Rocker mechanism and joystick
The simplified rocker mechanism addresses the complexity and precision issues of existing joysticks by directly connecting rockers to sensing members, enhancing yield and accuracy through a spindle-driven assembly.
Patent Information
- Application Number
- JP2024503794
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-10-20
- Filing Date
- 2023-10-30
- Publication Date
- 2026-01-27
AI Technical Summary
Existing joystick technologies require high machining precision and complex assembly, leading to low product yields and precision sensitivity issues.
A simplified rocker mechanism with a spindle-driven rocker assembly that connects directly to sensing members, eliminating intermediate links and reducing assembly complexity, while ensuring high positioning accuracy and yield.
The solution enhances product yield and precision by simplifying the assembly process, improving positioning accuracy, and allowing independent control in multiple directions without intermediate members.
Smart Images

Figure 2026502747000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to the technical field of joysticks, and more particularly to rocker mechanisms and joysticks. [Background technology]
[0002] Joysticks are common accessories for electronic game devices, and allow users to control virtual characters by manipulating components such as rockers and buttons.
[0003] In related technology, as disclosed in Patent CN218240764U, a multi-directional rocker drives a first oscillating assembly via a spindle to oscillate in a second direction, displacing a first magnetic member of a first sensing assembly relative to the first sensing member to generate a control signal, and the spindle also drives a second oscillating assembly via the spindle to oscillate in the first direction, displacing a second magnetic member of a second sensing assembly relative to the second sensing member to generate another control signal. This solution places high demands on the assembly of the first oscillating assembly and the first magnetic member, and the second oscillating assembly and the second magnetic member, in order to ensure control precision and sensitivity, and also requires high machining precision for the parts, resulting in low product yields. Summary of the Invention
[0004] The embodiments of the present invention provide a rocker mechanism and a joystick that simplifies the structure of the rocker mechanism and improves the yield of joysticks.
[0005] The rocker mechanism is A mounting seat and a circuit board provided in the mounting seat and including a first sensing member and a second sensing member; a first rocker assembly including a first rocker provided on the mounting seat and a first sensing member connected to the first rocker and provided corresponding to the first sensing member, the first rocker assembly being used to be driven to swing around a first direction so as to swing the first sensing member relative to the first sensing member; The second rocker assembly includes a second rocker provided on the mounting seat, and a second sensing member connected to the second rocker and provided corresponding to the second sensing member, the second rocker assembly being used to be driven to swing around a second direction so as to swing the second sensing member relative to the second sensing member, the second direction being perpendicular to the first direction.
[0006] In one embodiment, the rocker mechanism has a spindle provided on the mounting seat, the first rocker passes through the spindle and is fitted to the spindle so as to be rotatable in a second direction, the second rocker is fitted to the spindle, and the spindle is used to rock the first rocker and the second rocker.
[0007] In one embodiment, the spindle has a first limiting groove formed along a first direction and a second limiting groove formed along a second direction, the first rocker includes a limiting portion, a first extending portion, a second extending portion integrally formed with the limiting portion, a first rotating shaft and a second rotating shaft, the first extending portion and the second extending portion are connected to opposite ends of the limiting portion along the first direction, the first rotating shaft and the second rotating shaft are connected to opposite ends of the limiting portion along the second direction, the first rotating shaft and the second rotating shaft are each rotatably fitted in the second limiting groove in the second direction, the limiting portion passes through the first limiting groove and is driven by the spindle to swing around the first direction, and the first sensing member is connected to one end of the first extending portion away from the limiting portion.
[0008] In one embodiment, the first extension portion includes an integrally molded shaft portion, a support plate, and a first mounting portion, the shaft portion is connected to the limiting portion, the support plate is located between the shaft portion and the first mounting portion, a first mounting groove is opened in the first mounting portion for accommodating the first sensing member, the first mounting portion is provided corresponding to the first sensing member, and the spindle is used to press the support plate against the circuit board to limit the swing range of the first rocker.
[0009] In one embodiment, the second rocker includes an integrally molded main body, a first support portion, a second support portion, and a second mounting portion, the first support portion and the second support portion being connected to opposite ends of the main body along the second direction, the second mounting portion being connected to one end of the second support portion remote from the main body and corresponding to the second sensing member, the main body being fitted onto the spindle and driven to swing by the spindle so as to swing the second mounting portion relative to the second sensing member, and a second mounting groove for accommodating the second sensing member being opened in the second mounting portion.
[0010] In one embodiment, a through hole for passing the spindle is formed in the main body, and a notch for avoiding the spindle is formed in the through hole in the second direction.
[0011] In one embodiment, the body has a spherical mating surface located on a side of the body away from the first rocker, the mounting seat has a spherical groove, and the spherical mating surface is slidably fitted into the spherical groove.
[0012] In one embodiment, the mounting seat includes an upper shell and a lower shell, and a protrusion is provided on one of the peripheral sides of the upper shell and the lower shell, and an engagement groove is provided on the other, and the protrusion is engaged with the engagement groove.
[0013] In one embodiment, the rocker mechanism includes a reset member provided in the mounting seat, and the first rocker and the second rocker are each abutted against the reset member.
[0014] The joystick comprises a housing and a rocker mechanism as described in any one of the above, the rocker mechanism being connected to the housing.
[0015] The above rocker mechanism can be applied to a joystick, the rocker mechanism including a mounting seat, a circuit board, a first rocker assembly, and a second rocker assembly, the circuit board being provided in the mounting seat and including a first sensing member and a second sensing member, the first rocker assembly including a first rocker provided on the mounting seat and a first sensing member connected to the first rocker and provided corresponding to the first sensing member, the first rocker assembly being driven to swing about a first direction to swing the first sensing member relative to the first sensing member, the second rocker assembly including a second rocker provided on the mounting seat and a second sensing member connected to the second rocker and provided corresponding to the second sensing member, the second rocker assembly being driven to swing about a second direction to swing the second sensing member relative to the second sensing member, the second direction being perpendicular to the first direction. The first sensing member is directly connected to the first rocker and is driven by the first rocker to swing relative to the first sensing member, and the second sensing member is directly connected to the second rocker and is driven by the second rocker to swing relative to the second sensing member. This allows the connection between the first sensing member and the first rocker, and the connection between the second sensing member and the second rocker, to be achieved without the use of an intermediate member, thereby simplifying the intermediate link in the assembly, improving positioning accuracy and increasing product yield. [Brief explanation of the drawings]
[0016] In order to more clearly describe the embodiments of the present invention or the technical solutions in the prior art, the following will briefly describe the accompanying drawings that need to be used in the description of the embodiments or prior art. Obviously, the accompanying drawings described below are only some embodiments of the present invention, and those skilled in the art can obtain other drawings based on these accompanying drawings without any creative work. [Figure 1] FIG. 1 is a schematic diagram of a rocker mechanism according to one embodiment. [Figure 2] FIG. 2 is an exploded view of the rocker mechanism shown in FIG. [Figure 3] FIG. 2 is a schematic view of the rocker mechanism shown in FIG. 1 with a portion of the structure removed. [Figure 4] 4 is an exploded view of the spindle, first rocker mechanism, and second rocker mechanism of the rocker mechanism shown in FIG. 3. FIG. DETAILED DESCRIPTION OF THE INVENTION
[0017] To facilitate an understanding of the present invention, the present invention will now be described more fully hereinafter with reference to the accompanying drawings, in which preferred embodiments of the invention are shown. However, the present invention may be embodied in many different forms and is not limited to the embodiments set forth herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the present disclosure.
[0018] It should be noted that when an element is "fixed" to another element, it may be directly fixed to the other element or there may be intermediate elements. When an element is "connected" to another element, it may be directly connected to the other element or there may be intermediate elements. As used herein, terms such as "vertical," "horizontal," "left," "right," and similar terms are for descriptive purposes only.
[0019] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art of the present invention. In this specification, the terms used in the specification of the present invention are used only for the purpose of describing specific examples and are not intended to limit the present invention. As used herein, the term "and / or" includes any and all combinations of one or more associated items.
[0020] Referring to FIG. 1, the present invention provides a rocker mechanism 10, which is connected to a housing of a joystick (not shown), allowing an operator to control a virtual character through the rocker mechanism 10 and members such as buttons on the joystick.
[0021] 2 and 3, rocker mechanism 10 comprises mounting base 100, circuit board 200, first rocker assembly 300, and second rocker assembly 400. Circuit board 200 is provided within mounting base 100 and includes first sensing member 210 and second sensing member 220. Necessary control circuitry may be integrated on circuit board 200, and is electrically connected to the joystick's main board via lead wires. First rocker assembly 300 includes a first rocker 310 provided on mounting base 100 and a first sensing member 320 connected to first rocker 310 and provided corresponding to first sensing member 210. First rocker assembly 300 is driven to swing about a first direction so as to swing first sensing member 320 relative to first sensing member 210. The second rocker assembly 400 includes a second rocker 410 provided on the mounting seat 100 and a second sensing member 420 connected to the second rocker 410 and provided corresponding to the second sensing member 220, and the second rocker assembly 400 is driven to swing about a second direction so as to swing the second sensing member 420 relative to the second sensing member 220. Here, the second direction is perpendicular to the first direction.
[0022] The rocker mechanism 10 further includes a spindle 500 provided on the mounting seat 100, the first rocker 310 passes through the spindle 500 and is fitted to the spindle 500 so as to be rotatable in a second direction, the second rocker 410 is fitted into the spindle 500, and the spindle 500 drives the first rocker 310 and the second rocker 410 to swing.
[0023] In some embodiments, the first sensing member 320 and the second sensing member 420 are magnets, the first sensing member 210 and the second sensing member 220 are Hall sensors, and when the first rocker 310 drives the first sensing member 320 to swing relative to the first sensing member 210, the magnetic field of the first sensing member 320 also changes, and the Hall sensor generates a control signal in response to the change in the magnetic field, thereby realizing control of the operation. Similarly, when the second rocker 410 drives the second sensing member 420 to swing relative to the second sensing member 220, the magnetic field of the second sensing member 420 also changes, and the Hall sensor similarly generates a control signal in response to the change in the magnetic field, thereby realizing control of the operation.
[0024] 2, one end of the spindle 500 protrudes from the mounting seat 100, and the rocker mechanism 10 may include a rod cap 610, which is disc-shaped and connected to the end of the spindle 500 protruding from the mounting seat 100. The rod cap 610 is used to increase the contact area with the hand, making it easier for the user to operate the rocker mechanism 10.
[0025] At the end of the spindle 500 away from the rod cap 610, the spindle 500 is provided with a first limiting groove 501 along a first direction and a second limiting groove 503 along a second direction. The first rocker 310 includes a limiting portion 311, a first extending portion 312 integrally formed with the limiting portion 311, a second extending portion 313, a first rotating shaft 314, and a second rotating shaft 315. The limiting portion 311 is substantially shaped like a rectangular block, the first extending portion 312 and the second extending portion 313 are connected to opposite ends of the limiting portion 311 along the first direction, and the first rotating shaft 314 and the second rotating shaft 315 are connected to opposite ends of the limiting portion 311 along the second direction. The first rotating shaft 314 and the second rotating shaft 315 are each rotatably fitted into the second limiting groove 503 in the second direction, and the limiting portion 311 passes through the first limiting groove 501 and is driven by the spindle 500 to swing around the first direction.
[0026] The first sensing member 320 is connected to the end of the first extending portion 312 away from the limiting portion 311. Specifically, a space is provided in the first limiting groove 501 in the axial direction of the spindle 500 to allow the spindle 500 to swing in the second direction relative to the first rocker 310, but the gap between the opposing sides of the limiting portion 311 and the groove wall of the first limiting groove 501 may be set extremely small, for example by using a loose fit, so that the limiting portion 311 is restricted from swinging in the first direction relative to the spindle 500 in the second direction, and the entire first rocker 310 is driven to swing in the first direction via the spindle 500 and the limiting portion 311.
[0027] When the user operates the joystick, if the torque direction applied to the limiting portion 311 via the rod cap 610 and the spindle 500 is in a first direction, the first rocker 310 is driven to swing around the first direction, and the first sensing member 320 is synchronously driven to swing around the first direction, moving relative to the first sensing member 210 and generating a control signal in the first direction. If the torque direction applied to the limiting portion 311 via the rod cap 610 and the spindle 500 is in a second direction, the spindle 500 rotates around the first rotation axis 314 and the second rotation axis 315 around the second rotation axis, and the first limiting groove 501 provides an escape space. At this time, the first sensing member 320 remains stationary relative to the first sensing member 210, so no control signal in the first direction is generated.
[0028] The first sensing member 320 is connected to one end of the first extension 312 away from the limiting portion 311. Specifically, referring to FIG. 4 , the first extension 312 includes an integrally molded shaft 3121, a support plate 3123, and a first mounting portion 3125. The shaft 3121 is connected to the limiting portion 311, the support plate 3123 is located between the shaft 3121 and the first mounting portion 3125, and a first mounting groove 3126 is formed in the first mounting portion 3125 to accommodate the first sensing member 320. The first mounting portion 3125 has a structure that half-encloses the first sensing member 320, thereby improving the positioning accuracy of the first sensing member 320 and providing better protection for the first sensing member 320. The first mounting portion 3125 is provided to correspond to the first sensing member 210. With this structure, the first rocker 310 has an integrally molded structure, which avoids tolerance accumulation due to assembly and reduces assembly requirements. The first sensing member 320 can be mounted on the first mounting portion 3125 with high positional accuracy, thereby achieving higher control accuracy of the rocker mechanism 10.
[0029] Continuing to refer to FIG. 2 , the rocker mechanism 10 further includes a reset member 700 disposed within the mounting seat 100, with the first rocker 310 and the second rocker 410 each abutting against the reset member 700. The reset member 700 may be a conical helical spring, with one end abutting against the mounting seat 100 and the other end abutting against the first rocker 310 and the second rocker 410 directly or via an intermediate member. After the first rocker 310 and the second rocker 410 are driven to swing by the spindle 500, the reset member 700 undergoes compressive deformation to store elastic potential energy. After the spindle 500 is released, the reset member 700 can reset the spindle 500, the first rocker assembly 300, and the second rocker assembly 400. The conical helical spring also has the effect of maintaining alignment, allowing the spindle 500 to return to the aligned position after deflection.
[0030] Furthermore, the spindle 500 is pressed so that the support plate 3123 abuts against the circuit board 200, limiting the swing range of the first rocker 310. Specifically, the end of the support plate 3123 close to the first sensing member 210 may be rounded. When the rod cap 610 is not pressed, a gap is formed between the end of the support plate 3123 close to the first sensing member 210 and the mounting seat 100 due to the supporting action of the reset member 700, i.e., the first rocker assembly 300 can be positioned in a floating state within the mounting seat 100. When the rod cap 610 is pressed, the end of the support plate 3123 close to the first sensing member 210 abuts against the circuit board 200 or the mounting seat 100 and is supported by the circuit board 200 or the mounting seat 100, and the swing range of the first rocker 310 is limited by the arc-shaped end of the support plate 3123.
[0031] 2 and 4 again, the second rocker 410 includes an integrally molded main body 411, a first support portion 413, a second support portion 415, and a second mounting portion 417. The first support portion 413 and the second support portion 415 are connected to opposite ends of the main body 411 in the second direction, and the second mounting portion 417 is connected to the end of the second support portion 415 remote from the main body 411 and is provided to correspond to the second sensing member 220. The main body 411 is fitted onto a spindle 500 and is driven to swing by the spindle 500 so as to cause the second mounting portion 417 to swing relative to the second sensing member 220. A second mounting groove 418 for accommodating the second sensing member 420 is formed in the second mounting portion 417, and the second mounting portion 417 has a structure that half-encloses the second sensing member 420, thereby improving the positioning accuracy of the second sensing member 420 and providing better protection for the second sensing member 420. With this structure, the second rocker 410 has an integrally molded structure, which avoids tolerance accumulation due to assembly and reduces assembly requirements. The second sensing member 420 can be mounted on the second mounting portion 417 with higher positional accuracy, thereby achieving higher control accuracy of the rocker mechanism 10.
[0032] In addition to the above explanation, when the user operates the joystick, if the torque direction applied to the main body 411 via the rod cap 610 and the spindle 500 is in the second direction, the spindle 500 rotates around the first rotation axis 314 and the second rotation axis 315 around the second direction, and the first limiting groove 501 provides an escape space. At this time, the first sensing member 320 and the first sensing member 210 remain relatively stationary, so no control signal in the first direction is generated. The spindle 500 drives the second rocker 410 to swing around the second direction, and synchronously drives the second sensing member 420 to swing around the second direction, moving it relative to the second sensing member 220 to generate a control signal in the second direction.
[0033] The main body 411 is provided with a through hole 411a for passing the spindle 500 therethrough, and the through hole 411a is provided with a notch 411b in the second direction to avoid the spindle 500. When the torque direction applied by the user via the rod cap 610 and the spindle 500 is in the first direction, the spindle 500 rotates relative to the mounting seat 100 around the first direction, and the notch 411b provides an avoidance space. At this time, the second sensing member 420 remains stationary relative to the second sensing member 220, so no control signal in the second direction is generated. The spindle 500 is driven to swing the first rocker 310 around the first direction, and further driven to swing the first sensing member 320 synchronously around the first direction, moving it relative to the first sensing member 210 to generate a control signal in the first direction.
[0034] In other words, the above-mentioned interlocking structure of the spindle 500, the first rocker assembly 300 and the second rocker assembly 400 allows the control in the first direction and the control in the second direction to be relatively independent, thereby achieving precision in operation.
[0035] 4, the main body 411 has a spherical mating surface 411c located on the side of the main body 411 away from the first rocker 310, and the mounting seat 100 has a spherical groove (not shown) into which the spherical mating surface 411c is slidably fitted. In other words, the main body 411 and the mounting seat 100 form a ball-joint effect, which provides a large range of motion and ensures smooth movement of the rocker mechanism 10.
[0036] 2 , the mounting seat 100 includes an upper shell 110 and a lower shell 120, and the spherical groove is located in the upper shell 110. A protrusion 111 is provided on one of the peripheral sides of the upper shell 110 and the lower shell 120, and an engagement groove 121 is provided on the other, and the protrusion 111 is engaged with the engagement groove 121. In other words, in this embodiment, the upper shell 110 and the lower shell 120 are fitted together laterally, which can avoid a reduction in production yield due to deformation of plastic parts caused by upper and lower stamping, i.e., stamping along the direction of the spindle 500.
[0037] The rocker mechanism 10 described above can be applied to a joystick, and the rocker mechanism 10 includes a mounting base 100, a circuit board 200, a first rocker assembly 300, and a second rocker assembly 400. The circuit board 200 is provided in the mounting base 100 and includes a first sensing member 210 and a second sensing member 220. The first rocker assembly 300 includes a first rocker 310 provided in the mounting base 100, and a first sensing member 320 connected to the first rocker 310 and provided corresponding to the first sensing member 210. is driven to swing around a first direction so as to swing the first sensing member 320 relative to the first sensing member 210, and the second rocker assembly 400 includes a second rocker 410 provided on the mounting seat 100 and a second sensing member 420 connected to the second rocker 410 and provided corresponding to the second sensing member 220, and the second rocker assembly 400 is driven to swing around a second direction so as to swing the second sensing member 420 relative to the second sensing member 220, the second direction being perpendicular to the first direction. The first sensing member 320 is directly connected to the first rocker 310 and is driven by the first rocker 310 to oscillate relative to the first sensing member 210, and the second sensing member 420 is directly connected to the second rocker 410 and is driven by the second rocker 410 to oscillate relative to the second sensing member 220. This enables the connection between the first sensing member 320 and the first rocker 310, and the connection between the second sensing member 420 and the second rocker 410 to be achieved without the use of an intermediate member, thereby simplifying the intermediate assembly, improving positioning accuracy, and increasing product yield.
[0038] The technical features of the above-described embodiments can be combined in any manner, and for the sake of simplicity, not all possible combinations of the technical features in the above-described embodiments are described. However, as long as the combinations of these technical features are not contradictory, they should all be considered to be within the scope of the present specification.
[0039] The above examples merely represent some embodiments of the present invention, and although they have been described specifically and in detail, they should not be construed as limiting the scope of the patent of the present invention. It should be understood that those skilled in the art can make various modifications and improvements without departing from the spirit of the present invention, and all of these are within the scope of protection of the present invention. Therefore, the scope of patent protection of the present invention shall be determined by the appended claims. [Explanation of symbols]
[0040] 10 Rocker mechanism 100 Mounting seat 110 Upper Shell 111 Protrusion 120 Lower Shell 121 engagement groove 200 Circuit Boards 210 First sensing member 220 Second sensing member 300 First Rocker Assembly 310 Locker No. 1 311 Restricted Section 312 1st extension section 3121 Shaft 3123 Support plate 3125 First mounting part 3126 First mounting groove 313 2nd extension section 314 First Rotation Axis 315 Second rotation axis 320 first sensing member 400 Second Rocker Assembly 410 Locker No. 2 411 Main Unit 411a Through hole 411b Notch 411c Spherical mating surface 413 1st support part 415 Second support part 417 Second mounting part 418 Second mounting groove 420 Second sensing member 500 spindles 501 First Restriction Groove 503 Second Restriction Groove 610 Rod Cap 700 Reset member
Claims
1. A mounting seat and a circuit board provided in the mounting seat and including a first sensing member and a second sensing member; a first rocker assembly including a first rocker provided on the mounting seat and a first sensing member connected to the first rocker and provided corresponding to the first sensing member, the first rocker assembly being driven to swing about a first direction so as to swing the first sensing member relative to the first sensing member; a second rocker assembly including a second rocker provided on the mounting seat, and a second sensing member connected to the second rocker and provided corresponding to the second sensing member, the second rocker assembly being driven to swing about a second direction so as to swing the second sensing member relative to the second sensing member, the second direction being perpendicular to the first direction.
2. 2. The rocker mechanism according to claim 1, wherein the rocker mechanism has a spindle provided on the mounting seat, the first rocker passes through the spindle and is fitted to the spindle so as to be rotatable in a second direction, the second rocker is fitted to the spindle, and the spindle is used to rock the first rocker and the second rocker.
3. 3. The rocker mechanism of claim 2, wherein the spindle has a first limiting groove formed in a first direction and a second limiting groove formed in a second direction; the first rocker includes a limiting portion, a first extending portion, a second extending portion integrally formed with the limiting portion, a first rotating shaft, and a second rotating shaft, the first extending portion and the second extending portion being connected to opposite ends of the limiting portion in the first direction; the first rotating shaft and the second rotating shaft being connected to opposite ends of the limiting portion in the second direction; the first rotating shaft and the second rotating shaft being rotatably fitted in the second limiting groove in the second direction; the limiting portion passes through the first limiting groove and is driven by the spindle to swing around the first direction; and the first sensing member is connected to one end of the first extending portion remote from the limiting portion.
4. 4. The rocker mechanism according to claim 3, wherein the first extension portion includes an integrally molded shaft portion, a support plate, and a first mounting portion, the shaft portion is connected to the limiting portion, the support plate is located between the shaft portion and the first mounting portion, a first mounting groove is opened in the first mounting portion for accommodating the first sensing member, the first mounting portion is provided corresponding to the first sensing member, and the spindle is used to press the support plate against the circuit board to limit the swing range of the first rocker.
5. 3. The rocker mechanism according to claim 2, wherein the second rocker includes an integrally molded main body, a first support portion, a second support portion, and a second mounting portion, the first support portion and the second support portion being connected to opposite ends of the main body along the second direction, the second mounting portion being connected to one end of the second support portion remote from the main body and provided to correspond to the second sensing member, the main body being fitted onto the spindle and driven to swing by the spindle, causing the second mounting portion to swing relative to the second sensing member, and the second mounting portion having a second mounting groove for accommodating the second sensing member.
6. The rocker mechanism according to claim 5, wherein a through hole for passing the spindle is formed in the main body, and a notch for avoiding the spindle is formed in the through hole in the second direction.
7. 6. The rocker mechanism of claim 5, wherein the body has a spherical mating surface located on a side of the body away from the first rocker, the mounting seat has a spherical groove, and the spherical mating surface is slidably fitted into the spherical groove.
8. The rocker mechanism according to any one of claims 1 to 7, characterized in that the mounting seat includes an upper shell and a lower shell, a protrusion is provided on one of the peripheral sides of the upper shell and the lower shell, and an engagement groove is provided on the other, and the protrusion is engaged with the engagement groove.
9. The rocker mechanism according to any one of claims 1 to 7, characterized in that the rocker mechanism includes a reset member provided within the mounting seat, and the first rocker and the second rocker are each abutted against the reset member.
10. A joystick comprising a housing and a rocker mechanism according to any one of claims 1 to 9, wherein the rocker mechanism is connected to the housing.
Citation Information
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