Multifunctional extension socket

By designing a multifunctional power strip that includes a cabin and an electrode end connection power carrier, provides AC and DC output sockets, and integrates lighting and wireless charging modules, the problems of single function and energy consumption of the power strip are solved, and space utilization and practicality are improved.

CN223462558UActive Publication Date: 2025-10-21HANGZHOU HANGKE OPTOELECTRONICS CO LTD
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Patent Information

Application Number
CN202422792072.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-10-21
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

Existing power strips have a single function, take up space and increase energy consumption during wireless charging. In addition, the wireless charging structure wastes space and consumes power when not in use.

Method used

The multifunctional power strip includes a cabin and electrode ends for convenient connection to the power carrier, provides AC and DC output sockets, integrates lighting and wireless charging modules, adopts a modular design to expand functions, and uses contact pins and contact rings to ensure stable electrical connection.

Benefits of technology

It improves the space utilization and practicality of the power strip, reduces energy consumption, enhances compatibility and scalability, and ensures the stability and reliability of the electrical connection.

✦ Generated by Eureka AI based on patent content.

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Abstract

A multifunctional extension socket comprises an extension socket body, at least one AC output jack assembly is arranged on the extension socket body, an electricity taking plug is arranged outside the extension socket body, the multifunctional extension socket further comprises an electricity utilization carrier or an electricity taking carrier, the electricity utilization carrier or the electricity taking carrier comprises a base, an electricity taking electrode end is arranged on the base, at least one cabin is arranged on the extension socket body, and the cabin is connected with the base. A discharge electrode end is arranged in the cabin, and the power utilization carrier or the power taking carrier is arranged in the cabin through the base and is correspondingly and electrically connected with the discharge electrode end through the power taking electrode end; a power adapter is arranged in the extension socket body, the power taking cable penetrates into the extension socket body and is divided into two paths, the first path is electrically connected to the AC output jack assemblies, and the second path is electrically connected to the discharge electrode ends through the power adapter. The extension socket body and the power utilization carrier or the power taking carrier are independently arranged and can be combined when a certain function is needed, for example, when wireless charging is needed, the wireless charging module can be placed in a cabin, and the placed lamp module has a lighting effect.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of electrical appliances, concretely relates to a multi -functional row is inserted. BACKGROUND

[0002] The existing row is inserted and is single -functional, mainly as intermediate connecting tool, is placed on the table and occupies very big space, therefore many rows are inserted and adopt hidden type design or are integrated on the table or other structures, when wireless charging function is not used, wireless charging structure can occupy a large amount of space, like this can cause the waste of space, Chinese patent announcement number " CN216672620U " patent name is " a socket with wireless charging function " discloses a wireless charging structure, but the wireless charging structure is integrated with the socket, occupies the general space position of the socket, when not needing wireless charging, the position not only has no utilization value, and if not setting power switch, wireless charging structure continues to consume power, greatly increases unnecessary energy consumption, but if setting switch also can increase the corresponding cost. UTILITARIAN CONTENT

[0003] In view of the above prior art, the purpose of the present application is to provide a multi -functional row is inserted, solves the space utilization problem of row is inserted and energy consumption problem.

[0004] The technical scheme of the present application is realized as follows: a multi -functional row is inserted, including row is inserted and is inserted into the body, at least one AC output socket assembly is arranged on the row is inserted and is inserted into the body, and a power taking plug is arranged outside the row is inserted and is inserted into the body, further including a power taking carrier, the power taking carrier includes a base, and a power taking electrode end is arranged on the base, at least one seat cabin is arranged on the row is inserted and is inserted into the body, and a discharge electrode end is arranged in the seat cabin, the power taking carrier is placed in the seat cabin through the base, and is electrically connected with the discharge electrode end through the power taking electrode end corresponding to the discharge electrode end;A power adapter is arranged in the row is inserted and is inserted into the body, and the power taking plug is divided into two routes after entering the row is inserted and is inserted into the body through the power taking cable, wherein the first route is electrically connected to each AC output socket assembly, and the second route is electrically connected to the discharge electrode end through the power adapter.

[0005] Further, at least one first DC output socket is arranged on the row is inserted and is inserted into the body, and the power taking plug is divided into a route and is electrically connected to each DC output socket through the power adapter by the power taking cable entering the row is inserted and is inserted into the body.

[0006] Further, the first DC output socket includes a USB interface, a first Type-A interface and / or a first Type-C interface.

[0007] Further, the AC output socket assembly comprises a three-hole or two-hole panel and a three-hole or two-hole socket, the row socket body is provided with a plurality of installation cavities at the upper end, each installation cavity is fixedly installed with a three-hole or two-hole socket, and the upper end of each three-hole or two-hole socket is covered and fixedly installed with a three-hole or two-hole panel. The power taking plug is connected to each three-hole or two-hole socket through a power cable.

[0008] Further, the power taking carrier is a lamp module, the lamp module comprises a light emitter, a driving PCB and a spherical light-transmitting cover, the light emitter is arranged in the spherical light-transmitting cover, the base is connected to the bottom of the spherical light-transmitting cover, and the light emitter is electrically connected to the power taking electrode end and the discharge electrode end through the driving PCB.

[0009] Further, the base is provided with a first rechargeable battery, and the first rechargeable battery, the light emitter, the power taking electrode end and the driving PCB are electrically connected to form a first charge-discharge control loop.

[0010] Further, the power taking carrier is a wireless charging module, the wireless charging module comprises a power taking PCB and a wireless charging transmitting coil, the top of the base is an electromagnetic induction area, the power taking PCB and the wireless charging transmitting coil are arranged in the base, the wireless charging transmitting coil is arranged on the top wall close to the electromagnetic induction area, and the wireless charging transmitting coil is electrically connected to the power taking electrode end and the discharge electrode end through the power taking driving PCB.

[0011] The base is provided with a second rechargeable battery, and the second rechargeable battery, the electromagnetic induction area, the power taking electrode end and the power taking PCB are electrically connected to form a second charge-discharge control loop.

[0012] Further, the base is provided with at least one second DC output socket, the second DC output socket is electrically connected to the power taking electrode end, the socket end of the second DC output socket penetrates outwardly through the base, and the second DC output socket comprises a second Type-C interface and a second Type-A interface.

[0013] Further, the power taking electrode end is a positive charging contact pin and a negative charging contact pin, and the discharge electrode end is a positive discharge contact ring and a negative discharge contact ring.

[0014] Further, the power taking electrode end is a positive charging contact ring and a negative charging contact ring, and the discharge electrode end is a positive discharge contact pin and a negative discharge contact pin.

[0015] Compared with the background art, the utility model discloses a seat and the cooperation of the power taking electrode end and the discharging electrode end are designed, so that the power taking carrier can be conveniently placed on the extension socket and power taking is realized through electrical connection. The extension socket provides an AC output socket assembly and a first DC output socket, which can meet the charging or power supply requirements of most electronic devices on the market. The power taking carrier is designed in a modular manner, and users can select and replace different power taking carriers according to actual needs. For example, a lamp module is used for lighting, and a wireless charging module is used for charging wireless devices, thereby improving the practicability and expandability of the extension socket. The power taking electrode end and the discharging electrode end are designed in a contact pin and a contact ring, which ensures the stability and reliability of the electrical connection. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 The main cross-sectional view of the combination of the extension socket body and the wireless charging module according to the embodiment is shown in the figure.

[0017] Figure 2 The three-dimensional structure diagram of the combination of the extension socket body and the wireless charging module according to the embodiment is shown in the figure.

[0018] Figure 3 The side cross-sectional view of the combination of the extension socket body and the wireless charging module according to the embodiment is shown in the figure.

[0019] Figure 4 The structure diagram of the wireless charging module according to the embodiment is shown in the figure.

[0020] Figure 5 The three-dimensional structure diagram of the combination of the extension socket body and the lamp module according to the embodiment is shown in the figure.

[0021] Figure 6 The structure diagram of the lamp module according to the embodiment is shown in the figure. DETAILED DESCRIPTION

[0022] Detailed embodiments of the present application are disclosed herein as required by the patent statutes and regulations, although modifications and alterations thereto are possible so long as they come within the scope of the application. The application has been described with the intent to embrace all possible forms of it. The following claims as well as the full description of the application appropriately define the reach and scope of the application. Those skilled in the art will recognize many modifications and alternatives to the embodiments described herein, and claims as within the scope and spirit of the application.

[0023] Embodiment 1:

[0024] As Figures 1-6As shown, a multifunctional power strip includes a power strip body 1, at least one AC output socket assembly 11 is arranged on the power strip body 1, which is used to provide traditional alternating current power output to meet the power demand of various electrical equipment. The power strip body 1 is externally provided with a power taking plug 12 to facilitate connection with external power supply. In addition, it also includes a power taking carrier 2, which includes a base 21, and the base 21 is provided with a power taking electrode end 22 for electrical connection with the power strip body. The power strip body 1 is provided with at least one seat cabin 10, and the seat cabin 10 is provided with a discharge electrode end 16. The power taking carrier is placed in the seat cabin 10 through the base 21, and the power taking electrode end 22 is electrically connected with the discharge electrode end 16 to realize flexible and convenient connection between the power taking carrier and the power strip body, thereby improving the convenience and flexibility of use.

[0025] Further, the power strip body 1 is provided with a power adapter, which can convert external power supply into voltage or current suitable for different equipment. The power taking plug 12 is divided into two routes after penetrating into the power strip body 1 through the power taking cable 13. The first route is electrically connected to each AC output socket assembly 11 to provide stable alternating current power output; the second route is electrically connected to the discharge electrode end 16 through the power adapter to provide the required power for the power taking carrier. This design makes the power strip not only have the traditional power distribution function, but also can provide power support for the power taking carrier, realizing multifunctional integration.

[0026] In addition, the power strip body 1 is also provided with at least one first DC output socket 14, including a USB interface 141, a first Type-A interface 142 and / or a first Type-C interface 143, which enriches the types of output interfaces and meets the charging or power supply demand of more kinds of electronic equipment. These interfaces are connected with the power taking cable 13 through the power adapter, which can provide stable and safe direct current power output.

[0027] The AC output socket assembly 11 includes a three-hole or two-hole panel 461 and a three-hole or two-hole socket 462, which are ingeniously installed in the mounting bin 15 at the upper end of the power strip body 1, which is not only beautiful but also practical. This design makes the AC output socket assembly 11 firmly fixed on the power strip body 1, while providing various types of jack to adapt to the plugs of different electrical equipment.

[0028] As Figure 5 , Figure 6As shown, when the power supply carrier 2 is a lamp module, it includes a light source 23, a driver PCB board 24, and a spherical light-transmitting cover 25. The light source 23 is placed within the spherical light-transmitting cover 25, and the base 21 is connected to the bottom of the spherical light-transmitting cover 25. The light source 23 is electrically connected to the discharge electrode terminal 16 via the driver PCB board 24 and the power supply electrode terminal 22, thus realizing the lighting function of the lamp module. This design allows the lamp module to be easily installed on the power strip and provide power support through the power strip, providing a soft and comfortable lighting environment for homes or offices.

[0029] Furthermore, a first rechargeable battery 20 is housed within the base 21, forming a first charge-discharge control circuit together with the light-emitting element 23, the power-collecting electrode 22, and the driver PCB 24. This design allows the lamp module to continue to emit light through the first rechargeable battery 20 even in the event of a power outage, improving ease of use and emergency response capabilities.

[0030] like Figures 1-4 As shown, when the power carrier 2 is a wireless charging module, it includes a power PCB board 31, a wireless charging transmitting coil 32 and an electromagnetic induction area 110. The wireless charging transmitting coil 32 is arranged on the top wall of the side close to the electromagnetic induction area 110, and is electrically connected to the discharge electrode end 16 through the power PCB board 31 and the power electrode end 22. This design allows the wireless charging module to be conveniently placed on the power strip and charge wireless devices such as mobile phones and tablets wirelessly. At the same time, a second rechargeable battery 30 is also provided in the base 21, which together with the electromagnetic induction area 110, the power electrode end 22 and the power PCB board 31 constitute a second charge and discharge control circuit. This design not only improves the convenience of wireless charging, but also ensures that the wireless charging module can continue to charge wireless devices for a period of time when the power is off, and can be used as a wireless or wired charging power bank.

[0031] In addition, the base 21 is equipped with at least one second DC output socket 26, including a second Type-C port 262 and a second Type-A port 261. The second DC output socket 26 is electrically connected to the power electrode terminal 22, with its socket end extending outward through the base 21, facilitating connection to other electronic devices. The second Type-C port 262 can be used as a charging or discharging port, further enriching the functionality and practicality of the power strip.

[0032] In terms of electrical connection, the charging electrode end 22 and the discharge electrode end 16 are designed in the form of contact pins and contact rings. Whether it is a combination of positive and negative charging contact pins and positive and negative discharge contact rings, or a combination of positive and negative charging contact rings and positive and negative discharge contact pins, the electrical connection can be stable and reliable.

Claims

1. A multifunctional power strip, comprising a power strip body (1), at least one AC output socket assembly (11) is arranged on the power strip body (1), and a power taking plug (12) is arranged outside the power strip body (1), characterized in that: Also include the power carrier (2), the power carrier (2) includes the base (21), the base (21) is provided with the power electrode end (22), the outlet body (1) is provided with at least one seat cabin (10), the seat cabin (10) is provided with the discharge electrode end (16), the power carrier is placed in the seat cabin (10) through the base (21), and the power electrode end (22) is electrically connected with the discharge electrode end (16) through the power cable (13); The power adapter is arranged in the outlet body (1), the power plug (12) is divided into two routes after entering the outlet body (1) through the power cable (13), wherein the first route is electrically connected to each AC output socket assembly (11), and the second route is electrically connected to the discharge electrode end (16) through the power adapter.

2. The multi-functional power strip of claim 1, wherein: The outlet body (1) is provided with at least one first DC output socket (14), and the power plug (12) is divided into a route through the power cable (13) and is electrically connected to each DC output socket (14) through the power adapter.

3. The multi-functional power strip of claim 2, wherein: The first DC output socket (14) includes a USB interface (141), a first Type-A interface (142) and / or a first Type-C interface (143).

4. The multi-functional power strip of claim 1, wherein: The AC output socket assembly (11) includes a three-hole or two-hole panel (461) and a three-hole or two-hole socket (462), a plurality of installation compartments (15) are formed in the upper end of the outlet body (1), each installation compartment (15) is fixedly installed with a three-hole or two-hole socket (462), and the upper end of each three-hole or two-hole socket (462) is covered and fixedly installed with a three-hole or two-hole panel (461); the power plug (12) is electrically connected to each three-hole or two-hole socket (462) through the power cable (13).

5. The multi-functional power strip of claim 1, wherein: The power carrier (2) is a lamp module, the lamp module includes a light emitter (23), a driving PCB (24) and a spherical light-transmitting cover (25), the light emitter (23) is arranged in the spherical light-transmitting cover (25), the base (21) is connected to the bottom of the spherical light-transmitting cover (25), and the light emitter (23) is electrically connected with the discharge electrode end (16) through the driving PCB (24) and the power electrode end (22).

6. The multi-functional power strip of claim 5, wherein: The base (21) is provided with a first charging battery (20), and the first charging battery (20), the light emitter (23), the power electrode end (22) and the driving PCB (24) are electrically connected to form a first charging and discharging control loop.

7. The multi-functional power strip of claim 1, wherein: The power carrier (2) is a wireless charging module, the wireless charging module includes a power receiving PCB (31) and a wireless charging transmitting coil (32), the top of the base (21) is an electromagnetic induction area (110), the power receiving PCB (31) and the wireless charging transmitting coil (32) are arranged in the base (21), and the wireless charging transmitting coil (32) is arranged on the top wall close to the electromagnetic induction area (110) side, and the wireless charging transmitting coil (32) is electrically connected with the discharge electrode end (16) through the power receiving driving PCB (31) and the power electrode end (22).

8. The multi-functional power strip of claim 6, wherein: The second charging battery (30) in the base (21), the second charging battery (30), the electromagnetic induction area (110), the power taking electrode end (22) and the power taking PCB (31) are electrically connected to constitute a second charging and discharging control loop.

9. The multi-functional power strip of claim 1, wherein: At least one second DC output socket (26) is arranged on the base (21), the second DC output socket (26) is electrically connected with the power taking electrode end (22), the socket end thereof penetrates outwardly through the base (21), the second DC output socket (26) comprises a second Type-C interface (262) and a second Type-A interface (261), the second Type-C interface (262) is a charging interface or a discharging interface.

10. The multi-functional power strip of claim 1, wherein: The power taking electrode end (22) is a positive charging contact pin and a negative charging contact pin, and the discharging electrode end (16) is a positive discharging contact ring and a negative discharging contact ring. Or, the power taking electrode end (22) is a positive charging contact ring and a negative charging contact ring, and the discharging electrode end (16) is a positive discharging contact pin and a negative discharging contact pin.

Citation Information

Patent Citations

  • Socket with wireless charging function

    CN216672620U