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A Range-Scaled 13b 100 MS/s 0.13 um CMOS SHA-Free ADC Based on a Single Reference
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  • A Range-Scaled 13b 100 MS/s 0.13 um CMOS SHA-Free ADC Based on a Single Reference
  • A Range-Scaled 13b 100 MS/s 0.13 um CMOS SHA-Free ADC Based on a Single Reference
저자명
Hwang. Dong-Hyun,Song. Jung-Eun,Nam. Sang-Pil,Kim. Hyo-Jin,An. Tai-Ji,Kim. Kwang-Soo,Lee. Seung-Hoon
간행물명
Journal of semiconductor technology and science
권/호정보
2013년|13권 2호|pp.98-107 (10 pages)
발행정보
대한전자공학회
파일정보
정기간행물|ENG|
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기타
이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

This work describes a 13b 100 MS/s 0.13 um CMOS four-stage pipeline ADC for 3G communication systems. The proposed SHA-free ADC employs a range-scaling technique based on switched-capacitor circuits to properly handle a wide input range of $2V_{P-P}$ using a single on-chip reference of $1V_{P-P}$. The proposed range scaling makes the reference buffers keep a sufficient voltage headroom and doubles the offset tolerance of a latched comparator in the flash ADC1 with a doubled input range. A two-step reference selection technique in the back-end 5b flash ADC reduces both power dissipation and chip area by 50%. The prototype ADC in a 0.13 um CMOS demonstrates the measured differential and integral nonlinearities within 0.57 LSB and 0.99 LSB, respectively. The ADC shows a maximum signal-to-noise-and-distortion ratio of 64.6 dB and a maximum spurious-free dynamic range of 74.0 dB at 100 MS/s, respectively. The ADC with an active die area of 1.2 $mm^2$ consumes 145.6 mW including high-speed reference buffers and 91 mW excluding buffers at 100 MS/s and a 1.3 V supply voltage.