DocumentCode :
1706560
Title :
A digital single-wire multiswitch (DSWM) channel-stacking IC in 45nm CMOS for satellite outdoor units
Author :
Weinan Gao ; Huff, B. ; Hess, K. ; Coulibaly, D. ; Pala, C. ; Jiang Cao ; Bhatia, J. ; Waltari, M. ; Levin, L. ; Cathelin, C. ; Nouvet, T. ; Nidhi, N. ; Kodkani, R. ; Maeda, Ryutaro ; Costa, David ; McFee, J. ; Moazzam, R. ; Vincent, H. ; Durieux, P.
Author_Institution :
NXP Semicond., San Diego, CA, USA
fYear :
2013
Firstpage :
244
Lastpage :
245
Abstract :
The evolution of direct-to-home transmit/receive systems requires a solution to aggregate, switch and route signals from multiple satellites to multiple set-top boxes efficiently. Prior solutions required separate coax cables to carry signals from each low-noise block (LNB) to set-top boxes in the home, resulting in high installation cost. An existing solution called analog single-wire multiswitch (ASWM) channel stacking uses an analog frequency translation switch located near the antenna LNB to select and output signals from multiple LNB´s to a fixed frequency slot for each set-top box on a single cable [1]. Although the ASWM solution solves the problem of multiple cables, it does not provide enough flexibility and capability to increase the number of inputs, and it requires multiple external components like SAW filters which in turn would significantly increase cost [2]. This paper introduces an integrated digital single-wire multiswitch (DSWM) channel-stacking IC implemented in 45nm CMOS, which uses digital signal processing after wideband 9b 1.82GS/s ADC´s to select and reorder transponder channels. The selected and reordered channels are digitally upconverted and are stacked into L-band through a 9b 5.46GS/s DAC. It removes the need of in-band SAW filters, offers a full flexibility of channel selection, and supports many more satellites through a single L-band cable to set-top boxes at much lower cost and lower power consumption.
Keywords :
CMOS digital integrated circuits; analogue-digital conversion; coaxial cables; digital-analogue conversion; satellite communication; transponders; ADC; ASWM channel stacking; CMOS; DAC; L-band cable; analog frequency translation switch; analog single-wire multiswitch channel stacking; antenna LNB; channel selection; coax cables; digital signal processing; direct-to-home transmit-receive systems; in-band SAW filters; installation cost; integrated DSWM channel-stacking IC; integrated digital single-wire multiswitch channel-stacking IC; low-noise block; satellite outdoor units; set-top boxes; size 45 nm; switch-route signals; transponder channels; CMOS integrated circuits; Digital signal processing; Finite impulse response filters; Frequency shift keying; Radio frequency; Time-domain analysis; Transponders;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Solid-State Circuits Conference Digest of Technical Papers (ISSCC), 2013 IEEE International
Conference_Location :
San Francisco, CA
ISSN :
0193-6530
Print_ISBN :
978-1-4673-4515-6
Type :
conf
DOI :
10.1109/ISSCC.2013.6487719
Filename :
6487719
Link To Document :
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