Sensors (Jul 2023)

Three-Phase Motor Inverter and Current Sensing GaN Power IC

  • Stefan Mönch,
  • Richard Reiner,
  • Michael Basler,
  • Daniel Grieshaber,
  • Fouad Benkhelifa,
  • Patrick Waltereit,
  • Rüdiger Quay

DOI
https://doi.org/10.3390/s23146512
Journal volume & issue
Vol. 23, no. 14
p. 6512

Abstract

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A three-phase GaN-based motor inverter IC with three integrated phase current mirror sensors (sense-FETs or sense-HEMTs, 1200:1 ratio), a temperature sensor, and an amplifier is presented and experimentally operated. The three low-side currents are read out by virtual grounding transimpedance amplifiers. A modified summed DC current readout circuit using only one amplifier is also discussed. During continuous 24 V motor operation with space-vector pulse width modulation (SVPWM), the sensor signal is measured and a bidirectional measurement capability is verified. The measured risetime of the sensor signal is 51 ns, indicating around 7 MHz bandwidth (without intentional optimization for high bandwidth). The IC is operated up to 32 V on DC-biased semi-floating substrate to limit negative static back-gating of the high-side transistors to around −7% of the DC-link voltage. Analysis of the capacitive coupling from the three switch-nodes to the substrate is calculated for SVPWM based on capacitance measurement, resulting in four discrete semi-floating substrate voltage levels, which is experimentally verified. Integrated advanced power converter topologies with sensors improve the power density of power electronics applications, such as for low-voltage motor drive.

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