Supporting mechanism capable of being adjusted in multiple directions, mouse and supporting device

By designing a multi-directionally adjustable support mechanism, the problem that the palm rest in the existing support device cannot be adjusted is solved, multi-directional adjustment of the support body is achieved, and the comfort and flexibility of use are improved.

CN223345062UActive Publication Date: 2025-09-16SHENZHEN NEWUNITE ELECTRONIC CO LTD
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Patent Information

Application Number
CN202422964563.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2025-09-16
Estimated Expiration
2034-12-02

AI Technical Summary

Technical Problem

In existing support devices, the palm rest cannot be adjusted according to the habits or hand sizes of different users, resulting in inconvenience in use.

Method used

A multi-directional adjustable support mechanism is designed, including a base, a sphere, a connector and a support body. Through the rotation setting of the sphere and the connector, the support body can rotate in different directions to adjust the posture, and the adjustment method is increased by the sliding part and the limit structure. The adjustment structure can adjust the friction force to meet different needs.

Benefits of technology

The support body can be adjusted in multiple directions to meet the usage habits and hand size requirements of different users, thereby improving the comfort and flexibility of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a supporting mechanism capable of being adjusted in multiple directions, a mouse and a supporting device. The supporting mechanism capable of being adjusted in multiple directions comprises a base used for being installed on an external structure or supported on a supporting face or connected with a base used for being supported on the supporting face; the ball body is connected to the base; one end of the connecting piece is rotationally arranged relative to the sphere and can be static after rotating relative to the sphere; and the supporting body is used for supporting an external object and is rotationally arranged relative to the other end of the connecting piece, so that the supporting body can rotate in different directions relative to the ball body through the connecting piece to adjust the placing posture. According to the supporting mechanism capable of being adjusted in multiple directions, the supporting body can not only rotate in different directions relative to the ball connected to the base through the connecting piece, but also rotate relative to the connecting piece, and therefore the supporting body has different adjusting modes, and different customer requirements are met.
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Description

Technical Field

[0001] The utility model relates to the technical field of supporting devices, in particular to a multi-directionally adjustable supporting mechanism, a mouse and a supporting device. Background Art

[0002] Some support devices, such as mice with palm rests or mobile phone supports, support the base of the palm to provide greater comfort when using the mouse. However, the palm rest is fixed to the mouse body and cannot be adjusted to suit different user habits or hand size. Utility Model Content

[0003] To solve at least one of the problems existing in the above-mentioned prior art, according to one aspect of the present invention, a multi-directionally adjustable support mechanism is provided, comprising:

[0004] A base, for mounting on an external structure, or for supporting on a supporting surface, or for connecting to a base for supporting on a supporting surface;

[0005] a sphere connected to the base;

[0006] A connecting member, one end of which is rotatably arranged relative to the sphere and can be stationary after rotating relative to the sphere;

[0007] The support body is used to support an external object and is rotatably arranged relative to the other end of the connecting member, so that the support body can be rotated relative to the sphere in different directions through the connecting member to adjust the placement posture.

[0008] In some embodiments, the sphere is exposed on opposite sides of the connector.

[0009] In some embodiments, the connecting member includes a first sliding member and a second sliding member that are slidably arranged with respect to each other, and the first sliding member can slide with the second sliding member and then come to rest;

[0010] The first sliding member is used for rotating the supporting body, and the second sliding member is rotatably arranged relative to the sphere.

[0011] In some embodiments, a limiting column is provided on one of the first sliding member and the second sliding member, and a sliding groove is provided on the other sliding member, and the limiting column is slidably disposed in the sliding groove.

[0012] In some embodiments, the multi-directionally adjustable support mechanism further includes an elastic sleeve, which is disposed on one of the first sliding member or the second sliding member and abuts against an inner wall of the other of the first sliding member or the second sliding member.

[0013] In some embodiments, the connecting member has a rotating head rotatably arranged relative to the sphere;

[0014] The rotating head includes a first limit block and a second limit block that are detachably connected. The first limit block is provided with a first limit notch for accommodating part of the spheres, and the second limit block is provided with a second limit notch for accommodating part of the spheres. The second limit block is rotatably arranged relative to the first limit block so as to restrict part of the spheres within the first limit notch and the second limit notch in a manner that the second limit block can rotate relative to the first limit block.

[0015] In some embodiments, the multi-directionally adjustable support mechanism includes an adjustment structure, the support body is rotatably arranged relative to the connecting member through the adjustment structure, and the adjustment structure can adjust the friction force when the support body rotates relative to the connecting member.

[0016] In some embodiments, the adjustment structure includes two screws arranged opposite to each other, the screws including a threaded section and a smooth section, the threaded section being threadedly connected to the connecting member;

[0017] The support body includes a support portion and a rotating ear provided on the support portion. The rotating ear is rotatably arranged relative to the smooth section. The rotating ear adjusts the friction force when rotating relative to the connecting member through the threaded section.

[0018] A second aspect of the present invention provides a supporting device, comprising the above-mentioned multi-directionally adjustable supporting mechanism, wherein the supporting body is used to support the electronic equipment.

[0019] The third aspect of the present invention provides a mouse, comprising a mouse body; as the above-mentioned multi-directionally adjustable support mechanism, the base is connected to the mouse body, and the support body is a palm rest and is exposed relative to the mouse body.

[0020] In summary, the multi-directionally adjustable support mechanism, mouse, and support device provided by the present invention have the following technical effects:

[0021] Since the base is installed on the external structure, for example, when it is installed on the mouse body, and when the support body is set as a palm rest, the palm rest can not only rotate in different directions relative to the sphere connected to the base through the connecting piece, so that it can rotate in various directions relative to the sphere, but the palm rest can also rotate relative to the connecting piece. In this way, the palm rest has different adjustment methods to meet different customer needs and adapt to the user's different usage habits or hand sizes. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1A three-dimensional schematic diagram of the multi-directionally adjustable support mechanism of the first embodiment of the present utility model;

[0023] Figure 2 for Figure 1 Another three-dimensional schematic diagram of the multi-directionally adjustable support mechanism;

[0024] Figure 3 for Figure 1 A cross-sectional schematic diagram of a multi-directionally adjustable support mechanism;

[0025] Figure 4 for Figure 1 A right side view of the multi-directionally adjustable support mechanism;

[0026] Figure 5 for Figure 4 Schematic diagram of the cross section along the AA direction;

[0027] Figure 6 for Figure 1 A top view of the multi-directionally adjustable support mechanism;

[0028] Figure 7 for Figure 6 Schematic diagram of the cross section along the BB direction;

[0029] Figure 8 for Figure 1 A schematic diagram of a first sliding member and a second sliding member in a multi-directionally adjustable support mechanism in a stretched state;

[0030] Figure 9 for Figure 1 Another schematic diagram of the multi-directionally adjustable support mechanism in which the first sliding member and the second sliding member are in a stretched state;

[0031] Figure 10 for Figure 1 A first schematic diagram of the multi-directionally adjustable support mechanism in which the first sliding member and the second sliding member are in a retracted state;

[0032] Figure 11 for Figure 1 A second schematic diagram of the multi-directionally adjustable support mechanism in which the first sliding member and the second sliding member are in a retracted state;

[0033] Figure 12 for Figure 1 A third schematic diagram of the multi-directionally adjustable support mechanism in which the first sliding member and the second sliding member are in a retracted state;

[0034] Figure 13 for Figure 1A fourth schematic diagram showing the first sliding member and the second sliding member of the multi-directionally adjustable support mechanism in a retracted state;

[0035] Figure 14 This is a structural diagram of the second embodiment of the present utility model.

[0036] Attached photos:

[0037] 100-Multi-directional adjustable support mechanism, 10-base, 11-connecting shaft, 12-connecting part, 20-sphere, 30-connecting part, 31-first sliding part, 311-limiting column, 32-second sliding part, 321-slide, 322-second avoidance gap, 33-rotating head, 331-first limiting block, 3311-first limiting gap, 3313-support ear, 332-second limiting block, 3321-second limiting gap, 3322-first avoidance gap, 3323-connecting ear, 34-positioning bolt, 35-connecting bolt, 36-mounting head, 361-arc-shaped support block, 37-elastic sleeve, 50-support body, 51-support part, 52-rotating ear, 60-adjustment structure, 61-screw, 611-screw segment, 612-smooth segment, 200-mouse, 210-mouse body. DETAILED DESCRIPTION

[0038] For better understanding and implementation, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention.

[0039] In the description of the present invention, it should be noted that the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they cannot be understood as limitations on the present invention.

[0040] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art in the art of the present invention. The terms used herein in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention.

[0041] The present invention will be further described in detail below with reference to the accompanying drawings.

[0042] See also Figures 1 to 13 The multi-directionally adjustable support mechanism 100 provided in an embodiment of the present invention includes a base 10, a sphere 20, a connecting member 30 and a support body 50.

[0043] Among them, see Figures 1 to 4 as well as Figure 6 , the base 10 is used to be installed on an external structure. For example, when the external mechanism is set as a mouse body 210, the base 10 is connected to the mouse body 210, or the base 10 can be supported on a supporting surface, for example, when the supporting surface is a desktop, the base 10 can be supported on the supporting surface, or the base 10 is connected to a base for supporting the supporting surface to ensure the stability of the entire multi-directionally adjustable support mechanism 100 during use; the sphere 20 is connected to the base 10; one end of the connecting member 30 is rotatably arranged relative to the sphere 20, and can be stationary after rotating relative to the sphere 20; the support body 50 is used to support an external object, for example, as a palm rest in the mouse 200, used to support the hand, that is, the external component is the palm of the human body, or the support body 50 can be used to support an electronic device, and the support body 50 is rotatably arranged relative to the other end of the connecting member 30, so that the support body 50 can be rotated in different directions relative to the sphere 20 through the connecting member 30 to adjust the placement posture.

[0044] The above-mentioned multi-directionally adjustable support mechanism 100, since the base 10 is installed on the external structure, for example, when it is installed on the mouse 200 body, and when the support body 50 is set as a palm rest, the palm rest can not only rotate in different directions relative to the sphere 20 connected to the base 10 through the connecting member 30, so as to be able to rotate in various directions relative to the sphere 20, but the palm rest can also rotate relative to the connecting member 30. In this way, the palm rest has different adjustment methods to meet different customer needs and cooperate with the user's different usage habits or hand sizes.

[0045] Among them, the external structure of this embodiment can be set as a mouse body 210, that is, the multi-directional adjustable support mechanism 100 of this embodiment is applied to the mouse 200, and the support body 50 is set as a palm rest to support the palm. It can be understood that the curvature of the palm rest can be set according to the ergonomic curvature of the palm to improve the comfort of the user when using it; or when the base 10 of this embodiment is supported on a support surface, or when supported by a base supported on the support surface, the support body 50 can be set to support electronic products, such as electronic devices such as tablets, mobile phones or game controllers, so that users can adjust different placement postures of electronic products. It can be understood that when it is set to support electronic products, the support body 50 includes two parts with an angle of approximately 90 degrees, so that the electronic products can be conveniently placed.

[0046] Among them, when the sphere 20 is connected to the base 10, the sphere 20 can be connected to the base 10 through an axis, so that most of the area of ​​the sphere 20 can be exposed. When the connecting member 30 rotates relative to the sphere 20, a roughly hemispherical structure can be provided on the connecting member 30. The sphere 20 is embedded in the hemispherical structure, and the center point of the sphere 20 is located in the accommodating space of the hemispherical structure. The sphere 20 can rotate relative to the wall of the hemispherical structure, and there is friction between the two. In this way, the connecting member 30 can be rotated in all directions relative to the sphere 20, and can be stationary after rotation.

[0047] Specifically, see Figure 7 In one embodiment of the present invention, in order to increase the adjustment methods of the support body 50 relative to the spherical body 20, the two opposite sides of the spherical body 20 are exposed relative to the connecting member 30, so that the connecting member 30 can not only drive the support body 50 to rotate left, right, upward, downward, etc. relative to the spherical body 20, but also can realize rotation in various directions such as upper left, lower left, upper right, and lower right, so that the adjustment range of the support body 50 is larger, the adjustment methods are more, and it is more adaptable to the needs of different users.

[0048] It can be understood that in order to avoid interference between the connecting member 30 and the base 10 when the connecting member 30 rotates relative to the sphere 20, the base 10 in this embodiment includes a connecting shaft 11 connected to the sphere 20, and the connecting shaft 11 is connected to the side of the sphere 20 exposed relative to the connecting member 30. Furthermore, the base 10 also includes a connecting portion 12 connected to the external structure. Therefore, since the connecting shaft 11 has a certain extension length, the connecting member 30 is avoided from interfering with the connecting portion 12 during the rotation relative to the sphere 20.

[0049] In order to ensure that the connecting member 30 can rotate relative to the sphere 20 and remain stationary relative to the sphere 20, the sphere 20 can be made of a polymer material such as polytetrafluoroethylene, and the connecting member 30 can be made of metal, so that there is friction between the two and they can rotate relative to each other.

[0050] See also Figures 1 to 4 as well as Figures 6 to 13In one embodiment of the present invention, in order to further increase the adjustment methods of the support body 50 and provide more adjustment functions to the user, the connecting member 30 includes a first sliding member 31 and a second sliding member 32 which are slidingly arranged with respect to each other, and the first sliding member 31 can slide with the second sliding member 32 and then come to rest; the first sliding member 31 is for the support body 50 to rotate, and the second sliding member 32 is arranged to rotate relative to the sphere 20. In this way, the connecting member 30 is arranged to include a first sliding member 31 and a second sliding member 32 which can slide relative to each other. While the support body 50 rotates relative to the sphere 20, the support body 50 can also be stretched or shortened relative to the sphere 20, thereby further increasing the adjustment methods of the support body 50, meeting the needs of more customers, and having stronger practicality.

[0051] Furthermore, in order to limit the stretching distance between the first sliding member 31 and the second sliding member 32 and avoid relative separation, a limit column 311 is provided on one of the first sliding member 31 and the second sliding member 32, and a slide groove 321 is provided on the other. The limit column 311 is slidably set in the slide groove 321. For example, when the first sliding member 31 is provided with a limit column 311, the second sliding member 32 is provided with a slide groove 321, so that the limit column 311 slides in the slide groove 321. When sliding to the two ends of the slide groove 321, the first sliding member 31 stops stretching relative to the second sliding member 32 or stops shortening relative to the second sliding member 32.

[0052] Specifically, one of the first sliding member 31 and the second sliding member 32 of this embodiment is columnar and the other is cylindrical. The cylindrical body is sleeved outside the columnar body, so that the two slide relative to each other and have friction so that they can stop after sliding.

[0053] Furthermore, in order to increase the feel of the first sliding member 31 and the second sliding member 32 when they slide relative to each other, the multi-directionally adjustable support mechanism 100 also includes an elastic sleeve 37, which is provided on one of the first sliding member 31 or the second sliding member 32, and is abutted against the inner wall of the other of the first sliding member 31 or the second sliding member 32. For example, when the first sliding member 31 is set to be columnar and the second sliding member 32 is set to be cylindrical, the elastic sleeve 37 is sleeved on the first sliding member 31 and abuts against the inner wall of the second sliding column 311 to increase the friction when the first sliding column 311 and the second sliding column 311 slide together, thereby increasing the feel when pushing and pulling.

[0054] Specifically, the first sliding member 31 of this embodiment is set to be columnar 1, and the second sliding member 32 is cylindrical; in other embodiments, the first sliding member 31 can also be set to be cylindrical, and the second sliding member 32 can be set to be sliding column. At this time, the elastic sleeve 37 is sleeved on the second sliding column 311 and is pressed against the inner wall of the first sliding member 31.

[0055] See also Figure 2 、 Figure 3 、 Figure 6 as well as Figures 8 to 13 In one embodiment of the present invention, when realizing the rotation setting with the ball 20, the connecting member 30 has a rotating head 33 that is rotatable relative to the ball 20; the rotating head 33 includes a first limiting block 331 and a second limiting block 332 that are detachably connected, the first limiting block 331 is provided with a first limiting notch 3311 for accommodating the ball 20, and the second limiting block 332 is provided with a second limiting notch 3321 for accommodating the ball 20, and the second limiting block 332 is rotatably set relative to the first limiting block 331, so that part of the ball 20 can be restricted in the first limiting notch 3311 and the second limiting notch by rotating relative to the first limiting block 331, thereby When the second limit block 332 and the first limit block 331 are connected to the sphere 20, the second limit block 332 is in an initial connection state relative to the first limit block 331. For example, one end between the two is already in an initial connection state through the positioning bolt 34. At this time, the second limit block 332 is rotated in the direction of the first limit block 331 to clamp the sphere 20 between the first limit block 331 and the second limit block 332. At the same time, the other end of the second limit block 332 and the other end of the first limit block 331 are connected by the connecting bolt 35. Furthermore, the positioning bolt 34 for the initial connection of the second limit block 332 is also tightened to achieve the limited installation of the sphere 20.

[0056] It should be noted that the rotation plane where the second limiting block 332 is located is perpendicular to the axis where the positioning bolt 34 is located.

[0057] It can be understood that after the sphere 20 is installed in a limited manner, the center of the sphere 20 coincides with the center formed by the first limiting notch 3311 and the second limiting notch 3321, and the cross-section where the maximum diameter of the sphere 20 is located is within the range surrounded by the first limiting notch 3311 and the second limiting notch 3321, thereby preventing the sphere 20 from falling out of the relative connector.

[0058] Understandably, see Figure 3 and Figure 13The connecting member 30 of this embodiment includes not only the first sliding member 31 and the second sliding member 32 described above, but also the rotating head 33 described above. Specifically, when the rotating head 33 is arranged with the first sliding member 31 or the second sliding member 32, the first limiting block 331 and the second sliding member 32 are in an integrated structure. The first limiting block 331 is provided with a supporting ear 3313, and the second limiting block 332 is correspondingly provided with a connecting ear 3323. When supporting the sphere 20, the connecting ear 3323 is supported by the supporting ear 3313, and the connecting ear 3323 is initially positioned by the positioning bolt 34 so that the connecting ear 3323 can rotate relative to the supporting ear 3313, thereby facilitating the installation of the sphere 20.

[0059] Furthermore, since the first sliding member 31 and the second sliding member 32 are rod-shaped, in order to reduce the volume occupied by the entire connecting member 30, a first avoidance notch 3322 is provided on the second limit block 332, and the first avoidance notch 3322 is used to set the connecting bolt 35, so that after the first limit block 331 and the second limit block 332 are installed, the connecting bolt 35 is prevented from protruding from the side of the second limit block 332, causing the entire adjustment mechanism to occupy a large volume. By setting the first avoidance notch 3322, the volume occupied by the connecting member 30 is reduced.

[0060] Furthermore, in order to ensure the structural strength of the first limit block 331 and the second limit block 332 when rotating relative to the sphere 20, the connecting bolt 35 needs to be set away from the sphere 20. Therefore, the connecting bolt 35 is set as far as possible at the end of the first limit block 331 and the second limit block 332 away from the sphere 20. In order to achieve this installation method, the second sliding member 32 is provided with a second avoidance notch 322 for avoiding the connecting bolt 35. Figure 2 As shown, in this way, the connection bolt 35 can be arranged as far away from the sphere 20 as possible.

[0061] See also Figures 1 to 5 as well as Figures 8 to 13 In one embodiment of the present invention, in order to better adjust the rotation of the support body 50, the multi-directionally adjustable support mechanism 100 includes an adjustment structure 60, and the support body 50 is rotated relative to the connecting member 30 through the adjustment structure 60, and the adjustment structure 60 can adjust the friction force when the support body 50 rotates relative to the connecting member 30. In this way, the adjustment mechanism not only realizes the rotation of the support body 50, but also can adjust the friction force when the support ear 3313 rotates relative to the connecting member 30, that is, it can adjust the rotational force when the support ear 3313 rotates relative to the connecting member 30 to meet the rotation requirements of different customers.

[0062] Specifically, to ensure structural strength when the connector 30 rotates the support body 50, the connector 30 of this embodiment further includes a mounting head 36. Specifically, the support ears 3313 are rotatably arranged relative to the rotating head 33. The first slider 31 is connected to the mounting head 36, and the second slider 32 is connected to the first stop block 331. In other words, the connector 30 includes the rotating head 33, the two slidably arranged first slider 31 and second slider 32, and the mounting head 36 including the first stop block 331 and the second stop block 332, to form the entire connector 30 structure.

[0063] It is understood that the mounting head 36 is configured to be much larger than the diameter of the first sliding member 31 along the radial direction of the first sliding member 31 to ensure the support strength of the mounting head 36 on the support ear 3313. In other embodiments, a notch may be provided at the end of the first sliding member 31, and the support ear 3313 and the sidewall of the notch may be rotated to achieve the effect of a rotatable arrangement of the support body 50.

[0064] See also Figure 5 , which is a schematic diagram of an adjustment structure 60 of an embodiment of the present invention, the adjustment structure 60 includes two screws 61 arranged opposite to each other, the screw 61 including a threaded section 611 and a smooth section 612, the threaded section 611 being threadedly connected to the connecting member 30; a rotating ear 52 rotatably arranged with the smooth section 612 is provided on the support body 50, and the rotating ear 52 adjusts the rotational friction relative to the connecting member 30 through the threaded section 611, that is, the two screws 61 rotate in a direction approaching each other, at this time, the rotating ear 52 is tightened, and the two screws 61 rotate in a direction away from each other to loosen the rotating ear 52. In this way, the friction force when the support body 50 rotates relative to the mounting head 36 of the connecting member 30 is achieved to meet different user needs. In another embodiment, the adjustment structure 60 can be configured as two first connecting members and a second connecting member that are threadedly connected to each other. The first connecting member also has a smooth section for the rotating ear to rotate and a connecting section that is threadedly connected to the mounting head. At this time, the second connecting member is not only threadedly connected relative to the mounting head but also threadedly connected relative to the first connecting member. The rotation of the first connecting member and the second connecting member relative to the mounting head 36 respectively can realize the adjustment of the size of the rotational friction force of the support body 50 relative to the mounting head 36.

[0065] In order to facilitate the rotational installation of the support body 50 and the mounting head 36, an arc-shaped support block 361 is provided on each of the two opposite sides of the radial direction of the screw rod 61 on the connecting member 30. Figure 3As shown, the rotating ear 52 is rotatably arranged relative to the arc-shaped support block 361, that is, an arc-shaped support block 361 is provided on each opposite side of the radial direction of the screw 61 of the mounting head 36. When the support body 50 is installed, the arc-shaped support blocks 361 on both sides support the two rotating ears 52, thereby realizing the initial positioning of the support body 50 and preventing the support body 50 from tilting. The adjustment structure 60 can be used for subsequent connection. In this way, the installation of the rotational connection of the support body 50 relative to the connecting member 30 is facilitated.

[0066] in, Figure 8 and Figure 9 Schematic diagram of some usages of the first sliding member 31 and the second sliding member 32 in the multi-directionally adjustable support mechanism when they are in a stretched state; Figures 10 to 13 This is an illustration of some usage methods when the first sliding member 31 and the second sliding member 32 in the multi-directionally adjustable support mechanism are in a retracted state. Users can use different adjustment methods in combination according to their preferences, such as rotation relative to the sphere 20, extension and retraction of the first sliding member 31 and the second sliding member 32, and rotation of the support body 50.

[0067] The multi-directionally adjustable support mechanism 100 of the present invention can be applied not only to a mouse, but in one embodiment, can also be used in a support device for supporting an electronic device. The base 10 is used to support a support surface, or the base is connected to a base for supporting the support surface. The support body 50 is used to support the electronic device. For example, the support body 50 can be configured to include two support portions that are approximately 90 degrees apart. The electronic device can be placed on the support body 50, and the screen of the electronic device can be set toward the user. At the same time, the first sliding member 31 and the second sliding member 32 can be set to a vertical state in the initial state. In this way, the user can adjust the placement of the support body 50 according to different needs. The electronic device can be an electronic device such as a mobile phone, a tablet, or a game controller.

[0068] See also Figure 14 In another embodiment, the present invention further provides a mouse 200 , which includes the multi-directionally adjustable support mechanism 100 and a mouse body 210 .

[0069] The mouse body 210 may include a shell, a scroll wheel and buttons arranged on the shell, and a main control PCB arranged in the shell.

[0070] Among them, the base 10 is connected to the mouse body 210, the support body 50 is a palm rest, and is exposed relative to the mouse body 210, and the ball 20 is hidden in the mouse body 210. In this way, the palm rest supports the user's palm, and can not only rotate in various directions relative to the ball 20 through the connecting member 30, but the palm rest can also rotate relative to the connecting member 30, and the connecting member 30 also includes a first sliding member 31 and a second sliding member 32 that are slidingly arranged with respect to each other, so that the palm rest has a variety of different combinations of adjustment methods to meet the adjustment needs of different customers.

[0071] It can be understood that when the multi-directionally adjustable support mechanism 100 is in the initial state, the first sliding member 31 and the second sliding member 32 are in a horizontal state, and the support body 50 can also be set to a horizontal state.

[0072] The technical means disclosed in the present invention are not limited to those disclosed in the above-mentioned embodiments, but also include technical solutions composed of any combination of the above-mentioned technical features. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principles of the present invention, and such improvements and modifications are also considered to be within the scope of protection of the present invention.

Claims

1. A multi-directionally adjustable support mechanism (100), characterized in that: include: A base (10) for mounting on an external structure, or for supporting on a support surface, or for connecting to a base for supporting on a support surface; A sphere (20) connected to the base (10); A connecting member (30) having one end rotatably arranged relative to the sphere (20) and capable of being stationary after rotating relative to the sphere (20); The support body (50) is used to support an external object and is rotatably arranged relative to the other end of the connecting member (30), so that the support body (50) can be rotated in different directions relative to the sphere (20) through the connecting member (30) to adjust the placement posture.

2. The multi-directionally adjustable support mechanism (100) according to claim 1, characterized in that: The sphere (20) is exposed on two opposite sides relative to the connecting member (30).

3. The multi-directionally adjustable support mechanism (100) according to claim 1 or 2, characterized in that: The connecting member (30) comprises a first sliding member (31) and a second sliding member (32) which are arranged to slide relative to each other, and the first sliding member (31) can slide relative to the second sliding member (32) and then come to rest; The first sliding member (31) is used for the support body (50) to rotate, and the second sliding member (32) is rotatably arranged relative to the sphere (20).

4. The multi-directionally adjustable support mechanism (100) according to claim 3, characterized in that: One of the first sliding member (31) and the second sliding member (32) is provided with a limiting column (311), and the other is provided with a sliding groove (321), and the limiting column (311) is slidably arranged in the sliding groove (321).

5. The multi-directionally adjustable support mechanism (100) according to claim 4, characterized in that: The multi-directionally adjustable support mechanism (100) further includes an elastic sleeve (37), which is provided on one of the first sliding member (31) or the second sliding member (32) and abuts against the inner wall of the other of the first sliding member (31) or the second sliding member (32).

6. The multi-directionally adjustable support mechanism (100) according to claim 1 or 2, characterized in that: The connecting member (30) has a rotating head (33) rotatably arranged relative to the sphere (20); The rotating head (33) comprises a first limiting block (331) and a second limiting block (332) which are detachably connected. The first limiting block (331) is provided with a first limiting notch (3311) for accommodating part of the sphere (20), and the second limiting block (332) is provided with a second limiting notch (3321) for accommodating part of the sphere (20). The second limiting block (332) is rotatably arranged relative to the first limiting block (331) so as to limit part of the sphere (20) within the first limiting notch (3311) and the second limiting notch (3321) in a manner that the second limiting block (332) can rotate relative to the first limiting block (331).

7. The multi-directionally adjustable support mechanism (100) according to claim 1 or 2, characterized in that: The multi-directionally adjustable support mechanism (100) comprises an adjustment structure (60), wherein the support body (50) is rotatably arranged relative to the connecting member (30) via the adjustment structure (60), and the adjustment structure (60) is capable of adjusting the magnitude of the friction force when the support body (50) rotates relative to the connecting member (30).

8. The multi-directionally adjustable support mechanism (100) according to claim 7, characterized in that: The adjusting structure (60) comprises two screw rods (61) arranged opposite to each other, wherein the screw rods (61) comprise a threaded section (611) and a smooth section (612), and the threaded section (611) is threadedly connected to the connecting member (30); The support body (50) comprises a support portion (51) and a rotating ear (52) provided on the support portion (51); the rotating ear (52) is rotatably arranged relative to the smooth section (612); and the rotating ear (52) adjusts the magnitude of the friction force when rotating relative to the connecting member (30) through the screw thread section (611).

9. The supporting device is characterized in that: comprising a multi-directionally adjustable support mechanism (100) as claimed in any one of claims 1 to 8, The support body (50) is used to support electronic equipment.

10. A mouse (200), characterized in that include: Mouse (200) body; The multi-directionally adjustable support mechanism (100) according to any one of claims 1 to 8, wherein the base (10) is connected to the main body of the mouse (200), and the support body (50) is a palm rest and is exposed relative to the main body of the mouse (200).