A handheld microphone with light for live broadcast
By integrating an adjustable ring light structure into the microphone, the problem of large size and cumbersome operation of existing live streaming equipment is solved. It enables multi-dimensional flexible adjustment of the lighting direction, improves portability and ease of operation, and ensures the stability and quality of the live streaming image.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ENPING FUJIAYU HARDWARE PRODUCTS CO LTD
- Filing Date
- 2025-09-05
- Publication Date
- 2026-07-21
AI Technical Summary
Existing live streaming microphone equipment requires users to hold multiple parts, resulting in large size, cumbersome operation, and inconvenience in carrying, which affects the stability of the live stream and increases the burden of operation.
An adjustable ring-shaped lighting structure was designed, which combines gear ring meshing and damping shaft to achieve multi-dimensional flexible adjustment of the lighting direction. It is integrated into the microphone to reduce the number of devices and improve portability and ease of operation.
It achieves precise adaptation of lighting direction, improves the portability and ease of operation of live streaming equipment, reduces the number of devices, reduces hand fatigue, and ensures the stability and quality of live streaming images.
Smart Images

Figure CN224538291U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of microphone technology, specifically to a handheld microphone for live streaming that can be illuminated. Background Technology
[0002] In live streaming, lighting is a key factor affecting image quality. Clear, even lighting highlights the host's facial details, restores the true colors of products, and enhances the viewer's visual experience. Insufficient or uneven lighting, on the other hand, leads to a dark image and blurred details, severely impacting the live stream's effectiveness. Therefore, lighting is an indispensable part of live streaming. Most hosts use fixed light sources (such as ring lights or desk lamps) for basic lighting. However, when introducing products and interacting with viewers, hosts often need to frequently turn their faces and adjust their body angles. Fixed light sources, with their fixed angles, cannot keep up with the host's movements, easily creating uneven shadows on the host's face. These shadows not only obscure facial expression details but can also make skin appear dull and patchy, disrupting the overall harmony of the image and reducing the professionalism and watchability of the live stream.
[0003] A search revealed that application number CN202022343745.1 discloses an integrated handheld microphone for live streaming, comprising a microphone grip and a microphone clip. The microphone clip is located in the middle of the microphone grip, and a support hinge is located at the lower end of the microphone clip. A telescopic support rod is connected to the bottom of the support hinge, and a base is installed at the bottom of the telescopic support rod. An LED ring bracket is located at the upper end of the microphone clip, and a mobile phone holder is mounted on the surface of the LED ring bracket. By using the mobile phone holder at the upper end of the microphone clip, the mobile phone can record good live video and audio. An LED ring on the mobile phone holder enhances the video quality during live streaming. The microphone's microphone head is covered with a dust cover to prevent dust and droplets from affecting the microphone head. A drop-proof ring is located at the lower end of the dust cover to prevent the microphone from slipping when held. The integration of the mobile phone and microphone eliminates the need for additional equipment, resulting in a shorter microphone pickup distance and preventing signal transmission problems over long distances.
[0004] However, when using the microphone, the user needs to hold multiple components such as the microphone, phone stand, telescopic support rod, and fill light ring. These components are connected together and have a large overall size, which not only takes up a lot of space but is also very cumbersome to carry. Moreover, the user needs to maintain the balance of multiple structures while holding the microphone, and if they are not careful, the microphone may shake, affecting the stability of the live broadcast. The operation is quite cumbersome and puts a great burden on the user. Utility Model Content
[0005] The purpose of this invention is to provide a handheld microphone for live streaming that can emit light, so as to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution:
[0007] A handheld microphone for live streaming with illumination, comprising:
[0008] The microphone has a rotating groove on the upper end face of the handle. The upper end face of the rotating groove is fixedly connected to the connecting port. The outer toothed ring of the connecting port meshes with the inner toothed ring of the rotating ring. By applying external force to rotate the rotating ring, the inner toothed ring disengages from the outer gear and is unlocked. The rotating ring can rotate around the circumference of the rotating groove to adjust the circumferential rotation angle of the ring light.
[0009] The adjusting component is rotatably connected to the rotating part of the bracket via a damping shaft. By adjusting the elevation angle of the ring light, the ring light can be rotated at multiple angles in a plane perpendicular to the handle axis. The damping force of the damping shaft helps to stabilize and fix the elevation angle position of the ring light.
[0010] Preferably, the microphone includes a mesh head, the lower end face of which is integrally formed with a threaded connection part, the threaded connection part being provided with an external thread, the external thread engaging with the internal thread on the inner side of the connection port, for threaded connection of the mesh head and the handle.
[0011] Preferably, the outer toothed ring is integrally formed with the outer wall of the connection port, and the edges of the toothed ring are polished to form a first smooth surface.
[0012] Preferably, the internal toothed ring is integrally formed with the inner wall of the rotating ring, and the tooth surface of the internal toothed ring is polished to form a second smooth surface. The first smooth surface and the second smooth surface can reduce the frictional resistance when the internal toothed ring and the external toothed ring mesh or separate.
[0013] Preferably, the adjusting component includes a rotating block, which is rotatably connected to the rotating part at the top of the bracket via a damping shaft. A connecting plate is integrally formed on the upper end face of the rotating block, and a through hole is provided on the connecting plate. The adjusting component is connected and fixed to the threaded hole on the back of the annular flashlight by a mounting bolt passing through the through hole.
[0014] Preferably, the bracket is an L-shaped bracket, with the bottom end of the bracket integrally formed and connected to the outer side of the rotating ring.
[0015] Preferably, the ring-shaped lighting lamp has multiple sets of LED arrays electrically connected inside its lampshade. The light emitted by the LED arrays is diffused through the diffuse reflection effect of the lampshade, thereby providing uniform live lighting.
[0016] Preferably, the bottom of the microphone handle is provided with a connection end for connection to a microphone connector.
[0017] Preferably, a switch is provided on the side of the microphone handle for controlling the microphone power supply.
[0018] Compared with the prior art, the beneficial effects of this utility model are:
[0019] This invention, by setting an adjustable ring-shaped lighting structure, including a toothed ring meshing structure for circumferential angle adjustment and a damping rotating shaft for elevation angle adjustment, achieves multi-dimensional flexible adjustment of the lighting direction, which can accurately adapt to the positional needs of people or objects in different live streaming scenarios and ensure that the lighting is always in an ideal state.
[0020] This invention combines sound pickup and lighting functions by integrating a ring light and microphone structure, reducing the number of devices required and eliminating the need to carry separate lights and stands, thus improving the portability of live streaming equipment.
[0021] This utility model features an adjustment structure that combines a toothed ring meshing mechanism with a damping shaft. The inner toothed ring is made of elastic material, while the outer toothed ring is made of metal. The edges of the toothed rings are polished, making the adjustment process smooth and effortless, while ensuring structural stability and durability.
[0022] This utility model features a detachable net head and handle, as well as easily replaceable rotating rings and brackets. The net head and handle are threaded together, and the rotating ring and brackets can be easily disassembled and replaced. This not only facilitates maintenance but also allows for flexible switching of the lighting function as needed. Attached Figure Description
[0023] Figure 1 This is a three-dimensional schematic diagram of the overall structure of this utility model;
[0024] Figure 2 This is a three-dimensional schematic diagram of the rotating ring-shaped spotlight of the microphone of this utility model.
[0025] Figure 3 This is a three-dimensional schematic diagram of the microphone of this utility model;
[0026] Figure 4 This is a three-dimensional schematic diagram of the ring-shaped lighting lamp and the rotating ring of this utility model;
[0027] Figure 5 This is a three-dimensional schematic diagram of the connection between the bracket and the ring-shaped light of this utility model;
[0028] Figure 6 This is a three-dimensional schematic diagram of the microphone head and handle of this utility model;
[0029] Figure 7 This is a three-dimensional schematic diagram of the connection between the rotating ring and the handle rotating groove of this utility model;
[0030] Figure 8This is a three-dimensional schematic diagram of the meshing of the internal and external toothed rings of this utility model.
[0031] In the diagram: 1. Handle; 101. Rotating groove; 102. External gear ring; 103. Internal thread; 104. Connecting port; 2. Net head; 201. Threaded connection part; 3. Connecting end; 4. Switch; 5. Rotating ring; 501. Internal gear ring; 6. Bracket; 601. Rotating part; 7. Circular light; 701. Lamp cover; 702. Rotating block; 703. Connecting plate; 704. Through hole; 705. Mounting bolt; 8. First smooth surface; 9. Second smooth surface; 10. Damping shaft. Detailed Implementation
[0032] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0033] Example 1:
[0034] Please see Figures 1 to 8 This utility model provides a technical solution:
[0035] A handheld microphone for live streaming with lighting capabilities includes a microphone and an adjustment mechanism. The circumferential rotation angle of the ring light 7 can be adjusted by rotating the rotating ring 5, and the elevation angle of the ring light 7 can be adjusted by rotating the adjustment mechanism around the damping shaft 10, thereby achieving flexible multi-directional adjustment of the light.
[0036] like Figure 6 The microphone body consists of two parts: a mesh head 2 and a handle 1. The two parts are securely connected by a threaded structure. The lower end face of the mesh head 2 has an integrally formed annular threaded connection part 201. The outer wall of the connection part is machined with fine external threads. The upper end of the handle 1 has a connection port 104. The inner side of the connection port 104 is correspondingly provided with an internal thread 103. Through the precise engagement of the external thread and the internal thread 103, the mesh head 2 and the handle 1 can be quickly assembled and disassembled, which not only ensures the sealing of the connection, but also facilitates later maintenance and replacement.
[0037] The internal chamber of the handle 1 houses the essential electronic components of the microphone, including a pickup module, a signal processing chip, and a power supply unit. The mesh head 2 forms a closed space through a threaded connection with the handle 1, providing physical protection against dust and moisture for the internal components.
[0038] The handle 1 has a push-button switch 4 on its side, which is electrically connected to the microphone's power supply unit for convenient control of the microphone's power supply. The bottom of the handle has a standardized connection terminal 3, which can be connected to commonly used wired microphone connectors to achieve stable transmission of audio signals.
[0039] The microphone pickup module, signal processing chip, and power supply unit all adopt conventional microphone designs found in existing technologies. The microphone pickup module uses a high-sensitivity condenser microphone, which can accurately capture wideband sound signals. The signal processing chip integrates basic functions such as noise reduction and gain adjustment to ensure clear audio signal reproduction. The power supply unit is compatible with both built-in lithium battery and external power supply modes to meet the battery life requirements in different scenarios. The standardized connection terminal 3 at the bottom adopts industry-standard specifications such as a 3.5mm audio interface or a USB-C interface. Its specific structure is a mature technology and will not be described in detail here.
[0040] The upper end face of the handle 1 is provided with an annular rotating groove 101. The upper end face of the rotating groove 101 is fixedly connected to the connection port 104. The outer wall of the connection port 104 is integrally formed with an external toothed ring 102, which meshes with the internal toothed ring 501 on the inner wall of the rotating ring 5. The meshing structure of the toothed ring enables the circumferential angle adjustment of the annular lighting lamp 7.
[0041] like Figure 7 When adjusting the circumferential angle of the ring light 7, the rotating ring 5 and the inner toothed ring 501 are preferably made of ABS plastic with good elasticity. When the rotating ring 5 is rotated by hand, the inner toothed ring 501 will undergo slight deformation due to the force, causing the teeth of the inner toothed ring 501 and the outer toothed ring 102 to disengage. At this time, the rotating ring 5 can rotate smoothly along the rotating groove 101, thereby driving the ring light 7 to adjust the circumferential angle synchronously. When the hand is released, the inner toothed ring 501 quickly returns to its original shape under its own elasticity, and its inner teeth and the teeth of the outer toothed ring 102 re-engage precisely to form a stable angle fixation. The outer toothed ring 102 is made of high-strength metal alloy material, which has excellent structural stability and wear resistance. Even with long-term frictional action of engagement and disengagement with the inner toothed ring 501, it can maintain the integrity of the tooth shape, effectively extending the service life of the entire adjustment structure.
[0042] like Figure 8To reduce operational resistance during adjustment, the edges of the teeth of both the outer toothed ring 102 and the inner toothed ring 501 are polished. The edges of the outer toothed ring 102 form a first smooth surface 8, and the edges of the inner toothed ring 501 form a second smooth surface 9. When an external force is applied to rotate the rotating ring 5, the smooth surfaces effectively reduce friction during engagement or disengagement of the toothed rings, allowing the inner toothed ring 501 to easily disengage from the outer toothed ring 102 and unlock. The rotating ring 5 can rotate freely along the circumference of the rotating groove 101, thereby driving the ring-shaped lighting lamp 7 to rotate synchronously, achieving circumferential angle adjustment within a 360° range to meet the lighting direction requirements of different live streaming scenarios.
[0043] The ring-shaped light 7 and the rotating ring 5 are connected by an L-shaped bracket 6. The bottom end of the bracket 6 is integrally formed with the outer side of the rotating ring 5 to ensure the connection strength. The rotating part 601 at the top of the bracket 6 is rotatably connected to the adjusting component through the damping shaft 10.
[0044] The adjusting component consists of a rotating block 702 and a connecting plate 703. The rotating block 702 is hinged to the rotating part 601 of the bracket 6 via a damping shaft 10. Its upper end face is integrally formed with the connecting plate 703. The connecting plate 703 has a matching through hole 704. During installation, the mounting bolt 705 passes through the through hole 704 and is fastened to the threaded hole on the back of the ring light 7, so that the light can be stably fixed and the ring light 7 can be rotated at multiple angles in a plane perpendicular to the axis of the handle 1.
[0045] like Figure 2 When adjusting the elevation angle of the ring light 7, simply hold the edge of the ring light 7 and apply pushing or pulling force. The rotating block 702, connected to the ring light 7 via the adjusting mechanism, will rotate around the damping shaft 10. The damping shaft 10 has a friction plate structure inside. When the rotating block 702 drives the damping shaft 10 to rotate, a uniform and continuous damping force is generated between the friction plates. This damping force maintains a stable output as the rotation angle changes, preventing sudden increases in angle that could cause adjustment jamming, and preventing sudden decreases in angle that could cause adjustment loss of control.
[0046] During adjustment, users can clearly feel smooth resistance feedback, allowing them to precisely adjust the elevation angle of the ring light 7 to the desired angle based on the position of people or objects in the live broadcast scene, and instantly lock it with the damping force of the damping hinge 10. This locking effect effectively resists the weight of the ring light 7 itself and any slight touches that may occur during use, ensuring that the elevation angle remains stable without any deviation, thus providing continuous lighting or fill light for the live broadcast.
[0047] By combining the meshing structure of the external gear ring 102 and the internal gear ring 501 with the rotation structure of the damping shaft 10 and the adjusting component, the ring light 7 achieves dual functions of circular rotation and elevation adjustment. This allows users to adjust the angle of the light according to the lighting requirements of the live broadcast scene and the position of the subject, ensuring precise lighting. Furthermore, since everyone holds the microphone at different angles—some prefer a slightly higher angle, others a slightly lower—the flexible design of these adjusting components can adapt to different holding habits. Regardless of the user's microphone holding angle, they can easily adjust the ring light 7 to the ideal lighting position, improving ease of use and flexibility.
[0048] The mesh head 2 and handle 1 are connected by threads. Simply rotating the mesh head 2 easily opens the connection, allowing the rotating ring 5, bracket 6, and lighting fixture to be easily removed. The disassembly process is simple and effortless. When supplemental lighting is needed, these structures can be easily reinstalled, allowing for quick and easy use. If the rotating ring 5 becomes loose after prolonged use, the old rotating ring 5 and bracket 6 can be removed using the same disassembly method, and a new rotating ring 5 and bracket 6 can be installed to ensure the normal adjustment function of the equipment. The entire process requires no complicated tools and is convenient and efficient.
[0049] The ring light 7 and the lampshade 701 are connected by common snap-fit. Multiple high-density LED arrays are electrically connected to the internal circuit board of the lampshade 701. The light emitted by the LEDs is diffused and uniformly diffused after being processed by the inner wall of the lampshade 701, so that the light is transformed from a point light source into a surface light source. When it shines on the face, it is spread out rather than directly, which can eliminate the highlights and shadows caused by direct light, provide a soft and uniform fill light effect for the live broadcast scene, and improve the image quality.
[0050] The bracket 6, rotating ring 5, and ring-shaped light 7 are all preferably made of lightweight materials. For example, the bracket 6 and rotating ring 5 are preferably made of ABS plastic, the light cover 701 of the light is made of thin acrylic sheet, and the LED array also uses low-power micro LEDs. Through optimized material design, the overall weight of the structure is reduced, making it easier and less strenuous for users to hold the microphone. Compared with the existing technology that requires holding the microphone bracket 6, the independent light, and the corresponding bracket 6 simultaneously, this design highly integrates the lighting function with the microphone structure, reduces unnecessary connecting parts, and results in a smaller overall size and lighter weight. It avoids the hand burden caused by stacking multiple devices, and even during long-term live streaming, it can effectively reduce user arm fatigue and improve the comfort and convenience of operation.
[0051] Example 2:
[0052] This utility model provides a technical solution that is basically the same as that in Embodiment 1, with the following slight differences:
[0053] The ring light 7 in Example 1 can be used in conjunction with a fixed light source, where the fixed light source mainly undertakes the basic lighting function to create an overall bright environment for the live broadcast scene.
[0054] However, during actual live streaming, when the host moves their face while holding the microphone to introduce products, or when the angle between them and the camera changes, a fixed light source at a fixed angle can easily create uneven shadows on their face, affecting the aesthetics of the image. At this time, the ring light 7 on the handheld microphone can play a flexible supplementary lighting role, moving synchronously with the relative position of the microphone and the host's face to fill in the shadow areas in time, keeping the facial lighting even and natural.
[0055] It is important to note that the color temperature difference between the fixed light source and the ring light 7, which is used as a moving light source, should preferably be ≤1000K (for example, 4000K for the fixed light source and 5000K for the moving light source). This is to avoid skin color distortion caused by the mixing of warm and cool light. If the color temperature difference between the two is too large, one side of the face may appear warm yellow and the other side cool white, making the skin color look patchy and uncoordinated, which will affect the overall quality of the live broadcast.
[0056] When using this invention, first press the side switch 4 to turn on the power. At this time, the microphone enters the working state. Then turn on the independent switch 4 on the back of the ring light 7, and the ring light 7 will also light up. According to the needs of the live broadcast scene, if it is necessary to adjust the lighting direction, you can hold the rotating ring 5 and apply external force to make it rotate. The inner toothed ring 501 and the outer toothed ring 102 will disengage to adjust the circumferential angle. After releasing your hand, it can be fixed. If it is necessary to adjust the elevation angle, directly push the ring light 7 to rotate it around the damping shaft 10 to a suitable angle. The damping force will be used to lock it. After use, turn off the switch 4.
[0057] All other parts of this utility model not described herein are the same as existing technologies, or are known technologies, or can be implemented using existing technologies, and will not be described in detail here.
[0058] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A handheld microphone for live streaming that can emit light, characterized in that, include: The microphone has a rotating groove (101) on the upper end face of the handle (1). The upper end face of the rotating groove (101) is fixedly connected to the connecting port (104). The outer toothed ring (102) of the connecting port (104) meshes with the inner toothed ring (501) of the rotating ring (5). By applying external force to rotate the rotating ring (5), the inner toothed ring (501) is disengaged from the outer gear and unlocked. The rotating ring (5) can rotate around the circumference of the rotating groove (101) to adjust the circumferential rotation angle of the ring-shaped flashlight (7). The adjusting component is rotatably connected to the rotating part (601) of the bracket (6) via a damping shaft (10). By adjusting the elevation angle of the ring light (7), the ring light (7) can be rotated at multiple angles in a plane perpendicular to the axis of the handle (1). The damping force of the damping shaft (10) is used to stabilize and fix the elevation angle position of the ring light (7).
2. A handheld microphone for live streaming with illumination as described in claim 1, characterized in that: The microphone includes a mesh head (2), and the lower end face of the mesh head (2) is integrally formed with a threaded connection part (201). The threaded connection part (201) is provided with an external thread, which cooperates with the internal thread (103) on the inner side of the connection port (104) to thread the mesh head (2) and the handle (1).
3. A handheld microphone for live streaming with illumination according to claim 1, characterized in that: The outer toothed ring (102) is integrally formed with the outer wall of the connecting port (104), and the tooth surface of the outer toothed ring (102) is polished to form a first smooth surface (8).
4. A handheld microphone for live streaming with illumination as described in claim 3, characterized in that: The internal toothed ring (501) is integrally formed with the inner wall of the rotating ring (5). The tooth surface of the internal toothed ring (501) is polished to form a second smooth surface (9). The first smooth surface (8) and the second smooth surface (9) can reduce the frictional resistance when the internal toothed ring (501) meshes with or separates from the external toothed ring (102).
5. A handheld microphone for live streaming with illumination according to claim 1, characterized in that: The adjusting component includes a rotating block (702), which is rotatably connected to the rotating part (601) at the top of the bracket (6) via a damping shaft (10). A connecting plate (703) is integrally formed on the upper end face of the rotating block (702). A through hole (704) is provided on the connecting plate (703). The connecting plate (703) is connected and fixed to the threaded hole on the back of the ring-shaped flashlight (7) by a mounting bolt (705) passing through the through hole (704).
6. A handheld microphone for live streaming with illumination according to claim 5, characterized in that: The bracket (6) is an L-shaped bracket (6), and the bottom end of the bracket (6) is integrally formed and connected to the outer side of the rotating ring (5).
7. A handheld microphone for live streaming with illumination according to claim 1, characterized in that: The lampshade (701) of the ring-shaped lighting lamp (7) is snapped into the ring-shaped lighting lamp (7) by a buckle. Multiple sets of lamp beads are electrically connected inside the lampshade (701). The light emitted by the lamp bead array is diffused by the diffuse reflection effect of the lampshade (701), thereby providing uniform live lighting.
8. A handheld microphone for live streaming with illumination according to claim 1, characterized in that: The microphone handle (1) has a connection end (3) at the bottom, which is connected to the microphone connector.
9. A handheld microphone for live streaming with illumination according to claim 1, characterized in that: A switch (4) is provided on the side of the microphone handle (1) to control the microphone power supply.