Rocker device and remote controller
By simplifying the internal structure of the joystick device and adopting a single elastic element reset assembly, the problem of complex structure in existing joystick devices is solved, achieving low-cost and high-precision centering reset, and reducing production defect rate and maintenance costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-04-07
AI Technical Summary
The existing joystick device has a complex internal structure, resulting in a high defect rate, high maintenance costs, and difficulty in achieving lightweighting and cost reduction.
The single elastic element reset structure simplifies the internal structure of the rocker arm device. The rocker arm can be reset by combining the mounting base, adjusting parts and elastic elements, and the assembly process is simplified.
It reduces manufacturing costs and assembly difficulty, improves the centering and reset performance and accuracy of the rocker arm, and extends its service life.
Smart Images

Figure CN224085982U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to remote control technical field, especially a rocker device and remote controller. BACKGROUND
[0002] The rocker reset assembly used in the existing game handle and controller generally has the problem of high mechanical structure redundancy. A typical design scheme usually includes a main reset spring, an auxiliary balance spring, a sliding bearing sleeve and a multi-stage limiting buckle structure. In order to realize the accurate reset function of the rocker shaft core in the X / Y axis bidirectional direction, multiple interacting precision machined parts need to be configured. This multi-layer nested structure not only leads to the need for multiple manual calibration steps in the assembly process, and the cooperation tolerance between the parts needs to be accurately controlled, which significantly increases the production failure rate.
[0003] More notably, in order to ensure the linear response characteristics of the reset torque, the traditional design must use a combination scheme of a specially designed variable-diameter coil spring and a metal wear-resistant gasket. This structure is prone to spring fatigue coefficient deviation in long-term use, which in turn causes the rocker to drift. The complex internal structure also makes the cost of repairing and replacing individual parts relatively high. This technical status seriously restricts the industrial demand for the development of human-computer interaction devices in the direction of lightweight and low cost. SUMMARY
[0004] The main purpose of the utility model is to provide a rocker device and remote controller, which aims to solve the problem of complex internal structure of the existing rocker device.
[0005] To achieve the above purpose, the rocker device provided by the utility model comprises:
[0006] A shell comprises an upper cover and a bottom shell, the upper cover and the bottom shell form a containing cavity, and the upper end of the upper cover is provided with an opening communicating with the containing cavity;
[0007] A rocker assembly comprises a rocker body, an upper rocker arm and a lower rocker arm, the rocker body is arranged movably through the opening, and the upper rocker arm and the lower rocker arm are arranged in the containing cavity and sleeved on the rocker body;
[0008] A reset assembly comprises a mounting seat arranged in the containing cavity, an adjusting piece and an elastic piece, the mounting seat is arranged on the bottom shell, the adjusting piece is movably arranged on the mounting seat and abuts against one end of the rocker body, one end of the elastic piece abuts against the bottom shell, and the other end of the elastic piece abuts against the adjusting piece, so as to continuously provide a force for returning the rocker body to the center.
[0009] In an embodiment, the adjusting member has a first abutting plane on a side away from the elastic member, and the rocker body has a second abutting plane on an end thereof facing the adjusting member, and the axis of the rocker body is arranged perpendicularly to the second abutting plane.
[0010] In an embodiment, the adjusting member comprises an abutting portion and a positioning portion arranged on a side of the abutting portion, and the mounting seat has a through hole, and the inner wall of the through hole has a matching portion protruding corresponding to the positioning portion, and the abutting portion is movably arranged through the through hole and has the first abutting plane on a side away from the bottom shell, and the matching portion is used for abutting the positioning portion to position the adjusting member.
[0011] In an embodiment, the positioning portion has a plurality of spherical protrusions on a side away from the bottom shell, and the spherical protrusions are uniformly arranged around the abutting portion, and the matching portion has a plurality of spherical grooves corresponding to the spherical protrusions, and the spherical protrusions are used for being embedded in the spherical grooves to position the adjusting member.
[0012] In an embodiment, the outer side wall of the abutting portion and the inner side wall of the matching portion, and the outer side wall of the positioning portion and the inner side wall of the through hole are respectively arranged with a clearance.
[0013] In an embodiment, the elastic member is a spring, and the adjusting member has a limiting groove on a side facing the bottom shell, and one end of the spring is limitedly arranged in the limiting groove, and the other end of the spring abuts the bottom shell.
[0014] In an embodiment, the rocker assembly further comprises a rotating member, and the rocker body has a slot on an end thereof facing the adjusting member, and the rotating member is inserted into the slot and fixedly connected with the rocker body, and the rotating member limits the upper rocker arm and the lower rocker arm to be arranged on the rocker body, and an end of the rotating member away from the rocker body abuts the adjusting member.
[0015] In an embodiment, the rocker device further comprises a control assembly, and the control assembly comprises an electric control board and two capacitive sensing assemblies arranged on the electric control board, and the upper rocker arm and the lower rocker arm respectively have a swing member corresponding to the two capacitive sensing assemblies, and the capacitance values of the two capacitive sensing assemblies change with the swing of the swing members, and the electric control board is used for outputting corresponding position information according to the capacitance values of the capacitive sensing assemblies.
[0016] In an embodiment, the rocker body further has a rocker cap on an end thereof away from the adjusting member, and the rocker cap is arranged outside the accommodating cavity and is integrally arranged with the rocker body.
[0017] The utility model also provides a kind of remote controller, including the joystick device in any of preceding embodiments.
[0018] The technical scheme of the utility model improves the reset performance of the joystick device and simplifies the structure by using the reset structure of single elastic member, specifically, the joystick device includes a shell, a rocker assembly and a reset assembly, the shell includes an upper cover and a lower cover, the upper cover and the lower cover enclose a receiving cavity, and the upper end of the upper cover is provided with an opening communicating with the receiving cavity, the rocker assembly includes a rocker body, an upper rocker arm and a lower rocker arm, one end of the rocker body extends into the receiving cavity from the opening, and the rocker body is movably arranged at the opening, and the upper rocker arm and the lower rocker arm are arranged in the receiving cavity and sleeved on the rocker body; the reset assembly includes a mounting seat arranged in the receiving cavity, an adjusting member and an elastic member, the mounting seat is arranged on the bottom shell, the adjusting member is movably arranged on the mounting seat and abuts against one end of the rocker body extending into the shell, one end of the elastic member abuts against the bottom shell and the other end abuts against the adjusting member, and the elastic member is always in a compressed state and continuously provides a reset force to the rocker body through the adjusting member. BRIEF DESCRIPTION OF DRAWINGS
[0019] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or prior art, the drawings needed to be used in the description of embodiments or prior art will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained from the structures shown in these drawings without creative labor for those skilled in the art.
[0020] Figure 1 The structure schematic diagram of the embodiment of the joystick device provided by the utility model is shown in the figure.
[0021] Figure 2 The split structure schematic diagram of the embodiment of the joystick device provided by the utility model is shown in the figure.
[0022] Figure 3 The split structure schematic diagram of the rocker assembly in the embodiment of the joystick device provided by the utility model is shown in the figure.
[0023] Figure 4 The split structure schematic diagram of the reset assembly, the bottom shell and the control assembly in the embodiment of the joystick device provided by the utility model is shown in the figure.
[0024] Figure 5 The split structure schematic diagram of the rocker assembly in the embodiment of the joystick device provided by the utility model is shown in the figure. Figure 1 The sectional view in the direction of A-A in the embodiment of the utility model is shown in the figure.
[0025] Figure 6The structure schematic view of the adjusting piece in the rocker device one embodiment provided by the utility model is shown in the figure.
[0026] Figure 7 The structure schematic view of the mounting seat in the rocker device one embodiment provided by the utility model is shown in the figure.
[0027] Explanation of the reference signs:
[0028] 100, rocker device; 1, shell; 1a, accommodating cavity; 11, upper cover; 11a, opening; 12, bottom shell; 2, rocker assembly; 21, rocker body; 21a, second abutting plane; 21b, slot; 22, upper rocker arm; 23, lower rocker arm; 24, swing piece; 25, rotating piece; 26, screw; 27, rocker cap; 3, reset assembly; 31, mounting seat; 31a, through hole; 311, matching part; 311b, spherical groove; 32, adjusting piece; 32a, first abutting plane; 32b, limiting groove; 321, abutting part; 322, positioning part; 323, spherical protrusion; 33, elastic piece; 4, control assembly; 41, electric control board; 42, capacitance sensing assembly.
[0029] The realization, functional features and advantages of the utility model will be further described with reference to the accompanying drawings in combination with the embodiments. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all the other embodiments obtained by the ordinary skilled in the art without creative labor belong to the scope of protection of the utility model.
[0031] It should be noted that if the embodiments of the utility model involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement condition, etc. between the components in a certain specific posture. If the specific posture changes, the directional indications will also change accordingly.
[0032] In addition, if the description of "first", "second" and the like is involved in the embodiments of the present application, the description of "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can be explicitly or implicitly included at least one of the features. In addition, if "and / or" or "and / or" appears throughout the text, it means that the three parallel schemes include the A scheme, or the B scheme, or the A and B schemes. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the present application.
[0033] The utility model provides a rocker device.
[0034] Please refer to Figures 1 to 4 In an embodiment of the present application, the rocker device 100 includes a shell 1, a rocker assembly 2 and a reset assembly 3, the shell 1 includes an upper cover 11 and a lower cover, the upper cover 11 and the lower cover enclose a containing cavity 1a, and the upper end of the upper cover 11 is provided with an opening 11a communicating with the containing cavity 1a; the rocker assembly 2 includes a rocker body 21, an upper rocker arm 22 and a lower rocker arm 23, one end of the rocker body 21 extends into the containing cavity 1a from the opening 11a, and the rocker body 21 is movably arranged at the opening 11a, the upper rocker arm 22 and the lower rocker arm 23 are arranged in the containing cavity 1a and sleeved on the rocker body 21; the reset assembly 3 includes a mounting seat 31, an adjusting piece 32 and an elastic piece 33 arranged in the containing cavity 1a, the mounting seat 31 is arranged on the bottom shell 12, the adjusting piece 32 is movably arranged on the mounting seat 31 and abuts against one end of the rocker body 21 extending into the shell 1, one end of the elastic piece 33 abuts against the bottom shell 12 and the other end abuts against the adjusting piece 32, the elastic piece 33 is always in a compressed state and continuously provides a reset force to the rocker body 21 through the adjusting piece 32, so that the rocker body 21 maintains a reset state when no external force is applied.
[0035] As can be seen from the above, the reset assembly 3 can realize the reset of the rocker body 21, and the internal structure of the rocker device 100 is simplified, and the manufacturing cost and assembly difficulty are reduced.
[0036] In an embodiment, the side of the adjusting piece 32 away from the elastic piece 33 has a first abutting plane 32a, one end of the rocker body 21 towards the adjusting piece 32 is provided with a second abutting plane 21a, and the axis direction of the rocker body 21 is perpendicular to the second abutting plane 21a.
[0037] As Figures 3 to 5As shown, in one embodiment of this utility model, the adjusting member 32 and the elastic member 33 are arranged sequentially along the axial direction of the rocker body 21. The adjusting member 32 has a first abutting plane 32a on the side away from the elastic member 33, and the rocker body 21 has a second abutting plane 21a on the end facing the adjusting member 32. The axial direction of the rocker body 21 is perpendicular to the second abutting plane 21a. In the natural state where the rocker body 21 is not under force, the elastic member 33, which is in a compressed state, applies elastic force to the adjusting member 32 so that the first abutting plane 32a and the second abutting plane 21a fit together. At this time, the axial direction of the rocker body 21 is perpendicular to the first abutting plane 32a and is in a return-to-center state.
[0038] When the rocker arm body 21 is tilted under force, the end of the rocker arm body 21 that extends into the housing 1 applies pressure to the adjusting member 32. The adjusting member 32 moves towards the bottom housing 12 and further compresses the elastic member 33. When the force applied to the rocker arm body 21 is released, the elastic member 33 drives the adjusting member 32 and the rocker arm body 21 to return to their original position. Therefore, by setting two contact surfaces, the accuracy of the return position of the rocker arm body 21 can be precisely controlled.
[0039] In one embodiment, the adjusting member 32 includes an abutting part 321 and a positioning part 322 disposed around the abutting part 321. The mounting base 31 is provided with a through hole 31a. A mating part 311 is protruding on the inner wall of the through hole 31a corresponding to the positioning part 322. The abutting part 321 is movably disposed through the through hole 31a and a first abutting plane 32a is provided on the side away from the bottom shell 12. The mating part 311 is used to abut against the positioning part 322 to position the adjusting member 32.
[0040] like Figure 6 As shown, in one embodiment of this utility model, the adjusting member 32 includes an abutting portion 321 and a positioning portion 322 disposed around the abutting portion 321. Specifically, the abutting portion 321 is cylindrical in shape, and the positioning portion 322 is disposed around the periphery of the abutting portion 321 and forms a stepped structure. Further reference... Figure 4 and Figure 7 A through hole 31a is provided through the mounting base 31. A mating part 311 protrudes from the inner wall of the through hole 31a. The adjusting member 32 passes through the through hole 31a from the side of the mounting base 31 away from the rocker body 21. The upper surface of the abutting part 321 away from the bottom shell 12 is set as the first abutting plane 32a. Under the action of the elastic member 33, the abutting part 321 passes through the through hole 31a so that the first abutting plane 32a contacts the second abutting plane 21a of the rocker body 21. The mating part 311 abuts against the positioning part 322 to limit the adjusting member 32.
[0041] It can be understood that the matching part 311 limits the length of the abutting part 321 extending out of the through hole 31a, and the abutting of the matching part 311 and the positioning part 322 ensures that the first abutting plane 32a remains horizontal, so that the rocker body 21 can be in the centering state in the axis direction without force, which can improve the accuracy of the rocker device 100.
[0042] In an embodiment, a plurality of spherical protrusions 323 are arranged on the side of the positioning part 322 away from the bottom shell 12, and the plurality of spherical protrusions 323 are uniformly arranged around the abutting part 321. A plurality of spherical grooves 311b are arranged on the matching part 311 corresponding to the spherical protrusions 323, and the spherical protrusions 323 are used to be embedded in the spherical grooves 311b to position the adjusting part 32.
[0043] In order to further improve the accuracy of the positioning of the adjusting part 32, as shown in Figure 6 and Figure 7 In an embodiment of the utility model, a plurality of spherical protrusions 323 are arranged on the side of the positioning part 322 facing the matching part 311, and the plurality of spherical protrusions 323 are uniformly distributed around the abutting part 321. A plurality of spherical grooves 311b are arranged on the side of the matching part 311 facing the positioning part 322 corresponding to the spherical protrusions 323, and the plurality of spherical protrusions 323 and the plurality of spherical grooves 311b are one-to-one corresponding. When the rocker body 21 is inclined, the adjusting part 32 moves with the rocker body 21 to make the spherical protrusions 323 separate from the spherical grooves 311b. When the rocker body 21 is not subjected to external force, the elastic part 33 applies elastic force to the adjusting part 32 to make the plurality of spherical protrusions 323 embedded in the plurality of spherical grooves 311b to realize accurate positioning of the adjusting part 32.
[0044] It can be understood that in the embodiment, four spherical protrusions 323 and four spherical grooves 311b are matched, which can prevent the adjusting part 32 from rotating or deviating in the through hole 31a, ensure that the adjusting part 32 always abuts the rocker body 21 at the same position, ensure the consistency and accuracy of the centering reset of the rocker body 21, and effectively improve the service life of the handle device. Of course, in some other embodiments of the utility model, the number of spherical protrusions 323 and spherical grooves 311b is not specifically limited, and can be designed according to actual needs.
[0045] In an embodiment, an avoiding gap is arranged between the outer side wall of the abutting part 321 and the inner side wall of the matching part 311, and between the outer side wall of the positioning part 322 and the inner side wall of the through hole 31a.
[0046] As shown in Figure 5As shown, in one embodiment of this utility model, a clearance gap is provided between the outer wall of the abutment part 321 and the inner wall of the mating part 311. Similarly, a clearance gap is provided between the outer wall of the positioning part 322 and the inner wall of the through hole 31a. When the rocker arm is subjected to force and tilted, the adjusting member 32 is also tilted on the mounting base 31. In order to avoid jamming when the adjusting member 32 moves, a clearance gap is provided to leave enough room for the edge of the adjusting member 32 to move. With the structure of the spherical protrusion 323 and the spherical groove 311b, the position of the adjusting member 32 can be accurately positioned to prevent jamming, failure to rebound, and other malfunctions.
[0047] In one embodiment, the elastic element 33 is a spring, and the adjusting element 32 is provided with a limiting groove 32b on the side facing the bottom shell 12. One end of the spring is limited and installed in the limiting groove 32b, and the other end of the spring abuts against the bottom shell 12.
[0048] like Figure 4 and Figure 5 As shown, in one embodiment of this utility model, the elastic element 33 is a columnar spring with a constant diameter. The adjusting element 32 has a circular limiting groove 32b on the side facing the bottom shell 12. One end of the spring is embedded in the limiting groove 32b, and the other end abuts against the bottom shell 12. The spring is always in a compressed state and applies elastic force to the adjusting element 32. It should be noted that the columnar spring adopts a single linear diameter design, eliminating the need for the complex helical gradient processing of variable-diameter springs, saving the precision winding and heat treatment adjustment processes, resulting in lower costs. Furthermore, the constant diameter structure ensures that the spring maintains a uniform cross-sectional area during compression / extension, effectively avoiding localized stress overload and significantly extending its service life. During assembly, the geometric consistency of the columnar spring makes it compatible with modular positioning fixtures, providing stronger tolerance for gaps and significantly reducing assembly defect rates.
[0049] In one embodiment, the rocker assembly 2 further includes a rotating member 25. The rocker body 21 has a slot 21b at one end facing the adjusting member 32. The rotating member 25 is inserted into the slot 21b and fixedly connected to the rocker body 21. The rotating member 25 limits the upper rocker arm 22 and the lower rocker arm 23 to be mounted on the rocker body 21. The end of the rotating member 25 away from the rocker body 21 abuts against the adjusting member 32.
[0050] like Figure 3 and Figure 5 As shown, in one embodiment of the present invention, the rocker assembly 2 further includes a rotating member 25. Specifically, one end of the rocker body 21 that extends into the receiving cavity 1a is recessed to form a slot 21b. The rotating member 25 includes a head and a plug-in portion. The plug-in portion of the rotating member 25 is inserted into the slot 21b of the rocker and the head abuts against the adjusting member 32. A second abutting plane 21a is provided on the side of the head of the rotating member 25 away from the rocker body 21.
[0051] In the embodiment, the rocker assembly 2 further comprises a screw 26, which is used to pass through the inside of the rotating piece 25 and is screwed with the rocker body 21 to fix the rotating piece 25 on the rocker body 21. It can be understood that, during assembly, the upper rocker arm 22 and the lower rocker arm 23 can be sequentially sleeved on the rocker body 21, and then the screw 26 is used to install the rotating piece 25 at the end of the rocker body 21, so that the upper rocker arm 22 and the lower rocker arm 23 are positioned and installed on the rocker body 21, forming a modular assembly and simplifying the installation steps of the rocker device 100.
[0052] In an embodiment, the rocker device 100 further comprises a control assembly 4, which comprises an electric control board 41 and two capacitive sensing assemblies 42 arranged on the electric control board 41. The upper rocker arm 22 and the lower rocker arm 23 are respectively provided with a swing piece 24 corresponding to the two capacitive sensing assemblies 42. The capacitance values of the two capacitive sensing assemblies 42 change with the swinging of the swing pieces 24. The electric control board 41 is used to output corresponding position information according to the capacitance values of the capacitive sensing assemblies 42.
[0053] As shown in Figure 4 In an embodiment of the utility model, the rocker device 100 further comprises a control assembly 4. Specifically, the control assembly 4 comprises an electric control board 41 and two capacitive sensing assemblies 42 arranged on the electric control board 41. The electric control board 41 is at least partially arranged in the accommodating cavity 1a. The upper rocker arm 22 and the lower rocker arm 23 are orthogonally arranged and respectively provided with a swing piece 24. The two swing pieces 24 are one-to-one corresponding to the two capacitive sensing assemblies 42. When the rocker body 21 is swung under force, the upper rocker arm 22 and the lower rocker arm 23 drive the swing pieces 24 to rotate respectively. The capacitance values of the capacitive sensing assemblies 42 change with the swinging of the swing pieces 24. The electric control board 41 can output corresponding position information according to the capacitance values of the two capacitive sensing assemblies 42.
[0054] Further, the electric control board 41 is attached to the bottom shell 12. The mounting seat 31 is arranged on the side of the electric control board 41 away from the bottom shell 12. The electric control board 41 is provided with a through hole in the middle to enable the elastic piece 33 to directly abut against the bottom shell 12. The two capacitive sensing assemblies 42 are separately arranged on the adjacent two sides of the mounting seat 31. It can be seen that the rocker device 100 of the present scheme has compact structure, reasonable distribution of parts and high space utilization rate, which is conducive to reducing the overall volume of the device.
[0055] In an embodiment, the end of the rocker body 21 away from the adjusting piece 32 is further provided with a rocker cap 27, which is located outside the accommodating cavity 1a and is integrally arranged with the rocker body 21.
[0056] As shown in Figure 1 and Figure 3As shown, in an embodiment of the present application, the rocker body 21 is provided with a rocker cap 27 at the end away from the adjusting member 32, specifically, the rocker cap 27 and the rocker body 21 can be manufactured by an integrated molding process, during installation, one end of the rocker body 21 provided with a limiting groove 32b can be inserted from the opening 11a of the upper cover 11, then the upper rocker arm 22, the lower rocker arm 23 and the rotating member 25 are installed in sequence, and finally the screw 26 is screwed in. It should be noted that the buckle, the screw 26 or the gluing structure used for connecting the cap body and the body in the traditional split type design can be cancelled, the number of parts can be simplified, the overall structural strength of the rocker assembly 2 is improved, and the risk of fracture caused by long-term friction or impact is avoided.
[0057] The utility model discloses still propose a kind of remote controller, and the remote controller includes rocker device 100, the specific structure of the rocker device 100 refers to above-mentioned embodiment, since the remote controller of the present application adopts all technical solutions of above-mentioned all embodiments, at least have all beneficial effects brought by the technical solutions of above-mentioned embodiments, here no longer one by one elaboration.
[0058] The above-mentioned is only exemplary embodiment of the present application, and not therefore limit the patent range of the present application, all equivalent structural transformations made in the technical concept of the present application, using the present application specification and drawing contents, or directly / indirectly applied in other related technical fields are included in the patent protection range of the present application.
Claims
1. A rocker arm device, characterized in that, include: The housing includes an upper cover and a lower cover, the upper cover and the lower cover forming a receiving cavity, and the upper end of the upper cover having an opening communicating with the receiving cavity; A rocker assembly includes a rocker body, an upper rocker arm, and a lower rocker arm. The rocker body passes through the opening and is movably disposed. The upper rocker arm and the lower rocker arm are disposed within the accommodating cavity and sleeved on the rocker body. The reset assembly includes a mounting base, an adjusting member, and an elastic member disposed within the accommodating cavity. The mounting base is disposed on the bottom shell. The adjusting member is movably disposed on the mounting base and abuts against one end of the rocker body. One end of the elastic member abuts against the bottom shell, and the other end of the elastic member abuts against the adjusting member, so as to continuously provide a centering and reset force to the rocker body.
2. The rocker arm device as described in claim 1, characterized in that, The adjusting member has a first abutting plane on the side away from the elastic member, and the rocker body has a second abutting plane at one end facing the adjusting member. The axial direction of the rocker body is perpendicular to the second abutting plane.
3. The rocker arm device as described in claim 2, characterized in that, The adjusting member includes an abutting part and a positioning part disposed around the abutting part. The mounting base is provided with a through hole, and a mating part is provided on the inner wall of the through hole corresponding to the positioning part. The abutting part is movably disposed through the through hole and the first abutting plane is disposed on the side away from the bottom shell. The mating part is used to abut against the positioning part to position the adjusting member.
4. The rocker arm device as described in claim 3, characterized in that, The positioning part has multiple spherical protrusions on the side away from the bottom shell. The multiple spherical protrusions are evenly arranged around the abutment part. The mating part has multiple spherical grooves corresponding to the spherical protrusions. The spherical protrusions are used to embed into the spherical grooves to position the adjusting member.
5. The rocker arm device as described in claim 3, characterized in that, An clearance gap is provided between the outer wall of the abutting part and the inner wall of the mating part, and between the outer wall of the positioning part and the inner wall of the through hole.
6. The rocker arm device as claimed in claim 1, characterized in that, The elastic element is a spring, and the adjusting element has a limiting groove on the side facing the bottom shell. One end of the spring is limited and installed in the limiting groove, and the other end of the spring abuts against the bottom shell.
7. The rocker arm device as described in any one of claims 1 to 6, characterized in that, The rocker assembly further includes a rotating component. The rocker body has a slot at one end facing the adjusting component. The rotating component is inserted into the slot and fixedly connected to the rocker body. The rotating component limits the upper rocker arm and the lower rocker arm to be mounted on the rocker body. The end of the rotating component away from the rocker body abuts against the adjusting component.
8. The rocker arm device as claimed in claim 1, characterized in that, The rocker arm also includes a control component, which includes an electronic control board and two capacitive sensing components mounted on the electronic control board. The upper rocker arm and the lower rocker arm are respectively provided with swinging elements corresponding to the two capacitive sensing components. The capacitance values of the two capacitive sensing components change with the swinging of the swinging elements. The electronic control board is used to output corresponding position information based on the capacitance values of the capacitive sensing components.
9. The rocker arm device as claimed in claim 1, characterized in that, The rocker arm body is provided with a rocker arm cap at the end away from the adjusting member. The rocker arm cap is located outside the receiving cavity and is integrally formed with the rocker arm body.
10. A remote control, characterized in that, Includes the rocker arm device as described in any one of claims 1 to 9.