Double-row rotating extension socket

By designing a dual-row rotating power strip with a rotatable plug module and a control module, the problems of inconvenient plugging and wire aging caused by the fixed angle of existing power strips are solved. This achieves flexible adjustment of plug position and improved safety, thus expanding the scope of application.

CN223502354UActive Publication Date: 2025-10-31DONGGUAN POWER TECHNO ELECTRIC CO LTD
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Patent Information

Application Number
CN202422846166.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-21
Publication Date
2025-10-31
Estimated Expiration
2034-11-21

AI Technical Summary

Technical Problem

Existing multi-outlet power strips are fixed and cannot be adjusted in angle, making plug insertion inconvenient, easily causing wires to bend and age, limiting their practical application, and only allowing plug insertion while other interfaces cannot be used, while also taking up a large area.

Method used

A double-row rotating power strip was designed, comprising a base, a plug-in module, a control module, and a rotating module. By setting a rotating module on the plug-in module, the plug-in module can be rotated, enhancing plug-in flexibility. Multiple plug slots are set on the plug-in module to accommodate different plug types. Combined with the control module, overcurrent and overload protection are provided.

Benefits of technology

It enables flexible adjustment of plug position and direction, enhances plugging efficiency and safety, improves user experience, reduces the risk of wire bending and aging, expands the scope of application, and has good application prospects.

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Abstract

The utility model relates to the technical field of extension sockets, in particular to a double-row rotating extension socket, which comprises a seat body, a plug-in module, a control module and a rotating module, the control modules are arranged at the two ends of the seat body, the control modules are electrically connected with the plug-in modules, and the plug-in modules are sleeved with the rotating modules; the plug-in module comprises a plug-in frame, a plug-in board, an assembly part and a conducting strip. The assembly part is used for assembling the plug board and the plug frame to form a plug groove; the rotating module comprises a rotating sleeve shell and a rotating groove, and one end of the rotating module rotates on the seat body along the inserting frame, so that the rotating groove corresponds to the inserting groove to facilitate inserting; the socket body is provided with the two groups of plugging modules, and the two groups of plugging modules are provided with the rotating modules, so that a double-row rotating structure is formed, a user can flexibly adjust the position and direction of a plug, and the user experience is improved; and the plug-in module is provided with a plurality of plug-in grooves so as to adapt to plug-in of plugs of different models, and the practicability is high.
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Description

Technical Field

[0001] This utility model relates to the field of power strip technology, specifically a double-row rotating power strip. Background Technology

[0002] A power strip is a multi-socket outlet formed by placing multiple sockets together. This combination saves space, wiring, and costs, making it a simple and practical necessity in daily life. In homes, it supplies power to areas with concentrated electrical modules, while in offices, it powers office equipment such as computers, monitors, and printers. Almost everyone has a power strip under their desk, filled with power plugs for various devices, with all sorts of power cords crisscrossing around it.

[0003] Existing multi-outlet power strips are all fixed and their angle cannot be adjusted, making it inconvenient to directly plug in plugs and easily causing wires to bend and age. In addition, most existing multi-outlet power strips can only be plugged in, making it inconvenient to connect other interfaces, thus limiting their practicality, making them inconvenient for users, and taking up a large area. Utility Model Content

[0004] To address the aforementioned issues, this utility model provides a double-row rotating power strip, which solves the problems of existing multi-hole power strips being fixed in design and unable to adjust their angle, making it inconvenient to directly plug in plugs and prone to causing wire bending and aging; moreover, most existing multi-hole power strips can only be plugged in, making it inconvenient to connect other interfaces, limiting their practical application, making them inconvenient for users, and requiring a large area.

[0005] The technical solution adopted by this utility model is as follows: it includes a base, a plug-in module, a control module, and a rotation module; the control module is disposed at both ends of the base and is electrically connected to the plug-in module; the rotation module is sleeved on the plug-in module; the plug-in module includes a plug-in frame, a plug-in plate, an assembly, and a conductive sheet; the assembly is used to assemble the plug-in plate and the plug-in frame to form a plug-in groove; the conductive sheet is disposed in the plug-in groove; there are two sets of plug-in grooves, and the two sets of plug-in grooves are respectively close to the plug-in frame and the plug-in plate; the rotation module includes a rotating housing and a rotating groove disposed on the rotating housing; the rotating groove corresponds to the plug-in groove; one end of the rotation module rotates along the plug-in frame on the base so that the rotating groove corresponds to the plug-in groove for plug-in.

[0006] A further improvement to the above solution is that the base includes a left housing and a right housing, an assembly joint is provided on the upper part of the left housing, and an assembly slot is provided on one side of the right housing.

[0007] A further improvement to the above solution is that the two ends of the base are respectively provided with an assembly part and a fastener; the assembly part is used to assemble the left housing, and the fastener is used to assemble the right housing.

[0008] A further improvement to the above solution is that a mounting component is provided between the left and right housings, and the mounting component is used to install the plug-in module and the rotating module.

[0009] A further improvement to the above solution is that the control module is disposed on the left and right housings, and the control module includes a control board, a control switch, and a control display; the control switch is disposed on the control board, and the control display is disposed on the control board and close to the control switch.

[0010] A further improvement to the above scheme is that the plug-in frame is provided in two sets, and a plug-in partition is provided between the two sets of plug-in frames. One end of the plug-in partition is provided on the base to form a movable cavity.

[0011] A further improvement to the above scheme is that the plug frame is provided with multiple sets of plug rings, a plug area is provided between two adjacent sets of plug rings, and the plug slot is provided in the plug area.

[0012] A further improvement to the above scheme is that the end of the plug-in ring piece near the plug-in partition is provided with a first slot, the end of the plug-in ring piece near the plug-in plate is provided with a second slot, and the plug-in ring piece opposite to the second slot is provided with a third slot.

[0013] A further improvement to the above solution is that multiple rotating sleeves are provided corresponding to the insertion area, and each of the multiple rotating sleeves is provided with a buckle. The rotating sleeve drives the buckle to engage with the first, second, and third slots along the insertion ring.

[0014] A further improvement to the above scheme is that the rotating sleeve rotates individually or uniformly along the insertion ring, and is limited by the interlocking and mutual cooperation of the buckle and the first, second and third slots.

[0015] The beneficial effects of this utility model are:

[0016] Compared to existing power strips, this invention uses a base to facilitate the installation of the control module, plug-in module, and rotation module, enhancing the connection and tightness between structures. Two sets of plug-in modules are provided, each with a rotation module, forming a double-row rotation structure. This allows users to flexibly adjust the position and direction of the plugs as needed, enhancing the power strip's flexibility and practicality, and improving the user experience. Furthermore, the plug-in modules have multiple slots to accommodate different plug types, improving plug-in efficiency. The control module provides overcurrent and overload protection for the plug-in modules, improving the power strip's safety. It is highly practical and has promising application prospects. Attached Figure Description

[0017] Figure 1 This is a perspective view of the double-row rotating power strip of this utility model;

[0018] Figure 2 This is an exploded view of the double-row rotating power strip of this utility model;

[0019] Figure 3 This is a flowchart illustrating the rotation of the utility module on the plug-in module.

[0020] Explanation of reference numerals in the attached drawings: base body 10, left shell 11, assembly joint 111, right shell 12, assembly slot 121, assembly part 13, fastener 14, mounting part 15;

[0021] 20. Plug-in module 21, plug-in bracket 211, plug-in partition 212, movable cavity 212, plug-in ring 213, plug-in area 214, first slot 215, second slot 216, third slot 217, plug-in plate 22, assembly 23, conductive sheet 24, plug-in groove 25;

[0022] Control module 30, control board 31, control switch 32, control display 33;

[0023] Rotating module 40, rotating sleeve 41, buckle 411, rotating groove 42. Detailed Implementation

[0024] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. Preferred embodiments of this utility model are shown in the drawings. However, this utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure of this utility model.

[0025] It should be noted that when a component is said to be "fixed to" another component, it can be directly attached to the other component or there may be an intervening component. When a component is said to be "connected to" another component, it can be directly connected to the other component or there may be an intervening component.

[0026] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.

[0027] like Figures 1-3 As shown in the embodiment of this utility model, a double-row rotating power strip includes: a base 10, a plug-in module 20, a control module 30, and a rotating module 40; the control module 30 is disposed at both ends of the base 10, and the control module 30 is electrically connected to the plug-in module 20; the rotating module 40 is sleeved on the plug-in module 20; the plug-in module 20 includes a plug-in frame 21, a plug-in plate 22, an assembly 23, and a conductive sheet 24; the assembly 23 is used to assemble the plug-in plate 22 and the plug-in frame. 21, to form a plug-in groove 25, the conductive sheet 24 is disposed in the plug-in groove 25, the plug-in groove 25 is provided in two sets, the two sets of plug-in grooves 25 are respectively close to the plug-in frame 21 and the plug-in plate 22; the rotating module 40 includes a rotating housing 41 and a rotating groove 42 disposed on the rotating housing 41, the rotating groove 42 corresponds to the plug-in groove 25, one end of the rotating module 40 rotates along the plug-in frame 21 on the base 10, so that the rotating groove 42 corresponds to the plug-in groove 25 for plug-in. In this embodiment, the plug-in module 20 is arranged in two rows on the base 10, which occupies a small area and is highly practical. The plug-in module 20 is provided with multiple plug-in slots 25 to facilitate plug insertion, increasing the number of plugs. The plug-in module 20 is also provided with a rotating module 40, which is provided with a rotating groove 42. This allows the rotating module 40 to move along the plug-in module 20 to facilitate plug insertion, improving the stability and accuracy of the insertion. It also effectively protects the plug-in module 20, preventing the entry of impurities and reducing its service life.

[0028] like Figure 1As shown, the base 10 includes a left shell 11 and a right shell 12. An assembly connector 111 is provided on the upper part of the left shell 11, and an assembly slot 121 is provided on one side of the right shell 12. In this embodiment, mounting parts 15 for installing the plug-in module 20 can be formed on the base 10 through the left shell 11 and right shell 12. The mounting parts 15 allow the plug-in module 20 to be installed, enabling the rotating module 40 to be movably plugged into the plug-in module 20. The mounting parts 15 improve the installation strength and stability, facilitating the use of the power strip. Furthermore, the left shell 11 and right shell 12 at both ends of the base 10 limit the rotation of the plug-in module 20 and the rotating module 40, improving rotation and plug-in accuracy. The left shell 11 and right shell 12 also allow the installation of the control module 30. The assembly connector 111 on the left shell 11 allows the plug-in module 20 to be directly plugged into the power strip via a data cable without a plug, enhancing the power strip's versatility.

[0029] like Figure 2 As shown, the two ends of the base 10 are respectively provided with mounting parts 13 and fasteners 14; the mounting parts 13 are used to assemble the left shell 11, and the fasteners 14 are used to assemble the right shell 12. In this embodiment, the mounting parts 13 and fasteners are used to install and fix the left shell 11 and the right shell 12 on the base 10, so as to install and disassemble the power strip, and facilitate maintenance by personnel, making it highly practical.

[0030] A mounting member 15 is provided between the left housing 11 and the right housing 12. The mounting member 15 is used to install the plug-in module 20 and the rotating module 40. In this embodiment, the mounting member 15 is used to enable the base 10 to install the plug-in module 20, and the left housing 11 and the right housing 12 on the base 10 provide limiting, thereby improving the installation accuracy and plug-in accuracy of the plug-in module 20.

[0031] The control module 30 is disposed on the left housing 11 and the right housing 12. The control module 30 includes a control board 31, a control switch 32, and a control display 33. The control switch 32 is disposed on the control board 31, and the control display 33 is disposed on the control board 31 and close to the control switch 32. In this embodiment, the control module 30 controls the plug-in module 20, facilitating conductive plug-in of the plug-in module 20, providing overcurrent and overload protection for the power strip, and improving the safety and reliability of the power strip.

[0032] Two sets of plug-in brackets 21 are provided, and a plug-in partition 211 is provided between the two sets of plug-in brackets 21. One end of the plug-in partition 211 is provided on the base 10 to form a movable cavity 212. In this embodiment, the plug-in partition 211 allows the double-row plug-in modules 20 provided on the base 10 to be rotated and plugged in by the rotating module 40, effectively separating different plug-in positions of the plug-in modules 20, improving the safety and reliability of plugging in. The movable groove formed by the plug-in partition 211 on the base 10 provides more space for the rotating module 40 to rotate along the plug-in module 20, making it easier to plug and unplug, and highly practical.

[0033] The connector frame 21 is provided with multiple sets of connector rings 213, and a connector area 214 is provided between two adjacent sets of connector rings 213. The connector slot 25 is provided in the connector area 214. In this embodiment, the connector slot 25 can adapt to plugs of different specifications, and has strong versatility. The connector rings drive the rotating housing 41 to rotate along the connector rings, so that the rotating slot 42 corresponds to the connector slot 25, so as to perform plugging and unplugging activities. Furthermore, the connector area 214 allows the rotating module 40 to rotate on the connector area 214, reducing interference and improving rotation accuracy.

[0034] like Figure 3 As shown, the insertion ring 213 has a first slot 215 near the insertion partition 211, a second slot 216 near the insertion plate 22, and a third slot 217 opposite to the second slot 216. Multiple rotating sleeves 41 are provided corresponding to the insertion area 214, and each rotating sleeve 41 has a buckle 411. The rotating sleeve 41 drives the buckle 41 to engage with the first slot 215, the second slot 216, and the third slot 217 along the insertion ring. In this embodiment, the first slot 215 and the second slot 216 allow the rotating module 40 to rotate along the insertion ring 213. The buckle 411 on the rotating housing 41 and the first slot 215 form a first engagement area, and the buckle 411 on the rotating housing 41 and the second slot form a second engagement area. The first engagement area and the second engagement area allow the rotating module 40 to be positioned at different locations on the insertion module 20, so that the plug can be inserted at different angles on the insertion module 20, thereby improving the diversity and practicality of the insertion angle.

[0035] The rotating housing 41 rotates individually or uniformly along the insertion ring 213, and is mutually restrained by the engagement of the buckle 411 and the first slot 215, the second slot 216 and the third slot 217. In this embodiment, the number of insertions is increased by using double-row insertion modules 20; and each insertion module 20 is provided with a rotating module 40 for rotating insertion on the insertion module 20. Multiple insertion modules 20 are provided so that the rotating modules 40 can rotate individually or uniformly on the insertion module 20, making it highly practical.

[0036] In an embodiment of this utility model, a double-row rotating connector includes: a base 10, a plug-in module 20, a control module 30, and a rotating module 40; the control module 30 is disposed at both ends of the base 10, one end of the control module 30 is electrically connected to the plug-in module 20, and the rotating module 40 is sleeved on the plug-in module 20; the plug-in module 20 includes a plug-in frame 21, a plug-in plate 22, an assembly 23, and a conductive sheet 24; the assembly 23 is used to assemble the plug-in plate 22 and the plug-in frame 21 to form a plug-in groove 25, the conductive sheet 24 is disposed in the plug-in groove 25, and two sets of plug-in grooves 25 are provided, the two sets of plug-in grooves 25 being close to the plug-in frame 21 and the plug-in plate 22 respectively; the rotating module 40 includes a rotating housing 41 and a rotating groove 42 disposed on the rotating housing 41, the rotating groove 42 being... The rotating module 40 rotates along the plug-in bracket 21 on the base 10, corresponding to the rotating slot 42 and the plug-in slot 25, for insertion. The base 10 allows the control module 30 to install the plug-in module 20 and the rotating module 40, enhancing the connection and tightness between the structures. Two sets of plug-in modules 20 are provided, each with a rotating module 40, forming a double-row rotating structure. This allows users to flexibly adjust the position and direction of the plug as needed, enhancing the flexibility and practicality of the power strip and improving the user experience. The plug-in module 20 has multiple plug slots 25 to accommodate different plug types, enhancing insertion efficiency. The control module 30 provides overcurrent and overload protection for the plug-in module 20, improving the safety of the power strip. It is highly practical and has good application prospects.

[0037] The above embodiments only illustrate several implementation methods of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. A double-row rotating power strip, characterized in that, include: The system comprises a base, a plug-in module, a control module, and a rotation module. The control module is located at both ends of the base and is electrically connected to the plug-in module. The rotation module is sleeved on the plug-in module. The plug-in module includes a plug-in frame, a plug-in plate, an assembly, and a conductive sheet. The assembly is used to assemble the plug-in plate and the plug-in frame to form a plug-in slot. The conductive sheet is disposed in the plug-in slot. There are two sets of plug-in slots, which are respectively located close to the plug-in frame and the plug-in plate. The rotation module includes a rotating housing and a rotating groove disposed on the rotating housing. The rotating groove corresponds to the plug-in slot. One end of the rotation module rotates along the plug-in frame on the base so that the rotating groove corresponds to the plug-in slot for plug-in.

2. The double-row rotating power strip according to claim 1, characterized in that: The base includes a left housing and a right housing. An assembly joint is provided on the upper part of the left housing, and an assembly slot is provided on one side of the right housing.

3. The double-row rotating power strip according to claim 2, characterized in that: The two ends of the base are respectively provided with an assembly part and a fastener; the assembly part is used to assemble the left shell, and the fastener is used to assemble the right shell.

4. The double-row rotating power strip according to claim 3, characterized in that: An installation component is provided between the left and right housings, and the installation component is used to install the plug-in module and the rotating module.

5. The double-row rotating power strip according to claim 4, characterized in that: The control module is mounted on the left and right housings. The control module includes a control board, a control switch, and a control display. The control switch is mounted on the control board, and the control display is mounted on the control board and close to the control switch.

6. The double-row rotating power strip according to claim 1, characterized in that: The connector is provided in two sets, and a connector partition is provided between the two sets of connectors. One end of the connector partition is provided on the base to form a movable cavity.

7. The double-row rotating power strip according to claim 1, characterized in that: The connector frame is provided with multiple sets of connector rings, and a connector area is provided between two adjacent sets of connector rings. The connector slot is provided in the connector area.

8. The double-row rotating power strip according to claim 7, characterized in that: The insertion ring has a first slot at one end near the insertion partition, a second slot at one end near the insertion plate, and a third slot away from the second slot.

9. The double-row rotating power strip according to claim 1, characterized in that: The rotating sleeve is provided with multiple sleeves corresponding to the insertion area. Each of the multiple rotating sleeves is provided with a buckle. The rotating sleeve drives the buckle to engage with the first slot, the second slot and the third slot along the insertion ring.

10. The double-row rotating power strip according to claim 9, characterized in that: The rotating sleeve rotates individually or uniformly along the insertion ring, and is limited by the interlocking of the buckle and the first, second and third slots.