• 제목/요약/키워드: MOM capacitor

검색결과 2건 처리시간 0.016초

A Study on the Design and Characteristics of thin-film L-C Band Pass Filter

  • Kim In-Sung;Song Jae-Sung;Min Bok-Ki;Lee Won-Jae;Muller Alexandru
    • KIEE International Transactions on Electrophysics and Applications
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    • 제5C권4호
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    • pp.176-179
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    • 2005
  • The increasing demand for high density packaging technologies and the evolution to mixed digital and analogue devices has been the con-set of increasing research in thin film multi-layer technologies such as the passive components integration technology. In this paper, Cu and TaO thin film with RF sputtering was deposited for spiral inductor and MOM capacitor on the $SiO_2$/Si(100) substrate. MOM capacitor and spiral inductor were fabricated for L-C band pass filter by sputtering and lift-off. We are analyzed and designed thin films L-C passive components for band pass filter at 900 MHz and 1.8 GHz, important devices for mobile communication system. Based on the high-Q values of passive components, MOM capacitor and spiral inductors for L-C band pass filter, a low insertion loss of L-C passive components can be realized with a minimized chip area. The insertion loss was 3 dB for a 1.8 GHz filter, and 5 dB for a 900 MHz filter. This paper also discusses a analysis and practical design to thin-film L-C band pass filter.

MOM 커패시터를 사용한 디지털-아날로그 변환기를 가진 10-bit 10-MS/s 비동기 축차근사형 아날로그-디지털 변환기 (A 10-bit 10-MS/s Asynchronous SAR analog-to-digital converter with digital-to-analog converter using MOM capacitor)

  • 정연호;장영찬
    • 한국정보통신학회논문지
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    • 제18권1호
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    • pp.129-134
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    • 2014
  • 본 논문은 디지털-아날로그 변환기(DAC: digital-to-analog converter), SAR 로직, 그리고 비교기로 구성된 10-bit 10-MS/s 비동기 축차근사형(SAR: successive approximation register) 아날로그-디지털 변환기(ADC: analog-to-digital converter)를 제안한다. Rail-to-rail의 입력 범위를 가지는 설계된 비동기 축차근사형 아날로그-디지털 변환기는 샘플링 속도를 향상시키기 위해 MOM(metal-oxide-metal) 커패시터를 이용한 바이너리 가중치 기반의 디지털-아날로그 변환기를 사용하여 구현한다. 제안하는 10-bit 10-MS/s 비동기 축차근사형 아날로그-디지털 변환기는 0.18-${\mu}m$ CMOS 공정에서 제작되고 면적은 $0.103mm^2$를 차지한다. 1.1 V의 공급전압에서 전력소모는 0.37 mW를 나타낸다. 101.12 kHz와 5.12 MHz의 아날로그 입력 신호에 대해 측정된 SNDR은 각각 54.19 dB와 51.59 dB이다.