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Noise Filtering and Linearization of Single-Ended Sampled-Data Circuits

机译:单端采样数据电路的噪声滤波和线性化

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摘要

The performance of analog integrated circuits is often limited by the noise generated in its components. Several circuit techniques exist for mitigating the effects of the low-frequency noise. In this paper, a novel approach is described, which can also reduce even-order distortion, another major limitation of analog circuits. It may also allow the use of single-ended circuits in applications where usually differential structures are needed. In most cases, the resulting single-ended circuit will be much simpler than the fully or pseudo-differential one. It does not require common-mode feedback circuitry, nor single-ended-to-differential and differential-to-single-ended conversions at the input and output ports. The amplifiers may be single-ended, using, e.g., inverter-based circuits, and the use of baluns can be avoided. The number of pins and pads of the chip can be reduced. In addition, the single-ended opamps of the circuit may require less power than differential ones. These factors and the omission of the common-mode feedback circuits as well as the single-ended/differential converters will usually allow significant power savings.
机译:模拟集成电路的性能通常受到其组件中产生的噪声的限制。存在几种用于减轻低频噪声影响的电路技术。在本文中,描述了一种新颖的方法,该方法还可以减少偶数阶失真,这是模拟电路的另一个主要限制。它还可能允许在通常需要差分结构的应用中使用单端电路。在大多数情况下,所得的单端电路将比全差分电路或伪差分电路简单得多。它不需要共模反馈电路,也不需要在输入和输出端口进行单端至差分和差分至单端转换。放大器可以是单端的,例如使用基于反相器的电路,并且可以避免使用平衡-不平衡变换器。芯片的引脚和焊盘的数量可以减少。此外,电路的单端运算放大器可能比差分运算放大器需要更少的功率。这些因素以及共模反馈电路以及单端/差分转换器的遗漏通常可以节省大量功率。

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