DocumentCode :
72692
Title :
RF Input Matching Design for Closed-Loop Direct Delta–Sigma Receivers
Author :
Ostman, Kim B. ; Englund, Mikko ; Viitala, Olli ; Stadius, Kari ; Koli, Kimmo ; Ryynanen, Jussi
Author_Institution :
Nokia Technol., Espoo, Finland
Volume :
63
Issue :
4
fYear :
2015
fDate :
Apr-15
Firstpage :
1370
Lastpage :
1379
Abstract :
Emerging digital-intensive receiver architectures require new methods for input matching design. In particular, closed-loop ΔΣ-based receivers inject discrete-time global feedback to the RF low-noise amplifier (LNA) output. When using feedback LNA topologies with local internal feedback, receiver input matching thus no longer depends only on analog LNA characteristics, but also on the transfer function of the full receiver chain. This paper proposes a systematic input matching design method for such receivers. We demonstrate how this method is applied to the recently introduced active direct delta-sigma receiver (DDSR). We also show that global ΔΣ feedback in the DDSR counteracts the effects of the local feedback of the LNA on receiver input impedance, and how this can be used to improve receiver performance. A generic DDSR input impedance model is thus developed to facilitate input matching design. The related design method does not require transistor-level description of the post-LNA blocks, but relies instead only on easily obtainable system-level properties. A design example and measurements of a 0.7-2.7-GHz DDSR in 40-nm CMOS verify a good match between the theoretical and experimental results.
Keywords :
CMOS integrated circuits; UHF amplifiers; circuit feedback; closed loop systems; delta-sigma modulation; low noise amplifiers; radio receivers; CMOS; RF input matching design; RF low-noise amplifier; closed-loop direct delta-sigma receivers; discrete-time global feed- back; feedback LNA topologies; frequency 0.7 GHz to 2.7 GHz; full receiver chain; local internal feedback; receiver input matching; receiver performance; size 40 nm; system-level properties; transfer function; Baseband; Impedance; Impedance matching; Integrated circuit modeling; Load modeling; Radio frequency; Receivers; Current summing; delta–sigma modulation; direct delta–sigma receiver (DDSR); input impedance; input matching; low-noise amplifiers (LNAs); negative feedback; receivers; series-shunt feedback; shunt–shunt feedback; voltage summing;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2015.2401585
Filename :
7045621
Link To Document :
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