Title :
RF Circuit Linearity Optimization Using a General Weak Nonlinearity Model
Author :
Cheng, Wei ; Oude Alink, Mark S. ; Annema, Anne Johan ; Croon, Jeroen A. ; Nauta, Bram
Author_Institution :
Centre for Telematics & Inf. Technol. (CTIT), Univ. of Twente, Enschede, Netherlands
Abstract :
This paper focuses on optimizing the linearity in known RF circuits, by exploring the circuit design space that is usually available in today´s deep submicron CMOS technologies. Instead of using brute force numerical optimizers we apply a generalized weak nonlinearity model that only involves AC transfer functions to derive simple equations for obtaining design insights. The generalized weak nonlinearity model is applied to three known RF circuits: a cascode common source amplifier, a common gate LNA and a CMOS attenuator. It is shown that in deep submicron CMOS technologies the cascode transistor in both the common source amplifier and in the common gate amplifier significantly contributes IM3 distortion. Some design insights are presented for reducing the cascode transistor related distortion, among which moderate inversion biasing that improves IIP3 by 10 dB up to 5 GHz in a 90 nm CMOS process. For the attenuator, a wideband IM3 cancellation technique is introduced and demonstrated using simulations.
Keywords :
CMOS analogue integrated circuits; MMIC amplifiers; field effect MMIC; integrated circuit design; integrated circuit modelling; linear programming; low noise amplifiers; numerical analysis; AC transfer functions; CMOS attenuator; IIP3; IM3 distortion; RF circuit linearity optimization; brute force numerical optimizers; cascode common source amplifier; cascode transistor; circuit design space; common gate LNA; common gate low noise amplifier; deep submicron CMOS technologies; general weak nonlinearity model; size 90 nm; wideband IM3 cancellation technique; Integrated circuit modeling; Linearity; Logic gates; Nonlinear distortion; Radio frequency; Semiconductor device modeling; Transistors; Attenuators; IIP3; cascode amplifier; circuit optimization; linearity; nonlinearity model;
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2012.2185313