• Title/Summary/Keyword: GaAs FET

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Fabrication and Characteristization of AlGaAs/InGaAs/GaAs Heterostructure Quantum-Wire FET (AlGaAs/InGaAs/GaAs 이종접합 양자선-FET의 제작 및 특성)

  • 손영진;이봉훈;정문영;정윤하
    • Proceedings of the IEEK Conference
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    • 2000.11b
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    • pp.13-16
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    • 2000
  • A quantum-wire field effect transistor(QW-FET) using asymmetric double InGaAs channel and Si-delta doped barrier has been fabricated. It exhibited good modulation and saturation characteristic in the range of ${\mu}\textrm{A}$ current level. For estimated channel width of 150nm QW-FET, maximum transconductance was about 400 mS/mm which is higher than a conventional heterostructure FET(HFET) with the same epi-structure.

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Characteristics of AlGaAs/GaAs Quantum-Well Delta-Doped Channel FET's by Low Pressure Metalorganic Chemical Vapor Deposition (저압 유기금속기상 성장법에 의한 AlGaAs/GaAs 양자 우물에 델타 도우핑된 채널 FET 특성)

  • 장경식;정동호;이정수;정윤하
    • Journal of the Korean Institute of Telematics and Electronics A
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    • v.29A no.4
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    • pp.33-37
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    • 1992
  • AlGaAs/GaAs quantum well delta-doped channel FET's have been successfully fabricated using by low-pressure metalorganic chemical vapor deposition(LP-MOCVD). The FET's with a gate dimension of 1.8$\mu$m $\times$ 100$\mu$m have a maximum transconductance of 190 mS/mm and a maximum current density of 425 mA/nm. The devices show extremely broad transconductances with a large voltage swing of 2.4V. The S-parameter measurements have indicated that the current gain and power gain cutoff frequencies of the device were 7 and 15 GHz, respectively. These values are among the best performance reported for GaAs based heterojunction FET's with a similar device geometry.

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Comparative Performance Evaluation of Si MOSFET and GaN FET Power System (Si MOSFET과 GaN FET Power System 성능 비교 평가)

  • Ahn, Jung-Hoon;Lee, Byoung-Kuk;Kim, Jong-Soo
    • The Transactions of the Korean Institute of Power Electronics
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    • v.19 no.3
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    • pp.283-289
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    • 2014
  • This paper carries out a series of analysis of power system using Gallium Nitride (GaN) FET which has wide band gap (WBG) characteristics comparing to conventional Si MOSFET-used power system. At first, for comparison of each semiconductor device, the switching-transient parameter is quantitatively extracted from released information of GaN FET. And GaN FET model which reflect this dynamic property is configured. By using this model, the performance of GaN FET is analyzed comparing to Si MOSFET. Also, in order to enable a representative assessment on the power system level, Si MOSFET and GaN FET are applied to the most common structure of power system, full-bridge, and each power systems are compared based on various criteria, such as performance, efficiency and power density. The entire process is verified with the aid of mathematical analysis and simulation.

A Study A on Internal Loss Characteristics and Efficiency Improvement of Low Power Flyback Converter Using WBG Switch (WBG 스위치를 적용한 소용량 플라이백 컨버터의 내부손실 특성과 효율 개선에 관한 연구)

  • Ahn, Tae Young;Yoo, Jeong Sang
    • Journal of the Semiconductor & Display Technology
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    • v.19 no.4
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    • pp.99-104
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    • 2020
  • In this paper, efficiency and loss characteristics of GaN FET were reported by applying it into the QR flyback converter. In particular, for the comparison of efficiency characteristics, QR flyback converter experimental circuits with Si FET and with GaN FET were separately produced in 12W class. As a result of the experiment, the experimental circuit of the QR flyback converter using GaN FET reached a high efficiency of 90% or more when the load power was 2W or more, and the maximum efficiency was observed to be about 92%, and the maximum loss power was about 1.1W. Meanwhile, the efficiency of the experimental circuit with Si FET increased as the input voltage increased, and the maximum efficiency was observed to be about 82% when the load power was 9W or higher, and the maximum loss power was about 2.8W. From the results, it is estimated that that in the case of the experimental circuit applying the GaN FET switch, the power conversion efficiency was improved as the switching loss and conduction loss due to on-resistance were reduced, and the internal loss due to the synchronous rectifier was minimized. Consequently, it is concluded that the GaN FET is suitable for under 20W class power supply unit as a high efficiency power switch.

Design of an AlGaAs/GaAs Double-Heterojunction Power FET (AlGaAs/GaAs double-heterojunction 전력용 FET의 설계)

  • 박인식;김상명;신석현;이진구;신재호;김도현
    • Journal of the Korean Institute of Telematics and Electronics A
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    • v.30A no.8
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    • pp.57-62
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    • 1993
  • In this paper, both feasible power gain and power added efficiency at the operating center frequency of 12 GHz are stressed to design a power FET with double-heterjunction structure. The variable parameters or the design are the unit gate width, the gate length, the doping density of AlGaAs, the AlGaAs thickness, the spacer thickness, the Al mole fraction, and the GaAs well thickness. The results of simulation for the FET with 1.mu.m gate length show that the power gain and the power added efficiency are 10.2 dB and 36.3% at 12GHz, respectively. An extrapolation of the relation between current gain and unilateral gain yields a 17 GHz cutoff frequency and 43GHz maximum frequency of oscillation. The calculation of the current versus voltage characteristics show that the output power of the device is about 0.62W.

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A Study on the Efficiency Characteristics of the Interleaved CRM PFC using GaN FET (GaN FET를 적용한 인터리브 CRM PFC의 효율특성에 관한 연구)

  • Ahn, Tae-Young;Jang, Jin-Haeng;Gil, Yong-Man
    • The Transactions of the Korean Institute of Power Electronics
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    • v.20 no.1
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    • pp.65-71
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    • 2015
  • This paper presents the efficiency analysis of a critical current mode interleaved PFC rectifier, in which each of three different semiconductor switches is employed as the active switch. The Si FET, SiC FET, and GaN FET are consecutively used with the prototype PFC rectifier, and the efficiency of the PFC rectifier with each different semiconductor switch is analyzed. An equivalent circuit model of the PFC rectifier, which incorporates all the internal losses of the PFC rectifier, is developed. The rms values of the current waveforms main circuit components are calculated. By adapting the rms current waveforms to the equivalent model, all the losses are broken down and individually analyzed to assess the conduction loss, switching loss, and magnetic loss in the PFC rectifier. This study revealed that the GaN FET offers the highest overall efficiency with the least loss among the three switching devices. The GaN FET yields 96% efficiency at 90 V input and 97.6% efficiency at 240 V, under full load condition. This paper also confirmed that the efficiency of the three switching devices largely depends on the turn-on resistance and parasitic capacitance of the respective switching devices.

Wide Bandwidth GaAs FET Distributed Amplifier in Microwave Frequencies (GaAs FET 마이크로파 증폭기 (분배증폭기에서 대역폭을 증가시키는 방법을 중심으로))

  • 장익수
    • Journal of the Korean Institute of Telematics and Electronics
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    • v.21 no.1
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    • pp.51-56
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    • 1984
  • This paper describes the analysis and design of a GaAs FET distributed amplifier connecting a series capacitor to get a super wide bandwidth by reducing the gate line attenuation constant. In this approach a design example with a 300$\mu$ gate length FET devices is presented, and the abtained results are; that without series capacitors the bandwidth is 2-12 GHz, but with capacitors 2-20 GHz in flat gain.

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5MHz-2GHz에서 동작하는 광대역 증폭기의 설계 및 제작

  • 박천석
    • Proceedings of the Optical Society of Korea Conference
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    • 1990.02a
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    • pp.136-140
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    • 1990
  • A hybrid wideband amplifier having bandwidth from 5MHz to 2000MHz with a gain of 10db$\pm$3dB is designed and implemented by using a lossy matched network and GaAs FET. The implemented amplifier circuit operates as a capacitor-resistor(C-R) coupled amplifier circuit in the low frequency range (below 800 MHz) in which {{{{ LEFT $\mid$ S_{21 } RIGHT $\mid$ }} for the GaAs FET is constant. It also operates as a lossless impedance matching circuit in the microwave frequency range in which S21 for the GaAs FET has a slope of approximately -6dB/octave. Using this configuration technique, Two stage GaAs FET amplifier implemented is measured to 10dB gain within a 3dB fluctuation over the frequency band from 5 to 2000MHz.

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