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IEEE journal of solid-state circuits, 2017-08, Vol.52 (8), p.2055-2070
2017

Details

Autor(en) / Beteiligte
Titel
A 0.038-mm2 SAW-Less Multiband Transceiver Using an N-Path SC Gain Loop
Ist Teil von
  • IEEE journal of solid-state circuits, 2017-08, Vol.52 (8), p.2055-2070
Ort / Verlag
New York: IEEE
Erscheinungsjahr
2017
Link zum Volltext
Quelle
IEEE Electronic Library (IEL)
Beschreibungen/Notizen
  • An N-path switched-capacitor (SC) gain loop is proposed as an area-efficient surface acoustic wave-less wireless transceiver (TXR) for multiband TDD communications. Unlike the direct-conversion transmitter (TX: baseband (BB) filter → I/Q modulation → PA driver) and receiver (RX: LNA → I/Q demodulation → BB Filter) that the functions are arranged in an open-loop style, here the signal amplification, bandpass filtering, and I/Q (de)modulation are unified in a closed-loop formation, being reconfigurable as a TX or RX with a local oscillator (LO)defined center frequency. The key advantages are the multiband operation capability in the TX mode, and high resilience to outof-band (OB) blockers in the RX mode. Fabricated in a 65-nm CMOS, the TXR prototype consumes up to 38.4 mW (20 mW) in the TX (RX) mode at the 1.88-GHz long-term evolution (LTE)band2. The LO-defined center frequency covers 80% of the TDD-LTE bands with neither on-chip inductors nor external input-matching components. By properly injecting (extracting) the signals into (from) the N-path SC gain loop, the TX mode achieves an -1 dBm output power, a -40 dBc ACLREUTRA1, and a 2% EVM at 1.88 GHz, while showing a -154.5 dBc/Hz OB noise at 80-MHz offset. In the RX mode, a 3.2-dB noise figure and a +8 dBm OB-IIP3 are measured. The active area (0.038 mm 2 ) of the TXR is 24× smaller than the state-of-the-art LTE solutions.

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