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An Electromagnetic Interference (EMI) Reduced High-Efficiency Switching Power Amplifier

机译:降低电磁干扰(EMI)的高效开关功率放大器

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The design of a new high-efficiency switching power amplifier with an ultralow-power spread spectrum clock generator (SSCG) is first reported in this paper. An effective low-power frequency modulation method is first proposed to reduce the electromagnetic interference of the pulse width modulation class D power amplifier without degrading its power efficiency. Also, a simple RC voltage feedback circuit is used to reduce the total harmonic distortion (THD). This amplifier proves to be a cost-effective solution for designing high fidelity and high efficiency audio power amplifiers for portable applications. Measurement results show that the power efficiency and THD can reach 90% and 0.05%, respectively. The power dissipation of the SSCG is only 112 ¿W. The harmonic peaks of the switching frequency are greatly reduced when the SSCG technique is applied to the amplifier design. The impact of the SSCG on the THD of the class D power amplifier is also first reported in this paper. This switching power amplifier is implemented using a Taiwan Semiconductor Manufacture Company (TSMC) 0.35- ¿m CMOS process.
机译:本文首先报道了一种具有超低功耗扩频时钟发生器(SSCG)的新型高效开关功率放大器的设计。首先提出一种有效的低功率频率调制方法,以减少脉宽调制D类功率放大器的电磁干扰而不降低其功率效率。同样,使用简单的RC电压反馈电路来减少总谐波失真(THD)。该放大器被证明是为便携式应用设计高保真和高效音频功率放大器的一种经济高效的解决方案。测量结果表明,功率效率和THD分别可以达到90%和0.05%。 SSCG的功耗仅为112μW。当SSCG技术应用于放大器设计时,开关频率的谐波峰值将大大降低。本文还首次报道了SSCG对D类功率放大器的THD的影响。此开关功率放大器是使用台湾半导体制造公司(TSMC)的0.35-μmCMOS工艺实现的。

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