This paper presents a mm-wave two-stage push-push BiCMOS frequency quadrupler for E-band wireless backhaul applications. To enhance gain-bandwidth product and overcome the limitations of classic push-push pairs, coupled resonators realized through low-k transformers are employed. A novel transformer layout is proposed for single-ended to differential conversion to achieve superior suppression of differential mismatches and enhanced gain. The measured prototype, fabricated in 55 nm BiCMOS technology, achieves a remarkable 27% fractional bandwidth around the center frequency of 74 GHz with a power consumption of 7 mW only

Design of low-power wideband frequency quadruplers based on transformer-coupled resonators for E-Band backhaul applications

IOTTI, LORENZO;BASSI, MATTEO;MAZZANTI, ANDREA;SVELTO, FRANCESCO
2017-01-01

Abstract

This paper presents a mm-wave two-stage push-push BiCMOS frequency quadrupler for E-band wireless backhaul applications. To enhance gain-bandwidth product and overcome the limitations of classic push-push pairs, coupled resonators realized through low-k transformers are employed. A novel transformer layout is proposed for single-ended to differential conversion to achieve superior suppression of differential mismatches and enhanced gain. The measured prototype, fabricated in 55 nm BiCMOS technology, achieves a remarkable 27% fractional bandwidth around the center frequency of 74 GHz with a power consumption of 7 mW only
2017
Esperti anonimi
Inglese
Internazionale
STAMPA
Volume 58
413
420
8
Mm-Wave E-Band Backhaul Small cells Frequency synthesizer Frequency quadrupler Frequency multiplier Push-push Transformer coupled resonators Isolated balun BiCMOS
no
4
info:eu-repo/semantics/article
262
Iotti, Lorenzo; Bassi, Matteo; Mazzanti, Andrea; Svelto, Francesco
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1181218
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