This paper presents a scalable 256-element Ku-band dual-polarized phased-Array SATCOM receiver. The array elements are spaced λ/2 apart at 12.25 GHz in the x and y directions. This phased array uses 64 silicon quad-core receive chips with 8 channels to feed a dual-polarized 2×2 quad antennas. Those silicon core-chip are QFN packaged and soldered directly on a 12-layer low-cost printed circuit board with integrated stacked patch antennas and Wilkinson combiners. The measured patterns of the 256-element phased-array show near-ideal patterns with a scan range of ±70° in E- and H-planes and low sidelobes. This array has a 3-dB instantaneous scanning bandwidth of 10.6-12.5 GHz. The design achieves a low cross polarization over a wide scan range of ±70° and it is scalable to allow large-scale phased-arrays construction of 1024 elements or larger. To our knowledge, this represents state-of-the art in Ku-band receive phased-arrays in terms of integration level. The array compact size of (19.7 cm x 22 cm) makes it suitable for a low-cost mobile Ku-band SATCOM terminal.
No takes yet. Share an insight, caveat, or question.
Aljuhani et al. (2018) studied this question.
Synapse has enriched one closely related paper. Consider it for comparative context: