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Design of double-sampling ΣΔ modulation A/D converters with bilinear integrators

机译:具有双线性积分器的双采样ΣΔ调制A / D转换器的设计

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Double-sampling techniques allow to double the sampling frequency of a switched capacitor ΣΔ analog-to-digital convertors without increasing the clock frequency. Unfortunately, path mismatch between the double sampling branches may cause noise folding, which could ruin the modulator's performance. The fully floating double-sampling integrator is an interesting building block to be used in such a double sampling ΣΔ modulator because its operation is tolerant to path mismatch. However, this circuit exhibits an undesired bilinear filter effect. This effectively increases the order of the modulator by one. Due to this, previously presented structures don't have enough freedom to fully control the modulator pole positions. In this paper, we introduce modified topologies for double-sampling ΣΔ modulators built with bilinear integrators. We show that these architectures provide full control of the modulator pole positions and hence can be used to implement any noise transfer function. Additionally, analytical expressions are obtained for the residual folded noise.
机译:双采样技术可以使开关电容ΣΔ模数转换器的采样频率加倍,而无需增加时钟频率。不幸的是,双采样分支之间的路径不匹配可能会导致噪声折叠,从而可能破坏调制器的性能。全浮动双采样积分器是一个有趣的构件,可用于这种双采样ΣΔ调制器,因为它的操作可以容忍路径失配。但是,该电路表现出不希望的双线性滤波效果。这有效地将调制器的阶数增加了一个。因此,先前介绍的结构没有足够的自由度来完全控制调制器的极点位置。在本文中,我们介绍了使用双线性积分器构建的双采样ΣΔ调制器的改进拓扑。我们表明,这些架构可完全控制调制器的极点位置,因此可用于实现任何噪声传递功能。另外,获得了残余折叠噪声的解析表达式。

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