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Taylor, Mark

Publications and source records attributed to Taylor, Mark.

Surface pressure sensing radar using V-band

We present the preliminary lab demonstration results of an oxygen differential absorption radar named DABAV (Differential Absorption Atmospheric V-band pressure radar) operating over a wide bandwidth in the V-band (65-70 GHz) using a compact architecture that reduces mass, power, size and development time.

Tsai, Michael↗

A W-Band Spatial Power-Combining Amplifier using GaN MMICs

In this paper, we describe a miniature powercombiner for monolithic millimetre-wave integrated circuit (MMIC) chips using spatial power-combining with cavity modes. We have designed GaN MMIC power amplifier chips for 94 GHz, and illustrate the concept of the W-Band Spatial Power Combining Amplifier (WSPCA). Using 1 Watt, 94 GHz MMIC chips in a two-way cavity mode combiner, we were able to achieve 2 Watts of output power with 9 dB gain and 15 % PAE. This technique could be extended to high power MMICs and larger numbers of chips to achieve higher output power in a compact size. The applications include earth science radar, but may be extended to other applications requiring wider bandwidth.

Gawande, Rohit↗