Design and Implementation of Coupled Inductor Voltage Control Oscillator and Gap Coupled Filter Amplifier

碩士 === 國立交通大學 === 電信工程系所 === 92 === This thesis presents the design of Voltage Control Voltage and Power Amplifier. First, we use GCT 2.0 um InGap/GaAs HBT process to implement 6.2GHz Coupled Inductor Differential Phase Voltage Control Oscillator and 5.5GHz Coupled Inductor Quadrature Phase Voltage...

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Main Authors: Chen Ching Hung, 陳慶鴻
Other Authors: Meng Chin Chun
Format: Others
Language:zh-TW
Published: 2004
Online Access:http://ndltd.ncl.edu.tw/handle/rt8y7e
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spelling ndltd-TW-092NCTU54370882019-05-15T19:38:01Z http://ndltd.ncl.edu.tw/handle/rt8y7e Design and Implementation of Coupled Inductor Voltage Control Oscillator and Gap Coupled Filter Amplifier 耦合電感壓控振盪器與空隙濾波放大器 Chen Ching Hung 陳慶鴻 碩士 國立交通大學 電信工程系所 92 This thesis presents the design of Voltage Control Voltage and Power Amplifier. First, we use GCT 2.0 um InGap/GaAs HBT process to implement 6.2GHz Coupled Inductor Differential Phase Voltage Control Oscillator and 5.5GHz Coupled Inductor Quadrature Phase Voltage Control Oscillator. The supply voltage of 6.2GHz DVCO is 6V and the phase noise is -110.22dBc/Hz@1MHz, the output power is -8.2 dBm and the tuning range is 200MHz. The supply voltage of 5.5GHz QVCO is 4V and the phase noise is -108.92dBc/Hz@1MHz, the output power is -3.5 dBm and the tuning range is 120MHz. We measure VCO circuit on board level to avoid the noise of power supply. We complete the design flow of impedance transform filter and use WIN 0.15 um pHemt process to simulate and implement 60GHz microstrip type Gap Coupled Filter Amplifier and 60GHz coplanar waveguide type Gap Coupled Filter Amplifier. We will measure it at NDL. Meng Chin Chun 孟慶宗 2004 學位論文 ; thesis 81 zh-TW
collection NDLTD
language zh-TW
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description 碩士 === 國立交通大學 === 電信工程系所 === 92 === This thesis presents the design of Voltage Control Voltage and Power Amplifier. First, we use GCT 2.0 um InGap/GaAs HBT process to implement 6.2GHz Coupled Inductor Differential Phase Voltage Control Oscillator and 5.5GHz Coupled Inductor Quadrature Phase Voltage Control Oscillator. The supply voltage of 6.2GHz DVCO is 6V and the phase noise is -110.22dBc/Hz@1MHz, the output power is -8.2 dBm and the tuning range is 200MHz. The supply voltage of 5.5GHz QVCO is 4V and the phase noise is -108.92dBc/Hz@1MHz, the output power is -3.5 dBm and the tuning range is 120MHz. We measure VCO circuit on board level to avoid the noise of power supply. We complete the design flow of impedance transform filter and use WIN 0.15 um pHemt process to simulate and implement 60GHz microstrip type Gap Coupled Filter Amplifier and 60GHz coplanar waveguide type Gap Coupled Filter Amplifier. We will measure it at NDL.
author2 Meng Chin Chun
author_facet Meng Chin Chun
Chen Ching Hung
陳慶鴻
author Chen Ching Hung
陳慶鴻
spellingShingle Chen Ching Hung
陳慶鴻
Design and Implementation of Coupled Inductor Voltage Control Oscillator and Gap Coupled Filter Amplifier
author_sort Chen Ching Hung
title Design and Implementation of Coupled Inductor Voltage Control Oscillator and Gap Coupled Filter Amplifier
title_short Design and Implementation of Coupled Inductor Voltage Control Oscillator and Gap Coupled Filter Amplifier
title_full Design and Implementation of Coupled Inductor Voltage Control Oscillator and Gap Coupled Filter Amplifier
title_fullStr Design and Implementation of Coupled Inductor Voltage Control Oscillator and Gap Coupled Filter Amplifier
title_full_unstemmed Design and Implementation of Coupled Inductor Voltage Control Oscillator and Gap Coupled Filter Amplifier
title_sort design and implementation of coupled inductor voltage control oscillator and gap coupled filter amplifier
publishDate 2004
url http://ndltd.ncl.edu.tw/handle/rt8y7e
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