Title :
A High Power-Efficiency D-Band Frequency Tripler MMIC With Gain Up to 7 dB
Author :
Mingquan Bao ; Kozhuharov, Rumen ; Zirath, Herbert
Author_Institution :
Broadband Technol., Ericsson Res., Ericsson, Sweden
Abstract :
A novel frequency tripler consisting of a harmonics generating stage and a converting stage is proposed. A common-emitter transistor in the first stage is used to produce mainly the first to third harmonics, while, a common-emitter transistor in the second stage converts simultaneously the first and the second harmonics into the third harmonic, and also amplifies the third harmonic at the input. The third harmonics obtained from different mechanisms add in favorably phase, and consequently improving the tripler´s conversion gain. A proof-of-concept circuit is designed and manufactured in a 0.25 μm InP DHBT Technology. The tripler has a conversion gain between 0 dB to 7 dB in the output frequency range from 110 to 155 GHz. It demonstrates also up to 30 dBc rejection ratio of the undesired first, the second and the fourth harmonics. The tripler consumes a dc power of only 45 mW, and achieves a state-of-the-art peak power efficiency of 20.2%, which to the authors´ knowledge, is the highest obtained among triplers with positive gain published so far.
Keywords :
III-V semiconductors; MMIC frequency convertors; bipolar MIMIC; frequency multipliers; heterojunction bipolar transistors; indium compounds; InP; InP DHBT technology; common-emitter transistor; conversion gain; converting stage; dc power; frequency 110 GHz to 155 GHz; harmonics generating stage; high power-efficiency D-band frequency tripler MMIC; output frequency range; power 45 mW; size 0.25 mum; third harmonics; Frequency conversion; Gain; Harmonic analysis; Power generation; Power system harmonics; Transistors; Transmission line measurements; DHBT; InP; frequency multiplier;
Journal_Title :
Microwave and Wireless Components Letters, IEEE
DOI :
10.1109/LMWC.2013.2290273