Power strip mechanism
By designing multiple independent compartments and insulating grooves in the power strip mechanism, combined with seals and switch controls, the problems of waterproofing and short circuits in the power strip mechanism are solved, improving safety and reliability and avoiding fire hazards caused by water ingress or short circuits.
Patent Information
- Application Number
- CN202423033177.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-09
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2034-12-09
AI Technical Summary
Existing power strips have poor waterproofing and insufficient insulation, making them prone to short circuits. In large public places, short circuits can cause a complete power outage, posing a fire hazard.
Design a power strip mechanism with multiple first compartments inside the outer casing, each compartment being divided into multiple independent second compartments. The slot core is insulated and exposed through openings in the outer casing. The slot core is separated from the live, neutral, and ground wires. Add sealing elements to prevent water damage. Set independent slot units and switch control circuits to prevent short circuits.
It improves the reliability and safety of the power strip mechanism, reduces the risk of short circuits, avoids short circuit accidents caused by water ingress, enhances the waterproof capability of the socket, ensures independent circuit control, and improves the safety of use.
Smart Images

Figure CN223858472U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of power supply, in particular to a power strip mechanism. BACKGROUND
[0002] The power strip mechanism is a common household and office appliance accessory, which is used to expand the number and location of power supply.
[0003] The existing power strip mechanism has poor waterproof ability, poor blocking performance, and is prone to short circuit and even fire, which poses a great risk to the safety of users' property. If the short circuit is not discovered in time, it may lead to a fire. Moreover, the existing power strip mechanism does not have independent power limiting devices in the use scene, so the consequence of each power strip mechanism short circuit is that the total breaker of the entire power consumption area trips and is powered off at the same time, which is fatal to a large public place.
[0004] Therefore, the existing power strip mechanism needs to be improved. CONTENT OF THE INVENTION
[0005] The main purpose of the present application is to provide a power strip mechanism, which aims to solve the problems of poor waterproof ability, poor blocking performance and easy short circuit of the existing power strip mechanism.
[0006] To achieve the above purpose, the present application provides a power strip mechanism, which comprises: a shell; a plurality of first cabins are formed in the shell, and a plurality of independent second cabins are divided in each first cabin; a plurality of first slot units are arranged one by one in the plurality of first cabins, each first slot unit comprises a plurality of insulating slot cores, a plurality of slot cores are arranged one by one in a plurality of second cabins, and each slot core is exposed through an opening on the shell.
[0007] Optionally, each slot core comprises a first support arm and a second support arm arranged opposite to each other, the opening is arranged at least corresponding to the region between the first support arm and the second support arm, and the surface of the first support arm and the second support arm close to each other is provided with a concave-convex structure, which is used to clamp the plug pin in the state that the plug pin is inserted into the slot core.
[0008] Optionally, at least part of the first slot unit comprises a first sub-slot, the first sub-slot comprises a double-hole slot core structure composed of two slot cores, the double-hole slot core structure comprises two slot cores arranged in parallel and spaced apart; the first slot unit further comprises a plurality of elastic elements, a plurality of the elastic elements are arranged in the second cabin corresponding to the first sub-slot, and at least one pair of the elastic elements is arranged in each second cabin, one of the elastic elements in a pair of the elastic elements is arranged between the first support arm and the side wall of the second cabin, and the other of the elastic elements in the pair of the elastic elements is arranged between the second support arm and the side wall of the second cabin.
[0009] Optionally, at least part of the first slot unit further comprises a second sub-slot, the second sub-slot comprises the double-hole slot core structure and a triple-hole slot core structure composed of three slot cores, the triple-hole slot core structure comprises two slot cores arranged in spaced apart and having an included angle, and one slot core located between the two slot cores in the double-hole slot core structure.
[0010] Optionally, the first cabin comprises an upper cabin body and a lower cabin body, at least one of the upper cabin body and the lower cabin body has a plurality of grooves arranged towards the other, and the upper cabin body and the lower cabin body are arranged in opposition to form a plurality of second cabins; and a sealing element is further arranged between the upper cabin body and the lower cabin body, and the sealing element is provided with a clearance hole corresponding to the area of each second cabin.
[0011] Optionally, the first sub-slot and the second sub-slot each comprise a slot core connected to a live wire and a slot core connected to a zero wire; and one first sub-slot and one second sub-slot cooperate to form a slot module; a wire passage is arranged between the first cabin for accommodating the first sub-slot and the second sub-slot in each slot module, and a plurality of slot cores connected to the live wire in the slot module are connected in series through one wire passage, and a plurality of slot cores connected to the zero wire in the slot module are connected in series through one wire passage.
[0012] Optionally, the power strip mechanism further comprises a plurality of first switches, each of the first switches is connected to a live wire and / or a zero wire connected to the slot module, for controlling the on-off of the corresponding slot module.
[0013] Optionally, the power strip mechanism further comprises a plurality of second slot units, each of the second slot units comprises a USB module, and each of the USB modules is exposed through an opening on the shell.
[0014] Optionally, the power strip mechanism further comprises a second switch, the second switch is connected with the live wire bus and / or the zero wire bus, and is used for controlling the on-off of the plurality of first slot units and the plurality of second slot units.
[0015] Optionally, the power strip mechanism further comprises a control circuit and an indicator light; the control circuit is connected with the first switch, the second switch and the indicator light, and the indicator light is exposed at least from the shell.
[0016] The power strip mechanism provided by the application comprises a shell and a plurality of first slot units, wherein a plurality of first cabins are formed in the shell, and a plurality of independent second cabins are divided in each first cabin; the plurality of first slot units are arranged one by one in the plurality of first cabins, each first slot unit comprises a plurality of insulatively arranged slot cores, the plurality of slot cores are arranged one by one in the plurality of second cabins, and each slot core is exposed through an opening on the shell. Specifically, by arranging each slot core one by one in a second cabin, the slot core connected with the live wire, the slot core connected with the zero wire and / or the slot core connected with the ground wire can be separated, so as to avoid the risk of short circuit caused by the contact between the slot cores connected with different wires, and even if the power strip socket is accidentally filled with water, since the plurality of second cabins are independently designed, the risk of short circuit between different slot cores can be avoided, the occurrence of unsafe accidents is reduced, and the reliability and safety of the power strip mechanism are improved. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 The structural schematic diagram of the power strip mechanism provided by an embodiment of the application is shown in one view;
[0018] Figure 2 The structural schematic diagram of the power strip mechanism provided by an embodiment of the application is shown in one view; Figure 1 The structural schematic diagram of the power strip mechanism provided by an embodiment of the application is shown in one view;
[0019] Figure 3 The structural schematic diagram of the power strip mechanism provided by an embodiment of the application is shown in one view;
[0020] Figure 4 The structural schematic diagram of the power strip mechanism provided by an embodiment of the application is shown in one view;
[0021] Figure 5 The structural schematic diagram of the power strip mechanism provided by an embodiment of the application is shown in one view;
[0022] Reference signs:
[0023] The power strip mechanism 100;
[0024] The shell 10; the upper shell 101; the lower shell 102; the interlayer 103; the first cabin 11; the upper cabin body 111; the lower cabin body 112; the sealing member 113; the second cabin 12; the opening 13;
[0025] First slot unit 20; first sub-slot 201; second sub-slot 202; slot module 203; slot core 21; first support arm 211; second support arm 212; concave-convex structure 213; elastic element 22; wire passage 23;
[0026] First switch 30;
[0027] Second slot unit 40;
[0028] Second switch 50.
[0029] The implementation, functional features and advantages of the present application will be further described with reference to the accompanying drawings in conjunction with embodiments. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work under the premise of the present application, all belong to the scope of protection of the present application.
[0031] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative positional relationship, movement condition, etc. between components in a certain posture (as shown in the drawings), and if the certain posture changes, the directional indications will also change accordingly.
[0032] In the present application, unless otherwise explicitly specified and limited, the terms "connection", "fixation" and the like should be understood broadly, for example, "fixation" can be fixed connection, or detachable connection, or integral; can be mechanical connection, or electrical connection; can be direct connection, or indirect connection through intermediate medium; can be internal connection of two elements or interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0033] In addition, if the description of "first", "second" and the like is involved in the embodiments of the present application, the description of "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can be explicitly or implicitly included at least one of the features. In addition, the meaning of "and / or" appearing throughout the text includes three parallel schemes. For example, "A and / or B" includes A scheme, or B scheme, or A and B scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skilled in the art. When the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the present application.
[0034] The present application will be described in detail below in conjunction with the drawings and embodiments.
[0035] Referring to Figures 1-4 , Figure 1 The structure schematic diagram of the power strip mechanism provided by an embodiment of the present application is shown in one view; Figure 2 The structure schematic diagram of the power strip mechanism shown in another view is shown in another view; Figure 1 The structure schematic diagram of the power strip mechanism provided by the present application is shown in another view; Figure 3 The structure schematic diagram of the power strip mechanism provided by the present application is shown in another view; Figure 4 The structure schematic diagram of the power strip mechanism provided by the present application is shown in another view.
[0036] The power strip mechanism 100 provided by the embodiments of the present application includes an outer shell 10 and a plurality of first slot units 20. The outer shell 10 is formed with a plurality of first cabins 11, and each first cabin 11 is divided into a plurality of independent second cabins 12. The plurality of first slot units 20 are arranged one by one in the plurality of first cabins 11. Each first slot unit 20 includes a plurality of insulatively arranged slot cores 21. The plurality of slot cores 21 are arranged one by one in the plurality of second cabins 12, and each slot core 21 is exposed through an opening 13 on the outer shell 10.
[0037] Specifically, by arranging each slot core 21 one by one in a second cabin 12, the slot core 21 connected to the live wire, the slot core 21 connected to the zero line and / or the slot core 21 connected to the ground wire can be separated, thereby avoiding the risk of short circuit caused by the contact between the slot cores 21 connected to different wires. Even if the power strip socket is accidentally filled with water, the risk of short circuit between different slot cores 21 can be avoided due to the independent design of the plurality of second cabins 12, reducing the occurrence of unsafe accidents and improving the reliability and safety of the power strip mechanism 100.
[0038] Exemplarily, the shell 10 can include an upper shell 101, a lower shell 102, and a sandwich layer 103 between the upper shell 101 and the lower shell 102. Wherein the upper shell 101 and the lower shell 102 have recesses arranged towards each other, and the upper shell 101 and the lower shell 102 are arranged in abutment, and the sandwich layer 103 is arranged between the upper shell 101 and the lower shell 102. Wherein the upper shell 101 and the sandwich layer 103 cooperate to form a first accommodating space (not marked in the figure), and a plurality of first compartments 11 are formed in the first accommodating space, and the plurality of first compartments 11 are independently arranged. The lower shell 102 and the sandwich layer 103 cooperate to form a second accommodating space (not marked in the figure) for accommodating wires including live wire, neutral wire, and ground wire, etc. In some optional modes, the second accommodating space can also accommodate communication modules, control modules, etc., so as to be connected with handheld devices through Wifi, Bluetooth, etc. to realize remote opening and closing, voice control, etc.
[0039] Of course, in other embodiments, the shell 10 can also not be provided with the sandwich layer 103. The upper shell 101 and the lower shell 102 cooperate to form an accommodating space, which is not limited here.
[0040] In some embodiments, the first compartment 11 includes an upper compartment body 111 and a lower compartment body 112, at least one of the upper compartment body 111 and the lower compartment body 112 has a plurality of recesses arranged towards each other, and the upper compartment body 111 and the lower compartment body 112 are arranged in abutment to form a plurality of second compartments 12; and a sealing member 113 is further arranged between the upper compartment body 111 and the lower compartment body 112, and the sealing member 113 is provided with a relief hole corresponding to the area of each second compartment 12.
[0041] Exemplarily, the upper compartment has a plurality of recesses arranged towards the lower compartment 112, and the lower compartment can be a flat plate structure, for example, the sandwich layer 103 or part of the lower shell 102 as the lower compartment body 112, and the upper compartment body 111 and the lower compartment body 112 are arranged in abutment to form a plurality of second compartments 12. Alternatively, the lower compartment has a plurality of recesses arranged towards the upper compartment 111, and the upper compartment can be a flat plate structure, for example, part of the upper shell 101 as the upper compartment body 111, and the upper compartment body 111 and the lower compartment body 112 are arranged in abutment to form a plurality of second compartments 12.
[0042] Further, by arranging the sealing member 113 at the joint area of the upper compartment body 111 and the lower compartment body 112, the material of the sealing member 113 includes but is not limited to rubber, silicone, etc. The sealing and waterproof effect of each first compartment 11 and second compartment 12 is improved, the risk of short circuit between different slot cores 21 is avoided, the occurrence of unsafe accidents is reduced, and the reliability and safety of the power strip mechanism 100 are improved.
[0043] Each slot core 21 is electrically connected with one type of wire, and the slot core 21 is used to clamp a plug pin inserted through the opening 13 to transmit electric energy to an electric device electrically connected with the plug pin.
[0044] Optionally, the material of the slot core 21 can be tin-phosphor bronze (purple-red color). The tin-phosphor bronze sheet has good elasticity and is not easy to oxidize, and the electric conductivity is more stable after acid pickling and phosphating anti-oxidation treatment. In particular, it is not easy to deform when applied to the slot core 21 part. Even if the slot core 21 is used for a long time, it can also maintain a suitable clamping force, ensure that the slot core 21 is tightly coupled with the plug pin, reduce the electric arc; and the tin-phosphor bronze sheet is anti-oxidation and rust-proof, reducing the problem of increased resistance and heating caused by rust.
[0045] Referring to Figure 5 , Figure 5 The structure diagram of the slot core provided by an embodiment of the present application, in some embodiments, each slot core 21 includes a first support arm 211 and a second support arm 212 arranged opposite to each other, and the opening 13 is arranged at least corresponding to the region between the first support arm 211 and the second support arm 212, so as to facilitate the plug pin to be inserted into the slot core 21 through the opening 13 and be clamped by the first support arm 211 and the second support arm 212. Among them, in the slot core 21 provided by the embodiment of the present application, the surface of the first support arm 211 and the second support arm 212 close to each other is provided with a concave-convex structure 213, and the concave-convex structure 213 is used to clamp the plug pin in the state that the plug pin is inserted into the slot core 21.
[0046] Among them, the concave-convex structure 213 can be distributed in the form of dots or strips in the region close to the opening 13 of the first support arm 211 and the second support arm 212. As Figure 5 shown, the surface of the first support arm 211 and the second support arm 212 close to each other is provided with a concave-convex structure 213 in the form of strip distribution, so as to form a wave-shaped structure in the region close to the opening 13 of the first support arm 211 and the second support arm 212.
[0047] Specifically, the concave-convex structure 213 can better clamp the inserted plug pin, and avoid metal fatigue of the part.
[0048] In some embodiments, at least part of the first slot unit 20 includes a first sub-slot 201, and the first sub-slot 201 includes a double-hole slot core structure composed of two slot cores 21. The two slot cores 21 forming the first sub-slot 201 are arranged in two second cabins 12.
[0049] Further, the first slot unit 20 further comprises a plurality of elastic elements 22, the plurality of elastic elements 22 are arranged in the second cabin 12 corresponding to the first sub-slot 201, and at least one pair of elastic elements 22 is arranged in each second cabin 12, one elastic element 22 in the pair of elastic elements 22 is arranged between the first support arm 211 and the side wall of the second cabin 12, and the other elastic element 22 in the pair of elastic elements 22 is arranged between the second support arm 212 and the side wall of the second cabin 12.
[0050] Wherein, the elastic element 22 can be a spring, a spring sheet, etc., and when the elastic element 22 is a metal elastic element 22, the elastic element 22 can be wrapped with an insulating layer.
[0051] Wherein, one pair, two pairs, or even three pairs of elastic elements 22 can be arranged on both sides of the slot core 21 in each second cabin 12, which is not limited here. The space in the cabin can be designed according to the space.
[0052] Specifically, at least one pair of elastic elements 22 is arranged on both sides of the slot core 21, which can further improve the firmness of the slot core 21 clamping the plug pin, and the design can improve the service life of the slot core 21, and improve the clamping effect of the slot core 21 on the plug pin after long-term use, which can cause the plug pin and the slot core 21 to be virtually connected, and the problem of sparking.
[0053] In some embodiments, at least part of the first slot unit 20 further comprises a second sub-slot 202, the second sub-slot 202 comprises a double-hole slot core structure and a three-hole slot core structure composed of three slot cores 21, the three-hole slot core structure comprises two slot cores 21 arranged at intervals and having an included angle, and one slot core 21 located between the two slot cores 21 in the double-hole slot core structure.
[0054] Wherein, by designing the second sub-slot 202 to comprise a double-hole slot core structure and a three-hole slot core structure, the space utilization can be improved.
[0055] Further, the elastic element 22 can also be arranged in the second cabin 12 corresponding to the double-hole slot core structure in the second sub-slot 202, the arrangement manner and function of the elastic element 22 are consistent with those described above, which will not be repeated here.
[0056] In some embodiments, the first sub-slot 201 and the second sub-slot 202 each comprise a slot core 21 electrically connected to the live wire, and a slot core 21 electrically connected to the zero line; and one first sub-slot 201 and one second sub-slot 202 cooperate to form a slot module 203.
[0057] For example, Figure 2As shown, the power strip mechanism 100 includes four first sub-slots 201 and four second sub-slots 202, the four first sub-slots 201 are arranged at intervals along a first direction, and the four second sub-slots 202 are located on one side of the four first sub-slots 201 and arranged at intervals along the first direction, and the four first sub-slots 201 and the four second sub-slots 202 of the power strip mechanism 100 form four slot modules 203.
[0058] In combination Figure 3 And Figure 4 Wherein, a wire passing channel 23 is arranged between the first sub-slot 201 and the second sub-slot 202 in each slot module 203, and the multiple slot cores 21 connected to the live wire in the slot module 203 are connected in series through one wire passing channel 23, and the multiple slot cores 21 connected to the zero wire in the slot module 203 are connected in series through one wire passing channel 23.
[0059] Wherein, waterproof glue or sealant can be applied at the interface between each wire passing channel 23 and the first cabin 11, so as to improve the waterproof and dustproof level of the power strip mechanism 100.
[0060] Specifically, the multiple slot cores 21 connected to the live wire in the slot module 203 are connected in series through one wire passing channel 23, and the multiple slot cores 21 connected to the zero wire in the slot module 203 are connected in series through one wire passing channel 23, which can simplify the layout of the lines and facilitate subsequent maintenance.
[0061] Referring to Figure 1 Or Figure 3 In some embodiments, the power strip mechanism 100 further includes multiple first switches 30, each first switch 30 is connected to a live wire and / or a zero wire electrically connected to the slot module 203, for controlling the on-off of the corresponding slot module 203.
[0062] Specifically, the first switch 30 as a separate switch for each slot module 203 can accurately control the on-off of each slot module 203, and in the case of not using a single slot module 203, the corresponding first switch 30 is closed, thereby improving safety and reliability.
[0063] Wherein, as Figure 3 shown, the first switch 30 can be arranged between the first cabin 11 corresponding to the first sub-slot 201 and the second sub-slot 202, and the zero wire and the live wire pass through the first switch 30 first, and then pass through the first switch 30 to connect the corresponding slot core 21.
[0064] In other embodiments, the first switch 30 can be arranged on one side of the slot module 203, which is not limited here.
[0065] Please continue to refer to Figure 3In some embodiments, the power strip mechanism 100 further includes a plurality of second slot units 40, each second slot unit 40 including a USB module, each USB module being exposed through an opening 13 on the housing 10.
[0066] like Figure 3 As shown, the power strip mechanism 100 uses 3 USB modules. For example, the total current output by the multiple USB modules is 3.1A, and the maximum output current of a single USB module is 2.4A. That is to say, if only one USB module is used, the maximum output current is 2.4A; if all 3 USB modules are used at the same time, the total current of these 3 USB modules is 3.1A, and the average current per USB module is about 1A.
[0067] Specifically, the power strip mechanism 100 also includes multiple second slot units 40, which can expand the application scenarios of the power strip mechanism 100 and meet the power needs of different devices.
[0068] See Figure 1 or Figure 3 In some embodiments, the power strip mechanism 100 further includes a second switch 50, which is connected to the live wire bus and / or the neutral wire bus, for controlling the on / off state of the plurality of first slot units 20 and the plurality of second slot units 40.
[0069] Specifically, the second switch 50 serves as the master switch for the entire power strip mechanism 100, controlling the on / off state of all slot modules 203. When the entire power strip mechanism 100 is not in use, turning off the second switch 50 disconnects the power supply to the power strip mechanism 100, thereby improving safety and reliability.
[0070] For example, after the external power cord (including the live wire and the neutral wire) enters the power strip mechanism 100 through the opening on the housing 10, it first connects to the second switch 50, then branches out multiple live wires and multiple neutral wires from the second switch 50 to multiple first switches 30, and finally connects to multiple slot cores 21 in the corresponding slot module 203 through the first switch 30.
[0071] The first switch 30 can be a mechanical switch and / or an electronic switch. The mechanical switch can be operated manually by the user to achieve the function of turning the circuit on and off, while the electronic switch can be operated by sending on / off commands through a handheld device to achieve the function of turning the circuit on and off.
[0072] In some embodiments, the power strip mechanism 100 further includes a control circuit (not shown), which is connected to the first switch 30 and the second switch 50.
[0073] The control circuit can include circuits for under-voltage protection, over-current protection, over-discharge protection, short-circuit protection, etc. The control circuit can be connected to the first switch 30, the plurality of second switches 50, and the plurality of USB modules, for detecting electrical parameters on the first switch 30, the plurality of second switches 50, and the plurality of USB modules, including current, voltage, temperature, etc., to control the state of the corresponding first switch 30, second switch 50, and USB module based on the detected electrical parameters.
[0074] For example, when the control circuit determines that the corresponding second switch 50 and / or USB module has a short circuit, open circuit, or other fault based on the detected electrical parameters, the control circuit controls the first switch 30 to turn off, or sends a remote instruction to alert the user, thereby avoiding unsafe accidents.
[0075] For another example, when the control circuit determines that the corresponding first switch 30 has a short circuit, open circuit, or other fault based on the detected electrical parameters, the control circuit sends a remote instruction to alert the user, thereby avoiding unsafe accidents.
[0076] In some embodiments, the power strip mechanism 100 further includes an indicator light (not shown in the figure); the control circuit is connected to the indicator light, and the indicator light is exposed at least outside the shell 10.
[0077] Specifically, the indicator light can be integrated with the first switch 30, the plurality of second switches 50, and / or the plurality of USB modules. When the control circuit detects that the first switch 30, the second switch 50, and / or the USB module is powered on, powered off, or has an abnormal situation (such as overload, short circuit, overcurrent, high temperature, etc.), the control circuit controls the indicator light to emit a corresponding light language (constant light, long-off, preset frequency blinking, changing light color, etc.) to alert the user to understand the state of the first switch 30, the plurality of second switches 50, and / or the plurality of USB modules.
[0078] The above is only a preferred embodiment of the present application, and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation using the content of the present application specification and drawings, or direct or indirect application in other related technical fields, is also included in the patent protection scope of the present application.
Claims
1. A socket mechanism (100) characterized by, The utility model relates to a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket.
2. The outlet strip mechanism (100) of claim 1, wherein, The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket.
3. The gang mechanism (100) according to claim 2, characterized in that The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of plug-in socket. The utility model discloses a first slot unit (20) and a second slot unit (20) of a plug-in socket, and belongs to the field of 4. The outlet strip mechanism (100) of claim 3, wherein, At least part of the first slot unit (20) further comprises a second sub-slot (202), the second sub-slot (202) comprises the double-hole slot core (21) structure and a three-hole slot core (21) structure composed of three slot cores (21), the three-hole slot core (21) structure comprises two slot cores (21) arranged at intervals and having an included angle, and one slot core (21) located between the two slot cores (21) in the double-hole slot core (21) structure.
5. The outlet strip mechanism (100) of claim 4, wherein, The first sub-slot (201) and the second sub-slot (202) each comprise the slot core (21) connected to the live wire and the slot core (21) connected to the zero wire; And one first sub-slot (201) and one second sub-slot (202) cooperate to form a slot module (203); a first cabin (11) for accommodating the first sub-slot (201) and the second sub-slot (202) in each slot module (203) is provided with a wire passing channel (23), and the plurality of slot cores (21) connected to the live wire in the slot module (203) are connected in series through one wire passing channel (23), and the plurality of slot cores (21) connected to the zero wire in the slot module (203) are connected in series through one wire passing channel (23).
6. The outlet strip mechanism (100) of claim 5, wherein, The power strip mechanism (100) further comprises a plurality of first switches (30), each first switch (30) is connected to a live wire and / or a zero wire connected to the slot module (203) for controlling the on-off of the corresponding slot module (203).
7. The gang mechanism (100) according to claim 6, characterized in that The power strip mechanism (100) further comprises a plurality of second slot units (40), each second slot unit (40) comprises a USB module, and each USB module is exposed through an opening (13) on the shell (10).
8. The outlet strip mechanism (100) of claim 7, wherein, The power strip mechanism (100) further comprises a second switch (50), the second switch (50) is connected to a live wire bus and / or a zero wire bus for controlling the on-off of the plurality of first slot units (20) and the plurality of second slot units (40).
9. The outlet strip mechanism (100) of claim 8, wherein, The power strip mechanism (100) further comprises a control circuit and an indicator light; the control circuit is connected to the first switch (30), the second switch (50) and the indicator light, and the indicator light is exposed at least on the shell (10).