WO2021031485A1 - Dispositif acoustique et appareil électronique - Google Patents

Dispositif acoustique et appareil électronique Download PDF

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Publication number
WO2021031485A1
WO2021031485A1 PCT/CN2019/127841 CN2019127841W WO2021031485A1 WO 2021031485 A1 WO2021031485 A1 WO 2021031485A1 CN 2019127841 W CN2019127841 W CN 2019127841W WO 2021031485 A1 WO2021031485 A1 WO 2021031485A1
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WO
WIPO (PCT)
Prior art keywords
wall
cavity
acoustic device
protective cover
housing
Prior art date
Application number
PCT/CN2019/127841
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English (en)
Chinese (zh)
Inventor
张军
陈阿亮
Original Assignee
歌尔股份有限公司
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Filing date
Publication date
Application filed by 歌尔股份有限公司 filed Critical 歌尔股份有限公司
Publication of WO2021031485A1 publication Critical patent/WO2021031485A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R1/00Details of transducers, loudspeakers or microphones
    • H04R1/02Casings; Cabinets ; Supports therefor; Mountings therein

Definitions

  • the present invention relates to the technical field of acoustics, and more specifically, to an acoustic device and an electronic device equipped with the acoustic device.
  • an acoustic system with a traditional structure includes a closed box and a sound unit arranged on the closed box. A cavity is formed between the closed box and the sound unit. Because of the cavity in the acoustic system Due to the limited volume, it is difficult for acoustic systems, especially small acoustic systems, to achieve satisfactory bass reproduction. Conventionally, in order to achieve satisfactory bass reproduction in an acoustic system, two methods are usually used. One is to install sound-absorbing materials (such as activated carbon, zeolite, etc.) in the cabinet of the acoustic system for adsorption or desorption. The gas in the body has the effect of increasing the volume and reducing the low-frequency resonance frequency.
  • sound-absorbing materials such as activated carbon, zeolite, etc.
  • the other is to install a passive radiator on the box of the acoustic system (Prior Art 2), as shown in Figure 1, where 10 is sound
  • the unit, 20 is the box of the acoustic system
  • 30 is the passive radiator
  • the sound unit and the passive radiator radiate sound to the outside at the same time, using the principle of strong resonance between the passive radiator and the box at a specific frequency point fp (resonance frequency),
  • the sound waves of the sounding unit and the passive radiator are connected and superimposed to enhance the local sensitivity near the resonance frequency point fp (for example, see patent CN1939086A).
  • the first solution to add sound-absorbing materials to the cabinet requires a good sealing and packaging of the sound-absorbing materials.
  • the passive radiator Near the resonance frequency point fp, the passive radiator radiates strongly and the sound unit is almost stopped. Therefore, the high sensitivity design of the passive radiator can realize the acoustic system in the frequency band near fp The local sensitivity is enhanced; but in the frequency band below fp, the passive radiator and the sound unit have opposite phases of sound waves, and the sound waves cancel each other out.
  • the passive radiator has a negative effect on the sensitivity of the acoustic system.
  • Fig. 2 is a test curve (SPL curve) of loudness at different frequencies between prior art 2 and prior art 1. Therefore, it is necessary to make further improvements to the defects in the prior art.
  • An object of the present invention is to provide an acoustic device that effectively reduces the resonant frequency and greatly improves the low-frequency sensitivity of the product as a whole.
  • an acoustic device including:
  • a sounding unit the sounding unit includes a vibrating diaphragm, the acoustic device is provided with a sound outlet, and the sound waves on the front side of the vibrating diaphragm are radiated to the outside through the sound outlet;
  • the rear side of the vibrating diaphragm forms a first sealed cavity, and a mounting hole is opened on the cavity wall of the first sealed cavity, and a flexible deformation part is provided on the mounting hole, and the first sealed cavity
  • a second airtight cavity is provided, the flexible deformation part is located between the first airtight cavity and the second airtight cavity, and the second airtight cavity encloses the sound waves generated by the flexible deformation part during deformation.
  • the second closed cavity In the second closed cavity;
  • the mounting hole is also provided with a protective cover located on the outside of the flexible deformation part, the protective cover includes a fixing surface, a protective surface and a connecting wall, the fixing surface and the protective surface are located on different planes, so The fixed surface and the protective surface are connected by the connecting wall, the fixed surface is connected with the cavity wall, and an escape space is formed between the protective surface and the flexible deformable portion;
  • the protective surface and/or the connecting wall are provided with vent holes, and the protective cover is provided with a dust-proof net covering the vent holes, and the dust-proof net includes and The top surface portion having the same shape, and the side surface portion corresponding to the connecting wall and having the same shape.
  • the shape of the dust-proof net is consistent with the shape of the protective cover, and further includes a bottom surface portion corresponding to the fixing surface and consistent in shape.
  • the dust-proof net and the protective cover are formed separately and then pasted and assembled together;
  • the protective cover is formed first, and the dust-proof net is pasted or hot pressed to cover the outer or inner surface of the protective cover to form.
  • the dust-proof net is arranged on the outer side of the protective cover, and the top surface of the dust-proof net is not higher than the top surface of the cavity wall.
  • the wall of the mounting hole is provided with a pallet recessed toward the direction of the first sealed cavity
  • the fixing surface of the protective cover plate is fixed on the pallet.
  • an air flow channel is formed between the connecting wall and the side wall of the pallet.
  • the angle between the connecting wall and the protective surface is greater than 90°.
  • the cavity wall includes a first wall and a second wall connected to the first wall, the mounting hole is located on the first wall, and the first wall is further provided with A through groove formed by a recess in the direction of the first closed cavity, and the through groove penetrates the mounting hole and the outer surface of the second wall.
  • At least one side wall of the connecting wall close to the through groove is provided with a vent hole.
  • one or two large holes are opened on a side wall of the connecting wall close to the through groove, and the total length of the large holes exceeds one third of the length of the side wall;
  • one large hole or two large holes are opened on one side wall close to the through groove and one side wall far from the through groove of the connecting wall, and the total number of large holes on each side wall is The length exceeds one third of the length of the side wall.
  • the protective cover is made of stainless steel
  • the thickness of the protective cover plate is less than or equal to 0.2 mm.
  • the edge portion of the flexible deformable portion is first connected to the fixing surface of the protective cover, and then fixed to the pallet together.
  • the protective cover is first fixed on the cavity wall, and the flexible deformable portion is fixed to the cavity wall from the inner side of the cavity wall;
  • the protective cover plate is adhesively fixed on the cavity wall, or the protective cover plate is fixed on the cavity wall by injection molding.
  • the flexible deformable portion includes a body portion, which has a flat-plate structure; or at least an edge portion of the body portion is provided with protrusions; or at least an edge portion of the body portion is a wave-shaped structure;
  • the flexible deformable part further includes a composite sheet combined with the center of the main body, the main body has a sheet-like overall structure or the center of the main body is hollowed out.
  • At least a part of the housing of the electronic device for installing the acoustic device is used to form the first sealed cavity and/or the second sealed cavity.
  • the acoustic device includes a first housing, the sound generating unit is mounted on the first housing to form a sound generating assembly, and the vibration diaphragm of the sound generating unit and the first housing form the In the first sealed cavity, the mounting hole is opened on the first housing, and the flexible deformable portion is provided on the mounting hole;
  • the acoustic device includes a second housing, the sound generating assembly is installed in the second housing, the second sealed cavity is formed between the second housing and the first housing, and the first The second casing is the casing of the electronic device.
  • Another object of the present invention is to provide an electronic device that includes a housing of the electronic device and the above-mentioned acoustic device installed in the housing.
  • the acoustic device can effectively reduce the resonant frequency and greatly increase the overall resonance frequency. Low-frequency sensitivity of the product.
  • a first closed cavity is formed on the back side of the vibrating diaphragm in the acoustic device, a flexible deformable part is provided on the mounting hole of the cavity wall of the first closed cavity, and a flexible deformation part is provided outside the first closed cavity.
  • the flexible deformable part deforms with the sound pressure, and the volume of the first closed cavity is adjustable, thereby increasing the first closed cavity Equivalent sound compliance effectively reduces the resonance frequency of the acoustic device and improves low-frequency sensitivity; and through the isolation design of the sound unit and the flexible deformation part, the radiated sound wave of the flexible deformation part is enclosed inside the acoustic device to avoid the reverse phase radiation of the flexible deformation part
  • the sound waves have a negative effect on the sound waves radiated in the forward direction of the sound unit, thereby greatly improving the low-frequency sensitivity of the product as a whole.
  • a protective cover plate is provided on the outside of the flexible deformable part.
  • the protective cover plate has high strength and can be made very thin without excessively occupying the Z-axis space of the product, and is used to avoid the outside world during transportation or assembly. The environment causes damage or membrane rupture to the flexible deformable part.
  • the protective surface of the protective cover and/or the connecting wall is provided with vent holes, the protective cover does not isolate the outer space of the flexible deformation part from the second closed cavity, and the vent holes can achieve flexible deformation Pressure balance during internal vibration.
  • a dust-proof net covering the ventilation holes is provided on the protective cover, and the dust-proof net includes a top surface portion corresponding to the protective surface and consistent in shape, and corresponding to the connecting wall And the side part of the same shape.
  • the shape of the dust-proof net is consistent with the general shape of the protective cover, the processing and manufacturing are simple, and it is easy to assemble with the protective cover, and the protective effect is better.
  • Fig. 1 is a schematic structural diagram of an acoustic device with a passive radiator in prior art 2.
  • Fig. 2 is a test curve (SPL curve) of loudness at different frequencies between an acoustic device with a passive radiator in prior art 2 and an acoustic device with a traditional structure in prior art 1.
  • Fig. 3A is a schematic structural diagram of an acoustic device according to an embodiment of the present invention.
  • Fig. 3B is an enlarged schematic diagram of a part of the structure in Fig. 3A.
  • Fig. 3C is an enlarged schematic view of the structure of the flexible deformable part in Fig. 3A.
  • Fig. 4 is an exploded structure diagram of the first housing, the flexible deformable part, the protective cover, and the dust-proof net in Fig. 3A.
  • Fig. 5 is a test curve (SPL curve) of loudness at different frequencies between an acoustic device according to an embodiment of the present invention and an acoustic device with a traditional structure in the prior art 1.
  • Fig. 6 is a test curve (SPL curve) of loudness at different frequencies between an acoustic device according to an embodiment of the present invention and an acoustic device provided with a passive radiator in prior art 2.
  • Fig. 7 is a schematic structural diagram of an electronic device using an acoustic device according to the present invention.
  • an acoustic device 100 includes a sound emitting unit 1.
  • the sound emitting unit 1 is a miniature sound emitting unit. More specifically, the sound emitting unit 1 is a miniature moving coil speaker.
  • the sound unit 1 generally includes a housing and a vibration system and a magnetic circuit system accommodating and fixed in the housing.
  • the vibration system includes a vibration diaphragm 11 fixed on the housing and a voice coil combined with the vibration diaphragm 11.
  • the magnetic circuit system is formed with A magnetic gap, the voice coil is arranged in the magnetic gap, and the voice coil reciprocates up and down in the magnetic field after the alternating current is applied, thereby driving the vibrating diaphragm 11 to vibrate and produce sound.
  • the acoustic device is provided with a sound outlet 4, the sound waves on the front side of the vibrating diaphragm 11 are radiated to the outside through the sound outlet 4, and the sound waves on the back side of the vibrating diaphragm 11 are kept inside the acoustic device.
  • a cavity is formed between the vibrating diaphragm 11 and the casing and the magnetic circuit system.
  • a rear sound hole is opened on the casing or the magnetic circuit system or between the two. The sound waves on the rear side of the vibrating diaphragm 11 will pass through the rear sound. The hole enters the interior of the acoustic device.
  • the vibration direction of the vibrating diaphragm 11 of the sound generating unit 1 is parallel to the thickness direction of the acoustic device, which is beneficial to the thin design of the acoustic device.
  • a first sealed cavity 21 is formed on the rear side of the vibrating diaphragm 11, and a mounting hole is opened on the cavity wall of the first sealed cavity 21, and a flexible deformation is provided on the mounting hole.
  • the portion 22 is provided with a second sealed cavity 31 outside the first sealed cavity 21, and the flexible deformable portion 22 is located between the first sealed cavity 21 and the second sealed cavity 31.
  • the internal sound pressure of the first airtight cavity 21 changes, and the flexible deformable portion 22 deforms as the sound pressure changes in the first airtight cavity 21, which affects the first airtight cavity 21.
  • the airtight cavity 21 performs a flexible adjustment of the volume; the second airtight cavity 31 encloses the sound waves generated by the flexible deformable portion 22 during deformation in the second airtight cavity 31.
  • the electronic device 5 may be a mobile phone, a tablet computer, a notebook computer, etc. That is, part or all of the cavity wall of the first airtight cavity 21 is formed by the housing of the electronic device, or part or all of the cavity wall of the second airtight cavity 31 is formed by the housing of the electronic device, or, Part or all of the cavity walls of the first sealed cavity 21 and the second sealed cavity 31 are constituted by the housing of the electronic device.
  • the housing of the electronic device doubles as the cavity wall of the first sealed cavity and/or the second sealed cavity, which can make full use of the space inside the electronic device, while saving a part of the space occupied by the cavity wall, which is more beneficial to the electronic device
  • the thin design
  • the “closed” described in the present embodiment and the present invention can be a fully closed physical structure or a relatively closed state.
  • the first closed cavity may include opening based on product usage requirements.
  • the pressure equalizing hole 23 or other open-hole structures that balance the internal and external air pressure and have no significant effect on the rapid change of sound pressure are also regarded as a closed cavity.
  • the second airtight cavity may include gaps generated when combined with the first airtight cavity, as well as gaps of its own structure, etc., which can effectively isolate the sound waves generated by the flexible deformable part, and have no significant impact on the sound waves generated by the sound unit , Also regarded as a closed cavity.
  • the total area of the above-mentioned openings or gaps does not exceed 20mm 2 .
  • the mounting hole is also provided with a protective cover 27 located outside the flexible deformable portion 22, and a protective cover 27 is formed between the protective cover 27 and the flexible deformable portion 22 to avoid the flexible deformed portion.
  • the part 22 vibration avoidance space.
  • the protective cover plate can be made of one of steel sheets, FR-4 sheets, PET sheets, PEN sheets, carbon fiber sheets, ceramic sheets, etc.
  • the protective cover plate 27 is made of high strength and Stainless steel material that is not easily corroded, and other metal materials with good properties can also be used.
  • the protective cover 27 has high strength and can be made very thin. For example, the thickness of the protective cover 27 is less than or equal to 0.2 mm, or even less than or equal to 0.1 mm. Therefore, the protective cover 27 does not occupy too much space on the Z axis of the product, and can be During transportation or assembling, the external environment can avoid damage or membrane rupture of the flexible deformable portion 22.
  • the aforementioned protective cover 27 includes a fixed surface 273, a protective surface 271 and a connecting wall 272.
  • the fixed surface 273 is located outside the protective surface 271.
  • the fixed surface 273 and the protective surface 271 are located on different planes.
  • the protective surface 271 is connected by the connecting wall 272, and the fixing surface 273 is connected to the cavity wall. This "connection" can be a direct connection or an indirect connection.
  • the protective surface 271 is connected to the flexible deformable portion 22. Form a avoidance space between.
  • the protective surface 271 and/or the connecting wall 272 is provided with a vent 274, the protective cover 27 will not isolate the outer space of the flexible deformable portion 22 from the second closed cavity 31, and the vent 274 can be realized The pressure during the vibration of the flexible deformable part 22 is balanced.
  • both the protective surface 271 and the connecting wall 272 are provided with ventilation holes 274.
  • a dust-proof net 28 covering the vent 274 is provided on the protective cover 27.
  • the shape of the dust-proof net 28 may be consistent with most of the shape of the protective cover 27, at least including a top surface portion 281 corresponding to the protective surface 271 and consistent in shape, and a connecting wall 272 Corresponding and uniformly shaped side portions 282.
  • the shape of the dust-proof net 28 is consistent with the shape of the protective cover 27, and further includes a bottom surface portion 283 corresponding to the fixing surface 273 and consistent in shape.
  • the dust-proof net 28 may specifically be a nylon mesh cloth or a non-woven fabric, or a dust-proof net of other known materials.
  • the dust-proof net 28 and the protective cover 27 form almost full coverage, which has a good shielding effect on the ventilation holes 274 and improves the protective effect. Moreover, the shape of the dust-proof net 28 is consistent with most of the shapes of the protective cover 27, The processing is simple, and it is easy to assemble with the protective cover plate 27, and the protective effect is better.
  • the dust-proof net 28 and the protective cover 27 are formed separately and then glued and assembled together to form a protective cover assembly. In this way, the protective cover 27 and the dust-proof net 28 are easily aligned. Quasi-formed, deducting component quality.
  • the protective cover 27 is formed first, and the dust-proof net 28 is pasted or thermally pressed to cover the outer surface or the inner surface of the protective cover 27 to form a protective cover assembly.
  • the above-mentioned components can form a standard module, which is conducive to the centralized arrangement of production on the production line, improving efficiency, and reducing assembly complexity.
  • the dust-proof net 28 is arranged on the outer side of the protective cover to avoid the possibility of warping of the dust-proof net 28 after long-term use, which may affect the vibration of the flexible deformed portion 22.
  • the top surface portion 281 of the dust-proof net 28 is not higher than the top surface of the cavity wall, and the protective cover assembly itself is not easy to come into contact with other components, which can achieve a better protective effect.
  • a pallet 24 recessed in the direction of the first closed cavity 21 may be provided on the wall of the mounting hole, and the fixing surface 273 of the protective cover plate can be fixed to the pallet 24 Above, it can be fixed by applying glue or double-sided tape.
  • the edge portion of the flexible deformable portion 22 is connected to the fixing surface 273 of the protective cover 27 and then fixed to the pallet 24 together.
  • the flexible deformable portion 22 is first combined with the protective cover 27.
  • the flexible deformed portion 22 is made of soft material.
  • the protective cover 27 plays a role in supporting and shaping the flexible deformed portion 22, which can prevent the flexible deformed portion 22 from deforming causing abnormal size. Causes poor performance, optimizes the assembly process, can realize automatic feeding, and improves production efficiency.
  • the sound unit 1 can be installed on the cavity wall of the first airtight cavity 21 first, and then the cavity wall of the first airtight cavity 21 is assembled, and then the flexible deformable portion 22 and the protective cover
  • the plate 27 is assembled on the cavity wall, which can effectively prevent the equipment, tooling, and environment from damaging the flexible deformed part 22 during the assembly process.
  • the protective cover 27 is first fixed on the cavity wall, and the flexible deformable portion 22 is fixed to the cavity wall from the inner side of the cavity wall. In this way, it is possible to avoid dirt or damage to the flexible deformable portion 22 caused by glue or equipment during the assembly process of the protective cover 27.
  • the protective cover 27 may be fixed on the cavity wall by bonding, or the protective cover 27 may be fixed on the cavity wall by injection molding to achieve an integrated combination and improve the firmness of the combination. It also realizes automatic assembly and improves efficiency.
  • an airflow channel is formed between the connecting wall 272 of the protective cover 27 and the side wall of the pallet 24, and the airflow channel can communicate with the vent 274 on the protective cover 27 and the second closed cavity. Prevent the ventilation hole 274 from being blocked by other components and losing the air pressure balance.
  • the angle between the connecting wall 272 and the protective surface 271 is greater than 90° to increase the width of the air flow channel.
  • the cavity wall of the first airtight cavity 21 includes a first wall 261 and a second wall 262 connected to the first wall 261, the mounting hole is located on the first wall 261, and the The first wall 261 is further provided with a through groove 25 recessed in the direction of the first sealed cavity 21, and the through groove 25 penetrates the mounting hole and the outer surface of the second wall 262.
  • the above design allows the sound waves generated by the vibration of the flexible deformable portion 22 to pass through the vent 274 on the protective cover 27 and then through the through groove 25 to the second closed cavity 31, or to allow the sound waves generated by the vibration of the flexible deformable portion 22 to pass through
  • the air-permeable holes 274 on the protective cover 27 and the above-mentioned air flow channels are further transmitted to the second enclosed cavity 31 through the through groove 25, which can prevent the side of the protective cover 27 facing the second enclosed cavity 31 from being affected by the second enclosed cavity during assembly.
  • Other parts in 31 block and cannot achieve good ventilation effect, which leads to the problem of reduced sensitivity enhancement or failure in low frequency bands.
  • the shape of the vent 274 is not limited, and can be designed in any shape such as a circle, a square, an ellipse, and the like.
  • the ventilation holes 274 on the protective surface are round holes.
  • At least one side wall of the connecting wall 272 close to the through groove 25 is provided with a vent hole.
  • the ventilation holes and the through grooves 25 are arranged directly opposite to each other, so that the air flow generated by the vibration of the flexible deformable portion can enter and exit the second closed cavity 31 more directly, thereby achieving a better air pressure balance effect.
  • the area of a single vent on the connecting wall 272 is larger than the area of a single vent on the protective surface 271, and the vent of the protective surface is made smaller, so that the strength of the protective surface can be minimized to ensure protection As a result, the vent holes on the connecting wall 272 are made larger, which can improve the air pressure equalization effect.
  • one or two large holes 275 are formed on a side wall of the connecting wall 272 close to the through groove 25, which is specifically designed in a long strip shape.
  • the total length of the large holes 275 exceeds One third of the length of the side wall.
  • one large hole 275 or two large holes 275 are opened on a side wall of the connecting wall 272 close to the through groove 25 and a side wall away from the through groove 25, and each side wall
  • the total length of the large holes 275 exceeds one third of the length of the side wall.
  • the structure with large holes 275 on the two side walls can make the air flow in and out more balanced, and ensure that the flexible deformable part will not be polarized.
  • the acoustic device includes a first housing 2, the sound generating unit 1 is mounted on the first housing 2 to form a sound generating assembly, and the vibration diaphragm 11 of the sound generating unit 1 is connected to the
  • the first airtight cavity 21 is formed between the first housing 2, the mounting hole is opened on the first housing 2, the flexible deformable portion 22 is provided on the mounting hole, the mounting hole and
  • the flexible deformable portion 22 is not limited to one group, and multiple groups may be provided at different positions of the first housing 2.
  • the acoustic device includes a second housing 3, the sound generating component is installed in the second housing 3, and the second sealed cavity 31 is formed between the second housing 3 and the first housing 1. Wherein, when there are other components in the second housing 3, the second sealed cavity 31 is actually constituted by the gap between the components and the second housing 3 and the first housing 2.
  • the sound generating unit 1 is arranged inside the first housing 2, and the two form an integral structure, and then are assembled with the second housing 3.
  • the first housing 2 is provided with an opening, and the space on the front side of the diaphragm communicates with the opening, and the sound is radiated to the sound outlet 4 of the acoustic device through the opening.
  • the acoustic device is installed in an electronic device such as a mobile phone, and the housing of the electronic device doubles as the second housing 3 of the acoustic device.
  • the space between the housing and internal components of the electronic device and the first housing 2 of the acoustic device forms a second closed cavity 31, the second housing of the acoustic device itself is omitted, and the housing components of the electronic device are fully utilized
  • the gap space between the two can realize the maximized design of the second closed cavity 31.
  • the first housing 2 includes a top wall, a bottom wall, and a side wall connected between the top wall and the bottom wall, wherein the top wall Or the bottom wall is the first wall 261 and the side wall is the second wall 262.
  • the top wall is the first wall 261
  • the mounting hole is located on the top wall
  • the top wall around the mounting hole is provided with a recess formed in the direction toward the first closed cavity 21
  • the pallet 24, the flexible deformable portion 22 is fixed to the bottom of the groove of the pallet 24, and the top wall is also provided with a through groove 25 recessed in the direction of the first closed cavity 21, the The through groove 25 penetrates the pallet 24 and the outer surface of the side wall.
  • the side wall is the first wall
  • the top wall or the bottom wall is the second wall
  • the mounting hole, the pallet 24 and the through groove are provided on the side wall, and the through groove penetrates the pallet 24 and the top.
  • the flexible deformable portion 22 includes a body portion 221.
  • the body portion 221 may be a single-layer structure made of one of polymer plastics, thermoplastic elastomers, and silicone rubber, or may be Multi-layer structure, at least one layer in the multi-layer structure is made of one of polymer plastic, thermoplastic elastomer and silicone rubber.
  • the body portion 221 may be a flat structure, and the flat structure is beneficial to reduce the height of the flexible deformable part 22 and reduce the occupied space of the flexible deformable part 22.
  • the body portion 221 may also have a partially convex or concave structure, such as a central portion convex, an edge convex, or a combination of a central convex and an edge convex, or, at least the main body 221
  • the edge part has a wavy structure. In a specific embodiment, as shown in FIG.
  • the edge portion of the body portion 221 is provided with a protrusion 222, and the protrusion 222 extends from the first airtight cavity 21 toward the second airtight cavity 31 Or, the protrusion 222 protrudes from the second airtight cavity 31 toward the first airtight cavity 21, the protrusion structure can provide greater elastic deformation and increase the flexible deformation portion
  • the vibration displacement of 22 improves the volume adjustment effect of the first closed cavity 21.
  • a composite sheet 223 may be superimposed on the center position of the main body 221 of the flexible deformable part 22.
  • the strength of the composite sheet 223 is higher than that of the main body 221, and may be metal, plastic, or carbon fiber. Or its composite structure and so on.
  • the main body 221 of the flexible deformable part 22 can be a sheet-like overall structure, or it can be hollowed out at the center of the main body 221, and the hollow is closed by the composite sheet 223, and the hollowed out structure of the main body 221 of the flexible deformable part 22 only retains the edges.
  • the edge portion may be a flat plate, a convex shape toward one side, or a wave shape.
  • the flexible deformable portion 22 can be integrated with other parts of the first housing 2.
  • the flexible deformable portion 22 can be made first, and then the flexible deformed portion 22 is integrally injection molded as an insert into other parts of the housing . It is also possible that the flexible deformable portion 22 is fixedly connected to the first housing part around the mounting hole by bonding, welding or hot melting.
  • the main bodies of the first sealed cavity 21 and the second sealed cavity 31 extend along the horizontal direction formed by the length and width of the acoustic device.
  • the horizontal direction may also be defined by a direction perpendicular to the thickness direction of the acoustic device.
  • the horizontal direction generally refers to the direction parallel to the horizontal plane when the acoustic device is placed on a horizontal plane, and the two chambers are arranged along the horizontal direction, so as not to occupy the space in the height direction of the acoustic device as much as possible, which is beneficial to the thin design of the product .
  • the second housing 3 has a top wall, a bottom wall, and a side wall connecting the top wall and the bottom wall, and the sound outlet 4 of the acoustic device is provided on the top wall, the bottom wall or the side wall of the second housing.
  • the sound outlet 4 is provided on the top wall of the second housing, and a pressure equalizing hole 23 is provided on the first closed cavity 21.
  • the flexible deforming portion 22 in the acoustic device, by providing a flexible deforming portion 22, the flexible deforming portion 22 is deformed with sound pressure, and the volume of the first sealed cavity 21 is adjustable, thereby increasing the equivalent sound of the first sealed cavity 21 Smoothly, effectively reduce the resonance frequency of the acoustic device and improve the low-frequency sensitivity;
  • the second closed cavity 31 isolates the sound radiation generated during the deformation of the flexible deformation part 22, and seals the radiated sound waves of the flexible deformation part 22 inside the acoustic device to avoid flexible deformation
  • the anti-phase radiated sound waves of the part 22 have a canceling effect on the forward radiated sound waves of the sound generating unit 1, thereby greatly improving the low-frequency sensitivity of the product as a whole.
  • the volume of the second sealed cavity 31 is greater than the volume of the first sealed cavity 21, which can make the deformation of the flexible deformable portion 22 easier, which is more conducive to increasing the equivalent sound of the first sealed cavity 21 and effectively reducing the acoustics.
  • the resonance frequency of the device improves the low frequency sensitivity.
  • the compliance of the acoustic device is formed by the parallel connection of the sound generating unit and the enclosed cavity in the box.
  • the fs formula of the prior art 1 is as follows:
  • fs the resonance frequency of the acoustic device
  • Cas the equivalent sound of the sound unit
  • Cab the equivalent sound of the air in the cabinet
  • Mac the equivalent sound quality of the vibration system of the sound unit.
  • FIG. 5 shows the loudness test of prior art 2 acoustic device with passive radiator and prior art 1 acoustic device with traditional structure at different frequencies
  • Curve (SPL curve) a test curve (SPL curve) of loudness at different frequencies between the acoustic device of this embodiment and the acoustic device of prior art 1.
  • the sounding unit is connected in parallel with a passive radiator/flexible deforming part 22 The compliance of the resulting increase in the final equivalent compliance, thereby reducing F0.
  • the fs formulas of prior art 2 and this embodiment are as follows:
  • fs the resonance frequency of the acoustic device
  • Cas the equivalent sound of the sounding unit
  • Cab the equivalent sound of the air in the first airtight cavity
  • Mac the equivalent sound quality of the vibration system of the sounding unit
  • Cap passive radiation Body/flexible deformation equivalent sound compliance.
  • the sound unit and the passive radiator radiate to the outside at the same time.
  • the sound waves At frequencies below the resonance point fp, the sound waves have opposite phases, and the sound pressure cancels each other out.
  • the passive radiator has a negative effect on the sensitivity of the acoustic system.
  • FIG. 6 is a test curve (SPL curve) of loudness at different frequencies between the acoustic device of this embodiment and the acoustic device of the prior art 2 with passive radiators.
  • SPL curve test curve
  • the second airtight cavity 31 retains the sound waves generated on the back side of the diaphragm of the acoustic device inside the acoustic device.
  • the second airtight cavity 31 removes the sound generated by the flexible deformation part 22.
  • the pressure isolation prevents the anti-phase radiated sound waves generated by the deformation of the flexible deforming part 22 from canceling the forward radiated sound waves of the sound unit, thereby greatly improving the low-frequency sensitivity of the product as a whole.
  • the main difference between this embodiment and the above-mentioned embodiment is that, in this embodiment, there are a plurality of sound generating units 1 and the first airtight cavity 21 corresponding to each other, and the second airtight cavity 31 is provided with one.
  • the cavity wall of the cavity 21 is provided with a flexible deformable portion 22 and a protective cover 27, and the protective cover 27 is covered with a dust-proof net 28.
  • the acoustic device in this embodiment includes two sound generating units 1, and two first airtight cavities 21 are correspondingly designed at the same time, the second airtight cavity 31 is one, and the walls of the two first airtight cavities 21 are A flexible deformable part 22 and a protective cover 27 are respectively designed, and the protective cover 27 is covered with a dust-proof net 28.
  • This design can facilitate the realization of applications in the case of an acoustic device or system that requires multiple sound emitting units 1, such as stereo or array design requirements.
  • At least two groups of one-to-one corresponding flexible deformable portions 22, protective cover 27, and dust-proof net may be provided on the same side wall or on different side walls. 28.
  • This embodiment discloses an electronic device 5. As shown in FIG. 7, the acoustic device 100 in the above embodiment is installed on the electronic device 5.
  • the electronic device 5 may be a mobile phone, a tablet computer, a notebook, or the like.
  • the electronic device 5 specifically includes a housing of the electronic device, and at least a part of the housing of the electronic device is used to form the first sealed cavity 21 and/or the second sealed cavity 31 of the acoustic device. That is, part or all of the cavity wall of the first airtight cavity 21 is formed by the housing of the electronic device, or part or all of the cavity wall of the second airtight cavity 31 is formed by the housing of the electronic device, or, Part or all of the cavity walls of the first sealed cavity 21 and the second sealed cavity 31 are constituted by the housing of the electronic device.
  • the housing of the electronic device doubles as the cavity wall of the first airtight cavity 21 and/or the second airtight cavity 31, which can make full use of the space inside the electronic device, while saving a part of the space occupied by the cavity wall, which is more beneficial to Thin design of electronic equipment.
  • the acoustic device includes a first housing 2, the sound generating unit 1 is mounted on the first housing 2 to form a sound generating assembly, and the vibration diaphragm 11 of the sound generating unit 1 is connected to the
  • the first airtight cavity 21 is formed between the first housing 2, a mounting hole is opened on the first housing 2, and a flexible deformable portion 22 and a protective cover 27 are provided on the mounting hole.
  • the plate 27 is covered with a dust-proof net 28, the mounting holes, the flexible deformable portion 22, and the protective cover are not limited to one set, and multiple sets can be set at different positions of the first housing 2.
  • the acoustic device further includes a second housing 3, the sound generating component is installed in the second housing 3, and the second airtightness is formed between the second housing 3 and the first housing 1. Cavities 31.
  • the second housing 3 is a housing of an electronic device. In fact, the space between the housing of the electronic equipment and the internal components and the first housing 2 of the acoustic device forms a second closed cavity 31, and the housing of the electronic equipment doubles as the second housing 3 of the acoustic device, which is omitted
  • the second housing of the acoustic device makes full use of the gap space between the housing components of the electronic device, and can realize the maximum design of the second sealed cavity 31, which is beneficial to the thin design of the electronic device.

Abstract

La présente invention concerne un dispositif acoustique, comprenant une unité de production de son. Les ondes sonores d'une face avant d'une membrane vibrante de l'unité de production sonore rayonnent vers l'extérieur par une sortie sonore ; une première cavité fermée est formée dans une face arrière de la membrane vibrante, un trou de montage est prévu dans une paroi du corps de la première cavité fermée, une partie de déformation flexible est disposée sur le trou de montage, et une deuxième cavité fermée est disposée à l'extérieur de la première cavité fermée et utilisée pour sceller les ondes sonores, générées lorsque la partie de déformation flexible se déforme, dans la deuxième cavité fermée ; une plaque de protection située à l'extérieur de la partie de déformation flexible est en outre disposée sur le trou de montage et comprend une face de fixation, une face de protection et une paroi de connexion, et la face de fixation est reliée à la paroi du corps de la cavité ; et des trous d'aération sont prévus dans la face de protection et/ou la paroi de connexion, un filet anti-poussière couvrant les trous d'aération est disposé sur la plaque de protection, et la forme du filet anti-poussière est essentiellement conforme à celle de la plaque de protection. Le dispositif acoustique selon la présente invention peut réduire efficacement la fréquence de résonance et améliorer considérablement la sensibilité aux basses fréquences d'un produit dans son ensemble.
PCT/CN2019/127841 2019-08-20 2019-12-24 Dispositif acoustique et appareil électronique WO2021031485A1 (fr)

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Publication number Priority date Publication date Assignee Title
KR20230002920A (ko) * 2020-08-12 2023-01-05 썬전 샥 컴퍼니 리미티드 음향장치 및 음향장치의 보호부재의 제조방법

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20080089537A1 (en) * 2006-10-13 2008-04-17 Henning Scheel Loudspeaker system for aircraft cabin
CN107396256A (zh) * 2017-07-04 2017-11-24 瑞声科技(新加坡)有限公司 扬声器箱
CN207075087U (zh) * 2017-07-04 2018-03-06 瑞声科技(新加坡)有限公司 扬声器箱
CN208353580U (zh) * 2018-06-12 2019-01-08 瑞声科技(新加坡)有限公司 扬声器箱
CN109803215A (zh) * 2018-12-18 2019-05-24 歌尔股份有限公司 声学装置及电子设备

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101023703B (zh) * 2004-09-13 2011-09-07 松下电器产业株式会社 扬声器系统
CN206341342U (zh) * 2016-11-10 2017-07-18 深圳惟电创新科技有限公司 一种小体积大音量超长时间播放防水音箱
CN206402390U (zh) * 2017-02-06 2017-08-11 广东合广通科技有限公司 一种喇叭结构
CN206629252U (zh) * 2017-03-01 2017-11-10 东莞市乐莱电子有限公司 长条型多功能音箱
CN206640746U (zh) * 2017-03-20 2017-11-14 东莞市云仕电子有限公司 入耳式耳机
CN207099285U (zh) * 2017-07-26 2018-03-13 深圳市不见不散电子有限公司 音响设备
CN208424724U (zh) * 2018-06-20 2019-01-22 深圳市奇洛普科技有限公司 一种智能音响

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20080089537A1 (en) * 2006-10-13 2008-04-17 Henning Scheel Loudspeaker system for aircraft cabin
CN107396256A (zh) * 2017-07-04 2017-11-24 瑞声科技(新加坡)有限公司 扬声器箱
CN207075087U (zh) * 2017-07-04 2018-03-06 瑞声科技(新加坡)有限公司 扬声器箱
CN208353580U (zh) * 2018-06-12 2019-01-08 瑞声科技(新加坡)有限公司 扬声器箱
CN109803215A (zh) * 2018-12-18 2019-05-24 歌尔股份有限公司 声学装置及电子设备

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