Double-body trigger key structure and gamepad

By introducing a magnetic positioning element into the dual-body trigger button structure and allowing interaction between the magnetic components of the moving part and the magnetic parts of the moving part, the problem of reduced positioning effect of the moving part is solved, achieving stable switching of the moving part and improving the user experience.

CN223743523UActive Publication Date: 2025-12-30SHENZHEN QIXIONG TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423321400.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-30
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing dual-body trigger button structure suffers from reduced positioning accuracy of the moving parts after frequent switching by the user, leading to wear and affecting the user experience.

Method used

In the dual-body trigger button structure employing magnetic positioning elements and magnetic components, the stable switching of the movable component is achieved through the interaction between the magnetic positioning elements and the magnetic components of the moving component.

Benefits of technology

It improves the positioning reliability of moving parts, extends their service life, enhances the force feedback effect during switching, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223743523U_ABST
    Figure CN223743523U_ABST
Patent Text Reader

Abstract

The utility model discloses a double-body trigger key structure and a gamepad, the gamepad comprises a main control board, and the double-body trigger key structure comprises a seat body, a movable piece, a magnetic positioning piece, a trigger key, a digital switch and an analog switch; wherein the movable part is movably mounted on the seat body and has a first state and a second state which can be movably switched, and the movable part is provided with a magnetic part; the magnetic positioning piece and the seat body are relatively fixed, and the magnetic force of the magnetic positioning piece acts on the magnetic part to limit the movable piece in the first state or the second state; the trigger key is mounted on the seat body and is provided with a digital trigger part and a simulation trigger part; the digital switch and the analog switch are both used for being electrically connected to the main control board, and at least one of the digital switch and the analog switch is installed on the movable part. The double-body trigger key structure in the scheme is high in reliability and long in service life.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to input device technical field, especially a kind of double body trigger key structure and gamepad. BACKGROUND

[0002] The trigger key structure of most gamepads on the market adopts digital switch or analog switch, and generates digital signal or analog signal when triggered. Generally, the gamepad with digital switch is suitable for gunfight or fighting games, and triggers shooting or character action through digital signal. The gamepad with analog switch is suitable for racing games, and analog signal matches with character actions such as refueling and braking.

[0003] In related technologies, some gamepads use double-body trigger key structure, which has two switchable input signal triggering modes. Users can switch trigger input signal triggering mode to match different types of games. Specifically, the double-body trigger key structure is provided with a seat body and a movable piece movably installed on the seat body. The digital switch or analog switch is installed on the movable piece. After the user adjusts the position state of the movable piece, the trigger key can only trigger the corresponding switch.

[0004] However, the seat body in this type of double-body trigger key structure mostly uses two spaced elastic retaining parts to retain the movable piece, thereby positioning the movable piece in a certain state. This type of structure will wear out after frequent switching by users, which will reduce the positioning effect of the movable piece and cause the movable piece to fail to be retained in place, affecting user experience. UTILITY MODEL CONTENT

[0005] The main purpose of the utility model is to provide a double-body trigger key structure and gamepad, which aims to improve the positioning reliability of the movable piece.

[0006] To achieve the above purpose, the utility model provides a double-body trigger key structure applied to a gamepad. The gamepad includes a main control board, and the double-body trigger key structure includes:

[0007] a seat body;

[0008] a movable piece movably installed on the seat body and having a first state and a second state that can be switched;

[0009] a magnetic positioning piece fixed relative to the seat body, which exerts magnetic force on the magnetic part to limit the movable piece in the first state or the second state;

[0010] a trigger key installed on the seat body, which is provided with a digital trigger part and an analog trigger part;

[0011] A digital switch and an analog switch are electrically connected to the main control board, and at least one of the digital switch and the analog switch is installed on the movable element.

[0012] When the movable element is in the first state and the trigger key is clicked, the digital trigger part triggers the digital switch; when the movable element is in the second state and the trigger key is clicked, the analog trigger part triggers the analog switch.

[0013] In some embodiments of the utility model, the movable element is slidingly installed on the seat body, and the movable element is located at two limit positions in the sliding direction of the movable element in the first state and the second state, respectively.

[0014] The magnetic positioning element is located in the middle of the two limit positions of the magnetic part and is arranged to repel the same polarity of the magnetic positioning element.

[0015] In some embodiments of the utility model, the movable element includes a sliding plate, the sliding plate is provided with a sliding hole, the seat body is slidingly connected to the sliding hole, and the magnetic part is connected to the sliding plate and located on one side perpendicular to the extension direction of the sliding hole.

[0016] In some embodiments of the utility model, the sliding plate includes a plate body and a mounting frame, the plate body is provided with the sliding hole, the mounting frame is connected to the side of the plate body in the width direction of the sliding hole, and the magnetic part is installed in the mounting frame.

[0017] The plate body and the seat body are arranged in alignment on the side of the mounting frame, and the mounting frame partially extends to the side of the seat body.

[0018] In some embodiments of the utility model, the double-body trigger key structure further includes a limiting screw, one side of the seat body facing the movable element is provided with an internally threaded column, and the internally threaded column is slidingly matched with the sliding hole.

[0019] The limiting screw includes a head part and a rod part connected in series, and the rod part is threadedly connected to the internally threaded column, so that the movable element is limited between the head part and the seat body.

[0020] In some embodiments of the utility model, the movable element includes a plate body and an assembly sleeve, the assembly sleeve is integrally connected to the middle part of the plate body, and the assembly sleeve is internally formed with the sliding hole.

[0021] In some embodiments of the utility model, the trigger key has an outer side and an inner side, the digital trigger part and the analog trigger part are both arranged on the inner side, the digital switch is installed on the side of the movable part away from the magnetic part and is aligned with the digital trigger part, and the analog trigger part is located on the side of the digital trigger part away from the magnetic part.

[0022] The utility model discloses still propose a kind of gamepad, including shell, main control board and the double-body trigger button structure of the described;Wherein,

[0023] The installation cavity is provided in the shell, and the cavity wall of the installation cavity is provided with a key hole.

[0024] The seat body is connected to the main control board, the trigger key is exposed outside the key hole, the magnetic positioning member is installed on the main control board, and the digital switch and the analog switch are both electrically connected to the main control board.

[0025] In some embodiments of the utility model, the digital switch is installed on the movable part, the analog switch is integrated on the main control board, the shell is also provided with an adjusting hole, the movable part is provided with an adjusting rod, the adjusting rod extends out of the adjusting hole and is movably connected to the adjusting hole.

[0026] In some embodiments of the utility model, the gamepad is provided with two double-body trigger button structures, the main control board is provided with a mounting seat, the mounting seat is arranged between the two seat bodies, and the two magnetic positioning members are respectively arranged on opposite sides of the mounting seat and are spaced apart from the corresponding magnetic parts.

[0027] In the above-mentioned scheme, the movable part can be stabilized in the first state or the second state under the repulsive force or attractive force of the magnetic part on the magnetic positioning member. When the user needs to switch the input signal type, the state of the movable part can be adjusted. During the adjustment process, the resistance of the magnetic positioning member acting on the magnetic part needs to be overcome first to make the movable part deviate from the current state. Then, under the magnetic force of the magnetic positioning member, the movable part is limited in another state. The movable part is stabilized in a certain state under the magnetic force of the magnetic positioning member, and the reliability is high. During the switching process, the movable part does not need to contact the magnetic positioning member, which avoids high-frequency wear and tear between the two and prolongs the service life. In addition, the force feedback effect is good during the switching process, so that the user can clearly feel whether the switching action is effective, and the experience is good. BRIEF DESCRIPTION OF DRAWINGS

[0028] In order to more clearly illustrate the technical solutions in 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 prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained according to the structures shown in these drawings without any creative labor for those skilled in the art.

[0029] Figure 1 A structural schematic view of a game handle embodiment provided by the present application in one view angle;

[0030] Figure 2 A structural schematic view of a game handle embodiment provided by the present application in another view angle;

[0031] Figure 3 An exploded view of a game handle embodiment provided by the present application;

[0032] Figure 4 An exploded view of a double-body trigger key structure provided by the present application;

[0033] Figure 5 A structural schematic view of a movable part in the double-body trigger key structure provided by the present application;

[0034] Figure 6 A schematic view of part of the double-body trigger key structure provided by the present application;

[0035] Figure 7 A schematic view of a mounting seat in the double-body trigger key structure provided by the present application.

[0036] Explanation of the reference signs:

[0037] 100, double-body trigger key structure; 10, seat body; 11, internally threaded column; 12, sliding groove; 20, movable part; 21, magnetic part; 22, sliding plate; 221, sliding hole; 222, plate body; 2221, limiting column; 223, mounting frame; 23, assembly sleeve; 24, adjusting rod; 30, magnetic positioning part; 40, trigger key; 41, digital trigger part; 42, analog trigger part; 421, arm body; 43, face shell; 431, hinged lug; 432, shaft hole; 44, back shell; 45, rotating shaft; 46, torsional spring; 50, digital switch; 51, micro switch; 52, interface plate; 60, analog switch; 70, limiting screw; 71, head; 72, rod; 1000, game handle; 200, shell; 201, front shell; 202, rear shell; 210, mounting cavity; 220, key hole; 230, adjusting hole; 300, main control board; 310, mounting seat; 3101, assembly groove; 3102, positioning column.

[0038] The purposes, functional features and advantages of the utility model will be further described in combination with embodiments with reference to the drawings. DETAILED DESCRIPTION

[0039] The technical solutions in the embodiments of the utility model will be clearly and completely described in combination with the 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 other embodiments obtained by those skilled in the art without creative work belong to the protection scope of the utility model.

[0040] 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 components in a certain posture, and if the certain posture changes, the directional indications also change accordingly.

[0041] In addition, if the embodiments of the utility model involve the description of "first", "second", etc., the description of "first", "second", etc. is only for the purpose of description, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features with "first", "second" can explicitly or implicitly include at least one feature. In addition, if "and / or" or "and / or" appears in the whole text, its meaning includes three parallel schemes. Taking "A and / or B" as an example, it includes A scheme, or B scheme, or A and B scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skilled in the art, and 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 utility model.

[0042] Please refer to Figures 1 to 6The utility model provides a kind of double body trigger key structure 100, applied to gamepad 1000, gamepad 1000 includes main control board 300, double body trigger key structure 100 includes seat body 10, movable piece 20, magnetic positioning piece 30, trigger key 40, digital switch 50 and analog switch 60;Wherein, movable piece 20 is movably installed in seat body 10, and it has the first state and the second state of movable switching, movable piece 20 is equipped with magnetic part 21;Magnetic positioning piece 30 is fixed opposite seat body 10, and magnetic positioning piece 30 magnetic force acts on magnetic part 21, to limit movable piece 20 in the first state or second state;Trigger key 40 is installed in seat body 10, and trigger key 40 is equipped with digital trigger part 41 and analog trigger part 42;Digital switch 50 and analog switch 60 are electrically connected to main control board 300, and at least one of digital switch 50 and analog switch 60 is installed in movable piece 20;When movable piece 20 is in the first state, trigger key 40 is scratched, and digital trigger part 41 triggers digital switch 50, when movable piece 20 is in the second state, trigger key 40 is scratched, and analog trigger part 42 triggers analog switch 60.

[0043] The utility model discloses above-mentioned scheme, movable piece 20 due to magnetic part 21 under the repulsion or attraction of magnetic positioning piece 30, can be stabilized in the first state or second state, when user needs to switch input signal type, can pass through the state of adjusting movable piece 20, in the adjustment process, need overcome the resistance of magnetic positioning piece 30 acting on magnetic part 21 first, make movable piece 20 separate current state, then under the magnetic force of magnetic positioning piece 30, movable piece 20 is limited in another state, and movable piece 20 is stabilized in certain state under the magnetic force of magnetic positioning piece 30, and reliability is higher;And switching process, movable piece 20 and magnetic positioning piece 30 do not need to contact, avoid high frequency wear and tear of both, prolong service life;In addition, force feedback effect is good in switching process, so that user can feel whether switching action is effective obviously, and experience is better.

[0044] The aforementioned digital switch 50 and digital trigger unit 41, as well as analog switch 60 and analog trigger unit 42, can be of various types. Generally, the digital switch 50 uses a micro switch 51, and the digital trigger unit 41 uses a push-button structure. When the user pulls the trigger button, the digital trigger unit 41 presses the micro switch 51 to generate a digital signal. The analog switch 60 generally uses a Hall element, and the analog trigger unit 42 uses a magnet. When the user pulls the trigger button, the magnet moves closer to or further away from the Hall element, and the Hall element senses the change in magnetic field strength to generate an analog signal. Of course, the digital switch 50 and analog switch 60 can also use other structures. For example, the digital switch 50 can be a photosensor, and the digital trigger unit 41 can be an infrared light emitter. When the trigger button is pulled, the infrared light emitted by the infrared light emitter illuminates the photosensor, generating a digital signal. Or, the analog switch 60 can be a pressure sensor, and the analog trigger unit 42 can be a spring. During the process of the trigger button being pulled, the spring generates a linearly changing pressure on the pressure sensor, and the pressure sensor generates an analog signal.

[0045] Digital switch 50 and analog switch 60 can both be connected to movable component 20, or one can be mounted on movable component 20 and the other on base 10, housing 200, or main control board 300, etc. Specifically, in some embodiments of this utility model, digital switch 50 and analog switch 60 are both mounted on movable component 20. In the first state, digital switch 50 is aligned with digital trigger part 41, and analog switch 60 is misaligned with analog trigger part 42. During the transition to the second state, movable component 20 drives digital switch 50 and analog switch 60 to move together until digital switch 50 is misaligned with digital trigger part 41 and analog switch 60 is aligned with analog trigger part 42. There are many other specific implementations of digital switch 50 and analog switch 60, which will not be listed here.

[0046] The aforementioned movable component 20 can be rotatably mounted on the base 10 or slidably mounted on the base 10. The magnetic positioning component 30 can position the magnetic part 21 by magnetic attraction or repulsion. For example, in some embodiments of this utility model, the movable component 20 is rotatably mounted on the base 10, and the movable component 20 is located at two extreme rotation angle states in its rotation direction in the first and second states, respectively. In the two extreme states of the movable component 20, the magnetic part 21 is in two different extreme positions. The magnetic positioning component 30 includes two magnets, which are respectively located at the two extreme positions of the magnetic part 21 and are both attracted to the magnetic part 21 by opposite charges. In this way, in the two different states of the movable component 20, the attraction force of the magnet closer to the magnetic part 21 is much greater than that of the other magnet, thus achieving the positioning of the movable component 20.

[0047] In some other embodiments of the utility model, the movable part 20 is slidingly installed on the seat body 10, and the movable part 20 is located at two limit positions in the sliding direction in the first state and the second state respectively; the magnetic positioning part 30 is located at the middle of the two limit positions of the magnetic part 21 and is repulsively arranged with the magnetic positioning part 30. In this way, during the sliding of the movable part 20, the repulsive force of the magnetic positioning part 30 on the movable part 20 is gradually increased, and after the movable part 20 is half way, the movable part 20 is rapidly switched to another state under the repulsive force of the magnetic positioning part 30, the force feedback effect is better, and the stability of the movable part 20 in any state is higher.

[0048] The movable part 20 is slidingly installed on the seat body 10 in various ways, for example, the movable part 20 is provided with a sliding channel, and the seat body 10 is provided with a sliding rail matched with the sliding channel. In some embodiments of the utility model, the movable part 20 comprises a sliding plate 22, the sliding plate 22 is provided with a sliding hole 221, the seat body 10 is slidingly connected to the sliding hole 221, the magnetic part 21 is connected to the sliding plate 22 and located on one side perpendicular to the extension direction of the sliding hole 221. In this scheme, the force of the magnetic part 21 acting on the sliding plate 22 is directed towards the sliding hole 221 as much as possible, so that when the magnetic part 21 is subjected to the magnetic force of the magnetic positioning part 30, the magnetic part 21 can avoid generating a large torque on the sliding plate 22, thereby affecting the sliding smoothness of the sliding plate 22.

[0049] The magnetic part 21 connected to the sliding plate 22 can be connected by clamping, bonding and the like, and in some embodiments of the utility model, the sliding plate 22 comprises a plate body 222 and a mounting frame 223, the plate body 222 is provided with a sliding hole 221, the mounting frame 223 is connected to the plate body 222 on the side of the sliding hole 221 in the width direction, and the magnetic part 21 is mounted in the mounting frame 223; the plate body 222 is aligned with the side of the seat body 10 close to the mounting frame 223, and the mounting frame 223 partially extends to the side of the seat body 10. In this way, the mounting frame 223 can not only be used for mounting the magnetic part 21, but also be aligned with the side of the seat body 10 during assembly, thereby playing a positioning role, and the mounting frame 223 can be integrally formed with the plate body 222, thereby having high overall strength.

[0050] In some embodiments of the utility model, the double-body trigger button structure 100 further comprises a limiting screw 70, one side of the seat body 10 facing the movable part 20 is provided with an internally threaded column 11, and the internally threaded column 11 is slidingly matched with the sliding hole 221; the limiting screw 70 comprises a head 71 and a rod 72 connected in series, and the rod 72 is threadedly connected to the internally threaded column 11, so that the movable part 20 is limited between the head 71 and the seat body 10. In this way, while ensuring the sliding smoothness of the movable part 20, the stability and assembly convenience are higher.

[0051] In some embodiments of the utility model, the movable part 20 includes a plate body 222 and an assembly sleeve 23, the assembly sleeve 23 is integrally connected to the middle part of the plate body 222, and a sliding hole 221 is formed in the interior of the assembly sleeve 23. In this way, the plate surface can be prevented from tilting after the assembly of the movable part 20 or during the sliding process, and the structural stability and the smoothness of the sliding of the movable part 20 are further improved.

[0052] Further, considering that some analog trigger parts 42 and analog switches 60 realize signal triggering in a magnetic induction mode, in order to avoid the magnetic positioning part 30 and the magnetic part 21 from interfering with the analog trigger part 42 and the analog switch 60, in some embodiments of the utility model, the trigger key 40 has an outer side and an inner side, the digital trigger part 41 and the analog trigger part 42 are both arranged on the inner side, the digital switch 50 is installed on the side of the movable part 20 away from the magnetic part 21 and is aligned with the digital trigger part 41, and the analog trigger part 42 is located on the side of the digital trigger part 41 away from the magnetic part 21. By increasing the spacing between the magnetic part 21 and the analog switch 60 as much as possible, the interference between the two is effectively reduced, the response accuracy of the double trigger key structure 100 is improved, and the user experience is enhanced.

[0053] The utility model also provides a gamepad 1000, including shell 200, master control board 300 and double trigger key structure 100, wherein, the shell 200 is equipped with the installation cavity 210, the cavity wall of installation cavity 210 is equipped with key position hole 220, and master control board 300 is installed in installation cavity 210, seat body 10 is connected master control board 300, trigger key 40 is exposed outside key position hole 220, magnetic positioning part 30 is installed in master control board 300, and digital switch 50 and analog switch 60 are electrically connected to master control board 300. The shell generally includes detachable front shell and rear shell, which facilitates the installation of internal structures. The specific structure of the double trigger key structure 100 is referred to the above embodiments. Since the gamepad 1000 adopts all the technical solutions of the above embodiments, it at least has all the beneficial effects brought by the technical solutions of the above embodiments, which will not be repeated here.

[0054] The positions of the digital switch 50 and the analog switch 60 in the overall structure of the gamepad 1000 can be more optional, and the digital switch 50 and the analog switch 60 can be optionally mounted on the movable piece 20 and the seat body 10, or can be arranged on the main control panel 300 or the shell 200. In some embodiments of the utility model, the digital switch 50 is mounted on the movable piece 20, the analog switch 60 is integrated on the main control panel 300, the shell 200 is further provided with an adjusting hole 230, the movable piece 20 is provided with an adjusting rod 24, the adjusting rod 24 extends out of the adjusting hole 230 and is movably matched with the adjusting hole 230. Generally, the digital switch 50 is integrated on the structural plate by the micro switch 51, and is fixed by the structural plate and the movable piece 20. Through the above scheme, when the user operates, the state of the movable piece 20 can be switched by the adjusting rod from the outside of the shell 200, without opening the handle shell 200, which is more convenient, and when the movable piece 20 is in the first state, the digital switch 50 is aligned with the digital trigger part 41, and can limit the trigger of the analog trigger part 42 to the trigger of the analog switch 60, and after switching to the second state, the digital switch 50 is misaligned with the digital trigger part 41, and the trigger can be moved substantially to realize the trigger of the analog switch 60.

[0055] Further, in some embodiments of the utility model, the adjusting rod 24 is located between the magnetic part 21 and the sliding hole 221. In this way, when the adjusting rod 24 is adjusted, the movable piece 20 is subjected to a positive pushing force at the adjusting rod part 72, and is mainly subjected to a reverse resistance on the opposite sides of the adjusting rod 24, that is, the friction between the sliding hole 221 hole wall and the internal thread column 11 and the repulsion of the magnetic positioning piece 30 to the magnetic part 21, the three forces are balanced, and the torsion formed on the movable piece 20 is small, thereby avoiding the problem that the movable piece 20 is twisted in the sliding process, and the sliding is not smooth.

[0056] The magnetic positioning piece 30 can be installed on the main control panel 300 by clamping, bonding and the like, and in some embodiments of the utility model, the gamepad 1000 is provided with two double trigger button structures 100, the main control panel 300 is provided with a mounting seat 310, the mounting seat 310 is arranged between the two seat bodies 10, and the two magnetic positioning pieces 30 are respectively arranged on the opposite sides of the mounting seat 310 and are spaced apart from the corresponding magnetic parts 21. In this way, the repulsion of the two magnetic positioning pieces 30 and the two sides of the mounting seat 310 can be balanced, the strength requirement of the connecting structure between the mounting seat 310 and the main control panel 300 substrate is low, and the overall structure is more compact.

[0057] The specific implementation of the mounting seat 310 has multiple modes, the magnetic positioning piece 30 and the mounting seat 310, and the mounting seat 310 and the base plate of the main control plate 300 can be connected through bonding or clamping, in some embodiments of the utility model, the opposite two of the mounting seat 310 are provided with assembly grooves 3101, which are used for assembling the magnetic positioning piece 30, and the mounting seat 310 is provided with a positioning column 3102 on the side facing the base plate of the main control plate 300, so as to be positioned in cooperation with the positioning hole on the main control plate 300. In this way, the reliability is higher.

[0058] In some embodiments of the utility model, one side of the plate body 222 facing the seat body 10 is provided with a limiting column 2221, the seat body 10 is correspondingly provided with a sliding groove 12, and the limiting column 2221 is slidingly assembled in the sliding groove 12; so as to further improve the sliding stability of the movable piece 20. Further, the limiting column 2221 is provided with two, so that the movable piece 20 can be guided to slide in the correct direction, and the movable piece 20 can be prevented from rotating by itself, and the sliding stability is higher.

[0059] In some embodiments of the utility model, the surface shell 43 is provided with a hinged lug 431 on one side, the hinged lug 431 is provided with a shaft hole 432, the rotating shaft 45 passes through the shaft hole 432 and is rotationally connected with the shell 200 at both ends.

[0060] The above-mentioned is only the exemplary implementation of the utility model, and does not limit the patent range of the utility model, and any equivalent structural transformation made by using the utility model specification and the drawings contents, or direct / indirect application in other related technical fields under the technical concept of the utility model is included in the patent protection range of the utility model.

Claims

1. A dual-body trigger button structure (100) applied to a gamepad (1000), the gamepad (1000) comprising a master control board (300), characterized in that, The double-body trigger key structure (100) comprises: a seat body (10); a movable piece (20) movably mounted on the seat body (10) and having a first state and a second state which can be switched, the movable piece (20) being provided with a magnetic part (21); a magnetic positioning piece (30) fixed opposite to the seat body (10), the magnetic positioning piece (30) magnetically acting on the magnetic part (21) to limit the movable piece (20) in the first state or the second state; a trigger key (40) mounted on the seat body (10), the trigger key (40) being provided with a digital trigger part (41) and an analog trigger part (42); a digital switch (50) and an analog switch (60) both electrically connected to the main control board (300), at least one of the digital switch (50) and the analog switch (60) being mounted on the movable piece (20); when the movable piece (20) is in the first state and the trigger key (40) is pried, the digital trigger part (41) triggers the digital switch (50); when the movable piece (20) is in the second state and the trigger key (40) is pried, the analog trigger part (42) triggers the analog switch (60).

2. The dual body trigger button structure (100) as claimed in claim 1, wherein, The movable piece (20) is slidingly mounted on the seat body (10), and the movable piece (20) is located at two limit positions in the sliding direction in the first state and the second state respectively; The magnetic positioning piece (30) is located in the middle of the two limit positions of the magnetic part (21) and is arranged with the same polarity repelling the magnetic part (21).

3. The dual body trigger button structure (100) of claim 2, wherein, The movable piece (20) comprises a sliding plate (22), the sliding plate (22) is provided with a sliding hole (221), the seat body (10) is slidingly connected to the sliding hole (221), the magnetic part (21) is connected to the sliding plate (22) and located on one side perpendicular to the extension direction of the sliding hole (221).

4. The dual body trigger button structure (100) of claim 3, wherein, The sliding plate (22) comprises a plate body (222) and a mounting frame (223), the plate body (222) is provided with the sliding hole (221), the mounting frame (223) is connected to the plate body (222) on the side of the sliding hole (221) in the width direction, and the magnetic part (21) is mounted in the mounting frame (223); The plate body (222) is arranged in alignment with the side of the seat body (10) close to the mounting frame (223), and the mounting frame (223) partially extends to the side of the seat body (10).

5. The dual body trigger button structure (100) as claimed in claim 3, wherein, The double-body trigger key structure (100) further comprises a limiting screw (70), one side of the seat body (10) towards the movable piece (20) is provided with an internally threaded column (11), and the internally threaded column (11) is slidingly matched with the sliding hole (221); The limiting screw (70) comprises a head (71) and a rod (72) connected to each other, the rod (72) is threadedly connected to the internally threaded column (11) to limit the movable piece (20) between the head (71) and the seat body (10).

6. The dual body trigger button structure (100) of claim 5, wherein, The movable element (20) comprises a plate body (222) and an assembly sleeve (23) integrally connected to the middle part of the plate body (222), and the assembly sleeve (23) is internally formed with the sliding hole (221).

7. The dual body trigger button structure (100) as claimed in claim 1, wherein, The trigger key (40) has an outer side and an inner side, the digital trigger part (41) and the analog trigger part (42) are both arranged on the inner side, the digital switch (50) is mounted on the side of the movable element (20) away from the magnetic part (21) and is aligned with the digital trigger part (41), and the analog trigger part (42) is located on the side of the digital trigger part (41) away from the magnetic part (21).

8. A gamepad (1000), characterized in that, The double-body trigger key structure (100) comprises a shell (200), a main control board (300), and the double-body trigger key structure (100) according to any one of claims 1 to 7. The shell (200) is internally provided with a mounting cavity (210), the cavity wall of the mounting cavity (210) is provided with a key hole (220), and the main control board (300) is mounted in the mounting cavity (210). The seat body (10) is connected to the main control board (300), the trigger key (40) is exposed outside the key hole (220), the magnetic positioning element (30) is mounted on the main control board (300), and the digital switch (50) and the analog switch (60) are both electrically connected to the main control board (300).

9. The gamepad (1000) of claim 8, wherein, The digital switch (50) is mounted on the movable element (20), the analog switch (60) is integrated on the main control board (300), the shell (200) is further provided with an adjusting hole (230), the movable element (20) is provided with an adjusting rod (24), the adjusting rod (24) extends out of the adjusting hole (230) and is movably connected to the adjusting hole (230).

10. The gamepad (1000) of claim 8, wherein, The game handle (1000) is provided with two double-body trigger key structures (100), the main control board (300) is provided with a mounting seat (310), the mounting seat (310) is arranged between the two seat bodies (10), and the two magnetic positioning elements (30) are respectively arranged on the opposite sides of the mounting seat (310) and are spaced apart from the corresponding magnetic parts (21).