The present disclosure relates to electroacoustic conversion technology, and in particular, to a speaker.
In recent years, with a rapid development of mobile communication technologies, customers have more access to mobile communication devices having a voice function, for example, portable phones, handheld game machines, and laptop computers. Quality of a designed speaker as a voice playing device directly influences a voice performance of products such as mobile communication devices. To meet market demands for thin speakers having higher sound quality, higher requirements are imposed on design of flexible circuit boards of speakers.
In related technologies, a flexible circuit board of a speaker is fixedly connected to a second diaphragm, and is configured to connect a voice coil and an external circuit. The flexible circuit board includes an elastic arm suspended in an accommodating space of the speaker, and the elastic arm is completely located below a first diaphragm. Thus, a length of the elastic arm is limited, thereby limiting an upper limit of elasticity of the flexible circuit board and hindering improvement of acoustic performance of the speaker.
Therefore, it is necessary to provide a new speaker to address the foregoing limitations.
To clearly illustrate technical solutions in embodiments of the present disclosure, drawings used in description of the embodiments are briefly described below. Obviously, the drawings in the following description are only some embodiments of the present disclosure, and other drawings can be obtained by those of ordinary skill in the art according to these drawings without creative efforts.
Technical solutions in embodiments of the present disclosure are clearly and completely described with reference to the drawings in the embodiments of the present disclosure. Obviously, the embodiments described are only some embodiments rather than all embodiments of the present disclosure. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present disclosure without creative efforts shall fall within the protection scope of the present disclosure.
Referring to
The magnetic circuit system 2 is configured to drive the vibration system 3 to vibrate and produce sound. Specifically, the magnetic circuit system 2 includes a yoke 21 fixedly connected to the frame 1, a main magnetic steel 22 assembled to the middle of the yoke 21, a main pole core 23 attached to a surface of the main magnetic steel 22, an auxiliary magnetic steel 24 disposed around the main magnetic steel 22, and an auxiliary pole core 25 attached to the auxiliary magnetic steel 24. The main magnetic steel 22 and the auxiliary magnetic steel 24 are separated from each other to form a magnetic gap. The pole core 23 and the auxiliary pole core 25 are made of magnetic conductive materials and act as magnetic conductors.
The auxiliary pole core 25 is fixedly connected to the frame 1, and includes a body portion 251 connected to the auxiliary magnetic steel 24, an extended portion 252 extending from two ends of the body portion 251 toward a direction away from the body portion 251, and a step portion 253 bent and extending from one end of the extended portion 252 away from the body portion 251 toward the auxiliary magnetic steel 24. The step portion 253 and the extended portion 252 form a stepped structure together.
The vibration system 3 is configured to vibrate and produce sound. Specifically, the vibration system 3 includes a first diaphragm 31 configured to vibrate and produce sound, a second diaphragm 32 disposed opposite to the first diaphragm 31, a voice coil 33 located below the first diaphragm 31 and configured to drive the first diaphragm 31 to vibrate and produce sound, and a flexible circuit board 34 electrically connected to the voice coil 33 and elastically supporting the voice coil 33. The flexible circuit board 34 is sandwiched between the second diaphragm 32 and the auxiliary pole core 25, is configured to electrically connect the voice coil 33 and an external circuit, and further configured to enhance vibration of the first diaphragm 31 and prevent polarization of the first diaphragm 31, so as to improve acoustic performance of the speaker 100.
The second diaphragm 32 includes a fixing portion 321, a connecting portion 322 disposed separately from the fixing portion 321, and a folded ring portion 323 connecting the fixing portion 321 and the connecting portion 322.
Referring to
The fixing portion 321 is fixedly connected to the first fixing portion 341. The connecting portion 322 is fixedly connected to the second fixing portion 342. The folded ring portion 323 and the elastic arm 343 are disposed separately from each other. Specifically, the first fixing portion 341 is sandwiched between the voice coil 33 and the fixing portion 321, and the second fixing portion 342 is sandwiched between the connecting portion 322 and the step portion 253.
Further, the elastic arm 343 includes a first torque arm 3431 reciprocally bent from two ends of the first fixing portion 341 toward the second fixing portion 342, a second torque arm 3432 bent and extending from two ends of the second fixing portion 342 toward the first fixing portion 341, and a third torque arm 3433 connecting the first torque arm 3431 and the second torque arm 3432 and bent in an arc shape. The first torque arm 3431, the second torque arm 3432, and the third torque arm 3433 are integrally formed, and form a closed structure together with the first fixing portion 341 and the second fixing portion 342. The second torque arm 3432 is disposed in parallel to the extended portion 252.
Orthogonal projections of the first torque arm 3431 and the third torque arm 3433 toward the second diaphragm 32 are completely located within the range of the second diaphragm 32, and an orthogonal projection of the second torque arm 3432 toward the second diaphragm 32 is located outside the range of the second diaphragm 32. Specifically, the elastic arm 343 is partially located below the second diaphragm 32, and partially extends away from the second diaphragm 32.
Referring to
Referring to
Compared with the related technology, with respect to the speaker 100 in the present disclosure, the elastic arm 343 of the flexible circuit board 34 is partially located below the second diaphragm 32, and the remaining part extends toward a direction away from the second diaphragm 32. Thus, the length of the elastic arm 343 is increased, thereby enhancing the elasticity of the flexible circuit board 34, improving the acoustic performance of the speaker 100, and providing higher reliability.
The above descriptions are merely embodiments of the present disclosure, and it should be noted that those of ordinary skill in the art can make improvements without departing from the inventive concept of the present disclosure, and all such improvements shall fall within the protection scope of the present disclosure.
Number | Date | Country | Kind |
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201821251167.5 | Aug 2018 | CN | national |