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Analysis of a Switched-Capacitor Second-Order Delta-Sigma Modulator Using Integrator Multiplexing

机译:使用积分器复用的开关电容器二阶Δ-Σ调制器分析

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This brief investigates a switched-capacitor (SC) second-order delta-sigma modulator using integrator multiplexing with respect to component imperfections. The two integration operations, which are characteristic for a second-order system are accomplished by multiplexing two integration capacitors C{sub}U and C{sub}V onto a single operational amplifier. The two feedback loops are implemented utilizing two capacitors C{sub}A and CB, which are charged and discharged periodically. Crosstalk between the two integration capacitors C{sub}U and C{sub}V due to parasitic capacitances introduces additive white noise. However, the influence can easily be limited using standard SC technology. A mismatch between C{sub}A and C{sub}B introduces a dc-offset and a gain error, as derived quantitatively. As a consequence, the robustness to component imperfections, which is typical for second-order delta-sigma modulators, is maintained. It is shown that in principle, integrator multiplexing can be generalized for higher order delta-sigma modulators.
机译:本简介针对组件缺陷研究了使用积分复用的开关电容(SC)二阶Δ-Σ调制器。通过将两个积分电容器C {sub} U和C {sub} V多路复用到单个运算放大器上,可以完成二阶系统的两个积分操作。利用两个电容器C {sub} A和CB实施这两个反馈环路,这两个电容器定期进行充电和放电。由于寄生电容,两个积分电容器C {sub} U和C {sub} V之间的串扰会引入加性白噪声。但是,使用标准SC技术可以轻松地限制影响。 C {sub} A和C {sub} B之间的不匹配会引入直流偏移和增益误差,这是定量得出的。结果,保持了对部件缺陷的鲁棒性,这对于二阶Δ-Σ调制器是典型的。结果表明,原则上,积分器多路复用可以推广用于更高阶的delta-sigma调制器。

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