The present disclosure relates to the field of electric-acoustic conversion technologies, and in particular to, a speaker.
With the rapid development of technologies, audio devices become more and more popular. People's requirements for audio devices are not limited to playback of video and audio, and they also require for reliability of audio devices. Especially in the 3G era, mobile multimedia technology has also developed. Many audio devices have various entertainment functions, such as video playback, digital camera, games, GPS navigation, etc., all of which require electronic components in audio devices to become more and more sophisticated and compact.
In audio devices, a speaker is a commonly used electronic component, mainly used for the playback of audio signals. In the related art, the magnetic flux density in a voice coil inside the speaker is not balanced, resulting in swing or disconnection caused by the unbalanced force applied on the voice coil. Meanwhile, swing of the voice coil may cause problems such as touching the magnet and the unbalanced amplitude.
Therefore, it is necessary to provide a new type of speaker to solve the above problems.
Many aspects of the exemplary embodiment can be better understood with reference to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present disclosure. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
The present disclosure will be further illustrated with reference to the accompanying drawings and the embodiments.
Referring to
The frame 1 is fixedly provided at an end of the holder 5 close to the electrical connector 4.
The vibration unit 2 includes a diaphragm 21 and a voice coil 22. The diaphragm 21 is fixed to the holder 5. The voice coil 22 drives the diaphragm 21 to vibrate.
Referring to
The voice coil 22 includes two opposite long axis sides 221 and two opposite short axis sides 222. The long axis sides 221 and the short axis sides 222 are connected, head to tail, to form a ring shape. Each long axis side 221 forms a corner 223 with the short axis side 222 adjacent to the long axis side.
Referring to
The bottom plate 311 is opposite to the diaphragm 21. The side plates 312 are formed between the voice coil 22 and the elastic arm 42. The side plates 312 correspondingly form notches 313 for avoiding the joint portions 41.
Referring to
Each joint portion 41 includes a body portion 423 supported at a side of the voice coil 22 facing away from the diaphragm 21, a first extension portion formed by extending from the body portion 423 and being opposite to the inner side surface 225, and a second extension portion 422 opposite to the outer side surface 224. The first extension portion 421 and the second extension portion 422 are spaced apart to form a receiving groove 44. The voice coil 22 is sandwiched and fixed in the receiving groove 44.
The second extension portion 422 includes a first portion 4221 bonded to the long-axis side 221, and a second portion 4222 bonded to the short-axis side 222.
The elastic arm 42 is provided with a pad 43 extending at least partially to the outside of the holder 5 for an electrical connection with the outside. The pad 43 includes an extension portion 431 extending from the elastic arm 42 in a direction facing away from the voice coil 22, a connection portion 432 being extending from a distal end of the extension portion 431 in a direction facing away from the diaphragm 21, and a conductive portion 433 bent and extending from an end of the connection portion 432 facing away from the extension portion 431. The conductive portion 433 faces the extension portion 431. The frame body 1 is sandwiched between the conductive portion 433 and the extension portion 431.
The joint portions 41 at the two ends of the elastic arm 42 of each electrical connector 4 are correspondingly provided at the corner portions 223 at two ends of the long-axis side 221, so that an integral structure of the voice coil 22 and the electrical connector 4 is a symmetrical structure. This can reduce the swing problem caused by the unbalanced force applied on the voice coil 22 due to unbalanced magnetic flux density at various locations of the voice coil 22.
Moreover, the first extension portion 421 is fixedly bonded to the inner side of the corner portion 223, and the second extension portion 442 is fixedly bonded to the outer side of the corner portion 223, thereby increasing a gluing area, so that the connection between the joint portion 41 and the voice coil 22 becomes stronger.
Compared with the related art, in the speaker provided by the present disclosure, the electrical connector is provided at the lower end of the voice coil. The first extension portion and the second extension portion provided on the joint portion of two ends of the electrical connector wraps the corner portion of the voice coil therein. The first extension portion and the second extension portion are then respectively bonded and fixed to the inner and outer sides of the corner portion by glue, thereby increasing the bonding area and also increasing the bonding strength between the first and second extension portions and the corner portion. In addition, with such a structure, the swing and disconnection problem of the voice coil occurring during the operation of the speaker can be significantly alleviated, thereby reducing the problems of touching the magnet and unbalanced amplitude caused by the swing of voice coil, while increasing the maximum amplitude.
The above are only preferred embodiments of the present disclosure. Here, it should be noted that those skilled in the art can make modifications without departing from the inventive concept of the present disclosure, but these shall fall into the protection scope of the present disclosure.
Number | Date | Country | Kind |
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2018 2 1254949 U | Aug 2018 | CN | national |
Number | Name | Date | Kind |
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10250993 | Xiao | Apr 2019 | B1 |
Number | Date | Country | |
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20200045449 A1 | Feb 2020 | US |