This application claims the benefit of Chinese Patent Application No. 202110651917.8, filed on Jun. 11, 2021, entitled “Diaphragm Assembly, Loudspeaker Module and Electronic Device”, which is incorporated herein by reference in its entirety.
The present disclosure relates to the technical field of electro-acoustic conversion, and more particularly to a diaphragm assembly, a loudspeaker module and an electronic device.
Loudspeaker is a common electro-acoustic conversion device. A large number of electronic products configure a loudspeaker to play sound. The electronic product gradually develops to miniaturization and thinness, therefore the space for configuring a loudspeaker module in the electronic product becomes smaller and smaller, which puts forward a higher requirement for the miniaturization of the loudspeaker module. In the prior art, in order to reduce the volume of a small or miniature loudspeaker module, some of the tone effect is correspondingly sacrificed, thereby affecting the use experience of a user. In order to improve the use experience of the user, it is required to design a loudspeaker module giving consideration to miniaturization and good acoustic performance.
The objective of the embodiments of the present disclosure is to provide a diaphragm assembly, a loudspeaker module and an electronic device, capable of solving the above problem existing in the prior art.
In the first aspect, embodiments of the present disclosure provide a diaphragm assembly, including a diaphragm body and an intermediate patch plate, wherein the diaphragm body includes a first diaphragm body and a second diaphragm body; the first diaphragm body is provided with a first hole; the second diaphragm body at least partially covers the first hole; the intermediate patch plate is connected to the diaphragm body, and includes first intermediate patch plate; the first intermediate patch plate is connected to the first diaphragm body and the second diaphragm body; and the first intermediate patch plate has an enclosed structure.
Further, a first concavity portion is disposed in the middle of the first intermediate patch plate; the second diaphragm body is provided with a second hole; and the first concavity portion is accommodated in the second hole.
Further, the first diaphragm body includes an outer connecting portion, an inner connecting portion, and a corrugated rim disposed between the outer connecting portion and the inner connecting portion; the first intermediate patch plate is connected to the inner connecting portion; and the outer connecting portion is used to fixedly mount the diaphragm assembly.
Further, the second diaphragm body has an enclosed structure.
Further, the second diaphragm body is provided with a second hole.
Further, the first diaphragm body and the second diaphragm body are connected to the same side surface of the first intermediate patch plate; or the first diaphragm body and the second diaphragm body are connected to different side surfaces of the first intermediate patch plate.
In the second aspect, embodiments of the present disclosure further provide another diaphragm assembly, including a diaphragm body and an intermediate patch plate, wherein the diaphragm body includes a first diaphragm body and a second diaphragm body; the first diaphragm body is provided with a first hole; the second diaphragm body at least partially covers the first hole; the intermediate patch plate is connected to the diaphragm body, and includes a first intermediate patch plate and a second intermediate patch plate; the first intermediate patch plate is provided with a third hole; the second intermediate patch plate is disposed in the third hole; the first intermediate patch plate is connected to the first diaphragm body and the second diaphragm body; and the second intermediate patch plate is connected to the second diaphragm body.
Further, the second intermediate patch plate has an enclosed structure.
Further, a second concavity portion is disposed in the middle of the second intermediate patch plate; the second diaphragm body is provided with a second hole; and the second concavity portion is accommodated in the second hole.
Further, the second intermediate patch plate is provided with a fourth hole.
Further, a gap is disposed between the second intermediate patch plate and inwall of the third hole.
Further, the first intermediate patch plate and the second intermediate patch plate are connected to the same side surface of the second diaphragm body; or the first intermediate patch plate and the second intermediate patch plate are connected to different side surfaces of the second diaphragm body.
Further, the first diaphragm body includes an outer connecting portion, an inner connecting portion, and a corrugated rim disposed between the outer connecting portion and the inner connecting portion; the first intermediate patch plate is connected to the inner connecting portion; and the outer connecting portion is used to fixedly mount the diaphragm assembly.
Further, the second diaphragm body has an enclosed structure.
Further, the second diaphragm body is provided with a second hole.
Further, the first diaphragm body and the second diaphragm body are connected to the same side surface of the first intermediate patch plate; or the first diaphragm body and the second diaphragm body are connected to different side surfaces of the first intermediate patch plate.
In the third aspect, embodiment of the present disclosure further provide a loudspeaker module, including a frame, a magnetic circuit system, and a vibration system, wherein the magnetic circuit system is used to form a magnetic field; the vibration system includes a voice coil and the diaphragm assembly as described in the first aspect or the second aspect; the diaphragm body is connected to the frame; the voice coil is disposed in the magnetic field formed by the magnetic circuit system; the voice coil is configured to drive the diaphragm assembly to vibrate under the drive of the varying magnetic field generated by the magnetic circuit system.
In the fourth aspect, embodiments of the present invention further provide an electronic device, including at least one loudspeaker module as described in the third aspect.
Provided in embodiments of the present disclosure are a diaphragm assembly, a loudspeaker module and an electronic device, the diaphragm assembly including a diaphragm body and an intermediate patch plate, wherein the diaphragm body includes a first diaphragm body and a second diaphragm body; the first diaphragm body is provided with a first hole; the intermediate patch plate includes a first intermediate patch plate; the second diaphragm body at least partially cover the first hole; the first intermediate patch plate is respectively connected to the first diaphragm body and the second diaphragm body; the first intermediate patch plate is configured to have an enclosed structure, or the intermediate patch plate includes a second intermediate patch plate connected to the second diaphragm body, such that the mid-high frequency curves of the loudspeaker module are smoother, thereby effectively improving the mid-high frequency tone quality; furthermore, the diaphragm assembly has a compact structure, thereby facilitating the miniaturization of the loudspeaker module and the electronic device.
Through the following description of the embodiments of the present disclosure with reference to the drawings, the above and other objectives, features and advantages of the present disclosure will become more apparent, wherein:
The present disclosure is described below on the basis of the embodiments, but is not merely limited to these embodiments. Specific details are described in detail in the following detailed description of the present disclosure. The present disclosure can also be fully understood by a person skilled in the art without the description of the details. In order to avoid confusing the essence of the present disclosure, commonly known method, process, flow, element and circuit are not described in detail.
In addition, a person skilled in the art should understand that the drawings herein are provided for the purpose of description only, and are not necessarily drawn in proportion.
Unless otherwise stated, the terms “comprise”, “include” and the like in the specification shall be interpreted as inclusive rather than exclusive or exhaustive; in other words, the terms mean “include but not limited to”.
In the descriptions of the present disclosure, it should be understood that the terms like “first”, “second” and the like are used for the purpose of description only, but cannot be considered to indicate or imply relative importance. In addition, in the descriptions of the present disclosure, unless otherwise stated, the meaning of “a plurality of” is two or more.
With reference to
A minimum resonance frequency of the first diaphragm body 11 and the second diaphragm body 21 (or 22) can be changed by adjusting the rigidities of the first diaphragm body 11 and the second diaphragm body 21 (or 22), the masses of the first diaphragm body 11, the second diaphragm body 21 (or 22) and the intermediate patch plate, and other features; specifically, the diaphragm assembly can have an expected acoustic performance by performing the adjustment according to an acoustic performance simulation result. During operation, the first diaphragm body 11 and the second diaphragm body 21 (or 22) cooperate with the first intermediate patch plate 31 (or 32, or 33) to generate a plurality of resonance modes; and the middle frequency sensitivity of the entire diaphragm assembly can be smoother.
The diaphragm bodies are made from a thin film material suitable for reciprocating vibration under drive; the materials for making the first diaphragm body 11 and the second diaphragm body 21 (or 22) include but not limited to a paper film, a metal film, a macromolecule film, composite diaphragms (for example, a carbon fiber diaphragm, a biological composite diaphragm) and the like. The specific materials of the first diaphragm body 11 and the second diaphragm body 21 (or 22) can be selected according to the frequency response characteristic that the diaphragm assembly is expected to have. The first diaphragm body 11 and the second diaphragm body 21 (or 22) can select the same material, and can also select different materials.
The shapes of the diaphragm bodies can be designed according to an application scenario of the diaphragm assembly and the frequency characteristic that the diaphragm assembly is expected to have; the outer contours of the first diaphragm body 11 and the second diaphragm body 21 (or 22) can be circular, elliptical, rectangular, polygonal or other shapes suitable for practical use. The shape of the second diaphragm body 21 (or 22) can be similar to that of the first diaphragm body 11, and can also be totally different. The shape of the first hole 111 of the first diaphragm body 11 can be basically the same as the outer contour shape of the first diaphragm body 11. The outer contour shape of the second diaphragm body 21 (or 22) can also be basically the same as the shape of the first hole 111. In some embodiments, with reference to
The second diaphragm body 21 (or 22) can cover the entire first hole 111, and can also cover only some region of the first hole 111. The projection of the second diaphragm body 21 (or 22) in the axial direction of the first diaphragm body 11 can have an overlapped portion with the first diaphragm body 11, and can also only have an overlapped portion with the first hole 111.
The second diaphragm body can have an enclosed structure, and can also be provided with a second hole 221. In the present application, the “enclosed structure” means that a complete surface is provided and no through hole in the axial direction is disposed in a region within the outer contour. In one embodiment, with reference to the three different diaphragm assemblies shown in
The intermediate patch plate can be made from a material with a certain rigidity, such as a metal sheet, a hard macromolecular material, a composite plate and the like. The intermediate patch plate is connected to the diaphragm body, and can reduce the deformation of the diaphragm body in a high frequency band, thereby ensuring the quality of the high frequency. In some embodiments, the intermediate patch plate is an aluminum sheet; the aluminum sheet has a great rigidity, and is not easy to deform; furthermore, aluminum is not a magnetic material, and has no impact on the magnetic induction of a voice coil, thereby avoiding generating an adverse effect on the vibration of the voice coil. The frequency response characteristic of the diaphragm assembly can be adjusted by adjusting the mass of the intermediate patch plate and selecting the intermediate patch plates made from different materials.
The first diaphragm body 11 and the second diaphragm body 21 (or 22) can be adhered at a certain position on the first intermediate patch plate 31 (or 32, or 33) by means of an adhesive agent, an adhesive tape or other connecting structures or connectors, such that the first diaphragm body 11 and the second diaphragm body 21 (or 22) are firmly connected to the first intermediate patch plate 31 (or 32, or 33). The first intermediate patch plate 31 (or 32, or 33) includes a first side surface and second side surface which are opposite; the first diaphragm body 11 and the second diaphragm body 21 (or 22) can be connected to the same side surface of the first intermediate patch plate 31 (or 32, or 33), and can also be connected to different side surfaces of the first intermediate patch plate 31 (or 32, or 33); specifically, an appropriate connection order can be selected according to different configuration space and assembly modes of the diaphragm assembly. When the first intermediate patch plate 31 (or 32, or 33) is in a tabular shape and has a uniform thickness, the first side surface is basically in parallel with the second side surface.
In one embodiment, with reference to
In another embodiment, with reference to
In some embodiments, with reference to
In one embodiment, with reference to
In one embodiment, with reference to
In some embodiments, with reference to
The shape of the second intermediate patch plate 41 (or 42, or 43) can match the shapes of the second diaphragm body 21 (or 22) and the third hole 331. The outer contour of the second intermediate patch plate 41 (or 42, or 43) can be smaller than the outer contour of the second diaphragm body 21 (or 22); and the edge of the second intermediate patch plate 41 (or 42, or 43) does not protrude out of the outer edge of the second diaphragm body 21 (or 22). When the second diaphragm body 22 is provided with a second hole 221, the size of the second intermediate patch plate 41 (or 42, or 43) shall adapt to the size of the second hole 221, such that the second intermediate patch plate 41 (or 42, or 43) can be firmly connected to the second diaphragm body 22. The second intermediate patch plate 41 (or 42, or 43) is connected to the second diaphragm body 21 (or 22); therefore, the size of the second intermediate patch plate 41 (or 42, or 43) is small, thereby improving the resonance frequency of the second intermediate patch plate 41 (or 42, or 43), to avoid generating a sharp peak and valley in a high frequency part, improving the sound quality of the diaphragm assembly.
The second intermediate patch plate 41 (or 42, or 43) and the first intermediate patch plate can be made from the same material, and can also be made from different materials; the specific material can be selected according to the acoustic performance that the diaphragm assembly is expected to have.
The second intermediate patch plate 41 (or 42, or 43) can have an enclosed structure, and can also be provided with a fourth hole 431; the specific design can be made according to the acoustic performance simulation result. The frequency response characteristic of the diaphragm assembly can be adjusted by adjusting the shape of the second intermediate patch plate 41 (or 42, or 43). In one embodiment, with reference to the two diaphragm assemblies shown in
In some embodiments, with reference to
The second diaphragm body 21 (or 22) includes two opposite side surfaces; the first intermediate patch plate 33 and the second intermediate patch plate 41 (or 42, or 43) can be connected to the same side surface of the second diaphragm body 21 (or 22) (refer to
The diaphragm assembly in at least some embodiments of the present disclosure can be applied to an electro-acoustic conversion device; optionally, the diaphragm assembly can be applied to a loudspeaker module.
In some embodiments, the loudspeaker module includes a housing 60, wherein the housing 60 is provided with a sound guide tube 62; an accommodation space is formed in the housing 60; and the diaphragm assembly X divides the accommodation space into a front cavity and a rear cavity. The sound guide tube 62 is connected to the front cavity; the sound waves generated by the vibration of the diaphragm assembly X is propagated from the sound guide tube 62 to outside of the loudspeaker module; and the magnetic circuit system 70 is disposed in the rear cavity. The frame 61 is fixed in the housing 60, or the frame 61 can be a part of the housing 60.
In a miniature loudspeaker module, limited by the system space for configuring the loudspeaker module, the sound guide tube 62 is generally disposed in a side direction of the housing 60; that is, the sound guide tube 62 is disposed in a side direction of the diaphragm assembly X, and forms a certain angle (for example, 90 degrees) with the axial direction of the diaphragm assembly X; when the diaphragm assembly X vibrates, the air in the front cavity is pushed to flow out from the guide tube, so as to form side sound. The sound generated by the loudspeaker module resonates with the front cavity and therefore generates a sharp peak in the middle frequency range, thereby greatly affecting the sense of hearing. In a comparative technical solution, the problem of generating a sharp peak and valley in the middle frequency can be effectively solved by adding an acoustic resonant cavity which connects with the front cavity, however, this solution will inevitably increase the overall size of the loudspeaker module. In the application of the diaphragm assembly in at least some embodiments of the present disclosure, by adjusting the parameters such as the rigidity of the second diaphragm body 21 (or 22), and the masses of the second diaphragm body 21 (or 22) and/or the second intermediate patch plate 41 (or 42, or 43) when the diaphragm assembly includes the second intermediate patch plate, the lowest resonance frequency of the second diaphragm is ensured to be close to the resonance frequency of the front cavity; therefore, the intermediate frequency curve of the diaphragm assembly is smoother owing to the generation of two formants. Compared with the solution of adding an additional acoustic resonant cavity, the diaphragm assembly in the embodiments of the present disclosure does not occupy additional space, thereby facilitating the miniaturization of the loudspeaker module.
The loudspeaker module in at least some embodiments of the present disclosure can be applied to an electronic device. In the present application, the electronic device can be any electronic device having the sound generation requirement, including but not limited to a headphone, an acoustics, a mobile phone, a computer, a game console and the like.
Provided in embodiments of the present disclosure are a diaphragm assembly, a loudspeaker module and an electronic device, the diaphragm assembly including a diaphragm body and an intermediate patch plate, wherein the diaphragm body includes a first diaphragm body and a second diaphragm body; the first diaphragm body is provided with a first hole; the intermediate patch plate includes a first intermediate patch plate; the second diaphragm body at least partially cover the first hole; the first intermediate patch plate is respectively connected to the first diaphragm body and the second diaphragm body; the first intermediate patch plate is configured to have an enclosed structure, or the intermediate patch plate includes a second intermediate patch plate connected to the second diaphragm body, such that the mid-high frequency curves of the loudspeaker module are smoother, thereby effectively improving the mid-high frequency tone quality; furthermore, the diaphragm assembly has a compact structure, and no extra acoustic resonant cavity is required to be disposed in the loudspeaker module, thereby facilitating the miniaturization of the loudspeaker module and the electronic device.
The descriptions above are only preferred embodiments of the present disclosure, but are not intended to limit the present disclosure. For a person skilled in the art, the present disclosure may have various changes and variations. Any modifications, equivalent substitutions, improvements and the like made within the spirit and principles of the present disclosure are all intended to be concluded in the protection scope of the present disclosure.
Number | Date | Country | Kind |
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202110651917.8 | Jun 2021 | CN | national |
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Number | Date | Country | |
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20220400346 A1 | Dec 2022 | US |