Microwave Large-signal model establishment of Enhancement-mode AlGaAs/InGaAs pHEMT and Optical Communication Receiver Design

碩士 === 長庚大學 === 電子工程學研究所 === 97 === A modified Angelov model for Small Sizes and Scaling Gate Width in High Performance AlGaAs/InGaAs Enhancement-Mode pHEMTs is presented which achieves a good agreement with the device DC and microwave performance. This model is based on the Angelov model, by modify...

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Main Authors: Che Yen Huang, 黃哲彥
Other Authors: H. C. Chiu
Format: Others
Published: 2009
Online Access:http://ndltd.ncl.edu.tw/handle/95412343471522537202
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spelling ndltd-TW-097CGU054280162015-10-13T12:04:55Z http://ndltd.ncl.edu.tw/handle/95412343471522537202 Microwave Large-signal model establishment of Enhancement-mode AlGaAs/InGaAs pHEMT and Optical Communication Receiver Design 增強型異質結構場效應電晶體大訊號模型建立與光纖通訊前端接收電路設計 Che Yen Huang 黃哲彥 碩士 長庚大學 電子工程學研究所 97 A modified Angelov model for Small Sizes and Scaling Gate Width in High Performance AlGaAs/InGaAs Enhancement-Mode pHEMTs is presented which achieves a good agreement with the device DC and microwave performance. This model is based on the Angelov model, by modifying the formula to have comprehensive bias dependent descriptions for nonlinear behaviors of the devices. The small sizes transistor can reduce the IC layout area. In the forward of Optical communication, the Photo Diode will translate the 850nm optical signal to electrical signal, after that, the electrical signal will be amplified by TIA(Transimpedance Amplifier) and LA(Limiting Amplifier). We will use different bandwidth broaden technique to satisfy the requirement of 10Gb/s. For example, C-peaking tech, L-peaking tech, and the compensation tech. In this work, we use the L-peaking and compensation tech in TIA. The schematic of LA is Cherry-Hooper Amplifier. At the end of the research, we hope we can integrate the PD+TIA+LA in the future. H. C. Chiu 邱顯欽 2009 學位論文 ; thesis 95
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format Others
sources NDLTD
description 碩士 === 長庚大學 === 電子工程學研究所 === 97 === A modified Angelov model for Small Sizes and Scaling Gate Width in High Performance AlGaAs/InGaAs Enhancement-Mode pHEMTs is presented which achieves a good agreement with the device DC and microwave performance. This model is based on the Angelov model, by modifying the formula to have comprehensive bias dependent descriptions for nonlinear behaviors of the devices. The small sizes transistor can reduce the IC layout area. In the forward of Optical communication, the Photo Diode will translate the 850nm optical signal to electrical signal, after that, the electrical signal will be amplified by TIA(Transimpedance Amplifier) and LA(Limiting Amplifier). We will use different bandwidth broaden technique to satisfy the requirement of 10Gb/s. For example, C-peaking tech, L-peaking tech, and the compensation tech. In this work, we use the L-peaking and compensation tech in TIA. The schematic of LA is Cherry-Hooper Amplifier. At the end of the research, we hope we can integrate the PD+TIA+LA in the future.
author2 H. C. Chiu
author_facet H. C. Chiu
Che Yen Huang
黃哲彥
author Che Yen Huang
黃哲彥
spellingShingle Che Yen Huang
黃哲彥
Microwave Large-signal model establishment of Enhancement-mode AlGaAs/InGaAs pHEMT and Optical Communication Receiver Design
author_sort Che Yen Huang
title Microwave Large-signal model establishment of Enhancement-mode AlGaAs/InGaAs pHEMT and Optical Communication Receiver Design
title_short Microwave Large-signal model establishment of Enhancement-mode AlGaAs/InGaAs pHEMT and Optical Communication Receiver Design
title_full Microwave Large-signal model establishment of Enhancement-mode AlGaAs/InGaAs pHEMT and Optical Communication Receiver Design
title_fullStr Microwave Large-signal model establishment of Enhancement-mode AlGaAs/InGaAs pHEMT and Optical Communication Receiver Design
title_full_unstemmed Microwave Large-signal model establishment of Enhancement-mode AlGaAs/InGaAs pHEMT and Optical Communication Receiver Design
title_sort microwave large-signal model establishment of enhancement-mode algaas/ingaas phemt and optical communication receiver design
publishDate 2009
url http://ndltd.ncl.edu.tw/handle/95412343471522537202
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