Compact intelligent switch cabinet

By designing compact installation components and interlocking linkage components for electrical equipment, the problems of large internal space occupation and safety hazards in intelligent switchgear are solved, achieving efficient installation and high-voltage safety protection for compact intelligent switchgear.

CN121663350APending Publication Date: 2026-03-13NANJING HUADAO NEW ENERGY TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-01-09
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

Existing intelligent switchgear has a large space occupied by the installation of internal electrical equipment, resulting in a large cabinet size and potential safety hazards, making it difficult to achieve a compact design and high-voltage safety protection.

Method used

The system employs a compact installation component for electrical equipment and a locking linkage component. It achieves horizontal and lateral installation and stability of electrical equipment through T-shaped guide blocks and magnetic adsorption. It utilizes an electromagnet to control the limit of the locking tongue and high-voltage safety protection, ensuring forced locking when the high voltage is not cut off.

Benefits of technology

The intelligent switchgear features a compact design, reducing the space occupied by electrical equipment, facilitating installation and maintenance, and ensuring personnel safety under high voltage conditions by preventing the cabinet door from being opened by unauthorized operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a compact intelligent switch cabinet, which belongs to the technical field of intelligent switch cabinets and comprises an intelligent switch cabinet body, a switch cabinet back plate is arranged on the outer wall of one side of the intelligent switch cabinet body, and a switch cabinet door is hinged to the outer wall of the other side of the intelligent switch cabinet body. A transverse partition plate is arranged in the middle of the inner side wall of the intelligent switch cabinet body, a concave hole is formed in the outer wall of one side of the transverse partition plate, and an electrical equipment compact installation assembly and a locking linkage assembly are arranged on the inner side of the intelligent switch cabinet body. According to the electrical equipment compact installation assembly, electrical equipment can be adaptively and horizontally arranged and installed in the intelligent switch cabinet according to the thickness of the electrical equipment, so that the space occupied by tiled installation of the electrical equipment is reduced, and the electrical equipment installed in the intelligent switch cabinet can be conveniently overhauled, replaced and installed; and the intelligent switch cabinet can be manufactured to be more compact and can be flexibly expanded so as to adapt to frequently-changed power utilization requirements.
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Description

Technical Field

[0001] This invention belongs to the field of intelligent switch cabinet technology, and specifically relates to a compact intelligent switch cabinet. Background Technology

[0002] Intelligent switchgear is a high-performance power equipment that integrates network communication, self-diagnosis, and automatic control functions. It enables remote monitoring through sensors, the Internet of Things, and cloud computing technologies, and supports five core functions: telemetry, remote signaling, remote control, remote adjustment, and remote setting. Its core components include intelligent circuit breakers, frequency converters, and PLCs. It adopts a modular design and has built-in sensors for real-time monitoring of operating status such as temperature and partial discharge. It is suitable for power distribution systems, industrial automation, and intelligent buildings.

[0003] Existing intelligent switch cabinets require the installation of a large number of electrical devices inside. These devices are mostly installed vertically inside the cabinet, which takes up a lot of space, resulting in a large cabinet size and insufficient internal space. Furthermore, when the intelligent switch cabinet is energized, it poses a safety hazard to open the cabinet door, and it is difficult to lock the door.

[0004] Therefore, a compact intelligent switch cabinet is proposed. Summary of the Invention

[0005] The present invention provides a compact intelligent switch cabinet, the purpose of which is to solve the problems mentioned above.

[0006] This invention provides a compact intelligent switch cabinet, including an intelligent switch cabinet body. A switch cabinet back panel is provided on one outer wall of the intelligent switch cabinet body, and a switch cabinet door is hinged to the other outer wall of the intelligent switch cabinet body. A horizontal partition is provided in the middle of the inner wall of the intelligent switch cabinet body, and a recessed hole is formed on one outer wall of the horizontal partition. An electrical equipment compact installation assembly and a locking linkage assembly are provided inside the intelligent switch cabinet body. The electrical equipment compact installation assembly includes an upper guide cover located on the outer wall of the horizontal partition, and a lower guide cover located on the inner wall of the intelligent switch cabinet body. The upper and lower guide covers are vertically opposite each other, and one side of the upper and lower guide covers... The outer wall is provided with a T-shaped guide groove and a through groove. The T-shaped guide groove is located on one side of the through groove and the T-shaped guide groove and the through groove are connected. A T-shaped guide block is slidably connected inside the T-shaped guide groove. An electrical equipment mounting plate is provided on the inner side of the intelligent switch cabinet. A connecting shaft is provided at the top and bottom of the electrical equipment mounting plate. The connecting shaft and the T-shaped guide block are rotatably connected. Several mounting holes are provided at equal intervals on the outer wall of the electrical equipment mounting plate. Two ear plates are symmetrically provided on one side of the electrical equipment mounting plate. A magnet is embedded in one side of the outer wall of the ear plate. A magnet is embedded in one side of the outer wall of the upper guide cover and the lower guide cover near the T-shaped guide groove.

[0007] Furthermore, the compact installation assembly of the electrical equipment also includes a terminal block disposed on the outer wall of the electrical equipment mounting plate adjacent to the ear plate. A conductive insert is disposed on one outer wall of the terminal block, and a terminal post is disposed on the other outer wall of the terminal block. A socket is disposed on one outer wall of the switch cabinet door. A conductive sheet one is disposed on the outer wall of the socket away from the switch cabinet door, and a conductive sheet two is disposed on one end of the conductive sheet one. A fastening hole for socket installation is provided on one outer wall of the switch cabinet door.

[0008] Furthermore, the locking linkage assembly includes a lock control box disposed inside the recessed hole. A lock control cavity is formed on one outer wall of the lock control box, and a connecting hole is formed on the top of the lock control box. A disassembly disc passes through the connecting hole. The disassembly disc is fixedly connected to the lock control box, and a vertical round rod is provided at the center of the bottom of the disassembly disc. A vertical spring is provided at the bottom of the disassembly disc near the outer side of the vertical round rod. A positioning inner sleeve is provided at the bottom of the vertical spring. An electromagnet is provided at the bottom of the lock control cavity near the position directly below the positioning inner sleeve. A positioning outer sleeve is provided at the top of the electromagnet. A fixing cover is provided on one inner wall of the lock control cavity. A water balance spring is provided on the inner side wall of the fixing cover. A lock cylinder is provided at one end of the water balance spring. An inclined surface is formed on one side of the lock cylinder.

[0009] Furthermore, the locking linkage assembly also includes a handle that rotates through the switch cabinet door. One end of the handle is provided with a locking tongue, the top of the locking tongue is provided with a positioning hole, and a lock cylinder groove is provided on one side of the outer wall of the locking tongue. An inclined surface is provided on one side of the locking tongue, and a torsion spring is provided at the rotation points of the handle and the switch cabinet door.

[0010] Furthermore, the T-shaped guide block is located inside the T-shaped guide groove, and the T-shaped guide block and the T-shaped guide groove are slidably connected. One end of the T-shaped guide block can protrude from the upper guide cover and the lower guide cover. By adopting the above technical solution, the T-shaped guide block can move stably by sliding within the T-shaped guide groove. The protruding part of the T-shaped guide block can be used to rotate it with the rotatably connected electrical equipment mounting plate, thereby allowing the electrical equipment mounting plate to rotate to face the worker, facilitating the installation, disassembly, and maintenance of the electrical equipment.

[0011] Furthermore, the electrical equipment mounting plate and the through groove are slidably connected, the first magnet and the second magnet are on the same horizontal plane, and the first magnet and the second magnet are connected by magnetic attraction; By adopting the above technical solution, the electrical equipment mounting plate can be limited by sliding a part of the through groove, thereby ensuring that the electrical equipment mounting plate can move linearly and be inserted into the intelligent switch cabinet. The magnetic connection between magnet one and magnet two can ensure the stability of the electrical equipment mounting plate after it is inserted into the intelligent switch cabinet.

[0012] Furthermore, the included angle between the first conductive sheet and the second conductive sheet is 150 degrees, and the first conductive sheet can abut against the conductive insert. By adopting the above technical solution, the conductive sheet 2 is tilted by the angle between conductive sheet 1 and conductive sheet 2, thereby giving conductive sheet 2 a guiding ability, which guides the conductive insert during the movement, making it easier for the conductive insert to fit tightly with conductive sheet 1 and achieve electrical connection.

[0013] Furthermore, the vertical round rod passes through the positioning inner sleeve, the inner sidewall of the positioning inner sleeve matches and fits with the outer sidewall of the positioning outer sleeve, and the positioning inner sleeve can pass through the positioning hole. By adopting the above technical solution, the vertical round rod can provide guidance for the movement of the positioning inner sleeve, thereby enabling the positioning inner sleeve to move vertically and linearly, and allowing the positioning inner sleeve to pass through the positioning hole and insert into the positioning outer sleeve, thereby limiting and fixing the lock tongue, preventing the lock tongue from being opened, and realizing the high-pressure locking function.

[0014] Furthermore, the electromagnet is electrically connected to the high-voltage circuit inside the intelligent switch cabinet. By adopting the above technical solution, the electromagnet can be powered, thus the electromagnet becomes magnetic when powered and loses its magnetism when the power is off, thereby controlling the movement of the positioning inner sleeve to achieve the function of high voltage safety protection and realize the interlocking function linkage. When the high voltage is not cut off, the interlocking is forced to prevent the cabinet door from being opened by operation and ensure personnel safety.

[0015] Furthermore, the lock cylinder and the lock cylinder slot engage with each other; By adopting the above technical solution, the lock cylinder and lock tongue can be locked, thereby enabling the opening and closing of the switch cabinet door.

[0016] The beneficial effects of this invention are as follows: 1. The present invention uses a compact electrical equipment installation component to allow electrical equipment to be arranged horizontally and laterally inside the intelligent switch cabinet according to its own thickness, thereby reducing the space occupied by the flat installation of electrical equipment. It also facilitates the inspection, replacement and installation of the electrical equipment installed inside, and makes the intelligent switch cabinet more compact and flexible to adapt to frequently changing power demand. 2. This invention can limit the locking tongue through the interlocking linkage component, so that the cabinet door cannot be opened when the intelligent switch cabinet is powered on, thereby achieving the function of high voltage safety protection and realizing the interlocking function linkage. When the high voltage is not cut off, the cabinet door is forcibly locked to prevent it from being opened by operation and to ensure personnel safety.

[0017] Other features and advantages of the invention will be set forth in the following description, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of the invention may be realized and obtained by means of the structures particularly pointed out in the description and the drawings. Attached Figure Description

[0018] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof. In the drawings: Figure 1 This is a schematic diagram of the structure of an embodiment of the present invention; Figure 2 This is a schematic diagram of the intelligent switch cabinet structure according to an embodiment of the present invention; Figure 3 This is a schematic diagram of the cooperation between the upper guide cover and the T-shaped guide block in an embodiment of the present invention; Figure 4 This is a schematic diagram of the electrical equipment mounting plate structure according to an embodiment of the present invention; Figure 5 This is an embodiment of the present invention. Figure 1 Enlarged diagram of point A in the diagram; Figure 6 This is a schematic diagram of the lock control box structure according to an embodiment of the present invention; Figure 7 This is a three-dimensional cross-sectional view of the lock control box according to an embodiment of the present invention; Figure 8 This is an embodiment of the present invention. Figure 2 Enlarged diagram of point A in the diagram; Reference numerals: 1. Intelligent switch cabinet body; 2. Switch cabinet back panel; 21. Fastening hole; 3. Switch cabinet door; 4. Horizontal partition; 41. Recessed hole; 5. Compact installation assembly for electrical equipment; 51. Upper guide cover; 52. Lower guide cover; 53. T-shaped guide groove; 54. Through groove; 55. T-shaped guide block; 56. Electrical equipment mounting plate; 561. Connecting shaft; 562. Mounting hole; 563. Ear plate; 564. Magnet one; 57. Magnet two; 58. Terminal block; 581. Conductive plug; 582. Terminal post; 59. Socket; 591, Conductive Plate 1; 592, Conductive Plate 2; 6, Locking Linkage Assembly; 61, Lock Control Box; 611, Lock Control Cavity; 612, Connecting Hole; 62, Disassembly Plate; 621, Vertical Round Rod; 622, Vertical Spring; 623, Positioning Inner Sleeve; 63, Electromagnet; 64, Positioning Outer Sleeve; 65, Fixing Cover; 651, Water Balance Spring; 652, Lock Cylinder; 6521, Inclined Surface 1; 66, Handle; 67, Lock Tongue; 671, Positioning Hole; 672, Lock Cylinder Groove; 673, Inclined Surface 2; 68, Torsion Spring. Detailed Implementation

[0019] To make the objectives, technical solutions, and advantages of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. The same reference numerals in the drawings represent the same components. It should be noted that the described embodiments are only some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the described embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0020] Example 1 Reference Figure 1-5 This invention proposes a compact intelligent switch cabinet, including an intelligent switch cabinet body 1, a switch cabinet back panel 2 provided on one outer wall of the intelligent switch cabinet body 1, and a switch cabinet door 3 hinged on the other outer wall of the intelligent switch cabinet body 1, a horizontal partition 4 provided in the middle of the inner wall of the intelligent switch cabinet body 1, a recessed hole 41 provided on one outer wall of the horizontal partition 4, and an electrical equipment compact installation assembly 5 provided on the inner side of the intelligent switch cabinet body 1; The compact installation assembly 5 for electrical equipment includes an upper guide cover 51 located on the outer wall of the transverse partition 4, and a lower guide cover 52 located on the inner wall of the intelligent switch cabinet 1. The upper guide cover 51 and the lower guide cover 52 are opposite each other in the vertical direction, and a T-shaped guide groove 53 and a through groove 54 are provided on one side of the outer wall of the upper guide cover 51 and the lower guide cover 52. The T-shaped guide groove 53 is located on one side of the through groove 54, and the T-shaped guide groove 53 and the through groove 54 are connected. A T-shaped guide block 55 is slidably connected inside the T-shaped guide groove 53. The T-shaped guide block 55 is located inside the T-shaped guide groove 53, and the T-shaped guide block 55 and the T-shaped guide groove 53 are slidably connected. One end of the T-shaped guide block 55 can protrude from the upper guide cover 51 and the lower guide cover 52. Sliding within the T-shaped guide groove 53 allows for stable movement of the T-shaped guide block 55. The protruding portion of the T-shaped guide block 55 allows it to rotate with the rotatably connected electrical equipment mounting plate 56, facilitating the installation, disassembly, and maintenance of the electrical equipment. The intelligent switch cabinet 1 has an electrical equipment mounting plate 56 on its inner side. Connecting shafts 561 are located at the top and bottom of the electrical equipment mounting plate 56, rotatably connecting the connecting shafts 561 and the T-shaped guide block 55. Several mounting holes 562 are evenly spaced on the outer wall of the electrical equipment mounting plate 56, and two ear plates 563 are symmetrically arranged on one side of the electrical equipment mounting plate 56. An installation device is embedded in the outer wall of one side of the ear plate 563. A magnet 564 is placed on one side of the outer wall of the upper guide cover 51 and the lower guide cover 52, near the T-shaped guide groove 53. A magnet 57 is embedded in the groove. The electrical equipment mounting plate 56 and the through groove 54 are slidably connected. Magnets 564 and 57 are on the same horizontal plane and are magnetically attracted to each other. By sliding a portion of the electrical equipment mounting plate 56 within the through groove 54, the through groove 54 can limit the movement of the electrical equipment mounting plate 56, ensuring that it can move linearly and insert into the intelligent switch cabinet 1. The magnetic connection between magnets 564 and 57 ensures the stability of the electrical equipment mounting plate 56 after insertion into the intelligent switch cabinet 1. Qualitatively, the compact installation assembly 5 for electrical equipment also includes a terminal block 58 disposed on the outer wall of the electrical equipment mounting plate 56 adjacent to the ear plate 563. A conductive insert 581 is disposed on one outer wall of the terminal block 58, and a terminal post 582 is disposed on the other outer wall of the terminal block 58. A socket 59 is disposed on one outer wall of the switch cabinet door 3. A first conductive piece 591 is disposed on the outer wall of the socket 59 away from the switch cabinet door 3. A second conductive piece 592 is disposed on one end of the first conductive piece 591. The included angle between the first conductive piece 591 and the second conductive piece 592 is 150 degrees, and the first conductive piece 591 can abut against the conductive insert 581. The angle between the first conductive piece 591 and the second conductive piece 592 causes the second conductive piece 592 to be tilted.This enables the conductive sheet 592 to have guiding capabilities, thereby guiding the conductive insert 581 during movement, facilitating a tight fit between the conductive insert 581 and the conductive sheet 591, achieving electrical connection. A fastening hole 21 for mounting the socket 59 is provided on one side of the outer wall of the switch cabinet door 3. Specifically, during the compact installation of electrical equipment, the spacing between adjacent electrical equipment mounting plates 56 inside the intelligent switch cabinet 1 is adjusted according to the thickness of different electrical equipment, so that the electrical equipment mounting plates 56 are inserted into the interior of the intelligent switch cabinet 1. The two T-shaped guide blocks 55 on the electrical equipment mounting plates 56 are inserted laterally into the T-shaped guide grooves 53 on the upper guide cover 51 and the lower guide cover 52, respectively. Under the guidance of the T-shaped guide grooves 53 and the connection of the through grooves 54, the electrical equipment mounting plates 56 can move along the space between the upper guide cover 51 and the lower guide cover 52 inside the intelligent switch cabinet 1 to complete the assembly of multiple electrical equipment mounting plates 56. When installing electrical equipment, the electrical equipment mounting plate 56 is pulled out of the intelligent switch cabinet 1. A part of the T-shaped guide block 55 protrudes from the upper guide cover 51 and the lower guide cover 52. At this time, the electrical equipment mounting plate 56 moves to the outside of the through groove 54. After the electrical equipment mounting plate 56 loses its limit, the electrical equipment mounting plate 56 is rotated by the rotation of the connecting shaft 561 on the T-shaped guide block 55, and the electrical equipment mounting plate 56 is rotated 90 degrees. At this time, the electrical equipment mounting plate 56 faces the worker, and the worker can install and fix the electrical equipment on the electrical equipment mounting plate 56 and connect the electrical equipment to the terminal block 582 using a wire harness. After the installation of the electrical equipment is completed, the electrical equipment mounting plate 56 is rotated 90 degrees in the opposite direction and inserted into the intelligent switch cabinet 1. At this time, the electrical equipment in the intelligent switch cabinet 1 is arranged horizontally, reducing the space occupied, so that the intelligent switch cabinet 1 can be manufactured more compactly and can be flexibly expanded to adapt to frequently changing power needs. After the electrical equipment mounting plate 56 is fully inserted into the intelligent switch cabinet 1, the conductive insert 581 first contacts the conductive piece 592, and under the inclined guidance of the conductive piece 592, the conductive insert 581 and the conductive piece 591 are tightly attached to each other to achieve electrical connection. The magnet 564 and the magnet 57 then come into contact. The magnetic connection between the magnet 564 and the magnet 57 ensures the stability of the electrical equipment mounting plate 56 after it is inserted into the intelligent switch cabinet 1.

[0021] Example 2 Reference Figure 1-2 and Figure 6-8The present invention also proposes a compact intelligent switch cabinet, including an intelligent switch cabinet body 1, a switch cabinet back panel 2 provided on one outer wall of the intelligent switch cabinet body 1, and a switch cabinet door 3 hinged on the other outer wall of the intelligent switch cabinet body 1, a horizontal partition 4 provided in the middle of the inner side wall of the intelligent switch cabinet body 1, a recessed hole 41 provided on one outer wall of the horizontal partition 4, and a locking linkage component 6. The locking linkage assembly 6 includes a lock control box 61 disposed inside the recess 41. A lock control cavity 611 is formed on one outer wall of the lock control box 61, and a connecting hole 612 is formed on the top of the lock control box 61. A disassembly disc 62 passes through the connecting hole 612 and is fixedly connected to the lock control box 61. A vertical round rod 621 is provided at the center of the bottom of the disassembly disc 62. A vertical spring 622 is provided at the bottom of the disassembly disc 62 near the outer side of the vertical round rod 621. A positioning inner sleeve 623 is provided at the bottom of the vertical spring 622. The bottom of the lock control cavity 611 is located near the position directly below the positioning inner sleeve 623. An electromagnet 63 is installed. When energized, the electromagnet 63 magnetically connects to the positioning inner sleeve 623. The electromagnet 63 is electrically connected to the high-voltage circuit inside the intelligent switch cabinet 1, which can supply power to the electromagnet 63. When powered on, the electromagnet 63 becomes magnetic. When the power is off, the electromagnet 63 loses its magnetism, thereby controlling the movement of the positioning inner sleeve 623 to achieve high-voltage safety protection and realize the interlocking function linkage. When the high voltage is not cut off, the cabinet door is forcibly locked to prevent it from being opened by operation, thus ensuring personnel safety. A positioning outer sleeve 64 is installed on the top of the electromagnet 63, and a fixing cover 65 is installed on one side of the inner wall of the locking cavity 611. A water balance spring 651 is provided on the inner wall of 65. A lock cylinder 652 is provided at one end of the water balance spring 651. An inclined surface 6521 is provided on one side of the lock cylinder 652. The locking linkage assembly 6 also includes a handle 66 that rotates through the switch cabinet door 3. A locking tongue 67 is provided at one end of the handle 66. A positioning hole 671 is provided at the top of the locking tongue 67. A vertical round rod 621 passes through the positioning inner sleeve 623. The inner wall of the positioning inner sleeve 623 matches and fits the outer wall of the positioning outer sleeve 64. The positioning inner sleeve 623 can pass through the positioning hole 671. The vertical round rod 621 can be used to position the inner sleeve. The movement of 623 provides guidance, thereby enabling the positioning inner sleeve 623 to move vertically and linearly, and allowing the positioning inner sleeve 623 to pass through the positioning hole 671 and insert into the positioning outer sleeve 64, thereby limiting and fixing the locking tongue 67, preventing the locking tongue 67 from being opened, and realizing the high-pressure locking function. A lock cylinder groove 672 is provided on one side of the outer wall of the locking tongue 67. The lock cylinder 652 and the lock cylinder groove 672 are engaged, which can lock the lock cylinder 652 and the locking tongue 67, thereby realizing the opening and closing of the switch cabinet door 3. An inclined surface 673 is provided on one side of the locking tongue 67. Torsion springs 68 are provided at the handle 66 and the rotation of the switch cabinet door 3. Specifically, when it is necessary to install, repair or replace the electrical equipment inside the intelligent switch cabinet 1, the power to the intelligent switch cabinet 1 must be turned off before opening the switch cabinet door 3, because the electromagnet 63 is electrically connected to the high-voltage circuit inside the intelligent switch cabinet 1. When the circuit inside the intelligent switch cabinet 1 is energized, the electromagnet 63 generates magnetism. Under the action of magnetism, the electromagnet 63 attracts the positioning inner sleeve 623 to move downward. Under the vertical guidance of the vertical round rod 621, the positioning inner sleeve 623 moves vertically downward. After passing through the positioning hole 671 on the lock tongue 67, the positioning inner sleeve 623 is inserted into the positioning outer sleeve 64. At this time, the vertical spring 622 is stretched and deformed, and the positioning inner sleeve 623 limits the lock tongue 67, so that the lock tongue 67 cannot rotate. This prevents the lock tongue 67 from disengaging from the lock control box 61, ensuring that the switch cabinet door 3 cannot be opened. This achieves the function of high-voltage safety protection and realizes the interlocking function linkage. When the high voltage is not cut off, the door is forcibly locked to prevent it from being opened by operation and to ensure personnel safety. When the circuit inside the intelligent switch cabinet 1 is de-energized, under the restoring force of the vertical spring 622, the vertical spring 622 pulls the positioning inner sleeve 623 vertically upward, and the positioning inner sleeve 623 separates from the locking tongue 67. At this time, the locking tongue 67 can rotate and disengage from the lock control box 61. Grasp the handle 66 and rotate it 90 degrees, and the locking tongue 67 rotates synchronously. During the rotation of the locking tongue 67, the lock cylinder groove 672 on the locking tongue 67 disengages from the lock cylinder 652. After the locking tongue 67 loses the horizontal limit of the lock cylinder 652, it pulls the switch cabinet door 3 outward. As the switch cabinet door 3 is pulled, the locking tongue 67 is pulled out of the lock control box 61, realizing the opening of the switch cabinet door 3, which facilitates the installation, maintenance or replacement of the electrical equipment inside.

[0022] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of this invention is defined by the appended claims and their equivalents.

Claims

1. A compact intelligent switch cabinet, characterized in that: The system includes an intelligent switch cabinet (1), a switch cabinet back panel (2) is provided on one outer wall of the intelligent switch cabinet (1), and a switch cabinet door (3) is hinged on the other outer wall of the intelligent switch cabinet (1). A horizontal partition (4) is provided in the middle of the inner wall of the intelligent switch cabinet (1), and a recess (41) is provided on one outer wall of the horizontal partition (4). An electrical equipment compact installation assembly (5) and a locking linkage assembly (6) are provided on the inner side of the intelligent switch cabinet (1). The electrical equipment compact installation assembly (5) includes an upper guide cover (51) located on the outer wall of the transverse partition (4), and a lower guide cover (52) located on the inner wall of the intelligent switch cabinet (1). The upper guide cover (51) and the lower guide cover (52) are opposite each other in the vertical direction, and a T-shaped guide groove (53) and a through groove (54) are provided on one side of the outer wall of the upper guide cover (51) and the lower guide cover (52). The T-shaped guide groove (53) is located on one side of the through groove (54), and the T-shaped guide groove (53) and the through groove (54) are connected. A T-shaped guide block (55) is slidably connected inside the T-shaped guide groove (53). 1) An electrical equipment mounting plate (56) is provided on the inner side. The top and bottom of the electrical equipment mounting plate (56) are provided with connecting shafts (561). The connecting shafts (561) and the T-shaped guide block (55) are rotatably connected. Several mounting holes (562) are equally spaced on the outer wall of the electrical equipment mounting plate (56). Two ear plates (563) are symmetrically arranged on one side of the electrical equipment mounting plate (56). A magnet (564) is embedded on one side of the outer wall of the ear plate (563). A magnet (57) is embedded on one side of the outer wall of the upper guide cover (51) and the lower guide cover (52) near the T-shaped guide groove (53).

2. The compact intelligent switch cabinet according to claim 1, characterized in that: The electrical equipment compact mounting assembly (5) also includes a terminal block (58) on the outer wall of the electrical equipment mounting plate (56) adjacent to the ear plate (563). A conductive insert (581) is provided on one side of the outer wall of the terminal block (58), and a terminal post (582) is provided on the other side of the outer wall of the terminal block (58). A socket (59) is provided on one side of the outer wall of the switch cabinet door (3). A conductive sheet (591) is provided on the outer wall of the socket (59) away from the switch cabinet door (3). A conductive sheet (592) is provided on one side of the conductive sheet (591). A fastening hole (21) for the socket (59) to be installed is provided on one side of the outer wall of the switch cabinet door (3).

3. A compact intelligent switch cabinet according to claim 1, characterized in that: The locking linkage assembly (6) includes a lock control box (61) disposed inside a recess (41). A lock control cavity (611) is formed on one outer wall of the lock control box (61), and a connecting hole (612) is formed on the top of the lock control box (61). A disassembly disc (62) passes through the interior of the connecting hole (612). The disassembly disc (62) is fixedly connected to the lock control box (61), and a vertical round rod (621) is provided at the center of the bottom of the disassembly disc (62). A vertical spring (622) is provided at the outer side of the bottom of the disassembly disc (62) near the vertical round rod (621). A positioning inner sleeve (623) is provided at the bottom of the vertical spring (622). An electromagnet (63) is provided at the bottom of the lock control cavity (611) near the position directly below the positioning inner sleeve (623). A positioning outer sleeve (64) is provided at the top of the electromagnet (63). A fixing cover (65) is provided on one side of the inner wall of the lock control cavity (611). A water balance spring (651) is provided on the inner side wall of the fixing cover (65). A lock cylinder (652) is provided at one end of the water balance spring (651). An inclined surface (6521) is opened on one side of the lock cylinder (652).

4. A compact intelligent switch cabinet according to claim 1, characterized in that: The locking linkage assembly (6) also includes a handle (66) that rotates through the switch cabinet door (3). One end of the handle (66) is provided with a latch (67). The top of the latch (67) is provided with a positioning hole (671), and a lock cylinder groove (672) is provided on one side of the outer wall of the latch (67). An inclined surface (673) is provided on one side of the latch (67). Torsion springs (68) are provided at the rotation points of the handle (66) and the switch cabinet door (3).

5. A compact intelligent switch cabinet according to claim 1, characterized in that: The T-shaped guide block (55) is located inside the T-shaped guide groove (53), and the T-shaped guide block (55) and the T-shaped guide groove (53) are slidably connected. One end of the T-shaped guide block (55) can protrude from the upper guide cover (51) and the lower guide cover (52).

6. A compact intelligent switch cabinet according to claim 1, characterized in that: The electrical equipment mounting plate (56) and the through groove (54) are slidably connected. The first magnet (564) and the second magnet (57) are on the same horizontal plane and are connected by magnetic adsorption.

7. A compact intelligent switch cabinet according to claim 2, characterized in that: The included angle between the first conductive piece (591) and the second conductive piece (592) is 150 degrees, and the first conductive piece (591) can abut against the conductive insert (581).

8. A compact intelligent switch cabinet according to claim 3, characterized in that: The vertical round rod (621) passes through the positioning inner sleeve (623), the inner sidewall of the positioning inner sleeve (623) matches and fits the outer sidewall of the positioning outer sleeve (64), and the positioning inner sleeve (623) can pass through the positioning hole (671).

9. A compact intelligent switch cabinet according to claim 3, characterized in that: The electromagnet (63) is electrically connected to the high-voltage circuit inside the intelligent switch cabinet (1).

10. A compact intelligent switch cabinet according to claim 4, characterized in that: The lock cylinder (652) and the lock cylinder groove (672) engage with each other.

Citation Information

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