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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Design and measurements of a novel subharmonically pumped millimeter-wave mixer using two single planar Schottky-barrier diodes
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Design and measurements of a novel subharmonically pumped millimeter-wave mixer using two single planar Schottky-barrier diodes

机译:使用两个单平面肖特基势垒二极管的新型次谐波泵浦毫米波混频器的设计和测量

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A novel design of a subharmonically pumped millimeter-wave mixer operating at room temperature was developed and realized. The double sideband conversion loss and mixer noise temperature were measured to be 6.2 dB and 930 K, respectively, at a local oscillator frequency of 73 GHz and an IF of 1.5 GHz. These results are comparable to the best published results measured for subharmonically pumped mixers at similar frequencies. The mixer shows good performance even at IF's up to 9.5 GHz resulting in a useful RF range from 136 GHz to 156 GHz. For the first time a subharmonically pumped millimeter-wave mixer was designed without the use of any scale model measurements or other high-frequency measurements. The whole design process occurred on the basis of computer simulations. Two single low-capacitance planar air-bridge type Schottky-barrier diodes are used as the mixing elements.
机译:开发并实现了在室温下工作的亚谐波泵浦毫米波混频器的新颖设计。在73 GHz的本地振荡器频率和1.5 GHz的IF时,测得的双边带转换损耗和混频器噪声温度分别为6.2 dB和930K。这些结果可与以相似频率在次谐波泵送混合器上测得的最佳结果相媲美。即使在高达9.5 GHz的IF频率下,混频器也表现出良好的性能,从而产生了从136 GHz到156 GHz的有用RF范围。第一次设计了不使用谐波泵浦的毫米波混频器,而没有使用任何比例模型测量或其他高频测量。整个设计过程是在计算机仿真的基础上进行的。两个低电容平面空气桥型肖特基势垒二极管被用作混合元件。

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