Handle assembly and electronic device assembly
By designing a retractable game controller assembly, the problem of limited compatibility with specific devices in existing technologies has been solved, achieving compatibility and flexible use with a variety of electronic devices, and enhancing the product's applicability and market competitiveness.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- VIVO MOBILE COMM CO LTD
- Filing Date
- 2026-04-27
- Publication Date
- 2026-06-12
AI Technical Summary
Existing game controllers have limited usage scenarios and poor compatibility because the left and right handles can only be fitted with electronic devices of specific shapes and sizes.
A handle assembly was designed, wherein the first handle and the second handle are slidably connected to the outer shell through a telescopic connection structure, which can adjust the spacing of the clamping sides to clamp electronic devices of different shapes and sizes, and can be spliced into an integral structure.
The improved compatibility of the handle components allows them to be used with electronic devices of different shapes and sizes, enriching usage scenarios and enhancing product performance and market competitiveness.
Smart Images

Figure CN122183139A_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of controller technology, specifically relating to a controller assembly and an electronic device assembly. Background Technology
[0002] In related technologies, game controllers include separate left and right controllers. After the game controllers and electronic devices are assembled, the electronic devices are sandwiched between the left and right controllers, and the left and right controllers are arranged alternately.
[0003] Both the left and right game controllers are assembled with the electronic devices by encasing them; that is, the first part of the electronic device is embedded in the left controller, and the second part is embedded in the right controller. To ensure assembly stability, the area covered by the electronic devices on both the left and right controllers needs to be increased, and the shapes of the left and right controllers must be the same as the shapes of the electronic devices. In other words, the left and right game controllers can only be assembled with electronic devices of specific shapes and sizes, limiting the usage scenarios of the game controllers and resulting in poor compatibility. Summary of the Invention
[0004] This application aims to provide a gamepad assembly and an electronic device assembly, which can solve the technical problem in the related art that the use scenarios of gamepads are limited and the compatibility of gamepads is poor because the left and right gamepads can only be assembled with electronic devices of specific shapes and sizes.
[0005] To solve the above-mentioned technical problems, this application is implemented as follows:
[0006] In a first aspect, embodiments of this application propose a handle assembly, comprising: a first handle, the first handle including a first housing and a first connecting structure, the first connecting structure being slidably connected to the first housing, and a first mating member provided on the first connecting structure; a second handle, the second handle including a second housing and a second connecting structure, the second connecting structure being slidably connected to the second housing, the second connecting structure being provided with a second mating member, the first mating member and the second mating member being detachably connected, and at least one of the first connecting structure and the second connecting structure being a retractable structure; when the handle assembly is in a first state, the first housing and the second housing are arranged separately, the first mating member extends out of a first clamping side of the first housing, the second mating member extends out of a second clamping side of the second housing, and the first mating member and the second mating member are connected so that the first connecting structure, the second connecting structure, the first clamping side and the second clamping side together enclose a clamping area, the clamping area being used to clamp an external electronic device; when the handle assembly is in a second state, the first housing and the second housing are spliced together, the first clamping side abuts against the second clamping side, and a first mounting cavity is enclosed between the first housing and the second housing, and both the first connecting structure and the second connecting structure are located within the first mounting cavity.
[0007] Secondly, embodiments of this application propose an electronic device assembly, including: an electronic device; and the handle assembly mentioned in the first aspect, the handle assembly being communicatively connected to the electronic device; when the handle assembly is in a first state, the electronic device is clamped within a clamping area jointly enclosed by a first connecting structure, a second connecting structure, a first clamping side, and a second clamping side; when the handle assembly is in a second state, the electronic device is separated from the handle assembly; when the handle assembly is in a third state, the first handle is separated from the second handle, the first connecting structure extends out of the first housing, the first clamping side abuts against the outer peripheral wall of the electronic device, the suction cup structure of the handle assembly adsorbs the electronic device, and the suction cup structure is located between the first clamping side and the camera module of the electronic device.
[0008] In embodiments of this application, the handle assembly includes a first handle and a second handle.
[0009] The first handle includes a first housing and a first connecting structure. The first connecting structure is slidably connected to the first housing, and a first mating member is provided on the first connecting structure. The first connecting structure is movable relative to the first housing to switch between a first extended position and a first retracted position. When the first connecting structure moves relative to the first housing, the first mating member also moves relative to the first housing.
[0010] The second handle includes a second housing and a second connecting structure. The second connecting structure is slidably connected to the second housing, and a second mating member is provided on the second connecting structure. The second connecting structure is movable relative to the second housing to switch between a second extended position and a second retracted position. When the second connecting structure moves relative to the second housing, the second mating member also moves relative to the second housing.
[0011] The first mating part and the second mating part can be detached and connected. The first mating part can be connected to the second mating part, and the first mating part can also be disassembled and separated from the second mating part.
[0012] The first outer shell can abut against the second outer shell to achieve splicing, and the first outer shell can also be separated from the second outer shell.
[0013] The first housing has a first clamping side, and the second housing has a second clamping side.
[0014] When the handle assembly needs to be assembled with an electronic device and held with both hands, the first housing of the first handle and the second housing of the second handle are arranged separately, that is, the first housing and the second housing are arranged with an interval. The first connecting structure and the second connecting structure are slid, causing the first mating member to extend from the first clamping side of the first housing (that is, the first connecting structure is in the first extended position), and the second mating member to extend from the second clamping side of the second housing (that is, the second connecting structure is in the second extended position). Then, the first mating member and the second mating member are connected. The first connecting structure, the second connecting structure, the first clamping side, and the second clamping side together enclose a clamping area for clamping an external electronic device. The external electronic device is clamped within the clamping area, which can clamp external electronic devices of different widths. The first clamping side and the second clamping side are connected together through the first connecting structure and the second connecting structure to meet the usage requirements of assembling the handle assembly with the electronic device. Therefore, it can be seen that the handle assembly of this application is assembled with the external electronic device by clamping, which differs from the embedded assembly method in related technologies. The first and second connecting structures function as cantilever arms, ensuring the spacing between the first and second clamping sides and meeting the requirements for effective assembly of the handle assembly and the electronic device. The dimension of the electronic device in the direction perpendicular to the first and second housings is its width.
[0015] At least one of the first connection structure and the second connection structure is a scalable structure. That is, the first connection structure is a scalable structure, or the second connection structure is a scalable structure, or both the first connection structure and the second connection structure are scalable structures.
[0016] The telescopic structure allows the length of at least one of the first connecting structure and the second connecting structure to be adjustable. It is understood that the position of at least one of the first mating member and the second mating member relative to the first housing is adjustable.
[0017] When the handle assembly is in its first state, the distance between the first clamping side and the second clamping side can be adjusted by adjusting the position of the first connecting structure relative to the first housing and by adjusting the position of the second connecting structure relative to the second housing. The distance between the first clamping side and the second clamping side can also be further adjusted by adjusting the length of at least one of the first and second connecting structures. That is, the range of the distance between the first and second clamping sides can be further increased, allowing the handle assembly to be used with larger electronic devices and improving its compatibility. For example, the handle assembly can be used with mobile phones of different shapes and sizes. It can also be used with tablets of different shapes and sizes. The use cases of the handle assembly are not limited by the shape and size of the electronic device; its high compatibility enhances product performance and market competitiveness.
[0018] When the first handle and the second handle need to be combined into a single handle structure, the first connecting structure and the second connecting structure are slid in opposite directions, causing the first connecting structure to move to the first storage position and the second connecting structure to move to the second storage position. This reduces the size of the portion of the first connecting structure exposed on the first clamping side and the portion of the second connecting structure exposed on the second clamping side. The first outer shell and the second outer shell are then aligned, so that the first clamping side abuts against the second clamping side. In other words, the first outer shell and the second outer shell are spliced together, and a first mounting cavity is formed between the first outer shell and the second outer shell. The first mounting cavity serves to accommodate the first connecting structure and the second connecting structure. At this time, the first handle and the second handle are integrated into a single handle structure.
[0019] Therefore, it can be seen that the present application has reasonably set the cooperation structure of the first handle and the second handle, so that the first handle and the second handle can be used with electronic devices of different shapes and sizes, and the first handle and the second handle can also be combined into a whole handle structure, which enriches the use function of the handle component.
[0020] Additional aspects and advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this application. Attached Figure Description
[0021] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:
[0022] Figure 1 This is an exploded view from a first perspective of a handle assembly according to an embodiment of this application;
[0023] Figure 2 This is a schematic diagram of the first part of the structure of the first handle according to an embodiment of this application;
[0024] Figure 3 This is a schematic diagram of the second part of the structure of the first handle according to an embodiment of this application;
[0025] Figure 4 This is a schematic diagram of the third part of the structure of the first handle according to an embodiment of this application;
[0026] Figure 5 This is a schematic diagram of the fourth part of the structure of the first handle according to an embodiment of this application;
[0027] Figure 6 This is an exploded view of a suction cup structure according to an embodiment of this application;
[0028] Figure 7This is a schematic diagram of the base structure according to an embodiment of this application;
[0029] Figure 8 This is a first-view structural schematic diagram of the suction cup holder according to an embodiment of this application;
[0030] Figure 9 This is a second-view structural schematic diagram of the suction cup holder according to an embodiment of this application;
[0031] Figure 10 This is a schematic diagram of the structure of the third support according to an embodiment of this application;
[0032] Figure 11 This is a schematic diagram of the fifth part of the structure of the first handle according to an embodiment of this application;
[0033] Figure 12 This is a schematic diagram of the structure of a first handle and an electronic device according to an embodiment of this application;
[0034] Figure 13 This is a schematic diagram of the first part of the structure of an electronic device component according to the first embodiment of this application;
[0035] Figure 14 This is a schematic diagram of the first part of the electronic device component according to the second embodiment of this application;
[0036] Figure 15 This is a schematic diagram of the sixth part of the structure of the first handle according to an embodiment of this application;
[0037] Figure 16 This is a schematic diagram of the seventh part of the structure of the first handle according to an embodiment of this application;
[0038] Figure 17 This is a schematic diagram of the eighth part of the structure of the first handle according to an embodiment of this application;
[0039] Figure 18 This is a schematic diagram of the ninth part of the structure of the first handle according to an embodiment of this application;
[0040] Figure 19 This is a schematic diagram of the first part of the snap-fit portion according to an embodiment of this application;
[0041] Figure 20 This is a schematic diagram of the second part of the snap-fit portion according to an embodiment of this application;
[0042] Figure 21 This is a schematic diagram of the structure of the second handle according to an embodiment of this application;
[0043] Figure 22 This is a schematic diagram of the first part of the structure of the second handle according to an embodiment of this application;
[0044] Figure 23 This is a schematic diagram of the second part of the structure of the second handle according to an embodiment of this application;
[0045] Figure 24 This is a first-view structural schematic diagram of a handle assembly according to an embodiment of this application;
[0046] Figure 25 This is a schematic diagram of the first part of the handle assembly according to an embodiment of this application;
[0047] Figure 26 This is a schematic diagram of the second part of the handle assembly according to an embodiment of this application;
[0048] Figure 27 This is a schematic diagram of the structure of an electronic device component according to the third embodiment of this application;
[0049] Figure 28 This is a partial structural schematic diagram of an electronic device component according to the third embodiment of this application;
[0050] Figure 29 This is a second-view structural schematic diagram of a handle assembly according to an embodiment of this application;
[0051] Figure 30 This is a schematic diagram of the structure of an electronic device component according to the fourth embodiment of this application;
[0052] Figure 31 This is an exploded view from a second perspective of a handle assembly according to an embodiment of this application;
[0053] Figure 32 This is a third-view structural schematic diagram of a handle assembly according to an embodiment of this application.
[0054] Figure label:
[0055] 1. Handle assembly, 10. First handle, 110. First housing, 111. First clamping side, 112. First grip, 120. First connecting structure, 121. First mating part, 122. First frame, 123. First bracket, 124. First elastic part, 125. Limiting protrusion, 130. First limiting structure, 131. Elastic protrusion, 132. First slot, 133. Snap-on part, 134. First baffle, 135. Snap-on, 136. Second elastic part, 137. Rotating shaft, 138. First swing arm, 139. Second swing arm, 140. Third elastic part 141 Upper shell, 142 Lower shell, 143 Locking screw, 144 Slide rail structure, 145 First screw, 146 Limiting post, 147 Fixing hole, 148 Mounting hole, 149 Pressure cap, 150 Second limiting structure, 151 Second baffle, 160 Unlock button, 170 Suction cup structure, 171 Mounting structure, 172 Channel, 173 Suction nozzle, 174 Switch structure, 175 Magnetic component, 176 First magnetic part, 177 Third bracket, 178 Handle, 179 Sealing part, 180 Fifth elastic part, 181 Bottom 182 Suction Cup Seat, 183 First Guide Block, 184 Second Mounting Cavity, 185 Clearance Channel, 186 Clearance Notch, 187 First Guide Groove, 188 Locking Ring, 189 Groove, 190 Break, 191 First Fastener, 210 Second Fastener, 220 Alignment Boss, 230 Alignment Groove, 240 Mating Protrusion, 250 First Magnetic Structure, 260 Mating Recess, 270 Second Magnetic Structure, 280 First Remote Control, 290 Directional Key, 300 First Shoulder Button, 40 Second Handle, 410 Second 411 Second clamping side, 412 Second grip, 420 Second connecting structure, 421 Second mating part, 422 Second frame, 423 Second bracket, 430 Fourth elastic part, 440 First mounting cavity, 450 Operating surface, 460 Second joystick, 470 Action button, 480 Second shoulder button, 490 Clamping area, 500 Clearance groove, 510 Fourth magnetic part, 520 Fourth magnetic mating part, 530 Second screw, 5 Electronic device assembly, 50 Electronic device, 51 Camera module, 60 Magnetic mating part. Detailed Implementation
[0056] The embodiments of this application will now be described in detail. Examples of these embodiments are illustrated in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.
[0057] The terms "first" and "second" in the specification and claims of this application may explicitly or implicitly include one or more of the features. In the description of this application, unless otherwise stated, "multiple" means two or more. Furthermore, "and / or" in the specification and claims indicates at least one of the connected objects, and the character " / " generally indicates that the preceding and following objects are in an "or" relationship.
[0058] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or a link; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0059] The following is combined Figures 1 to 32 The present application describes a handle assembly 1 and an electronic device assembly 5 according to embodiments thereof.
[0060] like Figure 1 , Figure 16 , Figure 24 , Figure 27 , Figure 28 , Figure 29 , Figure 30 , Figure 31 and Figure 32As shown, according to some embodiments of this application, the handle assembly 1 includes: a first handle 10, the first handle 10 including a first housing 110 and a first connecting structure 120, the first connecting structure 120 being slidably connected to the first housing 110, and a first mating member 121 provided on the first connecting structure 120; a second handle 40, the second handle 40 including a second housing 410 and a second connecting structure 420, the second connecting structure 420 being slidably connected to the second housing 410, the second connecting structure 420 being provided with a second mating member 421, the first mating member 121 and the second mating member 421 being detachably connected, and at least one of the first connecting structure 120 and the second connecting structure 420 being a telescopic structure; when the handle assembly 1 is in a first state, the first housing 110 and the second housing 410 are arranged separately, the first... A mating component 121 extends out of the first clamping side 111 of the first housing 110, and a second mating component 421 extends out of the second clamping side 411 of the second housing 410. The first mating component 121 and the second mating component 421 are connected so that the first connecting structure 120, the second connecting structure 420, the first clamping side 111 and the second clamping side 411 together enclose a clamping area 490. The clamping area 490 is used to clamp an external electronic device 50. When the handle assembly 1 is in the second state, the first housing 110 and the second housing 410 are spliced together, the first clamping side 111 abuts against the second clamping side 411, and a first mounting cavity 440 is enclosed between the first housing 110 and the second housing 410. The first connecting structure 120 and the second connecting structure 420 are both located within the first mounting cavity 440.
[0061] In this embodiment, the handle assembly 1 includes a first handle 10 and a second handle 40. The first handle 10 and the second handle 40 are two independent structures.
[0062] The first handle 10 includes a first housing 110 and a first connecting structure 120. The first connecting structure 120 is slidably connected to the first housing 110. The first connecting structure 120 is provided with a first mating member 121. The first connecting structure 120 can move relative to the first housing 110 to switch between a first extended position and a first retracted position. When the first connecting structure 120 moves relative to the first housing 110, the first mating member 121 also moves relative to the first housing 110.
[0063] The second handle 40 includes a second housing 410 and a second connecting structure 420. The second connecting structure 420 is slidably connected to the second housing 410. The second connecting structure 420 is provided with a second mating member 421. The second connecting structure 420 is movable relative to the second housing 410 to switch between a second extended position and a second retracted position. When the second connecting structure 420 moves relative to the second housing 410, the second mating member 421 also moves relative to the second housing 410.
[0064] The first mating part 121 can be connected to the second mating part 421, and the first mating part 121 can also be disassembled and separated from the second mating part 421.
[0065] The first outer shell 110 can abut against the second outer shell 410, and the first outer shell 110 can also be separated from the second outer shell 410.
[0066] The first outer shell 110 has a first clamping side 111, and the second outer shell 410 has a second clamping side 411.
[0067] When the handle assembly 1 needs to be assembled with the electronic device 50 and the handle assembly 1 is held with both hands, the first housing 110 of the first handle 10 and the second housing 410 of the second handle 40 are arranged separately, that is, the first housing 110 and the second housing 410 are arranged at intervals. The first connecting structure 120 and the second connecting structure 420 are slid so that the first mating member 121 extends out of the first clamping side 111 of the first housing 110 (that is, the first connecting structure 120 is in the first extended position), and the second mating member 421 extends out of the second clamping side 411 of the second housing 410 (that is, the second connecting structure 420 is in the second extended position). Then the first mating member 121 and the second mating member 421 are connected. The first connecting structure 120, the second connecting structure 420, the first clamping side 111 and the second clamping side 411 together enclose a clamping area 490 for clamping the external electronic device 50. The external electronic device 50 is clamped in the clamping area 490. The first clamping side 111 and the second clamping side 411 are connected together by the first connecting structure 120 and the second connecting structure 420 to meet the usage requirements of assembling the handle assembly 1 with the electronic device 50. Therefore, it can be seen that the handle assembly 1 and the external electronic device 50 of this application are assembled together by clamping, which differs from the embedded assembly method in related technologies.
[0068] The first connecting structure 120 and the second connecting structure 420 function as cantilever arms, ensuring the distance between the first clamping side 111 and the second clamping side 411, thus meeting the usage requirements for effective assembly of the handle assembly 1 and the electronic device 50. At least one of the first connecting structure 120 and the second connecting structure 420 is a retractable structure. That is, the first connecting structure 120 is a retractable structure, or the second connecting structure 420 is a retractable structure, or both the first connecting structure 120 and the second connecting structure 420 are retractable structures.
[0069] The telescopic structure allows the length of at least one of the first connecting structure 120 and the second connecting structure 420 to be adjustable. It is understood that the position of at least one of the first mating member 121 and the second mating member 421 relative to the first housing 110 is adjustable.
[0070] When the handle assembly 1 is in the first state, the distance between the first clamping side 111 and the second clamping side 411 can be adjusted by adjusting the position of the first connecting structure 120 relative to the first housing 110 and the position of the second connecting structure 420 relative to the second housing 410. The distance between the first clamping side 111 and the second clamping side 411 can also be further adjusted by adjusting the length of at least one of the first connecting structure 120 and the second connecting structure 420. That is, the range of the distance between the first clamping side 111 and the second clamping side 411 can be further increased, allowing the handle assembly 1 to be used with larger electronic devices 50, further improving the compatibility of the handle assembly 1. For example, the handle assembly 1 can be used with mobile phones of different shapes and sizes. For example, the handle assembly 1 can be used with tablet computers of different shapes and sizes. The use cases of the handle assembly 1 are not limited by the shape and size of the electronic device 50; the handle assembly 1 has high compatibility, which can improve the product's performance and market competitiveness. When the first handle 10 and the second handle 40 need to be combined into a single handle structure, the first connecting structure 120 and the second connecting structure 420 are slid in the opposite direction, so that the first connecting structure 120 moves to the first storage position and the second connecting structure 420 moves to the second storage position. This reduces the size of the portion of the first connecting structure 120 exposed on the first clamping side 111 and the portion of the second connecting structure 420 exposed on the second clamping side 411. The first outer shell 110 and the second outer shell 410 are then aligned, so that the first clamping side 111 abuts against the second clamping side 411. In other words, the first outer shell 110 and the second outer shell 410 are spliced together, and the first outer shell 110 and the second outer shell 410 enclose a first mounting cavity 440. The first mounting cavity 440 has the function of accommodating the first connecting structure 120 and the second connecting structure 420. At this time, the first handle 10 and the second handle 40 are integrated into a single handle structure.
[0071] Therefore, it can be seen that the present application has reasonably set the cooperation structure of the first handle 10 and the second handle 40, so that the first handle 10 and the second handle 40 can be used with electronic devices 50 of different shapes and sizes, and the first handle 10 and the second handle 40 can also be combined into a whole handle structure, which enriches the use function of the handle assembly 1.
[0072] It is understood that the external electronic device 50 refers to a device that is independent of the handle assembly 1; the electronic device 50 is not a component of the handle assembly 1. In some embodiments, such as Figure 4 As shown, both the first housing 110 and the second housing 410 have an operating surface 450; in the first direction, there is a height difference between the position of either the first connecting structure 120 or the second connecting structure 420 and the position of the operating surface 450.
[0073] In this embodiment, both the first outer shell 110 and the second outer shell 410 have an operating surface 450. That is, the first outer shell 110 has an operating surface 450, the second outer shell 410 has an operating surface 450, and the unlock button 160 and the joystick of the first handle 10 and the second handle 40 are provided on the operating surface 450.
[0074] In the first direction, there is a height difference between the position of the first connecting structure 120 and the position of the operating surface 450, and there is a height difference between the position of the second connecting structure 420 and the position of the operating surface 450, so as to meet the usage requirements of the electronic device 50 being clamped within the clamping area 490 jointly enclosed by the first connecting structure 120, the second connecting structure 420, the first clamping side 111 and the second clamping side 411.
[0075] For example, the first mating member 121 and the second mating member 421 are detachably connected.
[0076] For example, the first housing 110 and the second housing 410 are detachably connected.
[0077] In some embodiments, such as Figure 1 , Figure 3 and Figure 4 As shown, the first connecting structure 120 is a telescopic structure, and the first connecting structure 120 includes: a first frame 122, which is slidably connected to the first outer shell 110; a first bracket 123, which is slidably connected to the first frame 122, and the portion of the first bracket 123 located outside the first frame 122 is provided with a first mating part 121; and a first elastic part 124, which is connected between the first frame 122 and the first bracket 123, and the first elastic part 124 and the first mating part 121 are located at both ends of the first bracket 123.
[0078] In this embodiment, the first connecting structure 120 includes a first frame 122, a first bracket 123, and a first elastic part 124.
[0079] The first frame 122 is slidably connected to the first outer shell 110, and the first bracket 123 is slidably connected to the first frame 122. The first frame 122, the first bracket 123 and the first outer shell 110 cooperate to make the first connecting structure 120 a two-stage telescopic structure, which can further adjust the distance between the first clamping side 111 and the second clamping side 411 when the handle assembly 1 is in the first state.
[0080] A portion of the first bracket 123 is located outside the first frame 122. The portion of the first bracket 123 located outside the first frame 122 is provided with a first mating member 121. The positions of the first mating member 121 and the second mating member 421 can be matched by pulling out the portion of the first bracket 123 located outside the first frame 122, so as to meet the usage requirements of connecting the first mating member 121 and the second mating member 421.
[0081] The first elastic part 124 is connected between the first frame 122 and the first bracket 123. The first elastic part 124 and the first mating part 121 are located at both ends of the first bracket 123. The first elastic part 124 can provide a continuous clamping force.
[0082] It is understandable that when the first mating part 121 and the second mating part 421 are connected, the distance between the first housing 110 and the second housing 410 is increased according to the external dimensions of the electronic device 50, so that the electronic device 50 is clamped between the first clamping side 111 and the second clamping side 411.
[0083] When the first mating part 121 and the second mating part 421 are separated, the first elastic part 124 can drive the first bracket 123 to reset.
[0084] For example, the first elastic part 124 includes coil springs and tension springs, etc., which will not be listed here.
[0085] In some embodiments, such as Figure 4 and Figure 5 As shown, the first handle 10 also includes a first limiting structure 130 and a second limiting structure 150. The first limiting structure 130 is used to limit the length of the portion of the first frame 122 extending out of the first clamping side 111, and the second limiting structure 150 is used to limit the length of the portion of the first bracket 123 extending out of the first frame 122.
[0086] In this embodiment, the first handle 10 further includes a first limiting structure 130, which is used to limit the length of the portion of the first frame 122 extending out of the first clamping side 111. The first limiting structure 130 has the functions of preventing detachment and positioning.
[0087] Specifically, the first limiting structure 130 can prevent the first frame 122 from sliding out of the first outer shell 110 as a whole, and the first limiting structure 130 can also prevent the clamping from becoming unstable due to the first frame 122 retracting too much.
[0088] The first handle 10 also includes a second limiting structure 150, which is used to limit the length of the portion of the first bracket 123 extending out of the first frame 122. The second limiting structure 150 has the functions of preventing detachment and positioning.
[0089] Specifically, the second limiting structure 150 can prevent the first bracket 123 from sliding out of the first frame 122 as a whole, and the second limiting structure 150 can also prevent the clamping from becoming unstable due to the first bracket 123 retracting too much.
[0090] In some embodiments, such as Figure 3 , Figure 4 and Figure 5 As shown, the first limiting structure 130 includes an elastic protrusion 131 and a first slot 132. The elastic protrusion 131 is disposed inside the first outer shell 110, and the first slot 132 is disposed in the first frame 122. The elastic protrusion 131 is used to detachably connect with the first slot 132. The first limiting structure 130 also includes a latching part 133, which is located between the elastic protrusion 131 and the first clamping side 111. The latching part 133 is movably connected to the inner surface of the first outer shell 110 and is used to detachably connect with the first slot 132. And / or the first limiting structure 130 also includes a first baffle 134, which is connected to the first frame 122. The first baffle 134 is used to abut against the inner surface of the first outer shell 110 to limit the maximum length of the portion of the first frame 122 extending out of the first outer shell 110.
[0091] In this embodiment, the first limiting structure 130 includes an elastic protrusion 131, a first slot 132, and a latching portion 133. The latching portion 133 is located between the elastic protrusion 131 and the first clamping side 111. Both the latching portion 133 and the elastic protrusion 131 are used to engage with the first slot 132. Alternatively, the first limiting structure 130 includes an elastic protrusion 131, a first slot 132, and a first baffle 134. The elastic protrusion 131 is used to engage with the first slot 132, and the first baffle 134 is used to engage with the inner surface of the first outer shell 110. Alternatively, the first limiting structure 130 includes an elastic protrusion 131, a first slot 132, a latching part 133, and a first baffle 134. The latching part 133 is located between the elastic protrusion 131 and the first clamping side 111. Both the latching part 133 and the elastic protrusion 131 are used to engage with the first slot 132. The first baffle 134 is used to engage with the inner surface of the first housing 110.
[0092] An elastic protrusion 131 is disposed within the first outer shell 110, and a first slot 132 is disposed within the first frame 122. When the elastic protrusion 131 is engaged within the first slot 132, the elastic protrusion 131 and the first slot 132 cooperate to limit the maximum retraction distance of the first frame 122 relative to the first outer shell 110. When the first connecting structure 120 is pulled outward, when the constant torque elastic force provided by the first elastic part 124 is greater than the limiting force between the elastic protrusion 131 and the first slot 132, the elastic protrusion 131 deforms, the first slot 132 separates from the elastic protrusion 131, and the first frame 122 can slide outward relative to the first outer shell 110.
[0093] For example, the elastic protrusion 131 includes a spring and an elastic ball, with the spring connected between the elastic ball and the first housing 110. When the constant torque force provided by the first elastic part 124 is greater than the limiting force between the elastic protrusion 131 and the first slot 132, the elastic ball compresses the spring, and the first slot 132 can separate from the elastic protrusion 131.
[0094] For example, the elastic protrusion 131 is an integral structure. When the constant torque elastic force provided by the first elastic part 124 is greater than the limiting force between the elastic protrusion 131 and the first slot 132, the elastic protrusion 131 is compressed and deformed. That is, the outer dimensions of the elastic protrusion 131 are changed, and the first slot 132 can be separated from the elastic protrusion 131.
[0095] The latching part 133 is movably connected to the inner surface of the first outer shell 110. The first slot 132 is provided in the first frame 122. When the latching part 133 is engaged in the first slot 132, the latching part 133 and the first slot 132 cooperate to limit the length of the portion of the first frame 122 extending out of the first clamping side 111, preventing the first connecting structure 120 from sliding out of the first outer shell 110 as a whole. When an external force is applied to the latching part 133, the latching part 133 shifts relative to the first outer shell 110, the latching part 133 separates from the first slot 132, and the first frame 122 can slide inward relative to the first outer shell 110.
[0096] The first baffle 134 is connected to the first frame 122. The first baffle 134 is used to abut against the inner surface of the first outer shell 110 to limit the maximum length of the portion of the first frame 122 extending out of the first outer shell 110, so as to prevent the first connecting structure 120 from sliding out of the first outer shell 110 as a whole.
[0097] When the first limiting structure 130 has the first baffle 134 and the buckle part 133, the first baffle 134 and the buckle part 133 have a double-layer protection function, preventing the first connecting structure 120 from sliding out of the first outer shell 110 as a whole, and providing structural support to ensure the safety and reliability of the product.
[0098] For example, the number of first baffles 134 is one.
[0099] For example, there are multiple first baffles 134, and the multiple first baffles 134 are arranged at circumferential intervals along the first frame 122.
[0100] For example, the first baffle 134 is arranged around the first frame 122, that is, the first baffle 134 is an annular plate.
[0101] In some embodiments, such as Figure 15 , Figure 17 , Figure 18 , Figure 19 and Figure 20 As shown, when the first limiting structure 130 includes a latching part 133, the latching part 133 includes a latch 135, a second elastic part 136, a rotating shaft 137, a first swing arm 138, a second swing arm 139, and a third elastic part 140; the rotating shaft 137 is rotatably connected to the first housing 110, and the first swing arm 138 and the second swing arm 139 are both disposed on the rotating shaft 137; the second elastic part 136 is connected between the rotating shaft 137 and the first housing 110, and the third elastic part 140 is connected between the latch 135 and the first housing 110. Between 10; the buckle 135 is used to cooperate with the first slot 132, and a part of the second swing arm 139 is located at the buckle 135; the first housing 110 is also provided with an unlock button 160, the unlock button 160 is movably connected to the first housing 110, and the first swing arm 138 is located at the unlock button 160; when the unlock button 160 is triggered, the unlock button 160 drives the rotating shaft 137 to rotate through the first swing arm 138, and the second swing arm 139 drives the buckle 135 to move away from the first slot 132.
[0102] In this embodiment, the latching part 133 includes a latch 135, a second elastic part 136, a rotating shaft 137, a first swing arm 138, a second swing arm 139, and a third elastic part 140.
[0103] The rotating shaft 137 is rotatably connected to the first housing 110, that is, the rotating shaft 137 can rotate relative to the first housing 110. The first swing arm 138 and the second swing arm 139 are both provided on the rotating shaft 137, and the first swing arm 138 and the second swing arm 139 can move synchronously with the rotating shaft 137.
[0104] The second elastic part 136 is connected between the pivot 137 and the first housing 110, and the third elastic part 140 is connected between the buckle 135 and the first housing 110. The first housing 110 is also provided with an unlock button 160, which is movably connected to the first housing 110. The first swing arm 138 is located at the unlock button 160, and a part of the second swing arm 139 is located at the buckle 135.
[0105] The second elastic part 136 and the third elastic part 140 cooperate to ensure the matching size of the buckle 135 and the first slot 132, so that the buckle 135 is limited in the first slot 132.
[0106] When it is necessary to release the limit of the latch 135 and the first slot 132, the unlock button 160 is triggered, causing the unlock button 160 to move relative to the first housing 110. When the unlock button 160 is triggered, the unlock button 160 drives the first swing arm 138 to rotate counterclockwise. The rotation of the first swing arm 138 can drive the rotating shaft 137 to rotate relative to the first housing 110. The rotation of the rotating shaft 137 will drive the second swing arm 139 to rotate counterclockwise. The rotation of the second swing arm 139 can drive the latch 135 to move away from the first slot 132, so as to separate the latch 135 and the first slot 132.
[0107] For example, the second elastic part 136 includes torsion springs and leaf springs, etc., which will not be listed here.
[0108] For example, the third elastic part 140 includes springs and sheet springs, etc., which will not be listed here.
[0109] For example, sliding the unlock button 160 triggers the unlock button 160.
[0110] For example, pressing the unlock button 160 triggers the unlock button 160.
[0111] In some embodiments, such as Figure 5 As shown, the second limiting structure 150 includes a second baffle 151, which is connected to the first bracket 123. The second baffle 151 is used to abut against the inner surface of the first frame 122 to limit the maximum length of the portion of the first bracket 123 extending out of the first frame 122.
[0112] In this embodiment, the second limiting structure 150 includes a second baffle 151, which is connected to the first bracket 123. The second baffle 151 is used to abut against the inner surface of the first frame 122 to limit the maximum length of the portion of the first bracket 123 extending out of the first frame 122, thereby preventing the first bracket 123 from sliding out of the first frame 122 as a whole, and providing structural support to ensure the safety and reliability of the product.
[0113] For example, the number of second baffles 151 is one.
[0114] For example, there are multiple second baffles 151, and the multiple second baffles 151 are arranged at intervals along the circumference of the first bracket 123.
[0115] For example, the second baffle 151 is arranged around the first bracket 123, that is, the second baffle 151 is an annular plate.
[0116] In some embodiments, such as Figure 22 and Figure 23 As shown, the second connecting structure 420 is a telescopic structure, and the second connecting structure 420 includes: a second frame 422, which is slidably connected to the second outer shell 410; a second bracket 423, which is slidably connected to the second frame 422, and the portion of the second bracket 423 located outside the second frame 422 is provided with a second mating member 421; and a fourth elastic part 430, which is connected between the second outer shell 410 and the side of the second frame 422 opposite to the second mating member 421.
[0117] In this embodiment, the second connection structure 420 includes a second frame 422, a second bracket 423, and a fourth elastic part 430.
[0118] The second frame 422 is slidably connected to the second outer shell 410, and the second bracket 423 is slidably connected to the second frame 422. The second frame 422, the second bracket 423, and the second outer shell 410 cooperate to make the second connecting structure 420 a two-stage telescopic structure, which can further adjust the distance between the first clamping side 111 and the second clamping side 411 when the handle assembly 1 is in the first state.
[0119] A portion of the second bracket 423 is located outside the second frame 422. The portion of the second bracket 423 located outside the second frame 422 is provided with a second mating member 421. The position of the first mating member 121 and the second mating member 421 can be matched by pulling out the portion of the second bracket 423 located outside the second frame 422, so as to meet the usage requirements of connecting the first mating member 121 and the second mating member 421.
[0120] The fourth elastic part 430 is connected between the second housing 410 and the second frame 422 on the side opposite to the second mating member 421, and the fourth elastic part 430 can provide a continuous clamping force.
[0121] It is understandable that when the first mating part 121 and the second mating part 421 are connected, the distance between the first housing 110 and the second housing 410 is increased according to the external dimensions of the electronic device 50, so that the electronic device 50 is clamped between the first clamping side 111 and the second clamping side 411.
[0122] When the first mating member 121 and the second mating member 421 are separated, the fourth elastic part 430 can drive the second bracket 423 to reset.
[0123] For example, the fourth elastic part 430 includes coil springs and tension springs, etc., which will not be listed here.
[0124] In some embodiments, the second frame 422 is provided with a third baffle, which abuts against the inner surface of the second housing 410 to limit the maximum length of the portion of the second frame 422 extending out of the second housing 410; the second bracket 423 is provided with a fourth baffle, which abuts against the inner surface of the second frame 422 to limit the maximum length of the portion of the second bracket 423 extending out of the second frame 422.
[0125] In this embodiment, the second frame 422 is provided with a third baffle, which is used to abut against the inner surface of the second outer shell 410 to limit the maximum length of the portion of the second frame 422 extending out of the second outer shell 410, so as to prevent the second connecting structure 420 from sliding out of the second outer shell 410 as a whole.
[0126] For example, the number of third baffles is one.
[0127] For example, there are multiple third baffles, which are arranged at circumferential intervals along the second frame 422.
[0128] For example, the third baffle is arranged around the second frame 422, that is, the third baffle is an annular plate.
[0129] The second bracket 423 is provided with a fourth baffle. The fourth baffle is used to abut against the inner surface of the second frame 422 to limit the maximum length of the part of the second bracket 423 that extends out of the second frame 422, so as to prevent the second bracket 423 from sliding out of the second frame 422 as a whole, and to provide structural support for ensuring the safety and reliability of the product.
[0130] For example, the number of fourth baffles is one.
[0131] For example, there are multiple fourth baffles, which are arranged at circumferential intervals along the second bracket 423.
[0132] For example, the fourth baffle is arranged around the second bracket 423, that is, the fourth baffle is an annular plate.
[0133] It is understandable that the third baffle has the same structure as the first baffle 134, and the fourth baffle has the same structure as the second baffle 151.
[0134] In some embodiments, such as Figure 3 , Figure 4 , Figure 6 , Figure 13 , Figure 14 , Figure 24 , Figure 28 , Figure 29 and Figure 31As shown, the first handle 10 also includes a suction cup structure 170, which is connected to the first connecting structure 120. The suction cup structure 170 is used for the installation and positioning of the first connecting structure 120. When the handle assembly 1 is in the first state, the suction cup structure 170 is located between the first clamping side 111 and the first mating member 121. The suction cup structure 170, the second clamping side 411, the second connecting structure 420 and the first connecting structure 120 form a clearance groove 500, which is used to avoid the camera module 51 of the electronic device 50.
[0135] In this embodiment, the first handle 10 further includes a suction cup structure 170, which is connected to the first connecting structure 120. The suction cup structure 170 is used for the installation and positioning of the first connecting structure 120. Specifically, the suction cup structure 170 can adsorb the outer surface of the electronic device 50, and a sealed space is formed between the suction cup structure 170 and the outer surface of the electronic device 50, thereby forming a negative pressure suction to ensure the reliability and stability of the connection with the electronic device 50.
[0136] The first handle 10 and the second handle 40 are two relatively independent structures. The first handle 10 can be used alone, or the electronic device 50 can be clamped between the first handle 10 and the second handle 40. Of course, the first handle 10 and the second handle 40 can also be combined into a single handle structure. The first mating part 121 on the first connecting structure 120 and the second mating part 421 on the second connecting structure 420 can be detached and connected.
[0137] When the first handle 10 needs to be used alone with the electronic device 50, that is, when the first handle 10 clamps the electronic device 50 from one side, the first clamping side 111 of the first handle 10 abuts against the outer peripheral wall of the electronic device 50, and the suction cup structure 170 will suck on the outer surface of the electronic device 50 to ensure that the first handle 10 and the electronic device 50 are securely assembled together.
[0138] When the handle assembly 1 needs to be assembled with the electronic device 50 and held with both hands, the electronic device 50 is clamped between the first clamping side 111 and the second clamping side 411. At this time, the suction cup structure 170, the second clamping side 411, the second connecting structure 420, and the first connecting structure 120 form a clearance groove 500, which is used to avoid the camera module 51 of the electronic device 50. The camera module 51 of the electronic device 50 is located within the clearance groove 500, and the suction cup structure 170, the second connecting structure 420, and the first connecting structure 120 will not interfere with the camera module 51. Although the suction cup structure 170 protrudes from the first connecting structure 120, the suction cup structure 170 will not interfere with the camera module 51. The handle assembly 1 can be assembled with electronic devices 50 with different rear camera protrusion heights. The usage scenarios of the handle assembly 1 are not limited by the rear camera protrusion height of the electronic device 50. The handle assembly 1 has high compatibility, which can improve the product's performance and market competitiveness.
[0139] It is understandable that because of the suction cup structure 170, there is a height difference between the position of the suction cup structure 170 and the position of the first connecting structure 120. The suction cup structure 170 adheres to the outer surface of the electronic device 50, and a gap is formed between the electronic device 50 and the second connecting structure 420, which forms a clearance groove 500, providing space support for the camera module 51 that houses the electronic device 50.
[0140] In some embodiments, such as Figure 6 As shown, the suction cup structure 170 includes: a mounting structure 171, which is connected to a first connecting structure 120 and has a channel 172; a suction nozzle 173, which is connected to the mounting structure 171 and at least a portion of the suction nozzle 173 is located on the side of the mounting structure 171 away from the first connecting structure 120, and the area enclosed by the suction nozzle 173 communicates with the channel 172; and a switch structure 174, which is movably connected to the mounting structure 171 and is used to open or close the channel 172.
[0141] In this embodiment, the suction cup structure 170 includes a mounting structure 171, a suction nozzle 173, and a switch structure 174.
[0142] The nozzle 173 is connected to the mounting structure 171, and the switch structure 174 is movably connected to the mounting structure 171. Both the nozzle 173 and the switch structure 174 are connected to the first connecting structure 120 through the mounting structure 171. The mounting structure 171 serves as the mounting carrier for the nozzle 173 and the switch structure 174, and has the function of installing and fixing the nozzle 173 and the switch structure 174.
[0143] The mounting structure 171 is provided with a channel 172. At least a portion of the suction nozzle 173 is located on the side of the mounting structure 171 away from the first connecting structure 120. The portion of the suction nozzle 173 located on the side of the mounting structure 171 away from the first connecting structure 120 is used to adsorb the electronic device 50. The area enclosed by the suction nozzle 173 is connected to the channel 172.
[0144] When the suction cup structure 170 needs to adsorb the outer surface of the electronic device 50, the suction nozzle 173 adsorbs onto the outer surface of the electronic device 50, and the switch structure 174 seals the channel 172. A sealed space is formed between the electronic device 50, the suction nozzle 173 and the wall of the channel 172, and a negative pressure suction is generated to ensure the reliability and stability of the connection with the electronic device 50.
[0145] When it is necessary to separate the suction cup structure 170 and the electronic device 50, the switch structure 174 opens the channel 172, and the outside world is connected to the area between the suction nozzle 173 and the electronic device 50 through the channel 172, thereby losing the negative pressure. Without the help of negative pressure suction, the user can easily separate the suction cup structure 170 and the electronic device 50.
[0146] Therefore, by reasonably setting the structure of the suction cup structure 170, it not only meets the usage requirements of the suction cup structure 170 to effectively adsorb the electronic device 50, but also has the advantages of being easy to operate and highly feasible.
[0147] In some embodiments, such as Figure 8 , Figure 11 , Figure 13 and Figure 14 As shown, the first handle 10 also includes a magnetic suction member 175, which is disposed on the mounting structure 171 and is used for mounting and positioning the first connecting structure 120.
[0148] In this embodiment, the first handle 10 further includes a magnetic member 175, which is disposed on the mounting structure 171. The magnetic member 175 is magnetically attracted to the magnetic coupling member 60 at the electronic device 50. The magnetic member 175 is used for the mounting and positioning of the first connection structure 120.
[0149] Specifically, in its natural state, the switch structure 174 seals the channel 172. When the suction cup structure 170 of the first handle 10 approaches the electronic device 50, the magnetic suction member 175 and the magnetic mating member 60 magnetically attract each other, causing the nozzle 173 to come close to the electronic device 50. The magnetic suction member 175 and the magnetic mating member 60 cooperate to expel the air in the area enclosed between the nozzle 173 and the electronic device 50, thereby forming a negative pressure suction force. Under the dual adsorption effect of the magnetic attraction between the magnetic suction member 175 and the magnetic mating member 60 and the negative pressure suction force, the first handle 10 and the electronic device 50 can be stably and reliably assembled together. When it is necessary to separate the suction cup structure 170 and the electronic device 50, the switch structure 174 opens the channel 172, connecting the outside world with the sealed space at the head of the nozzle 173, thus losing the negative pressure. Without the negative pressure suction force, the suction cup structure 170 and the electronic device 50 can be separated simply by overcoming the magnetic attraction between the magnetic suction member 175 and the magnetic mating member 60.
[0150] For example, the magnetic attractor 175 includes any one or a combination of the following: samarium cobalt magnet, ferrite magnet, neodymium iron boron magnet and alnico magnet.
[0151] For example, the magnetic attraction component 60 includes any one or a combination of the following: samarium cobalt magnet, ferrite magnet, neodymium iron boron magnet, and alnico magnet.
[0152] For example, one of the magnetic attracting element 175 and the magnetic attraction element 60 is a permanent magnet, and the other is a soft magnetic element.
[0153] In some embodiments, such as Figure 8 As shown, the magnetic attractor 175 includes a plurality of first magnetic attracting parts 176, which are arranged at circumferential intervals along the channel 172.
[0154] In this embodiment, the magnetic suction member 175 includes a plurality of first magnetic suction portions 176, which are arranged at intervals along the circumference of the channel 172. When the plurality of first magnetic suction portions 176 are magnetically attracted to the magnetic suction mating member 60, the plurality of first magnetic suction portions 176 can uniformly squeeze the entire circumference of the suction nozzle 173 along the circumference of the channel 172, ensuring that all parts of the edge of the suction nozzle 173 can tightly fit the outer surface of the electronic device 50, ensuring the sealing of the connection between the suction nozzle 173 and the electronic device 50, and preventing air leakage.
[0155] At the same time, the multiple first magnetic suction parts 176 are magnetically attracted to the magnetic suction mating parts 60, which can provide a large anti-torsional torque. When the user operates the first handle 10, the first handle 10 is not easy to rotate, which can prevent slippage.
[0156] In addition, the multiple first magnetic suction parts 176 are magnetically attracted to the magnetic suction mating parts 60, and the setting position of the multiple first magnetic suction parts 176 also has the function of automatic position correction, which can automatically correct the first handle 10 to the correct installation position.
[0157] For example, when the magnetic attractant 175 includes a plurality of first magnetic attractant portions 176, the number of magnetic attractant mating members 60 is one, and each first magnetic attractant portion 176 is magnetically attracted to the magnetic attractant mating member 60.
[0158] For example, when the magnetic attracting member 175 includes a plurality of first magnetic attracting parts 176, the magnetic attracting mating member 60 includes a plurality of first magnetic attracting mating parts, each first magnetic attracting part 176 mating with at least one first magnetic attracting mating part, and the first magnetic attracting part 176 and the first magnetic attracting mating part are magnetically attracted to each other.
[0159] In some embodiments, such as Figure 6 and Figure 11 As shown, the switch structure 174 includes: a third bracket 177, which is movably connected to the mounting structure 171, the third bracket 177 having a handle 178 protruding from the outer peripheral wall of the mounting structure 171, and the third bracket 177 being movable relative to the mounting structure 171 in a first direction; a sealing part 179 disposed on the third bracket 177 for sealing the channel 172; and a fifth elastic part 180 abutting between the side of the sealing part 179 away from the channel 172 and the inner surface of the mounting structure 171.
[0160] In this embodiment, the switch structure 174 includes a third bracket 177, a sealing portion 179, and a fifth elastic portion 180.
[0161] The third bracket 177 is movably connected to the mounting structure 171. The sealing part 179 is provided on the third bracket 177. The third bracket 177 can move relative to the mounting structure 171 in the first direction. When the third bracket 177 moves in the first direction, the sealing part 179 can also move in the first direction under the drive of the third bracket 177.
[0162] The fifth elastic part 180 abuts against the side of the sealing part 179 away from the channel 172 and the inner surface of the mounting structure 171. The sealing part 179 can continuously press against the channel 172 under the elastic force of the fifth elastic part 180 to seal the channel 172.
[0163] The third bracket 177 has a handle 178 that protrudes from the outer peripheral wall of the mounting structure 171, that is, the handle 178 exposes the mounting structure 171. The user can press the handle 178 to drive the sealing part 179 away from the channel 172 in a first direction, thereby opening the channel 172 and connecting the outside with the sealed space of the nozzle head 173, thus losing the negative pressure.
[0164] When the external force applied to the handle 178 is removed, the fifth elastic part 180 will drive the sealing part 179 to reset and seal the channel 172.
[0165] For example, the fifth elastic part 180 includes springs and sheet springs, etc., which will not be listed here.
[0166] In some embodiments, such as Figure 6 , Figure 7 , Figure 9 , Figure 10 and Figure 11 As shown, the mounting structure 171 includes: a base 181; a suction cup seat 182, the base 181 being connected between the first connecting structure 120 and the suction cup seat 182, the suction cup seat 182 having a channel 172 and a first guide block 183, the suction cup seat 182 and the base 181 enclosing a second mounting cavity 184, a portion of the third bracket 177 of the switch structure 174, the sealing portion 179 of the switch structure 174 and the fifth elastic portion 180 of the switch structure 174 are all located within the second mounting cavity 184; the base 181... 1. A clearance channel 185 and a clearance notch 186 are provided. The handle 178 of the third bracket 177 extends out of the mounting structure 171 through the clearance channel 185. A part of the third bracket 177 protrudes in the direction away from the suction cup seat 182 to form a first guide groove 187. A first guide block 183 is located in the first guide groove 187. The first guide block 183 and the first guide groove 187 are in clearance fit. The first guide groove 187 is inserted into the clearance notch 186. The first guide groove 187 and the clearance notch 186 are in clearance fit.
[0167] In this embodiment, the mounting structure 171 includes a base 181 and a suction cup base 182.
[0168] The base 181 is connected between the first connecting structure 120 and the suction cup seat 182. The suction cup seat 182 and the base 181 enclose a second mounting cavity 184. The second mounting cavity 184 is used to install and fix a part of the third bracket 177, the sealing part 179 and the fifth elastic part 180, which can ensure the matching dimensions of the switch structure 174 and the mounting structure 171.
[0169] A portion of the third bracket 177 protrudes away from the suction cup base 182 to form a first guide groove 187. The suction cup base 182 has a channel 172 and a first guide block 183. The first guide block 183 is located within the first guide groove 187, and the first guide block 183 and the first guide groove 187 are in clearance fit. The first guide block 183 and the first guide groove 187 cooperate to guide and restrict the movement path of the third bracket 177 relative to the mounting structure 171. There is a gap between the first guide block 183 and the first guide groove 187, and there is a gap between the first guide groove 187 and the clearance notch 186. This not only ensures the guiding effect but also does not interfere with the movement of the third bracket 177.
[0170] The base 181 is provided with a clearance channel 185 and a clearance notch 186. The clearance channel 185 is used to avoid the handle 178, so that the handle 178 can extend out of the mounting structure 171 through the clearance channel 185, which can meet the usage requirements of the third bracket 177 moving relative to the mounting structure 171 in the first direction. The clearance notch 186 is used to avoid the first guide groove 187, so that the first guide groove 187 can be inserted into the clearance notch 186 to avoid interference with the first guide groove 187. The clearance notch 186 also has the function of limiting the third bracket 177 to prevent the third bracket 177 from being misaligned.
[0171] For example, the magnetic 175 is connected to the suction cup base 182.
[0172] In some embodiments, such as Figure 6 As shown, the suction cup structure 170 further includes: a locking ring 188, which surrounds the suction cup seat 182; a suction nozzle 173 is sandwiched between the locking ring 188 and the suction cup seat 182; the outer peripheral wall of the locking ring 188 is provided with a groove 189; and the locking ring 188 is also provided with a break 190; and a first fastener 191, which is detachably connected to the break 190 and is used to close the break 190 to fix the suction nozzle 173 and the suction cup seat 182.
[0173] In this embodiment, the suction cup structure 170 further includes a locking ring 188 and a first fastener 191.
[0174] The locking ring 188 and the first fastener 191 cooperate to install and fix the suction nozzle 173 and the suction cup seat 182, ensuring the mating dimensions of the suction nozzle 173 and the suction cup seat 182.
[0175] Specifically, a locking ring 188 is arranged around the suction cup base 182, and a suction nozzle 173 is clamped between the locking ring 188 and the suction cup base 182. The locking ring 188 also has a break 190, and a first fastener 191 is detachably connected to the break 190. The first fastener 191 is used to close the break 190 to fix the suction nozzle 173 and the suction cup base 182. The first fastener 191 may include bolts, screws, or rivets, etc., which will not be listed here.
[0176] The outer peripheral wall of the locking ring 188 is provided with a groove 189, which can reduce the structural rigidity of the part of the locking ring 188 with the groove 189. When the locking ring 188 is locked by the first fastener 191, the locking ring 188 can deform, thereby clamping and fixing the suction nozzle 173 to the suction cup seat 182.
[0177] In some embodiments, such as Figure 2 As shown, the first connecting structure 120 is provided with a limiting protrusion 125, which abuts against the outer peripheral wall of the suction cup structure 170; the first handle 10 also includes a second fastener 210, which is used to connect the first connecting structure 120 and the suction cup structure 170.
[0178] In this embodiment, the first connecting structure 120 is provided with a limiting protrusion 125, which abuts against the outer peripheral wall of the suction cup structure 170. That is, the limiting protrusion 125 is used to limit the displacement of the suction cup structure 170 relative to the first connecting structure 120, so as to ensure the fit size between the suction cup structure 170 and the first connecting structure 120.
[0179] The first handle 10 also includes a second fastener 210, which is used to connect the first connecting structure 120 and the suction cup structure 170. That is, the second fastener 210 cooperates with the limiting protrusion 125 to not only limit the suction cup structure 170, but also to securely assemble the suction cup structure 170 and the first connecting structure 120 together.
[0180] For example, the second fastener 210 includes bolts, screws, or rivets, etc., which are not listed here.
[0181] The wall surface against which the limiting protrusion 125 abuts and the suction cup structure 170 includes a planar segment and / or a curved segment.
[0182] In some embodiments, the first housing 110 and the second housing 410 are detachably connected; the connection structure of the first housing 110 and the second housing 410 includes any one or a combination of the following: snap-fit connection, magnetic connection and locking connection by a third fastener; and / or the connection structure of the first mating member 121 and the second mating member 421 includes any one or a combination of the following: snap-fit connection, magnetic connection and locking connection by a fourth fastener.
[0183] In this embodiment, the first outer shell 110 and the second outer shell 410 are detachably connected, that is, the first outer shell 110 and the second outer shell 410 can be assembled together, or the first outer shell 110 and the second outer shell 410 can be separated.
[0184] When the first handle 10 and the second handle 40 need to be combined into a single handle structure, the first clamping side 111 abuts against the second clamping side 411, and the first outer shell 110 can also be assembled with the second outer shell 410 to ensure the alignment dimensions of the first outer shell 110 and the second outer shell 410, to ensure a smooth transition at the connection between the first outer shell 110 and the second outer shell 410, and to ensure that the first outer shell 110 and the second outer shell 410 will not shift relative to each other, thus ensuring the integrity and consistency of the combination of the first handle 10 and the second handle 40.
[0185] When it is necessary to separate the first handle 10 and the second handle 40, it is only necessary to apply an force that overcomes the connection between the first handle 10 and the second handle 40 to separate them.
[0186] Specifically, the connection structure of the first housing 110 and the second housing 410 includes any one or a combination of the following: snap-fit connection, magnetic connection, and locking connection via a third fastener. That is, the first housing 110 and the second housing 410 are snap-fit connected, or the first housing 110 and the second housing 410 are magnetically connected, or the first housing 110 and the second housing 410 are locked together via a third fastener, or the first housing 110 and the second housing 410 are snap-fit connected in combination with magnetic connection, or the first housing 110 and the second housing 410 are snap-fit connected in combination with locking connection, or the first housing 110 and the second housing 410 are magnetically connected in combination with locking connection, or the first housing 110 and the second housing 410 are snap-fit connected in combination with magnetic connection and locking connection.
[0187] The third type of fastener includes bolts, screws, or rivets.
[0188] When the first outer shell 110 and the second outer shell 410 are snapped together, one of the first outer shell 110 and the second outer shell 410 is provided with a buckle, and the other of the first outer shell 110 and the second outer shell 410 is provided with a slot, and the buckle engages with the slot.
[0189] like Figure 31 As shown, when the first outer shell 110 and the second outer shell 410 are magnetically connected, one of the first outer shell 110 and the second outer shell 410 is provided with a fourth magnetic attraction part 510, and the other of the first outer shell 110 and the second outer shell 410 is provided with a fourth magnetic attraction mating part 520. The fourth magnetic attraction part 510 and the fourth magnetic attraction mating part 520 are magnetically attracted to each other.
[0190] For example, the fourth magnetic attraction part 510 includes any one or a combination of the following: samarium cobalt magnet, ferrite magnet, neodymium iron boron magnet and alnico magnet.
[0191] For example, the fourth magnetic attraction part 520 includes any one or a combination of the following: samarium cobalt magnet, ferrite magnet, neodymium iron boron magnet and alnico magnet.
[0192] For example, one of the fourth magnetic attraction part 510 and the fourth magnetic attraction engagement part 520 is a permanent magnet and the other is a soft magnetic component.
[0193] When the first housing 110 and the second housing 410 are locked together by a third fastener, the first housing 110 is provided with a first fastening hole, the second housing 410 is provided with a second fastening hole, and the third fastener passes through the first fastening hole and the second fastening hole.
[0194] In this embodiment, the first mating component 121 and the second mating component 421 are detachably connected, that is, the first mating component 121 and the second mating component 421 can be assembled together, and the first mating component 121 and the second mating component 421 can also be separated.
[0195] Specifically, the connection structure of the first mating member 121 and the second mating member 421 includes any one or a combination of the following: snap-fit connection, magnetic connection, and locking connection via a fourth fastener. That is, the first mating member 121 and the second mating member 421 are snap-fit connected, or the first mating member 121 and the second mating member 421 are magnetically connected, or the first mating member 121 and the second mating member 421 are locked together via a fourth fastener, or the first mating member 121 and the second mating member 421 are snap-fit connected in combination with magnetic connection, or the first mating member 121 and the second mating member 421 are snap-fit connected in combination with locking connection, or the first mating member 121 and the second mating member 421 are magnetically connected in combination with locking connection, or the first mating member 121 and the second mating member 421 are snap-fit connected in combination with magnetic connection and locking connection.
[0196] The fourth type of fastener includes bolts, screws, or rivets.
[0197] When the first mating part 121 and the second mating part 421 are snapped together, one of the first mating part 121 and the second mating part 421 is provided with a buckle, and the other of the first mating part 121 and the second mating part 421 is provided with a slot, and the buckle and the slot are snapped together.
[0198] When the first mating part 121 and the second mating part 421 are magnetically connected, one of the first mating part 121 and the second mating part 421 is provided with a fifth magnetic attraction part, and the other of the first mating part 121 and the second mating part 421 is provided with a fifth magnetic attraction mating part, and the fifth magnetic attraction part and the fifth magnetic attraction mating part are magnetically attracted to each other.
[0199] When the first mating part 121 and the second mating part 421 are locked together by the fourth fastener, the first mating part 121 is provided with a third fastening hole, the second mating part 421 is provided with a fourth fastening hole, and the fourth fastener passes through the third fastening hole and the fourth fastening hole.
[0200] In some embodiments, such as Figure 28 and Figure 31 As shown, when the first outer shell 110 and the second outer shell 410 are snapped together, one of the first outer shell 110 and the second outer shell 410 is provided with a positioning boss 220 and the other is provided with a positioning groove 230. The positioning boss 220 can be inserted into the positioning groove 230. Along the first direction, the positioning boss 220 is arranged at a distance from the first connecting structure 120, or the positioning boss 220 is arranged at a distance from the second connecting structure 420.
[0201] In this embodiment, one of the first outer shell 110 and the second outer shell 410 is provided with a positioning boss 220, and the other is provided with a positioning groove 230. The first outer shell 110 is provided with the positioning boss 220, and the second outer shell 410 is provided with the positioning groove 230. Alternatively, the first outer shell 110 is provided with the positioning groove 230, and the second outer shell 410 is provided with the positioning boss 220. When it is necessary to combine the first handle 10 and the second handle 40 into a single handle structure, the positioning boss 220 can be inserted into the positioning groove 230 to meet the usage requirements of the snap-fit connection between the first outer shell 110 and the second outer shell 410.
[0202] Along the first direction, the alignment boss 220 and the first connecting structure 120 are arranged at intervals. Alternatively, along the first direction, the alignment boss 220 and the second connecting structure 420 are arranged at intervals. When the handle assembly 1 needs to be assembled with the electronic device 50 and the handle assembly 1 is held with both hands, the alignment boss 220 separates from the alignment groove 230, and the alignment boss 220 abuts against the outer surface of the electronic device 50. The alignment boss 220 has the function of supporting and limiting the electronic device 50, enriching the structure of the alignment boss 220 and improving the performance of the product.
[0203] In some embodiments, such as Figure 3 , Figure 25 and Figure 26 As shown, at least one of the first mating member 121 and the second mating member 421 includes a mating protrusion 240 and a first magnetic attraction structure 250 connected together, and at least one of the first mating member 121 and the second mating member 421 includes a mating recess 260 and a second magnetic attraction structure 270 connected together; the mating protrusion 240 of the first mating member 121 and the second mating member 421 is used to snap-fit with the mating recess 260 of the other, and the first magnetic attraction structure 250 of the first mating member 121 and the second mating member 421 is used to magnetically attract with the second magnetic attraction structure 270 of the other.
[0204] In this embodiment, at least one of the first mating member 121 and the second mating member 421 includes a mating protrusion 240 and a first magnetic attraction structure 250 connected together, and at least one of the first mating member 121 and the second mating member 421 includes a mating recess 260 and a second magnetic attraction structure 270 connected together.
[0205] Taking the first mating member 121, which includes a mating protrusion 240 and a first magnetic attraction structure 250, and the second mating member 421, which includes a mating recess 260 and a second magnetic attraction structure 270, as an example, the mating protrusion 240 of the first mating member 121 can be inserted into the mating recess 260 of the second mating member 421 to achieve a snap-fit connection. In the snap-fit connection between the mating protrusion 240 and the mating recess 260, the first magnetic attraction structure 250 on the mating protrusion 240 and the second magnetic attraction structure 270 on the mating recess 260 are magnetically attracted. That is, the first mating member 121 and the second mating member 421 are snap-fit connected and magnetically connected. The first mating member 121 and the second mating member 421 are installed and fixed through a double connection, ensuring the stability and reliability of the assembly of the first mating member 121 and the second mating member 421.
[0206] Taking the second mating member 421, which includes a mating protrusion 240 and a first magnetic attraction structure 250, and the first mating member 121, which includes a mating recess 260 and a second magnetic attraction structure 270, as an example, the mating protrusion 240 of the second mating member 421 can be inserted into the mating recess 260 of the first mating member 121 to achieve a snap-fit connection. In the snap-fit connection between the mating protrusion 240 and the mating recess 260, the first magnetic attraction structure 250 on the mating protrusion 240 and the second magnetic attraction structure 270 on the mating recess 260 are magnetically attracted. That is, the first mating member 121 and the second mating member 421 are snap-fit connected and magnetically connected. The first mating member 121 and the second mating member 421 are installed and fixed through a double connection, ensuring the stability and reliability of the assembly of the first mating member 121 and the second mating member 421.
[0207] For example, the first mating member 121 includes a mating protrusion 240 and a first magnetic attraction structure 250 connected together. The mating protrusion 240 is connected to at least one first magnetic attraction structure 250, and the number of mating protrusions 240 is at least one. Alternatively, the first mating member 121 includes a mating protrusion 240 and a first magnetic attraction structure 250 connected together. The first mating member 121 also includes a mating recess 260 and a second magnetic attraction structure 270 connected together. The mating protrusion 240 is connected to at least one first magnetic attraction structure 250, and the number of mating protrusions 240 is at least one. The mating recess 260 is connected to at least one second magnetic attraction structure 270, and the number of mating recesses 260 is at least one.
[0208] For example, the second mating member 421 includes a mating protrusion 240 and a first magnetic attraction structure 250 connected together. The mating protrusion 240 is connected to at least one first magnetic attraction structure 250, and the number of mating protrusions 240 is at least one. Alternatively, the second mating member 421 includes a mating protrusion 240 and a first magnetic attraction structure 250 connected together. The second mating member 421 also includes a mating recess 260 and a second magnetic attraction structure 270 connected together. The mating protrusion 240 is connected to at least one first magnetic attraction structure 250, and the number of mating protrusions 240 is at least one. The mating recess 260 is connected to at least one second magnetic attraction structure 270, and the number of mating recesses 260 is at least one.
[0209] For example, the first magnetic attraction structure 250 includes any one or a combination of the following: samarium cobalt magnet, ferrite magnet, neodymium iron boron magnet and alnico magnet.
[0210] For example, the second magnetic structure 270 includes any one or a combination of the following: samarium cobalt magnet, ferrite magnet, neodymium iron boron magnet and alnico magnet.
[0211] For example, one of the first magnetic attraction structure 250 and the second magnetic attraction structure 270 is a permanent magnet and the other is a soft magnetic component.
[0212] For example, the first magnetic structure 250 and the mating protrusion 240 are bonded together, or the first magnetic structure 250 and the mating protrusion 240 are integrally connected, or the first magnetic structure 250 is embedded in the mating protrusion 240.
[0213] For example, the second magnetic structure 270 and the mating recess 260 are bonded together, or the second magnetic structure 270 and the mating recess 260 are integrally connected, or the second magnetic structure 270 is embedded in the mating recess 260.
[0214] In some embodiments, such as Figure 25 and Figure 26 As shown, in the snap-fit engagement of the mating protrusion 240 and the mating recess 260, both the mating protrusion 240 and the mating recess 260 are arranged at an angle, and the angles of the mating protrusion 240 and the mating recess 260 are the same; and / or in the snap-fit engagement of the mating protrusion 240 and the mating recess 260, the mating protrusion 240 is a trapezoidal protrusion, and the mating recess 260 is a trapezoidal recess.
[0215] In this embodiment, the mating protrusion 240 and mating recess 260 are both arranged at an angle, and their angles are in the same direction. The mating protrusion 240 and mating recess 260 engage to form a wedge-shaped connection structure, which has a self-locking function, can withstand high-frequency impacts during gameplay, and ensures the stability and reliability of the connection between the first mating member 121 and the second mating member 421.
[0216] When the handle assembly 1 is subjected to an impact, the force is decomposed along the inclined surfaces of the mating protrusion 240 and the mating recess 260. The component force further compresses the second magnetic part and the second magnetic mating part, so that the first mating part 121 and the second mating part 421 can be firmly connected together, thereby enhancing the connection strength.
[0217] The convex portion 240 and the concave portion 260 are both arranged at an angle, which can increase the contact area of the first mating part 121 and the second mating part 421, resulting in lower pressure per unit area, better wear resistance, and thus extending the service life of the product.
[0218] Both the mating protrusion 240 and the mating recess 260 are arranged at an angle. The mating protrusion 240 and the mating recess 260 also have a guiding function, which enables the first mating part 121 and the second mating part 421 to be smoothly and effectively aligned and assembled, and simplifies the assembly difficulty of the first mating part 121 and the second mating part 421.
[0219] In this embodiment, the engaging protrusion 240 and engaging recess 260 are trapezoidal, with the protrusion 240 being a trapezoidal protrusion and the recess 260 being a trapezoidal recess. The engagement of the protrusion 240 and the recess 260 effectively limits movement, reducing wobbling. When the handle assembly 1 is subjected to a lateral impact force (e.g., a rubbing motion), the force acts simultaneously on both sidewalls of the trapezoid, being decomposed into a larger normal pressure, thus pressing the second magnetic part and the second magnetic engaging part tighter.
[0220] In addition, the mating convex part 240 and the mating concave part 260 have an anti-rotation function, and the first mating part 121 and the second mating part 421 are not easy to loosen.
[0221] In this embodiment, both the mating protrusion 240 and the mating recess 260 are arranged at an angle, and the angles of the mating protrusion 240 and the mating recess 260 are the same. The mating protrusion 240 is a trapezoidal protrusion, and the mating recess 260 is a trapezoidal recess.
[0222] In some embodiments, such as Figure 1 As shown, the first housing 110 has a first handle 112, and the second housing 410 has a second handle 412.
[0223] In this embodiment, the mating structure of the first outer shell 110 and the second outer shell 410 is refined.
[0224] The first housing 110 has a first grip 112, and the second housing 410 has a second grip 412. The first grip 112 and the second grip 412 are for users to hold and can improve the user's grip experience when operating the handle assembly 1.
[0225] In some embodiments, such as Figure 1 As shown, the first housing 110 is provided with a first joystick 280, a directional key 290 and a first shoulder button 300. Along the second direction, the first joystick 280 is located between the directional key 290 and the first shoulder button 300. Along the third direction, the directional key 290 is closer to the first clamping side 111 than the first shoulder button 300. And / or the second housing 410 is provided with a second joystick 460, an action button 470 and a second shoulder button 480. Along the fourth direction, the action button 470 is located between the second joystick 460 and the second shoulder button 480. Along the third direction, the second joystick 460 is closer to the second clamping side 411 than the second shoulder button 480.
[0226] In this embodiment, the first housing 110 is provided with a first joystick 280, a directional pad 290, and a first shoulder button 300. The positions of the first joystick 280, directional pad 290, and first shoulder button 300 are refined. Along the second direction, the first joystick 280 is located between the directional pad 290 and the first shoulder button 300. Along the third direction, the directional pad 290 is closer to the first clamping side 111 than the first shoulder button 300. The positions of the first joystick 280, directional pad 290, and first shoulder button 300 are more in line with the operating habits of a game controller.
[0227] The second housing 410 is equipped with a second joystick 460, an action button 470, and a second shoulder button 480. The positions of the second joystick 460, action button 470, and shoulder button 480 are refined. Along the fourth direction, the action button 470 is located between the second joystick 460 and the second shoulder button 480. Along the third direction, the second joystick 460 is closer to the second clamping side 411 than the second shoulder button 480. The positioning of the second joystick 460, action button 470, and shoulder button 480 is more in line with the operating habits of a game controller.
[0228] For example, the electronic device 50 can be a mobile phone, tablet computer, laptop computer, handheld computer, in-vehicle electronic device, mobile internet device (MID), augmented reality (AR) / virtual reality (VR) device, robot, wearable device, ultra-mobile personal computer (UMPC), netbook or personal digital assistant (PDA), etc. It can also be a server, network attached storage (NAS), personal computer (PC), television (TV), ATM or self-service machine, etc. The embodiments of this application do not specifically limit it.
[0229] like Figure 13 , Figure 14 , Figure 27 , Figure 28 and Figure 30 As shown, according to some embodiments of this application, an electronic device assembly 5 is proposed, including: an electronic device 50; and a handle assembly 1 of any of the above embodiments, the handle assembly 1 being communicatively connected to the electronic device 50; when the handle assembly 1 is in a first state, the electronic device 50 is clamped within a clamping area 490 jointly enclosed by the first connecting structure 120, the second connecting structure 420, the first clamping side 111, and the second clamping side 411; when the handle assembly 1 is in a second state, the electronic device 50 is separated from the handle assembly 1; when the handle assembly 1 is in a third state, the first handle 10 is separated from the second handle 40, the first connecting structure 120 extends out of the first housing 110, the first clamping side 111 abuts against the outer peripheral wall of the electronic device 50, the suction cup structure 170 of the handle assembly 1 adsorbs the electronic device 50, and the suction cup structure 170 is located between the first clamping side 111 and the camera module 51 of the electronic device 50.
[0230] In the embodiments of this application, the electronic device component 5 includes an electronic device 50 and a handle component 1. Since the electronic device component 5 includes the handle component 1 of any of the above embodiments, it has all the beneficial effects of the handle component 1, which will not be described in detail here.
[0231] For example, when the handle assembly 1 is in the third state, that is, when the first handle 10 is assembled with the electronic device 50 alone, the first clamping side 111 abuts against the outer peripheral wall of the electronic device 50, and the camera module 51 of the electronic device 50 and the suction cup structure 170 of the first handle 10 are arranged at intervals. The suction cup structure 170 adheres to the outer surface of the electronic device 50 to ensure that the first handle 10 and the electronic device 50 are securely assembled together. In some embodiments, such as Figure 13 and Figure 14 As shown, the electronic device 50 is provided with a magnetic attraction component 60, and the magnetic attraction component 175 of the handle assembly 1 is magnetically attracted to the magnetic attraction component 60; or the electronic device assembly 5 also includes a magnetic attraction component 60, which is connected to the outer surface of the electronic device 50, and the magnetic attraction component 175 of the handle assembly 1 is magnetically attracted to the magnetic attraction component 60; when the first handle 10 and the electronic device 50 are in the assembled state, the first clamping side 111 abuts against the outer peripheral wall of the electronic device 50, and the camera module 51 of the electronic device 50 and the suction cup structure 170 of the first handle 10 are arranged at intervals, and the suction cup structure 170 attracts the outer surface of the electronic device 50; when both the first handle 10 and the second handle 40 are in the assembled state with the electronic device 50, the electronic device 50 is clamped between the first clamping side 111 and the second clamping side 411, the camera module 51 of the electronic device 50 is located in the clearance groove 500 of the handle assembly 1, and the suction cup structure 170 of the first handle 10 attracts the outer surface of the electronic device 50.
[0232] In this embodiment, the electronic device 50 is provided with a magnetic attraction component 60, which is magnetically attracted to the magnetic attraction component 175 of the handle assembly 1, and the magnetic attraction component 60 and the magnetic attraction component 175 are engaged.
[0233] In its natural state, the switch structure 174 seals the channel 172. When the suction cup structure 170 of the first handle 10 approaches the electronic device 50, the magnetic suction member 175 and the magnetic mating member 60 attract each other magnetically, causing the nozzle 173 to come close to the electronic device 50. The magnetic suction member 175 and the magnetic mating member 60 cooperate to expel the air in the area enclosed between the nozzle 173 and the electronic device 50, thereby forming a negative pressure suction force. Under the dual adsorption effect of the magnetic attraction between the magnetic suction member 175 and the magnetic mating member 60 and the negative pressure suction force, the first handle 10 and the electronic device 50 can be stably and reliably assembled together. When it is necessary to separate the suction cup structure 170 and the electronic device 50, the switch structure 174 opens the channel 172, connecting the outside world with the sealed space at the head of the nozzle 173, thus losing the negative pressure. Without the negative pressure suction force, the suction cup structure 170 and the electronic device 50 can be separated simply by overcoming the magnetic attraction between the magnetic suction member 175 and the magnetic mating member 60.
[0234] In this embodiment, the electronic device assembly 5 further includes a magnetic coupling member 60, which is connected to the outer surface of the electronic device 50. For example, the magnetic coupling member 60 is bonded to the outer surface of the electronic device 50, or it is snap-fitted to the electronic device 50, etc., etc., which are not listed here. Besides being used in conjunction with the magnetic member 175, the magnetic coupling member 60 can also be used as a decorative part of the electronic device 50, that is, it can enhance the aesthetic appearance of the electronic device 50. For example, the magnetic coupling member 60 can be a pattern coupling member, a symbol coupling member, a text coupling member, etc., etc., which are not listed here.
[0235] In its natural state, the switch structure 174 seals the channel 172. When the suction cup structure 170 of the first handle 10 approaches the electronic device 50, the magnetic suction member 175 and the magnetic mating member 60 attract each other magnetically, causing the nozzle 173 to come close to the electronic device 50. The magnetic suction member 175 and the magnetic mating member 60 cooperate to expel the air in the area enclosed between the nozzle 173 and the electronic device 50, thereby forming a negative pressure suction force. Under the dual adsorption effect of the magnetic attraction between the magnetic suction member 175 and the magnetic mating member 60 and the negative pressure suction force, the first handle 10 and the electronic device 50 can be stably and reliably assembled together. When it is necessary to separate the suction cup structure 170 and the electronic device 50, the switch structure 174 opens the channel 172, connecting the outside world with the sealed space at the head of the nozzle 173, thus losing the negative pressure. Without the negative pressure suction force, the suction cup structure 170 and the electronic device 50 can be separated simply by overcoming the magnetic attraction between the magnetic suction member 175 and the magnetic mating member 60.
[0236] In this embodiment, when the first handle 10 and the electronic device 50 are in an assembled state, that is, when the first handle 10 needs to be used alone with the electronic device 50, the first clamping side 111 abuts against the outer peripheral wall of the electronic device 50, the camera module 51 of the electronic device 50 and the suction cup structure 170 of the first handle 10 are arranged at intervals, and the suction cup structure 170 adheres to the outer surface of the electronic device 50 to ensure that the first handle 10 and the electronic device 50 are stably assembled together.
[0237] In this embodiment, when both the first handle 10 and the second handle 40 are assembled with the electronic device 50, that is, when the handle assembly 1 is in the first state and is assembled with the electronic device 50, the electronic device 50 is clamped between the first clamping side 111 and the second clamping side 411. At this time, the suction cup structure 170, the second clamping side 411, the second connecting structure 420 and the first connecting structure 120 form a clearance groove 500. The clearance groove 500 is used to avoid the camera module 51 of the electronic device 50. The camera module 51 of the electronic device 50 is located within the clearance groove 500, and the suction cup structure 170, the second connecting structure 420 and the first connecting structure 120 will not interfere with the camera module 51. Although the suction cup structure 170 protrudes from the first connecting structure 120, the suction cup structure 170 will not interfere with the camera module 51. The handle assembly 1 can still be assembled with electronic devices 50 with different rear camera protrusion heights. The use scenarios of the handle assembly 1 are not limited by the rear camera protrusion height of the electronic device 50. The handle assembly 1 has high compatibility and can improve the product's performance and market competitiveness.
[0238] It is understandable that because of the suction cup structure 170, there is a height difference between the position of the suction cup structure 170 and the position of the first connecting structure 120. The suction cup structure 170 adheres to the outer surface of the electronic device 50, and a gap is formed between the electronic device 50 and the second connecting structure 420, which forms a clearance groove 500, providing space support for the camera module 51 that houses the electronic device 50.
[0239] For example, the first handle 10 of this application has a first grip 112 and the second handle 40 has a second grip 412, which can ensure the grip feel of the handle assembly 1.
[0240] For example, both the first handle 10 and the second handle 40 have a built-in two-stage telescopic structure, allowing for a range of motion compatible with both mobile phone and tablet sizes. The two-stage telescopic structure of the first handle 10 is a first connecting structure 120. The two-stage telescopic structure of the second handle 40 is a second connecting structure 420.
[0241] For example, a magnetic attachment 175 and a suction cup structure 170 are added to the left handle, and the dual adsorption force can effectively ensure a reliable connection between the left handle and the mobile phone or tablet. The left handle is the first handle 10, and the right handle is the second handle 40.
[0242] For example, the left and right handles are connected by a detachable magnetic assembly, which includes a fourth magnetic part 510, a fourth magnetic mating part 520, a first magnetic structure 250, and a second magnetic structure 270. In this way, the left and right handles can be assembled into a single handle or quickly separated into two handles, which can meet the user's operating experience in multiple states.
[0243] For example, such as Figure 1 As shown, both the left and right controllers include grip designs to enhance the user's grip experience when operating the controllers. The overall button layout is the same as that of a standalone game controller. The left controller retains the top first shoulder button, the middle first joystick, and the bottom directional pad. The right controller retains the top second shoulder button, the middle action button, and the bottom second joystick. This is to ensure consistency in the user's button experience and avoid a significant difference in button experience compared to a traditional standalone controller when the left and right controllers are combined, which would result in a fragmented button experience. The grip designs refer to the first grip 112 and the second grip 412.
[0244] like Figure 1 As shown, the left handle includes a left slide groove, a left sliding bracket, and a suction cup structure 170, etc. Among them, such as... Figure 2 As shown, the left slide groove is further divided into an upper shell 141 and a lower shell 142, which are fixed together by four locking screws 143. A limiting protrusion 125 is provided on the upper shell 141 of the left slide groove. The limiting protrusion 125 abuts against the outer peripheral wall of the suction cup structure 170. The surfaces of the limiting protrusion 125 that abut against the suction cup structure 170 include both curved and straight surfaces. That is, the limiting protrusion 125 is used for assembly limiting of the suction cup structure 170, which is then fixedly connected to the left slide groove by two second fasteners 210. Slide rail structures 144 are located on both sides of the lower shell 142 of the left slide groove, serving as mating surfaces for the left slide groove during movement. The left slide groove is the first frame 122, and the left sliding bracket is the first bracket 123.
[0245] Figure 3 The initial position of the left handle is shown. At this time, the elastic ball groove on the bottom surface of the left slide is limited by the elastic ball, and the entire left slide is fixed inside the first housing 110. The first coil spring is limited and fixed on one side of the left slide, and the protruding end of the first coil spring is fixedly connected to the left sliding bracket by the first screw 145. Since the right end of the left sliding bracket is exposed outside the first housing 110 of the left handle, the user can directly pull the left sliding bracket outward. At the same time, because the constant torque force provided by the first coil spring is greater than the limiting effect of the elastic ball, the left sliding bracket will drive the left slide to move outward together. When it moves to the end position, it is completely fixed by the action of the latch 133. At this time, since the left sliding bracket is always under the elastic force of the first coil spring, the position of the left sliding bracket is also basically fixed without the action of external force. See the specific state. Figure 4 Combining Figure 5 Because of the baffle structures on both sides of the left slide groove, there is a stroke limit. Similarly, because of the baffle structures on both sides of the left sliding bracket, its maximum stroke is also limited. The elastic protrusion 131 includes an elastic bead, and the first outer shell 110 has an elastic bead groove, in which the elastic bead is disposed. The first elastic part 124 includes a first coil spring. The baffle structure at the left slide groove refers to the first baffle 134, and the baffle structure at the left sliding bracket refers to the second baffle 151.
[0246] For example, the internal structure of the suction cup structure 170 fixed on the left slide is shown in [reference needed]. Figure 6 At the top is the suction nozzle 173, below which is the locking ring 188. One side of the locking ring 188 has a slotted structure, which reduces the rigidity of the entire ring structure. A locking screw on the other side deforms the locking ring 188, clamping and fixing the suction nozzle 173 to the suction cup base 182, ensuring the suction nozzle 173's airtightness. An annular bracket is installed between the suction cup base 182 and the base 181. This annular bracket can move along its height. Sealing silicone is embedded in the center hole of the annular bracket, and a compression spring is arranged below the sealing silicone to provide elasticity to the annular bracket along its height. The compression spring is fitted onto the limiting post 146 of the base 181. Figure 6 and Figure 7 As shown, the four fixing holes 147 on the suction cup base 182 correspond to the four mounting holes 148 on the base 181, and the two are fixedly connected together. One side of the base 181 has a clearance channel 185 for the annular bracket, and the other side of the base 181 has a clearance notch 186, ensuring the movement stroke of the annular bracket. The slotted structure refers to the slot 189. The first fastener 191 includes a locking screw. The suction nozzle 173 is a soft rubber structure. The annular bracket refers to the third bracket 177. The height direction refers to the first direction. The sealing part 179 includes sealing silicone. The fifth elastic part 180 includes a compression spring.
[0247] For example, such as Figure 8 As shown, a ring-shaped array of magnets is embedded within the suction cup base 182, the arrangement of which matches the array of magnets in the electronic device 50. The magnetic suction element 175 includes 16 to 18 magnets arranged with alternating polarities. (As shown...) Figure 9 and Figure 10 As shown, there are two first guide blocks 183 on the back of the suction cup base 182. The first guide blocks 183 correspond to the positions of the first guide grooves 187 of the annular bracket, and the annular bracket can move along the first guide blocks 183 in the height direction. The first magnetic suction part 176 includes a magnet inside the suction cup base 182. The magnetic attraction component 60 includes an array of magnets of the electronic device 50.
[0248] For example, such as Figure 11As shown, under natural conditions, due to the action of the compression spring, the sealing silicone at the center of the annular bracket presses against the channel 172 of the suction cup base 182, ensuring that the head of the soft rubber nozzle 173 forms a sealed space. When the suction cup structure 170 approaches the magnetic attraction area of the electronic device 50, the air in the head of the nozzle 173 is instantly expelled under the magnetic force of the array magnets in the suction cup base 182, thus creating a negative pressure suction force. Under the dual attraction force of negative pressure suction force and array magnet force, a reliable connection with the electronic device 50 is ensured. The combination of negative pressure suction force and array magnet force ensures a firm adsorption while facilitating the miniaturization of the adsorption size. When it is necessary to separate the suction cup structure 170 from the electronic device 50, the user only needs to press the protruding end area of the annular bracket, and the annular bracket will tilt downwards, causing the sealing silicone to move away from the channel 172, connecting the outside with the sealed space at the head of the nozzle 173, thus eliminating the negative pressure. Without the help of negative pressure suction force, the user only needs to overcome the magnetic attraction force to remove the electronic device 50. The protruding end area of the annular bracket is a handle 178.
[0249] For example, such as Figure 4 As shown, when the left slide moves outward to its end position, the user only needs to bring the back of the electronic device 50 close to the suction nozzle 173. This fixes the electronic device 50 to the suction cup structure 170 on the left handle, satisfying the user's one-handed screen-tapping gaming control experience. The overall effect is shown in [image / description]. Figure 12 For electronic devices 50 with built-in array magnets, users can directly attach them. For example... Figure 14 As shown, for electronic devices 50 that do not contain array magnets, users can attach magnetic backing stickers to the back panel of the electronic device 50. The magnetic backing stickers are fixed to the electronic device 50 with adhesive. Because the magnetic backing stickers are relatively thin, they can serve as decorative elements on the back panel of the electronic device 50 without appearing obtrusive. The magnetic backing stickers are magnetically attached components 60.
[0250] For example, such as Figure 4 As shown, when the left slide reaches its end position, it is completely fixed by the limiting action of the movable latching part 133. Figure 15 As shown, if the user needs to release the limit, they can do so by pushing the unlock button 160 to one side on the back of the left handle. Figure 15 The arrow in the image indicates the direction of movement for the unlock button 160. For details on the unlocking principle, please refer to... Figure 16 , Figure 17 , Figure 18 and Figure 19The pivot 137, under the action of the torsion spring, ensures that the first swing arm 138 is always in contact with the unlock button 160. When the unlock button 160 moves to one side, it will cause the first swing arm 138 on the pivot 137 to rotate counterclockwise, and the second swing arm 139 will also rotate counterclockwise at the same time, thus pressing the latch 135 down to release the limit. The pivot 137 is fixed inside the first outer shell 110 of the left handle under the action of the pressure cover 149. Figure 20 As shown, springs are fitted on both sides of the latch 135 to ensure that the latch 135 is always in contact with the second swing arm 139. The second elastic part 136 includes a torsion spring. The third elastic part 140 includes a spring.
[0251] For example, Figure 21 , Figure 22 and Figure 23 The internal structure of the right handle is shown. The second coil spring is fixedly positioned within the second housing 410 of the right handle. Unlike the left handle, the second coil spring is fixedly connected to the right slide groove via a second screw 530, while the right sliding bracket can move freely within the right slide groove. The right sliding bracket also has side flanges on both sides to limit its travel. When the right sliding bracket reaches its maximum travel, further extension requires overcoming the elastic force of the second coil spring. The fourth elastic part 430 includes the second coil spring. The right slide groove is the second frame 422, and the right sliding bracket is the second bracket 423. The side flanges at the right sliding bracket are fourth baffles.
[0252] For example, such as Figure 24 , Figure 25 and Figure 26 As shown, the left and right handles can be connected via inclined slot magnetic assemblies on the left and right sliding brackets. Three first magnets are arranged in the inclined slots of the left sliding bracket, and three second magnets are arranged in the inclined slots of the right sliding bracket. Since the right sliding bracket is free to move, when it extends freely, the first and second magnets approach each other and connect as one unit. Figure 25 As shown, along the horizontal direction, the mating surfaces of the recess 260 and the protrusion 240 are "inwardly inclined," forming an inverted snap structure that ensures a firm connection and prevents easy disengagement. Figure 26 As shown, along the vertical direction, the mating surfaces of the mating recess 260 and the mating protrusion 240 are "outwardly inclined surfaces," mainly to ensure vertical positioning and reduce wobbling. The inclined slot magnetic attraction assembly includes the mating recess 260, the mating protrusion 240, the first magnetic attraction structure 250, and the second magnetic attraction structure 270.
[0253] For example, such as Figure 27 and Figure 28As shown, after the first handle 10 and the second handle 40 are assembled into one unit, they can be further stretched outwards to form a handheld device state with the electronic device 50. At this time, both the first and second coil springs have deformed, providing clamping force for the electronic device 50 along its length. To prevent the electronic device 50 from shifting along its thickness, the suction cup structure 170 can be used to further ensure that the electronic device 50 is securely fixed. At the same time, there is a positioning boss 220 on the second outer shell 410 of the right handle, which can improve the support effect of the electronic device 50 along its thickness. Since the thickness of the suction cup structure 170 is significantly greater than the maximum thickness of the rear camera protrusion of the electronic device 50, and the maximum thickness of the rear camera protrusion is less than or equal to 8mm, no matter how the shape and size of the rear camera protrusion of the electronic device 50 changes, it will not affect the clamping and fixing effect of the electronic device 50 in the handheld state, achieving compatibility with most electronic devices 50 on the market.
[0254] For example, such as Figure 27 and Figure 30 As shown, since both the left and right handles adopt a two-stage telescopic displacement, the travel range not only meets the length requirements of mobile phones, but also the length requirements of tablet computers.
[0255] For example, such as Figure 31 As shown, two permanent magnets, such as neodymium iron boron (NdFeB) or aluminum nickel cobalt (AlNiCo), are embedded at the upper and lower positions of the first outer shell 110 of the left handle. These permanent magnets provide permanent magnetic force. Soft magnetic components, such as silicon steel sheets, pure iron, or carbon steel, are embedded at the upper and lower positions of the second outer shell 410 corresponding to the right handle. These soft magnetic components are not magnetic themselves but are easily and strongly attracted by the permanent magnets. Figure 28 As shown, the reason why a soft magnetic component is used on the second outer shell 410 of the right controller is that the camera module 51 of the electronic device 50 is close to the right controller in handheld mode, which can effectively avoid the magnetic interference of the permanent magnet on the camera module 51. Figure 32 As shown, when the left and right handles are combined into one unit, the alignment boss 220 of the right handle and the alignment groove 230 of the left handle ensure that the left and right handles are aligned. Under the magnetic attraction of the upper and lower permanent magnets, they are combined into a complete independent handle shape, with only a visual dividing line. The first clamping side 111 of the first outer shell 110 and the second clamping side 411 of the second outer shell 410 abut against and surround the dividing line. The fourth magnetic attraction part 510 includes a permanent magnet. The fourth magnetic attraction mating part 520 includes a soft magnetic component.
[0256] For example, the way the handle assembly 1 is fixed to the electronic device 50 is not limited to the combination of suction cup structure 170 and magnet, and can also be replaced by a pure magnetic form.
[0257] For example, the connection between the left and right handles into a single handle is not limited to the inclined slot magnetic structure; other structural forms are also possible, such as: snap-fit connection, locking mechanism connection, etc.
[0258] This application has a reasonable design for the structure of the controller component 1, which can not only meet the user's game operation needs in multiple states, but also be compatible with different mobile phone protrusions or gaming tablet sizes, achieving an extremely integrated appearance and ensuring the user's control experience on mobile phones or gaming tablets.
[0259] in, Figure 3 The arrows in the diagram indicate the direction of movement of the first frame 122 and the first support 123. Figure 11 The arrow in the diagram indicates the direction of the force acting on the third support 177. Figure 17 The arrow in the image indicates the direction of movement of the unlock button 160. Figure 18 The arrow in the diagram indicates the direction of movement of the second swing arm 139.
[0260] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0261] Although embodiments of this application have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of this application, the scope of which is defined by the claims and their equivalents.
Claims
1. A handle assembly, characterized in that, include: A first handle, the first handle includes a first outer shell and a first connecting structure, the first connecting structure is slidably connected to the first outer shell, and the first connecting structure is provided with a first mating part; The second handle includes a second outer shell and a second connecting structure. The second connecting structure is slidably connected to the second outer shell. The second connecting structure is provided with a second mating part. The first mating part and the second mating part are detachably connected. At least one of the first connecting structure and the second connecting structure is a telescopic structure. When the handle assembly is in the first state, the first housing and the second housing are arranged separately, the first mating member extends out of the first clamping side of the first housing, the second mating member extends out of the second clamping side of the second housing, and the first mating member and the second mating member are connected so that the first connecting structure, the second connecting structure, the first clamping side and the second clamping side together enclose a clamping area, which is used to clamp an external electronic device; When the handle assembly is in the second state, the first housing and the second housing are spliced together, the first clamping side abuts against the second clamping side, and a first mounting cavity is formed between the first housing and the second housing. The first connecting structure and the second connecting structure are both located within the first mounting cavity.
2. The handle assembly according to claim 1, characterized in that, The first connection structure is a scalable structure, and the first connection structure includes: A first frame, which is slidably connected to the first outer shell; A first bracket is slidably connected to the first frame, and the first fitting component is provided on the portion of the first bracket located outside the first frame. A first elastic part is connected between the first frame and the first bracket, and the first elastic part and the first mating part are located at both ends of the first bracket.
3. The handle assembly according to claim 2, characterized in that, The first handle further includes a first limiting structure and a second limiting structure. The first limiting structure is used to limit the length of the portion of the first frame extending out of the first clamping side, and the second limiting structure is used to limit the length of the portion of the first bracket extending out of the first frame.
4. The handle assembly according to claim 3, characterized in that, The first limiting structure includes an elastic protrusion and a first slot. The elastic protrusion is disposed inside the first outer shell, and the first slot is disposed in the first frame. The elastic protrusion is used to be detachably connected to the first slot. The first limiting structure further includes a latching portion located between the elastic protrusion and the first clamping side. The latching portion is movably connected to the inner surface of the first housing and is used for detachable connection with the first slot; and / or The first limiting structure further includes a first baffle, which is connected to the first frame and is used to abut against the inner surface of the first housing to limit the maximum length of the portion of the first frame extending out of the first housing.
5. The handle assembly according to claim 4, characterized in that, When the first limiting structure includes the latching part, the latching part includes a latch, a second elastic part, a rotating shaft, a first swing arm, a second swing arm, and a third elastic part; The rotating shaft is rotatably connected to the first housing, and both the first swing arm and the second swing arm are disposed on the rotating shaft; The second elastic part is connected between the rotating shaft and the first housing, and the third elastic part is connected between the buckle and the first housing; The buckle is used to engage with the first slot, and a portion of the second swing arm is located at the buckle; The first housing is also provided with an unlock button, which is movably connected to the first housing, and the first swing arm is located at the unlock button; When the unlock button is triggered, the unlock button drives the rotating shaft to rotate via the first swing arm, and the second swing arm drives the buckle to move away from the first slot.
6. The handle assembly according to any one of claims 1 to 5, characterized in that, The first handle also includes: A suction cup structure is provided, which is connected to the first connecting structure and is used for the installation and positioning of the first connecting structure. When the handle assembly is in the first state, the suction cup structure is located between the first clamping side and the first mating member, and the suction cup structure, the second clamping side, the second connecting structure and the first connecting structure form a clearance groove, which is used to avoid the camera module of the electronic device.
7. The handle assembly according to claim 6, characterized in that, The suction cup structure includes: The mounting structure is connected to the first connecting structure and has a channel. A suction nozzle is connected to the mounting structure, at least a portion of which is located on the side of the mounting structure opposite to the first connecting structure, and the area enclosed by the suction nozzle communicates with the channel. A switch structure is movably connected to the mounting structure, and the switch structure is used to open or close the channel.
8. The handle assembly according to claim 7, characterized in that, The mounting structure includes: Base; A suction cup base is provided, wherein the base is connected between the first connecting structure and the suction cup base, the suction cup base is provided with the channel and the first guide block, and a second mounting cavity is formed between the suction cup base and the base, wherein a part of the third bracket of the switch structure, the sealing part of the switch structure and the fifth elastic part of the switch structure are all located in the second mounting cavity; The base is provided with a clearance channel and a clearance notch, and the handle of the third bracket extends out of the mounting structure through the clearance channel; A portion of the third bracket protrudes in a direction away from the suction cup seat to form a first guide groove. The first guide block is located in the first guide groove and is clearance-fitted with the first guide groove. The first guide groove is inserted into the clearance notch and is clearance-fitted with the clearance notch.
9. The handle assembly according to claim 8, characterized in that, The suction cup structure also includes: A locking ring is provided around the suction cup seat, and the suction nozzle is clamped between the locking ring and the suction cup seat. The outer peripheral wall of the locking ring is provided with a groove, and the locking ring is also provided with a break. A first fastener is detachably connected to the break, and the first fastener is used to close the break to secure the nozzle and the suction cup seat.
10. The handle assembly according to claim 6, characterized in that, The first connecting structure is provided with a limiting protrusion, which abuts against the outer peripheral wall of the suction cup structure; The first handle also includes a second fastener for connecting the first connection structure and the suction cup structure.
11. The handle assembly according to any one of claims 1 to 5, characterized in that, When the first outer shell and the second outer shell are snapped together, one of the first outer shell and the second outer shell is provided with a positioning boss and the other is provided with a positioning groove, and the positioning boss can be inserted into the positioning groove; Along the first direction, the alignment boss is arranged at a distance from the first connecting structure, or the alignment boss is arranged at a distance from the second connecting structure.
12. The handle assembly according to any one of claims 1 to 5, characterized in that, At least one of the first mating member and the second mating member includes a mating protrusion and a first magnetic attraction structure connected together; at least one of the first mating member and the second mating member includes a mating recess and a second magnetic attraction structure connected together. The protruding part of one of the first mating parts and the second mating part is used to engage with the recessed part of the other part, and the first magnetic attraction structure of one of the first mating parts and the second mating part is used to magnetically attract the second magnetic attraction structure of the other part.
13. The handle assembly according to any one of claims 1 to 5, characterized in that, The first housing is provided with a first joystick, a directional key, and a first shoulder button. Along a second direction, the first joystick is located between the directional key and the first shoulder button. Along a third direction, the directional key is closer to the first clamping side than the first shoulder button; and / or The second housing is provided with a second joystick, an action button and a second shoulder button. Along the fourth direction, the action button is located between the second joystick and the second shoulder button. Along the third direction, the second joystick is closer to the second clamping side than the second shoulder button.
14. An electronic device component, characterized in that, include: Electronic devices; and a handle assembly as described in any one of claims 1 to 13, the handle assembly being communicatively connected to the electronic device; When the handle assembly is in the first state, the electronic device is clamped within the clamping area jointly enclosed by the first connecting structure, the second connecting structure, the first clamping side, and the second clamping side; When the handle assembly is in the second state, the electronic device is detached from the handle assembly; When the handle assembly is in the third state, the first handle is separated from the second handle, the first connecting structure extends out of the first housing, the first clamping side abuts against the outer peripheral wall of the electronic device, the suction cup structure of the handle assembly adsorbs the electronic device, and the suction cup structure is located between the first clamping side and the camera module of the electronic device.