Gamepad and rocker assembly thereof

By introducing an adjustment mechanism and a detachable joystick cap structure into the game controller joystick assembly, the problem of fixed joystick feel was solved, enabling convenient feel adjustment and improving the user experience.

CN223800059UActive Publication Date: 2026-01-16SHENZHEN GULI TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520057510.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-10
Publication Date
2026-01-16
Estimated Expiration
2035-01-10

AI Technical Summary

Technical Problem

The joystick controls on existing game controllers have a fixed feel, which users cannot easily change, resulting in insufficient ease of use.

Method used

Design a joystick assembly including a joystick base, a joystick cover, and an adjuster. The amount of deformation of the elastic element is adjusted by moving the adjuster within the joystick cover, thereby changing the joystick's swing feel. The joystick cover is detachably connected to the joystick cap to achieve different feel adjustments.

Benefits of technology

Users can adjust the joystick's feel as needed, improving the game controller's ease of use and flexibility.

✦ Generated by Eureka AI based on patent content.

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Abstract

The rocker assembly comprises a rod seat, a rod cover and an adjusting piece, the rod seat comprises a seat body and a rocker, the rocker comprises an outer rod, an inner rod and an elastic piece, the inner rod is arranged on the outer rod in a penetrating mode and extends out of the end, away from the seat body, of the outer rod, and the elastic piece is arranged in the seat body and abuts against the inner rod; an adjusting hole is formed in one end, deviating from the seat body, of the rod cover; the outer rod extends into the adjusting hole and is limited in the rod cover; the adjusting piece is contained in the adjusting hole, connected with the rod cover and used for being driven to move relative to the rod cover and driving the inner rod to move relative to the outer rod so as to extrude the elastic piece, and the deformation amount of the elastic piece is adjusted. The rod cover can be used for being detachably connected with the rod cap, when a user needs to adjust the swinging hand feeling of the rocker, the rod cap can be detached to expose the adjusting piece, the adjusting piece drives the inner rod to move relative to the outer rod to adjust the deformation amount of the elastic piece, then the operation hand feeling of the rocker is changed, and therefore use convenience is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to gamepad technical field, especially a gamepad and its rocker assembly. BACKGROUND

[0002] Gamepad as common accessory of electronic game device, user can realize the control to virtual object through operating its rocker, button etc. part. Gamepad inside generally is equipped with elastic part for realizing the reset after the rocking of rocker. The deformation performance of elastic part directly influences the operation feeling of rocker, for example, the elastic modulus or initial compression of elastic part is bigger, the resistance of rocking of rocker will be bigger, namely the feeling is hard, on the contrary, the elastic modulus or initial compression of elastic part is smaller, the resistance of rocking of rocker will be smaller, namely the feeling is soft.

[0003] In the related art, the operation feeling of the rocker of the same gamepad is generally relatively fixed, and the user needs to replace the entire rocker assembly or the gamepad to change the swinging feeling of the rocker, and the convenience of use needs to be improved. SUMMARY

[0004] The utility model embodiment provides a gamepad and its rocker assembly to improve the convenience of use of the gamepad.

[0005] A rocker assembly, comprising:

[0006] A rod seat, comprising a seat body and a rocker, the rocker comprising an outer rod, an inner rod and an elastic part, the inner rod being arranged in the outer rod and extending from an end of the outer rod away from the seat body, the elastic part being arranged in the seat body and abutting against the inner rod;

[0007] A rod cover having an adjusting hole at an end away from the seat body, the outer rod extending into the adjusting hole and being limited in the rod cover; and

[0008] An adjusting part accommodated in the adjusting hole and connected with the rod cover, the adjusting part being used to be driven to move relative to the rod cover and to drive the inner rod to move relative to the outer rod to extrude the elastic part, thereby adjusting the deformation amount of the elastic part.

[0009] In one embodiment, the adjusting part has a tool slot at a side away from the seat body, the tool slot being used to embed a tool to drive the adjusting part to move relative to the rod cover.

[0010] In one embodiment, the adjusting part is threadedly connected with the rod cover.

[0011] In one of the embodiments, the adjusting member has opposite first and second ends in the axial direction of the rocker, the first end is farther away from the seat than the second end, the first end has the tool slot, and the width of the first end is not greater than the width of the second end.

[0012] In one of the embodiments, the outer rod protrudes from the bottom surface of the adjusting hole and has a clamping groove extending in the circumferential direction and exposed to the adjusting hole; the bottom surface of the adjusting hole is provided with a through hole extending to the side of the rod cover facing the seat, and the outer rod is arranged in the through hole; the rocker assembly comprises an open snap ring arranged in the clamping groove, and the width of the snap ring is greater than the width of the through hole.

[0013] In one of the embodiments, the outer rod comprises a body and a boss protruding from the outer surface of the body, the body is arranged in the through hole and has the clamping groove and a through hole for the inner rod to pass through, the clamping groove and the boss are arranged in the axial direction of the rocker, and the width of the outer rod at the boss is greater than the width of the through hole, so that the movement of the rod cover relative to the outer rod is limited by the open snap ring and the boss.

[0014] In one of the embodiments, the body has opposite and parallel first and second planes, and first and second arc surfaces connected between the first and second planes, and the boss is arranged on the first and second planes, respectively, and the width of the boss is less than the width of the first and second planes; the cross-sectional profile of the through hole matches the cross-sectional profile of the body, so as to limit the rotation of the rod cover relative to the outer rod.

[0015] In one of the embodiments, the rod cover has a cover body and a convex ring protruding from the cover body in the axial direction of the rocker, the convex ring has the adjusting hole, the width of the cover body is greater than the width of the convex ring, and the cover body and the seat are arranged in the axial direction of the rocker; opposite sides of the convex ring have insertion grooves for inserting a rod cap, so that the rod cap is detachably connected to the rod cover and covers the adjusting hole.

[0016] In one of the embodiments, the rocker assembly comprises any one of the following schemes:

[0017] One end of the convex ring away from the seat has a matching structure for aligning with the alignment structure of the rod cap;

[0018] The rocker assembly comprises a protective sleeve, the protective sleeve is arranged outside the convex ring and between the cover body and the top of the rod cap.

[0019] A game handle comprises a housing and the joystick assembly of any one of the preceding claims, the joystick assembly being provided in the housing.

[0020] The joystick assembly comprises a base, a lever cover and an adjusting member, the base comprises a base body and a lever, the lever comprises an outer lever, an inner lever and an elastic member, the inner lever is arranged in the outer lever and extends from an end of the outer lever away from the base body, the elastic member is arranged in the base body and abuts against the inner lever; the lever cover has an adjusting hole at an end away from the base body, the outer lever extends into the adjusting hole and is limited in the lever cover; the adjusting member is accommodated in the adjusting hole and connected with the lever cover, the adjusting member is used to be driven to move relative to the lever cover and drive the inner lever to move relative to the outer lever to compress the elastic member, so as to adjust the deformation amount of the elastic member. The lever cover can be used to detachably connect the lever cap, when a user needs to adjust the swing feeling of the lever, the lever cap can be detached to expose the adjusting member, the inner lever is driven to move relative to the outer lever through the adjusting member to adjust the deformation amount of the elastic member, and then the swing feeling of the lever is changed, so that the convenience of use is improved. BRIEF DESCRIPTION OF DRAWINGS

[0021] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0022] Figure 1 It is a schematic view of the joystick assembly of an embodiment provided with a lever cap;

[0023] Figure 2 It is an exploded view of the joystick assembly shown in the figure; Figure 1

[0024] Figure 3 It is another exploded view of the joystick assembly shown in the figure; Figure 1

[0025] Figure 4 It is a sectional view of the joystick assembly shown in the figure from one perspective; Figure 1

[0026] Figure 5 It is a sectional view of the joystick assembly shown in the figure from another perspective; Figure 1

[0027] Figure 6 It is a schematic view of the lever cover of the joystick assembly of an embodiment;

[0028] Figure 7 It is a schematic view of the outer lever of the joystick assembly of an embodiment.

[0029] Reference signs:

[0030] ​​​​Rocker assembly 10, rod seat 100, seat body 110, rocker 120, outer rod 121, through hole 121a, clamping groove 121b, body 1211, boss 1213, first plane 1215, second plane 1217, first arc surface 1218, second arc surface 1219, inner rod 123, rod body 1231, limiting portion 1233, elastic piece 125, support 127, shaft hole 127a, upper rocker arm 1281, lower rocker arm 1283, turntable 130, sensing element 140, rod cover 200, adjusting hole 200a, insertion slot 200b, perforation 200c, cover body 210, convex ring 220, matching structure 221, adjusting piece 300, tool slot 300a, first end 310, second end 320, rod cap 40, cap top 41, alignment structure 411, extension cylinder 43, clamping portion 431, protective sleeve 500, split ring 600, button 700 DETAILED DESCRIPTION

[0031] For the purpose of facilitating the understanding of the present application, a more comprehensive description of the present application will be given below with reference to the relevant drawings. The drawings show the preferred embodiments of the present application. However, the present application can be realized in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive.

[0032] It should be noted that when an element is referred to as being "fixed" to another element, it can be directly on the other element or there can be an intervening element. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or there can be an intervening element. The terms "vertical", "horizontal", "left", "right", and similar expressions used herein are for illustrative purposes only.

[0033] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the present application belongs. The terminology used in the description of the present application herein only for the purpose of describing specific embodiments and is not intended to limit the present application. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0034] Reference Figure 1 And Figure 2 The present application discloses a rocker assembly 10 of a gamepad. During use, the operator can control virtual objects through the rocker assembly 10.

[0035] The rocker assembly 10 comprises a lever base 100, a lever cover 200 and an adjusting member 300. The lever base 100 comprises a base body 110 and a rocker 120. The base body 110 is substantially in the shape of a hollow rectangular box, which provides rigid support for the whole structure. Meanwhile, in combination with Figure 3 and Figure 4 , the rocker 120 comprises an outer lever 121, an inner lever 123 and an elastic member 125. The inner lever 123 is arranged in the outer lever 121 and extends out of the end of the outer lever 121 away from the base body 110. The outer lever 121 is substantially in the shape of a hollow cylinder, and the inner lever 123 is also substantially in the shape of a cylinder. The elastic member 125 is arranged in the base body 110 and bears against the inner lever 123. The elastic member 125 can be a spring. During the oscillation of the inner lever 123 and the outer lever 121 of the rocker 120 relative to the base body 110, the elastic member 125 is pressed and deformed to generate a restoring force. After the operator releases the rocker 120, the elastic member 125 drives the outer lever 121 and the inner lever 123 to return to the original position.

[0036] The lever cover 200 has an adjusting hole 200a at the end away from the base body 110. The outer lever 121 extends into the adjusting hole 200a and is limited in the lever cover 200. The adjusting member 300 is accommodated in the adjusting hole 200a and connected with the lever cover 200. The adjusting member 300 is used to be driven to move relative to the lever cover 200, and drive the inner lever 123 to move relative to the outer lever 121 to press the elastic member 125, so as to adjust the deformation amount of the elastic member 125.

[0037] Specifically, the lever cover 200 can have a cover body 210 and a convex ring 220 protruding axially along the rocker 120 from the cover body 210. The cover body 210 is substantially in the shape of a spherical cap. The convex ring 220 is connected to the end of the cover body 210 away from the base body 110, and the cover body 210 is outwardly convex to the side where the convex ring 220 is located. The convex ring 220 is substantially in the shape of a cylinder and has the adjusting hole 200a. The width of the cover body 210 is greater than the width of the convex ring 220 and the base body 110. For example, the projection of the cover body 210 along the rocker 120 can completely cover the base body 110. The cover body 210 and the base body 110 can be arranged axially along the rocker 120 with a space therebetween, which provides space for the oscillation of the cover body 210 relative to the base body 110. After the rocker assembly 10 is assembled in the shell of the gamepad, the convex ring 220 is arranged in the mounting hole of the shell. The mounting hole of the shell can provide sufficient space for the oscillation of the convex ring 220 and the outer lever 121 relative to the shell. The cover body 210 can be exposed from the mounting hole of the shell but shield the base body 110, preventing foreign matters such as dust from entering the base body 110 from the mounting hole.

[0038] Meanwhile, in combination with Figure 3 , Figure 5In some embodiments, the convex ring 220 has two insertion slots 200b on opposite sides, which are used to insert the rod cap 40 so that the rod cap 40 is detachably connected to the rod cover 200 and covers the adjustment hole 200a. For example, the rod cap 40 can include a cap top 41 and an extension cylinder 43 connected to the cap top 41, the cap top 41 has a width greater than that of the extension cylinder 43, the extension cylinder 43 is cylindrical and has two opposite deformable clamping portions 431, the clamping portions 431 are cantilever beam structures and correspond to the two insertion slots 200b one by one. The user can insert the extension cylinder 43 into the rod cap 40 by aligning the two clamping portions 431 with the two insertion slots 200b, and the clamping portions 431 are clamped in the insertion slots 200b of the rod cap 40 to achieve detachable connection of the rod cap 40 and the rod cover 200. When the user needs to replace the rod cap 40, such as replacing a rod cap 40 of different height, the rod cap 40 can be pulled off the rod cover 200, and a new rod cap 40 can be assembled to the rod cover 200, so as to obtain different operation feeling and improve the convenience of use.

[0039] Further, in combination with Figure 3 and Figure 4 , the end of the convex ring 220 away from the seat body 110 can also have a matching structure 221 for alignment with the alignment structure 411 of the rod cap 40. For example, in the embodiment shown in Figure 3 、 Figure 4 , the matching structure 221 is two protrusions protruding from the end face of the convex ring 220, and the center line of the two protrusions can pass through the center of the convex ring 220, that is, the centers of the two protrusions can be distributed on a diameter of the convex ring 220. The side of the cap top 41 facing the seat body 110 can be provided with an alignment structure 411, such as two alignment slots, which correspond to the two matching structures 221 one by one. After the rod cap 40 is clamped in the rod cover 200, the two matching structures 221 are accommodated in the two alignment slots one by one to improve the alignment accuracy of the rod cap 40 and the rod cover 200, prevent the rod cap 40 from rotating relative to the rod cover 200 around the axis of the rocker 120, and improve the connection stability of the rod cap 40 and the rod cover 200. In other embodiments, the matching structure 221 can be a groove, and the alignment structure 411 is a protrusion corresponding to the matching structure 221, and the matching of the matching structure 221 and the alignment structure 411 can also improve the alignment accuracy of the rod cap 40 and the rod cover 200, prevent the rod cap 40 from rotating relative to the rod cover 200 around the axis of the rocker 120, and improve the connection stability of the rod cap 40 and the rod cover 200.

[0040] In some embodiments, the rocker assembly 10 can further include a protective sleeve 500 having a suitable rigidity, for example, a hard plastic sleeve or a metal sleeve, and the rigidity of the plastic sleeve can be above Shore D 70D. The protective sleeve 500 is sleeved outside the extension cylinder 43 and can be partially embedded in the cap top 41, that is, the protective sleeve 500 can be sleeved outside the convex ring 220 and located between the cover body 210 and the cap top 41. Due to the presence of the deformable clamping portion 431, the circumference of the extension cylinder 43 is not a complete cylindrical surface. During the swinging of the rocker 120, if the extension cylinder 43 directly contacts the hole wall of the mounting hole of the shell, the gap on both sides of the clamping portion 431 will cause vibration or jamming when impacting, resulting in the rotation of the rocker 120 relative to the shell not being smooth. After the protective sleeve 500 of the present application is used, the circumferential outer wall of the protective sleeve 500 can form a complete cylindrical surface, which can avoid the above problems when the rocker assembly 10 impacts the shell, and improve the rotation smoothness of the rocker 120. On the other hand, during the operation of the operator operating the rocker 120 to swing through the lever cap 40, the protective sleeve 500 can contact the hole wall of the mounting hole of the shell, and the hard plastic or metal (for example, stainless steel) material of the protective sleeve 500 can also prevent the extension cylinder 43 from being easily worn due to rigid collision with the shell, thereby improving the service life of the rocker assembly 10.

[0041] Meanwhile, in combination with Figure 5 The rocker 120 can further include a support 127 having an axial shaft hole 127a, and the outer rod 121 is provided with a through hole 121a in the axial direction, and the support 127 is arranged at the end of the outer rod 121 away from the lever cover 200 in the axial direction and at least partially penetrates the through hole 121a of the outer rod 121. The inner rod 123 includes an integrally formed rod body 1231 and a limiting portion 1233, and the width of the limiting portion 1233 is greater than the width of the rod body 1231. The rod body 1231 penetrates the through hole 121a and the rod body 1231 protrudes from the end of the outer rod 121 away from the support 127 on the side of the limiting portion 1233 away from the support 127, and the rod body 1231 on the other side of the limiting portion 1233 penetrates the shaft hole 127a of the support 127. The limiting portion 1233 can abut against the hole wall of the through hole 121a to limit the movement range of the inner rod 123 in the through hole 121a, and the elastic member 125 is sleeved on the rod body 1231 and the support 127 and abuts against the support 127 and the limiting portion 1233 at both ends, thereby realizing the elastic floating connection of the outer rod 121, the inner rod 123 and the support 127, and when the outer rod 121 is driven to swing relative to the seat body 110, the support 127 keeps in contact with the seat body 110 through the cooperation of the rod body 1231 and the shaft hole 127a and the cooperation of the elastic member 125 and the support 127, thereby ensuring the stability of the swinging of the rocker 120. The end of the support 127 for contacting the seat body 110 can be processed into a curved surface to reduce the contact area of the support 127 and the seat body 110 and ensure the smoothness of the swinging of the support 127 relative to the seat body 110.

[0042] Referring back to Figure 3 , the rocker 120 can further include an upper rocker arm 1281 and a lower rocker arm 1283 cross-disposed within the seat body 110, for example, the upper rocker arm 1281 and the lower rocker arm 1283 can be orthogonally disposed, i.e., the rotation axes of the upper rocker arm 1281 and the lower rocker arm 1283 relative to the seat body 110 can be perpendicular to each other. The outer rod 121 is disposed through the upper rocker arm 1281 and the lower rocker arm 1283, for example, the rod cover 200, the upper rocker arm 1281, the lower rocker arm 1283, and the support 127 can be sequentially disposed along the axial direction of the rocker 120. In combination with Figure 4 and Figure 5 , the rod seat 100 can include two rotating discs 130 capable of rotating relative to the seat body 110, and each rotating disc 130 is fixed with a sensing element 140, which can be a magnet. The sensing element 140 can be correspondingly disposed with a sensing element on a circuit board of the gamepad. The sensing element can be a Hall sensor. The upper rocker arm 1281 and the lower rocker arm 1283 are correspondingly disposed through one rotating disc 130, so that when the outer rod 121 swings, the corresponding rotating disc 130 and the sensing element 140 are driven to swing relative to the seat body 110 by the upper rocker arm 1281 or the lower rocker arm 1283, so as to realize the relative movement of the sensing element 140 and the sensing element to generate a detection signal and realize the operation of a virtual object in the game.

[0043] Referring back to Figure 2 and Figure 3 , the adjusting member 300 has a tool slot 300a on the side away from the seat body 110, and the tool slot 300a is used for embedding a tool to drive the adjusting member 300 to move relative to the rod cover 200. In some embodiments, the adjusting member 300 is a threaded column with substantially consistent width at both ends, which is threadedly connected with the rod cover 200. For example, the adjusting member 300 has opposite first and second ends 310 and 320 in the axial extension direction of the rocker 120, the first end 310 is farther away from the seat body 110 than the second end 320, the first end 310 has the tool slot 300a, and the width of the first end 310 is not greater than the width of the second end 320. The adjusting member 300 with such structure is easier to be processed into a general part, for example, some more general standard thread sizes can be used, and general equipment is used to realize the rapid processing and molding of the adjusting member 300, thereby reducing the processing cost of the adjusting member 300 and the rod cover 200, meeting the requirements of industrial mass production, and thereby reducing the cost of the rocker assembly 10 and the gamepad.

[0044] The tool groove 300a can be a cross-shaped groove to match a cross-shaped screwdriver, so that the user can easily turn the adjusting member 300 through the tool groove 300a to move the adjusting member 300 in the axial direction of the rocker 120 in the adjusting hole 200a, drive the inner rod 123 to move relative to the outer rod 121 towards or away from the support 127, and then change the deformation amount of the elastic member 125 and the operation feeling of the rocker 120. For example, after the adjusting member 300 moves in the axial direction of the rocker 120 in the adjusting hole 200a to drive the inner rod 123 to move relative to the outer rod 121 towards the support 127, the compression amount of the elastic member 125 increases. As known, the greater the compression amount of the elastic member 125, the greater the resistance to further deformation of the elastic member 125, which is reflected in the operation feeling of the operator as a greater swing resistance when the operator drives the rocker 120 to swing, and a harder feeling. Conversely, after the adjusting member 300 moves in the axial direction of the rocker 120 in the adjusting hole 200a to drive the inner rod 123 to move relative to the outer rod 121 away from the support 127, the compression amount of the elastic member 125 decreases, the swing resistance of the rocker 120 decreases, and the feeling becomes softer.

[0045] In other words, when the user needs to adjust the swing feeling of the rocker 120, the rod cap 40 can be removed from the rod cover 200, the adjusting member 300 is driven to move in the axial direction of the rocker 120 in the adjusting hole 200a by using a tool and the tool groove 300a, and then the deformation amount of the elastic member 125 is adjusted to adjust the operation feeling of the rocker 120. After the adjustment is completed, the rod cap 40 can be clamped on the rod cover 200 to realize the normal work of the rocker 120, thereby improving the convenience of the feeling adjustment. Since the adjusting member 300 can be hidden in the space enclosed by the rod cap 40 and the rod cover 200, compared with the structure in which the adjusting structure is exposed to the outside, the problem of accidental touching of the adjusting member 300 by the operator can be avoided.

[0046] It can be understood that the tool groove 300a can also be a slot or an internal hexagonal groove, which is used to adapt to the use of a corresponding screwdriver. The connection between the adjusting member 300 and the convex ring 220 is not limited to threaded connection, but can also be achieved by the cooperation of a convex point and a special-shaped groove or other structures to move the adjusting member 300 relative to the rod cover 200, and the convex point is stably kept in some specific positions of the rod cover 200 by the abutting action of the elastic member 125 on the inner rod 123, thereby realizing the adjustment of the swing feeling of the remote rocker 120.

[0047] With reference to the foregoing Figure 3 , Figure 4 , and in combination with Figure 6, the adjusting hole 200a is a counterbore, the outer rod 121 protrudes from the bottom surface of the adjusting hole 200a, and the outer rod 121 has a clamping groove 121b extending in the circumferential direction and exposed to the adjusting hole 200a. The bottom surface of the adjusting hole 200a is provided with a through hole 200c extending to the side of the rod cover 200 facing the seat body 110, and the outer rod 121 passes through the through hole 200c. The rocker assembly 10 comprises an open snap ring 600 embedded in the clamping groove 121b, and the width of the open snap ring 600 is greater than the width of the through hole 200c. In combination Figure 3 , the outer rod 121 can comprise a body 1211 and a boss 1213 protruding from the outer surface of the body 1211, the body 1211 passes through the through hole 200c and has a clamping groove 121b and a through hole 121a for the inner rod 123 to pass through, the clamping groove 121b and the boss 1213 are arranged in the axial direction of the rocker 120, and the width of the outer rod 121 at the boss 1213 is greater than the width of the through hole 200c, so as to limit the movement of the rod cover 200 relative to the outer rod 121 by the open snap ring 600 and the boss 1213.

[0048] In the assembly process of the rocker 120 and the rod cover 200, the rod seat 100 can be assembled into an independent component in advance, and then the outer rod 121 is inserted into the adjusting hole 200a from the end of the rod cover 200 away from the protruding ring 220 through the through hole 200c until the boss 1213 abuts against the end surface of the through hole 200c; at this time, the ends of the outer rod 121 and the inner rod 123 away from the seat body 110 protrude into the adjusting hole 200a; the open snap ring 600 is sleeved to the outer rod 121 from the side of the adjusting hole 200a away from the seat body 110, and after being deformed and clamped into the clamping groove 121b, the outer rod 121 is limited in the rod cover 200. That is, when the rod cover 200 moves away from the seat body 110, the open snap ring 600 limits the movement of the rod cover 200; when the rod cover 200 moves towards the seat body 110, the boss 1213 limits the movement of the rod cover 200. By designing the assembly error of the outer rod 121, the through hole 200c, the clamping groove 121b, the boss 1213 and the open snap ring 600, the outer rod 121 can be stably limited in the rod cover 200, so that the rod cover 200 and the outer rod 121 are close to an integral body, avoiding the outer rod 121 from easily moving or shaking relative to the rod cover 200, and avoiding abnormal noise in the operation process.

[0049] In particular, with reference to Figure 3 and Figure 5 In some embodiments, the seat body 110 of the rocker assembly 10 is further fixedly connected with a button 700, and when the operator presses the rod cap 40 along the axial direction of the rocker 120, the rod cover 200 presses against the boss 1213 to move the outer rod 121 towards the support 127, and the outer rod 121 can press the button 700 downwards through the lower rocker arm 1283 to trigger the corresponding function.

[0050] Exemplarily, with reference toFigure 7 The cross section of the body 1211 can be a rounded rectangle shape, having a first plane 1215 and a second plane 1217 oppositely and parallelly arranged, and a first arc plane 1218 and a second arc plane 1219 connected between the first plane 1215 and the second plane 1217, the first plane 1215 and the second plane 1217 correspond to two parallel straight sides of the rounded rectangle in the cross section, and the first arc plane 1218 and the second arc plane 1219 correspond to two arc sides. The first plane 1215 side and the second plane 1217 side are respectively provided with a boss 1213, the cross section of the boss 1213 can be an arc shape, and the width is smaller than the width of the first plane 1215 and the second plane 1217. The cross section profile of the through hole 200c matches the cross section profile of the body 1211, that is, the cross section of the through hole 200c is also a rounded rectangle, so as to limit the rotation of the lever cover 200 relative to the outer lever 121.

[0051] In this embodiment, the structure of the outer lever 121 is relatively simple, and the processing is relatively easy, and the assembly of the lever cover 200 and the outer lever 121 is also relatively easy. For example, the through hole 200c of the lever cover 200 and the body 1211 of the outer lever 121 can adopt a clearance fit or a transition fit, so as to realize the convenient assembly of the outer lever 121 and the lever cover 200, and improve the assembly efficiency. Since the outer lever 121 usually needs to have the function of pressing the trigger button 700, the assembly and fixation of the lever cover 200 and the outer lever 121 are more conducive to the operation of the trigger button 700. Compared with the interference fit of the outer lever 121 and the through hole 200c, the assembly of the present application is easier, and the assembly efficiency is higher.

[0052] The above rocker assembly 10 includes a lever seat 100, a lever cover 200 and an adjusting piece 300. The lever seat 100 includes a seat body 110 and a rocker 120. The rocker 120 includes an outer lever 121, an inner lever 123 and an elastic piece 125. The inner lever 123 is arranged in the outer lever 121 and extends from an end of the outer lever 121 away from the seat body 110. The elastic piece 125 is arranged in the seat body 110 and abuts against the inner lever 123. The lever cover 200 has an adjusting hole 200a at an end away from the seat body 110. The outer lever 121 extends into the adjusting hole 200a and is limited in the lever cover 200. The adjusting piece 300 is accommodated in the adjusting hole 200a and connected with the lever cover 200. The adjusting piece 300 is used to be driven to move relative to the lever cover 200, and drive the inner lever 123 to move relative to the outer lever 121 to press the elastic piece 125, so as to adjust the deformation amount of the elastic piece 125. The lever cover 200 can be used to detachably connect a lever cap 40. When a user needs to adjust the swing feeling of the rocker 120, the lever cap 40 can be removed to expose the adjusting piece 300. The deformation amount of the elastic piece 125 is adjusted by driving the inner lever 123 to move relative to the outer lever 121 through the adjusting piece 300, so as to change the swing feeling of the rocker 120, thereby improving the convenience of use.

[0053] Any combination of the technical features in the above-described embodiments can be made, and for the sake of brevity, not all possible combinations are described, however, as long as the combination of the technical features does not exist in contradiction, it shall be considered as within the scope of the present disclosure.

[0054] The above-described embodiments only express several implementation manners of the present application, the description is relatively specific and detailed, but it shall not be understood as a limitation on the scope of the present application patent. It should be pointed out that, for ordinary skilled in the art, under the premise of not departing from the concept of the present application, a number of modifications and improvements can be made, which all belong to the protection scope of the present application. Therefore, the protection scope of the present application patent shall be subject to the appended claims.

Claims

1. A rocker assembly characterized by, The application relates to a lever assembly, comprising: a lever base, comprising a base body and a rocker, the rocker comprising an outer lever, an inner lever and an elastic member, the inner lever being arranged in the outer lever and extending from an end of the outer lever away from the base body, the elastic member being arranged in the base body and abutting the inner lever; a lever cover, having an adjusting hole at an end away from the base body, the outer lever extending into the adjusting hole and being limited in the lever cover; and an adjusting member, being accommodated in the adjusting hole and connected with the lever cover, the adjusting member being used for being driven to move relative to the lever cover and drive the inner lever to move relative to the outer lever to compress the elastic member and adjust the deformation amount of the elastic member.

2. The rocker assembly of claim 1, wherein, The adjusting member has a tool slot at a side away from the base body, the tool slot being used for embedding a tool to drive the adjusting member to move relative to the lever cover.

3. The rocker assembly of claim 2, wherein, The adjusting member is screw-connected with the lever cover.

4. The rocker assembly of claim 3, wherein, The adjusting member has opposite first and second ends in the axial extension direction of the rocker, the first end being farther away from the base body than the second end, the first end having the tool slot, and the width of the first end is not greater than the width of the second end.

5. The rocker assembly of claim 3, wherein, The outer lever protrudes from the bottom surface of the adjusting hole and has a clamping groove extending in the circumferential direction and exposed to the adjusting hole; the bottom surface of the adjusting hole is provided with a through hole extending to the side of the lever cover facing the base body, and the outer lever is arranged in the through hole; the rocker assembly comprises an open clamping ring, the open clamping ring is embedded in the clamping groove, and the width of the clamping ring is greater than the width of the through hole.

6. The rocker assembly of claim 5, wherein, The outer lever comprises a body and a boss protruding from the outer surface of the body, the body is arranged in the through hole and has the clamping groove and a through hole for the inner lever, the clamping groove and the boss are arranged in the axial direction of the rocker, and the width of the outer lever at the boss is greater than the width of the through hole, so that the movement of the lever cover relative to the outer lever is limited by the open clamping ring and the boss.

7. The rocker assembly of claim 6, wherein, The body has opposite and parallel first and second planes and first and second arc surfaces connected between the first and second planes, the boss is arranged on the side of the first plane and the second plane respectively, the width of the boss is smaller than the width of the first plane and the second plane, and the cross-sectional profile of the through hole matches the cross-sectional profile of the body to limit the rotation of the lever cover relative to the outer lever.

8. The rocker assembly of any of claims 1-7, wherein, The lever cover has a cover body and a protruding ring protruding from the cover body in the axial direction of the rocker, the protruding ring has the adjusting hole, the width of the cover body is greater than the width of the protruding ring, and the cover body and the base body are arranged in the axial direction of the rocker, opposite sides of the protruding ring have insertion grooves for inserting a lever cap, so that the lever cap is detachably connected to the lever cover and covers the adjusting hole.

9. The rocker assembly of claim 8, wherein, Any one of the following schemes is included: The end of the protruding ring away from the base body has a matching structure for matching with the alignment structure of the lever cap; The rocker assembly comprises a protective sleeve, the protective sleeve is sleeved outside the protruding ring and located between the cover body and the top of the lever cap.

10. A gamepad, characterized in that, including a housing and the rocker assembly of any one of claims 1-9, the rocker assembly being disposed in the housing.