• DocumentCode
    1759624
  • Title

    Design of Low-Voltage Integrated Step-up Oscillators with Microtransformers for Energy Harvesting Applications

  • Author

    Macrelli, Enrico ; Romani, Aldo ; Paganelli, Rudi Paolo ; Camarda, Antonio ; Tartagni, Marco

  • Author_Institution
    Dept. of Electr., Electron., & Inf. Eng., Univ. of Bologna, Cesena, Italy
  • Volume
    62
  • Issue
    7
  • fYear
    2015
  • fDate
    42186
  • Firstpage
    1747
  • Lastpage
    1756
  • Abstract
    This paper describes the modeling of startup circuits in battery-less micropower energy harvesting systems and investigates the use of bond wire micromagnetics. The analysis focuses on step-up Meissner oscillators based on magnetic core transformers operating with input voltages down to ≈100 mV, e.g, from thermoelectric generators. As a key point, this paper examines the effect of core losses and leakage inductances on the startup requirements obtained with the classical Barkhausen criterion, and demonstrates the minimum transconductance for oscillations to occur. For validation purposes, a step-up oscillator IC is fabricated in a STMicroelectronics 0.32 μm technology, and connected to two bond wire microtransformers, respectively, with a 1:38 MnZn ferrite core and with a 1:52 ferromagnetic low-temperature co-fired ceramic (LTCC) core. Coherently with the proposed model, experimental measurements show a minimum startup voltage of 228 mV for the MnZn ferrite core and of 104 mV for the LTCC core.
  • Keywords
    ceramics; energy harvesting; integrated circuit design; low-power electronics; micromagnetics; oscillators; transformer cores; MnZn; battery-less micropower energy harvesting systems; bond wire micromagnetics; bond wire microtransformers; core losses; energy harvesting applications; ferrite core; ferromagnetic low-temperature co-fired ceramic core; leakage inductances; low-voltage integrated step-up oscillators; magnetic core transformers; size 0.32 mum; startup circuits; step-up Meissner oscillators; step-up oscillator IC; voltage 104 mV; voltage 228 mV; Capacitance; Core loss; MOSFET; Oscillators; Transformer cores; Wires; Bond wire magnetics; energy harvesting; integrated circuits; leakage inductances; magnetic losses; magnetic materials; step-up oscillators; transformers;
  • fLanguage
    English
  • Journal_Title
    Circuits and Systems I: Regular Papers, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1549-8328
  • Type

    jour

  • DOI
    10.1109/TCSI.2015.2423796
  • Filename
    7121032