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A digital-to-time converter with coupled phase-rotating LC oscillators in 90-nm CMOS technology
Conference paper

A digital-to-time converter with coupled phase-rotating LC oscillators in 90-nm CMOS technology

Ming-Ting Wu, Hao-Che Hsu and Ping-Hsuan Hsieh
Proceedings - IEEE International Symposium on Circuits and Systems, Vol.2019-May, 8702744
2019

Abstract

Coupled LC oscillators Coupling circuit Digital-to-time converter Phase delay Phase noise Phase-rotating oscillators Electrical and Electronic Engineering
This paper presents the design and implementation of a digital-to-time converter with coupled phase-rotating LC oscillators. Unlike conventional quadrature signal generation where circuit symmetry is carefully maintained, in the proposed design, the coupling circuits are intentionally skewed for phase and timing adjustments, while the total phase delay through the coupling circuits is set properly to ensure resonant operation. With 7-bit control across a full cycle, the proposed design can provide unlimited adjustment range. A prototype is designed and implemented with a 90-nm CMOS process, and a phase-locked loop is adopted to stabilize the operating frequency. With the core oscillators operating at 9.87 GHz, measurement results show an effective timing resolution of 1.71 ps. Phase noise at 1 MHz and 10 MHz offset are -117.7 dBc/Hz and -124.7 dBc/Hz, respectively. The entire DTC design consumes less than 50 mW at all output settings.

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