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Dynamical modeling and experimental validation of a micro-speaker with corrugated diaphragm for mobile phones

机译:手机波纹膜微扬声器的动力学建模和实验验证

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As the design trend of modern cellular phones evolves to be miniaturization and versatile sound in quality, the electro-mechanical components including the micro-speaker are essential toward size reduction and broad frequency range of sound. To reduce size, a diaphragm type micro-speaker is commonly employed in industry, while to broaden the sound frequency range corrugations on the diaphragm are adopted. The corrugations are generally capable of leading to fairly flat response over a broad range since diaphragm stiffness is decreased in axial direction. To confirm the aforementioned capability, the modeling on a corrugated diaphragm is performed first using finite element method (FEM) to obtain the associated dynamic equations in terms of modal coordinates; then the equations are next combined with the magneto-electrical model of the voice coil motor (VCM) that is attached to the bottom side of the diaphragm. Finally, the acoustic effects of the air inertia on the diaphragm and vents of the outer case are modeled using basic acoustic theories. Assembling all derived system equations and solving them, the frequency response of the micro-speaker in sound pressure level (SPL) can be simulated. It shows that the diaphragm corrugation in fact helps flatten the SPL response of the micro-speaker (especially in high frequency range) to lessen sound distortion. Furthermore, the corrugation angle approximately below 45° is favored over other angles or flatter SPL response. Experiments are also conducted to verify the theoretical findings.
机译:随着现代蜂窝电话的设计趋势逐渐发展为微型化和高质量的声音,包括微型扬声器在内的机电组件对于减小尺寸和扩大声音的频率范围至关重要。为了减小尺寸,工业上通常使用隔膜型微型扬声器,而为了扩大隔膜上的声频范围,采用波纹。由于隔膜的轴向刚度减小,因此波纹通常能够在较宽的范围内产生相当平坦的响应。为了确认上述功能,首先使用有限元方法(FEM)在波纹膜片上进行建模,以获得模态坐标下的相关动力学方程;然后,将这些方程式与附着在膜片底部的音圈电动机(VCM)的电磁模型结合起来。最后,使用基本的声学理论对空气惯性对外壳的隔板和通风孔的声学影响进行建模。组装所有导出的系统方程式并将其求解,可以模拟微型扬声器在声压级(SPL)下的频率响应。它表明,振膜的波纹实际上有助于使微型扬声器的SPL响应变平(尤其是在高频范围内),从而减少声音失真。此外,相比其他角度或更平坦的SPL响应,大约低于45°的波纹角更为有利。还进行了实验以验证理论发现。

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