A power converter having side edge receptacles

CN224817591UActive Publication Date: 2026-09-29DONGGUAN BEST TRAVEL ELECTRONICS CO LTD
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Patent Information

Application Number
CN202520776807.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-12-31
Filing Date
2025-04-22
Publication Date
2026-09-29
Estimated Expiration
2035-04-22

AI Technical Summary

Technical Problem

[0003]但是现有的电源转换器只有一面设置有复合式插座的面板上可以接入不同规格的插脚,当某一种规格的插脚插入复合式插座面板对应的插孔上时,复合式插座面板上的其他插孔就会被遮挡,一次只能转换一种插脚,其插孔的利用率低,整体电源转换器的使用体验感不佳

Benefits of technology

通过将本电源转换器设置为包括一复合式插座面板、一壳体、一第一保护门组件、一保险丝组件、至少两组制式的插脚组件、以及一导通组件,需要转换的插脚对应插入所述复合式插座面板内,推动第一保护门组件从而与导通组件连接,导通组件与制式的插脚组件的电连接,将制式的插脚组件对应推出壳体外后,可将制式的插脚组件插入外部电源插座上,从而实现将需要转换的插脚转换成对应插脚的目的。所述导通组件与保险丝组件电连接,从而使导通组件通过保险丝组件的限流作用从而实现稳定电路中电流和电压的保护效果,提高本电源转换器的安全性。通过在所述复合式插座面板和导通组件之间设置第一保护门组件,从而防止单一插头或者尖锐物品单独插入,进而防止因小孩玩弄电源转换器而出现触电现象,提高了安全性。

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Abstract

The utility model discloses a power converter with side edge socket, and the shell side is provided with at least two side edge jacks, and the side edge jack includes side edge fire line jack and side edge zero line jack. The fuse assembly includes a fuse, and the fire line (L) socket copper clamp is provided with a first fuse metal clamp extending downward, and the fire line (L) pin copper clamp is provided with a second fuse metal clamp. The two ends of the fuse are respectively placed in the first fuse metal clamp and the second fuse metal clamp and are electrically connected. The side edge jack is any one or combination of the American standard jack, the British standard jack, the Chinese standard jack, the Australian standard jack or the European standard jack. The utility model has the advantages of simple structure, stable conduction, and the ability to convert the pins of different national standards into pins of other countries. The side edge is provided with independent side edge jacks. After the pins of a certain specification are inserted into the front composite socket panel, the pins of other specifications can also be inserted into the side edge jacks to realize simultaneous conduction and use, thereby improving the use efficiency of the power converter.
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Description

Technical Field

[0001] This utility model relates to the field of power converter technology, and in particular to a power converter with a side socket. Background Technology

[0002] If you need to plug a device into an incompatible socket, you'll need a power adapter. A power adapter is an conversion tool; to use it, you plug it into the target socket and then insert the target plug into the matching socket on the power adapter. Power adapters have improved the convenience of traveling, especially when traveling internationally, eliminating worries about incompatibility between the plugs of your electronic devices and local power outlets.

[0003] However, existing power converters only have one side of the panel with a composite socket that can accept different types of pins. When a certain type of pin is inserted into the corresponding socket on the composite socket panel, the other sockets on the composite socket panel will be blocked. Only one type of pin can be switched at a time, resulting in low socket utilization and a poor overall user experience of the power converter. Utility Model Content

[0004] To address the aforementioned shortcomings, the purpose of this utility model is to provide a power converter with a side socket. This power converter features a simple structure, stable conduction, and the ability to convert plugs of different national standards to those of other countries. It also has independent side sockets, allowing for simultaneous use of plugs of different standards when one type of plug is inserted into the front composite socket panel, while other types can be inserted into the side sockets. This improves the efficiency and user experience of the power converter.

[0005] The technical solution adopted by this utility model to achieve the above objectives is as follows: A power converter with a side socket includes a composite socket panel, a housing, a first protective door assembly, a fuse assembly, at least two sets of standard plug assemblies, and a conductive assembly. The conductive assembly includes at least a live wire (L) conductive assembly and a neutral wire (N) conductive assembly. The live wire (L) conductive assembly includes a live wire (L) socket copper clip and a live wire (L) plug copper clip. The neutral wire (N) conductive assembly includes a neutral wire (N) socket copper clip and a neutral wire (N) plug copper clip. At least one set of side sockets is provided on the side of the housing. It includes a side live wire socket and a side neutral wire socket; the live wire (L) socket copper clip is provided with a side live wire (L) socket copper clip that matches the side live wire socket, and the neutral wire (N) socket copper clip is provided with a side neutral wire (N) socket copper clip that matches the side neutral wire socket; the side live wire (L) socket copper clip extends to the side from the live wire (L) socket copper clip, and the side neutral wire (N) socket copper clip extends to the side from the neutral wire (N) socket copper clip; the side socket is any one or a combination of American standard socket, British standard socket, Chinese standard socket, Australian standard socket, or European standard socket.

[0006] As a further improvement of this utility model, the side live wire (L) socket copper clip and the side neutral wire (N) socket copper clip are respectively compatible with any one of the following pin types: American standard pin, British standard pin, European standard pin, or Australian standard pin.

[0007] As a further improvement of this utility model, the composite socket panel is provided with any combination of British standard sockets, American standard sockets, Chinese / Australian standard sockets, and Italian standard sockets.

[0008] As a further improvement of this utility model, the pin assembly includes any combination of British standard pin assembly, American standard pin assembly, European standard pin assembly, Chinese standard or Australian standard pin assembly; each pin assembly has a slide, which has an operation key and at least two conductive pins, and can move in the axial direction; the conductive pins extend out or retract into the housing.

[0009] As a further improvement of this utility model, a second protective door assembly is provided in the side socket. The second protective door assembly includes an electric shock protection door, a protective door fixing member, and a spring member. The electric shock protection door is embedded in the protective door fixing member. The protective door fixing member is provided with at least two sets of pin through holes that match the side socket and a fixing member spring seat that matches the spring member. The electric shock protection door is provided with a protective door spring post. One end of the spring member is sleeved on the protective door spring post, and the other end is sleeved in the fixing member spring seat to fix the spring member. The electric shock protection door is generally U-shaped. Its upper frame covers the side live wire (L) socket copper clip and the corresponding side socket, and its lower frame covers the side neutral wire (N) socket copper clip and the corresponding side socket.

[0010] As a further improvement of this utility model, a guide slope extending from the top to the bottom is respectively provided on the upper and lower frame.

[0011] As a further improvement of this utility model, the upper frame of the electric shock protection door has a first anti-single insertion block that matches the side live wire socket at one end facing the live wire (L) conducting component, and the lower frame of the electric shock protection door has a second anti-single insertion block that matches the side neutral wire socket at one end facing the neutral wire (N) conducting component.

[0012] As a further improvement of this utility model, both sides of the electric shock protection door are rhomboid in shape, with the middle being higher and the top and bottom being lower.

[0013] As a further improvement of this utility model, the protective door fixing member extends a first insulating bracket towards the neutral (N) conductor assembly. The first insulating bracket is provided with a side neutral (N) socket copper clip for inserting the side neutral (N) socket copper clip. The side live (L) socket copper clip is located at the top of the first insulating bracket.

[0014] As a further improvement of this utility model, the protective door fixing member also includes a second insulating bracket formed on the side of the first insulating bracket and bent and extended toward the copper clip of the live wire (L) socket. An insulating baffle is protruding in the middle of the second insulating bracket, and the copper clip of the live wire (L) socket is placed on the insulating baffle.

[0015] As a further improvement of this utility model, the fuse assembly includes a fuse element, which is a fuse tube, a fuse wire, or a fuse circuit breaker.

[0016] As a further improvement of this utility model, the copper clip of the live wire (L) socket is provided with a first safety metal clip, and the copper clip of the live wire (L) pin is provided with a second safety metal clip. The two ends of the safety element are respectively placed in the first safety metal clip and the second safety metal clip and are electrically connected.

[0017] As a further improvement of this utility model, the neutral (N) socket copper clip is provided with a third safety metal clip, and the neutral (N) pin copper clip is provided with a fourth safety metal clip. The two ends of the safety clip are respectively disposed in the third safety metal clip and the fourth safety metal clip and are electrically connected.

[0018] As a further improvement of this utility model, the fuse assembly further includes a fuse holder, the fuse is nested on the fuse holder, and the fuse holder is disposed between the first fuse metal clip and the second fuse metal clip.

[0019] As a further improvement of this utility model, the fuse assembly further includes a fuse holder, the fuse is nested on the fuse holder, and the fuse holder is disposed between the third fuse metal clip and the fourth fuse metal clip.

[0020] As a further improvement of this utility model, it also includes a fuse assembly fixing sleeve, the fuse assembly is placed inside the fuse assembly fixing sleeve, the fuse assembly fixing sleeve has at least one embedding slot, and the fuse holder is embedded in the embedding slot along the embedding slot.

[0021] The beneficial effects of this utility model are as follows: This power converter comprises a composite socket panel, a housing, a first protective door assembly, a fuse assembly, at least two sets of standard plug assemblies, and a conductive assembly. The plug to be converted is inserted into the composite socket panel, and the first protective door assembly is pushed to connect with the conductive assembly. The conductive assembly is electrically connected to the standard plug assembly. After the standard plug assembly is pushed out of the housing, it can be inserted into an external power socket, thus achieving the purpose of converting the plug to the corresponding plug. The conductive assembly is electrically connected to the fuse assembly, allowing the conductive assembly to achieve a stable current and voltage protection effect in the circuit through the current limiting effect of the fuse assembly, improving the safety of this power converter. By setting the first protective door assembly between the composite socket panel and the conductive assembly, a single plug or sharp object is prevented from being inserted alone, thereby preventing electric shock caused by children playing with the power converter, improving safety.

[0022] The conductive assembly is configured to include at least one live wire (L) conductive assembly and one neutral wire (N) conductive assembly; the live wire (L) conductive assembly includes a live wire (L) socket copper clip and a live wire (L) pin copper clip, the neutral wire (N) conductive assembly includes a neutral wire (N) socket copper clip and a neutral wire (N) pin copper clip, and at least two side sockets are provided on the side of the housing, the side sockets including a side live wire socket and a side neutral wire socket; the live wire (L) socket... The copper clamp is equipped with a side live wire (L) socket copper clamp that matches the side live wire socket, and a side neutral wire (N) socket copper clamp that matches the side neutral wire socket; the side live wire (L) socket copper clamp extends to the side from the live wire (L) socket copper clamp, and the side neutral wire (N) socket copper clamp extends to the side from the neutral wire (N) socket copper clamp. The integrated structure is more conducive to improving the efficiency and stability of conduction. The live wire pin of the plug that needs to be converted can be inserted into the side live wire socket to connect with the copper clip of the side live wire (L) socket. It is connected to the live wire in any set of plug components through the live wire (L) connection component. The neutral wire pin of the plug that needs to be converted can be inserted into the side neutral wire socket to connect with the copper clip of the side neutral wire (N) socket. It is connected to the neutral wire slot in any set of plug components through the neutral wire (N) connection component, thereby realizing the conversion of different plug specifications. The side sockets are any one or a combination of American, British, Chinese, Australian, or European standard sockets, allowing the power converter to accept different types of plugs in addition to the composite socket panel. The composite socket panel and the side sockets can be used simultaneously or individually. The choice of American, British, Chinese, Australian, or European standard sockets can be made according to the actual situation.

[0023] The above is an overview of the utility model's technical solution. The following description, in conjunction with the accompanying drawings and specific embodiments, will further illustrate the utility model. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the overall design of this utility model; Figure 2 This is a side view of the present invention; Figure 3 This is an exploded view of the present invention; Figure 4 This is a structural diagram after removing the composite socket panel and housing. Figure 5 This is a schematic diagram of the structure of the conduction component and the second protection door component; Figure 6 This is a schematic diagram of the structure of the live wire (L) conducting component and the fuse component; Figure 7 A schematic diagram of the structure of the neutral (N) conductor assembly; Figure 8 This is a schematic diagram of the hybrid pin assembly. Figure 9 A schematic diagram of the structure for conducting the hybrid pin assembly; Figure 10 This is a structural diagram of a UK standard pin assembly; Figure 11 A schematic diagram showing the structure for conducting the UK standard pin assembly; Figure 12 A schematic diagram of the structure of a US standard pin assembly; Figure 13 A schematic diagram showing the structure for conducting US standard pin components; Figure 14 A schematic diagram of the structure for conducting the second protective door assembly; Figure 15 Exploded view of the second protective door assembly; Figure 16 A schematic diagram of the structure when the second protective door assembly is connected to the pin; Figure 17 A structural diagram of the protective door fasteners; Figure 18 A schematic diagram of the structure of an electric shock protection door; Figure 19 A schematic diagram of the rear structure of the door fastener; Figure 20 A schematic diagram showing the structure of the copper clips for the side live wire (L) socket and the side neutral wire (N) socket embedded in the back of the protective door fixing component; Figure 21 A schematic diagram of a fuse assembly fixedly fitted inside a power converter; Figure 22 A schematic diagram of the structure of the fuse assembly retaining sleeve; Figure 23 A schematic diagram showing the structure of a fuse assembly positioned on the neutral line; Figure 24 A schematic diagram of a fuse assembly positioned on the neutral line and secured by a fuse assembly retaining sleeve; Figure 25 A schematic diagram of a structure where the fuse is installed on the neutral line; Figure 26 A schematic diagram of a structure where the fuse is installed on the neutral line and fixed by the fuse assembly retaining sleeve; Figure 27 A schematic diagram of the fuse assembly fixing sleeve when the fuse is installed on the neutral line; Figure 28 A schematic diagram of a structure installed on the live wire when the fuse is used as the safety component; Figure 29 A schematic diagram of a structure where the fuse is installed on the live wire and fixed by the fuse assembly retaining sleeve; Figure 30 A schematic diagram of the fuse assembly fixing sleeve when the fuse is installed on the live wire; In the diagram: 01, composite socket panel; 0101, first socket; 0102, second socket; 0103, third socket; 0104, fourth socket; 0105, fifth socket; 0106, sixth socket; 0107, seventh socket; 0108, eighth socket; 0109, ninth socket; 0110, tenth socket; 0111, eleventh socket; 0112, twelfth socket; 02. Housing; 021. Side socket; 0211. Side live wire socket; 0212. Side neutral wire socket; 03. First protective door assembly; 04. Fuse assembly; 041. Fuse element; 042. Fuse element holder; 043. Fuse assembly holder; 0431. Embedded through groove; 0432. Third neutral wire fuse limit groove; 0433. Fourth neutral wire fuse limit groove; 0434. First live wire fuse limit groove; 0435. Second live wire fuse limit groove; 05. UK Standard Pin Assembly; 051. UK Standard Connector; 052. UK Standard Button; 053. UK Standard Ground Pin; 054. UK Standard Live Pin; 055. UK Standard Live Wire Connector; 056. UK Standard Neutral Pin; 057. UK Standard Neutral Wire Connector; 06. US Standard Pin Assembly; 061. US Standard Connector; 062. US Standard Button; 063. US Standard Live Wire Pin; 064. US Standard Live Wire Connector; 065. US Standard Neutral Wire Pin; 066. US Standard Neutral Wire Connector; 07. European standard pin assembly; 071. European standard socket; 072. European standard connector; 073. European standard button; 074. European standard live wire pin; 075. European standard live wire movable guide; 076. European standard neutral wire pin; 077. European standard neutral wire movable guide; 08. Live wire (L) continuity assembly; 081. Live wire (L) socket copper clip; 0811. First safety metal clip; 0812. Italian live wire continuity clamp; 0813. US standard live wire continuity clamp; 0814. UK standard live wire continuity clamp; 0815. Chinese or Australian standard live wire continuity clamp; 082. Live wire (L) pin copper clip; 0821. Second safety metal clip; 0822. Live wire pin continuity piece; 0823. European standard pin live wire clamp; 0824. UK standard pin live wire clamp; 0825. US standard pin live wire clamp; 083. Side live wire (L) socket copper clip; 09. Neutral (N) Wire Connector Assembly; 091. Neutral (N) Socket Copper Clip; 0911. Italian Neutral Wire Connector Clamp; 0912. US Standard Neutral Wire Connector Clamp; 0913. UK Standard Neutral Wire Connector Clamp; 0914. Chinese or Australian Standard Neutral Wire Connector Clamp; 0915. Third Safety Component Metal Clip; 092. Neutral (N) Socket Copper Clip; 0921. Neutral Wire Socket Conductor Plate; 0922. Neutral Wire Connector Plate; 0923. European Standard Socket Neutral Wire Clamp; 0924. US Standard Socket Neutral Wire Clamp; 0925. UK Standard Socket Neutral Wire Clamp; 0926. Fourth Safety Component Metal Clip; 093. Side Neutral (N) Socket Copper Clip; 10. Second protective door assembly; 101. Electric shock protection door; 1011. Protective door spring latch; 1012. Guide slope; 1013. First anti-single insertion latch; 1014. Second anti-single insertion latch; 102. Protective door fixing component; 1021. Plug through hole; 1022. Fixing component spring holder; 1023. First insulating bracket; 10231. Side neutral wire insertion groove; 1024. Second insulating bracket; 10241. Insulating baffle; 103. Spring component. Detailed Implementation

[0025] To further illustrate the technical means and effects adopted by this utility model to achieve its intended purpose, the specific implementation methods of this utility model will be described in detail below with reference to the accompanying drawings and preferred embodiments.

[0026] In the description of this utility model, it should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., 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 utility model 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, they should not be construed as limitations on this utility model.

[0027] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0028] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0029] Please refer to Figures 1 to 27 This utility model embodiment provides a power converter with a side socket, including a composite socket panel 01, a housing 02, a first protective door assembly 03, a fuse assembly 04, at least two sets of standard plug assemblies, and a conductive assembly. The conductive assembly includes at least a live wire (L) conductive assembly 08 and a neutral wire (N) conductive assembly 09; the live wire (L) conductive assembly 08 includes a live wire (L) socket copper clip 081. The live wire (L) pin copper clip 082 and the neutral wire (N) conduction assembly 09 include a neutral wire (N) socket copper clip 091 and a neutral wire (N) pin copper clip 092. The housing 02 has at least one set of side sockets 021 on its side, each side socket 021 including at least a side live wire socket 0211 and a side neutral wire socket 0212. The live wire (L) socket copper clip 081 is provided with a side live wire (L) pin that matches the side live wire socket 0211. The socket copper clip 083 and the neutral (N) socket copper clip 091 are provided with a side neutral (N) socket copper clip 093 that matches the side neutral socket 0212; the side live (L) socket copper clip 083 extends to the side from the live (L) socket copper clip 081, and the side neutral (N) socket copper clip 093 extends to the side from the neutral (N) socket copper clip 091; the fuse assembly 04 includes a fuse element 041. The live wire (L) socket copper clip 081 is provided with a first safety metal clip 0811 extending downward, and the live wire (L) pin copper clip 082 is provided with a second safety metal clip 0821. The two ends of the safety element 041 are respectively placed in the first safety metal clip 0811 and the second safety metal clip 0821 and are electrically connected; the side socket 021 is any one or a combination of American standard socket, British standard socket, Chinese standard socket, Australian standard socket or European standard socket.

[0030] By configuring this power converter to include a composite socket panel 01, a housing 02, a first protective door assembly 03, a fuse assembly 04, at least two sets of standard plug components, and a conductive component, the plug to be converted is inserted into the composite socket panel 01. Pushing the first protective door assembly 03 connects it to the conductive component. The conductive component is electrically connected to the standard plug component. After the standard plug component is pushed out of the housing 02, it can be inserted into an external power socket, thus achieving the purpose of converting the plug to the corresponding plug. The conductive component is electrically connected to the fuse assembly 04, allowing the conductive component to achieve a stable current and voltage protection effect in the circuit through the current limiting effect of the fuse assembly 04, improving the safety of this power converter. By setting the first protective door assembly 03 between the composite socket panel 01 and the conductive component, a single plug or sharp object is prevented from being inserted alone, thereby preventing electric shock caused by children playing with the power converter, improving safety. For the specific structural settings of the first protective door component 03, you can refer to the anti-single insertion protective door component with patent number 202021218777.2, or the conventional protective door component structure in the industry. The specific design can be selected and adjusted according to the actual situation, so it will not be described in detail in this embodiment.

[0031] By configuring the conductive assembly to include at least one live wire (L) conductive assembly 08 and one neutral wire (N) conductive assembly 09; the live wire (L) conductive assembly 08 includes a live wire (L) socket copper clip 081 and a live wire (L) pin copper clip 082, the neutral wire (N) conductive assembly 09 includes a neutral wire (N) socket copper clip 091 and a neutral wire (N) pin copper clip 092, and the housing 02 is provided with at least two side sockets 021 on its side, the side sockets 021 including a side live wire socket 0211 and a side neutral wire socket 0212; the live wire (L) The socket copper clip 081 is provided with a side live wire (L) socket copper clip 083 that matches the side live wire socket 0211, and the neutral wire (N) socket copper clip 091 is provided with a side neutral wire (N) socket copper clip 093 that matches the side neutral wire socket 0212; the side live wire (L) socket copper clip 083 extends to the side from the live wire (L) socket copper clip 081, and the side neutral wire (N) socket copper clip 093 extends to the side from the neutral wire (N) socket copper clip 091. The integrated structure is more conducive to improving the efficiency and stability of conduction. The live wire pin of the plug that needs to be converted can be inserted into the side live wire socket 0211 to connect with the side live wire (L) socket copper clip 083. It can be connected with the live wire in any set of plug components through the live wire (L) connection component 08. The neutral wire pin of the plug that needs to be converted can be inserted into the side neutral wire socket 0212 to connect with the side neutral wire (N) socket copper clip 093. It can be connected with the neutral wire slot in any set of plug components through the neutral wire (N) connection component 09, thereby realizing the conversion of different plug specifications. The side socket 021 can be any one or a combination of American standard sockets, British standard sockets, Chinese standard sockets, Australian standard sockets, or European standard sockets. This allows the power converter to connect to different specifications of sockets not only through the composite socket panel 01, but also through the side socket 021. The composite socket panel 01 and the side socket 021 can be used simultaneously or separately. The choice of American standard socket, British standard socket, Chinese standard socket, Australian standard socket, or European standard socket for the side socket 021 can be made according to the actual situation.

[0032] In order to allow different types of plugs to be connected to the side socket 021, the side live wire (L) socket copper clip 083 and the side neutral wire (N) socket copper clip 093 are respectively matched with any one of the American standard plugs, British standard plugs, European standard plugs or Australian standard plugs. The specific choice and adjustment can be made according to the actual setting of the side socket 021.

[0033] Preferred, such as Figures 4 to 7As shown, in order to make the power converter more stable, the side live wire (L) socket copper clip 083 and the live wire (L) socket copper clip 081 are integrally formed or riveted together and electrically connected. The side neutral wire (N) socket copper clip 093 and the neutral wire (N) socket copper clip 091 are integrally formed or riveted together and electrically connected. The integrated structure has lower losses and higher conduction efficiency, effectively ensuring the conduction effect of the power converter.

[0034] For specific instructions on how to insert the required pins into this power converter for pin conversion, please refer to... Figure 1 As shown, the composite socket panel 01 includes a first socket 0101, a second socket 0102, a third socket 0103, a fourth socket 0104, a fifth socket 0105, a sixth socket 0106, a seventh socket 0107, an eighth socket 0108, a ninth socket 0109, a tenth socket 0110, an eleventh socket 0111, and a twelfth socket 0112. The third socket 0103, fourth socket 0104, twelfth socket 0112, and seventh socket 0107 are arranged in a straight line from front to back. The third socket 0103 is located at the top, and the fourth socket 0104 is formed above the twelfth socket 0112. The first socket 0101 and the second socket 0102 are both located to the left of the twelfth socket 0112. The fifth socket 0105 and the sixth socket 0106 are both located to the right of the twelfth socket 0112, the eighth socket 0108 and the ninth socket 0109 are both located to the left of the seventh socket 0107, and the tenth socket 0110 and the eleventh socket 0111 are both located to the right of the seventh socket 0107. The second socket 0102, the fifth socket 0105 and the seventh socket 0107 combine to form a US standard socket, the first socket 0101, the twelfth socket 0112 and the sixth socket 0106 combine to form an Italian standard socket, the third socket 0103, the eighth socket 0108 and the eleventh socket 0111 combine to form a British standard socket, and the fourth socket 0104, the ninth socket 0109 and the tenth socket 0110 combine to form Chinese standard and Australian standard sockets. The special socket structure on the composite socket panel 01, combined with the British standard plug assembly 05, American standard plug assembly 06, and European standard plug assembly 07, can be used for conversion between plugs and sockets from multiple countries, greatly improving the applicability of the power converter.

[0035] Regarding the specific structural configuration of the pin assembly, as follows: Figure 3As shown, the plug assembly consists of three sets: a British standard plug assembly 05 disposed between the composite socket panel 01 and the housing 02 and electrically connected to the live wire (L) conductor assembly 08 and the neutral wire (N) conductor assembly 09 respectively; a US standard plug assembly 06 disposed between the British standard plug assembly 05 and electrically connected to the live wire (L) conductor assembly 08 and the neutral wire (N) conductor assembly 09 respectively; and a European standard plug assembly 07 disposed between the composite socket panel 01 and the housing 02 and electrically connected to the live wire (L) conductor assembly 08 and the neutral wire (N) conductor assembly 09 respectively.

[0036] Regarding the specific structural configuration of the UK standard pin assembly 05, as follows: Figures 10 to 11 As shown, the UK standard plug assembly 05 includes a UK standard connector 051 disposed between the composite socket panel 01 and the housing 02, a UK standard button 052 slidably connected to the UK standard connector 051, a UK standard ground pin 053 installed in the UK standard connector 051 and extending downward, a UK standard live pin 054 disposed in the UK standard connector 051 and extending downward, a UK standard live wire movable guide 055 disposed at the top of the UK standard live pin 054 and extending downward, a UK standard neutral pin 056 disposed in the UK standard connector 051 and extending downward, and a UK standard neutral wire movable guide 057 disposed at the top of the UK standard neutral pin 056 and extending downward. When an external force is applied to the UK standard button component 052, the UK standard button component 052 drives the UK standard connector 051 on it, as well as the UK standard ground pin 053, UK standard live pin 054, UK standard live wire movable guide 055, UK standard neutral pin 056, and UK standard neutral wire movable guide 057 disposed on the UK standard connector 051, to move up and down synchronously. For other structures and usage methods (control methods) of the UK standard pin assembly 05, please refer to the utility model patent with patent number 201920478501.9, and therefore will not be described in detail in this embodiment.

[0037] Regarding the specific structural configuration of the US standard pin assembly 06, as follows: Figures 12 to 13As shown, the US standard connector assembly 06 includes a US standard connector 061 disposed between the UK standard connectors 051, a US standard button 062 slidably connected to the US standard connector 061, a US standard live wire pin 063 disposed in the US standard connector 061 and extending downward, a US standard live wire movable guide 064 disposed at the top of the US standard live wire pin 063 and extending downward, a US standard neutral wire pin 065 disposed in the US standard connector 061 and extending downward, and a US standard neutral wire movable guide 066 disposed at the top of the US standard neutral wire pin 065 and extending downward. When an external force is applied to the US standard button component 062, the US standard button component 062 drives the US standard connector 061 mounted thereon, as well as the US standard live wire pin 063, US standard live wire movable guide plate 064, US standard neutral wire pin 065, and US standard neutral wire movable guide plate 066 mounted on the US standard connector 061, to move up and down synchronously. For other structures and usage methods (control methods) of the US standard pin assembly 06, please refer to the utility model patent with patent number 201920478501.9, and therefore will not be elaborated upon in this embodiment.

[0038] Regarding the specific structural configuration of the European standard pin assembly 07, as follows: Figures 8 to 9 As shown, the European standard plug assembly 07 includes a European standard sleeve 071 disposed between the composite socket panel 01 and the housing 02, a European standard connector 072 slidably disposed within the European standard plug sleeve, a European standard button 073 disposed on the European standard connector 072, a European standard live wire pin 074 disposed on the European standard connector 072, a European standard live wire movable guide 075 disposed at the top of the European standard live wire pin 074 and bent downwards, a European standard neutral wire pin 076 disposed on the European standard connector 072, and a European standard neutral wire movable guide 077 disposed at the top of the European standard neutral wire pin 076 and bent downwards. When an external force is applied to the European standard button component 073, the European standard button component 073 drives the European standard socket 071, the European standard connector 072, the European standard live wire pin 074, the European standard live wire movable guide plate 075, the European standard neutral wire pin 076, and the European standard neutral wire movable guide plate 077 on the European standard connector 072 to move up and down simultaneously. The European standard neutral wire pin 076 and the European standard live wire pin 074 are pushed out of the housing 02 along the European standard socket 071 to perform power conversion. The specific structure and usage are conventional technical means in the industry, so they will not be described in detail in this embodiment.

[0039] The specific structural design of the copper clip 081 of the live wire (L) socket is as follows: Figures 4 to 13As shown, the live wire (L) socket copper clip 081 includes an Italian live wire conduction clamp 0812 that matches the sixth socket 0106, an American standard live wire conduction clamp 0813 located on the inner side of the Italian live wire conduction clamp 0812 and matching the fifth socket 0105, a British standard live wire conduction clamp 0814 located at the lower end of the Italian live wire conduction clamp 0812 and matching the eleventh socket 0111, and an inclined... A Chinese or Australian standard fire wire connection clamping part 0815 is obliquely disposed inside the British standard fire wire connection clamping part 0814 and matches the tenth socket 0110. A first safety metal clip 0811 is disposed on the outward-facing side of the Italian fire wire connection clamping part 0812. A side fire wire (L) socket copper clip 083 is disposed between the first safety metal clip 0811 and the Italian fire wire connection clamping part 0812 and extends and bends towards the side through hole. The fire wire pin of the Italian plug to be converted is inserted into the sixth socket 0106 and contacts the Italian fire wire connection clamping part 0812 for connection. The fire wire pin of the American standard plug to be converted is inserted into the fifth socket 0105 and contacts the American standard fire wire connection clamping part 0813 for connection. The live wire pin of the UK standard connector that needs to be converted should be inserted into the eleventh socket 0111 and make contact with the UK standard live wire connection clamp 0814 to establish continuity. The live wire pin of the Chinese or Australian standard connector that needs to be converted should be inserted into the tenth socket 0110 and make contact with the Chinese or Australian standard live wire connection clamp 0815 to establish continuity.

[0040] The specific structural configuration of the copper clip 082 for the live wire (L) pin is as follows: Figures 4 to 13As shown, the live wire (L) pin copper clip 082 includes a live wire pin conductive piece 0822 that is circumferentially disposed on the inner side of the housing 02 and correspondingly bent to avoid the space between the pin assembly and the conductive assembly; a European standard live wire pin clamping part 0823 disposed on the live wire pin conductive piece 0822 and located directly below the European standard live wire movable guide piece 075; a British standard live wire pin clamping part 0824 disposed on the live wire pin conductive piece 0822 and located directly below the British standard live wire movable guide piece 055; and a US standard live wire pin clamping part 0825 disposed on the live wire pin conductive piece 0822 and located directly below the US standard live wire movable guide piece 064. The second safety metal clip 0821 is disposed in the middle of the live wire pin conductive piece 0822 and bends and extends toward the safety piece 041. When the European standard plug assembly 07 is used outside the power converter, the European standard live wire movable guide 075 is correspondingly embedded in the European standard plug live wire clamping part 0823, thereby achieving a conductive connection between the live wire in the European standard plug assembly 07 and the live wire of the multi-country plug that needs to be converted on the power converter. When the British standard plug assembly 05 is used outside the power converter, the British standard live wire movable guide 055 is correspondingly embedded in the British standard plug live wire clamping part 0824, thereby achieving a conductive connection between the live wire in the British standard plug assembly 05 and the live wire of the multi-country plug that needs to be converted on the power converter. When the American standard plug assembly 06 is used outside the power converter, the American standard live wire movable guide 064 is correspondingly embedded in the American standard plug live wire clamping part 0825, thereby achieving a conductive connection between the live wire in the American standard plug assembly 06 and the live wire of the multi-country plug that needs to be converted on the power converter.

[0041] The specific structural configuration of the neutral (N) socket copper clip 091 is as follows: Figures 4 to 13As shown, the neutral (N) socket copper clip 091 includes an Italian neutral wire conduction clamp 0911 that matches the first socket 0101, an American standard neutral wire conduction clamp 0912 that is disposed inside the Italian neutral wire conduction clamp 0911 and matches the second socket 0102, a British standard neutral wire conduction clamp 0913 that is disposed at the lower end of the Italian neutral wire conduction clamp 0911 and matches the eighth socket 0108, and a Chinese or Australian standard neutral wire conduction clamp 0914 that is inclinedly disposed inside the British standard neutral wire conduction clamp 0913 and matches the ninth socket 0109. The side neutral (N) socket copper clip 093 is disposed at the lower end of the Italian neutral wire conduction clamp 0911 and extends toward the side socket 021. The neutral pin of the Italian plug requiring conversion should be inserted into the first socket 0101 and make contact with the Italian neutral wire connection clamp 0911 for conductivity. The neutral pin of the US plug requiring conversion should be inserted into the second socket 0102 and make contact with the US neutral wire connection clamp 0912 for conductivity. The neutral pin of the UK plug requiring conversion should be inserted into the eighth socket 0108 and make contact with the UK neutral wire connection clamp 0913 for conductivity. The neutral pin of the Chinese or Australian plug requiring conversion should be inserted into the ninth socket 0109 and make contact with the Chinese or Australian neutral wire connection clamp 0914 for conductivity.

[0042] The specific structural configuration of the neutral (N) pin copper clip 092 is as follows: Figures 4 to 13As shown, a neutral pin conductive piece 0921 is arranged around the inner side of the housing 02 and correspondingly bent to avoid the connection between the pin assembly and the conductor; a neutral connecting piece 0922 is disposed in the middle of the neutral pin conductive piece 0921 and extends upward to be clamped and connected by the neutral (N) socket copper clip 091; a European standard pin neutral clamping part 0923 is disposed on the neutral pin conductive piece 0921 and directly below the European standard neutral movable conductive piece 077; a US standard pin neutral clamping part 0924 is disposed on the neutral pin conductive piece 0921 and directly below the US standard neutral movable conductive piece 066; and a UK standard pin neutral clamping part 0925 is disposed on the neutral pin conductive piece 0921 and directly below the UK standard neutral movable conductive piece 057. When the European standard plug assembly 07 is used outside the power converter, the European standard neutral wire movable guide 077 is correspondingly embedded in the European standard plug neutral wire clamping part 0923, thereby achieving a conductive connection between the neutral wire in the European standard plug assembly 07 and the neutral wire of the multi-country plug that needs to be converted on the power converter. When the British standard plug assembly 05 is used outside the power converter, the British standard neutral wire movable guide 057 is correspondingly embedded in the British standard plug neutral wire clamping part 0925, thereby achieving a conductive connection between the neutral wire in the British standard plug assembly 05 and the neutral wire of the multi-country plug that needs to be converted on the power converter. When the American standard plug assembly 06 is used outside the power converter, the American standard neutral wire movable guide 066 is correspondingly embedded in the American standard plug neutral wire clamping part 0924, thereby achieving a conductive connection between the neutral wire in the American standard plug assembly 06 and the neutral wire of the multi-country plug that needs to be converted on the power converter.

[0043] To prevent safety issues caused by a single plug being inserted into the side socket 021, such as... Figures 14 to 18As shown, a second protective door assembly 10 is provided in the side socket 021. The second protective door assembly 10 includes an electric shock protection door 101, a protective door fixing member 102, and a spring member 103. The electric shock protection door 101 is embedded in the protective door fixing member 102. The protective door fixing member 102 is located between the side live wire (L) socket copper clip 083 and the side neutral wire (N) socket copper clip 093. The protective door fixing member 102 is provided with at least two sets of plug through holes 1021 that match the side socket 021 and a fixing member spring bracket 1022. The electric shock protection door 101 is provided with a protective door spring bracket 1011. One end of the spring member 103 is sleeved on the spring clip 1011 of the protective door, and the other end is sleeved in the spring clip seat 1022 of the fixing member to fix the spring member 103. The electric shock protection door 101 is generally U-shaped. When no external plug is inserted into the side plug hole 021, the upper frame of the electric shock protection door 101 covers the copper clip 083 of the side live wire (L) socket and the corresponding side plug hole 021, and its lower frame covers the copper clip 093 of the side neutral wire (N) socket and the corresponding side plug hole 021, thereby preventing a single plug or sharp object from being inserted alone, and thus preventing electric shock caused by children playing with the power converter, improving safety. When the external pin is inserted into the side socket 021, one of the external pins is inserted into the lower side neutral wire socket 0212, pushing the lower end of the electric shock protection door 101 upward. The neutral wire pin of the external pin passes through the pin through hole 1021 at the lower end of the protection door fixing member 102 and is embedded in the side neutral (N) socket copper clip 093, thereby realizing the conduction of the neutral wire. At the same time, the spring member 103 is forced to compress and deform, and the upper end of the electric shock protection door 101 protrudes from the pin through hole 1021 at the upper end of the protection door fixing member 102. The live wire pin of the external pin is inserted into the side live wire socket 0211 and passes through the pin through hole 1021 at the upper end of the protection door fixing member 102 and is embedded in the side live wire (L) socket copper clip 083, thereby realizing the conduction of the neutral wire. When no external plug is inserted, the anti-electric shock protection door 101 moves downward under the elastic restoring force of the spring member 103. Its upper frame blocks the side live wire (L) socket copper clip 083 and the corresponding side socket 021, and its lower frame blocks the side neutral wire (N) socket copper clip 093 and the corresponding side socket 021, thereby preventing a single plug or sharp object from being inserted alone, thus preventing electric shock caused by children playing with the power converter and improving safety. Preferably, the protection door fixing member 102 is made of insulating material, thereby effectively isolating the side live wire (L) socket copper clip 083 and the side neutral wire (N) socket copper clip 093, preventing short circuits and further improving safety.

[0044] To allow the external pins to better push open the anti-electric shock protection door 101 and establish electrical connection with the conductive component, such as... Figures 14 to 18As shown, the upper and lower frames of the electric shock protection door 101 are respectively provided with a guide slope 1012 extending inward and downward from the top. When the external pin is inserted into the side socket 021, the external pin first contacts the guide slope 1012. Under the inclined guiding action of the guide slope 1012, the external pin slides towards the position of the pin through hole 1021, pushing the electric shock protection door 101 upward, thereby inserting into the pin through hole 1021 and conducting with the conductive component, improving the efficiency and accuracy of side conduction, and further improving the practicality of this power converter.

[0045] To further prevent safety issues caused by single insertion into the side socket 021, such as... Figure 18 As shown, the two side walls of the electric shock protection door 101 are both diamond-shaped with a higher middle and lower top and bottom, forming a rocker structure, allowing the electric shock protection door 101 to slide up and down and swing left and right within the protection door fixing member 102. The upper frame of the electric shock protection door 101 has a first anti-single insertion block 1013 at the end facing the live wire (L) conducting component 08, which matches the side live wire socket 0211. The lower frame of the electric shock protection door 101 has a second anti-single insertion block 1014 at the end facing the neutral wire (N) conducting component 09, which matches the side neutral wire socket 0212. When the side live wire socket 0211 is inserted alone, the upper frame of the electric shock protection door 101 tilts and swings towards the live wire (L) conducting component 08, causing the first anti-single insertion block 1013 to engage with the pin through hole 1021 at the upper end of the protection door fixing member 102. When the electric shock protection door 101 cannot be moved, it prevents external objects from being inserted to conduct electricity. When the side neutral wire socket 0212 is inserted alone, the lower frame of the electric shock protection door 101 tilts and swings towards the neutral wire (N) conduction component 09, causing the anti-single insertion second locking block 1014 to engage in the pin through hole 1021 at the lower end of the protection door fixing member 102. At this time, the electric shock protection door 101 cannot be moved, preventing external objects from being inserted to conduct electricity. The two work together to further prevent the side socket 021 from being inserted alone, thus preventing electric shock caused by children playing with the power converter and improving safety.

[0046] Regarding the specific installation method of the pins and the side neutral (N) socket copper clip 093 and the side live (L) socket copper clip 083 within the protective door fixing component 102, as follows: Figures 14 to 16 as well as Figures 19 to 20As shown, the protective door fixing member 102 extends a first insulating bracket 1023 towards the neutral (N) conductor assembly 09. The first insulating bracket 1023 is provided with a side neutral wire insertion groove 10231 for inserting the side neutral (N) socket copper clip 093. The side live wire (L) socket copper clip 083 is disposed at the top of the first insulating bracket 1023. The side neutral (N) socket copper clip 093 is inserted into the side neutral wire insertion slot 10231 to fix the side neutral (N) socket copper clip 093, preventing the side neutral (N) socket copper clip 093 from shifting when an external plug is inserted, thus preventing the problem of normal conduction. In addition, the side neutral wire insertion slot 10231 isolates the side neutral (N) socket copper clip 093 and the side live (L) socket copper clip 083, thereby effectively preventing the side neutral (N) socket copper clip 093 and the side live (L) socket copper clip 083 from contacting and conducting, causing a short circuit, and further improving safety.

[0047] To prevent the copper clip 081 of the live wire (L) socket from shifting, such as Figures 19 to 20 As shown, the protective door fixing member 102 also includes a second insulating bracket 1024 formed on the side of the first insulating bracket 1023 and bent and extended toward the live wire (L) socket copper clip 081. An insulating baffle 10241 is protruding from the middle of the second insulating bracket 1024. The live wire (L) socket copper clip 081 is placed on the insulating baffle 10241. Specifically, the insulating baffle 10241 is between the British standard live wire conduction clamp 0814 and the Italian live wire conduction clamp 0812, thereby fixing the middle part of the live wire (L) socket copper clip 081, preventing the live wire (L) socket copper clip 081 from shifting, effectively preventing short circuits between the live wire (L) socket copper clips 081, and improving safety.

[0048] The first insulating bracket 1023 and the second insulating bracket 1024 can be integrally injection molded or can be set separately. The specific configuration can be determined according to the actual situation, so no specific limitation is made in this embodiment.

[0049] Regarding the specific structural configuration of the fuse assembly 04, as follows: Figures 1 to 27 As shown, the fuse assembly 04 is configured to include a fuse element 041. Preferably, the fuse element 041 can be a fuse tube, a fuse, or a circuit breaker, or other structures that can protect the circuit. It can be configured according to the actual situation.

[0050] Regarding the specific connection method between the fuse assembly 04 and this power converter, as follows: Figures 4 to 6As shown, the live wire (L) socket copper clip 081 is provided with a downwardly extending first fuse metal clip 0811, and the live wire (L) pin copper clip 082 is provided with a second fuse metal clip 0821. The two ends of the fuse 041 are respectively placed in the first fuse metal clip 0811 and the second fuse metal clip 0821 and electrically connected, so that the live wire (L) conducting component 08 and the fuse 041 achieve stable conduction, effectively protecting the circuit of the power converter and preventing circuit overload.

[0051] To further improve the safety of this power converter, such as Figures 4 to 6 As shown, the fuse assembly 04 further includes a fuse holder 042 disposed between the first fuse metal clip 0811 and the second fuse metal clip 0821. The fuse 041 is nested within the fuse holder 042. The fuse holder 042 is made of insulating material, thereby achieving the safety of conduction, preventing leakage current and electric shock, and improving the safety of this power converter.

[0052] The fuse assembly 04 can also be mounted on the neutral (N) conductor assembly 09, such as... Figures 23 to 24 As shown, specifically, the neutral (N) socket copper clip 091 is provided with a third safety metal clip 0915, and the neutral (N) pin copper clip 092 is provided with a fourth safety metal clip 0926. The two ends of the fuse 041 are respectively disposed in the third safety metal clip 0915 and the fourth safety metal clip 0926 and electrically connected, so that the neutral (N) conduction component 09 and the fuse 041 achieve stable conduction, effectively protecting the circuit of this power converter and preventing circuit overload.

[0053] Correspondingly, such as Figures 23 to 24 As shown, the fuse holder 042 is disposed between the third fuse metal clip 0915 and the fourth fuse metal clip 0926. By nesting the fuse 041 inside the fuse holder 042, which is made of insulating material, the safety of conduction is achieved, leakage current and electric shock are prevented, and the safety of this power converter is improved.

[0054] Preferably, to further secure the fuse assembly 04, such as Figures 21 to 22As shown, this power converter also includes a fuse assembly retaining sleeve 043. The fuse assembly 04 is placed inside the fuse assembly retaining sleeve 043. The fuse assembly retaining sleeve 043 has at least one embedding slot 0431. The fuse holder 042 is embedded in the embedding slot 0431, and the fuse 041 is embedded in the fuse holder 042, thereby further fixing the fuse assembly 04, preventing the fuse 041 from shifting, and isolating the fuse 041 from other components to prevent short circuits, further improving the safety of this power converter.

[0055] The specific method by which the live wire (L) conduction assembly 08 is electrically connected to the fuse 041 via the fuse assembly fixing sleeve 043 is as follows: Figures 21 to 22 As shown, the upper and lower ends of the fuse assembly fixing sleeve 043 are both open. The first fuse metal clip 0811 extends into the fuse assembly fixing sleeve 043 from the upper opening to clamp and electrically connect the fuse 041. The second fuse metal clip 0821 extends into the fuse assembly fixing sleeve 043 from the lower opening to clamp and electrically connect the fuse 041. This isolates the fuse 041 from other components while enabling normal conduction between the live wire (L) conducting component 08 and the fuse 041. The positions of the first fuse metal clip 0811 and the second fuse metal clip 0821 are respectively restricted, thereby making the conduction more stable and improving the conduction efficiency.

[0056] The specific method by which the neutral (N) conductor assembly 09 is electrically connected to the fuse 041 via the fuse assembly fixing sleeve 043 is as follows: Figures 23 to 24 As shown, both the upper and lower ends of the fuse assembly fixing sleeve 043 are open. The third fuse metal clip 0915 extends into the fuse assembly fixing sleeve 043 from the upper opening to clamp and electrically connect the fuse 041. The fourth fuse metal clip 0926 extends into the fuse assembly fixing sleeve 043 from the lower opening to clamp and electrically connect the fuse 041. This isolates the fuse 041 from other components while enabling normal conduction between the neutral (N) conductor assembly 09 and the fuse 041. The positions of the third fuse metal clip 0915 and the fourth fuse metal clip 0926 are respectively restricted, thereby making the conduction more stable and improving the conduction efficiency.

[0057] To reduce costs and improve conduction efficiency, this power converter may also be designed without the fuse holder 042.

[0058] like Figures 28 to 30As shown, when the fuse assembly 04 is placed on the live wire, the live wire (L) conduction assembly 08 is directly connected to the fuse 041. The upper end of the fuse assembly fixing sleeve 043 is open for the fuse 041 to be inserted. The lower end of the embedded through groove 0431 is provided with a first live wire fuse limiting groove 0434 for the first fuse metal clip 0811 to be inserted, and a second live wire fuse limiting groove 0435 for the second fuse metal clip 0821 and the live wire plug conduction piece 0822 to be inserted. By placing the first fuse metal clip 0811 into the first live wire fuse limiting groove 0434, the first fuse metal clip 0811 is limited, ensuring that the first fuse metal clip 0811 holds the conduction fuse 041. By placing the second fuse metal clip 0821 and the live wire pin conductive piece 0822 into the second live wire fuse limiting groove 0435, the second fuse metal clip 0821 and the live wire pin conductive piece 0822 are limited, ensuring that the second fuse metal clip 0821 holds the conductive fuse 041.

[0059] like Figures 25 to 27 As shown, when the fuse assembly 04 is placed on the neutral line, the neutral (N) conduction assembly 09 is directly connected to the fuse 041. The upper end of the fuse assembly fixing sleeve 043 is open for the fuse 041 to be inserted. The lower end of the embedded through groove 0431 is provided with a third neutral wire safety limiting groove 0432 for the third fuse metal clip 0915 to be inserted, and a fourth neutral wire safety limiting groove 0433 for the fourth fuse metal clip 0926 and the neutral wire connecting piece 0922 to be inserted. By placing the third fuse metal clip 0915 into the third neutral wire safety limiting groove 0432, the third fuse metal clip 0915 is limited, ensuring that the third fuse metal clip 0915 holds the conduction fuse 041. By placing the fourth safety metal clip 0926 and the neutral wire connecting piece 0922 into the fourth neutral wire safety limiting groove 0433, the fourth safety metal clip 0926 and the neutral wire connecting piece 0922 are limited, ensuring that the fourth safety metal clip 0926 holds the conductive safety component 041.

[0060] To further save space within this power converter and improve space utilization, such as Figure 21 As shown, the fuse assembly fixing sleeve 043 can be provided with a clearance groove to allow the protective door fixing member 102 to move, thereby effectively saving space inside the power converter, making the internal structure of the power converter more compact, with high space utilization and smaller size.

[0061] The fuse assembly fixing sleeve 043 can be integrally formed with other brackets in the power converter, or it can be set separately. The specific setting can be determined according to the actual situation, so no specific limitation is made in this embodiment.

[0062] It should be noted that the power converter with a side socket disclosed in this utility model is an improvement on the specific structure, but the specific control method is not an innovation of this utility model. The fuses, UK standard live wire pins, UK standard ground wire pins, UK standard neutral wire pins, US standard live wire pins, US standard neutral wire pins, springs, and other components involved in this utility model can be general standard parts or components known to those skilled in the art. Their structures, principles, and control methods are all known to those skilled in the art through technical manuals or conventional experimental methods.

[0063] The above description is merely a preferred embodiment of the present utility model and does not constitute any limitation on the technical scope of the present utility model. Therefore, other structures obtained by using the same or similar technical features as the above embodiments of the present utility model are all within the protection scope of the present utility model.

Claims

1. A power converter with a side socket, characterized in that: The device includes a composite socket panel, a housing, a first protective door assembly, a fuse assembly, at least two sets of standard plug assemblies, and a conductive assembly. The conductive assembly includes at least a live wire (L) conductive assembly and a neutral wire (N) conductive assembly. The live wire (L) conductive assembly includes a live wire (L) socket clip and a live wire (L) plug clip. The neutral wire (N) conductive assembly includes a neutral wire (N) socket clip and a neutral wire (N) plug clip. The housing has at least one set of side sockets on its side, including at least a side live wire socket and a side neutral wire socket. The live wire (L)... The socket copper clip is provided with a side live wire (L) socket copper clip that matches the side live wire socket, and the neutral wire (N) socket copper clip is provided with a side neutral wire (N) socket copper clip that matches the side neutral wire socket; the side live wire (L) socket copper clip extends to the side from the live wire (L) socket copper clip, and the side neutral wire (N) socket copper clip extends to the side from the neutral wire (N) socket copper clip; the side socket is any one or a combination of American standard socket, British standard socket, Chinese standard socket, Australian standard socket, or European standard socket; the fuse assembly is provided on the live wire (L) conduction assembly or the neutral wire (N) conduction assembly.

2. The power converter with a side socket according to claim 1, characterized in that: The side live wire (L) socket copper clip and the side neutral wire (N) socket copper clip are respectively compatible with any one of the following pin types: American standard pin, British standard pin, European standard pin, or Australian standard pin.

3. The power converter with a side socket according to claim 1, characterized in that: The composite socket panel is equipped with any combination of British standard sockets, American standard sockets, Chinese / Australian standard sockets, and Italian standard sockets.

4. The power converter with a side socket according to claim 1, characterized in that: The pin assembly includes any combination of British standard pin assemblies, American standard pin assemblies, European standard pin assemblies, Chinese standard pin assemblies, or Australian standard pin assemblies; each pin assembly has a slide, which has an operation key and at least two conductive pins, and can move in the axial direction; the conductive pins extend out of or retract into the housing.

5. The power converter with a side socket according to claim 1, characterized in that: A second protective door assembly is provided inside the side socket. The second protective door assembly includes an electric shock protection door, a protective door fixing component, and a spring component. The electric shock protection door is embedded in the protective door fixing component. The protective door fixing component is provided with at least two sets of pin through holes that match the side socket and a fixing spring seat that matches the spring component. The electric shock protection door is provided with a protective door spring post. One end of the spring component is sleeved on the protective door spring post, and the other end is sleeved in the fixing spring seat to fix the spring component. The electric shock protection door is generally U-shaped. Its upper frame covers the side live wire (L) socket copper clip and the corresponding side socket, and its lower frame covers the side neutral wire (N) socket copper clip and the corresponding side socket.

6. The power converter with a side socket according to claim 5, characterized in that: The upper and lower borders are respectively provided with a guide slope extending from the top to the bottom.

7. The power converter with a side socket according to claim 5, characterized in that: The upper frame of the electric shock protection door has a first anti-single insertion block at one end facing the live wire (L) conducting component, which matches the side live wire socket. The lower frame of the electric shock protection door has a second anti-single insertion block at one end facing the neutral wire (N) conducting component, which matches the side neutral wire socket.

8. The power converter with a side socket according to claim 5, characterized in that: Both sides of the electric shock protection door are diamond-shaped, with the middle being higher and the top and bottom being lower.

9. The power converter with a side socket according to claim 5, characterized in that: The protective door fixing component extends towards the neutral (N) conductor component with a first insulating bracket. The first insulating bracket is provided with a side neutral (N) socket copper clip for inserting the side neutral (N) socket copper clip. The side live (L) socket copper clip is located at the top of the first insulating bracket.

10. The power converter with a side socket according to claim 9, characterized in that: The protective door fixing component also includes a second insulating bracket formed on the side of the first insulating bracket and bent and extended toward the copper clip of the live wire (L) socket. An insulating baffle is protruding in the middle of the second insulating bracket, and the copper clip of the live wire (L) socket is placed on the insulating baffle.

11. The power converter with a side socket according to claim 1, characterized in that: The fuse assembly includes a fuse element, which may be a fuse tube, a fuse wire, or a fuse circuit breaker.

12. The power converter with a side socket according to claim 11, characterized in that: The live wire (L) socket copper clip is provided with a first safety metal clip, and the live wire (L) pin copper clip is provided with a second safety metal clip. The two ends of the safety element are respectively placed in the first safety metal clip and the second safety metal clip and are electrically connected.

13. The power converter with a side socket according to claim 11, characterized in that: The neutral (N) socket copper clip is provided with a third safety metal clip, and the neutral (N) pin copper clip is provided with a fourth safety metal clip. The two ends of the safety clip are respectively located in the third safety metal clip and the fourth safety metal clip and are electrically connected.

14. The power converter with a side socket according to claim 12, characterized in that: The fuse assembly further includes a fuse holder, on which the fuse is nested, and the fuse holder is disposed between the first fuse metal clip and the second fuse metal clip.

15. The power converter with a side socket according to claim 13, characterized in that: The fuse assembly further includes a fuse holder, on which the fuse is nested, and the fuse holder is disposed between the third fuse metal clip and the fourth fuse metal clip.

16. The power converter with a side socket according to any one of claims 14 to 15, characterized in that: The power converter with a side socket also includes a fuse assembly retaining sleeve, the fuse assembly is placed inside the fuse assembly retaining sleeve, the fuse assembly retaining sleeve has at least one embedded through groove, and the fuse holder is inserted into the embedded through groove along the embedded through groove.

Citation Information

Patent Citations

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