Power supply track adapter
By introducing a locking mechanism into the power supply rail adapter to lock the position of the rotating seat, the circuit breaking problem when plugging or pulling the electrical plug is solved, ensuring stable conduction and improving the user experience.
Patent Information
- Application Number
- CN202422423507.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-10-08
AI Technical Summary
Existing power supply rail adapters are prone to breaking circuits when plugging or pulling the electrical plug, which affects normal use.
A power supply rail adapter including a base, a rotating seat, a power withdrawal module and a locking mechanism is designed. The position of the rotating seat is locked through the locking mechanism to ensure that the conduction with the power supply rail body is maintained when plugging or pulling the electrical plug, and avoiding circuit breakage.
It is possible to avoid circuit breakage between the power supply rail adapter and the power supply rail body when plugging or pulling the electrical plug, improving the user experience.
Smart Images

Figure CN223285369U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of sockets, in particular to a power supply track adapter Background Art
[0002] Some track sockets on the market include a power supply track body and a power supply track adapter. The power supply track body can be installed on the wall. The power supply track body is provided with a slide groove and a conductive strip located in the slide groove. The power supply track adapter includes a base, a rotating seat and a power supply module. The base has a track guide block for slidingly cooperating with the power supply track body. The rotating seat has a power supply guide block. The power supply module is installed in the rotating seat. The power supply module has a first conductive component and a second conductive component. The first conductive component has a first pin slot and a first power supply part. The second conductive component has a second pin slot and a second power supply part. The first power supply part and the second power supply part extend out from opposite sides of the power supply guide block.
[0003] When using the power supply track adapter, insert the track guide block and the power supply guide block into the slide and slide them to the appropriate position. Then rotate the rotating seat to the power supply position, so that the first power supply part and the second power supply part on both sides of the power supply guide block rotate to the position of contacting different conductive strips in the slide, respectively, to complete the power supply. The first pin slot and the second pin slot are used for plugging in the pins of the electrical plug to achieve power supply to the electrical appliance. When the user plugs in or out the electrical plug, or when the user pulls and moves the electrical plug, the current power supply track adapter sometimes has a short circuit between the power supply track adapter and the power supply track body, affecting normal use. Utility Model Content
[0004] The present invention aims to solve at least one of the technical problems in the prior art. To this end, the present invention provides a power supply track adapter, which is not prone to circuit breakage between the power supply track adapter and the power supply track body when plugging or pulling an electrical appliance plug.
[0005] According to an embodiment of the present invention, the power supply track adapter includes a base, a rotating base, a power extraction module, and a locking mechanism. The base is provided with a track guide block; the rotating base is rotatably arranged on the base and can be rotated to a power extraction position and a power-off position, and the rotating base is provided with a power extraction guide block; the power extraction module is arranged on the rotating base, and the power extraction module includes a first conductive component and a second conductive component, the first conductive component is provided with a first pin slot and a first power extraction part, the second conductive component is provided with a second pin slot and a second power extraction part, and the first power extraction part and the second power extraction part extend from opposite sides of the power extraction guide block; the locking mechanism is arranged between the base and the rotating base and can lock or unlock the position of the rotating base relative to the base.
[0006] According to the embodiments of the present invention, at least the following beneficial effects are achieved: when the power supply track adapter is installed in the power supply track body for use, the rotating seat is rotated to the power-taking position, and the position of the rotating seat relative to the base is locked by the locking mechanism. When the electrical plug is plugged in or out of the first pin slot and the second pin slot, or when the electrical plug connected to the power taking module is pulled and moved, the locking mechanism locks the position of the rotating seat relative to the base, that is, the rotating seat can be locked in the power-taking position, so that the power supply track adapter can stably maintain conduction with the power supply track body to avoid short circuit; when the power supply track adapter needs to be removed, the locking mechanism can be unlocked, the rotating seat can be rotated to the power-off position, and the power supply track adapter can be removed; the above-mentioned power supply track adapter is not prone to short circuit between the power supply track adapter and the power supply track body when plugging in or moving the electrical plug, and the user experience is better.
[0007] According to some embodiments of the present invention, the locking mechanism includes a first limit block, a second limit block and a stop block, the stop block is arranged on the base, the first limit block and the second limit block are arranged on the rotating seat and rotate synchronously with the rotating seat, the first limit block is movably arranged on the rotating seat and has a stop position and an avoidance position, the first limit block is at the stop position, and a block limiting space for limiting the stop block is formed between the first limit block and the second limit block; when the first limit block is in the avoidance position, the first limit block moves away from the position blocking the stop block; when the rotating seat is in the power-taking position, the stop block is located in the block limiting space.
[0008] According to some embodiments of the present invention, the locking mechanism also includes an elastic member, the first limit block is arranged on the rotating seat for radial sliding along the rotation axis of the rotating seat, the first limit block has an extension portion, the extension portion extends outside the rotating seat, and the elastic member is arranged between the first limit block and the rotating seat and is used to make the first limit block have a tendency to move toward the stop position.
[0009] According to some embodiments of the present invention, the protruding portion is a button and extends relative to the outer peripheral side wall of the rotating seat, and the distance between the first limit block and the rotation axis of the rotating seat when the first limit block is in the stop position is greater than the distance between the first limit block and the rotation axis of the rotating seat when the first limit block is in the avoidance position.
[0010] According to some embodiments of the present invention, the rotating seat is provided with a sliding groove radially along its rotation axis, the first limit block is slidably provided in the sliding groove, the outer end of the sliding groove is provided with an opening, and the protruding portion is passed through the outer end opening of the sliding groove.
[0011] According to some embodiments of the present invention, the first limiting block is provided with an embedding hole, the elastic member is located in the embedding hole, one end of the elastic member abuts against the bottom of the embedding hole, the hole wall of the embedding hole is provided with a clearance notch, the rotating seat is provided with an abutting portion, the abutting portion is passed through the clearance notch and is located in the embedding hole, and the abutting portion abuts against the other end of the elastic member.
[0012] According to some embodiments of the present invention, the first limit block and / or the stop block is provided with a guide surface, and when the rotating seat rotates from the power-off position toward the power-receiving position, the stop block can push the first limit block to slide from the stop position to the avoidance position through the guide surface.
[0013] According to some embodiments of the present invention, the rotating seat is provided with a third limit block, the second limit block is opposite to the third limit block along the circumferential direction of the rotation axis of the rotating seat, and the stop block and the first limit block are located between the second limit block and the third limit block in the circumferential direction of the rotation axis of the rotating seat.
[0014] According to some embodiments of the present utility model, the track guide block is provided with a accommodating groove, the rotating seat is in the power-taking position, and the first power-taking part and the second power-taking part are located outside the accommodating groove; the rotating seat is in the power-off position, and the first power-taking part and the second power-taking part are located inside the accommodating groove.
[0015] According to some embodiments of the present invention, the first conductive component includes a first conductive sheet, a second conductive structure, a swinging conductive sheet and a swinging driver, the first conductive sheet is provided with the first pin slot, the second conductive structure is provided with the first power extraction part, the swinging conductive sheet is rotatably connected to the first conductive sheet and can swing to contact or separate from the second conductive structure, and the swinging driver is used to drive the swinging conductive sheet to swing.
[0016] Additional aspects and advantages of the present invention will be given in part in the following description and will become apparent from the following description or learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments in conjunction with the following drawings, in which:
[0018] Figure 1 This is a three-dimensional schematic diagram of the power supply track adapter according to an embodiment of the present invention in the power-off position;
[0019] Figure 2 For the embodiment of the utility model Figure 1Schematic cross-sectional view along the AA direction;
[0020] Figure 3 For the embodiment of the utility model Figure 1 Schematic cross-sectional view along direction BB;
[0021] Figure 4 This is a three-dimensional schematic diagram of the power supply track adapter according to an embodiment of the utility model in the power supply position;
[0022] Figure 5 For the embodiment of the utility model Figure 4 Schematic cross-sectional view along CC direction;
[0023] Figure 6 For the embodiment of the utility model Figure 4 Schematic cross-sectional view along DD direction;
[0024] Figure 7 This is an exploded schematic diagram of a power supply track adapter according to an embodiment of the present invention.
[0025] Reference numerals:
[0026] Base 100, track guide block 110, accommodating groove 111, bottom box 120, pressing ring 130, light ring 140;
[0027] Rotating seat 200, power guide block 210, slide groove 220, abutment portion 230, third limit block 240, top cover 250, middle cover 260, protective door 261, light-transmitting ring 270, connecting frame 280, lower frame 290;
[0028] Power extraction module 300, first conductive component 310, first pin slot 311, first power extraction portion 312, first conductive sheet 313, second conductive structure 314, swing conductive sheet 315, swing driver 316, second conductive component 320, second pin slot 321, second power extraction portion 322, third conductive sheet 323, fourth conductive structure 324, grounding conductive structure 330;
[0029] Locking mechanism 400 , block accommodation position 401 , first limiting block 410 , extension portion 411 , mounting hole 412 , second limiting block 420 , stop block 430 , elastic member 440 , guide surface 450 . DETAILED DESCRIPTION
[0030] The following describes embodiments of the present invention in detail. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention.
[0031] In the description of the present invention, it should be understood that descriptions involving orientation, such as the orientation or positional relationship indicated by up, down, etc., are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0032] In the description of this utility model, "a plurality" means more than two. The use of "first" or "second" is solely for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance, or implicitly indicating the number of technical features indicated, or implicitly indicating the order of the technical features indicated.
[0033] In the description of the present invention, unless otherwise clearly defined, terms such as setting, installing, and connecting should be understood in a broad sense, and technicians in the relevant technical field can reasonably determine the specific meanings of the above terms in the present invention based on the specific content of the technical solution.
[0034] When using the power supply track adapter, insert the track guide block and the power supply guide block into the slide and slide them to the appropriate position. Then rotate the rotating seat to the power supply position, so that the first power supply part and the second power supply part on both sides of the power supply guide block rotate to the position of contacting different conductive strips in the slide, respectively, to complete the power supply. The first pin slot and the second pin slot are used for plugging in the pins of the electrical plug to achieve power supply to the electrical appliance. When the user plugs in or out the electrical plug, or when the user pulls and moves the electrical plug, the current power supply track adapter sometimes has a short circuit between the power supply track adapter and the power supply track body, affecting normal use.
[0035] Reference Figures 1 to 7 , is a power supply track adapter according to an embodiment of the present invention, comprising a base 100, a rotating base 200, a power extraction module 300, and a locking mechanism 400. The base 100 is provided with a track guide block 110; the rotating base 200 is rotatably mounted on the base 100 and can be rotated to a power-on position and a power-off position, and the rotating base 200 is provided with a power extraction guide block 210; the power extraction module 300 is mounted on the rotating base 200, and includes a first conductive component 310 and a second conductive component 320. The first conductive component 310 is provided with a first pin slot 311 and a first power extraction portion 312, and the second conductive component 320 is provided with a second pin slot 321 and a second power extraction portion 322. The first power extraction portion 312 and the second power extraction portion 322 extend from opposite sides of the power extraction guide block 210; the locking mechanism 400 is disposed between the base 100 and the rotating base 200 and can lock or unlock the position of the rotating base 200 relative to the base 100.
[0036] Before installing the power rail adapter, the rotating base 200 is in the power-off position relative to the base 100. When the power rail adapter is installed on the power rail body, the rail guide block 110 and the power extraction guide block 210 are inserted into the chute 220 and slide into the appropriate position. The user then rotates the rotating base 200 to the power extraction position, so that the first power extraction portion 312 and the second power extraction portion 322 on both sides of the power extraction guide block 210 respectively abut different conductive bars in the chute 220, completing power extraction.
[0037] When the power supply track adapter is installed in the power supply track body for use, the rotating seat 200 is rotated to the power-taking position, and the position of the rotating seat 200 relative to the base 100 is locked by the locking mechanism 400. When the electrical plug is plugged in or out of the first pin slot 311 and the second pin slot 321, or when the electrical plug connected to the power taking module 300 is pulled and moved, the locking mechanism 400 locks the position of the rotating seat 200 relative to the base 100, that is, the rotating seat 200 can be locked in the power-taking position, so that the power supply track adapter can stably maintain conduction with the power supply track body to avoid short circuit; when the power supply track adapter needs to be removed, the locking mechanism 400 is unlocked and the rotating seat 200 can be rotated to the power-off position and the power supply track adapter can be removed; the above-mentioned power supply track adapter is not prone to short circuit between the power supply track adapter and the power supply track body when plugging in or moving the electrical plug, and the user experience is better.
[0038] Specifically, the base 100 is provided with a circular through hole in the vertical direction, and the rotating base 200 is provided through the circular through hole so as to be rotatable relative to the base 100. It is understood that in other embodiments, the base 100 may be provided with a rotating shaft and the rotating base 200 may be provided with a rotating shaft hole to achieve a rotational connection between the two.
[0039] In an embodiment, the locking mechanism 400 includes a first limit block 410, a second limit block 420 and a stop block 430, the stop block 430 is arranged on the base 100, the first limit block 410 and the second limit block 420 are arranged on the rotating seat 200 and rotate synchronously with the rotating seat 200, the first limit block 410 is movably arranged on the rotating seat 200 and has a stop position and an avoidance position, the first limit block 410 is in the stop position, and a block limit space 401 for limiting the stop block 430 is formed between the first limit block 410 and the second limit block 420; when the first limit block 410 is in the avoidance position, the first limit block 410 moves away from the position blocking the stop block 430; when the rotating seat 200 is in the power-taking position, the stop block 430 is located in the block limit space 401.
[0040] When the rotating base 200 is in the power-off position, the stop block 430 is not in the stop block limit space 401, and the rotating base 200 can rotate freely relative to the base 100, facilitating the installation and removal of the power supply track adapter. When the rotating base 200 rotates from the power-off position to the power-on position, the first limit block 410 first moves from the stop position to the avoidance position and then returns to the avoidance position. At this time, the first limit block 410 and the second limit block 420 are located on both sides of the stop block 430, limiting the position of the stop block 430, thereby locking the position of the rotating base 200 relative to the base 100. During this period, when plugging or unplugging an electrical plug or pulling and moving an electrical plug, the locking mechanism 400 ensures that the rotating base 200 remains in contact with the conductive strips in the power supply track body, thereby preventing a short circuit.
[0041] When the rotating base 200 needs to be rotated from the power-on position to the power-off position, the first limit block 410 is first moved from the stop position to the avoidance position, and then the rotating base 200 is reset and rotated so that the stop block 430 can be disengaged from the block limit space 401, thereby unlocking the position of the rotating base 200 relative to the base 100. The above structure achieves locking or unlocking the position of the rotating base 200 relative to the base 100, has a simple structure, and has a good performance.
[0042] Specifically, the first limiting block 410 is fixedly disposed on the rotating base 200 . The stopping block 430 is fixedly disposed on the base 100 .
[0043] In an embodiment, the locking mechanism 400 further includes an elastic member 440. A first stopper 410 is radially slidably disposed on the rotating base 200 along the rotation axis of the rotating base 200. The first stopper 410 has an extension 411 extending beyond the rotating base 200. The elastic member 440 is disposed between the first stopper 410 and the rotating base 200 and is configured to cause the first stopper 410 to move toward a stop position. The elastic member 440 is configured to normally position the first stopper 410 in the stop position, thereby locking the rotating base 200 relative to the base 100. When the first stopper 410 needs to be moved, the user can manually move the first stopper 410 via the extension 411, causing the first stopper 410 to slide from the stop position to the avoidance position, thereby unlocking the rotating base 200 relative to the base 100. The rotating base 200 can then be rotated from the power-on position to the power-off position. The power rail adapter can then be removed.
[0044] In this embodiment, the extension 411 is a button that extends relative to the outer peripheral sidewall of the rotating base 200. When the first limit block 410 is in the stop position, the distance between the first limit block 410 and the rotation axis of the rotating base 200 is greater than the distance between the first limit block 410 and the rotation axis of the rotating base 200 when the first limit block 410 is in the avoidance position. The extension 411 is a button that a user can press to cause the first limit block 410 to slide and retract radially along the rotation axis of the rotating base 200, thereby sliding the first limit block 410 from the stop position to the avoidance position. When the extension 411 is released, the first limit block 410 automatically slides out and returns to the stop position under the action of the elastic member 440.
[0045] It is conceivable that in other embodiments, the extension portion 411 can also be other structures. For example, the extension portion 411 is a dial button, and the extension portion 411 extends relative to the end face of the rotating seat 200. By toggling the dial button, the first limit block 410 can also slide to switch the stop position or the avoidance position.
[0046] In this embodiment, the rotating base 200 is provided with a slide groove 220 radially along its rotation axis. The first stopper 410 is slidably disposed in the slide groove 220. The outer end of the slide groove 220 is open, and the extension portion 411 is disposed through the outer end opening of the slide groove 220. The above structure enables the first stopper 410 to slide within a certain range relative to the rotating base 200, and forms the extension portion 411 extending from the rotating base 200. The structure is simple and easy to implement.
[0047] It is conceivable that the first limit block 410 can also be made to slide relative to the rotating seat 200 through other structures. For example, the rotating seat 200 is provided with a guide column along the radial direction of its rotation axis, and the first limit block 410 is provided with a guide hole. The guide column is passed through the guide hole, so that the first limit block 410 can slide relative to the rotating seat 200 along the radial direction of its rotation axis.
[0048] In the embodiment, the first limiting block 410 is provided with an embedding hole 412, an elastic member 440 is located in the embedding hole 412, one end of the elastic member 440 abuts against the bottom of the embedding hole 412, and a clearance notch is provided in the wall of the embedding hole 412. The rotating seat 200 is provided with an abutting portion 230, which passes through the clearance notch and is located in the embedding hole 412, and abuts against the other end of the elastic member 440. By placing the elastic member 440 in the embedding hole 412 of the first limiting block 410, and the rotating seat 200 extending into the embedding hole 412 via the abutting portion 230 to abut against the other end of the elastic member 440, the elastic member 440 can be guided by the wall of the embedding hole 412, fully utilizing the elastic force of the elastic member 440. In addition, the structure of the rotating seat 200, the first limiting block 410, and the elastic member 440 is relatively compact, which is conducive to the miniaturization of the power supply track adapter.
[0049] Specifically, the elastic member 440 is a spring, one end of which abuts the bottom of the mounting hole 412, and the other end of which abuts the abutment portion 230 of the rotating base 200. It is conceivable that the elastic member 440 may also be a spring or a silicone block, with both ends of the spring abutting the abutment portion 230 and the bottom of the mounting hole 412, respectively.
[0050] In the embodiment, the first limit block 410 and the stop block 430 are provided with a guide surface 450. When the rotating seat 200 rotates from the power-off position to the power-on position, the stop block 430 can push the first limit block 410 to slide from the stop position to the avoidance position through the guide surface 450. The guide surface 450 is provided so that when the rotating seat 200 rotates from the power-off position to the power-on position relative to the base 100, the stop block 430 can automatically push the first limit block 410 to move to the avoidance position without the user having to press the extension portion 411. After the stop block 430 passes over the first limit block 410, the first limit block 410 is automatically reset under the action of the elastic member 440, so that the first limit block 410 automatically and jointly with the second limit block 420 limit the stop block 430, thereby completing the locking position of the rotating seat 200 relative to the base 100. When the rotating base 200 needs to be rotated from the power-on position to the power-off position, the protruding portion 411 needs to be pressed, so that the process of rotating the power supply track adapter from the power-off position to the power-on position is relatively simplified, reducing the difficulty of use.
[0051] Specifically, both the first limit block 410 and the stop block 430 are provided with a guide surface 450. When the first limit block 410 contacts the stop block 430, the guide surface 450 is inclined tangentially relative to the rotational direction of the first limit block 410. It is conceivable that the guide surface 450 may be provided on the first limit block 410 or the stop block 430, and the guide surface 450 may also be a curved surface, etc.
[0052] In the embodiment, the rotating base 200 is provided with a third limit block 240, the second limit block 420 is opposite to the third limit block 240 along the circumferential direction of the rotation axis of the rotating base 200, and the stop block 430 and the first limit block 410 are located between the second limit block 420 and the third limit block 240 in the circumferential direction of the rotation axis of the rotating base 200. With the third limit block 240, when the rotating base 200 rotates, the stop block 430 is always located between the corresponding second limit block 420 and the third limit block 240 along the circumferential direction of the rotation axis, so that the rotation angle of the rotating base 200 has a travel range. When the rotating base 200 rotates to the two ends of the travel range, the rotating base 200 is respectively located in the power-on position and the power-off position, which is convenient to use.
[0053] It is conceivable that in other embodiments, the first limit block 410 can also be connected to the rotating base 200 by other movable means. For example, the first limit block 410 is pivotally connected to the rotating base 200, and one end of the first limit block 410 can switch the stop position or the avoidance position by swinging to stop or offset the stop block 430.
[0054] It is conceivable that in other embodiments, the locking mechanism 400 can also be other structures. For example, the locking mechanism 400 includes a screw and a threaded through hole. The rotating seat 200 is provided with a threaded through hole. The screw is threadedly connected to the threaded through hole. When the screw is tightened, one end of the screw abuts against the base 100, thereby locking the position of the rotating seat 200 relative to the base 100; when the screw is loosened, the rotating seat 200 can rotate relative to the base 100.
[0055] In an embodiment, the track guide block 110 is provided with a receiving groove 111. When the rotating seat 200 is in the power-collecting position, the first power-collecting part 312 and the second power-collecting part 322 are located outside the receiving groove 111; when the rotating seat 200 is in the power-off position, the first power-collecting part 312 and the second power-collecting part 322 are located inside the receiving groove 111. The receiving groove 111 is provided. When the rotating seat 200 is in the power-off position, the receiving groove 111 can play a certain protective role for the first power-collecting part 312 and the second power-collecting part 322, thereby avoiding contact wear to the first power-collecting part 312 and the second power-collecting part 322. When the rotating seat 200 is in the power-collecting position, the first power-collecting part 312 and the second power-collecting part 322 are located outside the receiving groove 111, and do not affect the contact of the power-collecting template with the conductive strip in the slide groove 220 of the power supply track body.
[0056] The first conductive assembly 310 includes a first conductive sheet 313, a second conductive structure 314, a swinging conductive sheet 315, and a swinging actuator 316. The first conductive sheet 313 is provided with a first pin slot 311, and the second conductive structure 314 is provided with a first power extraction portion 312. The swinging conductive sheet 315 is rotatably connected to the first conductive sheet 313 and can swing into contact with or separate from the second conductive structure 314. The swinging actuator 316 is used to drive the swinging conductive sheet 315 to swing. The swinging actuator 316 drives the swinging conductive sheet 315 to swing. When the swinging conductive sheet 315 contacts the second conductive structure 314, the first conductive sheet 313 and the second conductive structure 314 are electrically connected through the swinging conductive sheet 315, and the power supply track adapter is now in a powered state. When the swinging conductive sheet 315 separates from the second conductive structure 314, the first conductive sheet 313 and the second conductive structure 314 are disconnected, and the power supply track adapter is now in a disconnected state. When not in use, the user can directly disconnect the power supply track adapter by swinging the driver 316 to avoid the risk of power supply track adapter leakage and improve the safety of use. When in use, the power supply track adapter can be powered on.
[0057] Specifically, the first conductive component 310 is an L-pole, and the second conductive component 320 is an N-pole. The swing actuator 316 includes a push button and a transmission block. The transmission block is pivotally connected to the rotating base 200. The push button is slidably connected to the rotating base 200. The push button contacts one end of the transmission block, and the other end of the transmission block abuts against a swinging conductive piece 315. The swinging conductive piece 315 is pivotally connected to the rotating base 200 and maintains contact with the first conductive piece 313. When the push button slides, the transmission block swings, moving the swinging conductive piece 315, causing it to contact or separate from the second conductive structure 314. Specifically, the push button is exposed on the outer circumference of the rotating base 200.
[0058] It is conceivable that the swing driver 316 may also adopt other structures, such as a knob directly connected to the swing conductive piece 315, and the swing conductive piece 315 is driven to rotate when the knob is rotated.
[0059] Specifically, the second conductive structure 314 is a plurality of conductive metal sheets connected to each other. It is understandable that the second conductive structure 314 can also be an integrated conductive metal sheet.
[0060] Specifically, the second conductive component 320 includes a third conductive sheet 323 and a fourth conductive structure 324. The third conductive sheet 323 is provided with a second pin slot 321, and the fourth conductive structure 324 is provided with a second power extraction portion 322. The third conductive sheet 323 is connected to the fourth conductive structure 324. The fourth conductive structure 324 is a plurality of interconnected conductive metal sheets.
[0061] Specifically, the power taking module 300 further includes a grounding conductive structure 330 . The grounding conductive structure 330 is provided with a third pin slot. The grounding conductive structure 330 is a plurality of conductive metal sheets spliced together.
[0062] Specifically, when the rotating seat 200 is in the power-off position, the power guide block 210 is completely located in the receiving groove 111 of the track guide block 110, which facilitates the track guide block 110 to be inserted into the sliding groove 220 of the power supply track body.
[0063] Specifically, the rotating base 200 includes a top cover 250, a middle cover 260, a light-transmitting ring 270, a connecting frame 280, and a lower frame 290. The connecting frame 280 and the lower frame 290 are fixedly connected and rotatably mounted to the base 100. The top cover 250 is mounted on the middle cover 260, the first stopper 410 is slidably mounted on the middle cover 260, the swing actuator 316 is mounted on the middle cover 260, and the light-transmitting ring 270 is fixedly connected below the middle cover 260. The middle cover 260 is located above the base 100, and the power extraction module 300 is located below the middle cover 260. The top cover 250 and the middle cover 260 have clearance holes for the pins of electrical plugs. The power extraction guide block 210 is located on the lower frame 290. A protective door 261 is slidably mounted within the middle cover 260, which can be slid to open and close the clearance holes. The second stopper 420 and the third stopper 240 are connected to the light-transmitting ring 270.
[0064] Specifically, the base 100 includes a bottom box 120, a pressure ring 130 and a light ring 140, the track guide block 110 is located in the bottom box 120, the pressure ring 130 is installed on the bottom box 120 and limits the position of the connecting frame 280, the stop block 430 is set on the pressure ring 130, and the light ring 140 is set on the pressure ring 130 and opposite to the light-transmitting ring 270.
[0065] Throughout this specification, reference to terms such as "one embodiment," "some embodiments," "illustrative embodiments," "examples," "specific examples," or "some examples" means that the specific features, structures, materials, or characteristics described in conjunction with that embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the illustrative use of the above terms does not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
[0066] Although the embodiments of the present invention have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and purpose of the present invention, and that the scope of the present invention is defined by the claims and their equivalents.
Claims
1. A power supply track adapter, characterized in that: include: The base (100) is provided with a track guide block (110); A rotating seat (200) is rotatably arranged on the base (100) and can be rotated to a power-on position and a power-off position, and the rotating seat (200) is provided with a power-on guide block (210); A power extraction module (300) is provided on the rotating seat (200), and the power extraction module (300) includes a first conductive component (310) and a second conductive component (320), wherein the first conductive component (310) is provided with a first pin slot (311) and a first power extraction portion (312), and the second conductive component (320) is provided with a second pin slot (321) and a second power extraction portion (322), and the first power extraction portion (312) and the second power extraction portion (322) extend from opposite sides of the power extraction guide block (210); A locking mechanism (400) is provided between the base (100) and the rotating base (200) and is capable of locking or unlocking the position of the rotating base (200) relative to the base (100).
2. The power supply track adapter according to claim 1, characterized in that: The locking mechanism (400) comprises a first limiting block (410), a second limiting block (420) and a stop block (430), wherein the stop block (430) is arranged on the base (100), the first limiting block (410) and the second limiting block (420) are arranged on the rotating seat (200) and rotate synchronously with the rotating seat (200), the first limiting block (410) is movably arranged on the rotating seat (200) and has a stop position and an avoidance position, and the first limiting block (410) is arranged on the rotating seat (200) and has a stop position and an avoidance position. When the block (410) is in the stopping position, a block limiting space (401) for limiting the stop block (430) is formed between the first limiting block (410) and the second limiting block (420); when the first limiting block (410) is in the avoidance position, the first limiting block (410) moves away from the position blocking the stop block (430); when the rotating seat (200) is in the power-taking position, the stop block (430) is located in the block limiting space (401).
3. The power supply track adapter according to claim 2, characterized in that: The locking mechanism (400) further includes an elastic member (440), the first limiting block (410) is arranged on the rotating seat (200) in a radially sliding manner along the rotation axis of the rotating seat (200), the first limiting block (410) has a protruding portion (411), and the protruding portion (411) protrudes outside the rotating seat (200), and the elastic member (440) is arranged between the first limiting block (410) and the rotating seat (200) and is used to make the first limiting block (410) have a tendency to move toward the stop position.
4. The power supply track adapter according to claim 3, characterized in that: The protruding portion (411) is a button and protrudes relative to the outer peripheral side wall of the rotating seat (200); the distance between the first limiting block (410) and the rotation axis of the rotating seat (200) when the first limiting block (410) is in the stopping position is greater than the distance between the first limiting block (410) and the rotation axis of the rotating seat (200) when the first limiting block (410) is in the avoiding position.
5. The power supply track adapter according to claim 3, characterized in that: The rotating seat (200) is provided with a slide groove (220) along the radial direction of its rotation axis, the first limit block (410) is slidably provided in the slide groove (220), the outer end of the slide groove (220) is provided with an opening, and the protruding portion (411) is passed through the outer end opening of the slide groove (220).
6. The power supply track adapter according to claim 3, characterized in that: The first limiting block (410) is provided with an embedding hole (412), the elastic member (440) is located in the embedding hole (412), one end of the elastic member (440) abuts against the bottom of the embedding hole (412), the hole wall of the embedding hole (412) is provided with a clearance notch, the rotating seat (200) is provided with an abutting portion (230), the abutting portion (230) is passed through the clearance notch and is located in the embedding hole (412), and the abutting portion (230) abuts against the other end of the elastic member (440).
7. The power supply track adapter according to claim 3, characterized in that: The first limit block (410) and / or the stop block (430) are provided with a guide surface (450); when the rotating seat (200) rotates from the power-off position toward the power-on position, the stop block (430) can push the first limit block (410) through the guide surface (450) to slide from the stop position to the avoidance position.
8. The power supply track adapter according to claim 2, characterized in that: The rotating seat (200) is provided with a third limiting block (240), the second limiting block (420) is opposite to the third limiting block (240) along the circumferential direction of the rotating axis of the rotating seat (200), and the stop block (430) and the first limiting block (410) are located between the second limiting block (420) and the third limiting block (240) in the circumferential direction of the rotating axis of the rotating seat (200).
9. The power supply track adapter according to claim 1, characterized in that: The track guide block (110) is provided with a receiving groove (111); when the rotating seat (200) is in the power-taking position, the first power-taking part (312) and the second power-taking part (322) are located outside the receiving groove (111); when the rotating seat (200) is in the power-off position, the first power-taking part (312) and the second power-taking part (322) are located inside the receiving groove (111).
10. The power rail adapter according to claim 1, characterized in that: The first conductive component (310) comprises a first conductive sheet (313), a second conductive structure (314), a swinging conductive sheet (315) and a swinging driver (316); the first conductive sheet (313) is provided with the first pin slot (311); the second conductive structure (314) is provided with the first power extraction portion (312); the swinging conductive sheet (315) is rotatably connected to the first conductive sheet (313) and can swing to contact or separate from the second conductive structure (314); and the swinging driver (316) is used to drive the swinging conductive sheet (315) to swing.