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Diamond Based DDR IMPATTs: Prospects and Potentiality as Millimeter-Wave Source at 94 GHz Atmospheric Window

机译:基于钻石的DDR IMPATT:在94 GHz大气窗口下作为毫米波源的前景和潜力

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摘要

Large-signal simulation is carried out in this paper to investigate the prospects and potentiality of Double-Drift Region (DDR) Impact Avalanche Transit Time (IMPATT) device based on semiconducting type-IIb diamond as millimeter-wave source operating at 94 GHz atmospheric window frequency. Large-signal simulation method developed by the authors and presented in this paper is based on non-sinusoidal voltage excitation. The simulation is carried out to obtain the large-signal characteristics such as RF power output, DC to RF conversion efficiency etc. of DDR diamond IMPATT device designed to operate at 94 GHz. The results show that the device is capable of delivering a peak RF power output of 7.01 W with 10.18% DC to RF conversion efficiency for a bias current density of 6.0×10^8 A m-2 and voltage modulation of 60% at 94 GHz; whereas for the same voltage modulation 94 GHz DDR Si IMPATT can deliver only 693.82 mW RF power with 8.74 efficiency for the bias current density of 3.4×10^8 A m-2.
机译:本文进行了大信号仿真,以研究基于IIb型半导体金刚石作为毫米波源,工作在94 GHz大气窗口的双漂移区(DDR)冲击雪崩渡越时间(IMPATT)装置的前景和潜力。频率。作者开发并在本文中介绍的大信号仿真方法是基于非正弦电压激励的。进行仿真以获得设计用于在94 GHz下运行的DDR钻石IMPATT器件的大信号特性,例如RF功率输出,DC到RF转换效率等。结果表明,该器件能够提供7.01 W的峰值RF功率输出,具有10.18%的DC到RF转换效率,在94 GHz的偏置电流密度为6.0×10 ^ 8 A m-2且电压调制为60% ;而对于相同的电压调制,对于3.4×10 ^ 8 A m-2的偏置电流密度,94 GHz DDR Si IMPATT只能提供693.82 mW的RF功率,效率为8.74。

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