基于94 GHz和183 GHz平面肖特基二极管的辐射计模块的特性

C. Viegas, B. Alderman, J. Powell, Hairui Liu, Hui Wang, R. Sloan
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引用次数: 7

摘要

毫米波辐射测量由于其固有的优于可见光谱的优点,在成像和无损检测中迅速成为一种更广泛的技术。对大多数非导电材料的透明以及物体更好的空间分辨率是使用毫米波的几个突出特点。本文描述了两个以94 GHz和183 GHz为中心的基于肖特基二极管的宽带平面辐射计模块的特性。94 GHz辐射计采用w波段基频混频器配置,183 GHz辐射计采用次谐波混频器配置。本振方案由30 GHz源组成,频率增加三倍到90 GHz,这两种辐射计都是通用的。该三倍频器的转换效率为10%。基频混频器的中频带宽约为18 GHz,次谐波混频器的中频带宽约为10 GHz。测量两个前端混频器的双面带混频器噪声温度约为600 K,转换损耗约为5-6 dB。还将介绍噪声等效温差的辐射计特性。
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Characterization of 94 GHz and 183 GHz planar schottky diode based radiometer modules
Millimeter wave radiometry is fast becoming a more widespread technique in imaging and non-destructive testing due to its inherent benefits over the visible spectrum. Transparency to most non-conductive materials combined with better spatial resolution of objects are a few underlining features of using millimeter waves. This paper describes the characterization of two broadband, planar Schottky diode based radiometer modules centered at 94 GHz and 183 GHz. The 94 GHz radiometer is built using a W-band fundamental mixer configuration while the 183 GHz radiometer uses a sub-harmonic mixer. The local oscillator scheme consisting of a 30 GHz source which is frequency tripled to 90 GHz is common to both radiometers. The frequency tripler has measured conversion efficiency of 10%. The IF bandwidth for the fundamental mixer is about 18 GHz while the sub-harmonic mixer is 10 GHz. The double-sideband mixer noise temperature for both front end mixers was measured to be around 600 K with a conversion loss of approximately 5-6 dB. Radiometer characterization for noise equivalent temperature difference will also be presented.
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