2014Unpublished venueRequires access

Switching behavior of RF-LDMOS for class-F power amplifier in TCAD

Ahsan Ullah Kashif, Sher Azam, Muhammad Imran

Open publisher page 3 citations

Abstract

Nowadays the characterization of RF devices under large signal is performed in TCAD by using computational load-pull (CLP) simulation technique. In this paper, we modified the CLP simulation technique further to study the switching response of RF-LDMOS transistor for high efficiency switching power amplifier (e.g. class-F). In class-F PA operation, we achieved 85 % power added efficiency (PAE) together with 1.0 W/mm RF power density on the basis of finite harmonics. By this CLP technique, we can study the switching response of intrinsic RF-devices directly under large signal operation prior to fabrication or non-linear model of RF-transistor without including any external lumped matching networks.

About this research paper

What this paper is about

Nowadays the characterization of RF devices under large signal is performed in TCAD by using computational load-pull (CLP) simulation technique. In this paper, we modified the CLP simulation technique further to study the switching response of RF-LDMOS transistor for high efficiency switching power amplifier (e.g. class-F). In class-F PA operation, we achieved 85 % power added efficiency (PAE) together with 1.0 W/mm RF power density on the basis of finite harmonics. By this CLP technique, we can study the switching response of intrinsic RF-devices directly under large signal operation prior to fabrication or non-linear model of RF-transistor without including any external lumped matching networks.

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Available abstract

Nowadays the characterization of RF devices under large signal is performed in TCAD by using computational load-pull (CLP) simulation technique. In this paper, we modified the CLP simulation technique further to study the switching response of RF-LDMOS transistor for high efficiency switching power amplifier (e.g. class-F). In class-F PA operation, we achieved 85 % power added efficiency (PAE) together with 1.0 W/mm RF power density on the basis of finite harmonics. By this CLP technique, we can study the switching response of intrinsic RF-devices directly under large signal operation prior to fabrication or non-linear model of RF-transistor without including any external lumped matching networks.

Key concepts: LDMOS, RF power amplifier, Amplifier, Transistor, Radio frequency, Harmonics, Load pull, Electronic engineering

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