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Potentials of GaP as millimeter wave IMPATT diode with reference to Si,GaAs and GaN 被引量:3
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作者 Janmejaya Pradhan S K Swain +1 位作者 S R Pattnaik G N Dash 《红外与毫米波学报》 SCIE EI CAS CSCD 北大核心 2019年第4期395-402,共8页
This paper presents the simulation results of DC,small-signal and noise properties of GaP based Double Drift Region( DDR) Impact Avalanche Transit Time( IMPATT) diodes. In simulation study we have considered the flat ... This paper presents the simulation results of DC,small-signal and noise properties of GaP based Double Drift Region( DDR) Impact Avalanche Transit Time( IMPATT) diodes. In simulation study we have considered the flat DDR structures of IMPATT diode based on GaP,GaAs,Si and GaN( wurtzite,wz) material. The diodes are designed to operate at the millimeter window frequencies of 94 GHz and 220 GHz. The simulation results of these diodes reveal GaP is a promising material for IMPATT applications based on DDR structure with high break down voltage( V_B) as compared to Si and GaAs IMPATTs. It is also encouraging to worth note GaP base IMPATT diode shows a better output power density of 4. 9 × 10~9 W/m^2 as compared to Si and GaAs based IMPATT diode. But IMPATT diode based on GaN( wz) displays large values of break down voltage,efficiency and power density as compared to Si,GaAs and GaP IMPATTs. 展开更多
关键词 lmpact avalanche transit time(impatt) GAP GAN microwave and millimetre wave
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In0.17Al0.83N/GaN IMPATT二极管的温度特性
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作者 李秀圣 曹连振 《半导体技术》 CAS 北大核心 2020年第12期936-942,共7页
为研究碰撞电离雪崩渡越时间(IMPATT)二极管的温度特性,采用Sentaurus软件设计了晶格匹配的In0.17Al0.83N/GaN异质结IMPATT二极管二维结构,利用漂移-扩散模型研究了温度对二极管直流及高频特性的影响,并与GaN同质结IMPATT二极管的温度... 为研究碰撞电离雪崩渡越时间(IMPATT)二极管的温度特性,采用Sentaurus软件设计了晶格匹配的In0.17Al0.83N/GaN异质结IMPATT二极管二维结构,利用漂移-扩散模型研究了温度对二极管直流及高频特性的影响,并与GaN同质结IMPATT二极管的温度特性进行了比较。结果表明,温度升高时IMPATT二极管的击穿电压增大,使异质结和同质结IMPATT二极管的射频输出功率密度分别由300 K时的1.62 MW/cm2和1.24 MW/cm2增大至500 K时的1.79 MW/cm2和1.42 MW/cm2。温度升高时二极管雪崩区宽度增大,导致异质结和同质结IMPATT二极管的直流-射频转换效率分别由300 K时的15.4%和12.1%降低至500 K时的14.2%和10.7%。相比之下,In0.17Al0.83N/GaN异质结IMPATT二极管更适合高温工作,取得的研究数据可用于指导毫米波大功率InAlN/GaN异质结IMPATT二极管的设计。 展开更多
关键词 In0.17Al0.83N/GaN 二极管 异质结 碰撞电离雪崩渡越时间(impatt) 温度特性
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