Rotating conductive device and power socket

The rotating electrical conducting device with a conductive shaft, carrier, and seat, along with an elastic and clamping mechanism, addresses the wear issue in telescopic cables by ensuring stable current flow and extended product life through reduced friction and easy replacement.

JP2025536024AActive Publication Date: 2025-10-30JIANGXI RISHENG PRECISION HARDWARE CO LTD
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Patent Information

Application Number
JP2025526418
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-04-18
Filing Date
2024-04-09
Publication Date
2025-10-30
Estimated Expiration
2044-04-09

AI Technical Summary

Technical Problem

Existing telescopic data cables suffer from wear due to friction between circular conductive rails and metal contacts, leading to poor conductivity and reduced product lifespan, especially when used for stable current input and output.

Method used

A rotating electrical conducting device with a conductive shaft, carrier, and seat, featuring an elastic device and clamping mechanism, which allows the conductive carrier to rotate while maintaining stable current flow through a wire wound around it, using insulating and conductive components to enhance wear resistance and facilitate easy replacement.

Benefits of technology

The design extends the life of the rotating conductive device by reducing contact friction and enabling stable current input and output, with easy disassembly and replacement of the conductive base, simplifying testing and accommodating multiple signal cables.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a rotating conductive device and a power socket, which includes a conductive component, a resilient device, The conductive component includes a conductive shaft, a conductive carrier, a clamping device, and a wire. and a conductive seat. The current is first conducted to the conductive seat, which is then conducted to the conductive shaft, which is then carries a current to the conductive carrier, which can rotate about a conductive axis. The wire is electrically connected to the conductive carrier, and the wire is connected to the conductive shaft via the conductive carrier. The conductive carrier can stably input and output current to the wire. The elastic device plays the role of rewinding the wire, and the clamping device controls the length of the wire. Compared with the structure of the driven circuit board and the conductive board, the structure of the conductive shaft is The contact friction between the conductive shaft and the conductive carrier is higher than that of the circular conductive The contact friction force is greater than that between the rail and the metal contact, extending the product life.
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Description

[Technical Field]

[0001] The present invention relates to the technical field of electrical conductive devices, and more particularly to a rotating electrical conductive device and a power socket. . [Background technology]

[0002] A rotating electrical conductor is a component that ensures continuous input and output of current while rotating. Examples of rotating electrical conductors include telescopic data cables and telescopic power cords. As the price goes up, people tend to carry electronic devices such as mobile phones and computers when they go out. As the number of devices increases, it has become common to carry a corresponding data cable for charging. Most current data cables are long and straight, and are prone to tangling and knotting. So, the telescopic data cable was born. When you need a power strip, but one is not enough, you can connect another one. There are also power strips available with retractors. Currently, there are two types of telescopic data cables on the market: bidirectional telescopic data cables and unidirectional telescopic data cables. There are many products, but according to the published literature for the retractable charging cable with patent number 202011011557.7, This retractable charging cable is a two-way retractable data cable, one end of the wire is USB interface on one end, and Type-C or Micro interface on the other end. When charging, simply plug the USB interface into the socket, and you can use Type-C or A stable current flows through the microinterface. However, the rotating cylinder in the middle is Since it is only wound, stable current input and output is not possible. In the published literature on "One-way Free Pull Data Cable," the difference between it and two-way stretchable data cable is This one-way stretchable data cable provides stable current input and output while stretching the data cable. Therefore, in this patent, the structure of the compliant circuit board and the fixed conductive board is The structural design allows the current to first be conducted to the fixed conductive substrate, and then to the metal contacts on the follower circuit board. By connecting the circular conductive rails on the constant conductive board, the following circuit board conducts the wires. However, the circular conductive rails are subject to wear due to friction with the metal contacts, which can lead to poor conductivity and long life. There is a problem of shortening life. This provides stable input and output current while winding the wire, extending the service life. It is necessary to develop a rotating conduction technology that can effectively extend the range. Summary of the Invention

[0003] To solve the above problems, the present invention provides a rotating electrical conducting device and a power socket. The technical solutions of the present invention are as follows: The rotating electrical conducting device of the present invention comprises: Conductive component: The conductive component includes a conductive shaft, a conductive carrier, and a conductive seat. One end of the shaft is fixedly connected to the conductive seat, and the conductive carrier is rotatably mounted on the conductive shaft. The carrier is electrically connected to the conductive carrier. Elastic device: The elastic device is connected to the conductive seat, and the elastic device is fitted into one end of the conductive carrier. There are. Clamping device: The other end of the conductive shaft is connected to the clamping device, and the clamping device is The other end of the carrier is clamped to the other end. Wire: One end of the wire is electrically connected to the conductive carrier, and the wire is The wire is wound around the resilient device and positioned between the resilient device and the clamping device. Also included is a retaining ring: the retaining ring is removably attached to the conductive carrier. The retaining ring is provided with a fastener, the conductive carrier is provided with a groove, and the fastener is fitted into the groove. It's embedded. Furthermore, the conductive shaft includes a plurality of conductive parts and an insulating shaft, and one end of the plurality of conductive parts is connected to the insulating shaft. The other ends of the conductive parts are arranged at intervals in the axial direction and penetrate the axial core of the insulating shaft. The conductive carrier extends to the tail end of the insulating shaft in the direction of the wire and is connected to the conductive seat. The electrical lead-out part includes an insulating carrier, and the electrical lead-out parts are arranged in the axial direction of the insulating carrier. The electrical leads are spaced apart from one another, and each electrical lead is in electrical contact with a corresponding conductive component. The insulating carrier has multiple symmetrical grooves, each of which has a are located in corresponding symmetrical grooves. The symmetrical grooves allow the electrical leads to be The inner contact part is located on the inner wall of the insulating carrier, and the outer contact part is located on the conductive part. The outer contact is on the outer wall of the insulating carrier, and the end of the wire is in electrical contact with the outer It is electrically connected to the contact. Furthermore, the conductive base has several conductive holes, each of which is connected to a corresponding conductive part. are electrically connected to the product. Furthermore, a plurality of protrusions are provided on both ends of the conductive carrier, and the elastic device is conductive. The resilient device is fitted into a protrusion at one end of the carrier, and is connected to a conductive seat. The clamping device is fitted into the protrusion at the other end of the conductive carrier, and the clamping device is attached to one end of the conductive shaft. connected to one end. Furthermore, the elastic device includes a first rotating disk and a first elastic member, and the conductive seat is provided with a fitting groove. The first rotating disk is fitted into the protrusion at one end of the conductive carrier, and one end of the first elastic member is fitted into the fitting groove. The other end of the first elastic member is fitted to the first rotating disk. Furthermore, the clamping device includes a second rotating disk, a gear, a swing arm, and a second elastic member. The second rotating disk is fitted into the protrusion at the other end of the conductive carrier, and the second rotating disk has rotating teeth. One end of the swing arm is disposed in contact with the rotary tooth, and the second elastic member is The gear is disposed at the other end of the swing arm, and is disposed above the swing arm. Furthermore, the swing arm is provided with a protruding leg, a first protrusion, a second protrusion, and a protruding post. The protruding leg is disposed so as to come into contact with the rotary tooth, the second elastic member is provided on the protruding post, and the gear is The depths of two adjacent tooth grooves of the gear are different between the first protrusion and the second protrusion. The first tooth groove engages with the first protrusion, and the second tooth groove engages with the second protrusion. It fits into the protrusion. Furthermore, an outer shell is included, and the inner wall of the outer shell is provided with several columns, each The column is inserted through the corresponding gear, swing arm, and second elastic member. do. The present invention relates to the above-mentioned rotating electrical conduction device, socket panel, and socket connected to the socket panel. A power socket including a housing and circuit components mounted within the socket housing. The rotating conductive device is electrically connected to the circuit component. . The beneficial effects of the present invention are as follows: The conductive components in a rotating conductive device include a conductive shaft, a conductive carrier, and a conductive seat, and the current flows through First, the conductive seat is connected to the conductive shaft, and the conductive shaft transmits the current to the conductive carrier. , the conductive carrier can rotate around the conductive axis, and the wire is electrically connected to the conductive carrier The wire is wound around the conductive axis via a conductive carrier. Current can be input and output stably to the wire. Compare the structure of the driven circuit board and the conductive board. The structure of the conductive shaft is harder than that of the fixed circuit board, and the contact wear resistance between the conductive shaft and the conductive carrier is improved. The friction force is greater than the contact friction force between the circular conductive rail and the metal contact, which shortens the product life. The conductive base is designed to effectively extend the life of the rotating conductive device when it breaks. In this case, the conductive base 13 can be directly removed from the power socket, and the entire rotating conductive device can be easily replaced. This ensures stable current flow in and out of the conductive shaft and simplifies testing of the power supply. [Brief explanation of the drawings]

[0004] [Figure 1] 2 is a schematic diagram showing an exploded view of the conductive components, elastic device, clamping device, and wires of the rotating conductive device of the present invention; FIG. [Figure 2] 1 is a schematic diagram showing an exploded structure of the conductive components and couplers of the rotating conductive device of the present invention; [Figure 3] 1 is a schematic diagram showing an assembly structure of conductive components and couplers of a rotating conductive device of the present invention; [Figure 4] 1 is a schematic diagram showing an exploded structure of a conductive shaft, a conductive seat, and a conductive carrier of a rotating conductive device according to the present invention. [Figure 5] 1 is a schematic diagram showing an exploded structure of an electrical lead portion and an insulating carrier of a rotary electric conduction device according to the present invention; [Figure 6] 3 is a diagram showing the connection principle of the conductive ring, conductive wire, and conductive through hole of the rotating conductive device of the present invention; FIG. [Figure 7] 2 is a schematic diagram showing an exploded structure of a conductive component, a first rotating disk, and a second rotating disk of the rotary conductive device of the present invention. FIG. [Figure 8] 1 is a schematic diagram showing the structure of a clamping device and a conductive shaft of a rotating conductive device according to the present invention; [Figure 9] 3 is a schematic diagram showing the structure of a swing arm and a second elastic member of the rotary electric conduction device of the present invention. FIG. [Figure 10] 1 is a schematic diagram showing the structure of a gear of a rotary electric transmission device of the present invention. [Figure 11] 3 is a schematic diagram showing the mounting structure of the gear, swing arm, second elastic member and housing of the rotary electric transmission device of the present invention. FIG. [Figure 12] 1 is a schematic diagram showing an exploded structure of a power socket according to the present invention; [Figure 13] 1 is a schematic diagram showing an exploded structure of a rotating electrical conduction device according to the present invention; [Figure 14] 1 is a schematic diagram showing the overall structure of a rotating electrical transmission device according to the present invention; [Figure 15] 2 is a schematic diagram showing the structure of the elastic device and the conductive seat of the rotating conductive device of the present invention.

[0005] Drawing symbols: 1, conductive component, 11, conductive shaft, 111, conductive part, 1111, conductive ring, 1 112, conductive wire, 112, insulating shaft, 12, conductive carrier, 121, electrical drawing part, 1211, inscribed Contact part, 1212, outer contact part, 122, insulating carrier, 1221, symmetrical groove, 1222, concave groove, 1223, receiving hole ,123,Protrusion, ,124,Notch, ,13,Conductor seat, ,131,Conductor through hole, ,132,Click, ,2,Winding connector Component, 21, elastic device, 211, first rotating disk, 212, first elastic part, 22, clamping device, 221, second rotating disk, 2211, rotating teeth, 2212, recess, 222, gear, 2221, first groove, 2222, second groove, 2 23, swing arm, 2231, protrusion, 2232, first protrusion, 2233, second protrusion, 2234, protrusion, 224, Second elastic body, 3, wire, 4, retaining ring, 41, plug, 411, fastener, 42, ring-holding arm, 5, Outer shell 51, column 52, outlet 53, magnet. DETAILED DESCRIPTION OF THE INVENTION

[0006] In order to clarify the technical problem, technical solution and beneficial effects that the present invention aims to solve, Therefore, the present invention will be described in more detail below with reference to the drawings and examples. The specific examples shown are intended to illustrate, but not to limit, the invention. There is no. It should be noted that the parts may be "attached," "provided," "covered," "fitted," When the term "mated" is used, the part is directly attached to another part. This means that the device is attached via a power supply or other component. In the description of the present invention, the term "plurality" means two or more unless otherwise specified. Taste. In addition, terms such as "inside," "top," "between," "both sides," "one side," and "side" are used in conjunction with the drawings. The positional relationship is based on the positional relationship shown in FIG. 1 and is intended to facilitate and simplify the explanation of the present invention. Certain devices and components must be configured and operated in a specific location. It is not meant to imply that there are no such devices and therefore should not be construed as a limitation on the present invention. The terms "first," "second," "third," etc. are used for explanatory purposes only and are not intended to be used interchangeably. No reference to the relative importance or number of technical features indicated is implied. Thus, a feature defined as "first," "second," "third," etc., refers to one or more of those features. The characteristics may be included explicitly or implicitly. In addition, "and / or" in the text is merely an expression that explains the relationship between related objects. indicates that three relationships can exist. For example, "A and / or B" means that only A is present. In this case, it means three cases: when A and B exist simultaneously, and when only B exists. where A and B can each be singular or plural.

[0007] Referring to FIG. 1, the present invention comprises a conductive component 1, a resilient device 21, a clamping device 22, and and a wire 3. The end of the wire 3 is connected to a conductive component 1. In Figure 1, the wire has two ends, one of which is directly connected to the Specifically, this end without an interface is a conductive component. 1. The other end has an interface. This connection is , MicroUSB connection, Type-C connection, Lightning connection, or a combination thereof Especially for multiple combinations, the elastic data cable allows multiple external devices to be charged simultaneously. Now that it is possible to do this, the practicality of stretchable data cables has increased dramatically. The components 2 are installed on both ends of the conductive component 1. Referring to FIG. 4, the conductive component 1 includes a conductive shaft 11, a conductive carrier 12, and a conductive seat 13. One end of the conductive shaft 11 is fixedly connected to the conductive base 13, and the other end of the conductive shaft 11 is connected to the winding component. The conductive carrier 12 is rotatably attached to the conductive shaft 11. The conductive carrier 12 is electrically connected to the conductive shaft 11. The conductive carrier 12 is located on one side of the conductive base 13. The ends of the wires 3 are electrically connected to the conductive carriers 12. The winding component 2 is The conductive seats 13 are sandwiched between both ends of the conductive carrier 12. In FIG. The current flows from the conductive base 13 to the conductive shaft 11, which then transfers the current to the conductive carrier 12. Even if the conductive carrier 12 rotates around the conductive axis 11, the conductive carrier 12 is not stable. A stable current flows through the wire 3, ensuring stable input and output of current. Specifically, referring to FIG. 4, the conductive shaft 11 includes four conductive members 111 and one insulating shaft 112. The four conductive members 111 are arranged at intervals in the axial direction of the insulating shaft 112, and one end of each conductive member 111 is insulated. The conductive member 111 on the surface of the shaft 112 is annular. One end of the conductive member 111 is connected to a conductive ring 1. The other end of the conductive part 111 penetrates the axial core of the insulating shaft 112, The other end of the conductive part 111 is called a conductive wire 1112. The tail end of the insulating shaft 112 is relatively defined. Referring to FIG. The tail end of 2 is the part that connects to the conductive base 13, that is, the part that connects to the power source. In this example, the conductive shaft 11 and the conductive seat 13 are integrated, but in another implementation, the conductive seat 13 can be omitted. It is acceptable as long as the conductive member 111 is connected to a power source. , respectively, those connected to the fire wire, those connected to the ground wire, and those connected to the signal cable. The signal cable is a first signal cable that carries a different protocol. The existing data cable is split into a fast charging cable and a second signal cable. There are slow charging cables and fast charging cables have wires that contain multiple signal protocols. As technology advances, we may see the emergence of super-fast charging cables. , you may need to add more signal cables inside. The number 111 can be changed depending on your setup requirements. Referring to FIG. 2, the conductive base 13 is provided with four conductive through holes 131, Each conductive through hole 131 is electrically connected to a corresponding conductive component 111. Specifically, Referring to FIG. 7, each conductive through hole 131 is electrically connected to a corresponding conductive component 1112. The structure of the conductor 13 is the same as that of the power plug currently known as the "cannon head." The power plug is inserted into the conductive hole 131 or the power line is connected to the conductive hole 131. This allows current to flow through the conductive seat 13. The conductive seat 13 is designed so that the rotating conductive device is not broken. When the power is turned on, the conductive base 13 can be directly removed from the power socket, allowing for easy disassembly. The body is also easy to replace. Compared to the method of connecting the wire and conductive ring separately, the metal plug Since it is directly inserted into the conductive through-hole 131, the current is input and output to the conductive shaft 11 stably. Simply insert the current multimeter probe directly into the conductive hole 131 to check the conductivity of the conductive seat. You can always test whether it is working, which greatly reduces the difficulty of conducting tests. The cable is divided into a first signal cable and a second signal cable that carry different protocols. Therefore, the conductive base 13 plays a role in better guiding the power supply to the conductive shaft 11, It makes the connection more convenient and the current transmission more stable. It also allows multiple signal cables to be set up. If necessary, the conductive parts 111 and conductive through holes 131 are added as appropriate. 5 and 6, the conductive carrier 12 has four electrical leads 121 and an insulating carrier. The four electrical lead-out portions 121 are spaced apart from one another in the axial direction of the insulating carrier 122. Each electrical lead 121 is in electrical contact with a corresponding conductive part 111. The insulating carrier 122 is provided with several symmetrical grooves 1221, The lead-out portions 121 are disposed in corresponding symmetrical grooves 1221. The electrical lead-out portion 121 is composed of two parts, namely, the symmetric groove 1221 and the electrical lead-out portion 1222. The contact portion 121 is divided into an inner contact portion 1211 and an outer contact portion 1212, and the inner contact portion 1211 is connected to the inner wall of the insulating carrier 122. The inner contact portion 1211 is in electrical contact with the conductive portion 111. The outer contact portion 1212 is in an insulating carrier. The end of the wire 3 is electrically connected to the outer contact portion 1212. Thus, the symmetrical groove 1221 divides the electrical lead 121 into two parts, and the electrical lead 12 A part of the inner contact portion 1211 is connected to the conductive shaft 11, that is, the inner contact portion 1211 is connected to the conductive portion 111 of the conductive shaft 11. The other part of the electrical lead 121 is connected to the wire 3, that is, the outer contact 1212 is connected to the wire The wire 3 is connected to the ear 3, and the wire 3 can rotate or pivot together with the conductive carrier 12. The wire is wound around the conductive carrier 12. The insulating carrier 122 has a receiving hole 1223. The receiving hole 1223 is located on the outer wall of the insulating carrier 122. Add glue or fixing adhesive to further fix the wire 3. The current flows from the conductive base 13 to the conductive shaft 11, and the conductive portion 111 of the conductive shaft 11 transfers the current to the conductive carrier 12. The electrical lead 121 conducts the power to the wire 3 connected to it. The conductive carrier 12 rotates to allow a stable input / output current to flow through the wire. The structure of the conductive shaft 11 is harder than the structure of the fixed circuit board, and the conductive shaft 11 and the conductive carrier The contact friction force between the conductive rail and the metal contact is greater than the contact friction force between the conductive rail and the metal contact. Effective in extending the life of the product. The conductive carrier 12 shown in FIG. 4 is similar to an existing disc-shaped steel scale structure and has a notch 124. The conductive carrier 12 can be easily attached to the conductive shaft 11. The protruding portion 121 and the insulating carrier 122 are integrally formed. Furthermore, in order to make the connection between the two more securely, the conductive carrier 12 does not come off the conductive shaft 11. To prevent this, we limited the winding path of the wire and designed a retaining ring 4. The retaining ring 4 is The retaining ring 4 is provided with a fastener 411, and the conductive cap The rear 12 has a recessed groove 1222, and the fastener 411 is fitted into the recessed groove 1222. The retaining ring 4 is composed of a plug 41 and a pair of ring-embracing arms 42 provided on both sides of the plug 41. The plug 41 is provided with the notch 124 of the conductive carrier 12. The encircling arms 42 are used to encircle the outer periphery of the conductive carrier 12, The arm 42 exposes the outer contact portion 1212, and the wire 3 passes through the gap and is connected to the conductive carrier 12. Extending from there, wire 3 is wrapped around culling 4. Experimental Test: Five of the present invention's rotating conductive devices are used to pull out wires and hold them for a while. Pull the button to retrieve the wire, and the charging status will continue to be displayed on the mobile device. Repeat the above steps to pull out and retrieve the wire in one go. The action is to stop operation until the mobile device is powered off. This refers to a state in which no power is being supplied to the device. Then, calculate the total number of times it has been pulled out. As a result of the calculation, it was confirmed that the rotating conductive device would not break down until it had been operated 50,000 times in the above process. Check. Next, with reference to FIGS. 7 to 11, the structural principle of the elastic device 21 and the clamping device 22 and the conductive After designing the component 1, how do you realize the connection between the elastic device 21 and the clamping device 22? The mechanism for automatically collecting Wire 3 and limiting the length of Wire 3 that can be pulled out will be explained. The elastic device 21 and the clamp device 22 are collectively referred to as a winding unit 2. It is possible. The winding unit 2 is composed of an elastic device 21 and a clamping device 22, and Two protrusions 123 are provided on each end. The insulating carrier 122 is disposed on the rear 122, and has two end faces, one of which has two protrusions 12 The elastic device 21 has two protrusions 123 on the other end surface. 2, and the elastic device 21 is connected to the conductive base 13. The clamping device 22 is fitted onto two protrusions 123 on the other end of the conductive carrier 12. The clamp device 22 is connected to one end of the conductive shaft 11. The protrusions 123 on the two end faces are symmetrical. It is in place and gives the lifting structure a good look. Specifically, the elastic device 21 includes a first rotating disk 211 and a first elastic member 212, and is fitted to the conductive seat 13. A groove 132 is provided, and the first rotating disk 211 fits into a protrusion 123 on one end of the conductive carrier 12; One end of the first elastic member 212 is fitted into the fitting groove 132, and the other end of the first elastic member 212 is 11, the first rotating disk 211 has a protrusion 123 and a The first rotating disk has a hole formed therein that matches the shape of the protrusion 123 and the plug 41. The first rotating disk 211 is also provided with an L-shaped groove, and the first The other end of the elastic member 212 is hooked into this L-shaped groove. When the first rotating disk 211 rotates, the spiral spring applies a restoring force to the first rotating disk 211, Of course, the first elastic member 212 has an elastic function. When the first rotating disk 211 rotates, a restoring force is applied to the first rotating disk 211. It would be good if we could give the turning point 211 a tendency to reset. Therefore, the role of the elastic device 21 is to automatically wind up the wire 3 and to give the wire 3 a force to rewind it. do. Specifically, the clamp device 22 includes a second rotating disk 221, a gear 222, a swing arm 223, a second elastic member, and a The second rotating disk 221 is made of a member 224 that fits onto the protrusion 123 on the other end of the conductive carrier 12. The second rotating disk 221 is provided with rotating teeth 2211, and one of the swing arms 223 The second elastic member 224 is disposed so as to abut against the rotary tooth 2211 at its end. The gear 222 is provided above the swing arm 223. 11, the rotary tooth 2211 is provided with three recesses 2212, and the swing arm 2 One end of the protrusion 2212 is disposed in contact with the recess 2212 of the rotary tooth 2211. The projection 123 and the plug 41 are provided with holes that match the shapes of the projection 123 and the plug 41. The second rotating disk 221 has a circular hole in its center. The other end of the conductive shaft 11 passes through this circular hole. Here, this structure allows the conductive carrier 12 to rotate together with the winding component 2. Specifically, it is used to pull out Wire 3 or automatically rewind Wire 3. When the conductive carrier 12 is rotated, the conductive carrier 12 rotates together with the first rotating disk 211 and the second rotating disk 221. The swing arm 223 rotates with the rotation of the rotary tooth 2211, and the gear 222 is attached to the swing arm 223. The second elastic member 224 is driven by the second elastic member 224 to reset the swing arm 223. is a spring or spring piece, and the center part of the spring piece has elasticity. Furthermore, the swing arm 223 includes a protruding leg 2231, a first protrusion 2232, a second protrusion 2233, and a protrusion A pillar 2234 is provided, and the protruding leg 2231 is disposed in contact with the recess 2212 of the rotary tooth 2211, The second elastic member 224 is provided on a protruding post 2234. The gear 222 is provided with a first protrusion 2232 and a second protrusion It is located between Ki 2233. Furthermore, referring to FIG. 10, the depths of two adjacent tooth spaces of the gear 222 are different, and the first The first groove 2221 and the second groove 2222 are engaged with the first protrusion 2232. The second tooth groove 2222 is engaged with the second protrusion 2233. The first tooth groove 2221 and the second tooth groove 2222 are There are three of each, and the depth of the first tooth groove 2221 is deeper than the depth of the second tooth groove 2222. The apposition can be extended outwards to accommodate various length needs of users. We can respond. Further included is an outer shell 5, the inner wall of which is provided with a number of columns 51. Referring to FIG. 11, each column 51 includes a corresponding gear 222, a swing arm 223, and a second The second elastic member 224 is inserted through the elastic member 224, and both ends of the second elastic member 224 are bent into two rings. Column 51 is inserted through two rings. When the gear 222 rotates, it rotates around the axis of the column that passes through it. The protrusion 2231 rotates the swing arm 223 around the column 51 passing through it. That is, the column 51 fixes the second elastic member 224, the swing arm 223, and the gear 222. There is a role to play. Furthermore, referring to FIG. 14, the outer shell 5 is also provided with a wire outlet 52, and the wire 3 is connected to a MicroU The USB interface, Type-C interface, and one end of the Lightning interface are exposed. The wire 3 can be extended and retracted from the wire outlet 52. The outer shell 5 has a magnet that is attached to it. A section 53 is also provided, which can be used to connect the MicroUSB interface and the Type-C interface by magnet. It absorbs the Lightning interface. When users want to pull out the wire to charge, the MicroUSB connector on the wire 3, Typ Pulling the end of the eC connector or Lightning connector will cause the conductive carrier 12 to The rotating teeth 2211 of the second rotating disk 221 rotate, and the protrusion 2231 of the swing arm 223 moves from the original recess 2212. At the same time, the second elastic member 224 is released from the rocker 223, and the rocker 223 is displaced from its original position. When the user releases the hand after applying the restoring force, the first elastic member 212 in the first rotating disk 211 is reset. The first turntable 211 and the second turntable 221 rotate together, and a part of the drawn wire 3 is collected. However, since the second elastic member 224 resets the rocker 223, the protrusion 22 of the rocker 223 31 is hooked onto the second groove 2222 of the gear 222, and the rocker 223 is fixed. The protrusion 2231 of the rotary tooth 2211 rotates by a certain angle, and the protrusion 2231 stops in the recess 2212 of the rotary tooth 2211. The second turntable 221 stops rotating. The first turntable 211 at the other end of the conductive carrier 12 also stops rotating. Stop and position. When the user wants to stop charging by pulling back wire 3, Micro USB, Type-C, or Pull the end with the Lightning connector again to connect it to the conductive carrier 12. The rotating teeth 2211 of the second rotating disk 221 rotate again, and at the same time, the protrusion 2231 of the rocker 223 moves from the recess 2212 At the same time, the second elastic member 224 moves the rocker 223 away from the original position. When the user releases the hand, the first elastic member 212 is reset. The second elastic member 212 resets the rocker 223, so that the protrusion 2231 on the rocker 223 contacts the gear 22 The first groove 2221 engages with the second first groove 2221. The rocker 223 is fixed. Since the depth of the groove 2222 is greater than the depth of the protrusion 2231 on the rocker 223, when the rocker 223 is fixed, rotates at an angle greater than the angle of the protrusion 2231 when the wire 3 is pulled out, and The protrusion 2231 stops outside the recess 2212 of the rotating tooth 2211 and prevents the first rotating disk 211 and the second rotating disk 221 from rotating. Finally, the action of the first elastic member 212 causes all of the stretched wire 3 to The wire can be collected in one operation, which is simple, convenient and highly efficient. stomach. The present invention relates to the above-mentioned elastic data cable, socket panel 6, and socket panel 7, with reference to FIG. A socket shell 7 connected to the panel 6 and a circuit component provided in the socket shell 7 They also unveiled the power socket, including Component 8. The present invention is also applicable to travel chargers and car chargers. The above example specifically describes an example of an embodiment of the present invention in detail. However, this does not limit the scope of the patent of the present invention. Although some modifications and improvements can be made without departing from the spirit of the present invention. Therefore, the scope of protection of the patent of the present invention is not limited to the attached patent. This will be based on interest demands.

Claims

1. Rotating conductive device, its features include: Conductive component (1): The conductive component (1) consists of a conductive shaft (11), a conductive carrier ( One end of the conductive shaft (11) is fixedly connected to the conductive seat (13), and the conductive cap (14) is fixed to the conductive seat (14). The carrier (12) is rotatably attached to the conductive shaft (11), and the conductive carrier (12) is 11). Elastic device (21): The elastic device (21) is connected to the conductive seat (13), and the elastic device (21) is connected to the conductive carrier. It is fitted to one end of the rear (12). Clamping device (22): The other end of the conductive shaft (11) is connected to the clamping device (22), A clamping device (22) is clamped to the other end of the conductive carrier (12). Wire (3): One end of the wire (3) is electrically connected to the conductive carrier (12), and the wire The wire (3) is wound around the conductive carrier (12), and the wire (3) is clamped to the elastic device (21). The device (22) is located between the

2. The rotating conductive device according to claim 1 is characterized in that: the coupler ring (4) is attached to the conductive carrier (12). The coupler ring (4) is provided with a coupler block (411). The conductive carrier (12) is provided with a groove (1222), and the coupler block (411) is provided with the groove (1 222).

3. The rotating conductive device according to claim 2 is characterized in that the conductive shaft (11) is insulated from the plurality of conductive members (111). The insulating shaft (112) includes a plurality of conductive members (111) each having one end spaced apart from one another in the axial direction of the insulating shaft (112). The other end of the conductive part (111) is inserted into the axial core of the insulating shaft (112). The insulating shaft (112) is connected to the end of the insulating shaft (112) and the conductive seat (13). The rear (12) includes a plurality of electrical lead-out components (121) and an insulating carrier (122), and a plurality of The electrical leads (121) are spaced apart from one another in the axial direction of the insulating carrier (122). Each electrical lead portion (121) is in electrical contact with a corresponding conductive portion (111). The edge carrier (122) is provided with a plurality of symmetrical grooves (1221) and each electrical lead (121) is placed in a corresponding symmetrical groove (1221), which is connected to the electrical lead (1 21) is divided into an inner contact part (1211) and an outer contact part (1212), and the inner contact part (1211) is an insulating carrier. The inner contact part (1211) is located on the inner wall of the conductive part (122), and is in electrical contact with the conductive part (111). , the outer contact portion (1212) is on the outer wall of the insulating carrier (122), and the end of the wire (3) is It is electrically connected to the section (1212).

4. The rotating conductive device according to claim 3 has the following features: the conductive base (3) has a conductive through hole (131) Each conductive through hole (131) is electrically connected to the corresponding conductive part (111). It has been done.

5. The rotating conductive device according to claim 2 has the following features: The elastic device (21) is provided with a protrusion (123) at one end of the conductive carrier (12). ) and the elastic device (21) is connected to the conductive seat (13). The clamping device (22) clamps into the protrusion (123) on the other end of the conductive carrier (12). The clamping device (22) is connected to one end of the conductive shaft (11).

6. The rotating conductive device according to claim 5 has the following features: the elastic device (21) comprises a first rotating disk (211) and a first elastic The conductive seat (13) includes a member (212), and a groove (132) for clicking sounds is provided in the conductive seat (13). The rotating disk (211) has a click groove (132) in a protrusion (123) at one end of the conductive carrier (12). one end of the first elastic member (212) is fitted into the clicking groove (132); The other end of the first elastic member (212) is fitted into the first rotating disk (211).

7. The rotating conductive device according to claim 6 has the following features: the clamping device (22) has a second rotating disk (221), a gear The second rotating disk (221) includes a swing arm (222), a swing arm (223) and a second elastic member (224). is fitted into the protrusion (123) at the other end of the conductive carrier (12), and the second rotating disk (221 ) is provided with a rotary tooth (2211), and one end of the swing arm (223) is connected to the rotary tooth (2211). ), and the second elastic member (224) is disposed at the other end of the swing arm (223). The gear (222) is disposed above the swing arm (223).

8. The rotary conduction device according to claim 7 is characterized in that the swing arm (223) has a protruding leg (2231). , a first protrusion (2232), a second protrusion (2233) and a protrusion (2234), The legs (2231) are disposed in contact with the rotary teeth (2211). The gear (222) is provided on the pillar (2234) and is disposed between the first protrusion (2232) and the second protrusion (2234). The depths of two adjacent grooves of the gear (222) are different, and the first groove (2221) and The first groove (2221) is engaged with the first protrusion (2232). The second tooth groove (2221) engages with the second protrusion (2233).

9. The rotating conductive device according to claim 8 is characterized in that it includes an outer shell (5), and the inner wall of the outer shell (5) has a plurality of Each column (51) is provided with a corresponding gear (222), a swing arm (223) and the second elastic member (224).

10. A power socket, characterized in that: a rotating conductive device according to any one of claims 1 to 9; The socket panel (6), the socket housing (7) connected to the socket panel (6), and the socket The rotating electrical device includes a circuit component (8) disposed within a socket housing (7). It is electrically connected to the circuit components (8).

Citation Information

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