High-power invisible folding charging structure
By employing a fan-shaped conductive connecting block and a V-shaped connecting groove design in the charger, the contact area is increased, and the pins are stabilized using a limiting groove and blocking block structure. This solves the problem of small conductive contact surface and enables high-power charging and convenient plugging.
Patent Information
- Application Number
- CN202423143262.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-19
AI Technical Summary
Existing chargers have small contact surfaces at the conductive points, resulting in low current transmission efficiency and an inability to achieve high-power charging.
The conductive connecting block with a fan-shaped cross-section and a V-shaped connecting groove with rounded corners are designed to increase the contact area between the conductive connecting block and the bending part. The pin rotation angle is limited by the limiting groove and blocking block structure to ensure stable insertion.
It improves current transmission efficiency, achieves high-power charging, and the plug is easy to plug in and use.
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Figure CN223638756U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of charger, concretely is high -power folding charging structure of invisible. BACKGROUND
[0002] At present, the charger product is more popular and has many types, and most of the hardware pins of the charger adopt folding design, and the hardware pins can be manually broken or stored according to the use condition, and due to the convenient storage, the folding charger of this type is applied in a large range. When the charger is used, the hardware pin stored in the charger needs to be opened, so that the hardware pin can be inserted on the charging seat.
[0003] As provided in the announcement No. CN115149302A, a kind of invisible folding charger, it relates to electronic product accessory technical field, it includes charger body and hardware pin, the elastic button, rotating part and hardware conductive spring piece are arranged on the charger body, the elastic button is based on external pressing force drive rotating part rotation, with indirectly drive hardware pin to extend charger body interior, the rotating part rotation connects on the bottom plate in charger body, and it is connected with hardware pin, and for realizing the rotation of hardware pin relative to the bottom plate 0 ° To 90 °, the hardware conductive spring piece is set on bottom plate and is adapted with rotating part, for limiting the position after the rotation of hardware pin to 90 °.The present application has the effect of improving service life, convenient to use.
[0004] But the above-mentioned technology in actual use, the contact surface of conductive position is small, current transmission efficiency is reduced, cannot achieve the effect of high-power charging. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing high -power folding charging structure of invisible, to solve the problems raised in the above background technique.
[0006] To achieve the above object, the utility model provides the following technical scheme: high -power folding charging structure of invisible, it includes:
[0007] Top cover and bottom cover, and top cover is connected in the top of bottom cover;
[0008] Conductive metal sheet is arranged between top cover and bottom cover, the conductive metal sheet includes jaw connecting part and bending part, the bending part is U type structure, and the inner wall of bending part forms electric connection space;
[0009] The limiting rotating seat arranged between the top cover and the bottom cover comprises a central rotating shaft arranged between the top cover and the bottom cover, both ends of the central rotating shaft are fixedly connected with rotating blocks respectively, the middle part of the rotating block is fixedly embedded with a plug pin, one end of the central rotating shaft away from the rotating block is fixedly embedded with a conductive rotating shaft electrically connected with the plug pin, one end of the conductive rotating shaft away from the central rotating shaft is fixedly connected with a conductive connecting block, and the conductive connecting block is located in the inner wall of the bending part and closely adheres to the bending part, so as to increase the contact area between the conductive connecting block and the bending part.
[0010] Preferably, the middle part of the conductive metal sheet is provided with a fixing hole, and the top cover and the bottom cover limit the conductive metal sheet between the top cover and the bottom cover.
[0011] Preferably, one end of the top cover and the bottom cover corresponding to the position of the central rotating shaft is fixedly connected with a rotating shaft support seat respectively, and the rotating shaft support seat is rotatably connected to the surface of the central rotating shaft, the rotating shaft support seat is located between the rotating block and the positioning block, the top of the bottom cover corresponding to the position of the positioning block is provided with a limiting groove, and the limiting groove is an eccentric structure, the bottom of the top cover corresponding to the position of the positioning block is fixedly connected with a blocking block, so that the blocking block limits the rotation of the positioning block, the bottom of the top cover corresponding to the position of the conductive connecting block is fixedly connected with a pressing block, and the pressing block is attached to the top of the bending part of the conductive metal sheet, the bottom of the top cover corresponding to the position of the plug pin is provided with a plug pin slot, and the plug pin is movably connected to the inner wall of the plug pin slot.
[0012] Preferably, one end of the conductive rotating shaft away from the rotating block is a regular quadrangular prism structure, the cross section of the conductive connecting block is a 90° sector structure, the top and bottom of the inner wall of the bending part corresponding to the position of the conductive rotating shaft are respectively provided with a limiting groove, and the conductive rotating shaft is rotatably connected to the inner wall of the limiting groove, so that the conductive rotating shaft is positioned when rotating, the top of the inner wall of the bending part corresponding to the position of the conductive connecting block is provided with a first connecting groove, and the conductive connecting block is rotatably connected to the inner wall of the first connecting groove, so that the conductive connecting block is limited in rotation and kept in close contact with the conductive connecting block, and the limiting groove and the first connecting groove are V-shaped structures with smooth corners.
[0013] Preferably, the conductive rotating shaft is a cylindrical structure, and the conductive connecting block is a regular triangular prism structure, the conductive rotating shaft is located outside the bending part, the top of the inner wall of the bending part corresponding to the position of the conductive connecting block is provided with a second connecting groove, and the conductive connecting block is rotatably connected to the inner wall of the second connecting groove, so that the conductive connecting block is limited in rotation and kept in close contact with the conductive connecting block, and the second connecting groove is a V-shaped structure with smooth corners.
[0014] Preferably, the electrically-conductive rotating shaft is in a cylindrical structure, and the electrically-conductive connecting block is in a square prism structure, the bending part is provided with a receiving groove at the top and the bottom of the inner wall corresponding to the position of the electrically-conductive rotating shaft, and the electrically-conductive rotating shaft is rotationally connected to the inner wall of the receiving groove, so as to increase the contact area of the electrically-conductive rotating shaft and the inner wall of the bending part.
[0015] Preferably, the electrically-conductive rotating shaft is located outside the bending part, the electrically-conductive connecting block is in a square prism structure, the bending part is fixedly connected with an electrically-conductive connecting piece at the top of one end corresponding to the position of the electrically-conductive connecting block, and the electrically-conductive connecting piece is tightly attached to one end of the electrically-conductive connecting block, and the bending part and the electrically-conductive connecting piece are integrally formed, so as to increase the contact area of the second connecting groove and the bending part and the electrically-conductive connecting piece.
[0016] Compared with the prior art, the utility model has the advantages that:
[0017] 1、The utility model discloses a high -power invisible folding charging structure, including the electrically -conductive connecting block of the bending part, the electrically -conductive rotating shaft of the bending part, the electrically -conductive connecting piece of the bending part and the electrically -conductive connecting piece of the electrically -conductive connecting block, the electrically -conductive connecting block is the fan -shaped structure of the cross section, and the first connecting groove is the V -shaped structure of the corner smooth, when the electrically -conductive connecting block rotates, the electrically -conductive connecting block fan -shaped one side and the bending part bottom plane contact, and the electrically -conductive connecting block fan -shaped other side and the arc surface contact the inner wall of the bending part, increase the contact area of the electrically -conductive connecting block and the inner wall of the bending part, improve the current transmission efficiency, to realize the purpose of high -power charging.
[0018] 2、The utility model discloses simultaneously still set up the locating block, the limit slot and the block, when the plug is in the plug slot inner wall, the rotation angle is O at this time, and the block will hinder the reverse rotation of the locating block through setting the block, and when the plug rotates 90, will make the plug drive the center pivot and the locating block through the rotating block, namely the locating block will rotate to the inner wall of the limit slot, because the limit slot is eccentric structure, the friction between the locating block and the limit slot gradually increases, until the plug rotates to 90, the plug can not continue to rotate, wherein the friction between the locating block and the limit slot as resistance, make the plug not easy reverse rotation, and the plug is convenient to use for inserting power. ACCURACY OF DRAWINGS
[0019] Figure 1 It is overall structure schematic diagram of high -power invisible folding charging structure of the utility model;
[0020] Figure 2 It is overall structure sectional view of high -power invisible folding charging structure of the utility model;
[0021] Figure 3 It is overall structure explosion drawing of high -power invisible folding charging structure of the utility model;
[0022] Figure 4 It is electrically -conductive metal sheet and limit rotating seat structure schematic diagram of high -power invisible folding charging structure of the utility model;
[0023] Figure 5 It is the exploded view of the conductive metal sheet and the limiting rotating seat structure of the high-power invisible folding charging structure of the utility model;
[0024] Figure 6 It is the structure schematic view of the conductive metal sheet of the utility model embodiment two;
[0025] Figure 7 It is the structure schematic view of the conductive metal sheet and the limiting rotating seat structure of the utility model embodiment two;
[0026] Figure 8 It is the exploded view of the conductive metal sheet and the limiting rotating seat structure of the utility model embodiment two;
[0027] Figure 9 It is the structure schematic view of the conductive metal sheet of the utility model embodiment three;
[0028] Figure 10 It is the exploded view of the conductive metal sheet and the limiting rotating seat structure of the utility model embodiment three;
[0029] Figure 11 It is the structure schematic view of the conductive metal sheet of the utility model embodiment four;
[0030] Figure 12 It is the exploded view of the conductive metal sheet and the limiting rotating seat structure of the utility model embodiment four.
[0031] In the drawing: 1, top cover;2, bottom cover;
[0032] 3, conductive metal sheet;301, jaw connecting part;302, bending part;303, first connecting groove;304, limiting groove;305, second connecting groove;306, fixed hole;307, accommodating groove;308, electrically connected sheet;
[0033] 4, pin;
[0034] 5, limiting rotating seat;501, rotating block;502, center rotating shaft;503, positioning block;504, conductive rotating shaft;505, conductive connecting block;
[0035] 6, rotating shaft support seat;7, limiting groove;8, blocking block;9, pin groove;10, pressing block. DETAILED DESCRIPTION
[0036] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0037] Embodiment one
[0038] Please refer to Figures 1-6 The present application provides a technical scheme: high-power invisible folding charging structure, comprising:
[0039] The top cover 1 is clamped on the top of the bottom cover 2.
[0040] The conductive metal sheet 3 is arranged between the top cover 1 and the bottom cover 2, the conductive metal sheet 3 comprises a clamping jaw connecting part 301 and a bending part 302, the bending part 302 is a U-shaped structure, and the inner wall of the bending part 302 forms an electrical connection space.
[0041] The limiting rotating seat 5 arranged between the top cover 1 and the bottom cover 2 comprises a central rotating shaft 502 rotatably arranged between the top cover 1 and the bottom cover 2, both ends of the central rotating shaft 502 are fixedly installed with rotating blocks 501 respectively, the middle part of the rotating block 501 is fixedly embedded with the plug 4, one end of the central rotating shaft 502 away from the rotating block 501 is fixedly embedded with a conductive rotating shaft 504 electrically connected with the plug 4, one end of the conductive rotating shaft 504 away from the central rotating shaft 502 is fixedly installed with a conductive connecting block 505, and the conductive connecting block 505 is located in the inner wall of the bending part 302 and tightly fits with the bending part 302, so as to increase the contact area between the conductive connecting block 505 and the bending part 302, the middle part of the conductive metal sheet 3 is provided with a fixing hole 306, and the top cover 1 and the bottom cover 2 limit the conductive metal sheet 3 between the top cover 1 and the bottom cover 2 through the fixing hole 306, one end of the top cover 1 and the bottom cover 2 corresponding to the position of the central rotating shaft 502 is fixedly installed with a rotating shaft support seat 6 respectively, and the rotating shaft support seat 6 is rotatably connected to the surface of the central rotating shaft 502, the rotating shaft support seat 6 is located between the rotating block 501 and the positioning block 503, the top of the bottom cover 2 corresponding to the position of the positioning block 503 is provided with a limiting groove 7, and the limiting groove 7 is an eccentric structure, because the limiting groove 7 is an eccentric structure, when the plug 4 is rotated to 90°, there is a large resistance between the positioning block 503 and the limiting groove 7, so that the plug 4 is not easy to rotate reversely, which facilitates the plug 4 to be plugged in for use, the bottom of the top cover 1 corresponding to the position of the positioning block 503 is fixedly installed with a blocking block 8, so as to limit the rotation of the positioning block 503, the bottom of the top cover 1 corresponding to the position of the conductive connecting block 505 is fixedly installed with a pressing block 10, and the pressing block 10 is tightly fitted on the top of the bending part 302 of the conductive metal sheet 3, the bottom of the top cover 1 corresponding to the position of the plug 4 is provided with a plug groove 9, and the plug 4 is movably connected to the inner wall of the plug groove 9, one end of the conductive rotating shaft 504 away from the rotating block 501 is a regular quadrangular prism structure, the cross section of the conductive connecting block 505 is a 90° sector structure, the top and bottom of the inner wall of the bending part 302 corresponding to the position of the conductive rotating shaft 504 are respectively provided with limiting grooves 304, the conductive rotating shaft 504 is rotatably connected to the inner wall of the limiting groove 304, so as to position the rotation angle of the conductive rotating shaft 504 when the conductive rotating shaft 504 rotates, the top of the inner wall of the bending part 302 corresponding to the position of the conductive connecting block 505 is provided with a first connecting groove 303, and the conductive connecting block 505 is rotatably connected to the inner wall of the first connecting groove 303, so as to limit the rotation angle of the conductive connecting block 505 when the conductive connecting block 505 rotates while keeping the tight fitting state with the conductive connecting block 505, the limiting groove 304 and the first connecting groove 303 are both V-shaped structures with smooth corners.
[0042] Working principle: in use, the utility model is through setting up the pivot support 6, and the pivot support 6 is located between the rotating block 501 and the positioning block 503, the central pivot 502 can be stably connected between the top cover 1 and the bottom cover 2, by setting the positioning block 503, the limiting groove 7 and the blocking block 8, when the pin 4 is in the inner wall of the pin slot 9, the rotation angle is O °, and by setting the blocking block 8, the reverse rotation of the positioning block 503 is hindered, and when the pin 4 rotates 90 °, the pin 4 drives the central pivot 502 and the positioning block 503 to rotate through the rotating block 501, that is, the positioning block 503 rotates to the inner wall of the limiting groove 7, since the limiting groove 7 is eccentric structure, the friction between the positioning block 503 and the limiting groove 7 gradually increases, until the pin 4 rotates to 90 °, the pin 4 cannot continue to rotate, wherein the friction between the positioning block 503 and the limiting groove 7 as resistance, the pin 4 is not easy to reverse rotation, the pin 4 is conveniently plugged in and used;
[0043] By setting the conductive shaft 504 of the positive four prism structure and the conductive connecting block 505 of the fan-shaped structure, the limiting groove 304 and the first connecting groove 303 are V-shaped structures with smooth corners, so that the conductive shaft 504 is clamped between the two limiting grooves 304 in the initial state, and when the conductive shaft 504 rotates 90 °, it is clamped again between the two limiting grooves 304 to play a positioning role, and when the conductive connecting block 505 rotates, it also plays a positioning role under the action of the first connecting groove 303, and one side of the conductive connecting block 505 is in contact with the bottom plane of the bending part 302, and the other side of the conductive connecting block 505 and the arc surface are in contact with the inner wall of the bending part 302, which increases the contact area of the conductive connecting block 505 and the inner wall of the bending part 302, improves the current transmission efficiency, and realizes the purpose of high-power charging.
[0044] Wherein, in order to prevent the bending part 302 from over-deformation when the conductive connecting block 505 rotates, the pressing block 10 is arranged to limit the bending part 302, so as to prevent the elastic attenuation caused by over-deformation of the bending part 302.
[0045] Example two
[0046] Please refer to Figures 7-8Different from the embodiment one, the conductive rotating shaft 504 is a cylindrical structure, and the conductive connecting block 505 is a right triangular prism structure, the conductive rotating shaft 504 is located outside the bending part 302, the bending part 302 is provided with a second connecting groove 305 at the top of the inner wall corresponding to the position of the conductive connecting block 505, and the conductive connecting block 505 is rotationally connected to the inner wall of the second connecting groove 305, so that the conductive connecting block 505 is limited in rotation angle while keeping close contact with the conductive connecting block 505, and the second connecting groove 305 is a V-shaped structure with smooth corners.
[0047] In use, the conductive rotating shaft 504 is not in the inner wall of the bending part 302, and the conductive connecting block 505 is a right triangular prism structure, and the second connecting groove 305 is a V-shaped structure with smooth corners, which makes the conductive connecting block 505 cooperate with the second connecting groove 305 to achieve the function of angle positioning, and no matter the rotation angle of the conductive connecting block 505 is 0° or 90°, the conductive connecting block 505 always has a complete surface in contact with the inner wall of the bottom of the bending part 302, and another surface in contact with the inner wall of the bending part 302, which increases the contact area between the conductive connecting block 505 and the bending part 302, improves the current transmission efficiency, and achieves the purpose of high-power charging.
[0048] Embodiment three
[0049] Please refer to Figures 9-10 Different from the embodiment one, the conductive rotating shaft 504 is a cylindrical structure, and the conductive connecting block 505 is a right quadrangular prism structure, the bending part 302 is provided with a containing groove 307 at the top and bottom of the inner wall corresponding to the position of the conductive rotating shaft 504, and the conductive rotating shaft 504 is rotationally connected to the inner wall of the containing groove 307, so as to increase the contact area between the conductive rotating shaft 504 and the inner wall of the bending part 302.
[0050] In use, the conductive connecting block 505 is a right quadrangular prism structure, and the conductive rotating shaft 504 is a cylindrical structure, wherein the conductive rotating shaft 504 and the conductive connecting block 505 are 0° and rotate 90°, the conductive rotating shaft 504 is always in contact with the inner wall of the containing groove 307, and the upper and lower ends of the conductive connecting block 505 are always in contact with the inner wall of the bending part 302, which increases the contact area between the conductive connecting block 505 and the bending part 302, improves the current transmission efficiency, and achieves the purpose of high-power charging.
[0051] Embodiment four
[0052] Please refer to Figures 11-12Different from the embodiment one, the conductive rotating shaft 504 is located outside the bending part 302, the conductive connecting block 505 is a regular quadrangular prism structure, the top of one end of the bending part 302 corresponding to the position of the conductive connecting block 505 is fixedly installed with the electric connecting sheet 308, and the electric connecting sheet 308 is closely attached to one end of the conductive connecting block 505, the bending part 302 and the electric connecting sheet 308 are integrally formed, so as to increase the contact area between the second connecting groove 305 and the bending part 302 and the electric connecting sheet 308;
[0053] In use, the conductive rotating shaft 504 is not in the inner wall of the bending part 302, the conductive connecting block 505 is a regular quadrangular prism structure, and the electric connecting sheet 308 is arranged, so that the upper and lower ends of the conductive connecting block 505 are always in contact with the inner wall of the bending part 302 when the conductive connecting block 505 is 0° and rotates 90°, and one end surface of the conductive connecting block 505 is always attached to the electric connecting sheet 308, the bending part 302 and the electric connecting sheet 308 are integrally formed, the contact area between the conductive connecting block 505 and the bending part 302 is increased, the current transmission efficiency is improved, and the purpose of high-power charging is achieved.
[0054] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprising", "including", or any other variant thereof are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements recited, but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0055] Although the embodiments of the present application have been shown and described, it should be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A high power stealth folding charging structure, characterized by: The utility model relates to a kind of electrically conductive metal sheet and its limiting rotation seat, including: Top cover (1) and bottom cover (2), and top cover (1) is clamped in the top of bottom cover (2); Electrically conductive metal sheet (3) is arranged between top cover (1) and bottom cover (2), and the electrically conductive metal sheet (3) includes claw connection part (301) and bending part (302), the bending part (302) is U-shaped structure, and the inner wall of bending part (302) forms electrically connected space; Limiting rotation seat (5) is arranged between top cover (1) and bottom cover (2), and the limiting rotation seat (5) includes center rotating shaft (502) rotationally arranged between top cover (1) and bottom cover (2), both ends of the center rotating shaft (502) are fixedly connected with rotating block (501) respectively, the middle part of the rotating block (501) is fixedly embedded with plug pin (4), the end of the center rotating shaft (502) away from rotating block (501) position is fixedly embedded with electrically conductive rotating shaft (504) electrically connected with plug pin (4), the end of the electrically conductive rotating shaft (504) away from center rotating shaft (502) position is fixedly connected with electrically conductive connecting block (505), and electrically conductive connecting block (505) is located in the inner wall of bending part (302) and closely adheres with bending part (302), to increase the contact area between electrically conductive connecting block (505) and bending part (302).
2. The high power stealth folding charging structure of claim 1, wherein: The middle part of the electrically conductive metal sheet (3) is provided with fixed hole (306), and top cover (1) and bottom cover (2) limit electrically conductive metal sheet (3) between top cover (1) and bottom cover (2) position through fixed hole (306).
3. The high power stealth folded charging structure of claim 1, wherein: The end of the top cover (1) and bottom cover (2) corresponding center rotating shaft (502) position is fixedly connected with rotating shaft support seat (6) respectively, and rotating shaft support seat (6) is rotationally connected on the surface of center rotating shaft (502), the rotating shaft support seat (6) is located between rotating block (501) and positioning block (503) position, the top of the bottom cover (2) corresponding positioning block (503) position is provided with limiting groove (7), and limiting groove (7) is eccentric structure, the bottom of the top cover (1) corresponding positioning block (503) position is fixedly connected with blocking block (8), so that blocking block (8) limits the rotation of positioning block (503), the bottom of the top cover (1) corresponding electrically conductive connecting block (505) position is fixedly connected with pressing block (10), and pressing block (10) is adhered on the top of bending part (302) position of electrically conductive metal sheet (3), the bottom of the top cover (1) corresponding plug pin (4) position is provided with plug pin slot (9), and plug pin (4) is movably connected on the inner wall of plug pin slot (9).
4. The high power stealth folded charging structure of claim 1, wherein: The conductive rotating shaft (504) is a positive quadrangular prism structure away from the rotating block (501) position, the cross section of the conductive connecting block (505) is a 90° sector structure, the top and bottom of the inner wall corresponding to the position of the conductive rotating shaft (504) are respectively provided with a limiting groove (304), and the conductive rotating shaft (504) is rotatably connected to the inner wall of the limiting groove (304) to position the rotating angle of the conductive rotating shaft (504) when rotating, the top of the inner wall corresponding to the position of the conductive connecting block (505) is provided with a first connecting groove (303), and the conductive connecting block (505) is rotatably connected to the inner wall of the first connecting groove (303) to limit the rotating angle of the conductive connecting block (505) while keeping the conductive connecting block (505) in close contact state, and the limiting groove (304) and the first connecting groove (303) are both V-shaped structures with smooth corners.
5. The high power stealth folded charging structure of claim 3, wherein: The conductive rotating shaft (504) is a positive quadrangular prism structure, and the conductive connecting block (505) is a positive triangular prism structure, the conductive rotating shaft (504) is located outside the bending part (302), the top of the inner wall corresponding to the position of the conductive connecting block (505) is provided with a second connecting groove (305), and the conductive connecting block (505) is rotatably connected to the inner wall of the second connecting groove (305) to limit the rotating angle of the conductive connecting block (505) while keeping the conductive connecting block (505) in close contact state, and the second connecting groove (305) is a V-shaped structure with smooth corners.
6. The high power stealth folded charging structure of claim 3, wherein: The conductive rotating shaft (504) is a positive quadrangular prism structure, and the conductive connecting block (505) is a positive triangular prism structure, the conductive rotating shaft (504) is located outside the bending part (302), the top of the inner wall corresponding to the position of the conductive connecting block (505) is provided with a second connecting groove (305), and the conductive connecting block (505) is rotatably connected to the inner wall of the second connecting groove (305) to limit the rotating angle of the conductive connecting block (505) while keeping the conductive connecting block (505) in close contact state, and the second connecting groove (305) is a V-shaped structure with smooth corners.
7. The high power stealth folded charging structure of claim 3, wherein: The conductive rotating shaft (504) is located outside the bending part (302), the conductive connecting block (505) is a positive quadrangular prism structure, the top of one end of the bending part (302) corresponding to the position of the conductive connecting block (505) is fixedly connected with an electrically connecting piece (308), and the electrically connecting piece (308) is in close contact with one end of the conductive connecting block (505), the bending part (302) and the electrically connecting piece (308) are integrally formed to increase the contact area of the second connecting groove (305) with the bending part (302) and the electrically connecting piece (308).
Citation Information
Patent Citations
Invisible folding charger
CN115149302A