DocumentCode :
2059796
Title :
2.1 A highly linear inductorless wideband receiver with phase- and thermal-noise cancellation
Author :
Hao Wu ; Mikhemar, Mohyee ; Murphy, David ; Darabi, Hooman ; Chang, Mau-Chung Frank
Author_Institution :
Univ. of California, Los Angeles, Los Angeles, CA, USA
fYear :
2015
fDate :
22-26 Feb. 2015
Firstpage :
1
Lastpage :
3
Abstract :
As there is no off-chip RF filtering available in a true Software-Defined-Radio (SDR), SDR receivers typically sufferfrom two fundamental issues when subject to large out-of-band blockers: gain compression and reciprocal mixing. Recently developed techniques based on passive mixers [1,3,4] addressed the first issue, with [1] notably achieving 0dBm blocker-tolerance and low-noise (Fig. 2.1.1 top left), yet they are still susceptible to reciprocal mixing (RM). Meanwhile, another recent work [2] showed a technique to cancel the RM by exploiting the symmetry of the phase noise (Fig. 2.1.1 top right). However, it is only capable of cancelling the RM caused by a moderate CW blocker (up to -10dBm), and lacks a front-end that is wideband, highly linear, and low-noise. In this work, we report a new architecture with phase- and thermal-noise cancellation to tackle the aforementioned challenges. The resulting design achieves 2dB small-signal NF and tolerates 0dBm blockers, yet incorporates no inductors even in the RF VCO. A low-cost wideband ring oscillator is integrated on-chip, and the phase-noise cancellation is capable of rejecting the RM when either a CW or a modulated blocker is present. This inductorless receiver achieves competitive performance compared with the state-of-the-art, breaking the traditional trade-off between LOGEN´s power, phase noise, and cost commonly seen in all receivers.
Keywords :
mixers (circuits); phase noise; software radio; voltage-controlled oscillators; CW blocker; gain compression; highly linear inductorless wideband receiver; large out-of-band blockers; low-cost wideband ring oscillator; off-chip RF filtering; passive mixers; phase-noise cancellation; reciprocal mixing; software-defined-radio; thermal-noise cancellation; Mixers; Noise figure; Phase noise; Radio frequency; Receivers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Solid- State Circuits Conference - (ISSCC), 2015 IEEE International
Conference_Location :
San Francisco, CA
Print_ISBN :
978-1-4799-6223-5
Type :
conf
DOI :
10.1109/ISSCC.2015.7062850
Filename :
7062850
Link To Document :
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