2011Iranian Conference on Electrical EngineeringRequires access

An ultra low voltage ultra low power folded cascode CMOS LNA using forward body bias technology for GPS application

Ehsan Kargaran, Ghazal Nabovati, Khalil Mafinezhad, Hooman Nabovati

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Abstract

Summary from only given. A fully integrated low noise amplifier suitable for ultra-low voltage and ultra-low-power GPS applications is designed and simulated in a standard 0.18μm CMOS technology. By employing the folded cascode and forward body bias technique, the proposed LNA can operate at a reduced supply voltage and power consumption. The proposed LNA delivers a power gain (S21) of 17.6 dB with a noise figure of 3 dB, while consuming only 960μW dc power with an ultra low supply voltage of 0.45 V. The power consumption figure of merit(FOM1) and the tuning-range figure of merit(FOM2) are optimal at 18.33 dB/mw and 8.8(v·mw)−1, respectively.

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What this paper is about

Summary from only given. A fully integrated low noise amplifier suitable for ultra-low voltage and ultra-low-power GPS applications is designed and simulated in a standard 0.18μm CMOS technology. By employing the folded cascode and forward body bias technique, the proposed LNA can operate at a reduced supply voltage and power consumption. The proposed LNA delivers a power gain (S21) of 17.6 dB with a noise figure of 3 dB, while consuming only 960μW dc power with an ultra low supply voltage of 0.45 V. The power consumption figure of merit(FOM1) and the tuning-range figure of merit(FOM2) are optimal at 18.33 dB/mw and 8.8(v·mw)−1, respectively.

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Available abstract

Summary from only given. A fully integrated low noise amplifier suitable for ultra-low voltage and ultra-low-power GPS applications is designed and simulated in a standard 0.18μm CMOS technology. By employing the folded cascode and forward body bias technique, the proposed LNA can operate at a reduced supply voltage and power consumption. The proposed LNA delivers a power gain (S21) of 17.6 dB with a noise figure of 3 dB, while consuming only 960μW dc power with an ultra low supply voltage of 0.45 V. The power consumption figure of merit(FOM1) and the tuning-range figure of merit(FOM2) are optimal at 18.33 dB/mw and 8.8(v·mw)−1, respectively.

Key concepts: Figure of merit, Cascode, CMOS, Electrical engineering, Noise figure, Low-noise amplifier, Low voltage, Voltage

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