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A charge-sharing analog-to-digital converter with embedded downconversion using a variable reference voltage

机译:具有使用可变参考电压的嵌入​​式下变频的电荷共用模数转换器

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In the field of radio receivers, downconversion methods usually rely on one (or more) explicit mixing stage(s) before the analog-to-digital converter (ADC). These stages not only contribute to the overall power consumption but also have an impact on area and can compromise the converter's performance in terms of noise and linearity. As an alternative, we propose a receiver architecture that considers the ADC as both a quantizer and a downconverter block. This is achieved through the use of a variable reference signal (in this case, a voltage), as opposed to classic time-invariant reference signals. When embedded into a charge-sharing (CS) successive approximation register (SAR) ADC, this varying reference voltage is "saved" in the digital-to-analog converter (DAC) capacitor bank during the sampling phase, preventing any conversion errors. Furthermore, a phase-locked loop (PLL) is used in order to provide an on-chip solution for the generation of this variable reference voltage, which also removes the need for dedicated bandgap circuits and reference buffers. Post-layout simulations of an 8-bit 50 MS/s CS-SAR ADC show that the proposed "embedded mixing" technique is able to downconvert a high-frequency signal while also increasing the effective resolution by around 0.5 bits, when compared with a standard DC reference voltage.
机译:在无线电接收器领域中,下变频方法通常依赖于模数转换器(ADC)之前的一个(或更多)显式混合级。这些阶段不仅有助于整体功耗,而且对区域产生影响,并且可以在噪声和线性方面损害转换器的性能。作为替代方案,我们提出了一种接收器架构,其将ADC视为量化器和下变频器块。这是通过使用可变参考信号(在这种情况下,电压)而不是经典的时间不变参考信号来实现的。当嵌入到充电共享(CS)连续近似寄存器(SAR)ADC中时,在采样阶段期间,在数模转换器(DAC)电容器组中“保存”的这种变化的参考电压,防止了任何转换误差。此外,使用锁相环(PLL)以提供用于产生该可变参考电压的片上解决方案,这也消除了对专用带隙电路和参考缓冲器的需要。 8位50 MS / S CS-SAR ADC的后布局模拟表明,所提出的“嵌入式混合”技术能够降低高频信号,同时与A相比也增加了大约0.5位的有效分辨率。标准直流参考电压。

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