power strip
By using connecting rods and riveting to connect cables in the plug-in assembly, the problem of difficult assembly of traditional power strips is solved, realizing the simplification of the power strip structure and automated assembly, and making it aesthetically pleasing.
Patent Information
- Application Number
- CN202522307643.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-30
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-10-30
AI Technical Summary
Traditional power strips are difficult to assemble and cannot be automated.
The first and second connecting rods in the plug-in assembly are used to connect the poles of the indicator light body to simplify the plug structure, and the cables and terminals are connected by riveting to reduce the number of wire connections.
The structure of the power strip has been simplified, the assembly difficulty has been reduced, and it is easy to automate the assembly process, while also making the power strip more aesthetically pleasing.
Smart Images

Figure CN224683578U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electrical equipment technology, and in particular to a power strip. Background Technology
[0002] Power strips, also known as outlets or power converters, are electrical devices used to expand power outlets. They can extend a single power socket into multiple sockets, thus solving the problem of insufficient socket quantity and improving the portability of electrical appliances for users. However, traditional power strips present technical challenges in assembly.
[0003] Therefore, it is necessary to provide a new type of power strip to solve the above-mentioned technical problems. Utility Model Content
[0004] The main purpose of this utility model is to provide a power strip that solves the technical problem of high assembly difficulty in power strips.
[0005] To achieve the above objectives, this utility model proposes a power strip, comprising: shell; A plug-in assembly, disposed within the housing, the plug-in assembly being provided with a first connecting rod and a second connecting rod; A cable, one end of which is inserted into the housing and connected to the plug-in assembly; An indicator light assembly includes a mounting base and an indicator light body. The mounting base is disposed in the housing, and the indicator light body is disposed in the mounting base. The indicator light body has a first pole and a second pole. The first pole is electrically connected to a first connecting rod, and the second pole is electrically connected to a second connecting rod.
[0006] In one embodiment, the mounting base is provided with a first socket and a second socket, at least a portion of the first pole is placed in the first socket, at least a portion of the second pole is placed in the second socket, at least a portion of the first connecting rod is inserted into the first socket and electrically connected to the first pole, and at least a portion of the second connecting rod is inserted into the second socket and electrically connected to the second pole.
[0007] In one embodiment, the indicator light assembly further includes a first elastic element and a second elastic element. The first elastic element is disposed in the first socket and connects the first pole and the first connecting rod, and the second elastic element is disposed in the second socket and connects the second pole and the second connecting rod.
[0008] In one embodiment, the mounting base includes a first base and a second base, the first base being disposed on the outer casing, and the second base being disposed on the first base; The first base is provided with a first groove and a second groove, and the second base is provided with a first slot and a second slot. The first slot is provided corresponding to the first groove and communicates with the first groove to form the first insertion hole, and the second slot is provided corresponding to the second groove and communicates with the second groove to form the second insertion hole.
[0009] In one embodiment, the plug-in assembly and the indicator light assembly are spaced apart along the length direction of the housing. The plug-in assembly includes a plug-in body, a first plug-in block, and a second plug-in block. The plug-in body is disposed in the housing, and the first plug-in block and the second plug-in block are spaced apart along the width direction of the housing. The first connecting rod is disposed on the side of the first plug block facing the indicator light assembly and is inserted into the first socket; the second connecting rod is disposed on the side of the second plug block facing the indicator light assembly and is inserted into the second socket.
[0010] In one embodiment, the plug-in assembly is provided with at least two terminals, the cable includes at least two wires, the number of wires is equal to the number of terminals and they are arranged in a one-to-one correspondence, and at least one end of the wire is riveted to the corresponding terminal; the first pole is electrically connected to the corresponding wire through the first connecting rod, and the second pole is electrically connected to the corresponding wire through the second connecting rod.
[0011] In one embodiment, at least one of the terminals is a ring terminal, and the ends of each cable are riveted to the corresponding ring terminal.
[0012] In one embodiment, the inner surface of the annular terminal is provided with a protrusion that protrudes towards the center; the inner surface of each protrusion abuts against the end of the corresponding cable to press the end of the cable.
[0013] In one embodiment, the number of terminals and cables are both three: the three terminals are a first terminal, a second terminal, and a third terminal; the three cables are a neutral wire, a live wire, and a ground wire; the end of the neutral wire is riveted to the first terminal; the end of the live wire is electrically connected to the second terminal; and the ground wire is riveted to the third terminal.
[0014] In one embodiment, the plug-in assembly includes a plug-in body, a first plug-in block, a second plug-in block, and a third plug-in block. The plug-in body is disposed in the housing. The first plug-in block, the third plug-in block, and the second plug-in block are sequentially spaced apart from the plug-in body. The first plug-in block is provided with a first terminal and a first connecting rod. The second plug-in block is provided with a second terminal and a second connecting rod. The third plug-in block is provided with a third terminal.
[0015] In one embodiment, the first plug-in block is provided with a first slot and a second slot in sequence along the length direction of the outer shell, the second plug-in block is provided with a third slot and a fourth slot in sequence along the length direction of the outer shell, the first slot and the third slot are spaced apart along the width direction of the outer shell, the second slot and the fourth slot are spaced apart along the width direction of the outer shell, the third plug-in block is disposed between the first slot and the third slot, and the third plug-in block is provided with a fifth slot.
[0016] In one embodiment, the power strip further includes a button assembly, the button assembly including a base and a button body, the base being disposed on the housing, the button body being movably disposed on the base and exposed to the housing, and the base being provided with a first connection terminal and a second connection terminal; The second plug block is provided with an extension plate, the second terminal is located at the end of the extension plate away from the second plug block and overlaps with the second connection terminal, and the end of the live wire is riveted to the first connection terminal.
[0017] The technical solution of this utility model simplifies the structure of the power strip and reduces the assembly difficulty by setting a first connecting rod and a second connecting rod in the plug-in assembly to connect the first and second poles of the indicator light body. In this embodiment, the outer shell protects the plug-in assembly, indicator light assembly, and other components installed inside. The plug-in assembly is located in the outer shell and has a socket for inserting the power supply plug. The cable transmits electrical energy; one end of the cable has a plug, and the other end is inserted into the outer shell. The first pole of the indicator light body is electrically connected to the neutral wire via the first connecting rod, and the second pole of the indicator light body is electrically connected to the live wire via the second connecting rod. When assembling the power strip, no additional wires are needed to achieve the electrical connection between the indicator light body and the cable, simplifying the power strip structure, reducing assembly difficulty, and facilitating automated assembly. Furthermore, by using the above structure to achieve the electrical connection between the indicator light body and the cable, the indicator light assembly and the plug-in assembly can be spaced apart along the length of the power strip, making the power strip more aesthetically pleasing. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model 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 utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0019] Figure 1 A schematic diagram of the structure of the power strip in one embodiment of this utility model; Figure 2 A schematic diagram of the internal structure of a power strip in one embodiment of the present invention; Figure 3 A schematic diagram of the structure of the first plug-in block, the second plug-in block, and the third plug-in block in one embodiment of this utility model; Figure 4 A schematic diagram of the indicator light assembly in one embodiment of this utility model; Figure 5 for Figure 4 Cross-sectional view.
[0020] Explanation of icon numbers: 100. Housing; 200. Plug-in assembly; 210. Terminal block; 220. Plug-in body; 230. First plug-in block; 231. First terminal block; 232. First slot; 233. Second slot; 234. First connecting rod; 240. Second plug-in block; 241. Second terminal block; 242. Third slot; 243. Fourth slot; 244. Extension plate; 245. Second connecting rod; 250. Third plug-in block; 251. Third terminal block; 252. Fifth slot; 300. Cable; 310. Cable; 311. Neutral wire; 312. Live wire Wire; 313, Ground wire; 400, Indicator light assembly; 410, Mounting base; 411, First socket; 412, Second socket; 413, First base body; 4131, First groove; 4132, Second groove; 414, Second base body; 4141, First slot; 4142, Second slot; 420, Indicator light body; 421, First pole; 422, Second pole; 430, First elastic element; 440, Second elastic element; 500, Button assembly; 510, Base; 511, First connecting terminal; 512, Second connecting terminal; 520, Button body.
[0021] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0023] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0024] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, if "and / or" or "and / or" appears throughout the text, its meaning includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously.
[0025] Furthermore, the technical solutions of the various embodiments of this utility model can be combined with each other, but only if they are based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0026] Power strips, also known as outlets or power converters, are electrical devices used to expand power interfaces, turning a single power outlet into multiple outlets. In actual production and R&D, researchers have found that assembling power strips typically requires installing the plug components onto the casing and connecting the indicator light body and cables with wires; however, this connection method is difficult to operate, highly dependent on manual labor, and increases the assembly complexity of the power strip, hindering automated assembly.
[0027] This utility model proposes a power strip that aims to solve the technical problem of high assembly difficulty in power strips.
[0028] Please see Figures 1 to 5In one embodiment of this utility model, the power strip includes a housing 100, a plug-in assembly 200, a cable 300, and an indicator light assembly 400. The plug-in assembly 200 is disposed within the housing 100 and includes a first connecting rod 234 and a second connecting rod 245. One end of the cable 300 is inserted into the housing 100 and connected to the plug-in assembly 200. The indicator light assembly 400 includes a mounting base 410 and an indicator light body 420. The mounting base 410 is disposed within the housing 100, and the indicator light body 420 is disposed on the mounting base 410 and exposed outside the housing 100. The indicator light body 420 has a first electrode 421 and a second electrode 422. The first electrode 421 is electrically connected to the first connecting rod 234, and the second electrode 422 is electrically connected to the second connecting rod 245. In a specific embodiment, the first electrode 421 may be one of a cathode and an anode, and the second electrode 422 may be the other of a cathode and an anode.
[0029] The technical solution of this utility model simplifies the structure of the power strip and reduces the assembly difficulty by setting a first connecting rod 234 and a second connecting rod 245 in the plug-in assembly 200 to connect the first pole 421 and the second pole 422 of the indicator light body 420. This achieves electrical connection between the indicator light body 420 and the cable 300. In this embodiment, the outer shell 100 protects the plug-in assembly 200, indicator light assembly 400, and other components installed inside it. The plug-in assembly 200 is disposed in the outer shell 100 and has a socket for inserting a power supply plug. The cable 300 is used to transmit electrical energy; one end of the cable 300 has a plug, and the other end is inserted into the outer shell 100. The first pole 421 of the indicator light body 420 is electrically connected to the neutral wire 311 via the first connecting rod 234, and the second pole 422 of the indicator light body 420 is electrically connected to the live wire 312 via the second connecting rod 245. When assembling the power strip, no additional wires are needed to achieve the electrical connection between the indicator light body 420 and the cable 300. This simplifies the structure of the power strip, reduces the assembly difficulty, and facilitates automated assembly. Furthermore, by using this structure to achieve the electrical connection between the indicator light body 420 and the cable 300, the indicator light assembly 400 and the plug assembly 200 can be spaced apart along the length of the power strip, resulting in a more aesthetically pleasing appearance. This power strip is applicable in the field of electrical equipment technology, including power strips and sockets.
[0030] It should be noted that in actual use, the plug installed at one end of the cable 300 can be plugged into a wall or floor socket, or into other power strips. In addition, the indicator light assembly 400 in this embodiment is used to indicate whether the cable 300 and the plug assembly 200 are connected, so that users or operators can confirm whether the power strip is powered. Specifically, when the cable 300 and the plug assembly 200 are connected, the indicator light body 420 of the indicator light assembly 400 lights up; when the cable 300 and the plug assembly 200 are disconnected, the indicator light body 420 of the indicator light assembly 400 turns off.
[0031] Please see Figure 4 and Figure 5 In one embodiment of this utility model, the mounting base 410 is provided with a first socket 411 and a second socket 412. At least a portion of the first pole 421 is placed in the first socket 411, at least a portion of the second pole 422 is placed in the second socket 412, at least a portion of the first connecting rod 234 is inserted into the first socket 411 and electrically connected to the first pole 421, and at least a portion of the second connecting rod 245 is inserted into the second socket 412 and electrically connected to the second pole 422. The indicator light assembly 400 also includes a first elastic member 430 and a second elastic member 440. The first elastic member 430 is disposed in the first socket 411 and connects the first pole 421 and the first connecting rod 234, and the second elastic member 440 is disposed in the second socket 412 and connects the second pole 422 and the second connecting rod 245. In this embodiment, the first elastic element 430 conducts the first pole 421 and the first connecting rod 234 of the indicator light body 420, and the second elastic element 440 conducts the second pole 422 and the second connecting rod 245 of the indicator light body 420. By providing elastic elements in each socket to conduct the first pole 421 and the first connecting rod 234 of the indicator light body 420, and the second pole 422 and the second connecting rod 245 of the indicator light body 420, the reliability of the indicator light body 420's connection to the live wire 312 and the neutral wire 311 can be ensured. Furthermore, it reduces the assembly difficulty of the power strip, facilitating automated assembly. In a specific embodiment, the button assembly 500, the plug assembly 200, and the indicator light assembly 400 are arranged sequentially and at intervals along the length of the housing 100, which makes the overall appearance of the power strip more aesthetically pleasing. The length of the housing 100 refers to... Figure 2 The direction indicated by X in the diagram.
[0032] Please see Figure 4 and Figure 5In one embodiment of this utility model, the mounting base 410 includes a first base 413 and a second base 414. The first base 413 is disposed on the outer shell 100, and the second base 414 is disposed on the first base 413. The first base 413 is provided with a first groove 4131 and a second groove 4132, and the second base 414 is provided with a first slot 4141 and a second slot 4142. The first slot 4141 is correspondingly disposed with the first groove 4131 and communicates with the first groove 4131 to form a first insertion hole 411. The second slot 4142 is correspondingly disposed with the second groove 4132 and communicates with the second groove 4132 to form a second insertion hole 412. In this embodiment, the first insertion hole 411 and the second insertion hole 412 are formed by the first base 413 and the second base 414, which can reduce the manufacturing difficulty of the indicator light body 420. In one specific embodiment, both the first slot 4141 and the second slot 4142 penetrate the second base 414. Furthermore, to prevent the elastic element from disengaging from its corresponding insertion hole, a stop is provided at the end of the first slot 4141 away from the first groove 4131 and at the end of the second slot 4142 away from the second groove 4132. It should be noted that the indicator light assembly 400 in this embodiment is vertically mounted; however, the indicator light assembly 400 can also be horizontally mounted. Furthermore, the outer casing 100 in this embodiment is formed by bolting together a first casing and a second casing.
[0033] Please see Figure 2 and Figure 3 In one embodiment of this utility model, the plug-in assembly 200 and the indicator light assembly 400 are spaced apart along the length direction of the outer casing 100. The plug-in assembly 200 includes a plug-in body 220, a first plug-in block 230, and a second plug-in block 240. The plug-in body 220 is disposed in the outer casing 100, and the first plug-in block 230 and the second plug-in block 240 are spaced apart along the width direction of the outer casing 100. A first connecting rod 234 is disposed on the side of the first plug-in block 230 facing the indicator light assembly 400 and is inserted into the first socket 411. A second connecting rod 245 is disposed on the side of the second plug-in block 240 facing the indicator light assembly 400 and is inserted into the second socket 412. In this embodiment, by disposing the first connecting rod 234 in the first plug-in block 230 and inserting it into the first socket 411, and simultaneously disposing the second connecting rod 245 in the second plug-in block 240 and inserting it into the second socket 412, the structure of the power strip can be simplified, and the manufacturing difficulty of the power strip can be reduced. In one specific embodiment, the first connecting rod 234 is integrally formed with the first plug block 230, and the second connecting rod 245 is integrally formed with the second plug block 240. This can improve the structural strength of the plug assembly 200 and extend the service life of the power strip.
[0034] Please see Figure 2In one embodiment of this utility model, the plug-in assembly 200 is provided with at least two terminals 210, and the cable 300 includes at least two cables 310. The number of cables 310 and terminals 210 are equal and correspond one-to-one. At least one end of a cable 310 is riveted to a corresponding terminal 210. A first pole 421 is electrically connected to a corresponding cable 310 via a first connecting rod 234, and a second pole 422 is electrically connected to a corresponding cable 310 via a second connecting rod 245. In this embodiment, riveting is used to connect each cable 310 of the cable 300 to the terminals 210 of the plug-in assembly 200, which can reduce the assembly difficulty of the power strip. When assembling a power strip, after the operator installs the plug assembly 200, cable 300, and other components onto the housing 100, the operator only needs to use pliers or riveting tools to connect the cable 310 of the cable 300 to the corresponding terminal 210, thus completing the assembly of the power strip. Among these methods, riveting is less difficult to operate and less dependent on manual labor than soldering. Therefore, by using riveting to connect the cables 310 of the cable 300 to the corresponding terminal 210, the assembly difficulty of the power strip can be reduced, facilitating the automated assembly of the power strip.
[0035] Please see Figure 2 In one embodiment of this utility model, at least one terminal 210 is an annular terminal, and the ends of each cable 310 are riveted to the corresponding annular terminal. In this embodiment, by riveting the ends of the cables 310 to the annular terminals, the reliability and stability of the riveting between the ends of the cables 310 and the terminal 210 can be improved. Specifically, during riveting, the ends of the cables 310 are first inserted into the annular terminals, and then the annular terminals are squeezed, which can cause the annular terminals to undergo plastic deformation and clamp the cables 310. This prevents the cables 310 from loosening or falling off during use and ensures the stability of the connection between the cables 310 and the terminal 210. In a specific embodiment, to better fix the cables 310 during riveting, protrusions protruding towards the center can be provided on the inner surface of the annular terminals; during riveting, the inner surfaces of each protrusion abut against the ends of the corresponding cables 310 to press the ends of the cables 310 tightly.
[0036] In another embodiment of this utility model, at least one terminal block includes a base plate and a pressure plate, wherein the pressure plate and the base plate are arranged at an angle to form a riveting space, and the ends of each cable are inserted into the corresponding riveting space and riveted to the corresponding terminal block. Specifically, during riveting, the ends of the cables are first placed in the riveting space, and then the riveting space between the base plate and the pressure plate is reduced by compression, thereby clamping the cables and completing the riveting between the ends of the cables and the terminal blocks.
[0037] The aforementioned plug-in assembly 200 can be a two-hole structure for inserting only a two-prong plug, a three-hole structure for inserting only a three-prong plug, or a multi-hole structure for inserting both two-prong and three-prong plugs simultaneously or at different times. In this embodiment, the plug-in assembly 200 is a five-hole structure for inserting two-prong and three-prong plugs at different times. Please refer to [link / reference]. Figure 2 In one embodiment of this utility model, there are three terminals 210 and three cables 310. The three terminals 210 are defined as the first terminal 231, the second terminal 241 and the third terminal 251, and the three cables 310 are the neutral wire 311, the live wire 312 and the ground wire 313. The end of the neutral wire 311 is riveted to the first terminal 231, the end of the live wire 312 is electrically connected to the second terminal 241, and the ground wire 313 is riveted to the third terminal 251.
[0038] Please see Figure 2 and Figure 3 In one embodiment of this utility model, the plug-in assembly 200 includes a plug-in body 220, a first plug-in block 230, a second plug-in block 240, and a third plug-in block 250. The plug-in body 220 is disposed in the housing 100. The first plug-in block 230, the third plug-in block 250, and the second plug-in block 240 are sequentially spaced apart from the plug-in body 220. The first plug-in block 230 is provided with a first terminal 231 and a first connecting rod 234. The second plug-in block 240 is provided with a second terminal 241 and a second connecting rod 245. The third plug-in block 250 is provided with a third terminal 251. In this embodiment, the first plug-in block 230 and the second plug-in block 240 are respectively used for the live wire 312 pin and the neutral wire 311 pin of a two-prong plug and a three-prong plug, respectively. The third plug-in block 250 is used for the grounding pin of a three-prong plug. By positioning the third plug-in block 250 between the first plug-in block 230 and the second plug-in block 240, the structure of the plug-in assembly 200 can be made more compact. In a specific embodiment, the first plug-in block 230, the third plug-in block 250, and the second plug-in block 240 are arranged sequentially at intervals along the width direction of the housing 100, wherein the width direction of the housing 100 refers to... Figure 2 The direction indicated by Y in the diagram.
[0039] Please see Figure 3In one embodiment of this utility model, to meet the usage requirements of two-prong and three-prong plugs, the first plug block 230 is provided with a first slot 232 and a second slot 233 sequentially along the length direction of the outer shell 100; the second plug block 240 is provided with a third slot 242 and a fourth slot 243 sequentially along the length direction of the outer shell 100; the first slot 232 and the third slot 242 are spaced apart along the width direction of the outer shell 100; the second slot 233 and the fourth slot 243 are spaced apart along the width direction of the outer shell 100; the third plug block 250 is disposed between the first slot 232 and the third slot 242; and the third plug block 250 is provided with a fifth slot 252. In a specific embodiment, the first plug block 230, the second plug block 240, and the third plug block 250 are all spring contact structures.
[0040] Please see Figure 2 , Figure 4 and Figure 5 In one embodiment of this utility model, the power strip further includes a button assembly 500, which includes a base 510 and a button body 520. The base 510 is disposed on the housing 100, and the button body 520 is movably disposed on the base 510 and exposed to the housing 100. The base 510 is provided with a first connection terminal 511 and a second connection terminal 512. The second plug block 240 is provided with an extension plate 244, and a second terminal 241 is disposed at the end of the extension plate 244 away from the second plug block 240 and overlaps with the second connection terminal 512. The end of the live wire 312 is riveted to the first connection terminal 511. In this embodiment, the button assembly 500 is used to connect and disconnect the electrical connection between the cable 300 and the plug assembly 200. In actual use, the user can press the button body 520 to connect and disconnect the power transmission of the power strip. The button assembly 500 connects and disconnects the live wire 312 to control the power supply, thus better protecting workers and ensuring their safety. The extension plate 244 aligns the second terminal 241 with the second connection terminal 512, simplifying the power strip's structure and reducing assembly difficulty. In one specific embodiment, the first connection terminal 511 is also a ring terminal.
[0041] The above description is merely an exemplary embodiment of the present utility model and does not limit the scope of protection of the present utility model. Any equivalent structural transformations made based on the technical concept of the present utility model and the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the scope of protection of the present utility model.
Claims
1. A power strip, characterized in that, include: Outer shell (100); A plug-in assembly (200) is disposed in the housing (100), and the plug-in assembly (200) is provided with a first connecting rod (234) and a second connecting rod (245). A cable (300), one end of which is inserted into the housing (100) and connected to the plug-in assembly (200); An indicator light assembly (400) includes a mounting base (410) and an indicator light body. The mounting base (410) is disposed in the housing (100), and the indicator light body is disposed in the mounting base (410). The indicator light body has a first pole (421) and a second pole (422). The first pole (421) is electrically connected to the first connecting rod (234), and the second pole (422) is electrically connected to the second connecting rod (245).
2. The power strip as described in claim 1, characterized in that, The mounting base (410) is provided with a first socket (411) and a second socket (412). At least a portion of the first pole (421) is placed in the first socket (411), at least a portion of the second pole (422) is placed in the second socket (412), at least a portion of the first connecting rod (234) is inserted into the first socket (411) and electrically connected to the first pole (421), and at least a portion of the second connecting rod (245) is inserted into the second socket (412) and electrically connected to the second pole (422).
3. The power strip as described in claim 2, characterized in that, The indicator light assembly (400) further includes a first elastic element (430) and a second elastic element (440). The first elastic element (430) is disposed in the first socket (411) and connected to the first pole (421) and the first connecting rod (234). The second elastic element (440) is disposed in the second socket (412) and connected to the second pole (422) and the second connecting rod (245).
4. The power strip as described in claim 2, characterized in that, The mounting base (410) includes a first base (413) and a second base (414), the first base (413) being disposed on the outer shell (100), and the second base (414) being disposed on the first base (413). The first base (413) is provided with a first groove (4131) and a second groove (4132), and the second base (414) is provided with a first slot (4141) and a second slot (4142). The first slot (4141) is correspondingly provided with the first groove (4131) and communicates with the first groove (4131) to form the first insertion hole (411). The second slot (4142) is correspondingly provided with the second groove (4132) and communicates with the second groove (4132) to form the second insertion hole (412).
5. The power strip as described in any one of claims 2 to 4, characterized in that, The plug-in assembly (200) and the indicator light assembly (400) are spaced apart along the length direction of the housing (100). The plug-in assembly (200) includes a plug-in body (220), a first plug-in block (230), and a second plug-in block (240). The plug-in body (220) is disposed in the housing (100). The first plug-in block (230) and the second plug-in block (240) are spaced apart along the width direction of the housing (100). The first connecting rod (234) is disposed on the side of the first plug block (230) facing the indicator light assembly (400) and inserted into the first socket (411); the second connecting rod (245) is disposed on the side of the second plug block (240) facing the indicator light assembly (400) and inserted into the second socket (412).
6. The power strip as described in claim 1, characterized in that, The plug-in assembly (200) is provided with at least two terminals (210), and the cable (300) includes at least two cables (310). The number of cables (310) is equal to the number of terminals (210) and they are arranged in a one-to-one correspondence. At least one end of the cable (310) is riveted to the corresponding terminal (210). The first pole (421) is electrically connected to the corresponding cable (310) via the first connecting rod (234), and the second pole (422) is electrically connected to the corresponding cable (310) via the second connecting rod (245).
7. The power strip as described in claim 6, characterized in that, At least one of the terminals (210) is a ring terminal, and the ends of each of the cables (310) are riveted to the corresponding ring terminal.
8. The power strip as described in claim 7, characterized in that, The inner surface of the annular terminal is provided with a protrusion that protrudes towards the center; the inner surface of each protrusion abuts against the end of the corresponding cable (310) to press the end of the cable (310) tightly.
9. The power strip as described in any one of claims 6 to 8, characterized in that, The number of terminals (210) and cables (310) are three: the three terminals (210) are the first terminal (231), the second terminal (241) and the third terminal (251), and the three cables (310) are the neutral wire (311), the live wire (312) and the ground wire (313), respectively. The end of the neutral wire (311) is riveted to the first terminal (231), the end of the live wire (312) is electrically connected to the second terminal (241), and the ground wire (313) is riveted to the third terminal (251).
10. The power strip as described in claim 9, characterized in that, The plug-in assembly (200) includes a plug-in body (220), a first plug-in block (230), a second plug-in block (240), and a third plug-in block (250). The plug-in body (220) is disposed in the housing (100). The first plug-in block (230), the third plug-in block (250), and the second plug-in block (240) are sequentially spaced apart from each other on the plug-in body (220). The first plug-in block (230) is provided with a first terminal block (231) and a first connecting rod (234). The second plug-in block (240) is provided with a second terminal block (241) and a second connecting rod (245). The third plug-in block (250) is provided with a third terminal block (251).
11. The power strip as described in claim 10, characterized in that, The first plug-in block (230) is provided with a first slot (232) and a second slot (233) in sequence along the length direction of the outer shell (100). The second plug-in block (240) is provided with a third slot (242) and a fourth slot (243) in sequence along the length direction of the outer shell (100). The first slot (232) and the third slot (242) are spaced apart along the width direction of the outer shell (100). The second slot (233) and the fourth slot (243) are spaced apart along the width direction of the outer shell (100). The third plug-in block (250) is located between the first slot (232) and the third slot (242). The third plug-in block (250) is provided with a fifth slot (252).
12. The power strip as described in claim 10, characterized in that, The power strip also includes a button assembly (500), which includes a base (510) and a button body (520). The base (510) is disposed on the housing (100), and the button body (520) is movably disposed on the base (510) and exposed to the housing (100). The base (510) is provided with a first connection terminal (511) and a second connection terminal (512). The second plug block (240) is provided with an extension plate (244), the second terminal (241) is located at the end of the extension plate (244) away from the second plug block (240) and overlaps with the second connection terminal (512), and the end of the live wire (312) is riveted to the first connection terminal (511).