Transmitter of wireless microphone and wireless microphone

By separating the audio collector of the wireless microphone from the main body and using magnetic connections and connecting components, the problem that the wireless microphone main body cannot be hidden is solved, achieving the effect of aesthetics and convenient wearing.

CN223437134UActive Publication Date: 2025-10-14SHENZHEN LEQI INNOVATION CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422422412.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-10-14
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

The existing wireless microphone design makes it impossible to hide the main part, which affects the user's wearing aesthetics and convenience.

Method used

The audio collector is designed to be separated from the main body, and magnetic connections and connecting components are used to allow the relative positions of the audio collector and the main body to be changed, so that the main body can be hidden in the clothing and the audio collector can be exposed.

Benefits of technology

It improves the wearing aesthetics and concealment of the microphone, ensures the effective pickup of audio signals, avoids the inconvenience caused by the overall exposure of traditional microphones, and provides a stable connection and flexible wearing experience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223437134U_ABST
    Figure CN223437134U_ABST
Patent Text Reader

Abstract

The utility model discloses an emitter of a wireless microphone, which comprises an audio collector used for picking up a sound signal and converting the sound signal into an electric signal; the main body is connected with the audio collector and used for receiving electric signals of the audio collector and transmitting the electric signals to the receiving device; the audio collector and the main body are relatively kept at a preset position, and at least one of the audio collector and the main body can get close to or away from the preset position under the action of external force. When the microphone is worn, the main body can be hidden in clothes, the attractiveness and concealment of microphone wearing are improved, the audio collector is kept exposed, effective pickup of audio signals is guaranteed, meanwhile, the main body is inconspicuously placed on the inner side of the clothes, and inconvenience caused by the fact that a traditional microphone is integrally exposed is avoided. In addition, the utility model also discloses a wireless microphone.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of microphones, in particular to a transmitter of a wireless microphone and the wireless microphone. Background Art

[0002] Modern users have increasing demands for wireless microphones, not only focusing on sound quality and stability, but also hoping that the equipment can be lighter and easier to wear.

[0003] Currently, the design of wireless microphones in related technologies integrates the audio collector and the main body into a shell, and the two together form a whole. This design makes the microphone relatively functional and convenient for users to operate and carry.

[0004] However, since the whole body adopts a large shell, when in use, the whole body will undoubtedly be exposed outside the clothes, and the main body cannot be hidden, which has a certain impact on the user's wearing. Utility Model Content

[0005] The main purpose of the utility model is to provide a transmitter for a wireless microphone, aiming to solve the problem that the audio collector and the main body of the existing wireless microphone are exposed outside the clothes.

[0006] To achieve the above object, the present invention provides a transmitter for a wireless microphone, the transmitter comprising:

[0007] An audio collector, which is used to pick up sound signals and convert them into electrical signals;

[0008] A main body, connected to the audio collector, configured to receive the electrical signal from the audio collector and transmit the signal to a receiving device;

[0009] The audio collector and the main body are relatively maintained at a preset position, and at least one of the audio collector and the main body can be moved closer to or away from the preset position by an external force.

[0010] In some embodiments, the transmitter of the wireless microphone further comprises:

[0011] A connecting member, one end of which is connected to the main body, and the other end of which is connected to the audio collector, wherein the connecting member supports the audio collector and the main body to maintain a preset position relative to each other, and the connecting member can be deformed under the action of an external force to move at least one of the audio collector and the main body closer to or away from the preset position.

[0012] In some embodiments, the connecting member includes a body, the body including a first connecting segment and a second connecting segment arranged in parallel, and a bending segment connected between the first connecting segment and the second connecting segment.

[0013] In some embodiments, a wire threading groove is constructed inside the body, and the wire threading groove is used for the electrical connection wire between the main body and the audio collector to pass through.

[0014] In some embodiments, the body comprises:

[0015] a first shell, the first shell comprising a first wall, a second wall, and a third wall connected to the first wall and the second wall;

[0016] a first adsorption member, provided on the first wall;

[0017] The audio collector includes:

[0018] a second shell, comprising a first half shell adjacent to the first wall, and a second half shell docking with the first half shell;

[0019] a second adsorption member, provided on the first half shell;

[0020] Wherein, the first adsorption member is magnetically connected to the second adsorption member so that the first wall abuts against the first half shell;

[0021] And / or, the connecting third wall is connected to one end of the connecting member, and the other end of the connecting member is connected between the first half shell and the second half shell.

[0022] In some embodiments, the first wall is configured with a first groove for mounting the first adsorption member;

[0023] And / or, the first half shell is configured with a second groove for mounting the second adsorption component.

[0024] In some embodiments, the first adsorption member is a magnet, and the second adsorption member is an iron block;

[0025] Alternatively, the first adsorption member is an iron block, and the second adsorption member is a magnet;

[0026] Alternatively, the first adsorption member and the second adsorption member are both magnets.

[0027] In some embodiments, the audio collector includes: a communication antenna, which is arranged on the surface of the second half shell.

[0028] In some embodiments, the second half shell is configured with a sound pickup hole;

[0029] The audio collector also includes:

[0030] A microphone is provided in the second housing, wherein a collection end of the microphone is connected to the sound pickup hole;

[0031] The main body includes a main controller arranged in the first shell, the main controller is electrically connected to the microphone and the communication antenna respectively, and the main controller is configured to: receive the electrical signal of the microphone and send the electrical signal to the receiving device through the communication antenna.

[0032] The present invention further proposes a wireless microphone, comprising a receiving device and a transmitter of the wireless microphone as described in the aforementioned embodiment, wherein the transmitter of the wireless microphone communicates wirelessly with the receiving device, and the receiving device is configured to receive an electrical signal from the transmitter and convert the electrical signal into an audio signal for output.

[0033] The beneficial effect of this new technology lies in the fact that by separating the audio collector from the main body, the main body can be hidden inside clothing when worn, significantly improving the aesthetics and concealment of the microphone. The audio collector remains exposed, ensuring effective audio signal pickup, while the main body is discreetly placed inside clothing, avoiding the inconvenience caused by traditional microphones being fully exposed. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] Figure 1 This is a structural diagram of a wireless microphone transmitter in one embodiment of the present utility model;

[0035] Figure 2 This is a structural diagram of a wireless microphone transmitter in one embodiment of the present utility model;

[0036] Figure 3 This is a front view of a wireless microphone transmitter in one embodiment of the present invention;

[0037] Figure 4 for Figure 3 Cross-section at AA in the middle;

[0038] Figure 5 This is a structural diagram of a receiving device in one embodiment of the present invention.

[0039] Description of Figure Numbers:

[0040] 10. Transmitter; 100. Audio collector; 101. Microphone; 102. Communication antenna; 120. Second shell; 121. First half shell; 121a. Second groove; 122. Second half shell; 122a. Sound pickup hole; 123. Second adsorption component; 200. Main body; 210. First shell; 211. First wall; 211a. First groove; 212. Second wall; 213. Third wall; 214. First adsorption component; 220. Main controller; 300. Connecting member; 302. First connecting section; 303. Second connecting section; 304. Bending section; 300a. Threading groove; 20. Receiving device.

[0041] The realization of the purpose, functional features and advantages of the present invention will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0042] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the schemes in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0043] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present invention are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0044] It should also be noted that when an element is referred to as being "fixed on" or "disposed on" another element, it may be directly on the other element or there may be an intermediate element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element.

[0045] In addition, the descriptions of "first," "second," etc. in this utility model are for descriptive purposes only and should not be understood as indicating or implying their relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined as "first" or "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between the various embodiments can be combined with each other, but this must be based on the fact that they can be implemented by ordinary technicians in this field. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such combination of technical solutions does not exist and is not within the scope of protection required by this utility model.

[0046] Reference Figure 1 , Figure 1 It is a structure schematic view of the wireless microphone transmitter in an embodiment of the utility model.

[0047] The utility model embodiment proposes a kind of transmitter of wireless microphone, and the transmitter of wireless microphone includes:

[0048] Audio collector 100, audio collector 100 is used to pick up sound signal and convert it into electrical signal;

[0049] Main body 200, main body 200 is connected with audio collector 100, for receiving the electrical signal of audio collector 100, and transmission to receiving device 20;

[0050] Wherein, audio collector 100 and main body 200 are relatively kept in preset position, and at least one of audio collector 100 and main body 200 can be close to or away from preset position by external force.

[0051] In the embodiment, the transmitter 10 of wireless microphone includes two parts of audio collector 100 and main body 200.The main function of audio collector 100 is used to pick up audio signal and convert it into electrical signal.Among them, audio signal can be the sound produced by user's speech, conversation, etc., can also be the sound of surrounding environment, again without special restriction.The specific type of this audio collector 100 can be condenser microphone, moving coil microphone or electret microphone, etc., not limited to a certain specific form.

[0052] Main body 200 part is mainly used to receive the electrical signal from audio collector 100, and the electrical signal is transmitted to receiving device 20, such as receiving end equipment or sound system, by wireless mode.Main body 200 can adopt different shape design, such as rectangle, circle or other geometric shape, and material can be light metal, plastic or composite material, to realize different weight and appearance requirements.

[0053] Audio collector 100 and main body 200 are separately arranged, and they can be relatively kept in preset position by a retaining member.Among them, retaining member can be connecting member 300 and / or adsorption member (first adsorption accessory 214 and second adsorption accessory 123), and connecting mode includes installation, assembly or through magnetic connection audio collector 100 and main body 200.Specifically, connecting member 300 can be a fixed chain, elastic element (that is, body), or adsorption member is arranged on audio collector 100 and main body 200 by using magnetic material, and two are kept in preset position by magnetic force.Two kinds of schemes can also be implemented together, to realize flexible connection and fixation.

[0054] In use, the user can change the relative positions of the audio collector 100 and the main body 200 by applying an external force to the audio collector 100 or the main body 200. For example, when the user wears the microphone, the user can apply an external force to the audio collector 100 to move the audio collector 100 away from the main body 200, thereby separating the audio collector 100 and the main body 200. The user hides the main body 200 in the clothes and places the audio collector 100 outside the clothes, usually opposite to the position of the main body 200, to form a better clamping effect. After the external force is removed, the audio collector 100 and the main body 200 are restored to the preset positions by the retaining member, are fixed on both sides of the clothes, and generate a clamping force to ensure the stability of the wearing. When the microphone is removed, the user can also separate the audio collector 100 and the main body 200 by applying an external force, and then take out the main body 200 from the clothes to achieve easy disassembly.

[0055] The technical solution of the embodiment achieves that the main body 200 is hidden in the clothes when the microphone is worn, and significantly improves the aesthetic and concealment of the microphone wearing. The audio collector 100 is kept exposed to ensure effective pickup of the audio signal, and the main body 200 is inconspicuously placed on the inside of the clothes to avoid the inconvenience caused by the overall exposure of the traditional microphone.

[0056] Continue to refer to Figure 1 In the embodiment, the transmitter 10 of the wireless microphone further includes:

[0057] The connecting member 300 is connected to the main body 200 at one end and connected to the audio collector 100 at the other end. The connecting member 300 supports the audio collector 100 and the main body 200 to be kept in the preset positions relative to each other. The connecting member 300 can deform under the action of an external force to make at least one of the audio collector 100 and the main body 200 approach or move away from the preset position.

[0058] The embodiment is further optimized on the basis of the foregoing embodiment. The transmitter 10 of the wireless microphone further includes a connecting member 300. One end of the connecting member 300 is connected to the main body 200, and the other end is connected to the audio collector 100. The main function of the connecting member 300 is to support the audio collector 100 and the main body 200 to keep them in the preset positions relative to each other. The connecting member 300 can be made of different materials and structures according to needs. For example, the connecting member 300 can be made of elastic materials such as rubber and silica gel, or rigid materials such as plastic and metal, or memory materials or plastic materials or clamps, etc. The shape of the connecting member 300 can also be diversified, such as straight bar, curved or chain, to adapt to different use environments.

[0059] During use, the connecting member 300 can be deformed according to the action of external force, so that the relative position of the audio collector 100 and the main body 200 changes. For example, when the user needs to wear the microphone, the connecting member 300 can be deformed by applying external force, so that the audio collector 100 is separated from the main body 200. The user can hide the main body 200 inside the clothing and place the audio collector 100 on the outside of the clothing. The elasticity and flexibility of the connecting member 300 ensure that the audio collector 100 and the main body 200 can return to the preset position and remain stable after being worn. When the external force is removed, the connecting member 300 will restore its shape, ensuring that the audio collector 100 and the main body 200 remain in the ideal wearing position, which is convenient for fixation and use.

[0060] This embodiment utilizes a connecting member 300 to support the relative position of the audio collector 100 and the main body 200. Furthermore, the connecting member 300 can deform under external force, allowing the user to flexibly adjust the position of the audio collector 100 and the main body 200 while wearing the headset. Once the external force is removed, the connecting member 300 returns to its pre-set configuration, ensuring the stability and durability of the device and further improving the user's wearing experience.

[0061] See Figure 2 , Figure 2 This is a structural diagram of a wireless microphone transmitter in one embodiment of the present invention.

[0062] In this embodiment, the connecting member 300 includes a body, which includes a first connecting segment 302 and a second connecting segment 303 arranged in parallel, and a bending segment 304 connected between the first connecting segment 302 and the second connecting segment 303 .

[0063] This embodiment provides a specific structural design for the aforementioned connecting member 300, which includes a body comprising a first connecting section 302 and a second connecting section 303 arranged in parallel, which are connected by a bending section 304 to form a "U"-shaped structure.

[0064] The first connecting section 302 and the second connecting section 303 connect to the audio collector 100 and the main body 200, respectively, ensuring that they remain in a preset position relative to each other when no external force is applied. The main body can be made of a resilient material, such as elastic metal, plastic, or rubber, to ensure structural flexibility and recoverability. The choice of different materials can be adjusted according to the device's requirements to suit different wearing scenarios.

[0065] During use, when a user applies external force, the U-shaped structure of the connecting member 300 deforms, causing the first connecting segment 302 and the second connecting segment 303 to no longer maintain their parallel position, thereby moving at least one of the audio collector 100 or the main body 200 away from the preset position. In this state, the audio collector 100 is separated from the main body 200, making it easier for the user to wear the transmitter 10. For example, the user can hide the main body 200 inside clothing and place the audio collector 100 outside the clothing. When the user removes the external force, the elastic properties of the main body cause the bent segment 304 to rebound, causing the first connecting segment 302 and the second connecting segment 303 to return to their parallel position, and the audio collector 100 and the main body 200 also return to their preset position. At this point, the connecting member 300 generates a certain clamping force, which can firmly secure the transmitter 10 to the clothing, ensuring that it does not slip or fall off during use.

[0066] See Figure 3 and Figure 4 , Figure 3 This is a front view of a wireless microphone transmitter in one embodiment of the present invention. Figure 4 for Figure 3 Cross-section view at AA in the middle.

[0067] In this embodiment, the main body is internally constructed with a wire channel 300a for the electrical connection wires between the main body 200 and the audio collector 100. These wires are used to establish an electrical connection between the main body 200 and the audio collector 100, ensuring smooth transmission of audio signals from the audio collector 100 to the main body 200. The design of the wire channel 300a within the main body allows the electrical connection wires to be concealed within the connecting member 300, preventing external wiring exposure and improving the overall aesthetics and safety of the device.

[0068] During use, the audio collector 100 and the main body 200 transmit electrical signals via an electrical cable. Because the cable passes through the cable slot 300a inside the main body, users don't have to worry about exposed or tangled wires when wearing the device, ensuring clean and safe use. The hidden cable design also reduces interference with user operation, making the device more convenient to wear and use.

[0069] Continue reading Figure 4 In this embodiment, the main body 200 includes:

[0070] A first housing 210 , the first housing 210 including a first wall 211 , a second wall 212 , and a third wall 213 connected to the first wall 211 and the second wall 212 ;

[0071] A first adsorption member 214 is provided on the first wall 211;

[0072] The audio collector 100 includes:

[0073] The second housing 120 includes a first half-shell 121 close to the first wall 211 and a second half-shell 122 docking with the first half-shell 121;

[0074] The second adsorption member 123 is provided on the first half shell 121;

[0075] The first adsorption member 214 is magnetically connected to the second adsorption member 123 so that the first wall 211 abuts against the first half shell 121;

[0076] And / or, the third wall 213 is connected to one end of the connecting member 300 , and the other end of the connecting member 300 is connected between the first half shell 121 and the second half shell 122 .

[0077] In this embodiment, the transmitter 10 main body 200 of the wireless microphone and the audio collector 100 adopt two different connection schemes to meet different usage requirements. The main body 200 includes a first shell 210, and the first shell 210 is composed of a first wall 211, a second wall 212, and a third wall 213 connecting the first wall 211 and the second wall 212. A first adsorption member 214 is provided on the first wall 211 for magnetic connection with the audio collector 100. The audio collector 100 is composed of a second shell 120, and the second shell 120 includes a first half shell 121 close to the first wall 211 and a second half shell 122 docking with the first half shell 121. A second adsorption member 123 is provided on the first half shell 121 of the audio collector 100 to facilitate magnetic connection with the first adsorption member 214 of the main body 200.

[0078] In the first solution, the main body 200 and the audio collector 100 are secured solely through a magnetic connection. When the main body 200 and the audio collector 100 are brought close together, the first suction member 214 and the second suction member 123 generate magnetic attraction, causing the first wall 211 to tightly abut against the first half shell 121 of the audio collector 100, ensuring a secure connection between the two.

[0079] In the second solution, in addition to the magnetic connection, a connecting member 300 is also used for fixation. The third wall 213 of the main body 200 is connected to one end of the connecting member 300, and the other end of the connecting member 300 is connected between the first half shell 121 and the second half shell 122 of the audio collector 100. In this way, not only does it rely on magnetic attraction, but the stability of the two is further enhanced by the physical connection. The connecting member 300 provides additional support, making the audio collector 100 and the main body 200 more secure during use, which is particularly suitable for scenarios where users need a more stable connection.

[0080] The present embodiment provides two different connection schemes, which can be selected flexibly according to the user's needs. The first scheme is through the magnetic attraction connection of the first suction accessory 214 and the second suction accessory 123, which is simple in structure, easy to assemble and disassemble, and suitable for occasions that need to be frequently worn and disassembled. The magnetic attraction connection provides sufficient stability and an attractive appearance, reducing the complexity of mechanical structures.

[0081] The second scheme combines the use of the connection member 300, which increases physical connection on the basis of magnetic attraction, further improving the stability of the transmitter 10. The elastic design of the connection member 300 allows the audio collector 100 and the main body 200 to maintain flexibility when worn, providing additional security, especially suitable for use in complex environments. The two schemes provide users with more choices, adapt to different use needs, and enhance the versatility and practicality of the device.

[0082] Continuing to refer to Figure 4 In the present embodiment, the first wall 211 is configured with a first recess 211a for mounting the first suction accessory 214;

[0083] And / or, the first half shell 121 is configured with a second recess 121a for mounting the second suction accessory 123.

[0084] In the present embodiment, the transmitter 10 of the wireless microphone proposes two schemes for mounting the suction accessories. In the first scheme, the first wall 211 of the main body 200 can be configured with a first recess 211a for mounting the first suction accessory 214, and the first half shell 121 of the audio collector 100 is also configured with a second recess 121a for mounting the second suction accessory 123. The design of the two recesses can ensure that the suction accessories are embedded therein, so that the height of the suction accessories is flush with the depth of the recess, so that after installation is completed, the suction accessories remain flat with the surrounding surface, avoiding protrusions, ensuring the aesthetic appearance and smoothness of the appearance.

[0085] In the second scheme, only one of the first wall 211 or the first half shell 121 can be configured with a recess. For example, only the first recess 211a can be provided on the first wall 211 for mounting the first suction accessory 214, while the second suction accessory 123 on the second half shell 122 is directly connected to the first suction accessory 214 by magnetic attraction, or vice versa. This design simplifies the structure while still ensuring the reliability and stability of the magnetic attraction connection.

[0086] In the first scheme, when the user installs the suction accessories, the first suction accessory 214 is embedded into the first groove 211a, and the second suction accessory 123 is embedded into the second groove 121a. This design ensures that the suction accessories are fixed firmly in the grooves and are flush with the surrounding surface after installation, without protruding and affecting the appearance. The fixation by the grooves further enhances the stability of the equipment, avoiding loose connection caused by uneven suction accessories.

[0087] In the second scheme, the user only needs to install the suction accessories on one of the first wall 211 or the first half shell 121, and the suction accessories can still be firmly connected to the other component through magnetic attraction. This scheme maintains a simple structure while providing sufficient magnetic attraction strength to ensure the stable connection of the audio collector 100 and the main body 200.

[0088] The present embodiment achieves the flush effect of the suction accessories with the surrounding surface by constructing grooves on the first wall 211 and / or the first half shell 121, improving the aesthetics and practicality of the equipment. The design of the grooves makes the suction accessories no longer protrude after installation, avoiding the problem of uneven appearance, while ensuring that the suction accessories are firmly embedded and reducing the risk of wear or loosening during use. In both schemes, whether grooves are provided on both components or only one, firm connection can be achieved through magnetic attraction, providing higher structural flexibility and adapting to different use requirements.

[0089] Continuing to refer to Figure 4 In the present embodiment, the first suction accessory 214 is a magnet, and the second suction accessory 123 is an iron block.

[0090] Alternatively, the first suction accessory 214 is an iron block, and the second suction accessory 123 is a magnet.

[0091] Alternatively, the first suction accessory 214 and the second suction accessory 123 are both magnets.

[0092] In the present embodiment, three configuration schemes of suction accessories are proposed for magnetic attraction connection:

[0093] In the first scheme, the first suction accessory 214 is a magnet, and the second suction accessory 123 is an iron block. Through the magnetic attraction between the magnet and the iron block, the firm connection of the audio collector 100 and the main body 200 is ensured.

[0094] In the second scheme, the first suction accessory 214 is an iron block, and the second suction accessory 123 is a magnet. This scheme still uses the magnetic attraction principle between the magnet and the iron block to achieve the same connection effect.

[0095] In the third solution, both the first adsorption member 214 and the second adsorption member 123 are magnets. The mutual attraction between the two magnets can provide a stronger connection strength, ensuring that the device is more stable during use.

[0096] These three solutions provide users with different choices, all of which can effectively achieve the magnetic connection between the audio collector 100 and the main body 200, ensuring the stability and ease of use of the device.

[0097] Continue reading Figure 4 In this embodiment, the audio collector 100 includes: a communication antenna 102 , which is disposed on the surface of the second half shell 122 .

[0098] In this embodiment, the audio collector 100 includes a communication antenna 102, which is disposed on the surface of the second half shell 122. The communication antenna 102 is used to wirelessly communicate with the receiving device 20 to ensure that the audio signal can be stably transmitted to the receiving end.

[0099] The antenna can be installed using a variety of processes, such as attaching it to the surface of the second half-shell 122 via a patch process or embedding it into the half-shell surface via an insert molding process. Alternatively, an etching process can be used to directly form the antenna pattern on the half-shell surface, ensuring that the antenna is tightly bonded to the shell surface and enhancing the structural integrity of the device.

[0100] The antenna shape can be designed in a variety of forms, including linear, spiral, circular, or other complex geometric shapes, to optimize the antenna's signal reception and coverage. Antenna materials can also be diverse, with common materials including copper, aluminum, silver, or highly conductive metal composites. These materials ensure good signal transmission performance and high anti-interference capabilities.

[0101] The communication antenna 102 communicates wirelessly with the receiving device 20 to achieve signal transmission between the audio collector 100 and the receiving device. Due to the flexible antenna design, it can adapt to different operating frequency bands and signal strengths, ensuring a stable communication connection in different usage scenarios and meeting the needs of wireless microphone use.

[0102] Continue reading Figure 4 In this embodiment, the second half shell 122 is configured with a sound pickup hole 122a;

[0103] The audio collector 100 further includes:

[0104] The microphone 101 is disposed in the second housing 120, and the sound collection end of the microphone 101 is connected to the sound pickup hole 122a;

[0105] The main body 200 includes a main controller 220 disposed in the first shell 210. The main controller 220 is electrically connected to the microphone 101 and the communication antenna 102. The main controller 220 is configured to receive electrical signals from the microphone 101 and send the electrical signals to the receiving device 20 through the communication antenna 102.

[0106] In this embodiment, the second half shell 122 of the audio collector 100 is configured with a sound pickup hole 122a, which is used to introduce external sound into the audio collector 100. The audio collector 100 also includes a microphone 101, which is disposed within the second shell 120. The microphone 101 has a collection end that interfaces with the sound pickup hole 122a, ensuring that external sound is efficiently transmitted to the microphone 101 for pickup and conversion.

[0107] The main body 200 houses a main controller 220, located within the first housing 210. The main controller 220 is responsible for coordinating and processing signals from the audio collector 100. The main controller 220 is electrically connected to the microphone 101, receiving the electrical signals picked up and converted by the microphone 101. Furthermore, the main controller 220 is electrically connected to the communication antenna 102, wirelessly transmitting the processed electrical signals to the receiving device 20.

[0108] During use, the microphone 101 receives external sound signals through the sound pickup hole 122a and converts them into electrical signals. After the electrical signals are received by the main controller 220, they are wirelessly transmitted to the receiving device 20 via the communication antenna 102 to achieve remote audio transmission.

[0109] This utility model further provides a wireless microphone comprising a receiving device 20 and the transmitter 10 of the wireless microphone of the aforementioned embodiment. The specific structure of the transmitter 10 of the wireless microphone is similar to that of the aforementioned embodiment. Since this wireless microphone utilizes all the technical solutions of all the aforementioned embodiments, it at least has all the technical effects provided by the technical solutions of the aforementioned embodiments, and a detailed description thereof will not be repeated here. The transmitter 10 of the wireless microphone wirelessly communicates with the receiving device 20. The receiving device 20 is configured to receive the electrical signal from the transmitter 10 and convert the electrical signal into an audio signal for output.

[0110] Because this wireless microphone utilizes the technical solutions of all the aforementioned embodiments, it inherits the technical advantages offered by all of them. For example, the magnetic connection structure and the design of the wire threading slot 300a enhance the device's stability, wearing comfort, and aesthetics. Furthermore, the separate design of the audio collector 100 and the main body 200 addresses the bulk and inconvenience of traditional wireless microphones, allowing for more flexible adjustments during use and ensuring an enhanced user experience.

[0111] See Figure 4 and Figure 5 In the present embodiment, the wireless microphone transmitter 10 communicates wirelessly with the receiving device 20 via the communication antenna 102. The receiving device 20 is configured to receive the electrical signal from the transmitter 10 and convert it into an audio signal for output. The receiving device 20 can be connected to a loudspeaker, earphone or other audio equipment to clearly deliver the converted audio signal to the listener.

[0112] With the seamless combination of the wireless microphone transmitter 10 and the receiving device 20, the wireless microphone system of the present embodiment not only overcomes the constraints of conventional wired microphones, but also ensures the stability of signal transmission and the sound quality effect, and is suitable for various application scenarios such as speeches, conferences, performances, etc.

[0113] The above only describes some or preferred embodiments of the present application, neither the text nor the drawings can limit the scope of protection of the present application, any equivalent structural transformation made by using the content of the present application specification and drawings, or direct / indirect application in other related technical fields are included in the scope of protection of the present application.

Claims

1. A transmitter for a wireless microphone, characterized in that: include: An audio collector, which is used to pick up sound signals and convert them into electrical signals; A main body, connected to the audio collector, configured to receive the electrical signal from the audio collector and transmit the signal to a receiving device; The subject includes: a first shell, the first shell comprising a first wall, a second wall, and a third wall connected to the first wall and the second wall; a first adsorption member, provided on the first wall; The audio collector includes: a second shell, comprising a first half shell adjacent to the first wall, and a second half shell docking with the first half shell; a second adsorption member, provided on the first half shell; The first adsorption member is magnetically connected to the second adsorption member so that the first wall abuts against the first half shell; The audio collector and the main body are relatively maintained at a preset position, and at least one of the audio collector and the main body can be moved closer to or away from the preset position by an external force.

2. The transmitter of the wireless microphone according to claim 1, characterized in that The transmitter of the wireless microphone also includes: A connecting member, one end of which is connected to the main body, and the other end of which is connected to the audio collector, wherein the connecting member supports the audio collector and the main body to maintain a preset position relative to each other, and the connecting member can be deformed under the action of an external force to move at least one of the audio collector and the main body closer to or away from the preset position.

3. The transmitter of the wireless microphone according to claim 2, characterized in that The connecting member includes a body, and the body includes a first connecting segment and a second connecting segment arranged in parallel, and a bending segment connected between the first connecting segment and the second connecting segment.

4. The transmitter of the wireless microphone according to claim 3, characterized in that A wire threading groove is constructed inside the main body, and the wire threading groove is used for the electrical connection wire between the main body and the audio collector to pass through.

5. The transmitter of the wireless microphone according to claim 2, characterized in that: The third wall is connected to one end of the connecting member, and the other end of the connecting member is connected between the first half shell and the second half shell.

6. The transmitter of the wireless microphone according to claim 5, characterized in that: The first wall is configured with a first groove for mounting the first adsorption member; and / or, The first half shell is configured with a second groove for mounting the second adsorption member.

7. The transmitter of the wireless microphone according to claim 5, characterized in that The first adsorption member is a magnet, and the second adsorption member is an iron block; or The first adsorption member is an iron block, and the second adsorption member is a magnet; or, The first adsorption member and the second adsorption member are both magnets.

8. The transmitter of the wireless microphone according to claim 5, characterized in that The audio collector includes a communication antenna, which is arranged on the surface of the second half shell.

9. The transmitter of the wireless microphone according to claim 8, characterized in that The second half shell is configured with a sound pickup hole; The audio collector also includes: A microphone is provided in the second housing, wherein a collection end of the microphone is connected to the sound pickup hole; The main body includes a main controller arranged in the first shell, the main controller is electrically connected to the microphone and the communication antenna respectively, and the main controller is configured to: receive the electrical signal of the microphone and send the electrical signal to the receiving device through the communication antenna.

10. A wireless microphone, characterized in that: The invention comprises a receiving device and a transmitter of a wireless microphone according to any one of claims 1 to 9, wherein the transmitter of the wireless microphone communicates wirelessly with the receiving device, and the receiving device is configured to receive an electrical signal from the transmitter and convert the electrical signal into an audio signal for output.