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Design Considerations for a Digital Input MEMS Speaker Audio Amplifier with Energy Recovery

机译:具有能量回收功能的数字输入MEMS扬声器音频放大器的设计注意事项

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The advances in MEMS technology offer now the possibility to manufacture loudspeakers, which need special drivers to achieve optimum performance. Driving capacitive loudspeakers (transducers) introduces a number of interesting challenges, which are addressed in this work.A digital amplifier, comparable to a class-D amplifier for electrodynamic loudspeakers is presented. The amplifier has a digital input and therefore also includes the A/D-conversion required for producing an analog output. In order to achieve a high efficiency the A/D-conversion is combined with a buck-boost converter and uses energy recovery to increase the efficiency. Using charge transfer efficient strategies for the design of such an amplifier will be given. The results are valid for capacitive loads in general and therefore useful for a wide range of problems, like MEMS drivers or switching control of power transistors.This article describes fundamental advantages of MEMS speaker based audio systems and the most important parameters for the required audio amplifier. A newly developed concept based on a non-inverting bidirectional buck boost converter will be used to derive the parameters as well as to explain the most important design criteria for an audio amplifier development for capacitive loads.
机译:MEMS技术的进步为制造扬声器提供了可能性,扬声器需要特殊的驱动器才能达到最佳性能。驱动电容式扬声器(换能器)带来了许多有趣的挑战,这些挑战在本工作中得到了解决。提出了一种数字放大器,可与电动扬声器的D类放大器相提并论。该放大器具有数字输入,因此还包括产生模拟输出所需的A / D转换。为了实现高效率,A / D转换与降压-升压转换器结合使用,并利用能量回收来提高效率。将给出使用电荷转移有效策略来设计这种放大器。该结果通常适用于容性负载,因此对于诸如MEMS驱动器或功率晶体管的开关控制之类的广泛问题很有用。本文介绍了基于MEMS扬声器的音频系统的基本优点以及所需音频放大器的最重要参数。基于同相双向降压/升压转换器的新开发概念将用于推导参数,并解释针对电容性负载的音频放大器开发最重要的设计标准。

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