A 2.5 GHz 104 mW 57.35 dBc SFDR Non-linear DAC-based Direct-Digital Frequency Synthesizer in 65 nm CMOS Process

Citations

WEB OF SCIENCE

5
Citations

SCOPUS

5

초록

This paper presents a direct-digital frequency synthesizer (DDS) with dynamic performance enhancement techniques. First, a fixed-weight decoder with an auxiliary DAC is proposed to remove the truncation spur of the phase accumulator. Second, the proposed tri-state decoding scheme reduces the number of current sources for reducing timing mismatches and capacitances. Finally, a fine current source reusing technique is developed to reduce the number of current sources and power consumption. The proposed DDS is fabricated in 65 nm CMOS technology. The worst SFDR is 57.35 dBc at 2.5 GHz with power consumption of 104 mW. The measured figure of merit is 18,124 GHz.2(SFDR/6)/W. © 2022 IEEE.

키워드

Direct-digital frequency synthesizer; signal-To-noise and distortion ratio; spurious-free dynamic range
제목
A 2.5 GHz 104 mW 57.35 dBc SFDR Non-linear DAC-based Direct-Digital Frequency Synthesizer in 65 nm CMOS Process
저자
Yoon, D.-H.; Baek, Kwang Hyun; Kim, T.T.-H.
DOI
10.1109/ESSCIRC55480.2022.9911334
발행일
2022-09
유형
Proceedings Paper
저널명
ESSCIRC 2022 - IEEE 48th European Solid State Circuits Conference, Proceedings
페이지
241 ~ 244