A 9-band WCDMA/EDGE transceiver supporting HSPA evolution

The future of cellular radio ICs lies in the integration of an ever-increasing number of bands and channel bandwidths. This paper presents a transceiver together with the associated discrete front-end components. The transceiver supports 4 EDGE bands and 9 WCDMA bands (l-VI and Vlll-X), while the ra...

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Hauptverfasser: Nilsson, M, Mattisson, S, Klemmer, N, Anderson, M, Arnborg, T, Caputa, P, Ek, S, Lin Fan, Fredriksson, H, Garrigues, F, Geis, H, Hagberg, H, Hedestig, J, Hu Huang, Kagan, Y, Karlsson, N, Kinzel, H, Mattsson, T, Mills, T, Fenghao Mu, Mårtensson, A, Nicklasson, L, Oredsson, F, Ozdemir, U, Park, F, Pettersson, T, Påhlsson, T, Pålsson, M, Ramon, S, Sandgren, M, Sandrup, P, Stenman, A, Strandberg, R, Sundström, L, Tillman, F, Tired, T, Uppathil, S, Walukas, J, Westesson, E, Xuhao Zhang, Andreani, P
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Sprache:eng
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Zusammenfassung:The future of cellular radio ICs lies in the integration of an ever-increasing number of bands and channel bandwidths. This paper presents a transceiver together with the associated discrete front-end components. The transceiver supports 4 EDGE bands and 9 WCDMA bands (l-VI and Vlll-X), while the radio can be configured to simultaneously support the 4 EDGE bands and up to 5 WCDMA bands: 3 high bands (HB) and 2 low bands (LB). The RX is a SAW-less homodyne composed of a main RX and a diversity RX. To reduce package complexity with so many bands, we chose to minimize the number of ports by using single-ended RF interfaces for both RX and TX. This saves seve ral package pins, but requires careful attention to grounding. The main RX has 8 LNA ports and the diversity RX has 5, with some LNAs supporting multiple bands. On the TX side, 2 ports are used for all EDGE bands and 4 for the WCDMA bands.
ISSN:0193-6530
2376-8606
DOI:10.1109/ISSCC.2011.5746356