The present disclosure relates to the field of electroacoustic transformation, and in particular, to a speaker having a high reliability and produced automatically.
With the rapid development of technologies, audio devices become more and more popular, and among numerous recreation modes, high-quality music enjoyment is gradually popularized. Thus, speakers for playing audio have been widely applied to existing smart mobile devices.
The speaker in the related art includes a holder, an upper cover matching the holder to form a receiving space, a vibration unit received in the receiving space and including a diaphragm and a voice coil, a magnetic circuit unit for driving the diaphragm to vibrate and emit sound, a pad fitted in an end of the holder facing away from the upper cover and configured to electrically connect the voice coil to an external circuit, and a conductive terminal matching the pad.
However, in the speaker of the related art, the structure of the conductive terminal is fixed, so that the length of an elastic arm of the conductive terminal cannot be adjusted. Therefore, the conductive terminals have to be specifically designed for products in different sizes, and during the production process of the speaker, since a hook of the conductive terminal is not fixed, there is a risk that the holder might detach.
Therefore, it is urgent to provide a new speaker to overcome the above defects.
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 holder 1 is a rectangular frame. The holder 1 includes a bottom wall 11 for fixing the diaphragm 31, a top wall 13 opposite to the bottom wall 11, an outer sidewall 15 connecting the bottom wall 11 with the top wall 13, an engaging groove 17 formed by recessing from the top wall 13 towards the bottom wall 11, and a receiving groove 19 formed, corresponding to the pad 7, by recessing from the top wall 13 towards the bottom wall 11. The receiving groove 19 is used for receiving the pad 7, and the engaging groove 17 and the receiving groove 19 are arranged at two opposite ends of the top wall 13 along a length direction of the holder 1.
In order to ensure a reliable connection between the pad 7 and the conductive terminal 9, the top wall 13 is designed to expose at least a part of the pad 7.
The engaging groove 17 includes a first surface 171 close to the receiving space, a second surface 173 extending from a side of the first surface 171 close to the receiving groove 19 while being bent in a direction facing away from the receiving space, a third surface 175 extending from a side of the first surface 171 facing away from the receiving groove 19 while being bent in the direction facing away from the receiving space, and a fourth surface 177 extending from a side of the first surface 171 close to the diaphragm 31 while being bent in the direction facing away from the receiving space. The second surface 173 and the third surface 175 are disposed opposite to one another. The second surface 173, the third surface 175, and the fourth surface 177 extend to the outer sidewall 15.
The magnetic circuit unit 5 includes a yoke 51 fixed to and held at the holder 1, a main magnet 53 assembled at the center of the yoke 51, auxiliary magnet 55 disposed at sides of the main magnet 53, a main pole core 57 attached to the surface of the main magnet 53, and auxiliary pole cores 59 attached to the surface of the auxiliary magnets 55.
The pad 7 includes a first conductive portion 71 extending into the receiving space through the receiving groove 19, and a second conductive portion 73 extending from the first conductive portion 71 while being bent and partially exposed to the holder 1. The first conductive portion 71 is electrically connected to the voice coil 33.
The number of the pads 7 is two, and the two pads 7 are respectively fitted in two sides of the holder in a length direction, and are symmetrically arranged with respect to a central axis in a length direction of the speaker 100.
Correspondingly, the number of the conductive terminals 9 is also two, and the two conductive terminals 9 are respectively disposed correspondingly to the pads 7.
The conductive terminal 9 includes a fixed portion 91 fixed to and fitted in the holder 1, an elastic arm 93 extending from the fixed portion 91 in a direction facing away from the holder 1, an electrical connection portion 95 extending from the elastic arm 93 in a direction facing way from the fixed portion 91, and an engaging portion 97 extending from an edge of an end of the elastic arm 93 facing away from the fixed portion 91 while being bent towards the holder 1.
The elastic arm 93 includes an arc-shaped conductive portion 931 fixedly connected to the fixed portion 91 and an extending portion 933 connecting the arc-shaped conductive portion 931 with the electrical connection portion 95.
The arc-shaped conductive portion 931 is spaced apart from the holder 1 and protrudes from the outside of the holder 1.
The extending portion 933 extends from the arc-shaped conductive portion 931 in a direction facing towards the holder 1, and an end of the extending portion facing away from the arc-shaped conductive portion 931 is attached to the holder 1.
The electrical connection portion 95 is electrically connected to the pad 7. Specifically, the electrical connection portion 95 and the pad 7 are fixed by laser welding.
The engaging portion 97 is disposed correspondingly to the engaging groove 17, and the engaging portion 97 is engaged into the engaging groove 17.
For example, the engaging portion 97 includes a matching surface 971 opposite to the first surface 171 and an abutting surface 973 extending from the matching surface 971 towards the second surface 173 and the third surface 175 and abutting against the second surface 173 and the third surface 175. The engaging portion 97 is engaged into the engaging groove 17 through the abutting surface 973. For example, the abutting surface 973 has a protrusion, and the abutting surface abuts against the second surface 173 and the third surface 175 through the protrusion.
Compared with the related art, the speaker 100 provided by the present disclosure provides the elastic arm 93. Due to the structure of the elastic arm 93, i.e., the extending portion 933 extends from the arc-shaped conductive portion 931 in the direction facing towards the holder 1, and the end of the extending portion 933 facing away from the arc-shaped conductive portion 931 is attached to the holder 1, the speaker 100 can change the length of the conductive terminal 9 by changing a bending angle of the extending portion 933, thereby changing the elastic force of the conductive terminal 9. Meanwhile, by providing the fixed portion 91 fixed to and fitted into the holder 1, the fixed portion 91 is unlikely to be popped out, the positioning is more stable, and the assembly is simplified, thereby facilitating the fully automated production of the speaker 100.
The description above is only implementations of the present disclosure, and it should be noted that those of ordinary skill in the art can make improvements without departing from the innovative concept of the present disclosure, and these improvements all fall within the protection scope of the present disclosure.
Number | Date | Country | Kind |
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201821236945.3 | Aug 2018 | CN | national |
Number | Name | Date | Kind |
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20120177244 | Liu | Jul 2012 | A1 |
Number | Date | Country |
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209390329 | Sep 2019 | CN |
Number | Date | Country | |
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20200045461 A1 | Feb 2020 | US |