microphone

A compact microphone design with a windscreen and angled microphone units addresses wind noise issues, ensuring clear sound collection and reduced interference on mobile devices.

JP7843573B2Active Publication Date: 2026-04-10AUDIO TECHNICA CORP
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
AUDIO TECHNICA CORP
Filing Date
2024-11-18
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Conventional microphones face challenges in outdoor sound collection due to wind noise, particularly in high-speed environments, leading to sound cancellation and quality deterioration, and are often bulky, interfering with mobility and operations.

Method used

A compact microphone design with a housing and pair of microphone units positioned to face rearward and diagonally relative to the direction of travel, featuring a windscreen and mesh openings to deflect and attenuate wind, while maintaining sound quality and reducing air resistance.

Benefits of technology

The design effectively suppresses wind noise and maintains sound quality, allowing for clear sound collection and compact mounting on mobile devices, reducing interference and air resistance.

✦ Generated by Eureka AI based on patent content.

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Abstract

[Problem] To provide a microphone suitable for being installed in a moving object. [Solution] A microphone 1 to be installed in a moving object and configured to collect external sounds on right and left sides in the moving object traveling direction, the microphone 1 including: a pair of microphone units 102; a sound collection unit disposed at a tip of the microphone units 102; and a housing 10 in which an opening 10a communicating with a housing part 101 housing the microphone units 102 is provided on a side surface that follows the moving object traveling direction, wherein in a condition of being installed in the moving object, the microphone units 102 are held in a direction in which the sound collection unit is oriented rearward and obliquely relative to the traveling direction.
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Description

Technical Field

[0001] The present invention relates to a microphone.

Background Art

[0002] Conventionally, as technologies for microphones in situations affected by wind, there are known microphone covers that suppress pressure fluctuations caused by wind inside the cover while allowing sound waves to pass through, and high-speed airflow noise prevention microphone devices that detect sound in a high-speed airflow without generating self-generated sound of the microphone (see, for example, Patent Documents 1 and 2).

Prior Art Documents

Patent Documents

[0003]

Patent Document 1

Patent Document 2

[0004] In this regard, wind is a noise source for microphones, and there has always been a problem of how to avoid wind in outdoor sound collection. Especially on the vehicle body of motor sports moving at high speed, even if there is no wind due to the weather, a relatively strong air flow occurs, making it difficult to mount a microphone on the vehicle body for sound collection. This is because when the microphone is directly hit by strong wind, the sound cancels out the target sound. Therefore, conventionally, the microphone has been wrapped with a porous material so that the wind does not directly hit the microphone. However, with this method, the sound quality deteriorates due to the sound absorption of the porous material. Also, in competitions such as motor sports, it is preferable that the mounted microphone is compact. If the microphone is large, it may interfere with the competition itself, such as increasing air resistance and weight, or interfering with video shooting, and in some cases, it may even be impossible to mount.

Summary of the Invention

Problems to be Solved by the Invention

[0005] One of the objectives of this invention is to provide a microphone suitable for mounting on mobile devices. [Means for solving the problem]

[0006] The microphone according to the present invention is mounted on a mobile body and picks up external sounds to the left and right in the direction of travel of the mobile body, and comprises a pair of microphone units, a sound-collecting section disposed at the tip of the microphone units, and a housing having an opening communicating with a housing section that houses the microphone units, which is provided on the side of the mobile body along the direction of travel, wherein, when mounted on the mobile body, the microphone units are held in a direction in which the sound-collecting section faces rearward and diagonally to the side with respect to the direction of travel. [Effects of the Invention]

[0007] The microphone according to the present invention is suitable for mounting on mobile devices. [Brief explanation of the drawing]

[0008] [Figure 1] This is a perspective view of a microphone according to one embodiment of the present invention, viewed from the front. [Figure 2] This is a perspective view of the microphone according to the embodiment described in 1 above, viewed from the rear. [Figure 3] This is a front view of the microphone according to the embodiment described in 1 above. [Figure 4] This is a perspective view of the holder that constitutes the microphone according to the embodiment described in 1 above. [Figure 5] This is a partial cross-sectional view AA showing the internal mechanism of the microphone according to embodiment 1 described above, with some parts omitted. [Figure 6] This is a perspective view of the fixing member that secures the microphone unit inside the housing. [Figure 7] This graph shows the frequency characteristics of the microphone according to the above embodiment 1. [Modes for carrying out the invention]

[0009] The following describes a microphone according to an embodiment of the present invention. The microphone according to the present invention is a device mounted on a mobile body to pick up external sounds, and the microphone 1 shown in Figure 1 is one example thereof. A mobile object is an object used for the purpose of moving in a predetermined direction, and includes, for example, two-wheeled or four-wheeled vehicles, snowmobiles, ships, jet skis, aircraft, drones, and autonomous mobile robots. This mobile object may be driven by either machinery or human power, and may be a person or an animal. Furthermore, the mobile object may or may not be for riding, and may move on land, water, or in the air. In the following explanation, unless otherwise specified, the direction in which the moving object is intended to move forward will be referred to as the direction of travel. In each diagram, the x-direction is the direction of travel of the moving object. Also, the side of microphone 1 that is in the direction of travel may be referred to as the front, and the side opposite to the direction of travel of microphone 1 may be referred to as the rear.

[0010] In this embodiment, external sound refers to the target sound that is to be captured. In the example where microphone 1 is used in motorsport, the target sounds are expected to be the sound of the vehicle's engine, cheers, and conversations between drivers and staff.

[0011] Regarding mounting, microphone 1 may be attached separately to the mobile device, or it may be manufactured to be integrated with the mobile device. Furthermore, microphone 1 may be attached to a helmet or similar device worn by people walking, running, or participating in sports such as skydiving or skiing.

[0012] The microphone 1 may also be equipped with other functional components, such as an imaging unit like a CCD camera. The imaging unit may be integrally mounted on the top of the microphone 1 and capture images in the direction of travel.

[0013] As shown in FIGS. 1 and 5, the microphone 1 according to the embodiment 1 has a housing 10, a microphone unit 102, and a windscreen 11.

[0014] ● Housing 10 As shown in FIG. 5, the housing 10 includes a hollow accommodation portion 101, and accommodates the microphone unit 102, an electric circuit, etc. inside the accommodation portion 101. The housing 10 is, for example, made by machining a solid material made of an aluminum alloy, and it is preferable that it is lightweight and difficult to transmit vibration caused by wind to the microphone unit 102. This housing 10 is placed at a predetermined position of the moving body, and is attached to the moving body by connecting a connecting member such as a screw to the moving body or by adhering with an adhesive. oh Alternatively, the housing 10 and the moving body may be integrally formed.

[0015] The housing 10 has a shorter length in the width direction orthogonal to the traveling direction than the length in the traveling direction. Further, the end portion on the traveling direction side of the housing 10 is formed in a V shape in plan view and is formed to be gradually wider from the front to the rear. Thereby, the wind blowing on the microphone 1 as the moving body moves flows smoothly along the surface of the housing 10 from the front to the rear of the housing 10, and the air resistance generated by the housing 10 during the movement of the moving body can be suppressed.

[0016] As shown in FIGS. 1 and 2, on the side surface (the surface in the y direction) of the housing 10, on the side surface along the traveling direction of the moving body, an opening 10a communicating with the accommodation portion 101 is provided. The opening 10a is provided facing the rear in the traveling direction of the moving body with respect to or from a direction orthogonal to the traveling direction of the moving body. Thereby, the wind blowing on the microphone 1 from the traveling direction as the moving body moves does not directly enter the opening 10a. A pair of openings 10a are provided on both side surfaces in the width direction (y direction) perpendicular to the traveling direction of the moving body. Thereby, the microphone 1 picks up external sounds on the left and right in the traveling direction of the moving body and obtains stereo sound.

[0017] The opening 10a may be covered with a mesh member. The mesh member may be a sheet member made of a breathable fibrous material or metal material that allows external sounds to reach the microphone unit 102 inside the housing 101. The mesh member may also be water-repellent. Water repellency may be inherent in the material of the mesh member itself, or it may be achieved by applying a water-repellent treatment. This prevents rain from blowing into the opening 10a.

[0018] ● Microphone unit 102 As shown in Figure 5, the microphone unit 102 is housed within the housing 10 along with the electrical circuit and picks up external sounds. The microphone unit 102 is omnidirectional and picks up external sounds that enter the housing 101 through the opening 10a within the housing 101. The microphone unit 102 is connected to the electrical circuit, which processes the audio signal that has been electroacoustically converted by the microphone unit 102. The electroacoustic conversion method of the microphone unit 102 is arbitrary; for example, it may be a condenser type or a dynamic type. Furthermore, the data processed by the electrical circuit is transmitted to an external device, for example, by wireless communication. Additionally, terminals for wired connection to the electrical circuit may be provided at predetermined locations on the housing 10.

[0019] A pair of microphone units 102 are provided, corresponding to the openings 10a on both sides of the housing 10. The pair of microphone units 102 are substantially cylindrical in shape, and a sound-collecting section 1021 for picking up external sounds is provided at the tip. Furthermore, when mounted on the mobile body, the pair of microphone units 102 are held so that the sound-collecting section 1021 faces rearward and diagonally to the side relative to the direction of travel of the mobile body. On the other hand, the end opposite to the side on which the sound-collecting section 1021 is located is housed diagonally forward from the opening 10a so that they are close together. This reduces the width of the housing 10 and reduces the wind resistance that the housing 10 experiences due to the movement of the mobile body.

[0020] Furthermore, when the pair of microphone units 102 are mounted on the mobile body, the sound-collecting section 1021 is held in a direction that is obliquely downward relative to the direction of movement of the mobile body. This makes it difficult for moisture such as rain to enter the interior from the outside through the opening 10a.

[0021] The pair of microphone units 102 are held within the housing 101 by a fixing member 103. The fixing member 103 is positioned within the housing 101 of the housing 10 so as to fill the space within the housing 10. This fixing member 103 houses the microphone unit 102 within its inner hollow portion 1031. An O-ring 104 is provided between the inner wall of the hollow portion 1031 and the outside of the microphone unit 102. The O-ring 104 fills the gap between the inner wall of the hollow portion 1031 and the outside of the microphone unit 102, fixing the microphone unit 102 within the hollow portion 1031. This O-ring 104 is made of, for example, elastic or flexible rubber. This prevents the microphone unit 102 from wobbling within the hollow portion 1031, reduces the transmission of fixed vibrations from the housing 10, and prevents sound degradation due to fixed vibrations.

[0022] As shown in Figure 6, the fixing member 103 consists of a base portion 1032 at one end and a pair of ends 1033 that branch out from the base portion 1032 in a bifurcated manner. An opening 1032a is provided in front of the base 1032. Wiring connected to the microphone unit 102 housed in the hollow section 1031 is routed out through this opening 1032a and connected to the electrical circuit housed inside the housing 10.

[0023] A communication hole 1034 is formed on the end face of the end portion 1033, communicating with the opening 10a and the hollow portion 1031. The communication hole 1034 is located at the rear end in the direction of travel of the hollow portion 1031, and is positioned corresponding to the sound-collecting portion 1021. The communication hole 1034 is smaller than the opening 10a and is exposed to the outside from the opening 10a of the housing 10 when the fixing member 103 is housed in the housing 10. External sound is picked up by the microphone unit 102 inside the hollow portion 1031 through this communication hole 1034.

[0024] Furthermore, the communication hole 1034 has a first communication hole 10341 and a second communication hole 10342. The first communication hole 10341 is connected to the opening 10a. The second communication hole 10342 connects the first communication hole 10341 to the hollow portion 1031. The diameter of the second communication hole 10342 is smaller than the diameter of the first communication hole 10341, and the communication hole 1034 has a step at the boundary between the first communication hole 10341 and the second communication hole 10342. In addition, at least the diameter of the second communication hole 10342 is smaller than the diameter of the sound-collecting section 1021. With this configuration, resonance in the communication hole 1034 can be reduced, so external sounds can be collected more accurately. Notwithstanding this embodiment, the diameter of the communication hole 1034 may be the same along its entire length in the axial direction, and its diameter may be smaller than the diameter of the sound-receiving section 1021.

[0025] The upper and lower surfaces of the fixing member 103 in its housed state are each provided with screw holes 1035 for connecting the fixing member 103 to the housing section 101 by screwing or the like. Correspondingly, the housing section 101 of the housing 10 is provided with screw holes into which screws inserted through the screw holes 1035 are screwed. When screws inserted through the screw holes 1035 are screwed into these screw holes, the fixing member 103 is screwed into the housing section 101. Note that the screw holes 1035 may be provided on only one of the upper or lower surfaces of the fixing member 103. Furthermore, the means for fixing the fixing member 103 to the housing section 101 may be other than screwing, such as bonding with adhesive.

[0026] Since the fixing member 103 is housed within the housing 101, filling the space within the housing 101, and the fixing member 103 is secured within the housing 101 by the O-ring 104, the microphone 1 can prevent resonance within the housing 101. In addition, as the microphone unit 102 is separated from the housing 10 by the fixing member 103, vibrations and temperatures of the housing 10 are not directly transmitted to the microphone unit 102, thus suppressing the effects of vibration and temperature and enabling clear external sound collection. Furthermore, because the opening 10a and the sound-receiving section 1021 are separated by the length of the communication hole 1034, moisture such as rain and dust are less likely to reach the sound-receiving section 1021, thus preventing deterioration and damage to the sound-receiving section 1021.

[0027] ● Windshield 11 As shown in Figures 1 and 2, the windshield 11 is mounted on the side of the housing 10, in the direction of travel of the moving body as viewed from the opening 10a. As shown in Figures 3 and 4, the windscreen 11 comprises a main body 12 and a holder 13 that holds the main body 12.

[0028] The main body 12 is made of a porous material such as urethane foam. The main body 12 is held by the holder 13, which deflects the wind blowing onto the microphone 1 as the mobile body moves. As a result of the main body 12 deflecting the wind, the force of the wind is sufficiently attenuated before it reaches the opening 10a, and wind noise can be suppressed. Furthermore, if the main body 12 is made of a flexible material such as urethane foam, vibrations caused by the wind are absorbed by the main body 12, and solid vibrations are not transmitted to the microphone unit 102. Note that the material of the main body 12 may be faux fur or the like.

[0029] The retainer 13 consists of a plurality of thin plate-shaped retaining pieces 1311, 1312, 1313, and 1314, and a thin plate-shaped connecting piece 132 that integrally connects them. The retainer 13 is made of a hard material such as metal or plastic. In this embodiment, when referring to the plurality of retaining pieces 1311, 1312, 1313, and 1314 without individually identifying them, they may be referred to as "retaining piece 131".

[0030] Each retaining piece 131 is approximately semicircular in shape and is spaced apart from each other in the thickness direction (z direction). Each retaining piece 131 is arranged so that its length is aligned with the direction of movement of the moving body. As a result, the wide surface of each retaining piece 131 faces approximately vertically (z direction), so that it is not affected by wind resistance associated with the movement of the moving body.

[0031] Of the side edges of each retaining piece 131, the side edges 1311a, 1312a, 1313a, and 1314a that are positioned on the side surface of the housing 10 have a shape that conforms to the side shape of the housing 10. These side edges 1311a, 1312a, 1313a, and 1314a are connected to the wide first surface of the connecting piece 132. The second, wider surface of the connecting piece 132, opposite to the first surface, has a shape that conforms to the side shape of the housing 10. This second surface is directly attached to the side of the housing 10 with adhesive or with adhesive tape. As a result, the holder 13 is attached to the side of the housing 10 without any gaps, and will not easily detach regardless of the wind conditions associated with the movement of the mobile body.

[0032] Of the retaining pieces 131, retaining pieces 1312 and 1313, located between retaining pieces 1311 and 1314, have locking holes 1312b and 1313b, respectively, for inserting and locking the main body 12. The locking holes 1312b and 1313b open in the vertical direction (z direction) perpendicular to the direction of travel. Furthermore, retaining pieces 1311 and 1314 do not have holes corresponding to the locking holes 1312b and 1313b. As a result, the main body 12 is locked in place by being inserted through the locking holes 1312b and 1313b, from retaining piece 1311 to retaining piece 1314, without slipping out in the vertical direction. Also, as shown in Figure 3, when the main body 12 is locked in the locking holes 1312b and 1313b, it is exposed from between the retaining pieces 131 toward the direction of travel, and this part is exposed to wind. In this embodiment, four retaining pieces 131 are provided, but the number is not limited.

[0033] As shown in Figure 2, the windshield 11 is mounted in the direction of travel of the moving body when viewed from the opening 10a. As a result, the opening 10a is exposed to the outside without being covered by the windshield 11. The vertical length of the opening 10a is the same as or shorter than the length between the retaining pieces 1312 and 1313. Furthermore, the opening 10a is positioned so that it is hidden by the main body 12 in the portion between the retaining pieces 1312 and 1313 when viewed from the direction of travel of the moving body. As a result, wind blowing towards the opening 10a from the direction of travel of the moving body is reliably attenuated by the main body 12 before it reaches the opening 10a.

[0034] In this embodiment, the microphone 1 is not covered by the windscreen 11, thus preventing deterioration of the sound quality of the target sound. Furthermore, the wind blowing onto the microphone 1 as the mobile body moves is deflected and attenuated by the main body 12, thus suppressing wind noise. In addition, since the holder 13 consists of multiple holding pieces 131, wind vortices are divided into finer vortices by these multiple holding pieces 131, preventing the generation of large vortices. Moreover, the overall design is compact and can be easily mounted on a mobile body. Furthermore, it does not interfere with the use of the mobile body, and the air resistance generated during movement is sufficiently suppressed.

[0035] ● Frequency characteristics Figure 7 is a graph showing the frequency characteristics of the sound during sound recording, and shows the experimental results comparing the acoustic characteristics of microphone 1 equipped with a windscreen 11 (line m1) and the acoustic characteristics of microphone without a windscreen 11 (line m2). In this experiment, blowers were placed in front of both microphone 1 equipped with a windscreen 11 and microphone without a windscreen 11 to recreate an environment where wind blows on a moving object. This indicates that differences in sound pressure occur across a wide frequency range. In particular, below approximately 5 kHz, a sound pressure difference of about 10 dB occurs, indicating that wind noise is sufficiently reduced. The peak around 10 kHz is the peak of sound emitted by the blower used in the experiment.

[0036] In this embodiment, the windscreen 11 is attached to the side of the housing 10. However, in other embodiments, it may be integrally formed with the housing 10. In this embodiment, the main body 12, made of a porous material, is held by the retainer 13. On the other hand, in other embodiments, the main body 12 may be directly bonded to the side surface of the housing 10 without providing the retainer 13. Various methods can be used for bonding, such as bonding with an adhesive or bonding via adhesive tape.

[0037] Furthermore, the technical scope of the present invention is not limited to the scope described in the above embodiments, and various modifications and changes are possible within the scope of its gist. Embodiments that arbitrarily combine multiple embodiments, and embodiments that arbitrarily combine some of the configurations of various embodiments are also included in the embodiments of the present invention. The effects of the new embodiments resulting from the combinations will also have the effects of the original embodiments. [Explanation of symbols]

[0038] 1: Microphone 10: Cabinet 10a: opening 101: Containment Unit 102: Microphone Unit 1021: Sound collection section 103: Fixing member 1031 :Hollow part 1034:Communication hole 10341: 1st communication hole 10342: 2nd communication hole 11: Windshield 12: Main unit 13: Holding body 131: Holding piece

Claims

1. A microphone mounted on a mobile device, which picks up external sounds from the left and right sides in the direction of travel of the mobile device, A pair of microphone units, The sound-collecting section is disposed at the tip of the aforementioned microphone unit, A housing has an opening that communicates with a housing that accommodates the microphone unit, and the housing is provided on a side along the direction of travel of the mobile body. Equipped with, When the microphone unit is mounted on the mobile body, the sound-collecting section is held in a direction that is rearward and obliquely to the side with respect to the direction of travel. Microphone.

2. When the microphone unit is mounted on the mobile body, the sound-collecting section is held in a direction that is obliquely downward with respect to the direction of travel. The microphone according to claim 1.

3. The housing section is further provided with a fixing member that houses and holds the pair of microphone units, The aforementioned fixing member is A hollow section housing the pair of microphone units, A communication hole is provided at the rear end of the hollow section in the direction of travel, at a position corresponding to the sound-collecting section, and communicating with the opening, Equipped with, The microphone according to claim 1.

4. The diameter of the communication hole is smaller than the diameter of the sound-collecting section. The microphone according to claim 3.

5. The aforementioned communication hole is, A first communication hole connected to the opening, The first communication hole and the hollow portion are connected, and the second communication hole has a smaller diameter than the first communication hole. The microphone according to claim 3.

6. The opening is positioned perpendicular to the direction of travel or slightly behind it. The microphone according to claim 1.

7. The aforementioned openings are provided in pairs on both sides in the width direction which is substantially perpendicular to the direction of travel. The microphone according to claim 1.

Citation Information

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