Extension socket

CN224233093UActive Publication Date: 2026-05-12ANKER INNOVATIONS TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANKER INNOVATIONS TECH CO LTD
Filing Date
2025-05-27
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Existing power strips are inconvenient to install and remove and can only be adapted to desktops of one thickness, lacking flexibility and convenience.

Method used

A socket design includes a first base and a second base. Through the cooperation of connectors and adjusters, the first base and the second base are allowed to move in a first direction to adjust the size of the clamping space to accommodate panels of different thicknesses.

Benefits of technology

实现了排插在不同规格厚度面板上的灵活装配和快捷拆装,提高了用户体验。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of household appliances, and particularly relates to an extension socket. A second seat body and a first seat body of the extension socket are arranged at an interval in a first direction, a clamping space is formed between the second seat body and the first seat body, and at least one of the first seat body and the second seat body is provided with a power supply butt joint part; the connecting piece is connected with the first seat body; the adjusting part is rotationally connected with the second seat body; the adjusting piece avoids the clamping space and is connected with the connecting piece, and when the adjusting piece rotates around the axial direction of the adjusting piece, the adjusting piece and the connecting piece move relatively so as to drive the second seat body and the first seat body to move relatively in the first direction, and then the size of the clamping space in the first direction is adjusted. The extension socket provided by the utility model has relatively good disassembly and assembly flexibility and convenience.
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Description

Technical Field

[0001] This application relates to the field of electrical technology, and more particularly to a power strip. Background Technology

[0002] In related technologies, power strips are mostly fixed on the desktop, which is inconvenient to install and remove, and can only be adapted to desktops of one thickness. There is room for improvement in the flexibility and convenience of installing and removing power strips.

[0003] Application content

[0004] This application provides a power strip that improves the flexibility and convenience of assembling and disassembling the power strip.

[0005] The technical solution of this application is as follows:

[0006] This application provides a power strip, comprising: a first base; a second base, spaced apart from the first base in a first direction, with a clamping space formed between the second base and the first base, wherein at least one of the first base and the second base is provided with a power supply connection portion; a connector, connected to the first base; and an adjusting member, rotatably connected to the second base; wherein the adjusting member avoids the clamping space and is connected to the connector, and when the adjusting member rotates about its own axis, the adjusting member and the connector move relative to each other, thereby causing the second base and the first base to move relative to each other in the first direction, thereby adjusting the size of the clamping space in the first direction.

[0007] The power strip provided in this application allows for the placement of a desktop or other panel between the first and second bases, which are spaced apart in a first direction. A connector links the first base, and an adjusting member rotatably connects to the second base and is also connected to the connector. When the adjusting member rotates around its own axis, the adjusting member and the connector move relative to each other, thereby causing the second and first bases to move relative to each other in the first direction. This adjusts the size of the clamping space in the first direction, allowing the distance between the first and second bases to be adjusted. This enables the power strip to be adapted for use on panels of different thicknesses. Since the distance between the first and second bases can be adjusted simply by rotating the adjusting member, it offers good flexibility and convenience in assembly and disassembly, thus improving the user experience.

[0008] In some embodiments, the connector includes a pull plate and a support portion, one end of the pull plate being connected to the first base body and the other end of the pull plate being connected to the support portion, and the adjusting member being threaded through the support portion.

[0009] In some embodiments, the support portion is located outside the first seat body, and the support portion is located on the side of the first seat body facing the second seat body.

[0010] In some embodiments, at least a portion of the adjusting member and the supporting portion are both located inside the second seat.

[0011] In some implementations, the support portion and the first base are arranged opposite to each other.

[0012] In some embodiments, the connector has a plurality of adjustment holes arranged sequentially along the first direction; at least a portion of the peripheral surface of the adjustment member is provided with threads, which are adapted to engage in at least a portion of the adjustment holes.

[0013] In some embodiments, the connector has a portion extending into the interior of the second body along the first direction, and the portion of the connector located inside the second body has the plurality of adjustment holes.

[0014] In some embodiments, the second seat has a snap-fit ​​groove, and the first end of the adjusting member is rotatably connected to the snap-fit ​​groove.

[0015] In some embodiments, the second base has a through hole, and the sidewall of the through hole has a plurality of first positioning grooves, which are spaced apart circumferentially around the through hole; the adjusting member moves through the through hole, and the circumferential surface of the adjusting member has a first connecting groove; the connector further includes a positioning member and a first elastic member; wherein: the positioning member has a first end and a second end, the first end of the positioning member is movably disposed in the first connecting groove, the second end of the positioning member is movably and retractably passed through the first connecting groove and moved into one of the first positioning grooves, and the first elastic member is disposed in the first connecting groove and connected between the first end of the positioning member and the inner wall of the first connecting groove.

[0016] In some embodiments, the second end of the adjusting member moves through the second seat, and the second end of the adjusting member is provided with an operating part; the connector further includes a second elastic member; wherein, one of the second end of the adjusting member and the operating part is provided with a second connecting groove, the second elastic member connects the second end of the adjusting member and the other of the operating part, the second elastic member is inserted into the second connecting groove, and can be separated from the second connecting groove.

[0017] In some embodiments, the power strip further includes: a first anti-slip member connected to the side of the first base facing the second base; or / and a second anti-slip member connected to the side of the second base facing the first base.

[0018] In some embodiments, the power strip further includes: a decorative element connecting one of the first base and the second base, the decorative element having a decorative cavity, at least a portion of the connector being disposed within the decorative cavity; and the other of the first base and the second base having a decorative groove, at least a portion of the decorative element being movably disposed within the decorative groove.

[0019] In some embodiments, the power strip further includes: a first guide portion connected to the first base; and a second guide portion connected to the second base, wherein the second guide portion and the first guide portion are inserted into each other.

[0020] In some embodiments, the first guide portion is connected to the side of the first seat body facing the second seat body, and the second guide portion is connected to the side of the second seat body facing the first seat body; at least one of the first guide portion, at least a portion of the second guide portion, and at least a portion of the connector is disposed within the decorative cavity.

[0021] In some embodiments, the second guide portion is movably inserted into the inner wall of the decorative element. Attached Figure Description

[0022] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0023] Figure 1 A schematic diagram of the structure of the power strip 10a of this application is shown;

[0024] Figure 2 It shows Figure 1 A top-down view;

[0025] Figure 3 It shows Figure 2 A schematic diagram of the AA cross-section;

[0026] Figure 4 This diagram shows the state of the power strip 10a when it is assembled on the panel 500;

[0027] Figure 5 It shows Figure 1 Another structural diagram from another perspective;

[0028] Figure 6 A schematic diagram of the assembly of the first anti-slip component 140 on the first seat 100 is shown;

[0029] Figure 7 A schematic diagram of the assembly of the second anti-slip component 220 on the second seat 200 is shown;

[0030] Figure 8 An assembly diagram of the first base 100 and the second base 200 is shown;

[0031] Figure 9 It shows Figure 8 An explosion diagram;

[0032] Figure 10 A schematic diagram of the structure of the first guide section 600 is shown;

[0033] Figure 11 for Figure 8 Another structural diagram from another perspective;

[0034] Figure 12 An assembly diagram of the decorative element 800 and the first base 100 is shown;

[0035] Figure 13 A schematic diagram of the connector structure is shown;

[0036] Figure 14 An assembly diagram of the pull plate 340 and the second seat 200 is shown;

[0037] Figure 15 It shows Figure 14 Another structural diagram from another perspective;

[0038] Figure 16 Another assembly schematic diagram of the first base 100 and the second pile 200 of the socket 10a is shown;

[0039] Figure 17 It shows Figure 16 An explosion diagram;

[0040] Figure 18 It shows Figure 16 A schematic diagram of the assembly of the pull plate 340 and the first base 100;

[0041] Figure 19 An exploded view of connector 300 is shown;

[0042] Figure 20 A schematic diagram of the adjusting element 400 is shown;

[0043] Figure 21 A schematic cross-sectional view of the assembly of the adjusting member 400 and the second seat 200 is shown.

[0044] Figure 22 A schematic diagram of the adjustment element 400 in some other embodiments is shown;

[0045] Figure 23 It shows Figure 22 An explosion diagram;

[0046] Figure 24 It shows Figure 22 The diagram shows the assembly of the adjusting member 400 and the second seat 200.

[0047] Figure 25 It shows Figure 24 A schematic diagram of the CC cross-section;

[0048] Figure 26 It shows Figure 25 Enlarged view of point A;

[0049] Figure 27 It shows Figure 22 A cross-sectional schematic diagram;

[0050] Figure 28 A schematic diagram of the structure of a certain circuit board 900 is shown;

[0051] Figure 29 A schematic diagram of the structure of the power strip 10b is shown;

[0052] Figure 30 It shows Figure 29 A top-down view;

[0053] Figure 31 It shows Figure 30 BB cross-sectional diagram;

[0054] Figure 32 An assembly diagram of the connector 300 and the adjusting member 400 in the power strip 10b is shown;

[0055] Figure 33 It shows Figure 32 An explosion diagram.

[0056] Explanation of reference numerals in the attached figures:

[0057] Power strip - 10a, 10b; First base - 100, power connection part - 120, three-prong socket - 122, charging interface - 124, first anti-slip part - 140, mounting hole - 160, through hole - 180; Second base - 200, power connector - 210, second anti-slip part - 220, through hole - 230, first positioning groove - 232, second guide part - 240, decorative groove - 260, second guide groove - 262, second limiting groove - 280, snap-fit ​​groove - 290, support protrusion - 292; Connector - 300, support part - 320, connecting hole - 322, threaded hole - 324, adjusting hole - 326, pull plate - 340, connecting section - 342, Connecting section - 344; Adjusting component - 400, Overlapping protrusion - 420, Operating part - 440, Receiving cavity - 442, Mounting hole - 444, Positioning block - 446, First connecting groove - 460, Second connecting groove - 480; Panel - 500; First guide part - 600, First guide groove - 620, Connecting protrusion - 640; Second guide part - 700, Guide protrusion - 720, First limiting groove - 740; Decorative component - 800, Decorative cavity - 820; Circuit board - 900, Clearance part - 920; Positioning component - 1000; First elastic component - 1100; Second elastic component - 1200, Connecting protrusion - 1220; Clamping space - S. Detailed Implementation

[0058] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.

[0059] Specific technical solutions will now be described in detail with reference to the accompanying drawings, which are not necessarily drawn to scale. Similar or identical reference numerals may be used to designate the same or similar parts in different figures. The use of similar or identical reference numerals in different figures does not mean that all figures including similar or identical reference numerals constitute a single or the same embodiment. The accompanying drawings illustrate the various embodiments discussed in this application in a generalized, illustrative, and not restrictive manner.

[0060] Desktop power strips are a type of power strip structure designed to provide multiple interfaces such as computer networks, telephone networks, and power supplies. However, existing desktop power strips are generally fixed to the desktop with screws or other means, which makes the installation process cumbersome and requires tools. They are also inconvenient to install and disassemble and can only be adapted to desktops of a certain thickness. There is room for improvement in the flexibility and convenience of installing and disassembling power strips.

[0061] To address the aforementioned technical issues, this application provides a power strip comprising a first base and a second base arranged opposite to each other. The first base and the second base are respectively positioned on opposite sides of a panel such as a desktop. Furthermore, the distance between the first base and the second base can be varied to accommodate the power strip on panels of different thicknesses. The power strip is quick and easy to assemble and disassemble, offering good flexibility and convenience, and improving the user experience.

[0062] Based on the above design concept, this application provides a power strip 10a. Figure 1 A schematic diagram of the structure of the power strip 10a of this application is shown. Figure 2 It shows Figure 1 A top-down view. Figure 3 It shows Figure 2 A schematic diagram of the AA cross-section. Combined with... Figures 1-3 The power strip 10 includes a first base 100, a second base 200, a connector 300, and an adjusting member 400. The first base 100 and the second base 200 are arranged opposite each other along a first direction. At least one of the first base 100 and the second base 200 is provided with a power supply docking part 120. A clamping space S is formed between the first base 100 and the second base 200. The connector 300 connects to the first base 100. The adjusting member 400 is rotatably connected to the second base 200. The adjusting member 400 avoids the clamping space S and is connected to the connector 300. When the adjusting member 400 rotates about its own axis, the adjusting member 400 and the connector 300 move relative to each other, thereby causing the second base 200 and the first base 100 to move relative to each other in the first direction, thereby adjusting the size of the clamping space S in the first direction.

[0063] Figure 4 This diagram shows the state of the power strip 10a when it is assembled with the panel 500. (Combined with...) Figure 4The power strip 10 provided in this application, since the first base 100 and the second base 200 are arranged opposite to each other in a first direction and are spaced apart, allows a desktop or other panel 500 to be placed between the first base 100 and the second base 200; since the connector 300 connects to the first base 100, and the adjusting member 400 is rotatably connected to the second base 200 and connected to the connector 300, rotating the adjusting member 400 causes it to rotate around its own axis, and the adjusting member 400 and the connector 300 move relative to each other, thus enabling the power strip to move. The second seat 200 and the first seat 100 move relative to each other, that is, the second seat 200 moves closer to or further away from the first seat 100, so that the size of the clamping space S between the first seat 100 and the second seat 200 (the distance between the first seat 100 and the second seat 200) can be adjusted. This allows the power strip 10 to be fitted to panels 500 of different thicknesses. Since the distance between the first seat 100 and the second seat 200 can be adjusted simply by rotating the adjusting member 400, it has good flexibility and convenience in disassembly and assembly, thereby improving the user experience.

[0064] Now by means of the appendix Figure 4 - Appendix Figure 21 Further details on the specific settings of the 10A power strip are described.

[0065] Combination Figure 4 For ease of description, the orientation of the first base 100 being located above the second base 200 will be used in the description. When the power strip 10 is mounted on the panel 500, the first base 100 is located on the top surface of the panel 500, and the second base 200 is located on the bottom surface of the panel 500, that is, the first direction is vertical. Of course, in other embodiments, the first base 100 and the second base 200 may also be arranged at an angle to the vertical direction, or the second base 200 may be located above the first base 100. The arrangement can be made according to the content described in this application, and will not be elaborated further in this application.

[0066] In some embodiments, since the first base 100 is disposed on the top surface of the panel 500, the first base 100 can be a DC power supply module commonly used in daily life. The power supply docking part 120 on the first base 100 includes at least one of a three-prong plug 122, a two-prong plug (not shown), and a charging interface 124. The charging interface 124 includes at least one of a USB interface, a Type-C interface, and a wireless charging interface (not shown), for example: combined with Figure 1The first base 100 has a three-prong socket 122 on its top surface and a USB interface and a Type-C interface on its inner side to meet the power supply needs of different types of devices, exhibiting a high degree of integration. Since the second base 200 is located on the bottom surface of the panel 500, it can be used for AC power modules that are less frequently used in daily life, for example... Figure 5 It shows Figure 1 Another structural diagram from a different perspective, combined with Figure 5 The second socket 200 has three-pronged sockets 122 at both ends and on its bottom surface. Additionally, the power connector 210 of the power strip 10a extends from the bottom surface of the second socket 200. In other embodiments, the power strip 10a can be customized to accommodate different user needs by adjusting the socket configurations of the first socket 100 and the second socket 200, thus providing good practicality.

[0067] Figure 6 A schematic diagram of the assembly of the first anti-slip component 140 on the first seat 100 is shown. Figure 7 A schematic diagram showing the assembly of the second anti-slip component 220 onto the second seat 200 is provided. Figure 6 as well as Figure 7 When the power strip 10a is assembled on the panel 500, in order to prevent the first base 100 and the second base 200 from moving with the panel 500, the power strip 10a of this application also includes a first anti-slip member 140 and a second anti-slip member 220. The first anti-slip member 140 is connected to the side of the first base 100 facing the second base 200, that is, the first anti-slip member 140 is connected to the bottom surface of the first base 100. The second anti-slip member 220 is connected to the side of the second base 200 facing the first base 100, that is, the second anti-slip member 220 is connected to the top surface of the second base 200. The first anti-slip component 140 and the second anti-slip component 220 may have textured surfaces on the side facing the panel 500. When the power strip 10a is assembled on the panel 500, the coefficient of friction between the first anti-slip component 140 and the second anti-slip component 220 and the panel 500 increases, so as to prevent the first base 100 and the second base 200 from moving with the panel 500 and improve the firmness of the power strip 10a assembled on the panel 500.

[0068] Specifically, in some embodiments, two or more first anti-slip members 140 may be spaced apart on the bottom surface of the first seat 100 along the length direction of the first seat 100. Each first anti-slip member 140 may be a pad, embedded in or bonded to the bottom surface of the first seat 100. Similarly, two or more second anti-slip members 220 may be spaced apart on the top surface of the second seat 200 along the length direction of the second seat 200. Each second anti-slip member 220 may also be a pad, embedded in or bonded to the bottom surface of the second seat 200. In other embodiments, the first anti-slip members 140 may extend along the length direction of the first seat 100 on the bottom surface of the first seat 100, and the second anti-slip members 220 may extend along the length direction of the second seat 200 on the top surface of the second seat 200. This application does not impose any limitations on these embodiments.

[0069] It should be noted that in some embodiments, the power strip 10a may include both the first anti-slip member 140 and the second anti-slip member 220, or it may include only one of the first anti-slip member 140 and the second anti-slip member 220. This application does not impose any restrictions on this.

[0070] Figure 8 An assembly diagram of the first base 100 and the second base 200 is shown. Figure 9 It shows Figure 8 An explosion diagram. For clarity, Figure 8 and Figure 9 The upper cover of the first base 100 and the bottom cover of the second base 200 are omitted. (Combined) Figures 6-9 Since the second seat 200 can move closer to or further away from the first seat 100, in order to enable the second seat 200 to move relative to the first seat 100 in a predetermined direction, the socket 10 of this application may further include a first guide portion 600 and a second guide portion 700. The first guide portion 600 is connected to the first seat 100; the second guide portion 700 is connected to the second seat 200, and the second guide portion 700 and the first guide portion 600 are interlocked. Under the adjustment of the second seat 200 moving closer to or further away from the first seat 100, the second guide portion 700 also moves synchronously back and forth within the first guide portion 600, thereby providing guidance for the movement direction of the second seat 200 relative to the first seat 100, so that the second seat 200 can move relative to the first seat 100 in a predetermined direction (first direction).

[0071] Figure 10 A structural schematic diagram of the first guide section 600 is shown. (Combined with...) Figure 9 as well as Figure 10Specifically, the first guide portion 600 is connected to the side of the first base 100 facing the second base 200, that is, the first guide portion 600 is connected to the bottom surface of the first base 100. The first guide portion 600 has a through first guide groove 620, the opening of the first guide groove 620 facing the horizontal direction. The second guide portion 700 is connected to the side of the second base 200 facing the first base 100, that is, the first guide portion 600 is connected to the top surface of the second base 200. The second guide portion 700 has a guide protrusion 720, which is fitted from the opening side of the first guide groove 620 into the first guide groove 620 and moves back and forth vertically within the first guide groove 620 to limit the movement direction of the second base 200.

[0072] Combination Figures 8-10 In some embodiments, the first guide portion 600 is snapped onto the first base 100. Specifically, the first guide portion 600 has a plate structure, with connecting protrusions 640 on both sides of its top end. The bottom surface of the first base 100 has mounting holes 160, through which the top end of the first guide portion 600 passes, and the connecting protrusions 640 are hung on the inner side of the bottom surface of the first base 100. In other embodiments, the first guide portion 600 may also be integrally formed with the first base 100.

[0073] In some embodiments, the second guide portion 700 and the second seat 200 are integrally formed. The specific assembly method of the second guide portion 700 and the second seat 200 can be referred to the relevant description below, which will not be repeated here.

[0074] It should be noted that in some other embodiments, the second guide portion 700 is provided with a first guide groove 620, the first guide portion 600 has a guide protrusion 720, and moves back and forth in the first guide groove 620, which can also limit the movement direction of the second seat 200. This application will not elaborate on this.

[0075] Combination Figures 6-10 The power strip 10 also includes a decorative element 800, which connects to one of the first base 100 and the second base 200. The decorative element 800 has a decorative cavity 820, in which at least a portion of the first guide portion 600, at least a portion of the second guide portion 700, and the portion of the connector 300 located between the first base 100 and the second base 200 are all disposed within the decorative cavity 820. With this configuration, as the second base 200 moves relative to the first base 100, the first guide portion 600 and the second guide portion 700 move within the decorative cavity 820. Simultaneously, since the portion of the connector 300 located between the first base 100 and the second base 200 is also disposed within the decorative cavity 820, the aforementioned components can be concealed through the decorative element 800, achieving a clean and aesthetically pleasing appearance for the product.

[0076] In some embodiments, the decorative element 800 is connected to the bottom surface of the first base 100. For example, the decorative element 800 is a plate-like structure with an elliptical cross-section, and the device and the first base 100 are integrally formed.

[0077] Figure 11 for Figure 8 A structural diagram from another perspective. Combined with... Figure 11 The top surface of the second base 200 is provided with a decorative groove 260, and at least a portion of the decorative element 800 is movably disposed within the decorative groove 260. With this arrangement, during the movement of the second base 200 relative to the first base 100, the movement of the decorative element 800 within the decorative groove 260 allows the decorative element 800 to completely fill the space between the first base 100 and the second base 200, ensuring a clean and aesthetically pleasing appearance of the product. Additionally, the decorative element 800 can be used to center the first base 100 and the second base 200, facilitating the assembly of the power strip 10a onto the panel 500. In other embodiments, the decorative element 800 can also be connected to the top surface of the second base 200, with the decorative groove 260 provided on the bottom surface of the first base 100, achieving the same technical effect of the decorative element 800 filling the space between the first base 100 and the second base 200, ensuring a clean and aesthetically pleasing appearance of the product.

[0078] Combination Figure 11 The decorative groove 260 and the mounting hole 160 are arranged opposite to each other. The guide protrusion 720 of the second guide part 700 is integrally formed on one side wall of the decorative groove 260. There is a gap between the second guide part 700 and the other side wall of the decorative groove 260, and the connector 300 can enter the second seat 200 through the gap.

[0079] In some embodiments, the second guide portion 700 is movably inserted into the inner wall of the decorative member 800 to guide the movement of the second guide portion 700, thereby causing the second seat 200 to move in a predetermined direction. Figure 12 An assembly diagram of the decorative element 800 and the first base 100 is shown. (Combined) Figure 12 The inner wall of the decorative component 800 is provided with a second guide groove 840, which extends through the first base 100 to the second base 200, i.e., it extends vertically. At least a portion of the second guide portion 700 is adaptedly disposed in the second guide groove 840. This arrangement restricts the movement direction of the second guide portion 700 through the second guide groove 840, ensuring that the second base 200 moves in a predetermined direction.

[0080] Combination Figure 12The second guide groove 840 opens towards the side of the panel 500, meaning the outer side of the decorative piece 800 is closed, while the inner side of the decorative piece 800 is open. The second guide portion 700 connects to the side of the decorative groove 260 facing the panel 500. The first guide portion 600 is disposed between the second guide portion 700 and the open side of the second guide groove 840, meaning the first guide portion 600 reciprocates between the second guide portion 700 and the open side of the second guide groove 840. This arrangement not only ensures the neat and beautiful appearance of the product but also makes the product structure compact, improving the firmness of the power strip 10a when assembled onto the panel 500.

[0081] The first guide portion 600 and the decorative part 800 of this application are connected to the outer side of the bottom surface of the first base 100, and the second guide portion 700 is connected to the outer side of the top surface of the second base 200. This arrangement minimizes the protrusion of the power strip 10a from the panel 500 when it is mounted on the panel 500. This ensures the cleanliness of the panel 500 and also helps to prevent clothing or other items from getting caught on the power strip 10a, thus improving the user experience.

[0082] Figure 13 A structural schematic diagram of the connector is shown. (Combined) Figure 13 The connector 300 includes a pull plate 340 and a support portion 320. One end of the pull plate 340 is connected to the first base 100, and the other end of the pull plate 340 extends toward the second base 200. The support portion 320 is connected to the other end of the pull plate 340. Specifically, the pull plate 340 includes a connecting section 342 and a connecting section 344. The connecting section 342 and the connecting section 344 can be integrally formed, or they can be connected by snap-fit ​​or other means. The connecting section 342 is arranged horizontally and extends within the first base 100. The connecting section 342 is connected to the bottom surface of the first base 100 by screws or other components to achieve assembly between the connecting section 342 and the first base 100. The connecting section 344 passes vertically through the first base 100 and extends into the second base 200, so that the pull plate 340 has an L-shaped structure. The support portion 320 is connected to the end of the connecting section 344 away from the connecting section 342.

[0083] Figure 14 An assembly diagram of the pull plate 340 and the second seat 200 is shown. (Combined) Figure 14 The second guide portion 700 has a first limiting groove 740. The opening side of the first limiting groove 740 faces away from the first guide portion 600. The connecting section 344 is adapted to pass through the first limiting groove 740 to limit the extension direction of the connecting section 344. It can also use fewer screws and other parts to fix the connecting section 342 to the bottom surface of the first base 100, which facilitates the assembly of the product.

[0084] Combination Figure 14The other end of the pull plate 340 extends into the second seat 200, so that at least part of the support 320 and the adjustment member 400 connected to the support 320 are located inside the second seat 200, so as to hide the support 320 and the adjustment member 400 through the second seat 200 and improve the aesthetics of the product.

[0085] Figure 15 It shows Figure 14 A structural diagram from another perspective. Combined with... Figure 15 The inner wall of the second seat 200 is provided with a second limiting groove 280. The opening side of the second limiting groove 280 faces the first guide part 600, and the opening directions of the first limiting groove 740 and the second limiting groove 280 are opposite. The connecting section 344 is adapted to pass through the second limiting groove 280 to limit the extension direction of the connecting section 344 and facilitate the assembly of the product.

[0086] It should be noted that the first limiting groove 740 and the second limiting groove 280 of this application can be arranged simultaneously, or only one can be provided. Both can achieve the technical effect of limiting the extension direction of the connecting segment 344 and facilitating product assembly. In addition, "at least a portion of the first guide portion 600 and at least a portion of the second guide portion 700 are provided in the decorative cavity 820" means that both the first guide portion 600 and the second guide portion 700 are provided in the decorative cavity 820, or only a portion of the first guide portion 600 and the second guide portion 700 are provided in the decorative cavity 820. The specific implementation can be adjusted according to the length of the decorative part 800.

[0087] Figure 16 Another assembly diagram of the first base 100 and the second pile 200 of the socket 10a is shown. Figure 17 It shows Figure 16 A schematic diagram of the explosion. Combined with... Figure 16 as well as Figure 17 In some other embodiments, the plug 10a omits the first guide portion 600 and the second guide portion 700. The decorative part 800 is adapted to pass through the decorative groove 260. The reciprocating movement of the decorative part 800 in the decorative groove 260 guides the movement of the second pile body 200 relative to the first seat body 100. At the same time, it can also align the first seat body 100 and the second pile body 200, which facilitates the assembly of the first seat body 100 and the second pile body 200.

[0088] Figure 18 It shows Figure 16 The diagram shows the assembly of the pull plate 340 with the first base 100. (Combined with...) Figure 18The bottom surface of the first base 100 has a through hole 180. The connecting section 344 of the pull plate 340 fits through the through hole 180, passes through the decorative piece 800, and enters the second base 200. The through hole 180 can also restrict the extension direction of the connecting section 344, and can fix the connecting section 342 to the bottom surface of the first base 100 with only a few screws and other components, so as to facilitate the assembly of the product.

[0089] Figure 19 An exploded view of the connector 300 is shown. (Combined with...) Figure 19 In some embodiments, the support portion 320 of the connector 300 is disposed on the outside of the first base 100 and on the side of the first base 100 facing the second base 200, that is, the support portion 320 and the first base 100 are arranged at intervals, and the adjusting member 400 is threaded through the support portion 320. The rotating adjusting member 400 can move relative to the support portion 320 and the first base 100, and drive the second base 200 closer to or further away from the first base 100, so that the size of the clamping space S between the first base 100 and the second base 200 (the distance between the first base 100 and the second base 200) can be adjusted, thereby enabling the assembly of the power strip 10 on panels 500 of different thicknesses.

[0090] Combination Figure 19 The support portion 320 serves as the carrier for the rotation of the adjusting member 400. A connecting hole 322 is provided on the support portion 320, and a connecting section 344 is inserted into the connecting hole 322. The connecting section 344 is assembled and connected to the support portion 320 by screws or other components, thereby fixing the support portion 320 and the pull plate 340 together, and consequently fixing the support portion 320 relative to the first seat 100. In some other embodiments, the support portion 320 and the connecting section 344 may be integrally formed; this application does not impose any limitations on this.

[0091] In some embodiments, the support portion 320 may be arranged horizontally within the second seat 200, such that the support portion 320 and the first seat 100 are disposed opposite each other. Since the second seat 200 can move relative to the first seat 100, and the connector 300 is connected to the first seat 100 (i.e., the connector 300 is fixed relative to the first seat 100), the second seat 200 can move relative to the support portion 320 of the connector 300. In other embodiments, the support portion 320 may also have a certain angle of inclination, such that the support portion 320 is arranged obliquely within the second seat 200.

[0092] Combination Figure 19The support portion 320 has a threaded hole 324 that extends vertically through the support portion 324. The adjusting member 400 is threadedly connected to the threaded hole 324. Rotating the adjusting member 400 allows it to rotate within the threaded hole 324 and move relative to the support portion 320. When rotation of the adjusting member 400 stops, the self-locking function of the thread fixes it relative to the threaded hole 324. Since the support portion 320 is arranged horizontally within the second base 200, the adjusting member 400 moves vertically relative to the support portion 320, meaning it performs a lifting and lowering motion.

[0093] Figure 20 A structural schematic diagram of the adjusting element 400 is shown. (Combined with...) Figure 20 The adjusting member 400 is a rod-shaped structure, and at least a portion of the peripheral surface of the adjusting member 400 has a thread 460 so that the adjusting member 400 is threadedly connected to the threaded hole 324 of the support portion 320.

[0094] Figure 21 A schematic cross-sectional view of the assembly of the adjusting member 400 and the second seat 200 is shown. Figure 20 as well as Figure 21 The second seat 200 has a locking groove 290, and the head of the adjusting member 400 (i.e., the first end of the adjusting member 400) is rotatably locked into the locking groove 290. When the adjusting member 400 is rotated, while the head of the adjusting member 400 rotates in the locking groove 290, the adjusting member 400 drives the second seat 200 to rise and fall synchronously, thereby driving the second seat 200 to move closer to or away from the first seat 100. When assembling the power strip 10 onto the panel 500, first place the first base 100 on the top surface of the panel 500, and use the decorative piece 800 to position the second base 200 in a suitable position below the panel 500. Rotate the adjusting piece 400, which drives the second base 200 to move towards the first base 100, that is, the second base 200 moves upward, until the second base 200 is in contact with the bottom surface of the panel 500. Stop rotating the adjusting piece 400, and the power strip 10 is assembled onto the panel 500. When it is necessary to disassemble the power strip 10, the operation is reversed, which will not be described in detail in this application.

[0095] Combination Figure 20 as well as Figure 21The snap-fit ​​groove 290 is opened on the inner side of the top surface of the second base 200. The inner wall of the snap-fit ​​groove 290 is provided with a plurality of support protrusions 292. The plurality of support protrusions 292 are spaced apart around the periphery of the snap-fit ​​groove 290. The head of the adjusting member 400 is provided with a plurality of overlapping protrusions 420. The plurality of overlapping protrusions 420 are spaced apart so that the plurality of overlapping protrusions 420 can be gathered together under the action of external force. The head of the adjusting member 400 moves through the support protrusions 292. The overlapping protrusions 420 are placed on the support protrusions 292 so that the head of the adjusting member 400 can rotate in the snap-fit ​​groove 290 but cannot be disengaged from the snap-fit ​​groove 290.

[0096] Combination Figure 20 as well as Figure 21 The tail of the adjusting member 400 (i.e. the second end of the adjusting member 400) moves through the second seat 200 so that the tail of the adjusting member 400 is outside the second seat 200, so as to facilitate the user to operate the adjusting member 400.

[0097] Combination Figure 20 as well as Figure 21 In some embodiments, the tail of the adjusting member 400 moves through the side of the second seat 200 facing away from the first seat 100, that is, the tail of the adjusting member 400 is located below the bottom of the second seat 200. The tail of the adjusting member 400 is provided with an operating part 440, which is located on the side of the second seat 200 facing away from the first seat 100. That is, the operating part 440 is located on the outer side of the bottom surface of the second seat 200. The operating part 440 can be a nut, allowing the user to easily hold the operating part 440 to operate the adjusting member 400.

[0098] Figure 22 A schematic diagram of the adjustment member 400 in some other embodiments is shown. Figure 23 It shows Figure 22 An explosion diagram. Figure 24 It shows Figure 22 The diagram shows the assembly of the adjusting member 400 and the second seat 200. Figure 25 It shows Figure 24 CC cross-section schematic diagram, Figure 26 It shows Figure 24 A magnified diagram of point A. Combined with... Figures 22-26In some other embodiments, the second seat 200 has a through hole 230, for example, the through hole 230 is located at the bottom of the second seat 200, and the side wall of the through hole 230 has a plurality of first positioning grooves 232, which are spaced apart around the circumference of the through hole 230; the adjusting member 400 moves through the through hole 230, and the circumferential surface of the adjusting member 400 has a first connecting groove 460. The power strip 10a also includes a positioning member 1000 and a first elastic member 1100. The positioning member 1000 has a first end and a second end. The first end of the positioning member 1000 is movably disposed in the first connecting groove 460, and the second end of the positioning member 1000 is movably and retractably passed through the first connecting groove 460. The first elastic member 1100 can be a spring. The first elastic member 1100 is disposed in the first connecting groove 460 and connected between the first end of the positioning member 1000 and the inner wall of the first connecting groove 460.

[0099] When the user does not operate the adjusting member 400, the first elastic member 1100 supports the positioning member 1000, causing the second end of the positioning member 1000 to pass through the opening side of the first connecting groove 460 to protrude from the circumferential surface of the adjusting member 400 and move into the first positioning groove 232; when the user operates the adjusting member 400, causing it to rotate, the adjusting member 400 drives the positioning member 1000 to rotate synchronously, and the second end of the positioning member 1000 is pressed by the side wall of the first positioning groove 232, and the positioning member 1000... The second end of the positioning member 1000 moves into the first connecting groove 460 through the opening side of the first connecting groove 460, simultaneously compressing the first elastic member 1100. As the user continues to rotate the adjusting member 400, when the opening side of the first connecting groove 460 aligns with the opening side of another first positioning groove 232, driven by the reset of the first elastic member 1100, the second end of the positioning member 1000 passes through the opening side of the first connecting groove 460 again through the circumference of the adjusting member 400 and moves into another first positioning groove 232. This arrangement allows the positioning member 1000 to extend and retract multiple times with the rotation of the adjusting member 400. When the second end of the positioning member 1000 moves into the first positioning groove 232, it impacts the groove wall of the first positioning groove 232, producing a clicking sound. It also creates a damping sensation during the rotation of the adjusting member 400, improving the user's feel when operating the adjusting member 400 and providing excellent practicality.

[0100] Combination Figure 26 The positioning member 1000 can be a rod structure. The middle part of the circumference of the positioning member 1000 protrudes from its two ends. The first elastic member 1100 is sleeved on the first end of the positioning member 1000 and is located between the middle part of the positioning member 1000 and the bottom of the first positioning groove 232. The second end of the positioning member 1000 is arranged in a spherical shape, so that the second end of the positioning member 1000 can be smoothly squeezed by the side wall of the first positioning groove 232, driving the second end of the positioning member 1000 to move towards the first connecting groove 460.

[0101] It should be noted that the plurality of first positioning grooves 232 in this application are equally spaced around the through hole 230 in the circumferential direction, and the size of the first positioning groove 232 along the opening direction of the through hole 230 must be greater than the step stroke of the adjusting member 400, so as to avoid the opening of the first positioning groove 232 restricting the step of the adjusting member 400.

[0102] Figure 27 It shows Figure 22 A cross-sectional schematic diagram, combined with Figure 27 In some embodiments, the power strip 10a further includes a second elastic member 1200. A second connecting groove 480 is provided on one of the second end of the adjusting member 400 and the operating part 440. The second elastic member 1200 connects the second end of the adjusting member 400 and the other end of the operating part 440. The second elastic member 1200 is inserted into the second connecting groove 480 and can be separated from it. That is, the provision of the second elastic member 1200 allows the operating part 440 and the second end of the adjusting member 400 to be connected or separated. When the user rotates the operating part 440, the second elastic element 1200 connects the second end of the adjusting element 400 and the operating part 440. The operating part 440 and the second end of the adjusting element 400 rotate synchronously to drive the second seat 200 to move towards the first seat. When the second seat 200 moves to the bottom of the panel 500, the second end of the adjusting element 400 can no longer rotate. At this time, if the user continues to rotate the operating part 440, the second elastic element 1200 will disengage from the second connecting groove 480, and the operating part 440 and the second end of the adjusting element 400 will separate. The rotation of the operating part 440 cannot drive the adjusting element 400 to continue rotating. This setting can avoid the phenomenon of damaging the product by continuing to rotate the adjusting element 400 when it is fixed, and has good practicality.

[0103] Combination Figure 27In specific implementation, a receiving cavity 442 is formed inside the operating part 440. A mounting hole 444 is provided on one side of the operating part 440. The second end of the adjusting member 400 moves through the mounting hole 444 and is located in the receiving cavity 442. The second connecting groove 480 is opened on the circumferential surface of the second end of the adjusting member 400. Two positioning blocks 446 are provided in the receiving cavity 442. The two positioning blocks 446 are arranged opposite to each other on both sides of the second end of the adjusting member 400. The second elastic member 1200 is roughly U-shaped. The two ends of the second elastic member 1200 are hooked onto the two positioning blocks 446 respectively. A connecting protrusion 1220 is provided in the middle of the second elastic member 1200. The connecting protrusion 1220 is spherical and can be movably inserted into the second connecting groove 480. In another embodiment, the second connecting groove 480 can also be formed on the operating part 440, and the second elastic member 1200 is connected to the second end of the adjusting member 400 and can be movably inserted into the second connecting groove 480 on the operating part 440, which can also achieve the above technical solution.

[0104] It should be noted that the adjustment member 400 shown in this application avoids the clamping space S, which means that the adjustment member 400 in this application does not have a part located between the first seat 100 and the second seat 200, so as to avoid affecting the adjustment member 400 and interfering with the fit between the second seat 200 and the panel 500.

[0105] Figure 28 A schematic diagram of the structure of a certain circuit board is shown, combined with Figure 28 In some embodiments, the second base 200 is provided with a component for realizing the function of the power strip 10, such as a circuit board 900. In order to avoid interference of the circuit board 900 with the lifting and lowering of the adjusting member 400, the circuit board 900 may have a clearance part 920. The clearance part 920 may be a hole-like structure or a groove-like structure. The adjusting member 400 can pass through the clearance part 920 with a gap so that the adjusting member 400 can lift and lower normally.

[0106] As described above, the power strip 10a provided in this application can be adjusted by rotating the adjusting member 400 to move the second base 200 closer to or further away from the first base 100, thereby adjusting the distance between the first base 100 and the second base 200. This facilitates the assembly of the power strip 10a onto panels 500 of different thicknesses, and the power strip 10a can be assembled onto the panel 500 without the need for tools, thus exhibiting good flexibility and convenience in disassembly and assembly.

[0107] Based on the same design concept, this application also provides a power strip 10b. Figure 29 A schematic diagram of the structure of the power strip 10b is shown. Figure 30 It shows Figure 29 A top-down view. Figure 31 It shows Figure 30 A schematic diagram of the BB cross-section, combined with Figures 29-31Similar to the aforementioned power strip 10a, power strip 10b also includes a first base 100, a second base 200, a connector 300, and an adjusting member 400. Unless otherwise specified, the structure and function of these components in power strip 10b are substantially the same as those in power strip 10a, and therefore can be referred to accordingly. Figures 1-21 The corresponding description will not be repeated here.

[0108] Figure 32 An assembly diagram of the connector 300 and adjusting member 400 in the power strip 10b is shown. Figure 33 It shows Figure 31 A schematic diagram of the explosion. Combined with... Figure 32 as well as Figure 33 Unlike the power strip 10a, the connector 300 of the power strip 10b has multiple adjustment holes 326. The multiple adjustment holes 326 are arranged sequentially along the direction from the first base 100 to the second base 200 (i.e., the first direction). At least a portion of the circumferential surface of the adjustment member 400 is provided with threads 460, which are adapted to engage in at least a portion of the adjustment holes 326.

[0109] The power strip 10b provided in this application has multiple adjustment holes 326 on the connector 300, which are arranged sequentially along the direction from the first base 100 to the second base 200. At least a portion of the circumferential surface of the adjustment member 400 is provided with threads 460, which are adapted to engage in at least a portion of the adjustment holes 326. Therefore, when the adjustment member 400 is rotated, the threads 460 on the adjustment member 400 can advance in the multiple adjustment holes 326, thereby driving the adjustment member 400 to move closer to or away from the first base 100. Because the adjusting member 400 is rotatably connected to the second base 200, when the adjusting member 400 is rotated, the adjusting member 400 can move closer to or further away from the first base 100 simultaneously with the second base 200, so that the distance between the first base 100 and the second base 200 can be adjusted. This allows the power strip 10 to be adapted for assembly on panels 500 of different thicknesses. Since the distance between the first base 100 and the second base 200 can be adjusted simply by rotating the adjusting member 400, it offers good flexibility and convenience in assembly and disassembly. The specific details of the power strip 10 will now be further described with reference to the accompanying drawings.

[0110] In some embodiments, the connector 300 has a portion arranged along the direction from the first base 100 to the second base 200, that is, the connector 300 has a portion arranged vertically (along the first direction). This portion can be the connecting section 344 of the power strip 10a. The difference is that the connecting section 344 of the power strip 10a does not have adjustment holes 326, while the connecting section 344 of the power strip 10b has multiple adjustment holes 326. The distance between adjacent adjustment holes 326 is consistent with the pitch of the thread 460 on the adjusting member 400. Thus, when the adjusting member 400 is rotated, the thread 460 on the adjusting member 400 can advance in the multiple adjustment holes 326, thereby driving the adjusting member 400 to move closer to or away from the first base 100. Of course, in some embodiments, the connecting section 344 of the power strip 10a may also have the above-mentioned adjustment holes 326, and the support portion 320 of the power strip 10b may also have a certain tilt angle.

[0111] Furthermore, the connector 300 has a portion extending into the interior of the second base 200 along the first direction; that is, the connecting section 344 of the power strip 10a has a portion that inserts into the interior of the second base 200. The connector 300 located inside the second base 200 has the aforementioned plurality of adjustment holes 326. This arrangement ensures that at least a portion of the connector 300 with the adjustment holes 326 and the connected adjustment member 400 are both located inside the second base 200, thereby concealing the support portion 320 and the adjustment member 400 within the second base 200 and improving the product's aesthetics.

[0112] Combination Figure 32 as well as Figure 33 Since the adjusting member 400 is stepped into the adjusting hole 326 of the support 320, and the adjusting member 400 can be supported on the support 320, the rotation of the adjusting member 400 does not require the support 320, and the connector 300 of the power strip 10b can be without the support 320.

[0113] Therefore, the power strip 10b provided in this application can be adjusted by simply rotating the adjusting member 400 so that the second base 200 is closer to or further away from the first base 100, thereby adjusting the distance between the first base 100 and the second base 200. This facilitates the assembly of the power strip 10b onto panels 500 of different thicknesses, and the power strip 10b can be assembled onto the panel 500 without the need for tools, thus exhibiting good flexibility and convenience in disassembly and assembly.

[0114] It should be noted that, in some embodiments, when the power strip 10 shown in this application is assembled to the panel 500, the first base 100 can be placed on the top surface of the panel 500 first, and the adjusting member 400 can be rotated. The adjusting member 400 and the second base 200 move towards the first base 100 until the second base 200 is in contact with the bottom surface of the panel 500. The self-locking of the adjusting member 400 and the connecting member 300 is used to fix the second base 200 relative to the panel 500, thereby making the power strip 10 stably assembled onto the panel 500. In other embodiments, the second seat 200 is first placed on the bottom surface of the panel 500, and the adjusting member 400, the connecting member 300 and the first seat 100 are rotated to move towards the second seat 100 until the first seat 100 is attached to the top surface of the panel 500. The self-locking of the adjusting member 400 and the connecting member 300 is used to fix the second seat 200 relative to the panel 500, thereby making the power strip 10 stably assembled onto the panel 500.

[0115] In other embodiments, the connector 300 and the adjusting member 400 may also be connected in the form of a gear and rack. For example, the connector 300 is connected to the first base 100, the connector 300 is a rack structure, the connector 300 extends along the first direction, the adjusting member 400 is rotatably connected to the second base 200, the adjusting member 400 is a gear structure, the central axis of the adjusting member 400 may be perpendicular to the first direction, the adjusting member 400 and the connector 300 are meshed together, or the central axis of the adjusting member 400 may be set along the first direction, the adjusting member 400 is connected to the connector 300 through an intermediate gear, and the adjusting member 400 has a portion protruding from the side of the second base 200. With this configuration, the user can rotate the adjusting member 400 by operating the part of the adjusting member 400 that protrudes from the second seat 400. The adjusting member 400 steps on the connecting member 300, causing the adjusting member 400 and the connecting member 300 to move relative to each other. This, in turn, causes the second seat 200 and the first seat 100 to move relative to each other in the first direction, thereby adjusting the size of the clamping space S in the first direction. This allows the distance between the first seat 100 and the second seat 200 to be adjusted, enabling the power strip 10 to be fitted onto panels 500 of different thicknesses.

[0116] In the accompanying drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components. In the description of this application, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, they are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the accompanying drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.

[0117] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A power strip, characterized in that, The power strip includes: The first body; The second seat is spaced apart from the first seat in a first direction, and a clamping space is formed between the second seat and the first seat. At least one of the first seat and the second seat is provided with a power supply docking part. Connector, connecting to the first base; and Adjustable component, rotatably connected to the second seat body; The adjusting member avoids the clamping space and is connected to the connecting member. When the adjusting member rotates about its own axis, the adjusting member and the connecting member move relative to each other, thereby driving the second seat and the first seat to move relative to each other in a first direction, thereby adjusting the size of the clamping space in the first direction.

2. The power strip according to claim 1, characterized in that, The connector includes a pull plate and a support portion. One end of the pull plate is connected to the first base body, and the other end of the pull plate is connected to the support portion. The adjusting member is threaded through the support portion.

3. The power strip according to claim 2, characterized in that, The support portion is located on the outside of the first seat body, and the support portion is located on the side of the first seat body facing the second seat body.

4. The power strip according to claim 3, characterized in that, At least a portion of the adjusting member and the supporting portion are both located inside the second seat.

5. The power strip according to claim 2, characterized in that, The support portion and the first base are arranged opposite to each other.

6. The power strip according to claim 1, characterized in that, The connector is provided with a plurality of adjustment holes, which are arranged sequentially along the first direction; At least a portion of the circumferential surface of the adjusting member is provided with threads, which engage in a suitable manner with at least a portion of the adjusting hole.

7. The power strip according to claim 6, characterized in that, The connector has a portion extending into the interior of the second body along the first direction, and the portion of the connector located inside the second body has the plurality of adjustment holes.

8. The power strip according to any one of claims 1-7, characterized in that, The second seat has a snap-fit ​​groove, and the first end of the adjusting member is rotatably connected to the snap-fit ​​groove.

9. The power strip according to any one of claims 1-7, characterized in that, The second base body has a through hole, and the side wall of the through hole has a plurality of first positioning grooves, which are spaced apart around the circumference of the through hole. The adjusting member moves through the through hole, and a first connecting groove is provided on the circumferential surface of the adjusting member; The power strip also includes a positioning member and a first elastic member. The positioning member has a first end and a second end. The first end of the positioning member is movably disposed in the first connecting groove. The second end of the positioning member is movably and retractably passed through the first connecting groove and moved into one of the first positioning grooves. The first elastic member is disposed in the first connecting groove and connected between the first end of the positioning member and the inner wall of the first connecting groove.

10. The power strip according to any one of claims 1-7, characterized in that, The second end of the adjusting member moves through the second seat body, and the second end of the adjusting member is provided with an operating part; The power strip also includes a second elastic element; wherein... A second connecting groove is provided on one of the second end of the adjusting member and the operating part. The second elastic member connects the second end of the adjusting member and the other end of the operating part. The second elastic member is inserted into the second connecting groove and can be separated from the second connecting groove.

11. The power strip according to any one of claims 1-7, characterized in that, The power strip also includes: A first anti-slip component is connected to the side of the first seat body facing the second seat body; or / and The second anti-slip component is connected to the side of the second seat facing the first seat.

12. The power strip according to any one of claims 1-7, characterized in that, The power strip also includes: A decorative component is provided, which connects one of the first base body and the second base body. The decorative component has a decorative cavity, and at least a portion of the connecting member is disposed within the decorative cavity. The other of the first base body and the second base body has a decorative groove, and at least a portion of the decorative component is movably disposed within the decorative groove.

13. The power strip according to claim 12, characterized in that, The power strip also includes: A first guide portion, the first guide portion being connected to the first base body; The second guide portion is connected to the second base body, and the second guide portion and the first guide portion are inserted and connected.

14. The power strip according to claim 13, characterized in that, The first guide portion is connected to the side of the first seat body facing the second seat body, and the second guide portion is connected to the side of the second seat body facing the first seat body. At least one of the first guide portion, at least one of the second guide portion, and at least one of the connector is disposed within the decorative cavity.

15. The power strip according to claim 14, characterized in that, The second guide portion is movably inserted into the inner wall of the decorative element.