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A Reconfigurable DLL-Based Digital-to-Time Converter Using Charge Pump Current Interpolation and Digital Predistortion Linearization

机译:使用电荷泵电流插值和数字预失真线性化的可重构基于DLL的数字时间转换器

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This brief presents a digital-to-time converter (DTC) based on a reconfigurable delay-locked loop that employs dual feedback taps and interpolation at the output of two charge pumps biased with programmable complementary currents from a current digital-to-analog converter (I-DAC) to achieve fine delay tuning. Through selection of the feedback and output delay line taps, the 65-nm CMOS prototype can be configured to achieve different specs, such as a 24.5 ps delay span with a 0.46 ps maximum delay step and 1.33 ps maximum RMS jitter or a span of 244 ps with a 3.30 ps maximum step and 2.63 ps maximum RMS jitter when a 7-bit I-DAC and a 2 GHz input are used. A simple digital predistortion method to compensate for the inherent nonlinearity of the architecture is presented and experimentally shown to improve the worst-case integral nonlinearity from -14.3 LSB (-27.6 ps) to +1.79 LSB (+3.43 ps) for the 244 ps delay span case, and by 67%-88% at all taps for the same loop configuration. Excluding the I-DAC, which would require an estimated 0.2 mW, the DTC consumes 0.665 mW from a 1.25-V supply at 2 GHz and occupies an area of 46 mu m x 28 mu m.
机译:本简报介绍了一种基于可重配置的延迟锁定环路的数模转换器(DTC),它在两个电荷泵的输出端采用双反馈抽头和插值,这些电荷泵偏置有来自电流数模转换器的可编程互补电流( I-DAC)实现微调。通过选择反馈和输出延迟线抽头,可以将65 nm CMOS原型配置为实现不同的规格,例如24.5 ps的延迟跨度,最大延迟步长为0.46 ps,最大RMS抖动为1.33 ps,或跨度为244当使用7位I-DAC和2 GHz输入时,最大步进为3.30 ps,最大RMS抖动为2.63 ps。提出了一种简单的数字预失真方法来补偿架构固有的非线性,并通过实验证明,对于244 ps的延迟,最坏情况下的积分非线性从-14.3 LSB(-27.6 ps)提高到+1.79 LSB(+3.43 ps)跨度大小的情况下,对于相同的环路配置,所有抽头均降低67%-88%。不包括估计需要0.2 mW的I-DAC,DTC从2 GHz的1.25V电源消耗0.665 mW的功率,占地面积为46μmx 28μm。

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