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A Low-Power High-Speed Hybrid ADC With Merged Sample-and-Hold and DAC Functions for Efficient Subranging Time-Interleaved Operation

机译:具有合并的采样保持和DAC功能的低功耗高速混合ADC,可实现有效的细分时间交错操作

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摘要

An 8-bit 1-GS/s hybrid analog-to-digital converter (ADC) for high-speed low-power applications is introduced. It has a subranging architecture with a 3-bit flash ADC as a first stage and a 5-bit four-channel time-interleaved comparator-based asynchronous binary search (CABS) ADC as a second stage. In each channel, a merged sample-and-hold and capacitive digital-to-analog converter (SHDAC) performs the sampling and residue generation for the subranging operation. The effects of the parasitic capacitances on the SHDAC linearity are analyzed, and a linearity correction method is introduced to enable power-efficient high-speed operation in the presence of parasitics because the design approach allows reducing the sampling capacitance in the SHDAC. Furthermore, the sampling network configuration incorporates an error reduction technique to alleviate the clock feedthrough of bootstrap switches. The offsets of the comparators in the flash ADC are calibrated using a built-in reference signal via an extra sampling channel. According to postlayout simulations at 1 GS/s in 130-nm CMOS, the ADC has an effective number of bits higher than 7.37 bits up to the Nyquist frequency while consuming 13.3 mW from a 1.2-V supply.
机译:推出了用于高速低功耗应用的8位1-GS / s混合模数转换器(ADC)。它具有一个细分架构,第一级为3位闪存ADC,第二级为5位四通道基于时间交织的基于比较器的异步二进制搜索(CABS)ADC。在每个通道中,合并的采样保持和电容性数模转换器(SHDAC)进行采样和残差生成,以进行细分操作。分析了寄生电容对SHDAC线性度的影响,并介绍了一种线性校正方法,以在存在寄生虫的情况下实现高功率效率的高速工作,因为该设计方法允许减小SHDAC中的采样电容。此外,采样网络配置采用了减少错误的技术来减轻自举开关的时钟通过。闪存ADC中比较器的失调通过内置的参考信号通过额外的采样通道进行校准。根据在130 nm CMOS中以1 GS / s进行的布局后仿真,在奈奎斯特频率下,ADC的有效位数高于7.37位,而1.2 V电源的功耗为13.3 mW。

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