A Current-Mode mm-Wave direct-conversion receiver with 7.5GHz Bandwidth, 3.8dB minimum noise-figure and +1dBm P1dB, out linearity for high data rate communications

A current-mode mm-wave direct-conversion receiver breaking trade-offs among bandwidth, NF and linearity is designed and realized in 65nm CMOS. The 60GHz receiver employs novel Frequency-staggered Series Resonance Common Source (FSRCS) stage to extend RF bandwidth with superior noise performance. The...

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Hauptverfasser: Hao Wu, Ning-Yi Wang, Yuan Du, Yen-Cheng Kuan, Hsiao, Frank, Sheau-Jiung Lee, Ming-Hsien Tsai, Chewn-Pu Jou, Chang, Mau-Chung Frank
Format: Tagungsbericht
Sprache:eng
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Zusammenfassung:A current-mode mm-wave direct-conversion receiver breaking trade-offs among bandwidth, NF and linearity is designed and realized in 65nm CMOS. The 60GHz receiver employs novel Frequency-staggered Series Resonance Common Source (FSRCS) stage to extend RF bandwidth with superior noise performance. The receiver's current-mode operation offers excellent out-of-band blocker tolerance and linearity. With on-chip quadrature LO generations, the fabricated receiver simultaneously achieves minimal noise figure of 3.8dB, RF bandwidth of 7.5GHz, output P1dB of 1dBm, maximum conversion gain of 32dB, and IRR of -35dB. The receiver is capable of tolerating outof-channel blocker up to -9dBm at 3.5GHz away. It occupies silicon area of 1.3mm 2 and draws 25.5mA from 1V supply.
ISSN:1529-2517
2375-0995
DOI:10.1109/RFIC.2013.6569530