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Multi-beam 4 GHz Microwave Apertures Using Current-Mode DFT Approximation on 65 nm CMOS

Information Theory 2016-11-17 v1 math.IT

Abstract

A current-mode CMOS design is proposed for realizing receive mode multi-beams in the analog domain using a novel DFT approximation. High-bandwidth CMOS RF transistors are employed in low-voltage current mirrors to achieve bandwidths exceeding 4 GHz with good beam fidelity. Current mirrors realize the coefficients of the considered DFT approximation, which take simple values in {0,±1,±2}\{0, \pm1, \pm2\} only. This allows high bandwidths realizations using simple circuitry without needing phase-shifters or delays. The proposed design is used as a method to efficiently achieve spatial discrete Fourier transform operation across a ULA to obtain multiple simultaneous RF beams. An example using 1.2 V current-mode approximate DFT on 65 nm CMOS, with BSIM4 models from the RF kit, show potential operation up to 4 GHz with eight independent aperture beams.

Keywords

Cite

@article{arxiv.1505.06345,
  title  = {Multi-beam 4 GHz Microwave Apertures Using Current-Mode DFT Approximation on 65 nm CMOS},
  author = {V. Ariyarathna and S. Kulasekera and A. Madanayake and D. Suarez and R. J. Cintra and F. M. Bayer and L. Belostotski},
  journal= {arXiv preprint arXiv:1505.06345},
  year   = {2016}
}

Comments

7 pages, 4 figures, In: IEEE International Microwave Symposium 2015

R2 v1 2026-06-22T09:40:11.090Z