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Design of peak detector and sub-flash architecture for adaptive resolution of flash ADC

机译:峰值检测器和子闪存架构的设计,可实现闪存ADC的自适应分辨率

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Here we have proposed a design of Peak Detector and Sub-Flash architecture for adaptive Resolution ADC in 90nm Technology. The control circuits are developed for Adaptive Resolution for Flash ADC. Peak detector circuits will consist of peak detector for variable resolution and sub-flash architecture for reconfigurability. The voltages from the Bias block are used to provide a control voltage for Peak Detector circuits. The Transient analysis for peak detector circuits are tested for pulse and sinusoidal input voltage and the settling time is reported to be 5ns and 10ns. For reconfigurability, the input voltage vin is compared with Bias Block voltages for achieving the resolution i.e, 4-, 5-, 6-bit respectively. Sub flash block consist of comparators, Mux and Decoder circuit. Rail to rail comparators are used for decision making of resolution selectivity. Process corner analysis is carried out for comparators to check process variation dependency of analog circuit. This reconfigurable architecture is clubbed with Threshold Inverter quantized (TIQ) ADC to get 4-, 5-, and 6-bit resolution depending upon input applied which provides large amount of power saving.
机译:在这里,我们为90nm技术中的自适应分辨率ADC提出了峰值检测器和子闪存架构的设计。该控制电路是针对Flash ADC的自适应分辨率而开发的。峰值检测器电路将包括用于可变分辨率的峰值检测器和用于可重配置的子闪存架构。来自偏置模块的电压用于为峰值检测器电路提供控制电压。对峰值检测器电路的瞬态分析进行了脉冲和正弦输入电压测试,稳定时间据报道为5ns和10ns。为了可重构性,将输入电压vin与偏置块电压进行比较,以分别实现4位,5位,6位分辨率。子闪存块由比较器,复用器和解码器电路组成。轨到轨比较器用于分辨率选择性的决策。为比较器执行工艺角分析,以检查模拟电路的工艺变化依赖性。这种可重新配置的体系结构与阈值逆变器量化(TIQ)ADC结合在一起,可根据所施加的输入获得4位,5位和6位分辨率,从而节省大量功率。

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