SAR-assisted continuous-time 1-0 MASH delta-sigma modulator utilizing digital noise coupling디지털 잡음 결합을 이용한 축자 비교형 활용 연속시간 1-0 다단 잡음 정형 델타-시그마 변조기

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Recently, the demand of the low power high resolution ADC (Analog Digital Converter) for sensor or audio application has been increasing. These days, for such low power and high-resolution ADC, DSM (Delta Sigma Modulator) has become popular architecture and various technique to improve the performance for DSM has been introduced. In this research, by using that techniques, SAR-Assisted continuous-time 1-0 multi stage noise shaping (MASH) DSM utilizing digital noise coupling (DNC) is proposed. M-0 MASH which is also called as Leslie-Singh structure can increase effective resolution due to its structure advantage without increasing actual DSM loop resolution and it leads to the reduction of the quantization noise. Unlike the normal MASH structure, M-0 MASH cannot obtain additional noise shaping order. However, if DNC is employed to DSM, additional noise shaping order can be obtained without increasing DSM loop filter order. Therefore, in this research, the proposed architecture is designed to achieve high signal-to-distortion and noise ratio (SNDR) while minimizing power consumption by utilizing M-0 MASH and DNC structure. This work was implemented in a 28nm CMOS technology and its core layout occupies 0.24mm2. In 25kHz bandwidth with an oversampling ratio (OSR) of 256, this work could achieve 98.8dB SNDR with 202.8μW power consumption and it leads to 179.7dB Schreier figure of merit (FoM) which is competitive compared with other similar bandwidth works.
Advisors
Ryu, Seung-Takresearcher류승탁researcher
Description
한국과학기술원 :전기및전자공학부,
Publisher
한국과학기술원
Issue Date
2023
Identifier
325007
Language
eng
Description

학위논문(석사) - 한국과학기술원 : 전기및전자공학부, 2023.2,[iii, 25 p. :]

Keywords

Delta-Sigma Modulator▼aMASH▼aADC▼aDigital Noise Coupling; 델타-시그마 변조기▼a다단 잡음 정형▼a아날로그-디지털 변환기▼a디지털 잡음 결합

URI
http://hdl.handle.net/10203/309890
Link
http://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=1032912&flag=dissertation
Appears in Collection
EE-Theses_Master(석사논문)
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