The present disclosure relates to acoustoelectric technology, and particularly relates to a sound device with an improved diaphragm.
With a rapid development of an electronic information industry, a trend of miniaturization of electronic products is becoming increasingly obvious, and sound devices applied thereto will inevitably become more and more miniaturized.
In a related technology, a sound device includes a magnetic circuit system, a vibration system, and an auxiliary system that accommodates the magnetic circuit system and the vibration system. The auxiliary system includes a front cover. The vibration system includes a diaphragm which is a conventional structure that includes a dome, a folded ring extending from the dome, and a fixing portion connected to the folded ring. The auxiliary system includes a basket. The diaphragm is sandwiched between the front cover and the basket. The above-described structure with the front cover wastes space in a thickness direction when the structure is waterproofed through sealing the front cover, the diaphragm and the basket by doubled-sided adhesive. Besides, a sound device with the above-described structure cannot satisfy a requirement for a higher level of water proof, and an adhesive force between the front cover and the diaphragm or between the diaphragm and the basket may be insufficient, resulting in failure such as water leakage, thereby reducing stability of the entire structure of a product and even affecting acoustical performance of the product.
Therefore, it is necessary to provide a sound device with a new structure.
The present disclosure will be further described in detail below in embodiments with reference to accompanying drawings in order to provide a better understanding of technical solutions of the present disclosure and advantages thereof. In the following embodiments, the left-right direction of the sheet of the drawings is the horizontal direction, and the up-down direction of the sheet of the drawings is the vertical direction. Further, the following specific embodiments are provided to facilitate a clearer understanding of contents of the present disclosure rather than limit the present disclosure.
As shown in
In this embodiment, as shown in
Further, the diaphragm 10 is in an axisymmetric shape with a rectangular cross section. The diaphragm 10 and the basket 3 are integrally injection-molded. The diaphragm 10 is preferably a silica gel membrane, but the present disclosure is not limited thereto. The diaphragm 10 may otherwise be a rubber membrane, a PEEK (poly-ether-ether-ketone) membrane, or a TPU (thermoplastic polyurethanes) membrane, or the like. The fixing portion 13 of the diaphragm 10 is fixed to the outer side surface 31 and the upper surface 32 of the basket 3 through adhesive. The diaphragm 10 with the above-described structure is fixed with the basket 3 in two directions. In other words, the diaphragm in a cap shape or in a cover shape is fixed to the basket 3 in a sealing manner, and the diaphragm 10 and the basket 3 are tightly compacted and sealed in two directions, thereby forming a sealing ring around the outer side surface 31 of the basket 3 and thus improving sealing performance and waterproofness of a product.
It should be noted that there is no special limitation to a dimension (such as length, width, thickness and shape) of the fixing portion 13, but the dimension may be adjusted according to requirements for waterproofness of a practical product.
It should be noted that in another embodiment, the dome 11 may be integrally formed with the folded ring 12.
It can be seen from
Further, the magnetic circuit system 2 includes a magnetic bowl 21, a magnetic steel 22 assembled to the magnetic bowl 21 and a pole core 23 attached to the magnetic steel 22. The magnetic bowl 21 includes a bottom plate 211 opposite to the dome 11 and a side plate 212 extending from an edge of the bottom plate 211 towards the diaphragm 10. The magnetic steel 22 is fixed to the bottom plate 211. A magnetic gap is formed between the side plate 212 and the magnetic bowl 21. The voice coil 14 extends to the magnetic gap.
Further, the sound device further includes an elastic piece 4 elastically supporting the magnetic bowl 21 and the lower surface of the basket 3, and one end of the elastic piece 4 is connected to the side plate 212, while the other end of the elastic piece 4 is fixed to the lower surface.
Further, a support column 34 is formed by extending from the lower surface 33 of the basket 3 to be away from the upper surface 32. The sound device further includes a conductive terminal 5 assembled to the support column 34. One end of the conductive terminal 5 is electrically connected to the voice coil 14, while the other end is electrically connected to an external power supply. The sound device further includes a bottom cover 6 fixed to the support column 34, and the bottom cover 6 is disposed separately from the elastic piece 4.
Compared with the existing technology, with respect to the present disclosure, a joint area, i.e., adhesive area, between the diaphragm 10 and the basket 3 is increased by fixing the fixing portion 13 of the diaphragm 10 to the outer side surface 31 and the upper surface 32 of the basket 3 through adhesive, and a sealing ring is formed. Therefore, stability of the entire structure, and waterproofness and acoustical performance of the product are improved.
It should be noted that various changes and modifications may be made by those skilled in the art without departing from the spirit and scope of the present disclosure.
Number | Date | Country | Kind |
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201821237983.0 | Aug 2018 | CN | national |