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JSSC 2021第2期Data Converters65nmFlash ADC

A 15.1-mW 6-GS/s 6-bit S ingle-Channel Flash ADC With Selectively Activated 8 × Time- Domain

提出选择性激活8倍时域锁存插值技术,降低6位闪存ADC功耗并提升速度。
1V 65nm CMOS, 6GS/s, 15.1mW, 31.18dB SNDR, 85fJ/conversion-step
闪存ADC时域插值低功耗高速动态比较器
创新点1:选择性激活8倍时域锁存插值(方法创新):通过选择性激活8倍时域锁存插值技术,显著减少了动态比较器的数量,从传统的63个减少到10个,大幅降低了功耗。
创新点2:解决V-to-T转换非线性问题(电路创新):采用大输入信号定义宽线性范围,解决了V-to-T转换的非线性问题,确保了8倍插值的准确性,提升了转换精度。
创新点3:低功耗T-to-D转换设计(系统创新):在T-to-D转换中,仅选择性激活8个转换器中的2个,进一步降低了功耗,同时保持了高转换速度,实现了85-fJ/conversion-step的能效指标。
创新点4:高采样频率与低功耗结合(系统创新):通过优化动态比较器的RC时间常数,实现了6-GS/s的高采样频率,同时功耗仅为15.1 mW,显著提升了ADC的整体性能。
Abstract
A selectively activated 8 × time-domain (T-domain) latch interpolation is proposed for low-power high-speed flash analog-to-digital converters (ADCs). Flash ADCs with T-domain latch interpolation perform voltage-to-time (V-to-T) and time-to- digital (T-to-D) conversions along with conventional voltage-to- digital (V-to-D) conversion. This reduces the number of dynamic comparators (CMPs) of the V-to-D conversion for low power consumption. A conventional 4 × T-domain latch interpolation that obtains 2 bits in T-to-D conversion reduces the number of dynamic CMPs to 17 from the conventional 63 in a 6-bit flash ADC. To further reduce the number of dynamic CMPs, the nonlinearity of the V-to-T conversion is resolved in this work. A large input is used to define a wide linear range in the V-to-T conversion, and only the linear range is used for an 8 × interpolation. This enables a 3-bit T-to-D conversion, and thus, the number of dynamic CMPs is reduced to ten in a 6-bit flash ADC. The large input also enables high-speed operation by mitigating the RC time constant requirement of dynamic CMPs. For low-power T-to-D conversion, only two of eight converters in the T-to-D conversion are selectively activated for a conversion cycle. The fabricated 6-bit ADC chip in 1-V 65-nm CMOS achieves a 6-GS/s sampling frequency, a 15.1-mW power consumption, a 31.18-dB SNDR, and an 85-fJ/conversion- step figure of merit.