A converter socket

CN115173112BActive Publication Date: 2026-08-11ZHEJIANG CHINT BUILDING ELECTRICS
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-15
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0004]因此,本发明要解决的技术问题在于克服现有技术中的转换器插座需要经过注塑工序形成插销支架再进行装配,增加了用料量,存在生产成本较高的缺陷,从而提供一种转换器插座

Benefits of technology

[0020]1. The present invention provides a converter socket, comprising: a housing, the housing including a connected front cover and a bottom cover, the bottom cover having a first through hole, a second through hole and a third through hole; a socket, the socket including an L-pole socket, an N-pole socket and an E-pole socket; a pin, the pin including an L-pole pin, an N-pole pin and an E-pole pin, the L-pole pin being connected to the L-pole socket and passing through the first through hole, the N-pole pin being connected to the N-pole socket and passing through the second through hole, the E-pole pin being connected to the E-pole socket and passing through the third through hole; a partition, the partition separating the socket and the pin and having a first mounting portion, a second mounting portion and a third mounting portion, the L-pole pin being located in the first mounting portion, the N-pole pin being located in the second mounting portion, and the E-pole pin being located in the third mounting portion. This converter socket structure allows for direct mounting of the L-pole pin, N-pole pin, and E-pole pin via the first, second, and third mounting portions of the partition. This eliminates the need for injection molding of the pin brackets before assembly, reducing material usage and production costs. Furthermore, the partition effectively isolates the pins and sockets, ensuring product safety.

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Abstract

This invention discloses a converter socket, comprising: a housing; sockets including an L-pole socket, an N-pole socket, and an E-pole socket; pins including an L-pole pin, an N-pole pin, and an E-pole pin, wherein the L-pole pin is connected to the L-pole socket, the N-pole pin is connected to the N-pole socket, and the E-pole pin is connected to the E-pole socket; and a partition, which separates the sockets and the pins and has a first mounting portion, a second mounting portion, and a third mounting portion, wherein the L-pole pin is located in the first mounting portion, the N-pole pin is located in the second mounting portion, and the E-pole pin is located in the third mounting portion. The L-pole pin, N-pole pin, and E-pole pin can be directly mounted via the first, second, and third mounting portions of the partition, eliminating the need for injection molding to form pin brackets before assembly, thus reducing material usage and production costs.
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Description

Technical Field

[0001] This invention relates to the field of electrical technology, and more specifically to a converter socket. Background Technology

[0002] Converter sockets are mainly used to convert one type of socket into another type of portable socket, primarily for use with a different electrical supply, in order to make electricity use more convenient and safer for people.

[0003] Existing technology discloses a converter socket including a pin bracket and a partition, wherein the pin bracket is formed by injection molding a pin in a mold, and the pin bracket is installed in the partition. However, the above-mentioned converter socket requires an injection molding process to form the pin bracket before assembly, which increases the amount of material used and makes the production cost higher. Summary of the Invention

[0004] Therefore, the technical problem to be solved by the present invention is to overcome the shortcomings of the prior art converter socket, which requires injection molding to form a pin bracket before assembly, which increases the amount of material used and has a high production cost, thereby providing a converter socket.

[0005] A converter socket, comprising:

[0006] A housing, the housing comprising a connected front cover and a bottom cover, the bottom cover being provided with a first through hole, a second through hole and a third through hole;

[0007] The socket includes an L-pole socket, an N-pole socket, and an E-pole socket;

[0008] The pin includes an L-pole pin, an N-pole pin, and an E-pole pin. The L-pole pin is connected to the L-pole sleeve and passes through the first through hole. The N-pole pin is connected to the N-pole sleeve and passes through the second through hole. The E-pole pin is connected to the E-pole sleeve and passes through the third through hole.

[0009] A partition, which separates the sleeve and the pin and has a first mounting part, a second mounting part and a third mounting part, wherein the L-pole pin is located in the first mounting part, the N-pole pin is located in the second mounting part and the E-pole pin is located in the third mounting part.

[0010] Furthermore, the L-pole pin, the N-pole pin, and the E-pole pin are all snapped into the partition plate.

[0011] Furthermore, the partition is provided with a first receiving protrusion, a second receiving protrusion, and a third receiving protrusion. The first receiving protrusion has a first opening and a first blocking protrusion at the first opening. The L-pole pin is engaged with the first blocking protrusion, and the first mounting portion is formed within the first receiving protrusion. The second receiving protrusion has a second opening and a second blocking protrusion at the second opening. The N-pole pin is engaged with the second blocking protrusion, and the second mounting portion is formed within the second receiving protrusion. The third receiving protrusion has a third opening and a third blocking protrusion at the third opening. The E-pole pin is engaged with the third blocking protrusion, and the third mounting portion is formed within the third receiving protrusion.

[0012] Furthermore, the first opening is provided with a first inclined surface, and the opposite first inclined surface gradually expands in the direction away from the plug sleeve; the second opening is provided with a second inclined surface, and the opposite second inclined surface gradually expands in the direction away from the plug sleeve; the third opening is provided with a third inclined surface, and the opposite third inclined surface gradually expands in the direction away from the plug sleeve.

[0013] Furthermore, the converter socket also includes an output module; the L-pole socket includes an integrally formed L-pole socket body and an L-pole socket branch, through which a first L-pole socket tongue, a second L-pole socket tongue, and an L-pole socket body are formed, the first L-pole socket tongue is connected to the L-pole pin, and the second L-pole socket tongue is connected to the output module; the N-pole socket includes an integrally formed N-pole socket body and an N-pole socket branch, through which a first N-pole socket tongue, a second N-pole socket tongue, and an N-pole socket body are formed, the first N-pole socket tongue is connected to the N-pole pin, and the second N-pole socket tongue is connected to the output module; the E-pole socket includes an integrally formed E-pole socket body and an E-pole socket branch, through which an E-pole socket tongue and an E-pole socket body are formed, the E-pole socket tongue is connected to the E-pole pin.

[0014] Furthermore, the first L-pole socket tongue is inserted into the first mounting hole of the L-pole pin, the second L-pole socket tongue is inserted into the second mounting hole of the output module; the first N-pole socket tongue is inserted into the third mounting hole of the N-pole pin, the second N-pole socket tongue is inserted into the fourth mounting hole of the output module; and the first E-pole socket tongue is inserted into the fifth mounting hole of the E-pole pin.

[0015] Further, the L-pole socket body includes a first two-pole L-pole socket body, a second two-pole L-pole socket body, and a first three-pole L-pole socket body. The first two-pole L-pole socket body and the second two-pole L-pole socket body are located on different sides of the L-pole socket body, while the second two-pole L-pole socket body and the first three-pole L-pole socket body are located on the same side of the L-pole socket body. The N-pole socket body includes a first two-pole N-pole socket body, a second two-pole N-pole socket body, and a first three-pole N-pole socket body. The first two-pole N-pole socket body and the second two-pole N-pole socket body are located on different sides of the N-pole socket body, while the second two-pole N-pole socket body and the first three-pole N-pole socket body are located on the same side of the N-pole socket body. The first two-pole L-pole socket body and the first two-pole N-pole socket body form a first two-pole socket, and the second two-pole L-pole socket body and the second two-pole N-pole socket body form a second two-pole socket. The first three-pole L-pole socket body... The first three-pole socket body, the first three-pole N-pole socket body, and the E-pole socket form the first three-pole socket.

[0016] Furthermore, the first two-pole socket and the first three-pole socket are located on the first surface of the housing, and the second two-pole socket is located on the second surface of the housing, the second surface being adjacent to the first surface.

[0017] Furthermore, the first two-pole socket, the first three-pole socket, and the second two-pole socket are provided in a one-to-one correspondence and there are multiple of them; it also includes a mounting base, the socket is located in the mounting base, the mounting base includes an integrally formed mounting base body and a base connecting body, each mounting base body is equipped with a corresponding first two-pole socket, first three-pole socket, and second two-pole socket, and the base connecting body connects to adjacent mounting base bodies.

[0018] Furthermore, the cover is provided with a first positioning member and / or a second positioning member, the first positioning member being inserted into the third positioning member of the partition, and the second positioning member being inserted into the fourth positioning member of the mounting base.

[0019] The technical solution of this invention has the following advantages:

[0020] 1. The present invention provides a converter socket, comprising: a housing, the housing including a connected front cover and a bottom cover, the bottom cover having a first through hole, a second through hole and a third through hole; a socket, the socket including an L-pole socket, an N-pole socket and an E-pole socket; a pin, the pin including an L-pole pin, an N-pole pin and an E-pole pin, the L-pole pin being connected to the L-pole socket and passing through the first through hole, the N-pole pin being connected to the N-pole socket and passing through the second through hole, the E-pole pin being connected to the E-pole socket and passing through the third through hole; a partition, the partition separating the socket and the pin and having a first mounting portion, a second mounting portion and a third mounting portion, the L-pole pin being located in the first mounting portion, the N-pole pin being located in the second mounting portion, and the E-pole pin being located in the third mounting portion. This converter socket structure allows for direct mounting of the L-pole pin, N-pole pin, and E-pole pin via the first, second, and third mounting portions of the partition. This eliminates the need for injection molding of the pin brackets before assembly, reducing material usage and production costs. Furthermore, the partition effectively isolates the pins and sockets, ensuring product safety.

[0021] 2. The present invention provides a converter socket, the converter socket further comprising an output module; the L-pole socket comprises an integrally formed L-pole socket body and an L-pole socket branch, the L-pole socket branch forming a first L-pole socket tongue, a second L-pole socket tongue, and an L-pole socket body, the first L-pole socket tongue being connected to the L-pole pin, and the second L-pole socket tongue being connected to the output module; the N-pole socket comprises an integrally formed N-pole socket body and an N-pole socket branch, the N-pole socket branch forming a first N-pole socket tongue, a second N-pole socket tongue, and an N-pole socket body, the first N-pole socket tongue being connected to the N-pole pin, and the second N-pole socket tongue being connected to the output module; the E-pole socket comprises an integrally formed E-pole socket body and an E-pole socket branch, the E-pole socket branch forming an E-pole socket tongue and an E-pole socket body, the E-pole socket tongue being connected to the E-pole pin. This converter socket structure, through the cooperation of the socket tongue and pin and output module, reduces the number of solder joints in the socket, reduces the amount of manual labor and solder, reduces the heat generated by the solder joints, avoids safety hazards, and the socket tongue is bent into the socket body, making full use of the original waste material, increasing the utilization rate of copper strip, ensuring internal cleanliness, and helping to stabilize product dimensions.

[0022] 3. The present invention provides a converter socket, wherein the L-pole socket body includes a first two-pole L-pole socket body, a second two-pole L-pole socket body, and a first three-pole L-pole socket body, wherein the first two-pole L-pole socket body and the second two-pole L-pole socket body are located on different sides of the L-pole socket body, and the second two-pole L-pole socket body and the first three-pole L-pole socket body are located on the same side of the L-pole socket body; the N-pole socket body includes a first two-pole N-pole socket body, a second two-pole N-pole socket body, and a first three-pole N-pole socket body, wherein the first two-pole N-pole socket body and the second two-pole N-pole socket body are located on different sides of the N-pole socket body, and the second two-pole N-pole socket body is located on the same side of the N-pole socket body; The first three-pole N-pole socket body and the first two-pole N-pole socket body are located on the same side of the N-pole socket body; the first two-pole L-pole socket body and the first two-pole N-pole socket body form a first two-pole socket, the second two-pole L-pole socket body and the second two-pole N-pole socket body form a second two-pole socket, and the first three-pole L-pole socket body, the first three-pole N-pole socket body and the E-pole socket form a first three-pole socket. This converter socket structure, with different L-pole sockets located on different sides of the L-pole socket body and different N-pole socket bodies located on different sides of the N-pole socket body, is simpler to form and requires fewer forming steps compared to a single-sided setting, which is beneficial for stabilizing product dimensions.

[0023] 4. The present invention provides a converter socket, wherein the faceplate is provided with a first positioning member and / or a second positioning member, the first positioning member being inserted into a third positioning member of the partition, and the second positioning member being inserted into a fourth positioning member of the mounting base. This converter socket structure, through the cooperation between the positioning members, facilitates the fixing of the partition and the mounting base, reducing assembly steps. Attached Figure Description

[0024] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0025] Figure 1 This is a schematic diagram of the converter socket provided in an embodiment of the present invention;

[0026] Figure 2 for Figure 1 An exploded view of the converter socket is shown below;

[0027] Figure 3 for Figure 2 The converter socket shown does not display a schematic diagram of the bottom housing.

[0028] Figure 4 for Figure 2 The diagram shows the structure of the faceplate.

[0029] Figure 5 for Figure 2 The diagram shows the structure of the mounting base.

[0030] Figure 6 for Figure 5 The diagram shows the structure of the mounting base after rotation.

[0031] Figure 7 for Figure 2 The diagram shows the structure of the bottom shell;

[0032] Figure 8 for Figure 2 The diagram shows the structure of the partition.

[0033] Figure 9 for Figure 8 The diagram shows the structure after the partition is rotated.

[0034] Figure 10 for Figure 2 The diagram shows the structure of the partition and the latch.

[0035] Figure 11 for Figure 2 The diagram shows the structure of the insert.

[0036] Figure 12 for Figure 11 The diagram shows the structure of the L-pole socket;

[0037] Figure 13 for Figure 12 The diagram shows the structure of the L-pole sleeve when it is unfolded.

[0038] Figure 14 for Figure 11 The diagram shows the structure of the N-pole socket;

[0039] Figure 15 for Figure 14 The diagram shows the structure of the N-pole sleeve when it is unfolded.

[0040] Figure 16 for Figure 11 The diagram shown is a schematic of the structure when the E-pole sleeve is unfolded.

[0041] Figure 17 for Figure 16 The diagram shown is a schematic of the structure when the E-pole sleeve is unfolded.

[0042] Figure 18A schematic diagram of the structure of a converter socket comprising multiple separate mounting base bodies, as provided in Embodiment 1 of the present invention, for another embodiment;

[0043] Explanation of reference numerals in the attached figures:

[0044] 1-Housing shell, 11-Face cover, 111-First two-pole socket, 112-First three-pole socket, 113-Second two-pole socket, 114-First positioning component, 115-Second positioning component, 12-Bottom shell, 121-First through hole, 122-Second through hole, 123-Third through hole, 2-Output module, 3-Mounting base, 31-Mounting base body, 32-Base connecting body, 33-Fourth positioning component, 4-Protective door assembly, 5-Sleeve, 51-L-pole sleeve, 511-L-pole sleeve body, 512-L-pole sleeve branch, 513-First L-pole sleeve tongue, 514-Second L-pole sleeve tongue, 521-First two-pole L-pole sleeve body, 522-Second two-pole L-pole sleeve body, 523-First three-pole L-pole sleeve body, 53-N-pole sleeve, 531-N-pole sleeve body 532-N pole socket branch body, 533-First N pole socket tongue, 534-Second N pole socket tongue, 541-First two-pole N pole socket body, 542-Second two-pole N pole socket body, 543-First three-pole N pole socket body, 55-E pole socket, 551-E pole socket body, 552-E pole socket branch body, 553-E pole socket tongue, 554-E pole socket body, 6-Partition plate, 61-First mounting part, 611-First opening, 612-First blocking protrusion, 613-First inclined surface, 62-Second mounting part, 621-Second opening, 63-Third mounting part, 631-Third opening, 64-Third positioning part, 7-Pin, 71-L pole pin, 72-N pole pin, 73-E pole pin. Detailed Implementation

[0045] The technical solution of the present invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0046] In the description of this invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the invention and for 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 the invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0047] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; 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; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0048] Furthermore, the technical features involved in the different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.

[0049] Example

[0050] like Figures 1 to 17 The converter socket shown includes a housing 1, an output module 2, a mounting base 3, a protective door assembly 4, a socket 5, a partition 6, and a pin 7. The housing 1 includes a snap-fit ​​faceplate 11 and a bottom shell 12. The bottom shell 12 has a first through hole 121, a second through hole 122, and a third through hole 123. The output module 2 is located inside the housing 1. The mounting base 3 is located inside the housing 1, and the protective door assembly 4 and the insert 5 are located inside the mounting base 3. The insert 5 includes an L-pole insert 51, an N-pole insert 53, and an E-pole insert 55. The pin 7 includes an L-pole pin 71, an N-pole pin 72, and an E-pole pin 73. The L-pole pin 71 is connected to the L-pole insert 51 and the output module 2 and passes through the first through hole 121. The N-pole pin 72 is connected to the N-pole insert 53 and the output module 2 and passes through the second through hole 122. The E-pole pin 73 is connected to the E-pole insert 55 and passes through the third through hole 123. The partition 6 blocks the insert 5 and the pin 7. It also has a first mounting part 61, a second mounting part 62, and a third mounting part 63. The L-pole pin 71 is located in the first mounting part 61, the N-pole pin 72 is located in the second mounting part 62, and the E-pole pin 73 is located in the third mounting part 63. It should be noted that the protective door assembly 4 can adopt existing technology, including a protective door and a return spring, which will not be described in detail here; the output module 2 can adopt existing technology, including a USB interface and a circuit board, which will not be described in detail here.

[0051] In this embodiment, the L-pole pin 71, N-pole pin 72, and E-pole pin 73 are all engaged with the partition plate 6. See details. Figures 8 to 10 The partition 6 is provided with a first receiving protrusion, a second receiving protrusion, and a third receiving protrusion. The first receiving protrusion is provided with a first opening 611 and a first blocking protrusion 612 at the first opening 611. The L pole pin 71 is engaged with the first blocking protrusion 612. A first mounting portion 61 is formed inside the first receiving protrusion. The second receiving protrusion is provided with a second opening 621 and a second blocking protrusion at the second opening 621. The N pole pin 72 is engaged with the second blocking protrusion. A second mounting portion 62 is formed inside the second receiving protrusion. The third receiving protrusion is provided with a third opening 631 and a third blocking protrusion at the third opening 631. The E pole pin 73 is engaged with the third blocking protrusion. A third mounting portion 63 is formed inside the third receiving protrusion.

[0052] The first opening 611 has a first inclined surface 613, and the opposite first inclined surface 613 gradually expands in the direction away from the plug sleeve 5; the second opening 621 has a second inclined surface, and the opposite second inclined surface gradually expands in the direction away from the plug sleeve 5; the third opening 631 has a third inclined surface, and the opposite third inclined surface gradually expands in the direction away from the plug sleeve 5.

[0053] like Figures 11 to 13 As shown, the L-pole socket 51 includes an integrally formed L-pole socket body 511 and an L-pole socket branch body 512. The L-pole socket branch body 512 is bent to form a first L-pole socket tongue 513, a second L-pole socket tongue 514, and the L-pole socket body. The first L-pole socket tongue 513 is connected to the L-pole pin 71, and the second L-pole socket tongue 514 is connected to the output module 2. Figure 11 Figure 14 and Figure 15 As shown, the N-pole socket 53 includes an integrally formed N-pole socket body 531 and an N-pole socket branch body 532. The N-pole socket branch body 532 is bent to form a first N-pole socket tongue 533, a second N-pole socket tongue 534, and the N-pole socket body. The first N-pole socket tongue 533 is connected to the N-pole pin 72, and the second N-pole socket tongue 534 is connected to the output module 2. Figure 11 , Figure 16 and Figure 17 As shown, the E-pole socket 55 includes an integrally formed E-pole socket body 551 and an E-pole socket branch body 552. The E-pole socket tongue 553 and the E-pole socket body 554 are formed by bending the E-pole socket branch body 552. The E-pole socket tongue 553 is connected to the E-pole pin 73. And as shown... Figure 11 As shown, the L-pole socket body 511 and the N-pole socket body 531 are arranged in parallel, while the E-pole socket body 551 and the L-pole socket body 511 are arranged in perpendicular.

[0054] By using the tongue of the socket 5 and the pin 7 and output module 2 together, the number of solder joints of the socket 5 is reduced, the amount of manual labor and solder used is reduced, the heat generated by the solder joints is reduced, and safety hazards are avoided. In addition, the tongue of the socket 5 is bent into the main body of the socket 5, which makes full use of the original waste material, increases the utilization rate of copper strip, ensures internal cleanliness, and helps to stabilize product dimensions.

[0055] Specifically, the first L-pole socket tongue 513 and the first mounting hole of the L-pole pin 71 are inserted and welded; the second L-pole socket tongue 514 and the second mounting hole of the output module 2 are inserted and welded; the first N-pole socket tongue 533 and the third mounting hole of the N-pole pin 72 are inserted and welded; the second N-pole socket tongue 534 and the fourth mounting hole of the output module 2 are inserted and welded; the first E-pole socket tongue 553 and the fifth mounting hole of the E-pole pin 73 are inserted and welded. And as... Figure 11 , Figure 12 and Figure 14 As shown, the first L-pole socket tongue 513 and the second L-pole socket tongue 514 are located on different sides of the L-pole socket body 511, and the first N-pole socket tongue 533 and the second N-pole socket tongue 534 are located on different sides of the N-pole socket body 531.

[0056] like Figure 13 As shown, when unfolded, the first L-pole socket tongue 513 is located between the two L-pole socket bodies, and the second L-pole socket tongue 514 is located between the two L-pole socket bodies, as... Figure 15 As shown, the first N-pole sleeve 53 tongue 533 is located between the two N-pole sleeve bodies, and the second N-pole sleeve tongue 534 is located outside the N-pole sleeve body. By having the L-pole sleeve 51 tongue located between the two L-pole sleeve bodies when unfolded, the original waste material is fully utilized, increasing the utilization rate of the copper strip.

[0057] like Figure 11 and Figure 12 As shown, the L-pole socket body includes a first two-pole L-pole socket body 521, a second two-pole L-pole socket body 522, and a first three-pole L-pole socket body 523. The first two-pole L-pole socket body 521 and the second two-pole L-pole socket body 522 are located on different sides of the L-pole socket body 511, while the second two-pole L-pole socket body 522 and the first three-pole L-pole socket body 523 are located on the same side of the L-pole socket body 511. Figure 11 and Figure 14As shown, the N-pole socket body includes a first two-pole N-pole socket body 541, a second two-pole N-pole socket body 542, and a first three-pole N-pole socket body 543. The first two-pole N-pole socket body 541 and the second two-pole N-pole socket body 542 are located on different sides of the N-pole socket body 531, while the second two-pole N-pole socket body 542 and the first three-pole N-pole socket body 543 are located on the same side of the N-pole socket body 531. The first two-pole L-pole socket body 521 and the first two-pole N-pole socket body 541 form a first two-pole socket 111, the second two-pole L-pole socket body 522 and the second two-pole N-pole socket body 542 form a second two-pole socket 113, and the first three-pole L-pole socket body 523, the first three-pole N-pole socket body 543, and the E-pole socket 55 form a first three-pole socket 112. The first two-pole socket 111 and the first three-pole socket 112 are located on the first surface of the cover 11, forming a five-hole socket. The second two-pole socket 113 forms a two-hole socket, and the second two-pole socket 113 is located on the second surface of the cover 11, which is adjacent to the first surface. The first two-pole socket 111, the first three-pole socket 112, and the second two-pole socket 113 are arranged in a one-to-one correspondence and there are multiple of them.

[0058] The second two-pole L-pole socket body 522 and the first three-pole L-pole socket body 523 are formed on the same L-pole socket branch body 512; the second L-pole socket tongue 514 and one of the first two-pole L-pole socket bodies 521 are formed on the same L-pole socket branch body 512; the second two-pole N-pole socket body 542 and the first three-pole N-pole socket body 543 are formed on the same N-pole socket branch body 532.

[0059] By having different L-pole sleeves 51 located on different sides of the L-pole sleeve body 511 and different N-pole sleeve bodies located on different sides of the N-pole sleeve body 531, the different side setting is simpler to form and has fewer forming steps compared to the single-side setting, which is conducive to stabilizing the product size.

[0060] And such as Figures 11 to 15 As shown, the first L-pole socket tongue 513 and one of the first three-pole L-pole socket bodies 523 are formed on the same L-pole socket branch body 512; the first N-pole socket tongue 533 and one of the first three-pole N-pole socket bodies 543 are formed on the same N-pole socket branch body 532.

[0061] like Figure 5 and Figure 6As shown, the mounting base 3 includes an integrally formed mounting base body 31 and a base connecting body 32. Each mounting base body 31 is equipped with a corresponding first two-pole socket 111, a first three-pole socket 112, and a second two-pole socket 113. The base connecting body 32 connects adjacent mounting base bodies 31. As an alternative implementation, the mounting base 3 may also omit the base connecting body 32, such as... Figure 18 As shown, the mounting base 3 includes multiple separate mounting base bodies 31.

[0062] like Figure 4 , Figure 6 and Figure 9 As shown, the cover 11 is provided with a first positioning member 114 and a second positioning member 114. The first positioning member 114 is inserted into the third positioning member 64 of the partition 6, and the second positioning member 114 is inserted into the fourth positioning member 33 of the mounting base 3. Specifically, the first positioning member 114 and the second positioning member 114 can both be positioning protrusions, and the third positioning member 64 and the fourth positioning member 33 both include positioning holes. The cooperation between the positioning members facilitates the fixing of the partition 6 and the mounting base 3, reducing assembly steps. As an alternative embodiment, either the first positioning member 114 or the second positioning member 114 can also be provided.

[0063] In the assembly process of a converter socket in this embodiment, the protective door assembly 4 and the plug sleeve 5 are placed in the mounting base 3, and then the partition 6 is installed. The pin 7 is fixed in the partition 6. The first positioning member 114 and the third positioning member 64 are matched to assemble the partition 6 and the cover 11. The tongue of the plug sleeve 5 passes through the corresponding mounting hole and is then welded. After that, the cover 11 and the bottom shell 12, which have been installed with the output module 2, are fastened together.

[0064] In this embodiment, a converter socket allows for the direct mounting of L-pole pin 71, N-pole pin 72, and E-pole pin 73 via the first mounting portion 61, the second mounting portion 62, and the third mounting portion 63 of the partition 6. This eliminates the need for injection molding of the pin 7 bracket before assembly, reducing material usage and production costs. Furthermore, the partition 6 effectively isolates the pins 7 and the socket 5, ensuring product safety.

[0065] Obviously, the above embodiments are merely illustrative examples for clear explanation and are not intended to limit the implementation. Those skilled in the art will recognize that other variations or modifications can be made based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the scope of protection of this invention.

Claims

1. A converter socket, characterized by include: A housing, the housing comprising a connected front cover and a bottom cover, the bottom cover being provided with a first through hole, a second through hole and a third through hole; The socket includes an L-pole socket, an N-pole socket, and an E-pole socket; Mounting base, the socket is located inside the mounting base; The pin includes an L-pole pin, an N-pole pin, and an E-pole pin. The L-pole pin is connected to the L-pole sleeve and passes through the first through hole. The N-pole pin is connected to the N-pole sleeve and passes through the second through hole. The E-pole pin is connected to the E-pole sleeve and passes through the third through hole. A partition, which separates the sleeve and the pin and has a first mounting part, a second mounting part and a third mounting part, wherein the L-pole pin is located in the first mounting part, the N-pole pin is located in the second mounting part, and the E-pole pin is located in the third mounting part, and the L-pole pin, the N-pole pin and the E-pole pin are all snapped into the partition; During assembly, the insert is placed in the mounting base, then the partition is installed, and the pin is fixed on the side of the partition facing away from the mounting base. The tongue of the insert passes through the corresponding mounting hole from the side of the partition facing the mounting base and is then welded. The L-pole socket includes a first L-pole socket tongue, which is inserted into the first mounting hole of the L-pole pin. The N-pole socket includes a first N-pole socket tongue, which is inserted into the third mounting hole of the N-pole pin. The E-pole socket includes an E-pole socket tongue, which is inserted into the fifth mounting hole of the E-pole pin.

2. A converter socket according to claim 1, wherein The partition is provided with a first receiving protrusion, a second receiving protrusion, and a third receiving protrusion. The first receiving protrusion has a first opening and a first blocking protrusion at the first opening. The L-pole pin is engaged with the first blocking protrusion, and the first mounting portion is formed within the first receiving protrusion. The second receiving protrusion has a second opening and a second blocking protrusion at the second opening. The N-pole pin is engaged with the second blocking protrusion, and the second mounting portion is formed within the second receiving protrusion. The third receiving protrusion has a third opening and a third blocking protrusion at the third opening. The E-pole pin is engaged with the third blocking protrusion, and the third mounting portion is formed within the third receiving protrusion.

3. A converter socket according to claim 2, wherein The first opening has a first inclined surface, which gradually expands away from the sleeve; the second opening has a second inclined surface, which gradually expands away from the sleeve; the third opening has a third inclined surface, which gradually expands away from the sleeve.

4. The converter receptacle of claim 1, wherein, The converter socket further includes an output module; the L-pole socket includes an integrally formed L-pole socket body and an L-pole socket branch, through which a first L-pole socket tongue, a second L-pole socket tongue, and an L-pole socket body are formed. The first L-pole socket tongue is connected to the L-pole pin, and the second L-pole socket tongue is connected to the output module; the N-pole socket includes an integrally formed N-pole socket body and an N-pole socket branch, through which a first N-pole socket tongue, a second N-pole socket tongue, and an N-pole socket body are formed. The first N-pole socket tongue is connected to the N-pole pin, and the second N-pole socket tongue is connected to the output module; the E-pole socket includes an integrally formed E-pole socket body and an E-pole socket branch, through which an E-pole socket tongue and an E-pole socket body are formed. The E-pole socket tongue is connected to the E-pole pin.

5. A converter socket according to claim 4, wherein The second L-pole socket tongue is inserted into the second mounting hole of the output module; the second N-pole socket tongue is inserted into the fourth mounting hole of the output module.

6. A converter socket according to claim 4, wherein The L-pole socket body includes a first two-pole L-pole socket body, a second two-pole L-pole socket body, and a first three-pole L-pole socket body. The first two-pole L-pole socket body and the second two-pole L-pole socket body are located on different sides of the L-pole socket body, and the second two-pole L-pole socket body and the first three-pole L-pole socket body are located on the same side of the L-pole socket body. The N-pole socket body includes a first two-pole N-pole socket body, a second two-pole N-pole socket body, and a first three-pole N-pole socket body. The first two-pole N-pole socket body and the second two-pole N-pole socket body are located on different sides of the N-pole socket body, and the second two-pole N-pole socket body and the first three-pole N-pole socket body are located on the same side of the N-pole socket body. The first two-pole L-pole socket body and the first two-pole N-pole socket body form a first two-pole socket, the second two-pole L-pole socket body and the second two-pole N-pole socket body form a second two-pole socket, and the first three-pole L-pole socket body, the first three-pole N-pole socket body and the E-pole socket form a first three-pole socket.

7. A converter socket according to claim 6, wherein The first two-pole socket and the first three-pole socket are located on the first surface of the housing, and the second two-pole socket is located on the second surface of the housing, the second surface being adjacent to the first surface.

8. A converter socket according to claim 6, wherein The first two-pole socket, the first three-pole socket, and the second two-pole socket are provided in a one-to-one correspondence and there are multiple of them; the mounting base includes an integrally formed mounting base body and a base connecting body, each mounting base body is equipped with a corresponding first two-pole socket, first three-pole socket, and second two-pole socket, and the base connecting body connects to adjacent mounting base bodies.

9. A converter socket according to any one of claims 1 to 8, wherein, The cover is provided with a first positioning element and / or a second positioning element, the first positioning element is inserted into the third positioning element of the partition, and the second positioning element is inserted into the fourth positioning element of the mounting base.

Citation Information

Patent Citations

  • Converter

    CN211789875U

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    CN215732583U

  • Converter socket

    CN218334401U