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Area and power consumption trade-off for Σ-Δ decimation filter in mixed signal wearable IC

机译:混合信号可穿戴IC中Σ-Δ抽取滤波器的面积和功耗之间的权衡

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摘要

Area and Power consumption are important design metrics in integrated circuit (IC), in particular in those targeted for wearable devices. Σ-Δ Analog to Digital Converter (ADC) are increasing in popularity in those devices thanks to the low bandwidth of a great number of sensors that permits to increase converter performances by the oversampling and noise shaping techniques. One of the most important part of the Σ-Δ ADC is the decimation filter, usually implemented as a Cascaded - Integrator - Comb (CIC). The various CIC architectures, in particular the Recursive and Non recursive - Polyphase ones, are well known in literature. However, filters on-chip performances are strictly related to the effective implementations. The aim of this paper is to evaluate the two architectures, with different values of the characteristic parameters, optimizing the -180 nm CMOS Standard Cell technology - design for a reduced area occupation or power consumption. Results prove that polyphase implementations, differently from theoretical analysis, are generally more power efficient than the recursive one only in a clock gated design, even with a higher area occupation. In addition, an estimation of the power consumption is provided using least squares regression.
机译:面积和功耗是集成电路(IC)的重要设计指标,尤其是针对可穿戴设备的设计指标。由于大量传感器的低带宽允许通过过采样和噪声整形技术来提高转换器的性能,因此在这些设备中,Σ-Δ模数转换器(ADC)的使用日益广泛。 Σ-ΔADC的最重要部分之一是抽取滤波器,通常实现为级联-积分器-梳状(CIC)。各种CIC体系结构,特别是递归和非递归-多相体系结构,在文献中是众所周知的。但是,滤波器的片上性能与有效的实现方式密切相关。本文的目的是评估具有不同特征参数值的两种架构,优化-180 nm CMOS标准单元技术-设计以减少面积占用或功耗。结果证明,与理论分析不同,多相实现通常仅在时钟门控设计中比递归实现更节能,即使占用更多的空间。另外,使用最小二乘回归提供功率消耗的估计。

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