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A Single-Chip Optical Phased Array in a Wafer-Scale Silicon Photonics/CMOS 3D-Integration Platform

  • University of California at Berkeley
  • Massachusetts Institute of Technology
  • Analog Photonics LLC
  • RAFAEL Armament Development Authority Ltd.
  • SUNY Polytechnic Institute

Research output: Contribution to journalArticlepeer-review

181 Scopus citations

Abstract

With the growing demand for automotive LiDAR and the maturation of silicon photonics platforms, optical phased arrays (OPAs) have emerged as a key technology for solid-state optical beam-steering. In order to meet realistic automotive specifications with OPAs, >500 antenna elements should work reliably under tight power and cost budgets. Existing multi-chip solutions necessitate expensive packaging and assembly to achieve high interconnect density. Even with 2-D monolithic integration, high-voltage drivers to deliver sufficient power to resistive phase shifters typically result in significant overhead in die area and limited power efficiency. In this article, we introduce a single-chip OPA realized through wafer-scale 3-D integration of silicon photonics and CMOS. Flexible and ultra-dense connections with through-oxide vias (TOVs) in our platform resolve the I/O density issue. Moreover, low-voltage L-shaped phase shifters and compact, efficient switch-mode drivers, connected vertically using TOVs, remove wiring/placement overhead and achieve a large active array aperture within a compact die. Our OPA prototype achieves wide-range 2-D steering over 18.5 ° × 16° by leveraging wavelength tuning and phase control, and array scaling up to 125 elements with a large aperture size of 0.5 mm × 0.5 mm and 0.15 ° × 0.25° beamwidth while consuming 20 mW/element average power. Since our system supports per-element independent phase control, increased sensitivity to process variations in L-shaped shifters is fully compensated by a simple calibration process.

Original languageEnglish
Article number8828069
Pages (from-to)3061-3074
Number of pages14
JournalIEEE Journal of Solid-State Circuits
Volume54
Issue number11
DOIs
StatePublished - Nov 2019

Keywords

  • 3-D integration
  • LiDAR
  • optical phased array (OPA)
  • silicon photonics
  • solid-state optical beam-steering

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