The present disclosure relates to electroacoustic technologies, and more particularly, to a speaker.
An electroacoustic device is a member in an electronic field. With a development of an electronic industry, an electroacoustic system needs to continuously meet a higher requirement of consumers for product performance and to present essence of sounds more perfectly.
As a core sound member of a speaker, quality for designing a diaphragm directly affects acoustic performance of the speaker. The diaphragm usually includes a dome in a center and a folded ring surrounding the dome. The vibration of the diaphragm is mainly focused on the vibration of the dome. The dome has a larger amplitude and a higher frequency than that of the folded ring, and is an important part for reflecting an acoustic effect of a sound device.
The dome in existing technologies is a plate structure, and is a rectangle with rounded corners. In order to reduce mass of the dome, holes are usually cut in a middle portion of a straight edge of the dome. Because the middle portion of the dome is prone to split vibration due to insufficient strength when the dome is vibrating at a high frequency, cutting holes in the middle portion of the straight edge of the dome is bound to severely reduce a strength of the dome and affect high-frequency characteristic of the product. Especially for a product with a large aspect ratio, if a size of the hole cut in the middle portion of the straight edge of the dome is too large, the strength of the middle portion of the dome will be seriously affected; if the size of the hole is too small, the mass of the dome cannot be well reduced preferably.
Therefore, it is necessary to provide a new speaker with an improved dome structure.
In order to better understand solutions of the present disclosure and advantages thereof in various aspects, the present disclosure will be described in further detail below with reference to drawings through specific embodiments. In the following embodiments, a left-right direction in a principal plane of the drawing is taken as a horizontal direction, and an up-down direction in the principal plane of the drawing is taken as a vertical direction. In addition, the following specific embodiments are provided to facilitate a clearer and more thorough understanding of contents of the present disclosure, rather than to limit the present disclosure.
For a product with a large aspect ratio, in order to effectively reduce mass of the dome while ensuring that high-frequency characteristic of the product is not affected, the present disclosure improves a structure of a dome, and the specific solution is as follows.
As shown in
In this embodiment, as shown in
Preferably, the first opening portion 1322 and the second opening portion 1323 are symmetrically arranged on two sides of the first extended portion 1321. The first opening portion 1322 and the second opening portion 1323 have the same cross-sectional shape and the same cross-sectional area. An opening width D of the first opening portion 1322 and the second opening portion 1323 gradually decreases along an opening depth H. Alternatively, the first opening portion 1322 and the second opening portion 1323 may be different. For example, the opening width D of the first opening portion 1322 is an equal opening width, while the opening width D of the second opening portion 1323 gradually decreases along the opening depth H. Please refer to
Moreover, the dome 131 may alternatively have other shapes such as elliptical, polygonal, and the like. The folded ring 133 is a hollow annular structure, such as a rectangular ring, a circular ring, an elliptical ring, and the like. The folded ring 133 includes a dome portion 1331 located in the middle, a folded ring portion 1332 surrounding the dome portion 1331, and a fixing portion 1333 surrounding the folded ring portion 1332 and fixed to the basket 11. The dome 131 is fixed to the dome portion 1331, and a projection of the dome 131 along a vibration direction is in a projection range of the dome portion 1331 along the vibration direction.
Therefore, two or more opening portions are disposed separately along the first side edge 132 or the second side edge 134 of the dome 131, and an extended portion is arranged between two adjacent opening portions. The structure above ensures a strength of the middle portion of the dome 131, so that high-frequency characteristic of the product is not affected. In addition, mass of the dome 131 is effectively reduced by setting the opening portions at the two sides, and sensitivity of the product is improved.
Comparing the speaker in the present disclosure with existing technologies, the opening portions are arranged at two sides of the middle portion of the long edge of the dome, so that an influence on the strength of the middle portion of the dome is avoided, and the high-frequency characteristic of the product is not affected. In addition, the mass of the dome is effectively reduced by setting the opening portions, and sensitivity of the product is improved.
It should be noted that those ordinary skills in the art may make various modifications and changes without departing from the inventive concept of the present disclosure, and these modifications and changes shall all fall within the scope of protection of the present disclosure.
Number | Date | Country | Kind |
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201822113919.8 | Dec 2018 | CN | national |
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20200196048 A1 | Jun 2020 | US |