Low voltage power amplifier based on nonoscale CMOS
Paweena Suebsombut, Pattarakamon Rangsee, Roungsan Chaisricharoen
Abstract
Paweena Suebsombut, Pattarakamon Rangsee, Roungsan Chaisricharoen
Abstract
The low voltage power amplifier based on nanoscale CMOS has been designed and simulated in this paper. The power amplifier has designed by 2 stages cascade amplifier on 90 nm RF CMOS transistor. The first stage is the differential amplifier to amplify the signal between two inputs of the first amplifier and the second stage is the common drain amplifier to generate low power to power amplifier. This amplifier is designed for a smaller dimension due to CMOS technology. This power amplifier uses low voltage (1.5 V) to conserve the power consumption of amplifier. The output gain of this power amplifier is 23 dB at 2.45 GHz. The output power of this power amplifier is 34.3 dB at 2.45 GHz.
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The low voltage power amplifier based on nanoscale CMOS has been designed and simulated in this paper. The power amplifier has designed by 2 stages cascade amplifier on 90 nm RF CMOS transistor. The first stage is the differential amplifier to amplify the signal between two inputs of the first amplifier and the second stage is the common drain amplifier to generate low power to power amplifier. This amplifier is designed for a smaller dimension due to CMOS technology. This power amplifier uses low voltage (1.5 V) to conserve the power consumption of amplifier. The output gain of this power amplifier is 23 dB at 2.45 GHz. The output power of this power amplifier is 34.3 dB at 2.45 GHz.
Key concepts: Direct-coupled amplifier, Linear amplifier, Cascade amplifier, RF power amplifier, Power-added efficiency, Operational transconductance amplifier, Amplifier, Fully differential amplifier