Ultra-thin planar magnetic film full-frequency speaker
10448166 ยท 2019-10-15
Assignee
Inventors
Cpc classification
H04R9/047
ELECTRICITY
H04R2400/11
ELECTRICITY
International classification
Abstract
An ultra-thin planar magnetic film full-frequency speaker comprises a vibration system, a magnetic system, a frame, and an acoustic foam. The vibration system and the magnetic system are received and fixed in the interior of the frame. The vibration system comprises a vibration film and a planar voice coil, the vibration film forming a contiguous inward recess structure in the middle thereof, the planar voice coil being provided with a bar-like aperture, and the planar voice coil being adhered and fixed to the vibration film The magnetic system comprises a U-shaped soft iron and a bar-shaped magnet, the bar-shaped magnet being disposed above the U-shaped soft iron and disposed beneath the bar-shaped aperture, the U-shaped soft iron being connected to the frame by means of injection molding, and the acoustic foam being adhered to a bottom face of the U-shaped soft iron.
Claims
1. An ultra-thin planar magnetic film full-frequency speaker, characterized in that, it comprises: a vibration system, a magnetic system, a frame, and an acoustic foam; wherein the vibration system and the magnetic system are received and fixed in the interior of the frame; the vibration system comprises a vibration film and a planar voice coil, the vibration film forming a contiguous inward recess structure in the middle thereof, the planar voice coil being extended around a bar shaped aperture, and the planar voice coil being adhered and fixed to the vibration film; and the magnetic system comprises a U-shaped soft iron and a bar-shaped magnet, the bar-shaped magnet being disposed above the U-shaped soft iron and disposed beneath the bar-shaped aperture, the U-shaped soft iron being connected to the frame by means of injection molding, and the acoustic foam being adhered to a bottom face of the U-shaped soft iron.
2. The ultra-thin planar magnetic film full-frequency speaker according to claim 1, wherein the vibration film comprises a vibration plate and an edge surrounding the vibration plate, the vibration film being fixed and connected to the edge by means of bonding or in-mold injection molding, and the vibration film being adhered and fixed to the frame by means of the edge.
3. The ultra-thin planar magnetic film full-frequency speaker according to claim 2, wherein the vibration plate downwardly forms a contiguous square groove, and the vibration plate has a square wave form-shaped section.
4. The ultra-thin planar magnetic film full-frequency speaker according to claim 3, wherein the vibration plate is made from an aluminum magnesium alloy or a plastic polymer material, and the vibration plate is additionally provided with a reinforcing rib.
5. The ultra-thin planar magnetic film full-frequency speaker according to claim 2, wherein the edge is downwardly recessed to form an inner R-shaped structure, or upwardly protrudes to form an outer R-shaped structure, or upwardly protrudes twice to form a double-outer R-shaped structure, or consecutively upwardly protrudes to form a W-shaped structure; and the edge is made from a rubber material or a polyurethane material or a silk material, and the edge is additionally provided with a reinforcing rib.
6. The ultra-thin planar magnetic film full-frequency speaker according to claim 1, wherein the planar voice coil comprises a conductive coil and a planar thin film, the conductive coil being printed on the planar thin film, and the bar-shaped aperture being provided in the planar thin film.
7. The ultra-thin planar magnetic film full-frequency speaker according to claim 6, wherein the conductive coil comprises a linear coil portion and a bent coil portion, the linear coil portion being adhered and fixed to a contiguous square groove, and the bent coil portion being adhered to two sides of the vibration film.
8. The ultra-thin planar magnetic film full-frequency speaker according to claim 1, wherein the bottom of the U-shaped soft iron is provided with a vent hole, the acoustic foam being adhered to the vent hole.
9. The ultra-thin planar magnetic film full-frequency speaker according to claim 1, wherein the bar-shaped magnet is a rectangular neodymium magnet, and each bar-shaped magnet is formed of three small square magnets.
10. The ultra-thin planar magnetic film full-frequency speaker according to claim 1, wherein the ultra-thin planar magnetic film full-frequency speaker has an integral thickness of not greater than 8 mm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(12) For better understanding of the disclosed embodiments the exemplary embodiments are described in detail with reference to attached drawings and specific embodiments. The accompanying drawings show preferential embodiments. However, the embodiments may be implemented in a plurality of forms or ways, and is not limited to the embodiments described herein. On the contrary, these embodiments are provided to make the understanding of the disclosed contents more thorough and comprehensive.
(13) Embodiment 1
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(16) It should be noted that the vibration downwardly forms a contiguous square groove 1111, which is not a simple flat structure and is a square wave structure as seen from the sectional view thereof. This feature design is to cause the vibration plate 111 to be close to the bar-shaped magnet 22 as much as possible, and meanwhile it also needs to be ensured that the vibration film 11, within the mechanical stroke thereof, may not contact the U-shaped soft iron 21 and the bar-shaped magnet 22.
(17) In the aspect of materials, the vibration plate 111 may be made from a metal sheet by means of stamping molding or made from a plastic polymer material. In this embodiment, the vibration plate 111 is manufactured with an aluminum magnesium alloy by means of stamping molding. This not only ensures light weight of the vibration plate 111, but also ensures sufficient rigidity of the vibration plate 111. In addition, the vibration plate 111 is further provided with some reinforcing ribs, which further improves the integral rigidity of the vibration plate 111.
(18) Further referring to
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(20) It should be noted that the bar-shaped aperture 120 is provided in the middle of the planar thin film 122. In this embodiment, the bar-shaped aperture 120 is a rectangular shape, and totally three bar-shaped apertures 120 are provided, which corresponding to the number of bar-shaped magnets 22, to ensure that the apertures may pass through the bar-shaped magnets 22 during up-down vibration.
(21) The conductive coil 121 further comprises a linear coil portion 1211 and a bent coil portion 1212, wherein the linear coil portion 1211 is adhered and fixed to the contiguous square groove, and the bent coil portion 1212 is adhered to two sides of the vibration film 11. The linear coil portion 1211 is used as an effective coil, and flatly adhered to a lower surface of the contiguous square groove 1111 of the vibration plate 111, and configured to perform electricity-power energy conversion during up-down vibration.
(22) In the vibration system 1 of the full-frequency speaker as described in this embodiment, since the planar voice coil 12 has a thickness of only 0.1 mm, and the vibration film 11 has a thickness of 2.9 mm, the integral vibration system 1 has a thickness of only 3 mm, which satisfies the design requirement of the ultra-thin structure.
(23) Still referring to
(24) In the magnetic system 2, the U-shaped soft iron 21 is made from a low-carbon steel material, a vent hole 211 is provided at the bottom thereof, and the acoustic foam 4 is adhered to the vent hole 211. It should be noted that the bottom of the U-shaped soft iron 21 is provided with a vent hole 211, which effectively reduces the air resistance in the magnetic system 2 during vibration of the vibration film 11, and facilitates the smoothness of the vibration system 1. The acoustic foam 4 is adhered to the bottom face of the U-shaped soft iron 21, and is adhered to the vent hole 211, which may effectively reduce wind noise when the air passes through the vent hole 211 at the bottom of the U-shaped soft iron 21 at a very high speed during operation of the full-frequency speaker.
(25) The bar-shaped magnet 22 is a rectangular neodymium magnet, and provides a permanent magnetic field for the planar voice coil 12, which employs a magnet with a high magnetic energy product. In this embodiment, the bar-shaped magnet 22 is a neodymium magnet, and to form an effective magnetic field loop, adjacent bar-shaped magnets need to be magnetized reversely. To solve the problem that the bar-shaped magnet has a large length which is unfavorable to production, each bar-shaped magnet 22 in this embodiment is formed of three small square magnets 221, which bring convenience to the production.
(26) In the full-frequency speaker in this embodiment, since the upper magnetic conduction plate of the traditional moving coil speaker is not provided, the integral magnetic system 2 may be made to be very thin, and the integral magnetic system 2 has a thickness of only 4 mm. As described in the above vibration system 1, the planar voice coil has a thickness of only 0.1 mm and the vibration film 11 has a thickness of only 2.9 mm, and thus the integral vibration system 1 has a thickness of only 3 mm. With the thickness of the frame 3 and the acoustic foam 4, the integral full-frequency speaker has a thickness of 8 mm, which satisfies the design requirement of the ultra-thin structure while achieving the full-range performance.
(27) The novel ultra-thin planar magnetic film full-frequency speaker in this embodiment, integrating the advantages of the moving coil speaker and the planar magnetic film speaker, has a simple and compact structure, and employs a magnetic path design similar to that of the planar magnetic film, with a height being controlled within 8 mm. In addition, the planar voice coil is adhered to the vibration film having a special shape as the driving force, and the inner R-shaped edge design is used. In this way, a specific mechanical excursion is ensured, and the compliance of the edge is increased to lower the resonant frequency. Meanwhile, the vibration film is subject to a uniform force, there are few the partition vibrations and rocking modes, the effective frequency domain is wide, thereby forming an ultra-thin full-frequency speaker (150 Hz to 20 kHz), which is extensively applied in small and light-weighted electronic devices.
(28) Embodiment 2
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(31) Described above are merely several exemplary embodiments for illustration of the exemplary embodiments, which are specifically described in detail. However, these embodiments shall not be construed as limitations to the scope of the present invention. It should be noted that persons of ordinary skill in the art may derive various variations and modifications without departing from the inventive concept of the present invention. Such variations and modifications shall pertain to the protection scope of the present invention.