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31.4 A Chopper-Stabilized Amplifier with -107dB IMD and 28dB Suppression of Chopper-Induced IMD

机译:31.4具有-107dB IMD的斩波稳定放大器和28dB抑制斩波诱导的IMD

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Amplifiers often employ chopping to achieve low offset and low-frequency noise. However, the interaction between the input signal and the chopper clock can cause chopper-induced intermodulation distortion (IMD) [1] –[5]. This is especially problematic for input frequencies (Fin) near even multiples of the chopping frequency (FCH), as the resulting IMD tones fold-back to low frequencies and so cannot be filtered out. In [2] –[4], spread-spectrum clocks are used to convert such tones into noise-like signals. However, this increases the noise floor and does not address the underlying problem. This paper shows that chopper-induced IMD is mainly due to amplifier delay, which results in large chopping spikes. A novel fill-in technique is proposed that mitigates these spikes, and so reduces the chopper-induced IMD. In a prototype chopper-stabilized amplifier, it reduces the chopper-induced IMD by 28dB, resulting in an IMD of -126dB for input frequencies near 4FCH (=80kHz). Similarly, it improves the chopped amplifier’s two-tone IMD (79 and 80kHz) from -97dB to -107dB, thus maintaining the same IMD as the un-chopped amplifier.
机译:放大器通常采用斩波实现低偏移和低频噪声。然而,输入信号和斩波器时钟之间的相互作用可能导致切碎机引起的互调失真(IMD)[1] - [5]。这对于诸如斩波频率(FCH)的甚至倍数的输入频率(FIN)特别有问题,因为所得IMD音调折叠到低频,因此不能滤除。在[2] - [4]中,扩频时钟用于将这样的音调转换为类似的噪声信号。然而,这增加了噪声楼层并且不会解决潜在的问题。本文表明,斩波诱导的IMD主要是由于放大器延迟,这导致大量斩波。提出了一种新的填充技术,减轻了这些尖峰,因此减少了斩波诱导的IMD。在原型斩波器稳定的放大器中,它将斩波器诱导的IMD通过28dB减少,导致输入频率为4FCH(= 80kHz)的输入频率的IMD。类似地,它将切碎的放大器的双音IMD(79和80kHz)从-97db改善为-107dB,从而将与未切换放大器保持相同的IMD。

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