groove two 301. The aperture of the through - hole 308 is larger than the aperture of the screw hole 307, and a hand - screwed screw rod 309 is inserted and screwed in the interior of the screw hole 307.
[0027] When the assembly board 3 is fixed in the assembly groove 201 to clamp the wire, the hand - screwed screw rod 309 is screwed downward. When the hand - screwed screw rod 309 drops, it stretches the rubber strip 306 to deform, and the hand - screwed screw rod 309 clamps the wire隔着橡胶条306夹持导线 (this part seems a bit unclear in the original Chinese, but I translated it as is). Thus, further avoiding the wire from being pulled and moved.
[0028] In order to neatly comb the wire when it is led out through between the assembly groove 201 and the assembly board 3, it is proposed that: A connecting strip 501 is fixed to the front end of panel 2, and a baffle 5 is fixed to one end of the connecting strip 501. The wire passes through the upper groove between the baffle 5 and panel 2. The baffle 5 has an "L" shaped plate structure. The top of the baffle 5 is integrally formed with an arc plate. Two connecting strips 501 are fixed to the surface of the baffle 5. A slot 502 is opened on the bottom plate surface of the baffle 5. Multiple sets of elastic clamps 4 are fixed to the top surface of the assembly plate 3. The elastic clamps 4 are arc-shaped strips. There are two elastic clamps 4 in each set. The wire is clamped between the two elastic clamps 4.
[0029] After the wires are led out from the assembly plate 3 and the assembly slot 201, the wires are clamped between the arc plate at the top of the baffle 5 and the panel 2, and the wires are pushed between the two corresponding elastic clamps 4, thereby avoiding the wires from getting tangled after being led out.
[0030] To protect panel 2 from long-term inactivity, the following measures were proposed: A flexible protective cover 6 is fixed inside the baffle 5. After being pulled out of the baffle 5, the flexible protective cover 6 covers the front side of the panel 2. The bottom end of the flexible protective cover 6 is connected to the bottom end of the panel 2 via Velcro. A gap is left between the bottom plate of the baffle 5 and the panel 2. A rubber clip 503 is fixed to the side of the bottom plate of the baffle 5 near the panel 2. The rubber clip 503 is clamped between the baffle 5 and the panel 2, causing elastic deformation. A male Velcro fastener 601 is fixed to the bottom end of the flexible protective cover 6, and a female Velcro fastener 602 is fixed to the bottom surface of the panel 2. The bottom end is fixed to the bottom end of the panel 2 by the cooperation of the male Velcro 601 and the female Velcro 602; the unfolded flexible protective cover 6 covers the operating surface of the panel 2. When using the panel 2, the finger is held in the holding groove 502 to pull the bottom of the baffle 5, and the gap between the bottom plate of the baffle 5 and the panel 2 increases. Then the flexible protective cover 6 is rolled up and inserted into the top of the bottom plate of the baffle 5 for storage. After the finger is pulled out from the holding groove 502, the bottom end of the baffle 5 rebounds and pushes the rubber clip 503 against the surface of the panel 2. At this time, the flexible protective cover 6 will not fall downward.
[0031] To facilitate the installation of the intelligent electrical safety detector 1 in the distribution cabinet, the following is proposed: The panel 2 has side grooves 203 on both the left and right sides, and elastic storage strips 7 are fixed inside the side grooves 203. Long-handled bolts 8 are inserted into both sides of the elastic storage strips 7. The elastic storage strips 7 have slots 701 on both the front and back sides. The slots 701 are arc-shaped. The rods of the long-handled bolts 8 are inserted into the inside of the slots 701. Bolt holes 204 are provided at the four corners of the panel 2. When the intelligent electrical safety detector 1 is not installed, the long-handled bolts 8 are stored in the elastic storage strips 7. When installing the intelligent electrical safety detector 1, the long-handled bolts 8 are pulled out from the slots 701, and then the rods of the long-handled bolts 8 are passed through the bolt holes 204 and fixed to the panel of the distribution cabinet.
[0032] Instructions for using electrical equipment safety monitoring devices: Pre-fix the wire to the connection end of the intelligent electrical safety detector 1. Wrap the wire with one end fixed around the intelligent electrical safety detector 1 and push it into the cable tray 202 on the bottom surface of the assembly slot 201 on the panel 2. Insert the assembly plate 3 into the assembly slot 201; at this time, the cable tray 301 on the bottom surface of the assembly plate 3 will press down on the wire. Simultaneously, the through holes 302 at both ends of the assembly plate 3 will be pierced by the screws 303 on the surface of the assembly slot 201. Place a washer on the screw 303, then screw the nut 304 onto the top of the screw 303, and then tighten the locking nut 304 to firmly clamp the wire between the assembly slot 201 and the assembly plate 3, preventing external pulling from causing the connection end of the wire and the intelligent electrical safety detector 1 to loosen. Tighten the hand-tightening screw 309, which is inserted and screwed into the screw hole 307 inside the through hole 305 on the surface of the assembly plate 3. When the hand-tightening screw 309 falls, it will stretch the rubber strip 306 fixed between the two parallel side walls of the through-hole 305 and cause it to deform. The hand-tightening screw 309 clamps the wire through the rubber strip 306, further preventing the wire from being pulled and moved.
[0033] After the wires are led out from the assembly plate 3 and the assembly groove 201, they pass through the upper groove between the arc plate at the top of the baffle 5 (fixed to the front end of the panel 2, an "L"-shaped plate structure with an integrally formed arc plate at the top, two connecting strips 501 fixed on the surface, and a slotting groove 502 on the bottom surface) and the panel 2. The led-out wires are pushed between multiple sets of elastic clamps 4 (two in each set, in the shape of arc strips) fixed on the top surface of the assembly plate 3, so that the wires are clamped between the two elastic clamps 4, preventing multiple wires from getting tangled after being led out.
[0034] When panel 2 needs protection, the flexible protective cover 6 is pulled out from inside the baffle 5 to cover the front side of panel 2. The male Velcro 601 fixed to the bottom of the flexible protective cover 6 is engaged with the female Velcro 602 fixed to the bottom of panel 2 to secure the bottom of the flexible protective cover 6 to the bottom of panel 2. When using panel 2, fingers are inserted into the slots 502 on the bottom plate of baffle 5 to stretch the bottom of baffle 5, increasing the gap between the bottom plate of baffle 5 and panel 2. The flexible protective cover 6 is then rolled up and tucked into the top of the bottom plate of baffle 5 for storage. After the fingers are removed from the slots 502, the bottom of baffle 5 springs back, pushing the rubber clip 503 fixed to the side of the bottom plate of baffle 5 near panel 2 against the surface of panel 2. At this time, the flexible protective cover 6 will not fall downwards.
[0035] When the intelligent electrical safety detector 1 is not installed, the long-handled bolt 8 is stored in the elastic storage clips 7 (with arc-shaped slots 701 on both the front and back sides) fixed in the side grooves 203 on the left and right sides of the panel 2, with the shank of the long-handled bolt 8 inserted into the inside of the slot 701. When installing the intelligent electrical safety detector 1, the long-handled bolt 8 is removed from the slot 701. After the shank of the long-handled bolt 8 is passed through the bolt holes 204 at the four corners of the panel 2, it is fixed to the panel of the distribution cabinet, completing the installation of the intelligent electrical safety detector 1 in the distribution cabinet.
[0036] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An electrical equipment safety monitoring device, comprising an intelligent electrical safety detector (1), wherein a panel (2) is fixed to the front end of the intelligent electrical safety detector (1), characterized in that: The top surface of the panel (2) is provided with an assembly groove (201), and an assembly plate (3) is inserted into the interior of the assembly groove (201). The wire connected to the connection end of the intelligent electricity safety detector (1) bypasses the intelligent electricity safety detector (1) upward and is clamped between the assembly plate (3) and the assembly groove (201). A connection strip (501) is fixed to the front end of the panel (2), and a baffle (5) is fixed to one end of the connection strip (501). The wire passes through the upper groove body between the baffle (5) and the panel (2). A flexible protective cover (6) is fixed inside the baffle (5). After the flexible protective cover (6) is pulled out from the baffle (5), it covers the front side of the panel (2). The bottom end of the flexible protective cover (6) is connected to the bottom end of the panel (2) by a magic tape. Edge grooves (203) are provided on both the left and right sides of the panel (2), and elastic storage clamping strips (7) are fixed inside the edge grooves (203). Long shank bolts (8) are inserted into both sides of the elastic storage clamping strip (7).
2. The electrical equipment safety monitoring device according to claim 1, characterized in that: The assembly groove (201) is an inverted "convex" - shaped groove, and a plurality of wire bundling grooves one (202) are provided on the bottom surface of the assembly groove (201). The assembly plate (3) is an inverted "convex" - shaped plate, and a plurality of wire bundling grooves two (301) are provided on the bottom surface of the assembly plate (3). The wire is clamped between the wire bundling groove two (301) and the wire bundling groove one (202). Through holes (302) are provided at both ends of the assembly plate (3), and a screw rod (303) is inserted into the interior of the through holes (302). The bottom end of the screw rod (303) is fixed on the surface of the assembly groove (201), and a nut (304) is sleeved and screwed on the top end of the screw rod (303).
3. The electrical equipment safety monitoring device according to claim 2, characterized in that: A through - hole (305) is provided on the surface of the assembly plate (3). Rubber strips (306) are fixed between two parallel side walls of the through - hole (305). A plurality of screw holes (307) are provided on the top surface of the through - hole (305), and the screw holes (307) correspond to the wire bundling grooves two (301) one by one. A through - hole (308) is provided on the bottom surface of the through - hole (305), and the through - hole (308) communicates with the wire bundling groove two (301). The aperture of the through - hole (308) is larger than the aperture of the screw hole (307). A hand - twist screw rod (309) is inserted and screwed into the interior of the screw hole (307).
4. The electrical equipment safety monitoring device according to claim 1, characterized in that: A plurality of groups of elastic hoop pieces (4) are fixed to the top surface of the assembly plate (3). The elastic hoop pieces (4) are arc - shaped strips, and each group of elastic hoop pieces (4) has two, and the wire is clamped between the two elastic hoop pieces (4).
5. The electrical equipment safety monitoring device according to claim 1, characterized in that: The baffle (5) is in an "L" - shaped plate - like structure. An arc - shaped plate is integrally formed at the top end of the baffle (5). Two connection strips (501) are fixed to the surface of the baffle (5), and a picking groove (502) is provided on the bottom surface of the bottom plate of the baffle (5).
6. The electrical equipment safety monitoring device according to claim 1, characterized in that: A gap is left between the bottom plate of the baffle (5) and the panel (2). A rubber clamping strip (503) is fixed to the side of the bottom plate of the baffle (5) close to the panel (2), and the rubber clamping strip (503) is clamped between the baffle (5) and the panel (2) to generate elastic deformation.
7. The electrical equipment safety monitoring device according to claim 1, characterized in that: The bottom end of the flexible protective cover (6) is fixed with a male Velcro patch (601), and the bottom surface of the panel (2) is fixed with a female Velcro patch (602). The bottom end of the flexible protective cover (6) is fixed to the bottom end of the panel (2) by the cooperation of the male Velcro patch (601) and the female Velcro patch (602).
8. The electrical equipment safety monitoring device according to claim 1, characterized in that: The elastic storage clip (7) has slots (701) on both the front and back sides. The slots (701) are arc-shaped. The rod of the long-handled bolt (8) is inserted into the inside of the slot (701). Bolt holes (204) are provided at the four corners of the panel (2).