A retractable reset jack panel

By introducing a sliding plug-in area and locking structure into the socket, the problem of fixed socket positions in traditional sockets is solved, enabling flexible adjustment of socket positions and improving the socket's efficiency and safety.

CN224537472UActive Publication Date: 2026-07-21FOSHAN GUYUXUAN BRAND MANAGEMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FOSHAN GUYUXUAN BRAND MANAGEMENT CO LTD
Filing Date
2025-08-12
Publication Date
2026-07-21

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Abstract

The utility model discloses a telescopic reset jack panel, including the socket body, be equipped with first plug -in area and second plug -in area on the socket body, be equipped with first plug -in hole on first plug -in area, be equipped with second plug -in hole on second plug -in area, the socket body includes the bottom box, be equipped with the open mouth on the bottom box, the first sliding seat slidingly connected in the bottom box, first plug -in area is located on the first sliding seat, be equipped with first locking structure between first sliding seat and bottom box, first sliding seat and bottom box between still be equipped with first unlocking structure, the user can according to actual needs, manually first sliding seat is pulled out or pushed into from the open mouth of bottom box outward, thereby change the specific position of first plug -in hole in space, make the user can according to the size of plug, the trend of cable or the occupancy condition of surrounding space, flexible adjustment jack position, has greatly promoted the convenience and adaptability of use.
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Description

Technical Field

[0001] This utility model relates to the field of socket technology, and in particular to a retractable reset socket panel. Background Technology

[0002] With the continuous improvement of modern electrification, power sockets, as a key interface for power transmission, have been widely used in various fields such as homes, offices, and industrial production. Traditional power sockets typically adopt a fixed structure, with the position and number of sockets determined at the factory, making it impossible to adjust according to actual usage needs. This fixed design has many limitations in use.

[0003] In practical applications, due to the wide variety of electrical devices, their plugs vary in size and shape. In environments with compact layouts, such as densely packed desks, multifunctional furniture, or small appliance cabinets, fixed sockets may not be able to be used simultaneously due to interference between adjacent plugs, resulting in "socket waste" and reducing the actual utilization rate of the sockets.

[0004] In addition, the positions of the sockets are fixed after installation. If the installation position is slightly off or the furniture layout is adjusted later, the plug and cable may be too tight, which may cause the plug to loosen during use and pose a certain safety hazard.

[0005] This utility model is based on the above-mentioned circumstances. Utility Model Content

[0006] This invention overcomes the shortcomings of the prior art and provides a retractable reset socket panel.

[0007] This utility model is achieved through the following technical solution:

[0008] A retractable resettable socket panel includes a socket body. The socket body has a first plug-in area and a second plug-in area. The first plug-in area has a first plug-in hole, and the second plug-in area has a second plug-in hole. A first conductive sheet is disposed in the first plug-in hole, and a second conductive sheet is disposed in the second plug-in hole. The socket body also has a first terminal electrically connected to the first conductive sheet and a second terminal electrically connected to the second conductive sheet. The socket body includes a base box. The base box has an open opening communicating with its inner cavity. A first sliding seat that can extend out of the open opening is slidably connected inside the base box. The first plug-in area is disposed on the first sliding seat. A first locking structure for restricting the first sliding seat from sliding out of the open opening is provided between the first sliding seat and the base box. A first unlocking structure that can unlock the first locking structure is also provided between the first sliding seat and the base box.

[0009] As described above, in a retractable reset socket panel, the first locking structure includes a limiting hole on the base box and a rotating arm rotatably connected to the first sliding seat. The rotating arm is provided with a plug that can be inserted into the limiting hole to restrict the sliding of the first sliding seat.

[0010] As described above, in a retractable reset socket panel, the first unlocking structure includes a push plate rotatably connected to a first sliding seat in the middle. The push plate includes a handle portion extending from the upper end of the first sliding seat. The lower end of the handle portion is connected to a push portion that can rotate with the handle portion, thereby driving the rotating arm to rotate and causing the plug to exit the limiting hole.

[0011] As described above, in a retractable reset socket panel, a reset spring is provided between the rotating arm and the first sliding seat to reset the rotating arm so that the plug can be inserted into the limiting hole.

[0012] As described above, a retractable reset socket panel is further slidably connected inside the base box to a second sliding seat that can extend from the opening. The second plug-in area is disposed on the second sliding seat. A second locking structure for restricting the second sliding seat from sliding out of the opening is provided between the second sliding seat and the base box. A second unlocking structure for releasing the second locking structure is also provided between the second sliding seat and the base box.

[0013] In the retractable reset socket panel described above, the structure of the second locking structure is the same as that of the first locking structure, and the structure of the second unlocking structure is the same as that of the second locking structure.

[0014] As described above, in a retractable reset socket panel, the side wall of the base box is provided with a first through hole communicating with its inner cavity.

[0015] As described above, a retractable reset socket panel has a first receiving cavity in the first sliding seat, and the first terminal is disposed in the first receiving cavity. A second wire hole is disposed on the first sliding seat corresponding to the position of the first wire hole and communicating with it. A second receiving cavity is provided in the second sliding seat, and the second terminal is disposed in the second receiving cavity. A wire passage is provided on the second sliding seat and the first sliding seat to connect the first receiving cavity and the second receiving cavity.

[0016] As described above, in a retractable reset socket panel, the base box is provided with a first limiting block that can extend out of the first wire hole to prevent the first sliding seat from completely disengaging from the base box.

[0017] As described above, in a retractable reset socket panel, the first sliding seat has a limiting groove on its side wall near the second sliding seat, and the second sliding seat has a second limiting block that can be inserted into the limiting groove to limit the sliding range of the second sliding seat.

[0018] Compared with the prior art, the present invention has the following advantages:

[0019] This invention features a sliding first sliding seat within the base box, on which the first plug-in area is positioned. Users can manually pull the first sliding seat outwards or push it inwards from the opening of the base box, thus changing the specific position of the first plug-in hole in space. This design breaks the limitations of fixed socket positions in traditional sockets, allowing users to flexibly adjust the socket position according to the size of the plug, the cable routing, or the surrounding space, greatly improving convenience and adaptability.

[0020] When multiple plugs need to be inserted into a socket simultaneously, physical interference often occurs, preventing them from being used at the same time. This product addresses this by designing the first plugging area to be slidable, allowing users to pull it out to a suitable position and create a staggered layout with the second plugging area. This effectively avoids collisions between adjacent plugs, solves the problem of "wasted sockets," and significantly improves the actual utilization rate of all sockets on the socket.

[0021] Adjustable socket positions prevent cables from becoming too tight due to fixed socket positions. This reduces the risk of cable wear and breakage caused by long-term stress, lowers the possibility of electrical safety accidents such as short circuits and leakage caused by cable damage, and improves safety during use. Attached Figure Description

[0022] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings, wherein:

[0023] Figure 1 This is a schematic diagram of the structure of this utility model;

[0024] Figure 2 This is a schematic diagram of the structure of the first sliding seat after it has slid out in this utility model;

[0025] Figure 3 This is a schematic diagram of the structure of the second sliding seat after it has slid out in this utility model;

[0026] Figure 4 This is a cross-sectional schematic diagram of the present invention;

[0027] Figure 5 This is an exploded view of the present invention;

[0028] Figure 6 This is a schematic diagram of the structure of this utility model after removing the bottom box;

[0029] Figure 7 This is a schematic diagram of the structure of the rotating arm, the first push plate, and the return spring in this utility model. Detailed Implementation

[0030] The present invention will be further described below with reference to the accompanying drawings:

[0031] like Figures 1 to 7 The retractable reset socket panel shown includes a socket body 1. The socket body 1 has a first plug-in area 10 and a second plug-in area 20. The first plug-in area 10 has a first plug-in hole 11, and the second plug-in area 20 has a second plug-in hole 21. The first plug-in hole 11 has a first conductive sheet 12, and the second plug-in hole 21 has a second conductive sheet 22. The socket body 1 also has a first terminal 13 electrically connected to the first conductive sheet 12 and a second terminal 23 electrically connected to the second conductive sheet 22. The socket body 1 includes a base box 3. The base box 3 has an open opening 31 communicating with its inner cavity. A first sliding seat 4 that can extend out of the open opening 31 is slidably connected inside the base box 3. The first plug-in area 10 is disposed on the first sliding seat 4. A first locking structure 5 for restricting the first sliding seat 4 from sliding out of the open opening 31 is provided between the first sliding seat 4 and the base box 3. A first unlocking structure 6 that can unlock the first locking structure 5 is also provided between the first sliding seat 4 and the base box 3.

[0032] This invention sets the first plug-in area 10 on a slidable first sliding seat 4. Users can manually pull the first sliding seat 4 outwards or push it inwards from the opening 31 of the base box 3, thereby changing the specific position of the first plug-in hole 11 in space. This allows users to flexibly adjust the hole position according to the size of the plug, the direction of the cable, or the surrounding space occupied, greatly improving the convenience and adaptability of use. It effectively avoids collisions between adjacent plugs, solves the problem of "hole waste," and significantly improves the actual utilization rate of all holes on the socket.

[0033] Specifically, the first locking structure 5 includes a limiting hole 51 on the base box 3 and a rotating arm 52 rotatably connected to the first sliding seat 4. The rotating arm 52 is provided with a plug 53 that can be inserted into the limiting hole 51 to restrict the sliding of the first sliding seat 4. When the first sliding seat 4 is not pulled out and is in its initial position, the plug 53 can be engaged in the limiting hole 51 to form an effective limit, preventing the first sliding seat 4 from accidentally sliding out and ensuring safe and stable use. This structure uses the rotation of the rotating arm 52 to realize the insertion and withdrawal of the plug 53. The action is reliable, the structure is compact, and it is easy to link with the unlocking structure, improving the convenience of users adjusting the position of the socket and the overall safety of use.

[0034] Furthermore, the first unlocking structure 6 includes a push plate rotatably connected to the first sliding seat 4 at its center. The push plate includes a handle portion 61 extending from the upper end of the first sliding seat 4. The first sliding seat 4 is provided with a clearance opening to provide space for the handle portion 61 to rotate. The lower end of the handle portion 61 is connected to a pushing portion 62 that can rotate with the handle portion 61, thereby driving the rotating arm 52 to rotate and causing the insertion block 53 to exit the limiting hole 51. The user only needs to press or flick the handle portion 61 to drive the rotating arm 52 to rotate through the pushing portion 62, causing the insertion block 53 to quickly exit the limiting hole 51, realizing the rapid unlocking of the locking structure. The operation is simple and effortless.

[0035] Furthermore, a return spring 54 is provided between the rotating arm 52 and the first sliding seat 4 to reset the rotating arm 52 so that the insert block 53 can be inserted into the limiting hole 51. When the handle part 61 is released, it can automatically reset.

[0036] Furthermore, two first locking structures 5 and first unlocking structures 6 are symmetrically arranged on the first sliding seat 4, so that when the handles 61 on both sides are pressed with one hand, the first sliding seat 4 can be pulled out from the opening 31.

[0037] Furthermore, the bottom of the base box 3 is provided with a plurality of mounting holes 34 for installation. Furthermore, the mounting holes 34 are strip-shaped holes, so that fine adjustments can be made during installation, making installation easier.

[0038] In one embodiment, a second sliding seat 7, which can extend from the opening 31, is slidably connected inside the base box 3. The second plug-in area 20 is disposed on the second sliding seat 7. A second locking structure 71 is provided between the second sliding seat 7 and the base box 3 to restrict the second sliding seat 7 from sliding out of the opening 31. A second unlocking structure 72 is also provided between the second sliding seat 7 and the base box 3 to unlock the second locking structure 71. This achieves dual adjustability of the positions of the two plug-in areas. Users can adjust the extension positions of the first sliding seat 4 and the second sliding seat 7 as needed, making the spacing and layout of the plug holes on the two sliding seats more flexible, further avoiding interference between large plugs, and significantly improving the adaptability and space utilization of the socket in complex power usage scenarios. With the independent second locking structure 71 and second unlocking structure 72, the stability and safety of each sliding seat during use can be ensured, while convenient adjustment can be achieved. The overall structure is symmetrical and reasonable, expanding the product functions and significantly enhancing the flexibility and convenience of use.

[0039] Furthermore, the structure of the second locking structure 71 is the same as or similar to the structure of the first locking structure 5, and the structure of the second unlocking structure 72 is the same as or similar to the structure of the second locking structure 71.

[0040] In one embodiment, the side wall of the bottom box 3 is provided with a first wire-passing hole 32 communicating with its inner cavity. The first sliding seat 4 is provided with a first receiving cavity 41, and the first terminal 13 is disposed in the first receiving cavity 41. A second wire-passing hole 42 communicating with the first wire-passing hole 32 is disposed on the first sliding seat 4. The second sliding seat 7 is provided with a second receiving cavity 73, and the second terminal 23 is disposed in the second receiving cavity 73. The second sliding seat 7 and the first sliding seat 4 are provided with a wire-passing channel 70 that connects the first receiving cavity 41 and the second receiving cavity 73, thereby facilitating wire routing.

[0041] In one embodiment, the base box 3 is provided with a first limiting block 33 that extends through the first wire hole 32, thereby preventing the first sliding seat 4 from completely detaching from the base box 3. This forms a mechanical limit, effectively preventing the first sliding seat 4 from completely detaching from the base box 3 when pulled out, thus improving product safety and structural reliability. At the same time, this limiting method has a simple structure, requires no additional parts, and cleverly utilizes the first wire hole 32 as a limiting channel, saving space and helping to extend the lifespan of the socket while ensuring user safety.

[0042] Furthermore, the first sliding seat 4 has a limiting groove 43 on its side wall near the second sliding seat 7, and the second sliding seat 7 has a second limiting block 74 that can be inserted into the limiting groove 43 to limit the sliding range of the second sliding seat 7. This prevents excessive extension that could lead to structural instability or damage. This design achieves linkage limiting between the two sliding seats, ensuring both individual adjustment flexibility and effective control of the overall extension length, thus improving the safety and reliability of the structure. At the same time, this limiting method is compact and responsive, helping to maintain the overall stability of the socket and extend its service life.

[0043] Furthermore, the first limiting block 33 is an elastic element connected to the base box 3 by a threaded fastener, and the second limiting block 74 is an elastic element connected to the second sliding seat 7 by a threaded fastener, so that it can undergo elastic deformation during installation, thereby facilitating assembly.

Claims

1. A retractable reset socket panel, characterized in that: The socket includes a socket body (1), which has a first plug-in area (10) and a second plug-in area (20). The first plug-in area (10) has a first plug-in hole (11), and the second plug-in area (20) has a second plug-in hole (21). The first plug-in hole (11) has a first conductive piece (12), and the second plug-in hole (21) has a second conductive piece (22). The socket body (1) also has a first terminal (13) electrically connected to the first conductive piece (12) and a second terminal (22) electrically connected to the second conductive piece (22). 3) The socket body (1) includes a bottom box (3), the bottom box (3) is provided with an open opening (31) communicating with its inner cavity, a first sliding seat (4) that can extend out from the open opening (31) is slidably connected inside the bottom box (3), the first plug-in area (10) is provided on the first sliding seat (4), a first locking structure (5) for restricting the first sliding seat (4) from sliding out from the open opening (31) is provided between the first sliding seat (4) and the bottom box (3), and a first unlocking structure (6) that can unlock the first locking structure (5) is also provided between the first sliding seat (4) and the bottom box (3).

2. The retractable reset socket panel according to claim 1, characterized in that: The first locking structure (5) includes a limiting hole (51) on the bottom box (3) and a rotating arm (52) rotatably connected to the first sliding seat (4). The rotating arm (52) is provided with a plug (53) that can be inserted into the limiting hole (51) to restrict the sliding of the first sliding seat (4).

3. A retractable reset socket panel according to claim 2, characterized in that: The first unlocking structure (6) includes a push plate rotatably connected to the first sliding seat (4) in the middle. The push plate includes a handle part (61) extending from the upper end of the first sliding seat (4). The lower end of the handle part (61) is connected to a push part (62) that can rotate with the handle part (61) to drive the rotating arm (52) to rotate and thus cause the insert (53) to exit the limiting hole (51).

4. A retractable reset socket panel according to claim 3, characterized in that: A reset spring (54) is provided between the rotating arm (52) and the first sliding seat (4) to reset the rotating arm (52) so that the insert (53) can be inserted into the limiting hole (51).

5. A retractable reset socket panel according to claim 4, characterized in that: The bottom box (3) is also slidably connected to a second sliding seat (7) that can extend from the opening (31). The second plug-in area (20) is located on the second sliding seat (7). A second locking structure (71) is provided between the second sliding seat (7) and the bottom box (3) to restrict the second sliding seat (7) from sliding out of the opening (31). A second unlocking structure (72) is also provided between the second sliding seat (7) and the bottom box (3) to unlock the second locking structure (71).

6. A retractable reset socket panel according to claim 5, characterized in that: The structure of the second locking structure (71) is the same as that of the first locking structure (5), and the structure of the second unlocking structure (72) is the same as that of the second locking structure (71).

7. A retractable reset socket panel according to claim 6, characterized in that: The bottom box (3) has a first threading hole (32) on its side wall that communicates with its inner cavity.

8. A retractable reset socket panel according to claim 7, characterized in that: The first sliding seat (4) is provided with a first receiving cavity (41), the first terminal (13) is provided in the first receiving cavity (41), the first sliding seat (4) is provided with a second wire hole (42) corresponding to the first wire hole (32) and communicating with it, the second sliding seat (7) is provided with a second receiving cavity (73), the second terminal (23) is provided in the second receiving cavity (73), and the second sliding seat (7) and the first sliding seat (4) are provided with a wire channel (70) that connects the first receiving cavity (41) and the second receiving cavity (73).

9. A retractable reset socket panel according to claim 8, characterized in that: The bottom box (3) is provided with a first limiting block (33) that can extend out of the first thread hole (32) to restrict the first sliding seat (4) from completely disengaging from the bottom box (3).

10. A retractable reset socket panel according to claim 1, characterized in that: The first sliding seat (4) has a limiting groove (43) on its side wall near the second sliding seat (7), and the second sliding seat (7) has a second limiting block (74) that can be inserted into the limiting groove (43) to limit the sliding range of the second sliding seat (7).