Handle charging seat
The design of the rotating connection between the bracket and the main body allows the charging dock to be placed at an angle, solving the problem of the charging dock taking up a lot of desktop space and achieving more efficient space utilization.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN DEONE INNOVATION TECH CO LTD
- Filing Date
- 2025-04-03
- Publication Date
- 2026-04-28
AI Technical Summary
Existing gamepad charging docks are bulky in the horizontal direction when placed, taking up a lot of desktop space, and require a significant amount of desktop space when the gamepad is charging.
The second rotating connection of the bracket is rotatably connected to the first rotating connection of the first body, so that the bracket can rotate around the first rotating connection. The support part of the bracket abuts against the placement surface at one end of the first body. The bracket tilts to support the handle charging base, reducing the desktop space required for placement.
The controller charging dock can be tilted, reducing the desktop space required for placement and improving space utilization efficiency.
Smart Images

Figure CN224177945U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of handle charging technology, specifically to a handle charging dock. Background Technology
[0002] Most game consoles on the market are detachable, with the console and controller connected separately. Users connect the console to a TV or monitor and then use the controller to play games. The console charges itself while connected to the TV or monitor, while the controller continuously consumes power during use. Under normal circumstances, the controller will run out of power faster than the console.
[0003] To charge gamepads, gamepad charging docks were developed. These docks hold and charge gamepads. In a typical gamepad charging dock, the gamepad is placed from top to bottom. The charging port is located at one end of the gamepad's width. When charging, the gamepad's charging port faces downwards towards the dock. This causes the length of the gamepad to align with the lateral direction of the dock, resulting in an increase in the dock's lateral volume. Consequently, when placed on a desktop, this charging dock requires significant space and is inconvenient to position. Utility Model Content
[0004] The purpose of this utility model is to address the defects and deficiencies of the existing technology by providing a handle charging base. The second rotating connection part of the bracket is rotatably connected to the first rotating connection part of the first main body, allowing the bracket to rotate around the first rotating connection part. In the unfolded state, the first main body and the second main body are set at an angle, and the support part of the bracket abuts against the placement surface of one end of the first main body. Through the inclined support of the bracket, the handle charging base can be placed at an angle, thereby reducing the desktop space required to place the handle charging base.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: a game controller charging dock, comprising a first main body and a support, the first main body comprising a connecting module and a charging module, the connecting module being detachably connected to a game controller, and the charging module being electrically connected to the game controller and charging the game controller, the first main body having a first rotating connecting portion, the support comprising a second main body, a supporting portion and a second rotating connecting portion, the supporting portion and the second rotating connecting portion being respectively disposed at opposite ends of the second main body, the second rotating connecting portion being rotatably connected to the first rotating connecting portion; in the stored state, the supporting portion is close to the first main body, the first main body is placed on a placement surface, and the connecting module is located at the end of the first main body away from the placement surface; in the unfolded state, the second main body and the first main body are arranged at an angle, and when the game controller charging dock is placed on the placement surface, the supporting portion and one end of the first main body abut against the placement surface.
[0006] Preferably, the first main body has a storage slot, and in the stored state, the bracket is embedded in the storage slot, so that the outer surface of the bracket is flush with the outer surface of the first main body.
[0007] Preferably, the storage groove has a storage limiting part on the groove wall near the support part, the storage limiting part extends at least partially along the length direction of the bracket, and the support part has a storage limiting groove on the side near the storage limiting part. In the stored state, the storage limiting part is embedded in the storage limiting groove to restrict the bracket from rotating in a direction away from the storage limiting part.
[0008] Preferably, the first main body is provided with a first rotation limiting part and a second rotation limiting part. The first rotation limiting part is located on the side of the second rotation connecting part opposite to the support part, specifying the rotation direction of the bracket when switching from the retracted state to the unfolded state as a first clockwise direction. In the unfolded state, the first rotation limiting part abuts against the second rotation connecting part to restrict the rotation of the bracket in the first clockwise direction. The second rotation limiting part is located on one side of the second main body and / or the support part in the thickness direction of the bracket, and the second rotation limiting part is close to the end of the first main body away from the placement surface, specifying the rotation direction of the bracket when switching from the unfolded state to the retracted state as a second clockwise direction. In the retracted state, the second rotation limiting part abuts against the second main body and / or the support part to restrict the rotation of the bracket in the second clockwise direction.
[0009] Preferably, in the unfolded state, the side of the second rotating connecting portion that abuts against the first rotating limiting portion is a first limiting surface, and the side of the first rotating limiting portion that abuts against the second rotating connecting portion is a third limiting surface; in the stowed state, the side of the second main body and / or the supporting portion that abuts against the second rotating limiting portion is a second limiting surface, and the side of the second rotating limiting portion that abuts against the second main body and / or the supporting portion is a fourth limiting surface; the first limiting surface and the second limiting surface are set at a first preset angle, and the third limiting surface and the fourth limiting surface are set at a second preset angle; in the unfolded state, the included angle between the second limiting surface and the fourth limiting surface is a third preset angle, and the third preset angle is equal to the second preset angle minus the first preset angle.
[0010] Preferably, in the unfolded state, the first main body has an anti-slip pad at one end that abuts the placement surface, and the anti-slip pad abuts the placement surface when the handle charging base is placed on the placement surface.
[0011] Preferably, the handle charging dock further includes a display module, which includes a display unit and a light guide unit. The display unit is disposed within the first main body, and the light guide unit is at least partially disposed within the first main body. The first main body has a light guide clearance hole, and the light emitted by the display unit is conducted through the light guide unit so that the light is emitted from the light guide clearance hole.
[0012] Preferably, the charging module includes a first charging connector, a second charging connector, a circuit board, and an electrical connector. Both the first and second charging connectors are electrically connected to an external power source, and both are electrically connected to the circuit board. The electrical connector is also electrically connected to the circuit board to charge the game controller. The first charging connector is located at one end of the first main body near the placement surface in the retracted state, and is used to connect to the external power source in the unfolded state. The second charging connector is located at the exposed portion of the first main body in the retracted state, and is used to connect to the external power source in either the unfolded or retracted state.
[0013] Preferably, the connection module is provided with a magnetic component, and the game controller is provided with a magnetic mating component. The magnetic component is used to attract the magnetic mating component, so that the first body and the game controller are magnetically connected.
[0014] Preferably, the connecting module has a blind mounting hole on the side facing away from the placement surface. The blind mounting hole is used for at least a portion of the game controller to be inserted, so that the first body and the game controller can be detachably connected.
[0015] The beneficial effects of this utility model after adopting the above technical solution are as follows: The second rotating connecting part of the bracket is rotatably connected to the first rotating connecting part of the first main body, allowing the bracket to rotate around the first rotating connecting part. During the transition from the stored state to the unfolded state, the bracket rotates around the first rotating connecting part, that is, the second main body and the support part rotate around the first rotating connecting part, causing the support part to gradually move away from the first main body. In the unfolded state, the first and second main bodies are set at an angle, and the support part of the bracket abuts against the placement surface at one end of the first main body. Through the inclined support of the bracket, the handle charging base can be placed at an angle, thereby reducing the desktop space required for placing the handle charging base. Attached Figure Description
[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0017] Figure 1 This is a schematic diagram of the handle charging base in the storage state in an embodiment of this utility model.
[0018] Figure 2 This is a schematic diagram of the handle charging base in the unfolded state in an embodiment of this utility model.
[0019] Figure 3 This is an exploded view of the handle charging base in its stored state in an embodiment of this utility model.
[0020] Figure 4 yes Figure 1 A cross-sectional view along the AA' direction.
[0021] Figure 5 yes Figure 1 A cross-sectional view along the BB' direction.
[0022] Figure 6 yes Figure 1 A cross-sectional view along the CC' direction.
[0023] Figure 7 yes Figure 1 A schematic cross-sectional view along the DD' direction.
[0024] Figure 8 yes Figure 1 A cross-sectional view along the EE' direction.
[0025] Figure 9 yes Figure 1 A cross-sectional view along the FF' direction.
[0026] Figure 10 This is a schematic diagram of the structure of the first housing in an embodiment of this utility model.
[0027] Figure label:
[0028] 1000, Handle charging dock; 100, First main body; 10, First shell; 11, Top plate; 111, First shell limiting part; 112, First guide limiting part; 113, First snap-fit part; 1131, Snap-fit hole; 114, First edge limiting part; 115, First reinforcing rib; 116, First anti-slip limiting part; 1161, Anti-slip rib strip; 118, First support protrusion; 119, Connecting module; 1191, Mounting blind hole; 1192, Electrical connection clearance hole; 1193, First circuit positioning part; 1194, Second circuit positioning part; 1195, Magnetic limiting part; 1196, Circuit limiting part; 1197 1198. Light guide limiting part; 1199. Light guide support rib; 1190. Light guide clearance hole; 20. Second housing; 21. Base plate; 211. Second housing limiting part; 212. First charging clearance hole; 213. Second support protrusion; 214. Second reinforcing rib; 215. Second guide limiting part; 216. Second screw hole; 217. Second anti-slip limiting part; 2171. Anti-slip protrusion; 2172. Anti-slip clearance hole; 218. Second edge limiting part; 22. Side plate; 221. First rotating connection part; 2211. Connection limiting part; 22111. First screw hole; 2212. Radial limiting groove; 222. First rotating limiting part. Position part; 2221, Third limiting surface; 223, Second rotation limiting part; 2231, Fourth limiting surface; 224, Storage limiting part; 225, Storage groove; 226, Second charging clearance hole; 227, Second snap-fit part; 30, Receiving cavity; 200, Bracket; 210, Second rotational connection part; 2101, Shaft hole; 2102, Limiting hole; 2103, First limiting surface; 2104, Radial limiting part; 220, Second main body; 2201, Second limiting surface; 230, Support part; 2301, Storage limiting groove; 240, Cover plate; 300, Limiting screw; 310, Bracket limiting part; 320, Embedded part ; 400, Anti-slip mat; 410, Anti-slip groove; 510, Display unit; 520, Light guide unit; 600, Magnetic component; 710, Circuit board; 711, Circuit limit clearance hole; 712, Magnetic clearance hole; 713, First circuit positioning clearance hole; 714, Second circuit positioning clearance hole; 715, Guide limit clearance hole; 720, Electrical connector; 730, First charging connector; 740, Second charging connector; 800, Housing screw; 900, Circuit screw; 1010, Screw cover washer; X, First clockwise direction; Y, Second clockwise direction; G, First preset angle; H, Second preset angle; I, Third preset angle. Detailed Implementation
[0029] The present invention will be further described in detail below with reference to the accompanying drawings.
[0030] This specific embodiment is merely an explanation of the present utility model and is not intended to limit the present utility model. After reading this specification, those skilled in the art can make modifications to this embodiment without contributing any inventive element, as long as they are protected by patent law within the scope of the claims of the present utility model.
[0031] like Figure 1-9 As shown, this embodiment relates to a game controller charging dock 1000, which includes a first body 100 and a bracket 200. The first body 100 includes a connection module 119 and a charging module. The connection module 119 is used for detachable connection with the game controller, and the charging module is used for electrical connection with the game controller and for charging the game controller.
[0032] The bracket 200 includes a second main body 220, a support portion 230, and a second rotatable connection portion 210, with the support portion 230 and the second rotatable connection portion 210 respectively disposed at opposite ends of the second main body 220. The first main body 100 is provided with a first rotatable connection portion 221. The second rotatable connection portion 210 is rotatably connected to the first rotatable connection portion 221.
[0033] In the folded state, the support 230 is close to the first main body 100. The first main body 100 is placed on the placement surface, and the connecting module 119 is located at the end of the first main body 100 away from the placement surface.
[0034] In the unfolded state, the second main body 220 is set at an angle to the first main body 100. When the handle charging base 1000 is placed on the placement surface, the support part 230 and one end of the first main body 100 abut against the placement surface.
[0035] The second rotating connecting part 210 of the bracket 200 is rotatably connected to the first rotating connecting part 221 of the first main body 100, allowing the bracket 200 to rotate around the first rotating connecting part 221. In the unfolded state, the first main body 100 and the second main body 220 are set at an angle, and the support part 230 of the bracket 200 abuts against the placement surface of one end of the first main body 100. The tilted support of the bracket 200 allows the handle charging base 1000 to be placed at an angle, thereby reducing the desktop space required for placing the handle charging base.
[0036] In this embodiment, the bracket 200 has a U-shaped structure, and the two ends of the bracket 200 are second rotating connection portions 210. The second rotating connection portions 210 and the support portion 230 are located at opposite ends of the second main body 220, that is, the second main body 220 is connected between the second rotating connection portions 210 and the support portion 230.
[0037] Specifically, the second rotating connecting portion 210 has a radial limiting portion 2104 on the side near the first body 100, and extends towards the first body 100. The second rotating connecting portion 210 and the radial limiting portion 2104 share a through hole, which is a stepped hole composed of a shaft hole 2101 and a limiting hole 2102 of different diameters. The diameter of the shaft hole 2101 is smaller than the diameter of the limiting hole 2102, and the shaft hole 2101 is close to the first body 100. The first rotating connecting portion 221 has a connecting limiting portion 2211 on the side near the bracket 200, and extends towards the bracket 200. The first rotating connecting portion 221 and the connecting limiting portion 2211 share a first screw hole 22111, which is used to insert a portion of the bracket 200 limiting screw 300. A radial limiting groove 2212 is provided on the outer side of the connecting limiting portion 2211 for the radial limiting portion 2104 to be inserted. The bracket 200 limiting screw 300 includes an insert portion 320 and a bracket limiting portion 310. A cover plate 240 is provided on the outside of the limiting hole 2102 to block the bracket 200 limiting screw 300 and make the outer edge smoother.
[0038] When the bracket 200 is assembled with the first body 100, the connecting limiting part 2211 is embedded in the shaft hole 2101, and the radial limiting part 2104 is embedded in the radial limiting groove 2212. The outer peripheral surfaces of the connecting limiting part 2211 and the radial limiting part 2104 are both cylindrical peripheral surfaces. The connecting limiting part 2211 and the radial limiting part 2104 are equivalent to the setting of a rotating shaft and a bushing, so that the bracket 200 can rotate around the central axis of the connecting limiting part 2211 and the radial limiting part 2104. When the insert portion 320 of the bracket 200 limiting screw 300 is inserted into the first screw hole 22111, the bracket limiting portion 310 is located in the limiting hole 2102. The bracket limiting portion 310 extends at least partially toward the hole wall of the limiting hole 2102 and is spaced apart from or abuts against the stepped surface formed by the shaft hole 2101 and the limiting hole 2102, thereby preventing the connecting limiting portion 2211 from disengaging from the radial limiting portion 2104, that is, preventing the second rotating connecting portion 210 from disengaging from the first rotating connecting portion 221.
[0039] In other embodiments, the bracket 200 is a plate-shaped structure or a rod-shaped structure. One end of the bracket 200 connected to the first main body 100 is provided with a second rotating connection part 210. The second rotating connection part 210 and the support part 230 of the bracket 200 are respectively located at opposite ends of the second main body 220, that is, the second main body 220 is connected between the second rotating connection part 210 and the support part 230.
[0040] In other embodiments, the second rotating connection 210 of the bracket 200 is hinged to the first rotating connection 221 of the first body 100 by a rotating shaft, which is a damping rotating shaft, or a damping sleeve is provided on the outside of the rotating shaft, so as to ensure that the posture of the bracket 200 remains unchanged in the unfolded state.
[0041] like Figure 1-5 and Figure 7-9 As shown, the first main body 100 has a storage slot 225. In the storage state, the bracket 200 is embedded in the storage slot 225, so that the outer surface of the bracket 200 is flush with the outer surface of the first main body 100.
[0042] In this embodiment, the bracket 200 is U-shaped, the first rotating part is located on opposite sides of the first body 100, and the storage groove 225 is provided along the edge of the first body 100 so that the bracket 200 can be stored at the edge of the first body 100.
[0043] In other embodiments, the bracket 200 is a plate-like structure or a rod-like structure, and the storage groove 225 is located on the side of the first body 100 near the placement surface.
[0044] Specifically, the storage slot 225 has a storage limiting part 224 on its wall near the support part 230. The storage limiting part 224 extends at least partially along the length direction of the bracket 200, and the support part 230 has a storage limiting groove 2301 on its side near the storage limiting part 224. In the stored state, the storage limiting part 224 is inserted into the storage limiting groove 2301 to restrict the bracket 200 from rotating away from the storage limiting part 224.
[0045] Specifically, the length direction of the bracket 200 is perpendicular to the rotation direction of the bracket 200 when switching from the retracted state to the unfolded state, thereby restricting the bracket 200 from switching from the retracted state to the unfolded state.
[0046] In this embodiment, the storage limiting part 224 extends along the length direction of the bracket 200. In the stored state, the storage limiting part 224 is embedded in the storage limiting groove 2301 to restrict the bracket 200 from rotating in a direction away from the storage limiting part 224.
[0047] In other embodiments, the storage limiting portion 224 extends at least partially along the length direction of the bracket 200 and at least partially toward the bracket 200. In the stored state, the storage limiting portion 224 is engaged with the storage limiting groove 2301 to restrict the bracket 200 from rotating away from the storage limiting portion 224.
[0048] like Figure 1-4As shown, the first main body 100 is provided with a first rotation limiting part 222 and a second rotation limiting part 223. The first rotation limiting part 222 is located on the side of the second rotation connecting part 210 facing away from the support part 230. The rotation direction of the designated bracket 200 when switching from the stored state to the unfolded state is the first clockwise direction X. In the unfolded state, the first rotation limiting part 222 abuts against the second rotation connecting part 210 to limit the rotation of the bracket 200 in the first clockwise direction X. In the unfolded state, the center of gravity of the handle charging base 1000 is projected onto the placement surface, and the center of gravity projection of the handle charging base 1000 is located between the end of the first main body 100 that abuts against the placement surface and the support part 230. The bracket 200 and the end of the first main body 100 that abuts against the placement surface provide a force opposite to the direction of gravity to support the first main body 100 in an inclined placement. By abutting the first rotation limiting part 222 against the second rotation connecting part 210, the posture of the bracket 200 and the first main body 100 remains unchanged in the unfolded state.
[0049] The second rotation limiting part 223 is located on one side of the second main body 220 and / or the support part 230 in the thickness direction of the bracket 200, and the second rotation limiting part 223 is closer to the end of the first main body 100 away from the placement surface. The rotation direction of the bracket 200 when switching from the unfolded state to the retracted state is designated as the second clockwise direction Y. In the retracted state, the second rotation limiting part 223 abuts against the second main body 220 and / or the support part 230 to limit the rotation of the bracket 200 in the second clockwise direction Y.
[0050] Specifically, in the unfolded state, the side of the second rotating connecting portion 210 that abuts against the first rotating limiting portion 222 is the first limiting surface 2103. The side of the first rotating limiting portion 222 that abuts against the second rotating connecting portion 210 is the third limiting surface 2221. In the folded state, the side of the second main body 220 and / or the support portion 230 that abuts against the second rotating limiting portion 223 is the second limiting surface 2201. The side of the second rotating limiting portion 223 that abuts against the second main body 220 and / or the support portion 230 is the fourth limiting surface 2231.
[0051] The first limiting surface 2103 and the second limiting surface 2201 are set at a first preset angle G. The third limiting surface 2221 and the fourth limiting surface 2231 are set at a second preset angle H. In the unfolded state, the included angle between the second limiting surface 2201 and the fourth limiting surface 2231 is a third preset angle I. The third preset angle I is equal to the second preset angle H minus the first preset angle G.
[0052] More specifically, the size of the third preset angle I is to be changed, that is, the unfolding angle of the bracket 200 is changed. The first preset angle G can be changed by altering the angle between the second main body 220 and the second rotating connecting part 210, thereby changing the included angle between the first limiting surface 2103 and the second limiting surface 2201. With the second preset angle H unchanged, changing the first preset angle G changes the third preset angle I, thus changing the unfolding angle of the bracket 200. Alternatively, the second preset angle H can be changed by altering the included angle between the first rotating limiting part 222 and the second rotating limiting part 223, that is, changing the included angle between the third limiting surface 2221 and the fourth limiting surface 2231. With the first preset angle G unchanged, changing the second preset angle H changes the third preset angle I, thus changing the unfolding angle of the bracket 200.
[0053] like Figure 1-3 , Figure 5 and Figure 7-9 As shown, in the unfolded state, the first main body 100 has an anti-slip pad 400 at one end that abuts against the placement surface. When the handle charging base 1000 is placed on the placement surface, the anti-slip pad 400 abuts against the placement surface.
[0054] The anti-slip mat 400 is provided with an anti-slip groove 410. The first main body 100 includes a first housing 10 and a second housing 20. The second housing 20 is close to the placement surface, and the anti-slip mat 400 is sandwiched between the first housing 10 and the second housing 20. The second housing 20 is provided with a second anti-slip limiting part 217, and the second anti-slip limiting part 217 is provided with an anti-slip protrusion 2171. The anti-slip protrusion 2171 extends toward the anti-slip mat 400 and is embedded in the anti-slip groove 410. The second anti-slip limiting part 217 has an anti-slip clearance hole 2172, which is used for at least a portion of the anti-slip mat 400 to be embedded, so that the anti-slip mat 400 abuts against the placement surface in the unfolded state. The first housing 10 is provided with a first anti-slip limiting part 116, and the first anti-slip limiting part 116 extends at least a portion toward the second housing 20. The anti-slip mat 400 is sandwiched between the first anti-slip limiting part 116 and the second anti-slip limiting part 217.
[0055] Specifically, the first anti-slip limiting part 116 includes a plurality of anti-slip ribs 1161, which extend toward the second housing 20. The anti-slip pad 400 is made of a deformable material. When the anti-slip pad 400 is sandwiched between the first anti-slip limiting part 116 and the second anti-slip limiting part 217, the anti-slip protrusion 2171 is embedded in the anti-slip groove 410, and the other side of the anti-slip pad 400 abuts against the anti-slip ribs 1161. The deformation of the anti-slip pad 400 causes the anti-slip ribs 1161 to be embedded, further improving the stability of the connection between the anti-slip pad 400, the first housing 10, and the second housing 20.
[0056] like Figure 1-3 and Figure 5-10As shown, the handle charging dock 1000 also includes a display module. The display module includes a display unit 510 and a light guide unit 520. The display unit 510 is disposed within the first main body 100. The light guide unit 520 is at least partially disposed within the first main body 100. The first main body 100 has a light guide clearance hole 1199, through which light emitted from the display unit 510 is conducted and emitted from the light guide clearance hole 1199.
[0057] In this embodiment, the display unit 510 is an LED lamp, and the display unit 510 is disposed on the circuit board 710. The light guide unit 520 is disposed close to the display unit 510, and the first main body 100 has a light guide clearance hole 1199. The light guide unit 520 is at least partially embedded in the light guide clearance hole 1199, so that the light emitted by the display unit 510 is conducted through the light guide unit 520 and emitted from the light guide clearance hole 1199.
[0058] like Figure 1-4 As shown, the charging module includes a first charging connector 730, a second charging connector 740, a circuit board 710, and an electrical connector 720. Both the first charging connector 730 and the second charging connector 740 are electrically connected to an external power source. Both the first charging connector 730 and the second charging connector 740 are electrically connected to the circuit board 710. The electrical connector 720 is electrically connected to the circuit board 710 to charge the game controller.
[0059] The first charging connector 730 is located at the end of the first main body 100 near the placement surface when the device is folded up. The first charging connector 730 is used for electrical connection to an external power source when the device is unfolded, so that the charging cable is blocked by the first main body 100 when the device is charging, thus reducing the lateral volume during charging and reducing the space required for charging. The second charging connector 740 is located on the exposed part of the first main body 100 when the device is folded up. The second charging connector 740 is used for electrical connection to an external power source when the device is unfolded or folded up. The second charging connector 740 facilitates charging of the device when it is folded up.
[0060] like Figure 3 and Figure 5 As shown, the connecting module 119 contains a magnetic component 600. The game controller contains a magnetic mating component. The magnetic component 600 is used to attract the magnetic mating component, so that the first main body 100 is magnetically connected to the game controller.
[0061] In this embodiment, the magnetic component 600 is a magnet, and the magnetic mating component is a material that can be attracted by a magnet, such as metal. The magnetic mating component is a metal sheet; in other embodiments, the magnetic mating component is a metal block.
[0062] like Figure 1-3 and Figure 5-9As shown, the connecting module 119 has a mounting blind hole 1191 on the side facing away from the placement surface. The mounting blind hole 1191 is used for at least a portion of the game controller to be inserted, so that the first body 100 is detachably connected to the game controller.
[0063] like Figure 1-10 As shown, the first main body 100 includes a first housing 10 and a second housing 20, which together form a receiving cavity 30. The first housing 10 has a first housing limiting part 111, which extends toward the second housing 20. The second housing 20 has a second housing limiting part 211, which extends toward the first housing 10. The second housing limiting part 211 has holes for inserting the first housing limiting part 111 and a housing screw 800, and the first housing limiting part 111 has a second screw hole 216 for inserting the housing screw 800. By inserting screws into the second housing limiting part 211 and the first housing limiting part 111, the first housing 10 and the second housing 20 are fixedly connected. A screw cover washer 1010 is provided on the side of the second housing limiting part 211 facing away from the first housing 10, that is, the screw cover washer 1010 is provided in the second screw hole 216. When folded up, the screw cover gasket 1010 abuts against the placement surface, increasing the friction between the handle charging base 1000 and the placement surface.
[0064] The first housing 10 includes a top plate 11, and a first edge limiting portion 114 is provided along the edge of the top plate 11, extending toward the second housing 20. The second housing 20 includes a bottom plate 21 and a side plate 22, the side plate 22 being provided along the edge of the bottom plate 21 and extending toward the first housing 10. The bottom plate 21 is provided with a second edge limiting portion 218, which extends toward the first housing 10 and is spaced apart from the side plate 22. When the first housing 10 and the second housing 20 are assembled, the first edge limiting portion 114 is inserted into the gap formed between the second edge limiting portion 218 and the side plate 22, thereby fixing the edges of the first housing 10 and the second housing 20 and preventing gaps from appearing at the connection.
[0065] The top plate 11 has a first snap-fit portion 113 on the side facing the second housing 20, and the first snap-fit portion 113 extends into the second housing 20. The side plate 22 has a second snap-fit portion 227 on the side facing the receiving cavity 30. The first snap-fit portion 113 and the second snap-fit portion 227 are snapped together, so that the first housing 10 and the second housing 20 are snapped together.
[0066] In this embodiment, the first snap-fit portion 113 has a snap-fit hole 1131, and the second snap-fit portion 227 has a snap-fit buckle. The snap-fit buckle is inserted into the snap-fit hole 1131, so that the first housing 10 and the second housing 20 are snap-fit connected.
[0067] Preferably, the latch of the second latching part 227 is located between the two second edge limiting parts 218. When the first edge limiting part 114 is inserted into the gap formed by the second edge limiting part 218 and the side plate 22, the latch is inserted into the latching hole 1131, thereby improving the stability of the latching connection between the first housing 10 and the second housing 20.
[0068] A first guide limiting part 112 is provided on the side of the top plate 11 facing the second housing 20, and the first guide limiting part 112 extends toward the second housing 20. A second guide limiting part 215 is provided on the side of the bottom plate 21 facing the first housing 10, and the second guide limiting part 215 extends toward the first housing 10. The second guide limiting part 215 has a hole for the first guide limiting part 112 to be inserted. During the process of installing the first housing 10 to the second housing 20, the distance between the second guide limiting part 215 and the first guide limiting part 112 is less than the distance between the first snap-fit part 113 and the second snap-fit part 227, so that before the first snap-fit part 113 and the second snap-fit part 227 are engaged, the first guide limiting part 112 is inserted into the second guide limiting part 215 first, to prevent the first housing 10 and the second housing 20 from shifting relative to each other during the snap-fit connection, so as to facilitate the installation of the first housing 10 and the second housing 20.
[0069] In this embodiment, the first housing 10 is provided with four connection modules 119. Each connection module 119 is equipped with a magnetic component 600, and the game controller contains a magnetic mating component. The magnetic component 600 magnetically attracts the magnetic mating component, allowing the game controller to be detachably connected to the game controller charging base 1000. Each connection module 119 has a blind mounting hole 1191 for inserting a portion of the game controller, further improving the stability of the connection between the game controller and the game controller charging base 1000.
[0070] The first housing 10 is provided with a first reinforcing rib 115 on the side facing the second housing 20. The first reinforcing rib 115 is disposed between the connecting module 119 and the connecting module 119, thereby ensuring the mechanical strength of the first housing 10.
[0071] A magnetic limiting part 1195 is provided on the side of the connecting module 119 facing the receiving cavity 30. The magnetic limiting part 1195 is provided along the edge of the magnetic component 600 and extends into the receiving cavity 30. The magnetic component 600 is bonded to the top plate 11, specifically between the magnetic limiting parts 1195, thereby achieving the positioning and installation of the magnetic component 600 and preventing the magnetic component 600 from shifting and failing to magnetically connect to the game controller. A second support protrusion 213 is provided on the side of the bottom plate 21 facing the first housing 10. The magnetic component 600 is clamped between the second support protrusion 213 and the bracket 200 of the top plate 11, and works with the magnetic limiting part 1195 to achieve the positioning and installation of the magnetic component 600.
[0072] The receiving cavity 30 houses the circuit board 710. An electrical connector 720 is disposed on the side of the circuit board 710 facing the top plate 11. The connection module 119 has an electrical connection clearance hole 1192. The electrical connector 720 is male, and the game controller has a female connector. The electrical connection clearance hole 1192 allows at least a portion of the electrical connector 720 to pass through, so that the male connector is inserted into the female connector. When the game controller is inserted into the mounting blind hole 1191, a portion of the electrical connector 720 is inserted into the game controller.
[0073] Both the first charging connector 730 and the second charging connector 740 are electrically connected to the circuit board 710, which is electrically connected to the electrical connector 720. During use, either the first charging connector 730 or the second charging connector 740 is electrically connected to an external power source, thereby charging the game controller through the circuit board 710 and the electrical connector 720.
[0074] The circuit board 710 has a magnetic clearance hole 712 for clearing the magnetic component 600 and the magnetic limiting part 1195.
[0075] The circuit board 710 has a circuit limiting clearance hole 711. A circuit limiting part 1196 is provided on the side of the top plate 11 facing the second housing 20, extending into the second housing 20. The circuit limiting part 1196 has a hole for a circuit screw 900 to be inserted, and the circuit limiting clearance hole 711 is used to avoid the circuit screw 900. The circuit screw 900 passes through the circuit limiting clearance hole 711 and is inserted into the circuit limiting part 1196, thereby fixing the circuit board 710 to the first housing 10. A first support protrusion 118 is provided on the side of the top plate 11 facing the second housing 20, extending into the second housing 20. When the circuit board 710 is installed in the first housing 10, the first support protrusion 118 abuts against the circuit board 710, cooperating with the circuit screw 900 and the circuit limiting part 1196 to achieve positioning and installation of the circuit board 710.
[0076] A first circuit positioning part 1193 is provided on the side of the top plate 11 facing the second housing 20, and the first circuit positioning part 1193 extends into the second housing 20. The electrical connector 720 has a positioning hole for the first circuit positioning part 1193 to be inserted. The circuit board 710 has a first circuit positioning clearance hole 713. The first circuit positioning part 1193 is inserted into the positioning hole and the first circuit positioning clearance hole 713, thereby fixing the electrical connector 720 and the circuit board 710.
[0077] A second circuit positioning part 1194 is provided on the side of the top plate 11 facing the second housing 20, and the second circuit positioning part 1194 extends into the second housing 20. The circuit board 710 has a second circuit positioning clearance hole 714. The second circuit positioning clearance hole 714 is used for the second circuit positioning part 1194 to be inserted, so as to facilitate the positioning and installation of the circuit board 710 onto the first housing 10.
[0078] The circuit board 710 has a guide limit clearance hole 715, which is used for the first guide limit part 112 or the second guide limit part 215 to pass through, so that the first guide limit part 112 is embedded in the second guide limit part 215.
[0079] The top plate 11 has a light guide limiting part 1197 and a light guide support rib 1198 on the side facing the second housing 20. The light guide limiting part 1197 is provided along the edge of the light guide unit 520 and extends into the second housing 20, thereby facilitating the positioning and installation of the light guide unit 520. The light guide support rib 1198 is provided between the light guide limiting parts 1197 and extends into the second housing 20 to abut against one side of the light guide unit 520. The bottom plate 21 has a second support protrusion 213 on the side facing the first housing 10. The light guide unit 520 is clamped between the light guide support rib 1198 and the second support protrusion 213, and cooperates with the light guide limiting part 1197 to achieve the limiting installation of the light guide unit 520.
[0080] The second support protrusion 213 also abuts against the side of the circuit board 710 opposite to the electrical connector 720 to support the electrical connector 720, thereby ensuring the mechanical strength required to support the game controller.
[0081] The bottom plate 21 is provided with a second reinforcing rib 214 on the side facing the first housing 10. The second reinforcing rib 214 is located between the second support protrusion 213 and the second support protrusion 213, thereby enhancing the mechanical strength of the second housing 20 and ensuring the mechanical strength of the second support protrusion 213.
[0082] In this embodiment, the first rotating connecting part 221, the first rotating limiting part 222, and the second rotating limiting part 223 are all disposed on the side plate 22. A storage groove 225 is formed in the side plate 22, such that the lower surface of the bracket 200 is flush with the bottom plate 21, and the front surface of the bracket 200 is flush with the outer surface of the side plate 22. A second charging clearance hole 226 is formed in the side plate 22, and a first charging clearance hole 212 is formed in the bottom plate 21.
[0083] The above description is only used to illustrate the technical solution of this utility model and is not intended to limit it. Any other modifications or equivalent substitutions made by those skilled in the art to the technical solution of this utility model, as long as they do not depart from the spirit and scope of the technical solution of this utility model, should be covered within the scope of the claims of this utility model.
Claims
1. A handle charging dock, characterized in that, The device includes a first main body support frame. The first main body includes a connection module and a charging module. The connection module is used to detachably connect to a game controller. The charging module is used to electrically connect to the game controller and charge the game controller. The first main body is provided with a first rotating connection part. The support frame includes a second main body, a support part and a second rotating connection part. The support part and the second rotating connection part are respectively disposed at opposite ends of the second main body. The second rotating connection part is rotatably connected to the first rotating connection part. In the folded state, the support portion is close to the first main body, the first main body is placed on the placement surface, and the connecting module is located at the end of the first main body away from the placement surface. In the unfolded state, the second main body is set at an angle to the first main body. When the handle charging base is placed on the placement surface, the support part and one end of the first main body abut against the placement surface.
2. The handle charging dock as described in claim 1, characterized in that, The first main body has a storage slot. In the stored state, the bracket is embedded in the storage slot, so that the outer surface of the bracket is flush with the outer surface of the first main body.
3. The handle charging dock as described in claim 2, characterized in that, The storage slot is provided with a storage limiting part near the wall of the support part. The storage limiting part extends at least partially along the length direction of the bracket. The support part is provided with a storage limiting groove on the side near the storage limiting part. In the stored state, the storage limiting part is embedded in the storage limiting groove to restrict the bracket from rotating in a direction away from the storage limiting part.
4. The handle charging dock as described in claim 1, characterized in that, The first main body is provided with a first rotation limiting part and a second rotation limiting part. The first rotation limiting part is located on the side of the second rotation connecting part that is away from the support part. The rotation direction of the bracket when it switches from the storage state to the unfolded state is designated as the first clockwise direction. In the unfolded state, the first rotation limiting part abuts against the second rotation connecting part to limit the rotation of the bracket in the first clockwise direction. The second rotation limiting part is located on one side of the second body and / or the support part in the thickness direction of the bracket, and the second rotation limiting part is close to the end of the first body away from the placement surface. The rotation direction of the bracket when switching from the unfolded state to the stored state is designated as the second clockwise direction. In the stored state, the second rotation limiting part abuts against the second body and / or the support part to limit the rotation of the bracket in the second clockwise direction.
5. The handle charging dock as described in claim 4, characterized in that, In the unfolded state, the side of the second rotating connecting part that abuts against the first rotating limiting part is the first limiting surface, and the side of the first rotating limiting part that abuts against the second rotating connecting part is the third limiting surface; In the stored state, the side of the second main body and / or the support portion that abuts against the second rotation limiting portion is the second limiting surface, and the side of the second rotation limiting portion that abuts against the second main body and / or the support portion is the fourth limiting surface; The first limiting surface and the second limiting surface are set at a first preset angle, and the third limiting surface and the fourth limiting surface are set at a second preset angle. In the unfolded state, the included angle between the second limiting surface and the fourth limiting surface is a third preset angle, which is equal to the second preset angle minus the first preset angle.
6. The handle charging dock as described in claim 1, characterized in that, In the unfolded state, the first main body has an anti-slip pad at one end that abuts the placement surface. When the handle charging base is placed on the placement surface, the anti-slip pad abuts the placement surface.
7. The handle charging dock as described in claim 1, characterized in that, It also includes a display module, which includes a display unit and a light guide unit. The display unit is disposed within the first main body, and the light guide unit is at least partially disposed within the first main body. The first main body has a light guide clearance hole. The light emitted by the display unit is conducted through the light guide unit, so that the light is emitted from the light guide clearance hole.
8. The handle charging dock as described in claim 1, characterized in that, The charging module includes a first charging connector, a second charging connector, a circuit board, and an electrical connector. The first charging connector and the second charging connector are both electrically connected to an external power source. The first charging connector and the second charging connector are both electrically connected to the circuit board. The electrical connector is electrically connected to the circuit board to charge the game controller. The first charging connector is located at one end of the first main body near the placement surface in the stored state, and the first charging connector is used to electrically connect to the external power source in the unfolded state. The second charging connector is located at the exposed part of the first main body in the stored state, and the first charging connector is used to electrically connect to the external power source in either the unfolded state or the stored state.
9. The handle charging dock as described in claim 1, characterized in that, The connection module is equipped with a magnetic component, and the game controller is equipped with a magnetic mating component. The magnetic component is used to attract the magnetic mating component, so that the first body and the game controller are magnetically connected.
10. The handle charging dock as described in claim 1, characterized in that, The connecting module has a blind mounting hole on the side facing away from the placement surface. The blind mounting hole is used to insert at least a portion of the game controller, so that the first body and the game controller can be detachably connected.