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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 4-GS/s 11.3-mW 7-bit Time-Based ADC With Folding Voltage-to-Time Converter and Pipelined TDC in 65-nm CMOS
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A 4-GS/s 11.3-mW 7-bit Time-Based ADC With Folding Voltage-to-Time Converter and Pipelined TDC in 65-nm CMOS

机译:基于4GS / s 11.3-MW 7位时间的ADC,具有折叠电压与时转换器和65-NM CMOS的流水线TDC

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摘要

A folding voltage-to-time converter (VTC) is proposed for low-power time-based (TB) flash ADCs performing voltage-to-time-to-digital conversion. Conventional VTCs in TB flash ADCs generate multiple time outputs or have nonlinear conversion gain, resulting in a large power consumption in time-to-digital converters (TDCs) due to power-inefficient architectures using a lot of comparators. The proposed VTC generates a single time output with a large-and-linear conversion gain because the proposed VTC folds the whole voltage input range several times and each voltage-to-time conversion is defined within the voltage range reduced by folding. This allows the TDC power consumption to be reduced by using power-efficient architectures. Moreover, the VTC generates digital outputs as a result of the folding operation, thereby relaxing the resolution requirement of the TDC. A 7-bit TB ADC is implemented with a 4x folding VTC having a 2-bit digital output and a 5-bit pipelined TDC for high-speed low-power operation. A TB ADC fabricated in a 1-V 65-nm CMOS process achieves a 4-GS/s sampling frequency, 11.3-mW power consumption, a 34.58-dB SNDR, and a 64.5-fJ/conv.-step figure of merit (FoM).
机译:提出折叠电压与时转换器(VTC),用于执行电压与时间转换的低功耗时间(TB)闪存ADC。 TB闪存ADC中的传统VTCS产生多个时间输出或具有非线性转换增益,导致由于使用大量比较器的功率低效架构,导致时间转换器(TDC)的大功耗。所提出的VTC产生具有大和线性转换增益的单个时间输出,因为所提出的VTC折叠了多次电压输入范围,并且通过折叠减小的电压范围内限定了每个电压与时间转换。这允许通过使用功率有效的架构来减少TDC功耗。此外,VTC由于折叠操作而产生数字输出,从而松弛TDC的分辨率要求。通过具有2位数字输出的4倍折叠VTC和5位流水线TDC实现7比特TB ADC,用于高速低功率操作。在1-V 65-NM CMOS工艺中制造的TB ADC实现了4-GS / S采样频率,11.3mW功耗,34.58-dB SNDR和64.5-FJ / CONV.步优数( FOM)。

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