Magic cube type multifunctional German standard socket

By setting up independent high-voltage and low-voltage chambers inside the power socket and using thermal insulation materials and pole plates to electrically connect, the problem that traditional sockets cannot output high and low voltages at the same time is solved, achieving long life and low-cost production of sockets.

CN223297090UActive Publication Date: 2025-09-02SHELL ELECTRONIC LTD
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Patent Information

Application Number
CN202422592896.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-26
Publication Date
2025-09-02
Estimated Expiration
2034-10-26

AI Technical Summary

Technical Problem

Traditional power sockets cannot output high-voltage alternating current and low-voltage DC current at the same time, and the internal structure is complex, resulting in heat affecting each other, reducing service life and increasing production costs.

Method used

A magic-style multi-functional German standard socket is designed, with independent high-pressure chambers and low-pressure chambers inside. The high-pressure adapter and low-pressure conversion device are installed in their respective chambers respectively. The heat transfer is used to isolate heat transfer, and the electrical connection is achieved through the combination of pole plate holders and pole plates to optimize the internal structure.

Benefits of technology

It realizes the independence of high-voltage AC output and low-voltage DC output, extends the service life of the socket, simplifies the assembly process, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of power sockets, in particular to a magic-cube-shaped multifunctional German standard socket, which comprises a socket body, the socket body comprises a socket bin, a low-voltage female seat and a power connecting wire, a high-voltage chamber and a low-voltage chamber which are independent from each other are arranged in the socket body, a high-voltage switching device is arranged in the high-voltage chamber, and a high-voltage switching device is arranged in the low-voltage chamber. One end of the high-voltage switching device is electrically connected with the power connecting line, and the other end of the high-voltage switching device is matched with the socket bin and can be connected with an external power plug to form electric connection; a low-voltage conversion device is arranged in the low-voltage cavity, one end of the low-voltage conversion device is electrically connected with the power supply connecting line, and the other end of the low-voltage conversion device is electrically connected with the low-voltage female seat. In conclusion, high-voltage alternating-current output and low-voltage direct-current output are achieved and do not affect each other, and the service life is prolonged; and the internal structure of the power socket is optimized, so that the power socket is convenient to assemble, and the production cost is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of power sockets, in particular to a magic-type multifunctional German standard socket. Background Art

[0002] A socket, also known as a power socket or switch socket, is a socket that accepts one or more circuit wires. It allows for various types of wiring to be connected to other circuits. By connecting and disconnecting the wires and copper components, the circuit is ultimately connected and disconnected.

[0003] Traditional power sockets are usually only capable of transferring high-voltage alternating current and cannot output low-voltage direct current. However, with the development of modern electronic devices, especially the rapid popularization of portable devices, people's demand for low-voltage direct current is surging.

[0004] With the gradual advancement of USB 3.0 and USB 4.0, more and more devices are using low-voltage DC charging via USB interfaces. Consequently, some power outlets have added USB receptacles that provide low-voltage DC output to expand their functionality. However, since low-voltage DC power requires a corresponding transformer, it generates significant heat. Existing power outlets designed for low-voltage DC power typically house the transformer and AC transmission components in the same space, causing heat to affect the outlet's internal components and shorten its lifespan.

[0005] For example, the Chinese patent document with announcement number CN201369468Y discloses a high and low voltage power output socket, including a socket base shell, a socket surface shell, a power switch and one or more high voltage output interfaces. The socket base shell and the socket surface shell are assembled together, the power switch and one or more high voltage output interfaces are assembled between the socket base shell and the socket surface shell, a finished circuit board is installed between the socket base shell and the socket surface shell, a transformer and one or more low voltage output interfaces are installed on the finished circuit board, the low voltage output interface can be a USB interface, the input end of the transformer is connected to the high voltage power supply, the output end of the transformer is connected to the input end of the finished circuit board, and the output end of the finished circuit board is connected to the low voltage output interface.

[0006] Furthermore, the internal structure of the existing power socket is not set rationally, resulting in a complex structure, difficulty in assembly, and high production costs.

[0007] Therefore, it is necessary to design a magic-style multifunctional German standard socket, which has both high-voltage AC output and low-voltage DC output, without affecting each other, thereby extending the service life of the power socket; and optimizing the internal structure of the power socket to facilitate assembly and reduce production costs. Utility Model Content

[0008] In order to overcome the above-mentioned shortcomings, the present invention aims to provide a technical solution that can solve the above-mentioned problems.

[0009] The utility model provides a magic-style multifunctional German standard socket, comprising a socket body, wherein the socket body comprises a plurality of functional surfaces, at least one functional surface being provided with a socket compartment, and the socket compartment being used to connect to an external power plug to realize the transfer and transmission of electric power; at least one functional surface being provided with a low-voltage female socket, for connecting to an external USB interface to realize the output of low-voltage electric energy; one of the functional surfaces being provided with a power connection line for connecting to external power; the socket body is further provided with a high-voltage chamber and a low-voltage chamber independent of each other, a high-voltage adapter being provided in the high-voltage chamber, one end of the high-voltage adapter being electrically connected to the power connection line, and the other end thereof being matched with the socket compartment and capable of connecting to an external power plug to form an electrical connection; a low-voltage conversion device being provided in the low-voltage chamber, one end of the low-voltage conversion device being electrically connected to the power connection line, and the other end thereof being electrically connected to the low-voltage female socket.

[0010] As a further solution of the present invention: the socket body also includes a main cylinder, a top cover and a bottom cover, and a first partition is also provided inside the socket body. The space between the first partition and the top cover forms a low-pressure chamber, and the space between the first partition and the bottom cover forms a high-pressure chamber.

[0011] As a further solution of the present invention: the first partition is configured to be made of a material with certain heat insulation properties, thereby preventing heat from the low-voltage conversion device from being transferred to the high-voltage chamber.

[0012] As a further solution of the present invention: a second partition is further provided inside the socket body, the space between the second partition and the first partition forms a high-voltage chamber, the space between the second partition and the bottom cover forms an accessory chamber, and a power switch is provided in the accessory chamber.

[0013] As a further solution of the present invention: the first partition is provided with a side wall protrusion extending toward the top cover, and the side wall protrusion cooperates with the first partition to form a low-pressure chamber with a certain space.

[0014] As a further solution of the present invention: the high-voltage switching device is provided with a pole piece seat, a first pole piece and a second pole piece, the first pole piece and the second pole piece are respectively fixed to the pole piece seat, and are combined into a pole piece access group arranged in pairs, and are installed in conjunction with the corresponding socket compartment, so that the pins of the external power plug are abutted against the pole piece access group after being inserted into the socket hole of the socket compartment, thereby forming an electrical connection for power transfer and transmission.

[0015] As a further solution of the present invention: the high-voltage adapter is also provided with a grounding wire, and the socket compartment is provided with a third pole piece, one end of the grounding wire is electrically connected to the ground end of the power connection line, and the other end thereof is electrically connected to the third pole piece; one end of the third pole piece is fixed to the bottom of the socket compartment, and the other end thereof extends a certain distance into the space where the socket compartment is connected to the power plug, so that the third pole piece is electrically connected to the ground end of the power plug.

[0016] As a further solution of the present invention: the pole piece seat is provided with a first cover plate and a second cover plate, the first cover plate and the second cover plate are fixed to each other, and are spaced a certain distance apart to form a joint access seat for accommodating the pole piece access group; two groups of joint access seats are formed at the left and right ends of the pole piece seat respectively, and each group of joint access seats cooperates with the corresponding socket compartment.

[0017] As a further solution of the present invention: a first separation seat is provided on the side of the first cover plate away from the second cover plate, and a second separation seat is provided on the side of the second cover plate away from the first cover plate. The first separation seat and the second separation seat are respectively fixed to the front end of the pole piece seat, and cooperate with each other to jointly install a group of pole piece access groups, and cooperate with the socket compartment of the corresponding functional surface.

[0018] As a further solution of the present invention: the socket body is also provided with a mounting bracket; the mounting bracket is provided with a fixing seat and an adapter, one side of the fixing seat is fixedly connected to the external platform, and the other side thereof is provided with an adapter buckle; one side of the adapter is fixedly connected to the socket body, and the other side thereof is provided with an adapter ring, the adapter ring and the adapter buckle cooperate with each other to form a detachable rotating connection, so that the socket body can be installed on the external platform through the mounting bracket.

[0019] Compared with the prior art, the beneficial effects of the present invention are:

[0020] 1. By providing independent high-voltage and low-voltage chambers within the socket body, the high-voltage adapter can be installed inside the high-voltage chamber, while the low-voltage converter can be installed inside the low-voltage chamber. This prevents heat from the low-voltage converter's transformer equipment from affecting the high-voltage device and other components such as the power switch, thereby extending the overall service life of the power socket. Furthermore, the strong and weak currents are completely separated and isolated, with relatively large electrical gaps, eliminating mutual interference and not affecting the operation of the low-voltage converter, which is also safer.

[0021] 2. A specially structured pole piece holder is also provided on the high-voltage adapter, and the pole piece holders are combined to form a corresponding joint access seat, a first separation seat, or a second separation seat, and the corresponding pole piece access group is installed to achieve a mating connection with the socket compartment, so that it can be connected to an external power plug to achieve power transmission. The mating installation of the pole piece holder and the pole piece is also relatively convenient, which can optimize the assembly difficulty and improve production efficiency.

[0022] Therefore, after the above-mentioned improvements, the present invention can provide a magic-style multifunctional German standard socket, which has both high-voltage AC output and low-voltage DC output, and at the same time does not affect each other, thereby extending the service life of the power socket; the internal structure of the power socket is also optimized to facilitate assembly and reduce production costs.

[0023] Additional aspects and advantages of the present invention will be given in part in the following description and will become apparent from the following description or learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.

[0025] Figure 1 It is a structural diagram of the socket body of the utility model;

[0026] Figure 2 It is a structural diagram of the main cylinder and bottom cover of the utility model;

[0027] Figure 3 This is a schematic diagram of the structure in which the fixing seat and the adapter ring are separated from each other in the present invention;

[0028] Figure 4 It is a structural schematic diagram of the low-pressure chamber and the high-pressure chamber of the utility model;

[0029] Figure 5 This is a structural diagram of the pole piece seat and the socket compartment of the utility model;

[0030] Figure 6 It is a structural diagram of the pole piece access group and pole piece seat of the utility model;

[0031] Figure 7 This is a schematic structural diagram of the first pole piece and the second pole piece of the utility model;

[0032] Figure 8It is a schematic diagram of the separation structure of the pole piece seat, the first pole piece and the second pole piece of the utility model.

[0033] The reference numerals and names in the figures are as follows:

[0034] 10 socket body; 11 functional surface; 12 power connection line; 20 low-voltage female socket; 21 low-voltage chamber; 22 low-voltage conversion device; 30 socket compartment; 31 third pole piece; 32 high-voltage chamber; 33 high-voltage adapter; 34 grounding wire; 35 pole piece access group; 36 first pole piece; 37 second pole piece; 40 pole piece seat; 41 first cover plate; 42 second cover plate; 43 joint access seat; 44 first separation seat; 45 second separation seat; 46 tail cover; 50 main cylinder; 51 top cover; 52 bottom cover; 53 first partition plate; 54 side wall protrusion; 55 second partition plate; 56 accessory chamber; 57 power switch; 60 mounting bracket; 61 fixing seat; 62 adapter buckle; 63 adapter; 64 adapter ring. DETAILED DESCRIPTION

[0035] The following is a clear and complete description of the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only a part of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0036] See also Figures 1 to 8 In an embodiment of the present invention, a magic-style multifunctional German standard socket includes a socket body 10 in the shape of a cube, the socket body 10 including multiple functional surfaces 11, at least one functional surface 11 having a socket compartment 30, the socket compartment 30 being used to connect to an external power plug to achieve power transfer transmission; at least one functional surface 11 having a low-voltage female socket 20 for connecting to an external USB interface to achieve low-voltage power output; one of the functional surfaces 11 having a power connection line 12 for connecting to external power; the socket body 10 further includes independent high-voltage chambers 32 and low-voltage chambers 21, the high-voltage chamber 32 having a high-voltage adapter 33, one end of the high-voltage adapter 33 being electrically connected to the power connection line 12, the other end of which matches the socket compartment 30 and can be connected to an external power plug to form an electrical connection; the low-voltage chamber 21 having a low-voltage conversion device 22, one end of the low-voltage conversion device 22 being electrically connected to the power connection line 12, and the other end of the low-voltage conversion device 22 being electrically connected to the low-voltage female socket 20.

[0037] Specifically, by setting independent high-pressure chambers 32 and low-pressure chambers 21 inside the socket body 10, the high-voltage adapter 33 can be installed inside the high-pressure chamber 32, and the low-voltage conversion device 22 can be installed inside the low-pressure chamber 21. This can avoid the heat emitted by the transformer equipment of the low-voltage conversion device 22 from affecting the high-voltage device, and can also avoid affecting other components such as the power switch, thereby extending the overall service life of the power socket.

[0038] Secondly, the electrode piece at the other end of the high-voltage adapter 33 cooperates with the socket compartment 30 to form a matching connection, so that the external power plug can be electrically connected to the electrode piece after being inserted into the socket compartment 30; that is, after the pins of the external power plug are inserted into the plug hole of the socket compartment 30, they can abut against the electrode piece of the high-voltage adapter 33, thereby forming an electrical connection and transferring power. Similarly, the top cover 51 where the low-voltage female socket 20 is located is also provided with a corresponding through hole, so that the low-voltage female socket 20 can be connected to an external USB interface, thereby outputting the corresponding low-voltage electrical energy to the outside.

[0039] Furthermore, the internal structure of the socket body 10 completely separates the DC portion of the USB charging system from the AC portion of the high-voltage socket, creating an isolation structure. This achieves the following: A. The high and low voltages are completely separated and isolated, with a relatively large electrical gap, eliminating mutual interference and preventing impact on the operation of the low-voltage conversion device 22, resulting in greater safety. B. The heat generated by the transformer equipment in the USB charging DC portion is blocked and transferred to the high-voltage AC portion, thereby preventing impact on its operation. C. The internal structure is optimized, resulting in a more rational overall structure, easier assembly, improved production efficiency, and reduced production costs.

[0040] like Figures 1 to 3 As shown, preferably, the socket body 10 also includes a main cylinder 50, a top cover 51 and a bottom cover 52 that are fitted together to form a relatively closed container, and a first partition 53 is also provided inside the socket body 10. The space between the first partition 53 and the top cover 51 forms a low-pressure chamber 21, and the space between the first partition 53 and the bottom cover 52 forms a high-pressure chamber 32.

[0041] Specifically, the low-voltage female socket 20 is provided on the top cover 51, so that the low-voltage conversion device 22 provided in the low-voltage chamber 21 can be better connected to the low-voltage female socket 20, and the USB interface can be inserted through the through hole of the top cover 51. Preferably, the functional surfaces 11 where the socket compartment 30 is provided can be distributed on the four side walls of the main cylinder 50, that is, corresponding through holes are opened on the four side walls of the main cylinder 50, so that the socket compartment 30 is installed inside the through holes of the side walls.

[0042] In another embodiment, the first partition 53 is configured to be made of a material with certain heat insulation properties, thereby preventing the heat of the low-pressure conversion device 22 from being transferred to the high-pressure chamber 32 .

[0043] Specifically, since the low-voltage conversion device 22 needs to be equipped with a transformer component to convert the high-voltage electrical energy input by the power connection line 12 into low-voltage electrical energy and supply it to the low-voltage socket 20 and the USB interface, the transformer component will generate a relatively high temperature. In order to prevent the high temperature from affecting the components inside the high-voltage chamber 32, the first partition 53 can be set to have heat insulation properties, so that it can isolate the heat inside the low-pressure chamber 21.

[0044] like Figure 3 and Figure 4 As shown, preferably, a second partition 55 is further provided inside the socket body 10, and the space between the second partition 55 and the first partition 53 forms a high-voltage chamber 32, and the space between the second partition 55 and the bottom cover 52 forms an accessory chamber 56, and a power switch 57 is provided in the accessory chamber 56, and one end of the power switch 57 is electrically connected to the power connection line 12, and the other end thereof is electrically connected to the high-voltage switching device 33 or the low-voltage conversion device 22.

[0045] Specifically, to facilitate installation of the high-voltage adapter 33, a second partition 55 may be provided, with the first and second partitions 53 and 55 cooperating to secure the high-voltage adapter 33. Furthermore, a power switch 57 may be installed in the space between the second partition 55 and the bottom cover 52 to control whether power is connected to the socket body 10.

[0046] like Figure 4 As shown, preferably, the first partition plate 53 is provided with a side wall protrusion 54 extending toward the top cover 51 , and the side wall protrusion 54 cooperates with the first partition plate 53 to form a low-pressure chamber 21 with a certain space.

[0047] Specifically, in order to facilitate the installation of the low-voltage conversion device 22, it is preferred that the four side walls of the first partition 53 can be extended to form a box body with a certain depth, so that the low-voltage conversion device 22 can be uniformly installed inside this box body, while facilitating assembly during production and improving production efficiency.

[0048] like Figures 5 to 8As shown, preferably, the high-voltage switching device 33 is provided with a pole piece seat 40, a first pole piece 36 and a second pole piece 37, and the first pole piece 36 and the second pole piece 37 are respectively fixed to the pole piece seat 40, and are combined into a pole piece access group 35 arranged in pairs, and are installed in conjunction with the corresponding socket compartment 30, so that the pins of the external power plug are abutted against the pole piece access group 35 after being inserted into the socket hole of the socket compartment 30, thereby forming an electrical connection for power transfer and transmission.

[0049] Specifically, the first electrode 36 can be electrically connected to the live terminal of the power connection line 12, and the second electrode 37 can be electrically connected to the neutral terminal, thereby transmitting the corresponding AC power. In other words, the same electrode connection group 35 needs to be provided with two electrode terminals, one electrode terminal connected to the live terminal and the other electrode terminal connected to the neutral terminal.

[0050] like Figure 5 As shown, preferably, the high-voltage switching device 33 is also provided with a grounding wire 34, and the socket compartment 30 is provided with a third pole piece 31, one end of the grounding wire 34 is electrically connected to the ground end of the power connection line 12, and the other end thereof is electrically connected to the third pole piece 31; one end of the third pole piece 31 is fixed to the bottom of the socket compartment 30, and the other end thereof extends a certain distance toward the space where the socket compartment 30 is connected to the power plug, so that the third pole piece 31 is electrically connected to the ground end of the power plug.

[0051] Specifically, since the ground pole piece of the German standard socket is installed on the socket compartment 30, there is no need to set the corresponding ground pole piece or the installation position of the ground wire 34 on the pole piece seat 40. Instead, the ground pole piece of the socket compartment 30 is directly electrically connected to the ground end of the power connection line 12 through the cable connection method, thereby saving the setting space of the pole piece seat 40 and reducing the complexity of the pole piece seat 40, making it easier to produce and assemble, and reducing the production cost of the socket body 10.

[0052] like Figure 7 and Figure 8 As shown, preferably, the pole piece seat 40 is provided with a first cover plate 41 and a second cover plate 42 extending along the axial direction of the main cylinder 50, the first cover plate 41 and the second cover plate 42 are fixed to each other, and a certain distance is spaced apart to form a joint access seat 43 for accommodating the pole piece access group 35; two groups of joint access seats 43 are formed at the left and right ends of the pole piece seat 40 respectively, and each group of joint access seats 43 cooperates with the corresponding socket compartment 30 for the insertion of an external power plug to realize the transfer and transmission of power.

[0053] Specifically, the left and right ends of the pole piece seat 40 can be set to correspond to the functional surfaces 11 on the left and right sides of the main cylinder 50 respectively, so that the joint access seats 43 on the left and right ends of the pole piece seat 40 can correspond to the socket compartment 30 on the corresponding functional surface 11, and provide the corresponding socket compartment 30 with a pole piece access group 35, so that after the socket compartment 30 is connected to the pin of the external power plug, the pin is abutted against the pole piece to form an electrical connection.

[0054] Secondly, in order to facilitate the assembly of the first pole piece 36 and the second pole piece 37 on the pole piece seat 40, a tail cover 46 can be provided at the end of the pole piece where the joint access seat 43 or the separation seat is not provided, so that after the first pole piece 36 and the second pole piece 37 are assembled, the tail cover 46 can be snapped onto the pole piece seat 40, thereby forming a stable support and limit for the first pole piece 36 and the second pole piece 37.

[0055] like Figure 8 As shown, preferably, a first separation seat 44 is provided on the side of the first cover plate 41 away from the second cover plate 42, and a second separation seat 45 is provided on the side of the second cover plate 42 away from the first cover plate 41. The first separation seat 44 and the second separation seat 45 are respectively fixed to the front end of the pole piece seat 40, and cooperate with each other to jointly install a group of pole piece access groups 35, and cooperate with the socket compartment 30 of the corresponding functional surface 11.

[0056] Specifically, due to the structural characteristics and assembly requirements of the pole piece seat 40, the two sides of the first cover plate 41 and the second cover plate 42 cannot form a unified joint access seat 43. Therefore, the first separation seat 44 and the second separation seat 45 can be set separately, and work together to install a group of corresponding first pole pieces 36 and second pole pieces 37 of the pole piece access group 35, and correspond to the socket compartment 30 on the functional surface 11 at the front end of the main cylinder 50, so that it can be normally connected to the external power plug for power transmission.

[0057] like Figures 1 to 3 As shown, preferably, a mounting bracket 60 is further provided on one of the vacant functional surfaces 11 of the socket body 10; the mounting bracket 60 is provided with a fixing seat 61 and an adapter 63, one side of the fixing seat 61 is fixedly connected to the external platform, and the other side thereof is provided with an adapter buckle 62; one side of the adapter 63 is fixedly connected to the socket body 10, and the other side thereof is provided with an adapter ring 64, the adapter ring 64 and the adapter buckle 62 cooperate with each other to form a detachable rotating connection, so that the socket body 10 is installed on the external platform through the mounting bracket 60.

[0058] Specifically, the mounting bracket 60 is preferably mounted on the functional surface 11 corresponding to the rear end of the electrode holder 40, i.e., the functional surface 11 at the rear end of the main cylinder 50. Because this functional surface 11 does not have a corresponding socket compartment 30, and the rear end of the electrode holder 40 does not have a corresponding electrode access assembly 35, there is space for installing the adapter 63. At the same time, the rear end of the electrode holder 40 can also be configured as a connection end for the electrode and the power connection line 12, thereby fully utilizing the space at the rear end of the electrode holder 40 for installing the relevant connection line.

[0059] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the present invention can be implemented in other specific forms without departing from the spirit or essential features of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims rather than the foregoing description, and it is intended that all variations that come within the meaning and range of equivalents of the claims be embraced within the present invention.

Claims

1. A magic multifunctional German standard socket, characterized in that: The invention comprises a socket body (10), wherein the socket body (10) comprises a plurality of functional surfaces (11), at least one functional surface (11) is provided with a socket compartment (30), and the socket compartment (30) is used to connect an external power plug to realize the transfer transmission of power; at least one functional surface (11) is provided with a low-voltage female socket (20) to connect an external USB interface to realize the output of low-voltage electric energy; one of the functional surfaces (11) is provided with a power connection line (12) to connect to external power; the socket body (10) is also provided with independent sockets. A high-voltage chamber (32) and a low-voltage chamber (21) are provided, wherein a high-voltage switching device (33) is provided in the high-voltage chamber (32), one end of the high-voltage switching device (33) is electrically connected to the power connection line (12), and the other end thereof matches the socket compartment (30) and can be connected to an external power plug to form an electrical connection; a low-voltage conversion device (22) is provided in the low-voltage chamber (21), one end of the low-voltage conversion device (22) is electrically connected to the power connection line (12), and the other end thereof is electrically connected to the low-voltage female socket (20).

2. A magic multifunctional German standard socket according to claim 1, characterized in that: The socket body (10) further comprises a main cylinder (50), a top cover (51) and a bottom cover (52). A first partition (53) is further provided inside the socket body (10). The space between the first partition (53) and the top cover (51) forms a low-pressure chamber (21), and the space between the first partition (53) and the bottom cover (52) forms a high-pressure chamber (32).

3. A magic multifunctional German standard socket according to claim 2, characterized in that: The first partition (53) is configured to be made of a material having certain heat insulation properties, thereby preventing heat from the low-pressure conversion device (22) from being transferred to the high-pressure chamber (32).

4. A magic multifunctional German standard socket according to claim 2, characterized in that: A second partition (55) is further provided inside the socket body (10), the space between the second partition (55) and the first partition (53) forming a high-voltage chamber (32), and the space between the second partition (55) and the bottom cover (52) forming an accessory chamber (56), wherein a power switch (57) is provided in the accessory chamber (56).

5. The magic multifunctional German standard socket according to claim 2, characterized in that: The first partition (53) is provided with a side wall protrusion (54) extending toward the top cover (51); the side wall protrusion (54) and the first partition (53) cooperate with each other to form a low-pressure chamber (21) with a certain space.

6. The magic multifunctional German standard socket according to claim 1, characterized in that: The high-voltage switching device (33) is provided with a pole piece seat (40), a first pole piece (36) and a second pole piece (37). The first pole piece (36) and the second pole piece (37) are respectively fixed to the pole piece seat (40) and combined into a pole piece access group (35) arranged in pairs, and are matched and installed with the corresponding socket compartment (30), so that the pins of the external power plug are abutted against the pole piece access group (35) after being inserted into the socket hole of the socket compartment (30), thereby forming an electrical connection and performing power switching and transmission.

7. The magic multifunctional German standard socket according to claim 1, characterized in that: The high-voltage switching device (33) is further provided with a grounding wire (34), and the socket compartment (30) is provided with a third pole piece (31). One end of the grounding wire (34) is electrically connected to the grounding end of the power connection line (12), and the other end thereof is electrically connected to the third pole piece (31); one end of the third pole piece (31) is fixed to the bottom of the socket compartment (30), and the other end thereof extends a certain distance toward the space where the socket compartment (30) is connected to the power plug, so that the third pole piece (31) is electrically connected to the grounding end of the power plug.

8. The magic multifunctional German standard socket according to claim 6, characterized in that: The electrode seat (40) is provided with a first cover plate (41) and a second cover plate (42), the first cover plate (41) and the second cover plate (42) are fixedly connected to each other and are spaced a certain distance apart to form a joint access seat (43) for accommodating the electrode access group (35); two groups of joint access seats (43) are formed at the left and right ends of the electrode seat (40), and each group of joint access seats (43) cooperates with the corresponding socket compartment (30).

9. The magic multifunctional German standard socket according to claim 8, characterized in that: A first separation seat (44) is provided on a side of the first cover plate (41) away from the second cover plate (42), and a second separation seat (45) is provided on a side of the second cover plate (42) away from the first cover plate (41). The first separation seat (44) and the second separation seat (45) are respectively fixed to the front end of the electrode seat (40), and cooperate with each other to jointly install a group of electrode access groups (35), and cooperate with the socket compartment (30) of the corresponding functional surface (11).

10. The magic multifunctional German standard socket according to claim 1, characterized in that: The socket body (10) is further provided with a mounting bracket (60); the mounting bracket (60) is provided with a fixing seat (61) and an adapter (63); one side of the fixing seat (61) is fixed to the external platform, and the other side thereof is provided with an adapter buckle (62); one side of the adapter (63) is fixed to the socket body (10), and the other side thereof is provided with an adapter ring (64); the adapter ring (64) and the adapter buckle (62) cooperate with each other to form a detachable rotation connection, so that the socket body (10) is mounted on the external platform through the mounting bracket (60).

Citation Information

Patent Citations

  • High / low-voltage power supply output socket

    CN201369468Y