Handle

By designing a rotatable adjustment frame and limiting member structure in the handle, the rotating structure has different movable strokes under different states, solving the problem of single control feel of the rotating structure and improving the user experience of the handle in different control operations.

CN223112290UActive Publication Date: 2025-07-18SHENZHEN YIQIANMI TECH CO LTD
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Patent Information

Application Number
CN202422107417.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-07-18
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

The control feel of the rotary structure is relatively simple, and it is difficult to provide the user with the corresponding feel in different control operations, resulting in a poor handle experience.

Method used

A handle is designed, through the adjustment frame in the adjustment device, the adjustment frame can be rotated to different states, so that the rotating structure can trigger the first switch with the first stroke activity in the first state, and the second switch with the second stroke activity in the second state, and the rotation of the adjustment frame is restricted by the limiting member and the convex and concave matching structure, ensuring that the movable stroke of the rotating structure in different states is different.

Benefits of technology

Different switches are triggered through the pulling structure of different strokes, providing different control feels, and optimizing the user experience of the handle in different control operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model is suitable for the technical field of handle design, and provides a handle which comprises a handle body, a switch assembly, a wrenching structure, an adjusting device and a second limiting piece. When a user operates the handle, the user can rotate the adjusting frame to a first state so that the second limiting piece can limit the first limiting piece in the rotating direction of the adjusting frame, then the wrenching structure is manually wrenched, and the wrenching structure moves in a first stroke and abuts against the triggering structure so that the triggering structure can move and trigger the first switch. In addition, the user can also rotate the adjusting frame to a second state so that the second limiting piece can limit the first limiting piece in the rotating direction of the adjusting frame, and then the pulling structure is manually pulled so that the pulling structure can move in a second stroke to trigger the second switch. On the basis, the movement strokes of the wrenching structure in the first state and the second state are different, so that a user has different control hand feelings by controlling the wrenching structure in different control operations, and the use experience of the handle is optimized.
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Description

Technical Field

[0001] This application belongs to the technical field of handle design, and more specifically, relates to a handle. Background Art

[0002] A handle refers to a control device that can be manually operated by a user for electronic control. Among them, the handle can be applied in fields such as games for electronic control. The handle usually includes a lever structure and a switch structure. When the handle is in use, the user can operate the lever structure to make the lever structure move to trigger the switch structure to achieve relevant control operations. Moreover, in different scenarios, the user can manipulate the lever structure to trigger the switch structure to achieve different control operations. However, in different scenarios, the movement of the lever structure is the same, resulting in the same operating feel of the lever structure. Based on this, the operating feel of the lever structure is relatively single, making it difficult to provide a corresponding feel for the user in different control operations, thus resulting in a poor user experience of the handle. Summary of the Utility Model

[0003] One of the purposes of the embodiments of this application is to provide a handle, aiming to solve the technical problem that the operating feel of the lever structure in related technologies is relatively single.

[0004] To solve the above technical problem, the technical solution adopted in the embodiments of this application is:

[0005] A handle is provided, including:

[0006] A handle body;

[0007] A switch assembly, including a first switch and a second switch spaced apart on the handle body;

[0008] A lever structure movably connected to the handle body;

[0009] An adjusting device, including an adjusting frame, a first limiting member provided on the adjusting frame, and a triggering structure movably connected to the adjusting frame; the adjusting frame is rotatably connected to the handle body and can rotate to a first state or a second state; in the first state, the lever structure is used to move with a first stroke and push against the triggering structure to make the triggering structure move and trigger the first switch; in the second state, the lever structure is used to move with a second stroke to trigger the second switch; the first stroke and the second stroke are different;

[0010] A second limiting member provided on the handle body and limiting the first limiting member along the rotation direction of the adjusting frame in the first state and the second state respectively.

[0011] In some embodiments, in the distribution direction of the first limiting member and the second limiting member, the first limiting member is provided with a first convex portion on a side close to the second limiting member, and the second limiting member is provided with a first groove and a second groove at intervals on a side close to the first limiting member; the first convex portion is matched with the first groove in a concave-convex manner in the first state, and is matched with the second groove in a concave-convex manner in the second state;

[0012] And / or, in the distribution direction of the first limiting member and the second limiting member, the first limiting member is provided with a third groove and a fourth groove at intervals on a side close to the second limiting member, and the second limiting member is provided with a second convex portion on a side close to the first limiting member; the second convex portion is matched with the third groove in the first state, and is matched with the fourth groove in the second state.

[0013] In some embodiments, the distribution direction of the first limiting member and the second limiting member is parallel to the rotation axis of the adjustment frame.

[0014] In some embodiments, the handle also includes a first elastic member; one end of the first elastic member along the first direction abuts against the handle body, and the other end abuts against at least one of the adjustment frame, the first limit member and the second limit member; the first direction is parallel to the rotation axis of the adjustment frame.

[0015] In some embodiments, one first groove and one second groove form a first groove group, and the first groove group is provided in plurality; the first stopper is provided with a plurality of first protrusions distributed at intervals, and the plurality of first protrusions are provided in one-to-one correspondence with the plurality of first groove groups, and in the rotation direction of the adjustment frame, the plurality of first protrusions are centrally symmetrically distributed;

[0016] And / or, one of the third grooves and one of the fourth grooves constitute a second groove group, and the second groove group is provided in plurality; the second limiting member is provided with a plurality of second protrusions distributed at intervals, and the plurality of second protrusions are arranged in one-to-one correspondence with the plurality of second groove groups; in the rotation direction of the adjusting frame, the plurality of second protrusions are distributed in a centrally symmetrical manner.

[0017] In some embodiments, the trigger structure includes:

[0018] A pull body, movably connected to the handle body;

[0019] A first push portion is provided on the pull body and is used to oppose the trigger structure to push the trigger structure in the first state, and is also used to stagger with the trigger structure in the second state;

[0020] The first connecting part is arranged on the actuating main body and protrudes towards the adjusting frame beyond the first pushing part;

[0021] The triggering part is arranged on the first connecting part and is used for triggering the second switch in the second state.

[0022] In some embodiments, the triggering structure includes a rotating part and a second elastic part. The rotating part is rotatably connected to the adjusting frame; the second elastic part is abutted between the rotating part and the adjusting frame and is used for applying an elastic force to the rotating part to make the rotating part away from the first switch; the actuating structure is used for pushing the rotating part towards the second elastic part to make the rotating part trigger the first switch.

[0023] In some embodiments, the rotating part includes a second connecting part, a second pushing part and a triggering part. The second connecting part is rotatably connected to the adjusting frame. Both the second pushing part and the triggering part are connected to the second connecting part, and the triggering part is bent relative to the second pushing part; the second elastic part is abutted between the second pushing part and the adjusting frame and is used for applying an elastic force to the second pushing part to make the triggering part away from the first switch; the actuating structure is used for pushing the second pushing part towards the second elastic part to make the triggering part approach and trigger the first switch.

[0024] In some embodiments, the second limiting part is provided with a first limiting groove, and at least part of the adjusting frame is limited in the first limiting groove in the rotating direction of the adjusting frame; and / or, the adjusting frame is provided with a second limiting groove, and at least part of the second limiting part is limited in the second limiting groove in the rotating direction of the adjusting frame.

[0025] In some embodiments, the handle further includes a display screen. The display screen includes a display module, a transparent cover plate and a decorative sheet. The display module is electrically connected to the handle main body, and the transparent cover plate is arranged on the display module; the decorative sheet is arranged between the transparent cover plate and the display module and is located on the four peripheral edges of the display module.

[0026] The beneficial effects of the handle provided by the embodiments of the present application are as follows:

[0027] The handle provided in the embodiment of the present application can rotate the adjustment frame to the first state so that the second limit member limits the first limit member along the rotation direction of the adjustment frame, and then manually pull the pull structure so that the pull structure moves with a first stroke and pushes against the trigger structure, so that the trigger structure moves and triggers the first switch. The user can also rotate the adjustment frame to the second state so that the second limit member limits the first limit member along the rotation direction of the adjustment frame, and then manually pull the pull structure so that the pull structure moves with a second stroke to trigger the second switch. The first stroke and the second stroke are different. Based on this, the movable stroke of the pull structure in the first state and the second state is different, so that the control feel of the pull structure is different, and the user has different control feel when manipulating the pull structure in different control operations, thereby optimizing the use experience of the handle. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0029] Figure 1 Schematic diagram of the three-dimensional structure of the handle provided in the embodiment of the present application Figure 1 ;

[0030] Figure 2 Schematic diagram of the three-dimensional structure of the handle provided in the embodiment of the present application Figure 2 ;

[0031] Figure 3 for Figure 1 Schematic diagram of the partial structure of the handle provided Figure 1 ;

[0032] Figure 4 for Figure 3 The enlarged view of point A in the middle;

[0033] Figure 5 for Figure 1 Schematic diagram of the partial structure of the handle provided Figure 2 ;

[0034] Figure 6 for Figure 1 A schematic diagram of the three-dimensional structure of the adjustment device of the provided handle;

[0035] Figure 7 for Figure 1 Schematic diagram of the partial structure of the handle provided Figure 3 ;

[0036] Figure 8For Figure 1 Partial structural schematic diagram of the provided handle Figure 4 ;

[0037] Figure 9 For Figure 1 Three-dimensional structural schematic diagram of the provided handle excluding the transparent cover plate.

[0038] Among them, each reference numeral in the figure:

[0039] 10 - Handle body; 11 - Outer shell; 12 - Circuit board; 20 - Switch assembly; 21 - First switch; 22 - Second switch; 30 - Lever structure; 31 - Lever body; 32 - First pushing part; 33 - First connecting part; 34 - Trigger; 40 - Adjusting device; 41 - Adjusting bracket; 42 - First limiting part; 421 - First convex part; 43 - Trigger structure; 431 - Rotating part; 4311 - Second connecting part; 4312 - Second pushing part; 4313 - Trigger part; 432 - Second elastic part; 50 - Second limiting part; 51 - First groove; 52 - Second groove; 53 - First limiting groove; 60 - First elastic part; 70 - Display screen; 71 - Display module; 72 - Transparent cover plate; 73 - Decorative piece; 80 - Bolt; 81 - Supporting part; Z - First direction; L - Rotation axis of the adjusting bracket. Detailed implementation manners

[0040] The embodiments of the present application will be described in detail below. The examples of the embodiments are shown in the drawings, where the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions from beginning to end. The embodiments described below with reference to the drawings are exemplary and are intended to explain the present application, and should not be construed as a limitation to the present application.

[0041] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present application.

[0042] In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features.

[0043] In the description of this application, "a plurality of" means more than two. Unless otherwise specifically defined, "more than two" includes two. Correspondingly, "a plurality of groups" means more than two groups, including two groups.

[0044] In this application, unless otherwise clearly defined and limited, terms such as "installed", "connected", "connected to", "fixed", etc. should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components or the interaction relationship between two components. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific circumstances.

[0045] In this application, the term "and / or" is merely a description of the association relationship of associated objects, indicating that there can be three relationships. For example, A and / or B can mean: there is A, there is both A and B at the same time, and there is B, these three situations. In addition, in this application, the character " / " generally indicates that the associated objects before and after are in an "or" relationship.

[0046] The following is a detailed description in conjunction with specific drawings and embodiments:

[0047] Please refer to Figures 1 to 5 , the handle includes a handle body 10, a switch assembly 20, a lever structure 30, an adjustment device 40 and a second limiting member 50. The switch assembly 20 includes a first switch 21 and a second switch 22, and the first switch 21 and the second switch 22 are spaced apart on the handle body 10. The lever structure 30 is movably connected to the handle body 10. The adjustment device 40 includes an adjustment frame 41, a first limiting member 42 and a trigger structure 43. The first limiting member 42 is provided on the adjustment frame 41, and the trigger structure 43 is movably connected to the adjustment frame 41. The adjustment frame 41 is rotatably connected to the handle body 10. The adjustment frame 41 can be rotated to a first state or a second state. In the first state, the lever structure 30 is used to move with a first stroke and push against the trigger structure 43, so that the trigger structure 43 moves and triggers the first switch 21. In the second state, the lever structure 30 is used to move with a second stroke to trigger the second switch 22. Among them, the first stroke and the second stroke are different. The second limiting member 50 is provided on the handle body 10. The second limiting member 50 limits the first limiting member 42 along the rotation direction of the adjustment frame 41 in the first state and the second state respectively.

[0048] A switch refers to a structure that can be triggered to control the on / off of a corresponding circuit. Specifically, the triggering structure 43 can trigger the first switch 21 by means such as pressing, touching, approaching, etc., and the toggling structure 30 can also trigger the second switch 22 by means such as pressing, touching, approaching, etc. Based on the above switch triggering methods, the triggering methods of the first switch 21 and the second switch 22 can be the same or different.

[0049] Among them, the movable connection manner between the toggling structure 30 and the handle can be sliding relative to the handle body 10, or can be rotating relative to the handle body 10, etc. As an example, the toggling structure 30 can be rotatably connected to the handle body 10 through a rotating shaft.

[0050] The triggering structure 43 refers to a structure that moves under the pushing action of the toggling structure 30 to trigger the first switch 21. As an example, the triggering structure 43 can rotate on the adjusting frame 41. During the rotation process, the triggering structure 43 can move away from or approach the first switch 21. Specifically, the triggering structure 43 can achieve the triggering effect on the first switch 21 by means such as touching, pressing, or approaching the switch. As an example, as Figure 7 shown, the triggering structure 43 is an elastic shrapnel structure. During the movement of the toggling structure 30, the toggling structure 30 can push the triggering structure 43, causing the triggering structure 43 to undergo elastic deformation, and then pressing the first switch 21 through the deformation of the triggering structure 43 to trigger the first switch 21. Or, in some other embodiments, the triggering structure 43 can also be set as the structure including the rotating member 431 and the second elastic member 432 described below. For specific details, refer to the relevant description below.

[0051] It can be understood that when the adjusting frame 41 rotates to the second state, the triggering structure 43 no longer corresponds to the toggling structure 30. At this time, continuing to toggle the toggling structure 30 cannot push the triggering structure 43, and thus cannot trigger the first switch 21. At this time, if the toggling structure 30 is continued to be toggled, then the toggling structure 30 can trigger the second switch 22 during movement.

[0052] When the movement form of the toggling structure 30 is sliding, the first stroke and the second stroke are the sliding distances of the toggling structure 30, that is, the sliding distances of the toggling structure 30 when triggering the first switch 21 and the second switch 22 are different. When the movement form of the toggling structure 30 is rotation, the first stroke and the second stroke are the rotation angles of the toggling structure 30, that is, the rotation angles of the toggling structure 30 when triggering the first switch 21 or the second switch 22 are different.

[0053] In a possible design, the handle body 10 can include a housing 11 and a circuit board 12 disposed inside the housing 11. The first switch 21 and the second switch 22 are both electrically connected to the circuit board 12. Specifically, asFigure 3 As shown, the second stopper 50 may be disposed on the circuit board 12; or Figure 8 As shown, the second limiting member 50 may also be disposed on the inner wall surface of the housing 11 , and the second limiting member 50 may be integrally formed with the housing 11 .

[0054] The second limiting member 50 limits the first limiting member 42 along the rotation direction of the adjustment frame 41, which means that the relative rotation of the first limiting member 42 and the second limiting member 50 along the rotation direction of the adjustment frame 41 is limited, thereby making it difficult for the adjustment frame 41 and the second limiting member 50 to rotate relative to each other. It should be noted that the limiting effect between the second limiting member 50 and the first limiting member 42 of the present application can be released when an external force is applied, so that the adjustment frame 41 can resume rotation relative to the second limiting member 50.

[0055] In the handle provided in the embodiment of the present application, when the user manipulates the handle, the user can rotate the adjustment frame 41 to the first state so that the second limiter 50 limits the first limiter 42 along the rotation direction of the adjustment frame 41. In the first state, the user can manually pull the pull structure 30 so that the pull structure 30 moves with a first stroke and pushes the trigger structure 43 so that the trigger structure 43 moves and triggers the first switch 21. The user can also rotate the adjustment frame 41 to the second state so that the second limiter 50 limits the first limiter 42 along the rotation direction of the adjustment frame 41. In the second state, the user can manually pull the pull structure 30 so that the pull structure 30 moves with a second stroke to trigger the second switch 22. The first stroke and the second stroke are different. Based on this, the active stroke of the pull structure 30 in the first state and the second state is different, that is, the active stroke of the pull structure 30 for triggering the first switch 21 and the active stroke of the pull structure 30 for triggering the second switch 22 are different, so that the active stroke of the pull structure 30 in different occasions is different, and then the manipulation feel of the pull structure 30 is different. In this way, the user can have different use feelings when manipulating the pull structure 30 in different control operations, thereby optimizing the use experience of the handle.

[0056] As an example, the handle can be applied to game control, and the pull structure 30 can be specifically applied to, but not limited to, shooting operations in shooting games and braking operations in vehicle driving games. For example, when the handle is applied to a shooting game, the user can rotate the handle to the first state, pull the pull structure 30, and the pull structure 30 can trigger the first switch 21 with a first stroke, thereby achieving a shooting operation. When the handle is applied to a braking operation in a vehicle driving game, the user can rotate the handle to the second state, pull the pull structure 30, and the pull structure 30 can trigger the second switch 22 with a second stroke, thereby achieving a braking operation. With this arrangement, the user has different control feel when performing shooting operations and braking operations, thereby optimizing the user experience of the handle.

[0057] In some embodiments, see Figures 4 to 8 In the distribution direction of the first stopper 42 and the second stopper 50, the first stopper 42 is provided with a first convex portion 421 on a side close to the second stopper 50. In the distribution direction of the first stopper 42 and the second stopper 50, the second stopper 50 is provided with a first groove 51 and a second groove 52 at intervals on a side close to the first stopper 42. In the first state, the first convex portion 421 and the first groove 51 are matched in concave and convex. In the second state, the first convex portion 421 and the second groove 52 are matched in concave and convex.

[0058] The first convex portion 421 may be a convex block or a convex strip, etc., which are arranged on the first limiting member 42 .

[0059] Based on this, when no external force is applied to the adjustment frame 41, due to the concavo-convex fit between the first convex portion 421 and the first groove 51, the first convex portion 421 can be limited in the first groove 51, so that the adjustment frame 41 is limited in the first state. When no external force is applied to the adjustment frame 41, due to the concavo-convex fit between the first convex portion 421 and the second groove 52, the first convex portion 421 can be limited in the second groove 52, so that the adjustment frame 41 is limited in the second state. In this way, due to the concavo-convex fit between the first convex portion 421 and the first groove 51 or the second groove 52, the rotation of the adjustment frame 41 is hindered, and the adjustment frame 41 is not easy to further rotate relative to the second limiter 50 in the first state or the second state, which is conducive to the pull structure 30 to stably trigger the first switch 21 or the second switch 22.

[0060] In another embodiment, in the distribution direction of the first stopper 42 and the second stopper 50, the first stopper 42 is provided with a third groove and a fourth groove at intervals on a side close to the second stopper 50. The second stopper 50 is provided with a second convex portion on a side close to the first stopper 42. The second convex portion is matched with the third groove in a concave-convex manner in the first state. The second convex portion is matched with the fourth groove in a concave-convex manner in the second state.

[0061] The second convex portion may be a convex block or a convex strip, etc., which are arranged on the second limiting member 50 .

[0062] Based on this, without applying an external force to the adjusting frame 41, due to the concave-convex fit between the second convex portion and the third groove, the second convex portion can be limited within the third groove, thereby limiting the adjusting frame 41 to the first state. Without applying an external force to the adjusting frame 41, due to the concave-convex fit between the second convex portion and the fourth groove, the second convex portion can be limited within the fourth groove, thereby limiting the adjusting frame 41 to the second state. In this way, due to the concave-convex fit between the second convex portion and the third groove or the fourth groove, the relative rotation between the adjusting frame 41 and the second limiting member 50 is hindered, which is beneficial to the actuating structure 30 to stably trigger the first switch 21 or the second switch 22 respectively.

[0063] Among them, the above two embodiments can exist simultaneously. Through the concave-convex fit between the second convex portion and the third groove or the fourth groove, and the concave-convex fit between the first convex portion 421 and the first groove 51 or the second groove 52, the relative rotation between the adjusting frame 41 and the second limiting member 50 is hindered, which is beneficial to the actuating structure 30 to stably trigger the first switch 21 or the second switch 22 respectively.

[0064] In some embodiments, please refer to Figure 3 and Figure 4 , the distribution directions of the first limiting member 42 and the second limiting member 50 are parallel to the rotation axis of the adjusting frame 41.

[0065] Define the distribution direction of the first limiting member 42 and the second limiting member 50 as the first direction Z.

[0066] Among them, the rotation axis of the adjusting frame 41 is like the axis L shown in Figure 4 , the first direction Z is like the Z axis shown in Figure 4 , and the Figure 4 also shows the Y axis and the X axis. It should be noted here that the X axis, the Y axis, and the Z axis form a spatial coordinate system, and the X axis, the Y axis, and the Z axis are the three coordinate axes of the spatial coordinate system. The X axis is perpendicular to the Y axis, the X axis is perpendicular to the Z axis, and the Y axis is perpendicular to the Z axis. As shown in Figure 4 , the first direction Z is parallel to the X axis, the rotation axis L of the adjusting frame 41 is also parallel to the X axis, and the first direction Z is parallel to the rotation axis L of the adjusting frame 41.

[0067] In the case where the first limiting member 42 and the second limiting member 50 are in concave-convex fit as described above, the distribution directions of the first limiting member 42 and the second limiting member 50 are set to be parallel to the rotation axis L of the adjusting frame 41, so that the first limiting member 42 and the second limiting member 50 move towards each other along the first direction Z to achieve the limiting of the first limiting member 42 and the second limiting member 50 around the rotation axis direction L of the adjusting frame 41, and the first limiting member 42 and the second limiting member 50 move away from each other along the first direction Z to release the limiting of the first limiting member 42 and the second limiting member 50 around the rotation axis direction L of the adjusting frame 41. Based on this, the limiting relationship between the first limiting member 42 and the second limiting member 50 is simplified, the operation is simple, and the processing is convenient.

[0068] In some other embodiments, the distribution directions of the first limiting member 42 and the second limiting member 50 may intersect the rotation axis L of the adjusting frame 41.

[0069] In some embodiments, please refer to Figures 2 to 8 , the handle further includes a first elastic member 60. One end of the first elastic member 60 in the first direction Z abuts against the handle body 10. The other end of the first elastic member 60 in the first direction Z abuts against at least one of the adjusting frame 41, the first limiting member 42, and the second limiting member 50. The first direction Z is parallel to the rotation axis of the adjusting frame 41.

[0070] The first elastic member 60 may be a structure such as a spring or a spring piece.

[0071] It should be noted that one end of the first elastic member 60 in the first direction Z abuts against the handle body 10. Specifically, as Figure 7 shown, the first elastic member 60 may abut against the circuit board 12; or, as Figure 3 described, the first elastic member 60 may abut against the housing 11.

[0072] During use, the user can drive the adjusting frame 41 to rotate relative to the second limiting member 50, and during the rotation process. Since the first convex portion 421 is provided on the side of the first limiting member 42 close to the second limiting member 50. The second limiting member 50 is provided with a first groove 51 and a second groove 52 at intervals on the side close to the first limiting member 42. When the first convex portion 421 enters or exits the first groove 51 or the second groove 52, it can move along the first direction Z. During this movement process, the first elastic member 60 will elastically deform along the first direction Z as the adjusting frame 41 moves.

[0073] It can be understood that the first elastic member 60 can be set to be in a compressed state during use. When the user drives the adjustment frame 41 to rotate to the first state or the second state, the first limiting member 42 can abut against the groove wall of the first groove 51 or the second groove 52 under the elastic pushing action of the first elastic member 60 along the first direction Z, so that the adjustment frame 41 can be limited in the above two states without external force.

[0074] In this way, the first elastic member 60 can provide pressure for the limitation between the first limiting member 42 and the second limiting member 50, so that when the adjusting member rotates to the first state or the second state, it is not easy to rotate again and can only move again when an external force is applied by the user. Thus, the adjustment frame 41 can be better limited in the first state and the second state, ensuring good triggering of the first switch 21 and the second switch 22.

[0075] In a possible design, as Figures 4 to 8 shown, the handle further includes a bolt 80. The bolt 80 penetrates through the first limiting member 42 and the adjustment frame 41 along the first direction Z, and the bolt 80 has an abutting portion 81. The abutting portion 81 is spaced apart from the adjustment frame 41. The opposite ends of the first elastic member 60 along the first direction Z are respectively connected between the abutting portion 81 and the adjustment frame 41. The side of the abutting portion 81 away from the first elastic member 60 abuts against the handle body 10. In this way, the user can adjust the elastic force of the first elastic member 60 by adjusting the movement of the bolt 80 along the first direction Z.

[0076] In some embodiments, please refer to Figure 3 and Figure 4 , a first groove 51 and a second groove 52 form a first groove group. A plurality of first groove groups are provided. The first limiting member 42 is provided with a plurality of first convex portions 421 distributed at intervals. The plurality of first convex portions 421 are arranged in one-to-one correspondence with the plurality of first groove groups. In the rotation direction of the adjustment frame 41, the plurality of first convex portions 421 are symmetrically distributed about the center.

[0077] It can be understood that in the rotation direction of the adjustment frame 41, the plurality of first convex portions 421 are symmetrically distributed about the center. Correspondingly, the plurality of first groove groups are also symmetrically distributed about the center.

[0078] In this way, through the limitation of the plurality of first convex portions 421 on the first limiting member 42 by multiple groups of first groove groups, it is difficult for the adjustment frame 41 to continue rotating when it rotates to the first state or the second state, further enhancing the limiting effect between the first limiting member 42 and the second limiting member 50.

[0079] In some embodiments, a third groove and a fourth groove form a second groove group. The second groove group is provided in plurality. The second stopper 50 is provided with a plurality of second protrusions distributed at intervals. The plurality of second protrusions are arranged in one-to-one correspondence with the plurality of second groove groups. In the rotation direction of the adjustment frame 41, the plurality of second protrusions are centrally symmetrically distributed.

[0080] It can be understood that, in the rotation direction of the adjustment frame 41 , the plurality of second protrusions are distributed in a centrally symmetrical manner, and correspondingly, the plurality of second groove groups are also distributed in a centrally symmetrical manner.

[0081] In this way, by limiting the plurality of second protrusions on the second limiting member 50 through the plurality of second groove groups, it is difficult for the adjustment frame 41 to continue rotating when it rotates to the first state or the second state, thereby enhancing the limiting effect between the first limiting member 42 and the second limiting member 50.

[0082] In some embodiments, see Figure 4 and Figure 5 The pull structure 30 includes a pull body 31, a first push portion 32, a first connecting portion 33 and a trigger member 34. The pull body 31 is movably connected to the handle body 10. The first push portion 32 is arranged on the pull body 31. The first push portion 32 is opposite to the trigger structure 43 in the first state to push the trigger structure 43. The first push portion 32 is also used to stagger with the trigger structure 43 in the second state. The first connecting portion 33 is arranged on the pull body 31. The first connecting portion 33 extends beyond the first push portion 32 toward the adjustment frame 41. The trigger member 34 is arranged on the first connecting portion 33. The trigger member 34 is used to trigger the second switch 22 in the second state.

[0083] The first pushing portion 32 may be, but is not limited to, a convex column structure disposed on the pull body 31 .

[0084] As an example, the first connection portion 33 extends beyond the first push portion 32 toward the adjustment frame 41, which means that in the direction from the pull body 31 toward the adjustment frame 41, the length of the first connection portion 33 is greater than the length of the first push portion 32. In this way, when the first push portion 32 is offset from the trigger structure 43, the first push portion 32 and the first connection portion 33 can move at the same time, and during the movement, the first connection portion 33 can preferentially abut against the second switch 22, thereby avoiding as much as possible the situation where the first push portion 32 abuts against the adjustment frame 41, making it impossible for the first connection portion 33 to continue to move, and thus making it difficult to trigger the second switch 22.

[0085] The trigger member 34 may be a convex structure for pushing the second switch 22. Alternatively, see Figure 5, the second switch 22 may further include a Hall sensor. At this time, the triggering member 34 may be a Hall magnet. The Hall sensor is used to detect the magnetic field of the Hall magnet in the second state and convert the magnetic field signal into an electrical signal, and then trigger the second switch 22 through the triggering member 34. The triggering method between the Hall sensor and the Hall magnet has low power consumption and high response frequency. Among them, the setting method of the triggering member 34 is not limited to the above two, and may also be other forms.

[0086] In this way, the first switch 21 is triggered by the first pushing portion 32, and the second switch 22 is triggered by the first connecting portion 33. The first switch 21 and the second switch 22 are respectively triggered by the activities of the first pushing portion 32 and the first connecting portion 33, so that the moving stroke of the toggling structure 30 in the first state and the second state is different, and further the handling feel of the toggling structure 30 is different. Then, the user has different usage feels when operating the toggling structure 30 in different control operations, thus optimizing the usage experience of the handle.

[0087] In one embodiment, the toggling body 31 may have a perforation, and the handle body 10 includes a rotating shaft, and the rotating shaft passes through the perforation of the toggling body 31, so that the toggling body 31 can rotate relative to the handle body 10 around the rotating shaft.

[0088] In some embodiments, please refer to Figure 3 and Figure 4 , the triggering structure 43 includes a rotating member 431 and a second elastic member 432. The rotating member 431 is rotatably connected to the adjusting frame 41. The second elastic member 432 is abutted between the rotating member 431 and the adjusting frame 41. The second elastic member 432 is used to apply an elastic force to the rotating member 431 to make the rotating member 431 away from the first switch 21. The toggling structure 30 is used to push the rotating member 431 against the second elastic member 432 to make the rotating member 431 trigger the first switch 21.

[0089] The rotating member 431 refers to a structure that can rotate under the pushing action of the toggling structure 30, and at least part of the rotating member 431 can trigger the first switch 21 by means of touching or pressing during the rotation process.

[0090] The second elastic member 432 may be a spring or a spring piece, etc.

[0091] During use, the user can push the rotating member 431 to rotate through the toggling structure 30, and the rotating member 431 approaches and triggers the first switch 21 during the rotation process. At this time, the second elastic member 432 is compressed by the pushing of the rotating member 431 to store elastic potential energy. After the user releases the toggling structure 30, the second elastic member 432 can release the elastic potential energy and elastically push the rotating member 431 to rotate in the opposite direction to the previous process, thereby driving the rotating member 431 to rotate in the reverse direction, and further making the rotating member 431 away from the first switch 21.

[0092] In this way, the first switch 21 is triggered by the contact between the rotating members 431. The actuating structure 30 does not directly act on the first switch 21. During processing, by designing the position of the rotating members 431 to align the rotating members 431 with the first switch 21, the adaptability between the actuating structure 30 and the first switch 21 is improved.

[0093] In some embodiments, please refer to Figures 4 to 6 , the rotating member 431 includes a second connecting portion 4311, a second pushing portion 4312, and a triggering portion 4313. The second connecting portion 4311 is rotatably connected to the adjusting frame 41. Both the second pushing portion 4312 and the triggering portion 4313 are connected to the second connecting portion 4311. The triggering portion 4313 is bent relative to the second pushing portion 4312. The second elastic member 432 abuts between the second pushing portion 4312 and the adjusting frame 41. The second elastic member 432 is used to apply an elastic force to the second pushing portion 4312 to move the triggering portion 4313 away from the first switch 21. The actuating structure 30 is used to push the second pushing portion 4312 toward the second elastic member 432 to move the triggering portion 4313 closer to and trigger the first switch 21.

[0094] In a possible design, the second pushing portion 4312 and the triggering portion 4313 may be plate-like structures, both of which are connected to the second connecting portion 4311, and the included angle between the second pushing portion 4312 and the triggering portion 4313 may be set to a right angle.

[0095] The second elastic member 432 may be a structure such as a spring or a spring piece.

[0096] During use, the user can push the second pushing portion 4312 to rotate through the actuating structure 30. The rotation of the second pushing portion 4312 drives the rotation of the triggering portion 4313. The triggering portion 4313 approaches and triggers the first switch 21 during rotation. At this time, the second elastic member 432 is compressed by the pushing of the second pushing portion 4312 to store elastic potential energy. After the user releases the actuating structure 30, the second elastic member 432 can release the elastic potential energy and elastically push the second pushing portion 4312, so that the second pushing portion 4312 rotates in the opposite direction to the previous process, and then drives the triggering portion 4313 to rotate in the reverse direction and move away from the first switch 21.

[0097] In this way, the structure of the triggering structure 43 is simple and easy to operate. At the same time, the second pushing portion 4312 and the actuating structure 30 can more flexibly adapt to the installation position of the first switch 21, so that the actuating structure 30 can accurately trigger the first switch 21 after moving under the user's actuation.

[0098] In some embodiments, please refer to Figure 4 and Figure 5The second limiting member 50 is provided with a first limiting groove 53. In the rotation direction of the adjusting frame 41, at least a part of the adjusting frame 41 is limited in the first limiting groove 53.

[0099] In one possible design, the second limiting member 50 is provided with two bosses spaced apart in the rotation direction of the adjusting frame 41, the two bosses are spaced apart to form a first limiting groove 53, and at least a portion of the adjusting frame 41 can be limited between the two bosses; or, in some other possible designs, the first limiting groove 53 can also be a notch provided on the outer peripheral wall of the second limiting member 50, and the notch has two inner walls along the rotation direction of the adjusting frame 41, and at least a portion of the structure of the adjusting frame 41 can be limited between the two inner walls of the notch.

[0100] The entire structure of the adjustment frame 41 may be limited in the first limiting groove 53 , or part of the structure may be limited in the first limiting groove 53 and part of the structure may be located outside the first limiting groove 53 .

[0101] The first limit groove 53 limits the rotational travel of the adjustment frame 41, so that the adjustment frame 41 can rotate within a certain angle range, thereby preventing the adjustment frame 41 from excessively rotating under the drive of the user and thereby misaligning the first switch 21 or the second switch 22, thereby facilitating stable triggering of the first switch 21 and the second switch 22 by the pull structure 30.

[0102] Alternatively, in another embodiment, the adjusting frame 41 is provided with a second limiting groove, and in the rotation direction of the adjusting frame 41 , at least a portion of the second limiting member 50 is limited in the second limiting groove.

[0103] In one possible design, the adjustment frame 41 is provided with two bosses spaced apart in the rotation direction of the adjustment frame 41, the two bosses are spaced apart to form a second limiting groove, and at least a portion of the second limiting member 50 can be limited between the two bosses; or, in some other possible designs, the second limiting groove can also be a notch provided on the adjustment frame 41, and the notch has two inner walls along the rotation direction of the adjustment frame 41, and at least a portion of the second limiting member 50 can be limited between the two inner walls of the notch.

[0104] The second limiting member 50 may have its entire structure limited within the second limiting groove, or may have a portion of its structure limited within the second limiting groove and a portion of its structure outside the second limiting groove.

[0105] The setting of the second limit groove limits the rotational travel of the adjustment frame 41, so that the adjustment frame 41 can rotate within a certain angle range and is not easy to over-rotate under the drive of the user and misalign the first switch 21 or the second switch 22, thereby facilitating the stable triggering of the first switch 21 and the second switch 22 by the pulling structure 30.

[0106] Alternatively, in another embodiment, the second limiting member 50 is provided with a first limiting groove 53. In the rotation direction of the adjusting frame 41, at least a portion of the adjusting frame 41 is limited in the first limiting groove 53. The adjusting frame 41 is provided with a second limiting groove, and in the rotation direction of the adjusting frame 41, at least a portion of the second limiting member 50 is limited in the second limiting groove.

[0107] The setting of the first limit groove 53 and the second limit groove limits the rotation stroke of the adjustment frame 41, so that the adjustment frame 41 can rotate within a certain angle range, and thus the adjustment frame 41 is not easy to excessively rotate under the drive of the user and stagger the first switch 21 or the second switch 22, which is conducive to the stable triggering of the first switch 21 and the second switch 22 by the pulling structure 30.

[0108] In some embodiments, see Figure 1 and Figure 9 The handle further includes a display screen 70. The display screen 70 includes a display module 71, a transparent cover plate 72 and a decorative sheet 73. The display module 71 is electrically connected to the handle body 10. The transparent cover plate 72 is disposed on the display module 71. The decorative sheet 73 is disposed between the transparent cover plate 72 and the display module 71. The decorative sheet 73 is located on the edges of the display module 71.

[0109] The transparent cover plate 72 may be, but is not limited to, a glass plate. The transparent cover plate 72 can be covered on the display module 71 so that the information on the display module 71 can be displayed through the transparent cover plate 72 . Meanwhile, the glass cover plate protects the display module 71 .

[0110] The decorative sheet 73 refers to a thin sheet structure that can play a decorative role. When in use, the decorative sheet 73 is usually set to black to achieve a better shielding effect. The decorative sheet 73 is usually made of plastic, rubber and other materials processed into a thin sheet structure. For example, the decorative sheet 73 can be selected as a plastic ring.

[0111] In this way, during processing, the user sets the decorative sheet 73 between the glass cover and the display module 71 and covers the edges of the display module 71. When the user watches the display screen 70, it is not easy to see the lines of the edges of the display module 71, thereby improving the aesthetics of the handle display screen 70.

[0112] The above are only preferred embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present application should be included in the protection scope of the present application.

Claims

1. A handle, characterized in that, Comprising: A handle body; A switch assembly including a first switch and a second switch spaced apart on the handle body; A toggling structure movably connected to the handle body; An adjusting device including an adjusting frame, a first limiting member provided on the adjusting frame, and a triggering structure movably connected to the adjusting frame; the adjusting frame is rotatably connected to the handle body and can be rotated to a first state or a second state; in the first state, the toggling structure is used to move and push the triggering structure with a first stroke, so that the triggering structure moves and triggers the first switch; In the second state, the toggling structure is used to move with a second stroke to trigger the second switch; the first stroke and the second stroke are different; A second limiting member provided on the handle body and limiting the first limiting member along the rotation direction of the adjusting frame in the first state and the second state respectively.

2. The handle according to claim 1, characterized in that, In the distribution direction of the first limiting member and the second limiting member, a first convex portion is provided on one side of the first limiting member close to the second limiting member, and a first groove and a second groove are spaced apart on one side of the second limiting member close to the first limiting member; the first convex portion is in concave-convex fit with the first groove in the first state and in concave-convex fit with the second groove in the second state; And / or, in the distribution direction of the first limiting member and the second limiting member, a third groove and a fourth groove are spaced apart on one side of the first limiting member close to the second limiting member, and a second convex portion is provided on one side of the second limiting member close to the first limiting member; the second convex portion is in concave-convex fit with the third groove in the first state and in concave-convex fit with the fourth groove in the second state.

3. The handle according to claim 2, characterized in that, The distribution direction of the first limiting member and the second limiting member is parallel to the rotation axis of the adjusting frame.

4. The handle according to claim 3, characterized in that, The handle further includes a first elastic member; one end of the first elastic member in a first direction abuts against the handle body, and the other end abuts against at least one of the adjusting frame, the first limiting member, and the second limiting member; the first direction is parallel to the rotation axis of the adjusting frame.

5. The handle according to claim 2, wherein, One first groove and one second groove form a first groove group, and a plurality of the first groove groups are provided; a plurality of the first convex portions are provided on the first limiting member at intervals, and the plurality of the first convex portions are arranged in one-to-one correspondence with the plurality of the first groove groups, and in the rotation direction of the adjusting frame, the plurality of the first convex portions are centrally symmetrically distributed; And / or, one third groove and one fourth groove form a second groove group, and a plurality of the second groove groups are provided; a plurality of the second convex portions are provided on the second limiting member at intervals, and the plurality of the second convex portions are arranged in one-to-one correspondence with the plurality of the second groove groups; in the rotation direction of the adjusting frame, the plurality of the second convex portions are centrally symmetrically distributed.

6. The handle according to any one of claims 1-5, characterized in that, The toggling structure includes: A toggling main body movably connected to the handle body; A first push portion is provided on the pull body and is used to oppose the trigger structure to push the trigger structure in the first state, and is also used to stagger with the trigger structure in the second state; A first connecting portion is disposed on the pull body and extends toward the adjustment frame beyond the first push portion; A triggering member is provided on the first connecting portion and is used for triggering the second switch in the second state.

7. The handle according to any one of claims 1-5, characterized in that, The trigger structure includes a rotating member and a second elastic member, wherein the rotating member is rotatably connected to the adjustment frame; the second elastic member abuts between the rotating member and the adjustment frame and is used to apply an elastic force to the rotating member so that the rotating member is away from the first switch; the pulling structure is used to push the rotating member toward the second elastic member so that the rotating member triggers the first switch.

8. The handle according to claim 7, characterized in that, The rotating member includes a second connecting portion, a second pushing portion and a triggering portion, the second connecting portion is rotatably connected to the adjusting frame, the second pushing portion and the triggering portion are both connected to the second connecting portion, and the triggering portion is bent relative to the second pushing portion; the second elastic member is abutted between the second pushing portion and the adjusting frame, and is used to apply an elastic force to the second pushing portion so that the triggering portion is away from the first switch; the pulling structure is used to push the second pushing portion toward the second elastic member so that the triggering portion approaches and triggers the first switch.

9. The handle according to any one of claims 1-5, characterized in that, The second limiting member is provided with a first limiting groove, and in the rotation direction of the adjusting frame, at least a portion of the adjusting frame is limited in the first limiting groove; and / or the adjusting frame is provided with a second limiting groove, and in the rotation direction of the adjusting frame, at least a portion of the second limiting member is limited in the second limiting groove.

10. The handle according to any one of claims 1-5, characterized in that, The handle also includes a display screen, which includes a display module, a transparent cover plate and a decorative sheet. The display module is electrically connected to the handle body, and the transparent cover plate is arranged on the display module; the decorative sheet is arranged between the transparent cover plate and the display module and is located on the four edges of the display module.