Handle charging device
By designing a removable front protective shell to cover the game controller's charging device, the problems of dust accumulation and impact damage are solved, improving the user experience and lifespan of the game controller.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN DEONE INNOVATION TECH CO LTD
- Filing Date
- 2025-04-27
- Publication Date
- 2026-05-01
AI Technical Summary
Existing game controller charging devices are prone to attracting dust during charging, affecting the user experience, and are also easily damaged by impacts or scratches.
A game controller charging device has been designed, including a front protective shell and a charging module. The front protective shell is detachably connected to and covers the charging module and one side of the game controller to prevent dust accumulation and collisions. It is easy to disassemble through a snap-fit structure.
It improves the user experience and lifespan of the game controller, and prevents dust accumulation and damage.
Smart Images

Figure CN224180224U_ABST
Abstract
Description
Handheld charging device Technical Field
[0001] This utility model relates to the field of gaming peripheral device technology, specifically to a game controller charging device. Background Technology
[0002] Most game consoles on the market are modular, meaning the console and game controller are detachably connected. Users connect the console to a TV or monitor and then use the game controller to control the game.
[0003] Normally, the mounting end of the controller is used to connect to the console. When the controller is detached from the console, a controller accessory or controller charging device is connected to the mounting end.
[0004] A standard gamepad charging device is detachably connected to the gamepad and electrically connected to it for charging. During charging, except for the part connected to the charging device, the rest of the gamepad is exposed to the air. Dust in the air can adhere to the gamepad, such as the buttons, affecting the user experience after charging.
[0005] Furthermore, while the game controller is charging, users may place the charging device and the game controller assembly into their bag to take it out. During this process, the charging device or the game controller is easily bumped or scratched by other items in the bag, resulting in damage to the game controller or the charging device. Summary of the Invention
[0006] The purpose of this invention is to address the shortcomings and deficiencies of existing technologies by providing a gamepad charging device. The gamepad charging device charges the gamepad through a detachable connection and electrical connection between the charging module and the gamepad. A front protective shell is detachably connected to the charging module and covers both the charging module and one side of the gamepad in a first direction, thus protecting the gamepad buttons from dust accumulation and improving the user's gaming experience. It also prevents the gamepad from being damaged by impacts or scratches on the first side, thereby extending the gamepad's lifespan.
[0007] To achieve the above objectives, the technical solution adopted by this utility model is: a game controller charging device for a game controller, wherein the game controller has a button on a first side in a first direction, the game controller charging device includes a front protective shell and a charging module, the charging module is detachably connected to the game controller, the charging module is used to charge the game controller, the front protective shell is detachably connected to the charging module, the front protective shell covers the charging module on one side in the first direction and covers the game controller on one side in the first direction.
[0008] Preferably, the front protective shell includes a first main body, a first latching portion, and a second latching portion. The first main body covers one side of the charging module in the first direction and covers one side of the game controller in the first direction. The first latching portion and the second latching portion are respectively disposed at opposite ends of the first main body. The first latching portion and the second latching portion latch with the charging module to detachably connect the charging module and the front protective shell.
[0009] Preferably, the direction in which the second latching portion points to the first latching portion is designated as the second direction, and the second direction is perpendicular to the first direction; the first latching portion extends at least partially in the opposite direction to the first direction, and the end away from the first body extends at least partially in the opposite direction to the second direction to latch one end of the charging module in the second direction; the second latching portion extends at least partially in the opposite direction to the first direction, and the end away from the first body extends at least partially in the second direction to latch one end of the charging module in the opposite direction to the second direction.
[0010] Preferably, the first snap-fit portion has a first snap-fit rib on the side facing the charging module, and the first snap-fit rib is at least partially close to the end of the first snap-fit portion away from the first body; the second snap-fit portion has a second snap-fit rib on the side facing the charging module, and the second snap-fit rib is at least partially close to the end of the second snap-fit portion away from the first body.
[0011] Preferably, the first snap-fit rib extends at least partially along the first snap-fit portion and is close to the first body; the second snap-fit rib extends at least partially along the second snap-fit portion and is close to the first body.
[0012] Preferably, the direction in which the second latching portion points to the first latching portion is designated as the second direction, and the second direction is perpendicular to the first direction; the end of the second latching portion away from the first body is provided with a lever portion, and the lever portion extends at least partially in the opposite direction to the first direction and in the opposite direction to the second direction; and / or, the end of the first latching portion away from the first body is provided with a lever portion, and the lever portion extends at least partially in the opposite direction to the first direction and in the second direction.
[0013] Preferably, the lever portion has a groove on the side near the charging module.
[0014] Preferably, the first body has a storage module on the side opposite to the first direction, and the storage module is used to store game cards.
[0015] Preferably, the controller charging device further includes a controller protective shell, which is detachably connected to the game controller to cover one side of the game controller in the opposite direction to the first direction.
[0016] Preferably, the charging module includes a housing and a charging component. The housing has a mounting slot for at least a portion of the game controller to be inserted, allowing the housing and the game controller to be detachably connected. The housing is configured to form a receiving cavity, in which the charging component is at least partially received. The charging component is electrically connected to the game controller and to an external power source to charge the game controller. Alternatively, the charging component includes a battery cell electrically connected to the game controller to charge it.
[0017] The beneficial effects of this utility model after adopting the above technical solution are as follows: The gamepad charging device charges the gamepad through a detachable connection and electrical connection between the charging module and the gamepad. The front protective shell is detachably connected to the charging module and covers both the charging module and one side of the gamepad in the first direction, thus covering the buttons on the gamepad and preventing dust from accumulating on them, improving the user's gaming experience. It also prevents the gamepad from being bumped or scratched on the first side, thereby avoiding damage to the gamepad and extending its service life. Attached Figure Description
[0018] 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.
[0019] Figure 1 is a schematic diagram of the handle charging device in an embodiment of this utility model.
[0020] Figure 2 is an exploded view of the handle charging device in an embodiment of this utility model.
[0021] Figure 3 is a cross-sectional view of Figure 1 along the AA' direction.
[0022] Figure 4 is a schematic diagram of the structure of the front protective shell in an embodiment of this utility model.
[0023] Figure 5 is an enlarged view of point B in Figure 4.
[0024] Figure 6 is an exploded view of the charging module in an embodiment of this utility model.
[0025] Figure 7 is a schematic diagram of the structure of the second shell in an embodiment of this utility model.
[0026] Figure label:
[0027] 1000, Handle charging device; 100, Front protective shell; 11, First main body; 111, Button avoidance part; 112, Storage module; 1121, First snap-fit protrusion; 1122, Second snap-fit protrusion; 1123, Horizontal rib; 1124, Vertical rib; 12, First snap-fit part; 121, First snap-fit rib; 122, Charging avoidance opening; 13, Second snap-fit part; 131, Second snap-fit rib; 14, Hand lever part; 141, Groove; 200, Charging module; 21, Housing; 211, First housing; 2111, Second main body; 21111, First charging avoidance groove; 2112, Hand lever part; Handle connecting part; 21121, mounting groove; 21122, hot melt pillar; 21123, first magnetic limiting part; 21124, electrical connection clearance hole; 212, second housing; 2121, second magnetic limiting part; 2122, second charging clearance groove; 2131, first circuit board; 2132, charging connector; 2133, second circuit board; 21331, hot melt hole; 2134, electrical connector; 2135, battery cell; 214, magnetic component; 215, receiving cavity; 300, handle protective shell; 31, grip part; 2000, game cartridge; X, first direction; Y, second direction; Z, third direction. Detailed Implementation
[0028] The present invention will be further described in detail below with reference to the accompanying drawings.
[0029] 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, but as long as they are within the scope of the claims of the present utility model, they are protected by patent law.
[0030] As shown in Figures 1-4, this embodiment relates to a game controller charging device 1000, which is used to charge a game controller. The game controller has a button on one side in the first direction X.
[0031] The gamepad charging device 1000 includes a front protective shell 100 and a charging module 200. The charging module 200 is detachably connected to the gamepad and is electrically connected to the gamepad, so that the charging module 200 charges the gamepad.
[0032] The front protective shell 100 is detachably connected to the charging module 200. The front protective shell 100 covers one side of the charging module 200 in the first direction X, and also covers one side of the game controller in the first direction X, thus covering the buttons on the game controller located in the first direction X. This prevents dust from the buttons and game controller from accumulating, preventing users from touching dust when using the game controller after charging, thereby improving the user's gaming experience. It also prevents the game controller from being bumped or scratched on the first direction X side, thus preventing damage to the game controller, extending its lifespan, and maintaining its aesthetic appeal.
[0033] In this embodiment, the first direction X is the thickness direction of the handle charging device 1000, the second direction Y is the length direction of the handle charging device 1000, and the third direction Z is the width direction of the handle charging device 1000.
[0034] As shown in Figures 1-4, the front protective shell 100 includes a first main body 11, a first latching portion 12, and a second latching portion 13. The first main body 11 covers the charging module 200 on one side in the first direction X, and also covers the game controller on the same side in the first direction X. The first latching portion 12 and the second latching portion 13 are respectively disposed at opposite ends of the first main body 11, and are latched to the charging module 200 to detachably connect the charging module 200 and the front protective shell 100.
[0035] In other embodiments, the connection between the charging module 200 and the front protective shell 100 is one of the following connection methods: magnetic connection, sliding rail connection, and threaded connection.
[0036] In this embodiment, the first body 11 is provided with a button avoidance part 111 that protrudes in the first direction X. The button avoidance part 111 forms an avoidance space in the opposite direction of the first direction X, which is used to avoid the buttons of the game controller in the first direction X.
[0037] As shown in Figures 2-4, the direction in which the second latching portion 13 points towards the first latching portion 12 is designated as the second direction Y, which is perpendicular to the first direction X. The first latching portion 12 extends at least partially in the direction opposite to the first direction X, and at least partially at its end away from the first body 11 extends in the direction opposite to the second direction Y, extending to the side of the charging module 200 opposite to the first body 11. This applies a force in the first direction X to the charging module 200, and the first body 11 applies a force in the direction opposite to the first direction X to the charging module 200, thus latching the charging module 200 at one end in the second direction Y. The second latching portion 13 extends at least partially in the direction opposite to the first direction X, and at least partially at its end away from the first body 11 extends in the second direction Y, thus applying a force in the first direction X to the charging module 200, and the first body 11 applies a force in the direction opposite to the first direction X to the charging module 200, thus latching the charging module 200 at one end in the direction opposite to the second direction Y.
[0038] As shown in Figures 2-4, the first latching portion 12 has a first latching rib 121 on the side facing the charging module 200. The first latching rib 121 is at least partially close to the end of the first latching portion 12 away from the first body 11. The second latching portion 13 has a second latching rib 131 on the side facing the charging module 200. The second latching rib 131 is at least partially close to the end of the second latching portion 13 away from the first body 11.
[0039] The protective shell 100 and the charging module 200 are now integrated into one unit. The first snap-fit rib 121 abuts against the charging module 200 to apply a force in the first direction X to the charging module 200. At the same time, a certain gap is maintained between the first snap-fit portion 12 and the charging module 200, making it easy for the user to insert their finger between the first snap-fit portion 12 and the charging module 200, thereby facilitating the manipulation of the first snap-fit portion 12 and the removal of the front protective shell 100 and the charging module 200.
[0040] The protective shell 100 and the charging module 200 are now integrated into one unit. The second snap-fit rib 131 abuts against the charging module 200 to apply a force in the first direction X to the charging module 200. At the same time, a certain gap is maintained between the second snap-fit portion 13 and the charging module 200, making it easy for the user to insert their finger between the second snap-fit portion 13 and the charging module 200, thereby facilitating the manipulation of the second snap-fit portion 13 and the removal of the front protective shell 100 and the charging module 200.
[0041] By setting the first snap-fit rib 121 and the second snap-fit rib 131, the deformation of the first snap-fit part 12 and the second snap-fit part 13 is reduced when the protective shell 100 and the charging module 200 are disassembled, which effectively prevents the first snap-fit part and the second snap-fit part from fatigue fracture due to repeated disassembly.
[0042] As shown in Figures 2-4, the first snap-fit rib 121 extends at least partially along the first snap-fit portion 12 and is close to the first body 11. This strengthens the mechanical strength of the first snap-fit portion 12 and prevents the first snap-fit member from fatigue fracture due to repeated disassembly. The second snap-fit rib 131 extends at least partially along the second snap-fit portion 13 and is close to the first body 11, thereby strengthening the mechanical strength of the second snap-fit portion 13 and preventing the second snap-fit member from fatigue fracture due to repeated disassembly.
[0043] As shown in Figure 2-4, the direction from the second latching part 13 to the first latching part 12 is designated as the second direction Y, and the second direction Y is perpendicular to the first direction X.
[0044] The second locking part 13 is provided with a lever part 14 at the end away from the first body 11. The lever part 14 extends at least partially in the opposite direction of the first direction X and in the opposite direction of the second direction Y.
[0045] And / or, the first latching portion 12 is provided with a lever portion 14 at one end away from the first body 11, the lever portion 14 extending at least partially in the opposite direction to the first direction X and in the second direction Y.
[0046] In the first embodiment, as shown in Figures 2-4, the lever part 14 is disposed at the end of the second latching part 13 away from the first body 11, and at least part of it extends in the opposite direction of the first direction X and in the opposite direction of the second direction Y, so that the user can turn the lever part. The lever part causes the second latching part 13 to deform, thereby disassembling the front protective shell 100 and the charging module 200.
[0047] In the second embodiment, the lever portion 14 is disposed at the end of the first latch portion 12 away from the first latch portion 12 and away from the first body 11, and at least part of it extends in the opposite direction of the first direction X and in the opposite direction of the second direction Y, so that the user can turn the lever portion, the lever portion drives the first latch portion 12 to deform, thereby disassembling the front protective shell 100 and the charging module 200.
[0048] In the third embodiment, there are two lever portions 14, respectively disposed on the second latching portion 13 and the first latching portion 12. Specifically, they are disposed at the end of the second latching portion 13 away from the first main body 11 and at the end of the first latching portion 12 away from the second latching portion 13 and the first main body 11. The lever portion 14 disposed on the second latching portion 13 extends at least partially in the opposite direction of the first direction X and in the opposite direction of the second direction Y, facilitating the user to turn the lever portion. The lever portion causes the second latching portion 13 to deform, thereby disassembling the front protective shell 100 and the charging module 200. The lever portion 14 disposed on the first latching portion 12 extends at least partially in the opposite direction of the first direction X and in the opposite direction of the second direction Y, facilitating the user to turn the lever portion. The lever portion causes the first latching portion 12 to deform, thereby disassembling the front protective shell 100 and the charging module 200.
[0049] The lever portion 14 extends at least partially in the direction opposite to the first direction X, providing a point of force when the user applies a force from the charging module 200 toward the lever portion, thereby facilitating the user to turn the lever portion. The lever portion extends at least partially in the second direction Y or the direction opposite to the second direction Y, forming a gap between the lever portion 14 and the charging module 200. The size of this gap gradually increases in the direction away from the charging module 200, making it easy for the user to insert their fingers into the gap, thereby facilitating the user to apply a force that deforms the first latch portion 12 or the second latch portion 13, thereby facilitating the removal of the charging module 200 and the front protective shell 100.
[0050] As shown in Figures 3-4, the lever part 14 has a groove 141 on the side near the charging module 200, so that the user can insert his / her fingers into the groove 141, increasing the contact area between the lever part 14 and the fingers, thereby increasing the friction between the fingers and the lever part 14, making it easier for the user to turn the lever part 14, and thus making it easier for the user to remove the front protective shell 100 and the charging module 200.
[0051] As shown in Figures 3-5, the first main body 11 has a storage module 112 on the side opposite to the first direction X. The storage module 112 is used to store the game card 2000.
[0052] Specifically, the storage module 112 includes a first latching protrusion 1121 and a second latching protrusion 1122. Both the first latching protrusion 1121 and the second latching protrusion 1122 are disposed on the first main body 11. The first latching protrusion 1121 and the second latching protrusion 1122 respectively latch onto the opposite ends of the game card 2000 in the second direction Y, or the first latching protrusion 1121 and the second latching protrusion 1122 respectively latch onto the opposite ends of the game card 2000 in the second direction Y in the third direction Z. The third direction Z is perpendicular to the first direction X, and the third direction Z is perpendicular to the second direction Y. Both the first latching protrusion 1121 and the second latching protrusion 1122 are interference-fitted with the game card 2000. By latching the opposite ends of the game card 2000 with the first latching protrusion 1121 and the second latching protrusion 1122, the game card 2000 is limited in the direction from the first latching protrusion 1121 to the second latching protrusion 1122. At the same time, the game card 2000 is prevented from shifting in the vertical direction of the direction in which the first latching protrusion 1121 points to the second latching protrusion 1122 by interference fit with the game card 2000, thereby limiting the position of the game card 2000.
[0053] In this embodiment, the direction in which the second latching protrusion 1122 points towards the first latching protrusion 1121 is the second direction Y. The storage module 112 includes two first latching protrusions 1121 and two second latching protrusions 1122. The two first latching protrusions 1121 are arranged and spaced apart along the third direction Z. The two second latching protrusions 1122 are arranged and spaced apart along the third direction Z. By setting the two second latching protrusions 1122 and the two first latching protrusions 1121, the system prevents the game card 2000 from having a small contact area, which could cause the game card 2000 to easily swing at its two ends in the third direction Z, affecting the stability of storing the game card 2000.
[0054] In this embodiment, there are three storage modules 112, which are evenly arranged along the second direction Y. A transverse rib 1123 is provided between two storage modules 112, and the length direction of the transverse rib 1123 is set along the third direction Z. The storage modules 112 located at opposite ends in the second direction Y have a transverse rib 1123 at the end away from the adjacent storage module 112, and the length direction of the transverse rib 1123 is set along the third direction Z. The transverse rib 1123 visually divides the storage modules 112.
[0055] The three storage modules 112 share a single longitudinal rib 1124, the length of which is set along the second direction Y. The longitudinal rib 1124 connects to one end of the transverse rib 1123 in the third direction Z or the opposite direction Z. This allows the game card 2000 to be exposed at one end of the storage module 112 in the opposite direction Z or in the third direction Z, facilitating the removal of the game card 2000.
[0056] As shown in Figures 1-3, the controller charging device 1000 also includes a controller protective shell 300, which is detachably connected to the game controller to cover one side of the game controller in the opposite direction to the first direction X.
[0057] Specifically, the gamepad protective shell 300 has a raised grip portion 31 on one side opposite to the first direction X, for the user to hold and improve the user experience. The grip portion 31 is located near one end of the gamepad protective shell 300 opposite to the second direction Y. Except for the edge near the charging module 200, the remaining edges of the gamepad protective shell 300 extend at least partially towards the front protective shell 100 to cover the edge of the gamepad on one side of the first direction X. Except for the edge near the charging module 200, the remaining edges of the first body 11 extend at least partially in the opposite direction of the first direction X to cover the edge of the gamepad protective shell 300. Through the front protective shell 100 and the gamepad protection, the gamepad is protected in all directions. Furthermore, the gamepad protective shell can be used alone in combination with the gamepad. The gamepad protective shell 300 does not need to be removed during gameplay, thus protecting the gamepad during gameplay.
[0058] As shown in Figures 3 and 6-7, the charging module 200 includes a housing 21 and a charging component. The housing 21 has a mounting groove 21121 for at least a portion of the game controller to be inserted, allowing the housing 21 to be detachably connected to the game controller. The housing 21 is configured to form a receiving cavity 215, in which at least a portion of the charging component is received.
[0059] The charging component is electrically connected to the game controller and to an external power source to charge the game controller; or, the charging component includes a battery cell 2135, which is electrically connected to the game controller to charge the game controller.
[0060] In this embodiment, the charging component includes a battery cell 2135.
[0061] In the first charging scenario, the charging component is not electrically connected to an external power source. When the charging component is electrically connected to the game controller, power is provided by the battery cell 2135, that is, the battery cell 2135 is electrically connected to the game controller to charge the game controller.
[0062] In the second charging scenario, the charging component is electrically connected to an external power source. When the charging component is electrically connected to the game controller, the external power source provides power. That is, the charging component is electrically connected to both the external power source and the game controller, thereby charging the game controller.
[0063] In the third charging scenario, when the charging component is electrically connected to an external power source and the game controller, power is supplied by the external power source. That is, the charging component is electrically connected to both the external power source and the game controller, thereby charging the game controller and simultaneously charging the battery cell 2135.
[0064] In the fourth charging scenario, the charging component is electrically connected to an external power source. When the charging component is not electrically connected to the game controller, power is supplied by the external power source, i.e., the charging component is electrically connected to the external power source to charge the battery cell 2135.
[0065] Specifically, the housing 21 includes a first housing 211 and a second housing 212. The first housing 211 and the second housing 212 together form a receiving cavity 215. The first housing 211 and the second housing 212 are connected by ultrasonic welding. In other embodiments, the first housing 211 and the second housing 212 are connected by any one of the following connection methods: snap-fit connection, heat fusion connection, threaded connection, and slide rail connection.
[0066] The first housing 211 includes a second main body 2111 and a handle connection portion 2112. There are two handle connection portions 2112, respectively located at opposite ends of the second main body 2111 in the third direction Z. Each handle connection portion 2112 extends at least partially in the direction opposite to the first direction X. A mounting groove 21121 is provided on the side of each handle connection portion 2112 away from the other handle connection portion 2112. The mounting groove 21121 is used for at least a portion of the game controller to be inserted, allowing for detachable connection between the game controller and the charging module 200.
[0067] In this embodiment, the second main body 2111 has ultrasonic welding grooves at both ends in the second direction Y. The handle extension is located away from the end of the second main body 2111 and near the bottom wall of the mounting groove 21121. The second housing 212 has ultrasonic welding rods at positions corresponding to the ultrasonic welding grooves. When the first housing 211 and the second housing 212 are assembled together, ultrasonic welding is used to ultrasonically weld the first housing 211 and the second housing 212 together.
[0068] The charging assembly includes a first circuit board 2131, a second circuit board 2133, a charging connector 2132, an electrical connector 2134, and a battery cell 2135. The charging connector 2132 is disposed on the first circuit board 2131. The first housing 211 has a first charging clearance groove 21111, and the second housing 212 has a second charging clearance groove 2122. The first charging clearance groove 21111 and the second charging clearance groove 2122 together form a charging clearance hole, allowing at least a portion of an external power supply to be embedded or at least a portion of the charging interface to pass through, thereby electrically connecting the external power supply to the charging interface, and thus electrically connecting the charging assembly to the external power supply.
[0069] Specifically, the first latching part 12 has a charging clearance port 122, which is aligned with the charging clearance hole, that is, the charging clearance port 122 is aligned with the charging connector 2132. The charging clearance port 122 is used to provide an external power supply for electrical connection with the charging connector 2132, so that when the front protective shell 100 and the charging module 200 are combined into one unit, the game controller can be charged or the battery cell 2135 can be charged.
[0070] The first circuit board 2131 is electrically connected to the second circuit board 2133. An electrical connector 2134 is disposed on the second circuit board 2133. An electrical connection clearance hole 21124 is provided on the bottom wall of the mounting groove 21121. The electrical connection clearance hole 21124 is used for at least a portion of the power connector 2134 to pass through and be embedded in the charging port of the game controller, so that the charging component is electrically connected to the game controller. The second circuit board 2133 is thermally fused to the first housing 211.
[0071] Specifically, the second circuit board 2133 has a hot-melt hole 21331, and the bottom wall of the mounting groove 21121 near the receiving cavity 215 has a hot-melt pillar 21122. When the hot-melt pillar 21122 passes through the hot-melt hole 21331 and is hot-melted, the second circuit board 2133 is hot-melted to the first housing 211. The electrical connector 2134 is at least partially clamped between the second circuit board 2133 and the bottom wall of the mounting groove 21121.
[0072] The battery cell 2135 is electrically connected to the first circuit board 2131 or the second circuit board 2133 to charge the game controller or be charged by an external power source.
[0073] A magnetic component 214 is provided inside the receiving cavity 215, and the magnetic component 214 is located near the bottom wall of the mounting groove 21121. The portion of the game controller that is inserted into the mounting groove 21121 is provided with a magnetic mating component. When the portion of the game controller is inserted into the mounting groove 21121, the magnetic component 214 and the magnetic mating component are magnetically connected, so that the game controller and the charging module 200 are magnetically connected, thereby improving the stability of the connection between the game controller and the charging module 200.
[0074] The bottom wall of the mounting groove 21121 is provided with a first magnetic limiting part 21123, which is disposed along the edge of the magnetic member 214 and extends toward the other handle connection part 2112 to limit the displacement of the magnetic member 214 in the first direction X and the second direction Y. The second housing 212 is provided with a second magnetic limiting part 2121, which extends at least partially toward the second body 2111. When the first housing 211 and the second housing 212 are assembled together, the second magnetic limiting part 2121 abuts against the end of the magnetic member 214 away from the mounting groove 21121, and the end of the magnetic member 214 near the mounting groove 21121 abuts against the bottom wall of the mounting groove 21121, thereby limiting the displacement of the magnetic member 214 in the third direction Z.
[0075] The above is only used to illustrate the technical solution of this utility model and not 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 game controller charging device (1000) for use with a game controller, wherein the game controller has buttons on its first surface in a first direction (X), characterized in that, The gamepad charging device (1000) includes a front protective shell (100) and a charging module (200). The charging module (200) is detachably connected to the gamepad and is used to charge the gamepad. The front protective shell (100) is detachably connected to the charging module (200). The front protective shell (100) covers the side of the charging module (200) in the first direction (X) and covers the side of the gamepad in the first direction (X).
2. The handle charging device (1000) as described in claim 1, characterized in that, The front protective shell (100) includes a first body (11), a first latching part (12), and a second latching part (13). The first body (11) covers the charging module (200) on the side in the first direction (X) and covers the game controller on the side in the first direction (X). The first latching part (12) and the second latching part (13) are respectively disposed at opposite ends of the first body (11). The first latching part (12) and the second latching part (13) are latched with the charging module (200) to detachably connect the charging module (200) and the front protective shell (100).
3. The handle charging device (1000) as described in claim 2, characterized in that, The direction in which the second latching portion (13) points toward the first latching portion (12) is designated as the second direction (Y), which is perpendicular to the first direction (X). The first latching portion (12) extends at least partially in the opposite direction to the first direction (X), and at least partially at one end away from the first body (11) extends in the opposite direction to the second direction (Y) to latch one end of the charging module (200) in the second direction (Y). The second latching portion (13) extends at least partially in the opposite direction to the first direction (X), and at least partially at one end away from the first body (11) extends in the second direction (Y) to latch one end of the charging module (200) in the opposite direction to the second direction (Y).
4. The handle charging device (1000) as described in claim 3, characterized in that, The first snap-fit portion (12) has a first snap-fit rib (121) on the side facing the charging module (200), and the first snap-fit rib (121) is at least partially close to the end of the first snap-fit portion (12) away from the first body (11); the second snap-fit portion (13) has a second snap-fit rib (131) on the side facing the charging module (200), and the second snap-fit rib (131) is at least partially close to the end of the second snap-fit portion (13) away from the first body (11).
5. The handle charging device (1000) as described in claim 4, characterized in that, The first snap-fit rib (121) extends at least partially along the first snap-fit portion (12) and is close to the first body (11); the second snap-fit rib (131) extends at least partially along the second snap-fit portion (13) and is close to the first body (11).
6. The handle charging device (1000) as described in claim 2, characterized in that, The direction in which the second latching portion (13) points toward the first latching portion (12) is designated as the second direction (Y), which is perpendicular to the first direction (X); the second latching portion (13) is provided with a lever portion (14) at one end away from the first body (11), the lever portion (14) extending at least partially in the opposite direction of the first direction (X) and in the opposite direction of the second direction (Y); and / or, the first latching portion (12) is provided with a lever portion (14) at one end away from the first body (11), the lever portion (14) extending at least partially in the opposite direction of the first direction (X) and in the second direction (Y).
7. The handle charging device (1000) as described in claim 6, characterized in that, The lever part (14) has a groove (141) on the side near the charging module (200).
8. The handle charging device (1000) as described in claim 2, characterized in that, The first main body (11) is provided with a storage module (112) on the side opposite to the first direction (X), and the storage module (112) is used to store game cards (2000).
9. The handle charging device (1000) as claimed in claim 1, characterized in that, It also includes a handle protective shell (300) that is detachably connected to the game controller to cover one side of the game controller in the opposite direction to the first direction (X).
10. The handle charging device (1000) as claimed in claim 1, characterized in that, The charging module (200) includes a housing (21) and a charging component. The housing (21) has a mounting slot (21121) for at least a portion of the game controller to be inserted, so that the housing (21) is detachably connected to the game controller. The housing (21) is configured to form a receiving cavity (215), and the charging component is at least partially received in the receiving cavity (215). The charging component is electrically connected to the game controller and electrically connected to an external power source to charge the game controller. Alternatively, the charging component includes a battery cell (2135), which is electrically connected to the game controller to charge the game controller.