A 76–84 GHz SiGe Power Amplifier Array Employing Low-Loss Four-Way Differential Combining Transformer

Microwave Theory and Techniques, IEEE Transactions(2013)

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摘要
This paper presents holistic design of a novel four-way differential power-combining transformer for use in millimeter-wave power-amplifier (PA). The combiner with an inner radius of 25 μm exhibits a record low insertion loss of 1.25 dB at 83.5 GHz. It is designed to simultaneously act as a balanced-to-unbalanced converter, removing the need for additional BALUNs typically required in differential circuits. A complete circuit comprised of a power splitter, two-stage differential cascode PA array, a power combiner as well as input and output matching elements was designed and realized in SiGe technology with fT/fmax 170/250 GHz. Measured small-signal gain of at least 16.8 dB was obtained from 76.4 to 85.3 GHz with a peak 19.5 dB at 83 GHz. The prototype delivered 12.5 dBm output referred 1 dB compression point and 14 dBm saturated output power when operated from a 3.2 V dc supply voltage at 78 GHz.
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ge-si alloys,baluns,differential amplifiers,millimetre wave power amplifiers,power combiners,power transformers,semiconductor materials,sige,balanced-to-unbalanced converter,balun,differential circuits,frequency 170 ghz,frequency 250 ghz,frequency 76 ghz to 84 ghz,loss 1.25 db,low-loss four-way differential power combining transformer,matching elements,millimeter-wave power-amplifier,power amplifier array,power splitter,radius 25 mum,two-stage differential cascode pa array,voltage 3.2 v,$e$ -band,cascode,differential circuit,hetero-junction bipolar transistor (hbt),integrated circuit (ic),millimeter-wave,power amplifier,power combiner,silicon germanium (sige),transformer
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