AI gamepad

By introducing a switching module and a thermally conductive silicone layer heat dissipation structure into the AI ​​game controller, the problems of low voice recognition efficiency and inconvenient heat dissipation are solved, enabling fast voice switching and efficient heat dissipation, thus improving the user experience and comfort.

CN223995375UActive Publication Date: 2026-03-17东莞市三奕电子科技股份有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

Existing AI game controllers have a single method for stopping voice commands, resulting in slow switching efficiency. They also require regular cleaning to ensure heat dissipation, which is cumbersome and affects user experience and efficiency.

Method used

The switching module provides mechanical control to quickly reset voice input and repeat voice broadcast. Combined with a thermally conductive silicone layer and a heat dissipation layer, it increases the contact area between internal components and the outside world to dissipate heat and reduce cleaning steps.

Benefits of technology

It achieves real-time voice recognition to stop and improves heat dissipation efficiency, reduces cleaning steps, enhances user experience and comfort, and ensures the performance of internal components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an AI gamepad which comprises a gamepad body and a gamepad control mainboard. The gamepad body is further provided with a heat dissipation structure. The gamepad body is further provided with a switching module, an AI voice control mainboard, a voice input module, a voice recognition module, a voice feedback mainboard and a loudspeaker. The switching module is used for providing mechanical control to realize the effects of quickly resetting voice input and repeatedly broadcasting voice; according to the utility model, the switching module is used for providing mechanical control to realize the effects of quickly resetting voice input and repeatedly broadcasting voice, when voice recognition is required to be stopped, voice stop is not required or input recognition of another voice can be carried out after the voice recognition in the recognition is finished, so that immediate stop is realized, and the voice recognition efficiency is improved. Therefore, the efficiency of subsequent switching is improved, and the voice interaction efficiency of the user is ensured.
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Description

Technical Field

[0001] This utility model relates to the technical field of game controllers, specifically to an AI game controller. Background Technology

[0002] A game controller is a common component of video game consoles. By manipulating its buttons and other components, users can control virtual characters in the game.

[0003] Existing game controllers require players to manually control settings buttons on the controller to adjust game settings such as brightness, volume, and sensitivity, which interrupts gameplay and negatively impacts the user experience. To address this issue, patent number 202222204626.7 discloses an intelligent AI voice-interactive game controller, comprising a controller body and a controller control motherboard installed within the controller body. The controller body houses an AI voice control motherboard, a voice input module, a voice recognition module, a sound feedback motherboard, and a speaker. The voice input module is electrically connected to the voice recognition module, and both the voice recognition module and the AI ​​voice control motherboard are electrically connected to the controller control motherboard. The speaker and the AI ​​voice control motherboard are both electrically connected to the sound feedback motherboard. This invention allows users to issue voice commands to adjust game settings during gameplay without stopping the game, improving the user experience. Furthermore, the controller provides real-time feedback through sound announcements and lights during voice settings, indicating successful settings and enhancing interaction between the controller and the player. However, this intelligent AI voice-interactive controller still has the following problems: 1. The existing controller can only interact via voice. The voice recognition process requires time to identify the voice. When it is necessary to stop the voice recognition, it is necessary to stop the voice recognition or wait for the voice recognition to be completed before another voice input can be recognized. This affects the efficiency of voice interruption and conversion, thus affecting the efficiency of users to quickly reset the voice and the efficiency of subsequent interactions; 2. The existing controller uses external heat dissipation or internal cooling fans for heat dissipation. This heat dissipation method increases the overall weight of the controller, affecting the user's grip comfort. It also requires regular cleaning of the air intake, which increases the cleaning steps. If it is not cleaned regularly, it will affect the heat dissipation effect and efficiency inside the controller, affecting the performance of the internal components. Utility Model Content

[0004] This utility model addresses the shortcomings of current technology by providing an AI game controller. It aims to solve the technical problems of existing AI game controllers, such as the single voice interruption method, slow instant switching efficiency, the need for regular cleaning to ensure heat dissipation efficiency, and cumbersome procedures.

[0005] The technical solution adopted by this utility model to achieve the above objectives is as follows:

[0006] An AI game controller includes a game controller body, which has a controller control motherboard disposed within the game controller body. The game controller body also has a heat dissipation structure. Furthermore, the game controller body includes a switching module, an AI voice control motherboard, a voice input module, a voice recognition module, a sound feedback motherboard, and a speaker. The switching module provides mechanical control to quickly reset voice input and repeat voice prompts. The AI ​​voice control motherboard selects voice feedback information corresponding to different voice commands. The voice input module inputs voice commands, the voice recognition module recognizes voice commands, and the sound feedback motherboard and speaker play voice feedback. The voice input module and the voice recognition module are electrically connected. The switching module, the voice recognition module, and the AI ​​voice control motherboard are all electrically connected to the controller control motherboard, and the speaker and the AI ​​voice control motherboard are all electrically connected to the sound feedback motherboard.

[0007] As a further improvement, the game controller body includes a front shell and a bottom shell. The heat dissipation structure includes a thermally conductive silicone layer and a heat dissipation layer. The thermally conductive silicone layer covers the inner wall of the bottom shell. The back of the bottom shell is provided with a groove. The heat dissipation layer is disposed in the groove. The bottom shell is also provided with multiple arrayed slots. Each slot is provided with a thermally conductive silicone strip. One end of the thermally conductive silicone strip is connected to the thermally conductive silicone layer, and the other end of the thermally conductive silicone strip is connected to the heat dissipation layer.

[0008] As a further improvement, the bottom shell is provided with multiple mounting posts and mounting plates. The mounting plates are mounted on the mounting posts. The switching module, AI voice control motherboard, voice input module, voice recognition module, and sound feedback motherboard are all mounted on the mounting plates. The surface of the thermally conductive silicone layer is attached to the bottom of the mounting plate. The mounting plate is provided with multiple through holes, and the thermally conductive silicone layer is also provided with multiple bonding blocks. The handle control motherboard is located above the AI ​​voice control motherboard, and the bonding blocks are all attached to the handle control motherboard.

[0009] As a further improvement, both the heat dissipation layer and the bonding block are thermally conductive silicone blocks; the heat dissipation layer is provided with multiple arrayed heat dissipation grooves; and each heat dissipation groove is provided with an inclined surface.

[0010] As a further improvement, the end face of the faceplate is provided with a mesh, and the speaker is located inside the mesh; the mesh is also provided with a charging port, the charging port is provided with a wire, the wire is provided with a power module, and the power module is electrically connected to the handle control motherboard.

[0011] As a further improvement, the faceplate is provided with a function control button group, a direction control button group, a joystick group, a function button group, a switch button, and indicator lights; the function control button group, the direction control button group, the joystick group, the function button group, the switch button, and the indicator lights are all connected to the main control board of the handle.

[0012] As a further improvement, the switching module is equipped with a switching button, which is located at the bottom of the bottom shell.

[0013] As a further improvement, the surface of the shell is provided with a fluorescent coating.

[0014] As a further improvement, the mounting plate is an aluminum mounting plate, and a thermally conductive silicone sheet is provided on the surface of the aluminum mounting plate. The thermally conductive silicone sheet is attached to the switching module, the AI ​​voice control motherboard, the voice input module, the voice recognition module, and the sound feedback motherboard.

[0015] Compared with the prior art, the AI ​​game controller provided in this embodiment of the present invention has at least one of the following technical effects:

[0016] 1. This utility model uses a switching module to provide mechanical control for quickly resetting voice input and repeating voice playback. When voice recognition needs to be stopped, there is no need to stop the voice input or wait for the current voice recognition to finish before starting the next voice input recognition, achieving instant stop, shortening the interruption time, thereby improving the efficiency of subsequent switching and ensuring the efficiency of user voice interaction. Furthermore, the switching module can also provide voice playback repetition, eliminating the need for voice control and improving the efficiency of repeating playback to recognize voice feedback information, thus improving convenience. The AI ​​voice control motherboard is used to select voice feedback information corresponding to different voice commands, the voice input module is used to input voice commands, the voice recognition module is used to recognize voice commands, and the sound feedback motherboard and speaker are used to play voice feedback.

[0017] 2. By setting up a heat dissipation structure to increase the contact area between internal components and the outside world, the heat dissipation effect is achieved through contact heat conduction, thereby improving the heat dissipation effect and efficiency, preventing the accumulation of heat generated by internal components during use, ensuring the performance of internal components, reducing the overall weight of the AI ​​game controller, improving the comfort of use, reducing the number of cleaning steps required, and ensuring continuous heat dissipation. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is a schematic diagram of the overall structure of the AI ​​game controller in this embodiment;

[0020] Figure 2 This is a front view of the AI ​​game controller in this embodiment;

[0021] Figure 3 This is a bottom-view diagram of the AI ​​game controller in this embodiment;

[0022] Figure 4 This is a schematic diagram of the internal structure of the AI ​​game controller in this embodiment;

[0023] Figure 5 This is a top view of the handle control motherboard in this embodiment;

[0024] Figure 6 This is a partial cross-sectional view of the heat dissipation structure in this embodiment;

[0025] Figure 7 This is a schematic diagram of the AI ​​game controller module in this embodiment. Detailed Implementation

[0026] The following description is only a preferred embodiment of the present invention and does not limit the scope of protection of the present invention.

[0027] For examples, see the appendix. Figures 1 to 7An AI game controller 1 includes a game controller body 2, the game controller body 2 having a controller control motherboard 3 disposed within the game controller body 2; the game controller body 2 also has a heat dissipation structure 4; the game controller body 2 further includes a switching module 5, an AI voice control motherboard 6, a voice input module 7, a voice recognition module 8, a sound feedback motherboard 9, and a speaker 10; the switching module 5 is used to provide mechanical control to quickly reset voice input and repeat voice playback; the AI ​​voice control motherboard 6 is used to select voice feedback information corresponding to different voice commands; the voice input module 7 is used to input voice commands; the voice recognition module 8 is used to recognize voice commands; the sound feedback motherboard 9 and the speaker 10 are used to play voice feedback; the voice input module 7 and the voice recognition module 8 are electrically connected; the switching module 5, the voice recognition module 8, and the AI ​​voice control motherboard 6 are all electrically connected to the controller control motherboard 3; the speaker 10 and the AI ​​voice control motherboard 6 are both electrically connected to the sound feedback motherboard 9.

[0028] The game controller body 2 includes a front shell 20 and a bottom shell 21. The heat dissipation structure 4 includes a thermally conductive silicone layer 40 and a heat dissipation layer 41. The thermally conductive silicone layer 40 covers the inner wall of the bottom shell 21. The back of the bottom shell 21 is provided with a groove, and the heat dissipation layer 41 is disposed in the groove. The bottom shell 21 is also provided with multiple arrayed slots, each of which is provided with a thermally conductive silicone strip 42. One end of the thermally conductive silicone strip 42 is connected to the thermally conductive silicone layer 40, and the other end of the thermally conductive silicone strip 42 is connected to the heat dissipation layer 41. The heat dissipation structure 4 is used to increase the contact area between the internal components and the outside, thereby achieving the function of contact heat conduction and heat dissipation, improving the heat dissipation effect and efficiency, preventing the accumulation of heat generated by the internal components during use, ensuring the performance of the internal components, and reducing the overall weight of the AI ​​game controller 1, thereby improving the comfort of use.

[0029] The bottom shell 21 contains multiple mounting posts and a mounting plate 211. The mounting plate 211 is mounted on the mounting posts. The switching module 5, AI voice control motherboard 6, voice input module 7, voice recognition module 8, and sound feedback motherboard 9 are all mounted on the mounting plate 211. The surface of the thermally conductive silicone layer 40 is attached to the bottom of the mounting plate 211. The mounting plate 211 has multiple through holes, and the thermally conductive silicone layer 40 also has multiple bonding blocks 43. The handle control motherboard 3 is mounted on the AI ​​voice control motherboard 6. Above, and the bonding blocks 43 are all bonded to the handle control motherboard 3; the mounting plate 211 is an aluminum mounting plate, and the surface of the aluminum mounting plate is provided with a thermally conductive silicone sheet, which is bonded to the switching module 5, the AI ​​voice control motherboard 6, the voice input module 7, the voice recognition module 8, and the sound feedback motherboard 9; the surface of the thermally conductive silicone layer 40 is bonded to the bottom of the mounting plate 211, and the bonding of multiple bonding blocks to the handle control motherboard 3 is used to improve the bonding rate, thereby improving the heat conduction and heat dissipation efficiency and effect.

[0030] Both the heat dissipation layer 41 and the bonding block 43 are thermally conductive silicone blocks; the heat dissipation layer 41 is provided with multiple arrayed heat dissipation grooves 410; each heat dissipation groove 410 is provided with an inclined surface, and the heat dissipation grooves 410 and the inclined surfaces are used to increase the heat dissipation area, thereby improving the efficiency of heat conduction and heat dissipation.

[0031] The end face of the faceplate 20 is provided with a mesh 201, and the speaker 10 is disposed inside the mesh 201. The mesh 201 is also provided with a charging port 202, the charging port 202 is provided with a wire, the wire is provided with a power module, the power module is electrically connected to the handle control main board 3, the power module is used to provide power, and each power module includes a power control circuit board and a battery. The power control circuit board is electrically connected to the handle control main board 3, the power control circuit board is used to switch control, and the battery is used to provide power.

[0032] The faceplate 20 is provided with a function control button group 201, a direction control button group 202, a joystick group 203, a function button group 204, a switch button 205, and an indicator light 206; the function control button group 201, the direction control button group 202, the joystick group 203, the function button group 204, the switch button 205, and the indicator light 206 are all connected to the handle control main board 3.

[0033] The switching module 5 is equipped with a switching button 50, which is located at the bottom of the bottom shell 21. The switching button includes a switching button one and a switching button two. The switching button is used for control, thereby triggering the action of the switching module 5 to quickly reset voice input and repeat voice playback. When the user uses the device, the voice input process requires a certain amount of time for recognition. However, when the user needs to reset the voice input, they must wait for the voice recognition to be completed before they can proceed. This cannot be stopped immediately, affecting the user's operating experience and efficiency. Furthermore, when repeat playback is required, voice control is required, which is a single control method and affects the user's operating experience.

[0034] The surface of the faceplate 20 is provided with a fluorescent coating 200, which serves as a fluorescent indicator, improving nighttime visibility and aesthetics.

[0035] This invention utilizes a switching module to provide mechanical control for rapid reset of voice input and repeated voice playback. When voice recognition needs to be interrupted, there is no need to stop the voice input or wait for the current voice recognition to complete before starting another voice input, achieving instant cessation, shortening the interruption time, and thus improving the efficiency of subsequent switching and ensuring the efficiency of user voice interaction. The switching module also provides voice playback repetition, enabling voice control without manual intervention, improving the efficiency of repeated playback for voice feedback information recognition, and enhancing convenience. The AI ​​voice control motherboard is used to select voice feedback information corresponding to different voice commands. The voice input module is used to input voice commands, the voice recognition module is used to recognize voice commands, and the sound feedback motherboard and speaker are used to play voice feedback. A heat dissipation structure is incorporated to increase the contact area between internal components and the external environment, thereby achieving contact heat conduction and heat dissipation, improving heat dissipation effect and efficiency, preventing heat buildup from internal components during use, ensuring the performance of internal components, reducing the overall weight of the AI ​​game controller, improving user comfort, reducing the need for cleaning steps, and ensuring continuous heat dissipation.

[0036] This utility model is not limited to the above-described embodiments. Other AI game controllers obtained by using the same or similar structures or devices as the above-described embodiments of this utility model are all within the protection scope of this utility model.

Claims

1. An AI gamepad, characterized in that: The AI game handle comprises a game handle body provided with a handle control mainboard arranged in the game handle body, the game handle body is further provided with a heat dissipation structure, the game handle body is further provided with a switching module, an AI voice control mainboard, a voice input module, a voice recognition module, a sound feedback mainboard and a loudspeaker, the switching module is used for providing mechanical control to realize the functions of quick resetting voice input and voice repeated broadcast, the AI voice control mainboard is used for selecting voice feedback information corresponding to different voice instructions, the voice input module is used for inputting voice instructions, the voice recognition module is used for recognizing voice instructions, the sound feedback mainboard and the loudspeaker are used for playing voice feedback, the voice input module and the voice recognition module are electrically connected, the switching module, the voice recognition module and the AI voice control mainboard are electrically connected with the handle control mainboard, and the loudspeaker and the AI voice control mainboard are electrically connected with the sound feedback mainboard.

2. The AI gamepad of claim 1, wherein: The game handle body comprises a face shell and a bottom shell, the heat dissipation structure comprises a heat-conducting silica gel layer and a heat dissipation layer, the heat-conducting silica gel layer is covered on the inner wall of the bottom shell, the back surface of the bottom shell is provided with a groove, the heat dissipation layer is arranged in the groove, the bottom shell is further provided with a plurality of array-arranged notches, the notches are all provided with heat-conducting silica gel strips, one end of the heat-conducting silica gel strip is connected with the heat-conducting silica gel layer, and the other end of the heat-conducting silica gel strip is connected with the heat dissipation layer.

3. The AI gamepad of claim 2, wherein: A plurality of mounting columns and mounting plates are arranged in the bottom shell, the mounting plates are arranged on the mounting columns, the switching module, the AI voice control mainboard, the voice input module, the voice recognition module and the sound feedback mainboard are arranged on the mounting plates, and the surface of the heat-conducting silica gel layer is attached to the bottom of the mounting plate; the mounting plate is provided with a plurality of through holes, and the heat-conducting silica gel layer is further provided with a plurality of attachment blocks; the handle control mainboard is arranged above the AI voice control mainboard, and the attachment blocks are all attached to the handle control mainboard.

4. The AI gamepad of claim 3, wherein: The heat dissipation layer and the attachment blocks are all heat-conducting silica gel blocks; the heat dissipation layer is provided with a plurality of array-arranged heat dissipation grooves; and the heat dissipation grooves are all provided with inclined surfaces.

5. The AI gamepad of claim 4, wherein: The end surface of the face shell is provided with a mesh, and the loudspeaker is arranged on the inner side of the mesh; the mesh is further provided with a charging port, the charging port is provided with a wire, the wire is provided with a power module, and the power module is electrically connected with the handle control mainboard.

6. The AI gamepad of claim 5, wherein: The face shell is provided with a function control button group, a direction control button group, a rocker group, a function key button group, a switch key and an indicator light; the function control button group, the direction control button group, the rocker group, the function key button group, the switch key and the indicator light are all connected with the handle control mainboard.

7. The AI gamepad of claim 6, wherein: The switching module is provided with a switching button, and the switching button is arranged on the bottom of the bottom shell.

8. The AI gamepad of claim 7, wherein: The surface of the face shell is provided with a fluorescent coating. 9.The AI gamepad of claim 8, wherein: The mounting plate is an aluminum mounting plate, the surface of the aluminum mounting plate is provided with a heat-conducting silica gel piece one, and the heat-conducting silica gel piece one is attached to the switching module, the AI voice control mainboard, the voice input module, the voice recognition module and the sound feedback mainboard.

Citation Information

Patent Citations

  • Intelligent AI voice interaction handle

    CN218129914U