A 3.1–10.6 GHz Ultra-Wideband CMOS Low Noise Amplifier With Current-Reused Technique
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چکیده
منابع مشابه
A 0.18um CMOS Current Reused Low-Noise Amplifier with Gain Compensated for Ultra-Wideband Wireless Receiver
A current reused low-noise amplifier (LNA) with gain compensated to extend the bandwidth and is designed for ultra-wideband (UWB) wireless receiver. The design consists of two cascode common-source amplifier and an output buffer which is implemented in 0.18um RF CMOS process. The LNA gives 13.1dB gain; 9.1GHz 3dB bandwidth (3.1-12.2GHz) while consuming 13.9mW through a 1.8V supply. Over the 3.1...
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Department of Physics and Electronics, University of Science-VNU Hochiminh City, Vietnam; Faculty of Electrical and Electronics Engineering, University of Technology, VNU Hochiminh City, Vietnam; Department of Electrical and Computer Engineering, University of Saskatchewan, Saskatoon, Canada Corresponding Author: Nhan Nguyen ______________________________________________________________________...
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Previously reported wideband CMOS low-noise amplifiers (LNAs) have difficulty in achieving both wideband input impedance matching and low noise performance at low power consumption and low supply voltage. We present a transformer noise-canceling wideband CMOS LNA based on a common-gate topology. The transformer, composed of the input and shunt-peaking inductors, partly cancels the noise origina...
متن کاملAnalysis and design of a CMOS current reused cascaded distributed amplifier with optimum noise performance
In this paper, analysis, simulation and design of a distributed amplifier (DA) with 0.13µm CMOS technology in the frequency range of 3-40 GHz is presented. Gain cell is a current reused circuit which is optimum in gain, noise figure, bandwidth and also power dissipation. To improve the noise performance in the frequency range of interest, a T-matching low pass filter LC network which is utilize...
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ژورنال
عنوان ژورنال: IEEE Microwave and Wireless Components Letters
سال: 2007
ISSN: 1531-1309
DOI: 10.1109/lmwc.2006.890503