Design study of a thermocouple power sensor as a monolithic fin-line

Mark H. Jones, Jonathan B. Scott
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Abstract

Making traceable power measurements above 110 GHz using current measurement technologies is challenging. We investigate a design of power sensor consisting of a thermocouple-based integrated circuit (IC) mounted as a finline component in WR-6 waveguide. The design is original in that it contains an antenna, terminating resistor and thermocouples on-chip. We detail the design and report results from simulations and measurements made on a two-port 16:1 scale model. Our design of scale model provides both insertion and reflection loss measurements. Electromagnetic simulation and easily-calibrated model measurements confirm that the short antenna fins feasible on a monolithic microwave integrated circuit (MMIC) can achieve acceptable specifications. The design proves to be relatively insensitive to the value of the terminating resistance or the size of the antenna fins.
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作为单片鳍线的热电偶功率传感器设计研究
使用当前的测量技术进行110 GHz以上的可追踪功率测量是具有挑战性的。我们研究了一种由热电偶集成电路(IC)组成的功率传感器的设计,该电路安装在WR-6波导中作为鳍线组件。该设计是原创的,因为它包含一个天线,终端电阻和热电偶芯片上。我们详细介绍了设计并报告了在双端口16:1比例模型上进行的模拟和测量的结果。我们设计的比例模型提供了插入损耗和反射损耗的测量。电磁仿真和易于校准的模型测量证实,在单片微波集成电路(MMIC)上可行的短天线翼可以达到可接受的规格。该设计对终端电阻的大小或天线翅片的尺寸相对不敏感。
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