Title :
Ku-band low noise multistage amplifier MIC design having performance comparable to MMIC
Author :
Patel, Sanket S. ; Gupta, Swastik ; Ghodgaonkar, Deepak
Author_Institution :
RF & Wireless Res. Group, Dhirubhai Ambani Inst. of Inf. & Commun. Technol. (DA-IICT), Gandhinagar, India
Abstract :
A novel common source three stage microwave integrated circuit (MIC) low noise amplifier (LNA) is designed, analyzed, fabricated and tested at Ku-band. Each stage is operated at 2V-15mA rating to achieve optimum desired gain-noise performance taking care of trade-offs. 30dB gain with 1.4dB minimum noise figure is achieved at 13GHz. Input port is noise matched giving input return loss of -13dB. Power matched output port provides output return loss of -27dB. It has -57dB isolation to ensure the unconditional stability. However, the circuit is also tested with 1V-2.6mA lower operating bias point. It keeps the DC power consumption as low as 7.8mW. In this case, the measurements show a 26dB gain with 2.14dB noise figure, -9dB input return loss, -18dB output return loss and -60dB isolation. MIC results show circuit´s potential to achieve a comparable response to that of monolithic microwave integrated circuits (MMIC). Circuit performance is optimized by proper selection of the stability resistors for multistage configuration. Device used here is a high electron mobility transistor (HEMT). The circuit is fabricated on 25mil alumina substrate (εr=9.9, tanδ=0.0007 at 10GHz) with gold plated Kovar carrier plate.
Keywords :
HEMT integrated circuits; integrated circuit design; low noise amplifiers; microwave integrated circuits; microwave power amplifiers; DC power consumption; HEMT; Ku-band low-noise multistage amplifier MIC design; MMIC; alumina substrate; circuit performance; common source three-stage MIC LNA; common source three-stage microwave integrated circuit low noise amplifier; current 15 mA; frequency 10 GHz; gain 26 dB; gain 30 dB; gain-noise performance; gold-plated Kovar carrier plate; high electron mobility transistor; input port; loss -18 dB; loss -27 dB; loss -9 dB; loss 13 dB; monolithic microwave integrated circuits; multistage configuration; noise figure 1.4 dB; noise figure 2.14 dB; noise matching; operating bias point; power 7.8 mW; power-matched output port; size 25 mil; stability resistors; voltage 2 V; Loss measurement; Low-noise amplifiers; Microwave amplifiers; Microwave circuits; Microwave integrated circuits; Noise figure; Ku-band; low noise amplifier; low power; micro-wave integrated circuit; multistage; noise matching; small signal amplifier;
Conference_Titel :
Advances in Computing, Communications and Informatics (ICACCI, 2014 International Conference on
Conference_Location :
New Delhi
Print_ISBN :
978-1-4799-3078-4
DOI :
10.1109/ICACCI.2014.6968609