A headset with switchable microphone and camera

CN122554752APending Publication Date: 2026-08-11RISUNTEK INC
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-04-02
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0004]本发明提出一种可切换麦克风和摄像头的头戴式耳机,以解决现有之头戴式耳机存在功能单一、操作麻烦、无法满足惯常使用需要的问题

Benefits of technology

[0015]本发明的有益效果是:本申请提供的一种可切换麦克风和摄像头的头戴式耳机,包括:头梁以及两个耳机体;两个耳机体分别与头梁的两侧连接,其中一个耳机体的壳体上转动设置有支撑杆,支撑杆远离耳机体的一端设置有麦克风和摄像头,麦克风和摄像头随支撑杆转动,并配合壳体的内部设置有由支撑杆触动的微动开关,在需要使用摄像头的时候,将支撑杆往上转动到水平上方,支撑杆会触动微动开关,以此关闭麦克风而开启摄像头;而在支撑杆往下转动到水平下方的时候,支撑杆会触动微动开关,以此关闭摄像头而开启麦克风,满足惯常使用的需要。因此,通过微动开关实现摄像头和麦克风的开关切换,且操作简单方便,可提高使用体验,同时,将摄像头集成安装到头戴式耳机上,使得摄像头可以在水平和竖向两个常用的位置上快速切换,更好地满足日常使用的要求,同时也以此让耳机的功能使用多样化,并适应不同使用场景,满足用户的不同需求,使用非常的方便,可大程度提升使用体验感。

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Abstract

This application proposes a headset with a switchable microphone and camera, comprising: a headband and two earpieces; the two earpieces are respectively connected to both sides of the headband, and a support rod is rotatably mounted on the shell of one of the earpieces. A microphone and camera are mounted on the end of the support rod away from the earpiece, and a microswitch is installed inside the shell, triggered by the support rod. When the camera is needed, rotating the support rod upwards to a horizontal position triggers the microswitch, thereby turning off the microphone and turning on the camera; rotating the support rod downwards to a horizontal position triggers the microswitch, thereby turning off the camera and turning on the microphone, satisfying common usage needs. Therefore, switching the camera and microphone on and off via a microswitch is simple and convenient, improving the user experience. Furthermore, integrating the camera into the headset diversifies its functionality.
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Description

Technical Field

[0001] This invention relates to the field of headphone technology, and in particular to a headset with a switchable microphone and camera. Background Technology

[0002] Over-ear headphones are a type of headphone that is worn on the head rather than inserted into the ear canal. They are typically designed with a headband that secures the two earpieces to the user's ears. This design not only provides excellent noise isolation, allowing users to focus more on music or other audio content, but also delivers a more immersive listening experience. Over-ear headphones are characterized by a good soundstage and high comfort; their non-ear-in design avoids chafing of the ear canal and provides better protection for the eardrum compared to in-ear earbuds. Over-ear headphones are suitable for extended periods of music enjoyment, gaming, or video viewing in fixed locations such as home or office, and are also suitable for professional recording and mixing scenarios that require high-quality sound.

[0003] With the rapid development of the consumer electronics industry, various electronic products are emerging in an endless stream, and their functions are becoming increasingly rich. Against this backdrop, traditional over-ear headphones that only have audio playback functions appear to be functionally limited, with restricted usage scenarios, and unable to meet the increasingly diverse needs of users. Furthermore, switching functions on headphones mostly requires users to press buttons or switch through an app, which is cumbersome and inconvenient for daily use. Therefore, it is necessary to improve current over-ear headphones. Summary of the Invention

[0004] This invention proposes a headset with a switchable microphone and camera to solve the problems of existing headsets having limited functionality, cumbersome operation, and inability to meet common usage needs.

[0005] The technical solution adopted in this invention is as follows: A headset with a switchable microphone and camera includes: a headband and two earpieces; the two earpieces are respectively connected to both sides of the headband, and a support rod is rotatably mounted on the shell of one of the earpieces, with a microphone and a camera mounted on the end of the support rod away from the earpiece; a micro switch is provided inside the shell and is activated by the support rod, and the microphone and camera are both electrically connected to the micro switch; When the support rod rotates upward and reaches a horizontal position, the micro switch is triggered to generate a first control signal, which is used to start the camera and turn off the microphone. When the support rod is rotated downwards to a position below the horizontal, the micro switch is triggered to generate a second control signal, which is used to turn off the camera and activate the microphone.

[0006] In one embodiment, the end of the support rod away from the camera is the connecting end, and the housing of the earphone body is provided with a connecting hole. The connecting end is rotatably installed at the connecting hole and is limited by a limiting plate. The connecting end has a connecting block inside, the limiting plate is located inside the earphone body and installed at the connecting hole, and a fixing member is connected between the limiting plate and the connecting block. The fixing member is used to limit the support rod to be installed at the earphone body.

[0007] In one embodiment, the limiting plate is provided with a limiting groove that penetrates the limiting plate, and the limiting groove is arc-shaped; two limiting strips are provided at the connecting end, the two limiting strips are located in the limiting groove and can move within the limiting groove, and the two limiting strips and the limiting groove are used to limit the rotation angle of the support rod.

[0008] In one embodiment, a rotating plate is provided inside the housing of the earphone body. The rotating plate is connected to the support rod by a fixing member, and the rotating plate rotates together with the support rod. The rotating plate has a lever, and the micro switch has a drive block that can swing up and down. When the rotating plate rotates with the support rod, the lever can push the drive block up or down. The micro switch is triggered when the drive block swings up to generate a first control signal, and the micro switch is triggered when the drive block swings down to generate a second control signal.

[0009] In one embodiment, two limiting strips are provided at the support rod, and a clamping block is provided on the rotating plate. The clamping block is located between the two limiting strips so that the rotating plate is driven to rotate together when the support rod rotates.

[0010] In one embodiment, the fixing member is provided with a spring plate, which abuts against the end face of the rotating plate; the spring plate is used to provide elastic force so that the support rod remains stable when rotated to any position.

[0011] In one embodiment, a magnet is disposed inside the housing of the earphone body, and a Hall sensor is disposed at the support rod. When the support rod rotates, the Hall sensor moves closer to or further away from the magnet; when the Hall sensor corresponds to the magnet, it emits a signal to turn off the camera.

[0012] In one embodiment, the support rod is provided with a push-button switch for controlling the operation of the camera and / or the microphone.

[0013] In one embodiment, the earphone housing is provided with a detachable earcup, and both the earcup and the earphone housing are provided with magnetic components, which magnetically attract and fix the earcup and the housing together.

[0014] In one embodiment, the support rod includes a first rod portion and a second rod portion; the camera is mounted on the first rod portion, and the first rod portion and the second rod portion are connected by a hinge structure to allow the camera and the first rod portion to rotate relative to the second rod portion.

[0015] The beneficial effects of this invention are as follows: This application provides a headset with a switchable microphone and camera, comprising: a headband and two earpieces; the two earpieces are respectively connected to both sides of the headband, and a support rod is rotatably mounted on the shell of one of the earpieces. A microphone and camera are mounted on the end of the support rod away from the earpiece. The microphone and camera rotate with the support rod, and a microswitch is installed inside the shell, triggered by the support rod. When the camera is needed, rotating the support rod upwards to a horizontal position triggers the microswitch, thereby turning off the microphone and turning on the camera; rotating the support rod downwards to a horizontal position triggers the microswitch, thereby turning off the camera and turning on the microphone, satisfying the needs of common use. Therefore, switching the camera and microphone on and off via a microswitch is simple and convenient, improving the user experience. Furthermore, integrating the camera into the headset allows for quick switching between two commonly used horizontal and vertical positions, better meeting daily usage requirements. This also diversifies the headset's functionality, adapting to different usage scenarios and meeting diverse user needs, making it very convenient to use and greatly enhancing the user experience. Attached Figure Description

[0016] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used in conjunction with the following embodiments to explain the invention, but should not be construed as limiting the invention. In the drawings: Figure 1 This is an assembly perspective view of an embodiment of the present invention; Figure 2 This is a three-dimensional assembly schematic diagram of another embodiment of the present invention; Figure 3 This is a three-dimensional assembly schematic diagram of another embodiment of the present invention; Figure 4 This is a cross-sectional schematic diagram of an embodiment of the present invention; Figure 5 yes Figure 4 Enlarged view of position A in the middle; Figure 6This is a schematic diagram of the assembly of the earphone body and the support rod in an embodiment of the present invention; Figure 7 This is an exploded view of the earphone body and support rod in an embodiment of the present invention; Figure 8 yes Figure 7 A magnified view of a portion of the image; Figure 9 yes Figure 7 Another enlarged view of a part; Figure 10 This is an enlarged schematic diagram of the support rod in an embodiment of the present invention; Figure 11 yes Figure 10 Enlarged view of position B in the middle; Figure 12 This is a partially enlarged schematic diagram of the support rod in an embodiment of the present invention; Figure 13 yes Figure 12 A schematic diagram of the decomposition process; Figure 14 This is an exploded view of the headphone body and earcups in an embodiment of the present invention; Figure 15 This is a three-dimensional schematic diagram of another structure of the support rod in an embodiment of the present invention; Figure 16 This is an enlarged schematic diagram of the second rod portion in an embodiment of the present invention.

[0017] Figure labeling: 10, headband; 20, earphone body; 21, shell; 22, earcups; 23, magnet; 201, connecting hole; 202, slot; 203, magnetic component; 30, support rod; 31, connecting end; 311, limiting strip; 312, fixing groove; 32, limiting plate; 321, mounting ring; 322, locking block; 323, limiting groove; 33, connecting block; 331, fixing strip; 332, fixing block; 34, fixing component; 35, inner channel; 36, gap; 37. Fastener; 38. Rotating plate; 381. Toggle lever; 382. Clamping block; 39. Spring; 300. Through hole; 301. First rod part; 3011. First hinge block; 302. Second rod part; 3021. Second hinge block; 3022. Through slot; 303. Rotating shaft; 40. Microphone; 50. Camera; 51. FPC; 511. Groove; 512. Structural section; 513. Hall sensor; 52. Push button switch; 60. Micro switch; 61. Driver block. Detailed Implementation

[0018] The specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.

[0019] To facilitate understanding by those skilled in the art, the specific implementation process of the technical solutions in this application is illustrated through the following specific embodiments.

[0020] Please see Figures 1-4 This embodiment provides a headset with switchable microphone and camera, comprising: a headband 10 and two earpieces 20, each earpiece 20 being connected to one side of the headband 10. A support rod 30 is rotatably mounted on the housing 21 of one earpiece 20. A microphone 40 and a camera 50 are mounted on the end of the support rod 30 away from the earpiece 20, and the microphone 40 and camera 50 can rotate together with the support rod 30. Furthermore, a microswitch 60, actuated by the support rod 30, is disposed inside the housing 21, and both the microphone 40 and camera 50 are electrically connected to the microswitch 60. Specifically, when the support rod 30 rotates upward to a horizontal position, the microswitch 60 is triggered to generate a first control signal, which activates the camera 50 and deactivates the microphone 40. When the support rod 30 rotates downward below the horizontal position, the microswitch 60 is triggered to generate a second control signal, which deactivates the camera 50 and activates the microphone 40.

[0021] Therefore, when camera 50 is needed, rotating support rod 30 upwards to a horizontal position will trigger microswitch 60, which will then send a first control signal to mute microphone 40 and activate camera 50. Support rod 30 can then be placed horizontally or upwards so that camera 50 is directly in front of or above the user's face (e.g., ...). Figure 2 As shown), the camera 50 is turned on, and the microphone 40 is turned on. When the support rod 30 is rotated downwards to a horizontal position, the support rod 30 will trigger the micro switch 60, and the micro switch 60 will send a second control signal to turn off the camera 50 and turn on the microphone 40. At this time, the microphone 40 can be placed downwards (as shown). Figure 3 (As shown), and placed close to the user's mouth for easy pickup of user or external sounds. After use, the support rod 30 can be rotated and placed upwards to prevent the microphone 40, camera 50, and support rod 30 from interfering with the use of the headphones.

[0022] Therefore, in this application, the microphone 40 and camera 50 are integrated and installed on the headset by means of a rotatable support rod 30, so as to make the headset more versatile and adapt to different usage scenarios and meet different user needs. Furthermore, the camera 50 and microphone 40 are switched on and off by means of a micro switch 60, which is simple and convenient to operate and can greatly improve the user experience.

[0023] like Figures 1-5As shown, the end of the support rod 30 furthest from the camera 50 is the connecting end 31. The connecting end 31 is rotatably mounted on the housing 21 of the earphone body 20 to adjust the shooting angle of the camera 50. The connecting end 31 is fixed to the earphone body 20 by a limiting plate 32, allowing the support rod 30 to rotate and be mounted on the earphone body 20. After the support rod 30 is pulled down, the microphone 40 is located on the side of the support rod 30 closer to the user's mouth, facilitating the pickup of user / ambient sound.

[0024] Specifically, such as Figures 6-7 As shown, the housing 21 of the earphone body 20 has a connection hole 201, and the connection end 31 is rotatably mounted at the connection hole 201. The connection end 31 has a connection block 33 inside, and a limiting plate 32 is located inside the earphone body 20 and installed within the connection hole 201. A fixing member 34 connects the limiting plate 32 and the connection block 33. The fixing member 34 passes through the limiting plate 32 and connects to the connection block 33, thereby limiting the support rod 30 to be mounted at the earphone body 20. Furthermore, the fixing member 34 can be a bolt, but is not limited to this.

[0025] Furthermore, such as Figures 7-9 As shown, the connecting hole 201 is a stepped hole. The limiting plate 32 is provided with an installation ring 321 on the side facing the connecting hole 201. The installation ring 321 is inserted into the connecting hole 201 and abuts against the step of the connecting hole 201. Therefore, the installation ring 321 can play a positioning role in the installation of the limiting plate 32 for quick installation.

[0026] Furthermore, the housing 21 of the earphone body 20 is provided with multiple slots 202 around the connection hole 201, and the limiting plate 32 is provided with multiple blocks 322. The blocks 322 are inserted into the slots 202 one by one. The limiting of the limiting plate 32 by the blocks 322 and the slots 202 prevents the limiting plate 32 from rotating after installation. At the same time, the limiting plate 32 is connected to the housing 21 of the earphone body 20 by the fastener 34, which makes the installation of the limiting plate 32 more stable.

[0027] like Figure 7 and Figure 9As shown, a limiting groove 323 is provided on the limiting plate 32, and the limiting groove 323 is arc-shaped, penetrating the limiting plate 32. Two limiting strips 311 are provided at the connecting end 31. After the earphone is assembled, the two limiting strips 311 are located in the limiting groove 323 and can move within the limiting groove 323. Through the limiting effect of the limiting strips 311 and the limiting groove 323, the rotation angle of the support rod 30 can be limited. When the support rod 30 is rotated downward to its limit position, the support rod 30 is located horizontally downward, at which point the microphone 40 is in the working stage; when the support rod 30 is rotated upward to its limit position, the support rod 30 can be placed vertically on the side of the earphone body 20. Therefore, through this setting, the support rod 30 can be quickly rotated to the corresponding position to facilitate the use and storage of the camera 50 and the microphone 40.

[0028] Please read Figures 6-9 The earphone body 20 has a rotating plate 38 inside its housing 21. The rotating plate 38 is connected to the connecting block 33 of the support rod 30 via a fixing member 34, and rotates together with the support rod 30. The rotating plate 38 has a lever 381, and the micro switch 60 has a drive block 61 that can swing up and down. When the rotating plate 38 rotates with the support rod 30, the lever 381 pushes the drive block 61 up or down. Specifically, when the drive block 61 swings upward, the micro switch 60 is triggered to generate a first control signal, thereby turning off the microphone 40 and turning on the camera 50; when the drive block 61 swings downward, the micro switch 60 is triggered to generate a second control signal, thereby turning off the camera 50 and turning on the microphone 40. Therefore, through the cooperation of the lever 381 and the micro switch 60, the operation of the microphone 40 and the camera 50 can be switched, which is simple to operate and convenient to use.

[0029] It is worth noting that when the lever 381 moves the drive block 61, the drive block 61 will return to its original position after the lever 381 is removed. Meanwhile, the micro switch 60 uses existing technology; its specific structure and working principle can be found in existing information and will not be repeated here, as long as it achieves the corresponding effect of this application.

[0030] Furthermore, two limiting strips 311 are provided at the connecting end 31 of the support rod 30, and a clamping block 382 is provided on the rotating plate 38. The clamping block 382 extends into the limiting groove 323 and is located between the two limiting strips 311. Therefore, when the support rod 30 rotates, the clamping block 382 can be pushed by the limiting strips 311 so that the rotating plate 38 rotates together.

[0031] Furthermore, a spring plate 39 is provided on the fixing member 34, and the spring plate 39 abuts against the rotating plate 38; the spring plate 39 is used to provide elastic force, so that the support rod 30 can be rotated to any position and remain stable.

[0032] like Figures 4-5 , Figures 6-7, Figures 10-12 As shown, the support rod 30 has a hollow interior forming an inner channel 35. The inner channel 35 is used for wiring and can accommodate components such as the FPC. In this embodiment, an FPC 51 is installed in the inner channel 35. One end of the FPC 51 is connected to the camera 50, and the other end passes through the connecting end 31 and connects to the circuit board inside the earphone body 20. The FPC 51 provides power to the camera 50 and transmits signals. To ensure stable installation of the FPC 51, a fixing strip 331 is provided at the connecting block 33. The FPC 51 has a slot 511, and the fixing strip 331 is engaged in the slot 511, allowing the FPC 51 to be stably mounted on the support rod 30 and preventing it from falling off when the support rod 30 rotates. Furthermore, there is a gap 36 between the connecting block 33 and the connecting end 31 of the support rod 30. The FPC 51 passes through this gap 36, allowing it to enter the support rod 30, thereby ensuring stable power supply to the camera 50 and ensuring information transmission.

[0033] Furthermore, the FPC51 has a curved structural section 512 in the connecting end 31. The structural section 512 allows the FPC51 to have a certain degree of flexibility to adapt to the rotation of the support rod 30 and prevent the FPC51 from breaking due to excessive tension during rotation.

[0034] like Figure 11 and Figure 12 As shown, the bottom of the connecting block 33 has a fixing block 332, and the inside of the connecting end 31 has a fixing groove 312. The fixing block 332 is positioned by being inserted into the fixing groove 312. Through the positioning of the fixing block 332 and the fixing groove 312, the connecting block 33 can be quickly installed into the support rod 30. Furthermore, the connecting block 33 is connected to the support rod 30 by a fastener 37, thereby fixing the connecting block 33 at the connecting end 31. The fastener 37 can be a bolt or the like, and is not limited to any particular type.

[0035] like Figure 14 As shown, the earphone body 20 has a detachable earcup 22 on its shell 21, so different earcups 22 can be replaced to fit different users. In this embodiment, both the earcup 22 and the shell 21 of the earphone body 20 are provided with magnetic components 203. The earcup 22 and the shell 21 are magnetically fixed together by the magnetic components 203, thereby realizing the quick assembly and disassembly of the earcup 22.

[0036] like Figure 7As shown, the support rod 30 is an integrated support structure. A push-button switch 52 is also provided on the support rod 30. The push-button switch 52 is used to control the operation of the camera 50 and / or microphone 40, and can control the activation of the camera 50 or microphone 40 under other conditions. For example, when the support rod 30 is horizontally lower, the camera 50 can be activated via the push-button switch 52, or when the support rod 30 is horizontally upper, the camera 50 can be deactivated via the push-button switch 52.

[0037] The push-button switch 52 can be configured as one or more, such as controlling the camera 50 and microphone 40 simultaneously through one push-button switch 52, or controlling the camera 50 and microphone 40 separately through multiple push-button switches 52.

[0038] In addition, a magnet 23 is provided inside the housing 21 of the earphone body 20. The magnet 23 is located next to the connection hole 201. A Hall sensor 513 is provided on the FPC 51 of the support rod 30. When the support rod 30 rotates, the Hall sensor 513 will move closer to or away from the magnet 23. Therefore, when the Hall sensor 513 moves to face the magnet 23, it will send a signal to turn off the camera 50. Specifically, when the support rod 30 is rotated to a vertical position, both the camera 50 and the microphone 40 are in a static state. Then, the camera 50 is turned off by the Hall sensor 513 to ensure that both the camera 50 and the microphone 40 are in a turned-off state to prevent power waste.

[0039] It is worth noting that the earphone in this application also has a controller, such as a control chip, which is used to receive various signals to control the operation of each component.

[0040] In another embodiment, the support rod 30 has a segmented structure, specifically, as shown in... Figure 13 and Figure 14 As shown, the support rod 30 includes a first rod portion 301 and a second rod portion 302; the camera 50 is disposed at the front end of the first rod portion 301, and the first rod portion 301 and the second rod portion 302 are connected by a hinge structure. The second rod portion 302 is rotatably connected to the housing 21 of the earphone body 20, so that the camera 50 can be adjusted in the vertical direction. At the same time, the first rod portion 301 rotates relative to the second rod portion 302, so that the camera 50 can be adjusted in another dimension, such as adjusting the angle in the horizontal direction, thereby adjusting the shooting angle of the camera 50.

[0041] Specifically, the hinge structure includes a first hinge block 3011 disposed on the first rod 301, a second hinge block 3021 disposed on the second rod 302, and a rotating shaft 303. Both the first hinge block 3011 and the second hinge block 3021 are provided with through holes 300, and the rotating shaft 303 is installed at the through holes 300 to realize the rotational connection between the first hinge block 3011 and the second hinge block 3021. Therefore, through the hinge structure, the camera 50 can adjust the shooting angle in the horizontal direction.

[0042] It is worth noting that the first rod 301 can rotate relative to the second rod 302, and there is a certain connecting friction between the first rod 301 and the second rod 302. Therefore, the first rod 301 can remain stable after rotating to the corresponding position, thereby ensuring stable shooting by the camera 50.

[0043] Furthermore, a through groove 3022 is provided at the second hinge block 3021. The through groove 3022 connects the interior of the first rod 301 and the interior of the second rod 302. The through groove 3022 is used for FPC and other components to pass through, ensuring the wiring requirements inside the support rod 30.

[0044] Compared with the prior art, this application provides a headset with a switchable microphone and camera, including: a headband 10 and two earpieces 20; the two earpieces 20 are respectively connected to both sides of the headband 10, and a support rod 30 is rotatably mounted on the shell 21 of one of the earpieces 20. A microphone 40 and a camera 50 are mounted on the end of the support rod 30 away from the earpiece 20. The microphone 40 and camera 50 rotate with the support rod 30, and a micro switch 60 is set inside the shell 21, which is triggered by the support rod 30. When the camera 50 is needed, the support rod 30 is rotated upward to the horizontal position, and the support rod 30 will trigger the micro switch 60, thereby turning off the microphone 40 and turning on the camera 50; when the support rod 30 is rotated downward to the horizontal position, the support rod 30 will trigger the micro switch 60, thereby turning off the camera 50 and turning on the microphone 40, thus meeting the needs of conventional use. Therefore, the micro switch 60 enables the switching of the camera 50 and microphone 40, which is simple and convenient to operate and improves the user experience. At the same time, by integrating the camera 50 into the headset, the camera 50 can be quickly switched between the two commonly used horizontal and vertical positions, better meeting the requirements of daily use. This also diversifies the functionality of the headset and adapts to different usage scenarios, meeting the different needs of users. It is very convenient to use and can greatly enhance the user experience.

[0045] Any combination of various embodiments of the present invention, provided it does not violate the inventive concept of the present invention, shall be regarded as the content disclosed by the present invention; within the scope of the technical concept of the present invention, any simple modifications to the technical solution and any combination of different embodiments that do not violate the inventive concept of the present invention shall be within the protection scope of the present invention.

Claims

1. A headset with switchable microphone and camera, comprising: The device includes a headband and two earphone bodies; the two earphone bodies are respectively connected to both sides of the headband, characterized in that: a support rod is rotatably mounted on the shell of one of the earphone bodies, and a microphone and a camera are mounted on the end of the support rod away from the earphone body; a micro switch is provided inside the shell, which is activated by the support rod, and the microphone and the camera are both electrically connected to the micro switch; When the support rod rotates upward and reaches a horizontal position, the micro switch is triggered to generate a first control signal, which is used to start the camera and turn off the microphone. When the support rod is rotated downwards to a position below the horizontal, the micro switch is triggered to generate a second control signal, which is used to turn off the camera and activate the microphone.

2. The headset with switchable microphone and camera according to claim 1, characterized in that: The end of the support rod away from the camera is the connection end. The earphone housing is provided with a connection hole. The connection end is rotatably installed at the connection hole and is limited by a limiting plate. The connecting end has a connecting block inside, the limiting plate is located inside the earphone body and installed at the connecting hole, and a fixing member is connected between the limiting plate and the connecting block. The fixing member is used to limit the support rod to be installed at the earphone body.

3. A headset with switchable microphone and camera according to claim 2, characterized in that: The limiting plate is provided with a limiting groove that runs through the limiting plate and the limiting groove is arc-shaped; two limiting strips are provided at the connecting end, the two limiting strips are located in the limiting groove and can move within the limiting groove, the two limiting strips and the limiting groove are used to limit the rotation angle of the support rod.

4. A headset with switchable microphone and camera according to claim 1, characterized in that: A rotating plate is provided inside the shell of the earphone body. The rotating plate is connected to the support rod by a fixing member, and the rotating plate rotates together with the support rod. The rotating plate has a lever, and the micro switch has a drive block that can swing up and down. When the rotating plate rotates with the support rod, the lever can push the drive block up or down. The micro switch is triggered when the drive block swings up to generate a first control signal, and the micro switch is triggered when the drive block swings down to generate a second control signal.

5. A headset with switchable microphone and camera according to claim 4, characterized in that: Two limiting strips are provided at the support rod, and a clamping block is provided on the rotating plate. The clamping block is located between the two limiting strips so that the rotating plate is driven to rotate together when the support rod rotates.

6. A headset with switchable microphone and camera according to claim 4, characterized in that: The fixing member is provided with a spring plate, which abuts against the rotating plate; the spring plate is used to provide elastic force so that the support rod remains stable when rotated to any position.

7. A headset with switchable microphone and camera according to claim 1, characterized in that: A magnet is installed inside the earphone housing, and a Hall sensor is installed at the support rod. When the support rod rotates, the Hall sensor moves closer to or further away from the magnet. When the Hall sensor is aligned with the magnet, it sends a signal to turn off the camera.

8. A headset with switchable microphone and camera according to claim 1, characterized in that: The support rod is equipped with a button switch for controlling the operation of the camera and / or the microphone.

9. A headset with switchable microphone and camera according to claim 1, characterized in that: The earphone housing is provided with a detachable earcup. Both the earcup and the earphone housing are provided with magnetic components, and the earcup and the housing are magnetically attracted to each other by the magnetic components.

10. A headset with switchable microphone and camera according to claim 1, characterized in that: The support rod includes a first rod portion and a second rod portion; the camera is mounted on the first rod portion, and the first rod portion and the second rod portion are connected by a hinge structure so that the camera and the first rod portion can rotate relative to the second rod portion.