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Hysteretic self-oscillating bandpass current mode control for Class D audio amplifiers driving capacitive transducers

机译:D类音频放大器驱动电容传感器的D类音频放大器的滞回自振荡带通电流模式控制

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A hysteretic self-oscillating bandpass current mode control (BPCM) scheme for Class D audio amplifiers driving capacitive transducers are presented. The scheme provides excellent stability margins and low distortion over a wide range of operating conditions. Small-signal behavior of the amplifier is analysis through transfer function based linear control methodology. Measurements are performed on a single-ended ± 300 V half-bridge amplifier driving a capacitive load of 100 nF. Total Harmonic Distortion plus noise (THD+N) below 0.1% are reported. Transducers representing a capacitive load and obeying the rules of electrostatics have been known as very interesting alternatives to the traditional inefficient electrodynamic transducers. When driving capacitive transducers from a Class D audio amplifier the high impedance nature of the load represents a key challenge. The BPCM control scheme ensures a flat frequency response (within 3 db) over the midrange region of 200 Hz - 3.5 kHz.
机译:提出了一种驱动电容换能器的D类音频放大器的滞质自振荡带通电流模式控制(BPCM)方案。该方案在广泛的操作条件下提供出色的稳定性边距和低畸变。通过基于传递功能的线性控制方法来分析放大器的小信号行为。在单端±300 V半桥放大器上执行测量,驱动100 NF的电容负载。报道了总谐波失真加噪声(THD + N)低于0.1%。代表电容负载和遵守静电规则的换能器已被称为传统的低效电动换能器的非常有趣的替代方案。当从D类音频放大器驱动电容式传感器时,负载的高阻抗性质代表了一个关键挑战。 BPCM控制方案可确保200Hz - 3.5 kHz的中频区域的平坦频率响应(3 dB)。

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