2011•Unpublished venueRequires access

Fully-integrated image rejection RF front-end design

Haddad Fayrouz, Wenceslas Rahajandraibe, Zaid Lakhdar, Oussama Frioui

Open publisher page 5 citations

Abstract

A radio-frequency front-end receiver, based on double-quadrature architecture within polyphase filters to achieve high image rejection ratio (IRR), is proposed in this paper. A tunable polyphase filter topology that allows counteracting the process spread and frequency drifts is dealt with. The 2.4GHz image rejection front-end, implemented in 130nm standard CMOS technology, ensures more than 60dB IRR and good linearity in high frequency applications.

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What this paper is about

A radio-frequency front-end receiver, based on double-quadrature architecture within polyphase filters to achieve high image rejection ratio (IRR), is proposed in this paper. A tunable polyphase filter topology that allows counteracting the process spread and frequency drifts is dealt with. The 2.4GHz image rejection front-end, implemented in 130nm standard CMOS technology, ensures more than 60dB IRR and good linearity in high frequency applications.

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Available abstract

A radio-frequency front-end receiver, based on double-quadrature architecture within polyphase filters to achieve high image rejection ratio (IRR), is proposed in this paper. A tunable polyphase filter topology that allows counteracting the process spread and frequency drifts is dealt with. The 2.4GHz image rejection front-end, implemented in 130nm standard CMOS technology, ensures more than 60dB IRR and good linearity in high frequency applications.

Key concepts: Polyphase system, Image response, RF front end, Radio frequency, Electronic engineering, Front and back ends, Intermediate frequency, Computer science

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