• Title/Summary/Keyword: Gallium nitride-based transistor

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(GaN MODFET Large Signal modeling using Modified Materka model) (Modified Materka model를 이용한 GaN MODFET 대신호 모델링)

  • 이수웅;범진욱
    • Proceedings of the IEEK Conference
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    • 2001.06b
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    • pp.217-220
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    • 2001
  • CaN(gallium nitride) MODFET(modulation doped field effect transistor) large signal model was studied using Modified Materka-Kacprzak large signal MODFET model. using the Dambrine's method[3, at 45MHz-40㎓, Measured S-parameter and DC characteristics. based on measuring results, small signal parameter extraction was conducted. by the cold FET[4]method, measured parasitic elements were de-embedding. Extracted small signal parameters were modeled using modified Materka model, a sort of fitting function reproduce measuring results. to confirm conducted large signal modeling, modeled GaN MODFET's DC, S-parameter and Power characteristics were compared to measured results, respectively. by results were represented comparatively agreement, this paper showed that modified Materka model was useful in the GaN MODFET large signal modeling.

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Evaluation of GaN Transistors Having Two Different Gate-Lengths for Class-S PA Design

  • Park, Jun-Chul;Yoo, Chan-Sei;Kim, Dongsu;Lee, Woo-Sung;Yook, Jong-Gwan
    • Journal of electromagnetic engineering and science
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    • v.14 no.3
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    • pp.284-292
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    • 2014
  • This paper presents a characteristic evaluation of commercial gallium nitride (GaN) transistors having two different gate-lengths of $0.4-{\mu}m$ and $0.25-{\mu}m$ in the design of a class-S power amplifier (PA). Class-S PA is operated by a random pulse-width input signal from band-pass delta-sigma modulation and has to deal with harmonics that consider quantization noise. Although a transistor having a short gate-length has an advantage of efficient operation at higher frequency for harmonics of the pulse signal, several problems can arise, such as the cost and export license of a $0.25-{\mu}m$ transistor. The possibility of using a $0.4-{\mu}m$ transistor on a class-S PA at 955 MHz is evaluated by comparing the frequency characteristics of GaN transistors having two different gate-lengths and extracting the intrinsic parameters as a shape of the simplified switch-based model. In addition, the effectiveness of the switch model is evaluated by currentmode class-D (CMCD) simulation. Finally, device characteristics are compared in terms of current-mode class-S PA. The analyses of the CMCD PA reveal that although the efficiency of $0.4-{\mu}m$ transistor decreases more as the operating frequency increases from 955 MHz to 3,500 MHz due to the efficiency limitation at the higher frequency region, it shows similar power and efficiency of 41.6 dBm and 49%, respectively, at 955 MHz when compared to the $0.25-{\mu}m$ transistor.

Investigation of GaN Negative Capacitance Field-Effect Transistor Using P(VDF-TrFE) Organic/Ferroelectric Material (P(VDF-TrFE) 유기물 강유전체를 활용한 질화갈륨 네거티브 커패시턴스 전계효과 트랜지스터)

  • Han, Sang-Woo;Cha, Ho-Young
    • Journal of IKEEE
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    • v.22 no.1
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    • pp.209-212
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    • 2018
  • In this work, we developed P(VDF-TrFE) organic/ferroelectric material based metal-ferroelectric-metal (MFM) capacitors in order to improve the switching characteristics of gallium nitride (GaN) heterojunction field-effect transistors (HFET). The 27 nm-thick P(VDF-TrFE) MFM capacitors exhibited about 60 ~ 96 pF capacitance with a polarization density of $6{\mu}C/cm^2$ at 4 MV/cm. When the MFM capacitor was connected in series with the gate electrode of GaN HFET, the subthreshold slope decreased from 104 to 82 mV/dec.

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.

GaN based High Switching Frequency Modular Scalable Inverter System with Small Phase Inductor in PMSM Drive (소형 위상 인덕터를 가지는 PMSM 구동용 GaN 기반 고주파수 모듈라 스케일러블 인버터 시스템)

  • Jeong, Young-Woo;Kim, Rae-Young
    • Proceedings of the KIPE Conference
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    • 2019.11a
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    • pp.4-6
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    • 2019
  • 본 논문은 Modular Scalable Inverter System에서 큰 부피를 차지하는 인덕터를 저감하기 위한 방법을 제안한다. 최근 전력분야에서는 모듈형 전력변환 시스템을 사용함으로써 다양한 시스템에 필요한 전력을 공급하여 효율을 증가시키고 신뢰성을 높이는 방법들이 대두되고 있다. 하지만 모듈을 병렬로 사용하는 경우에는 모듈 간에 흐르는 순환 전류가 발생하게 된다. 이런 순환전류는 부하로 전력을 공급하지 않기 때문에 시스템 효율을 떨어트리고 전류제어 및 부하 분담을 방해한다. 따라서 병렬형 인버터에는 출력에 순환전류 저감을 위한 인덕터를 사용해야 한다는 단점이 있다. 모듈형 전력변환 장치에서 큰 크기의 출력 인덕터는 시스템 사이즈를 늘리고 비용을 증가시키고 전력밀도가 낮아지게 된다. 따라서 GaN HEMT (Gallium Nitride High Electron Mobility Transistor) 기반 인버터와 순환전류 저감 알고리즘을 사용하여 고속 스위칭을 함으로써 동일한 순환전류 저감 성능을 확보하지만 출력 인덕터의 크기를 줄이는 방안을 제시한다.

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High Heat Dissipation and High Power Density Modular Buck Converter Based GaN-FET (GaN-FET를 적용한 고방열 및 고전력밀도 모듈형 벅 컨버터)

  • Kim, Sung-Kwon;Yang, Jung-woo;Choi, Yun-Hwa;Kim, Ku-Yong;Han, Sang-Kyoo
    • Proceedings of the KIPE Conference
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    • 2017.07a
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    • pp.96-97
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    • 2017
  • 본 논문은 Gallium Nitride-Field Effect Transistor(GaN-FET)를 적용한 고방열 및 고전력밀도 모듈형 벅 컨버터를 제안한다. Si-MOSFET를 적용한 벅 컨버터는 높은 스위칭 손실로 인해 고주파수 구동 및 자기소자 사이즈 저감에 한계가 존재하여 고전력밀도화가 어렵다. 반면, 제안된 방식은 스위칭 특성이 우수한 GaN-FET를 적용하여 고주파수 구동이 가능하며, 추가로 평면형 인덕터를 적용함으로써 자기소자의 부피 저감을 통해 컨버터의 고전력밀도화 및 모듈화가 가능하다. 특히, 방열 플레이트 및 케이스로 구성된 새로운 고방열 구조를 통해 방열효과를 극대화 시킬 수 있다. 제안된 모듈형 벅 컨버터의 타당성 검증을 위해 입력전압 48V, 출력전압 24V의 300W급 시작품 제작을 통한 실험결과를 제시한다.

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Switching Characteristic Analysis of 3kW Single-Phase Inverter based on GaN HEMT (GaN HEMT를 적용한 3kW급 단상 인버터의 스위치 특성 분석)

  • Han, Seok-Gyu;Choi, Su-Ho;Joo, Dong-Myoung;Park, Jun-Sung;Choi, Jun-Hyuk
    • Proceedings of the KIPE Conference
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    • 2020.08a
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    • pp.294-295
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    • 2020
  • 차세대 전력반도체 중 하나인 GaN HEMT(Gallium Nitride High Electron Mobility Transistor)는 낮은 온 저항, 고속 스위칭 및 낮은 출력 커패시턴스 특성을 가지므로 더 높은 전력밀도를 달성할 수 있다. 그러나 낮은 문턱 전압 및 높은 dv/dt로 인해 외부 요인에 취약하다. 본 논문에서는 GaN HEMT를 3kW급 단상 인버터에 적용 시 발생한 문제점을 분석하고 해결방안을 제시한다.

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S-Band Low Noise Amplifier Based on GaN HEMT for High Input Power Robustness (고입력 내성을 위한 GaN HEMT 기반 S-대역 저잡음 증폭기)

  • Kim, Hong-Hee;Kim, Sang-Hoon;Choi, Jin-Joo;Choi, Gil-Wong;Kim, Hyoung-Joo
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.26 no.2
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    • pp.165-170
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    • 2015
  • In this paper, we present design and measurement of LNA(Low Noise Amplifier) based on GaN HEMT(Gallium Nitride High Electron Mobility Transistor) to reduce the total noise figure of radar receiver and for robustness of LNA. In radar receiver using LNA based on GaAs(Gallium Arsenide) technology, limiter is necessary at the very front of the radar receiver to protect LNA. As a result, total noise figure of radar receiver is deteriorated. In this research, measured noise figure of LNA based on GaN HEMT is below 2 dB. In the case of commercialized GaAs LNA, recommended maximum input power is about 30 dBm. On the other hand, GaN HEMT LNA which is designed and measured is burned-out when input power is 43 dBm and robustness is guaranteed at input power 45.4 dBm.

High-Frequency GaN HEMTs Based Point-of-Load Synchronous Buck Converter with Zero-Voltage Switching

  • Lee, Woongkul;Han, Di;Morris, Casey T.;Sarlioglu, Bulent
    • Journal of Power Electronics
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    • v.17 no.3
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    • pp.601-609
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    • 2017
  • Gallium nitride (GaN) power switching devices are promising candidates for high switching frequency and high efficiency power conversion due to their fast switching, low on-state resistance, and high-temperature operation capability. In order to facilitate the use of these new devices better, it is required to investigate the device characteristics and performance in detail preferably by comparing with various conventional silicon (Si) devices. This paper presents a comprehensive study of GaN high electron mobility transistor (HEMT) based non-isolated point-of-load (POL) synchronous buck converter operating at 2.7 MHz with a high step-down ratio (24 V to 3.3 V). The characteristics and performance of GaN HEMT and three different Si devices are analytically investigated and the optimal operating point for GaN HEMT is discussed. Zero-voltage switching (ZVS) is implemented to minimize switching loss in high switching frequency operation. The prototype circuit and experimental data support the validity of analytical and simulation results.

Optimal Design of GaN-FET based High Efficiency and High Power Density Boundary Conduction Mode Active Clamp Flyback Converter (GaN-FET 기반의 고효율 및 고전력밀도 경계전류모드 능동 클램프 플라이백 컨버터 최적설계)

  • Lee, Chang-Min;Gu, Hyun-Su;Ji, Sang-Keun;Ryu, Dong-Kyun;Kang, Jeong-Il;Han, Sang-Kyoo
    • The Transactions of the Korean Institute of Power Electronics
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    • v.24 no.4
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    • pp.259-267
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    • 2019
  • An active clamp flyback (ACF) converter applies a clamp circuit and circulates the energy of leakage inductance to the input side, thereby achieving a zero-voltage switching (ZVS) operation and greatly reducing switching losses. The switching losses are further reduced by applying a gallium nitride field effect transistor (GaN-FET) with excellent switching characteristics, and ZVS operation can be accomplished under light load with boundary conduction mode (BCM) operation. Optimal design is performed on the basis of loss analysis by selecting magnetization inductance based on BCM operation and a clamp capacitor for loss reduction. Therefore, the size of the reactive element can be reduced through high-frequency operation, and a high-efficiency and high-power-density converter can be achieved. This study proposes an optimal design for a high-efficiency and high-power-density BCM ACF converter based on GaN-FETs and verifies it through experimental results of a 65 W-rated prototype.