• DocumentCode
    1354782
  • Title

    High-Voltage Generation With Stacked Photodiodes in Standard CMOS Process

  • Author

    Law, M.K. ; Bermak, A.

  • Author_Institution
    Dept. of Electron. & Comput. Eng., Hong Kong Univ. of Sci. & Technol., Kowloon, China
  • Volume
    31
  • Issue
    12
  • fYear
    2010
  • Firstpage
    1425
  • Lastpage
    1427
  • Abstract
    In this letter, a method to generate a high open-circuit voltage using integrated photodiodes fabricated in a standard CMOS process is described. In contrast to conventional high-voltage generation schemes that serially connect photodiodes using different substrates or high-cost silicon-on-insulator processes, the proposed scheme preserves a single substrate solution using a low-cost standard CMOS process. The proposed scheme exploits the photocurrent generation capabilities of different photodiode implementations available in a standard CMOS process and provides compensation for parasitic losses to generate a high output voltage using series connections of photodiodes. Output voltages of 0.84 and 1.3 V are successfully generated by two-stage and three-stage photodiode connections using an AMS 0.35-μm standard CMOS process, respectively. Our proposed scheme is therefore suitable for low-cost high-integration-level system-on-chip implementations utilizing integrated solar energy harvesting with high-voltage generation.
  • Keywords
    CMOS integrated circuits; energy harvesting; photodiodes; solar power; system-on-chip; high voltage generation; integrated photodiode; integrated solar energy harvesting; open circuit voltage; size 0.35 mum; stacked photodiodes; standard CMOS process; system-on-chip; voltage 0.84 V to 1.3 V; CMOS process; Energy resources; Joining processes; Photoconductivity; Photodiodes; Photovoltaic cells; Substrates; Voltage measurement; Energy harvesting; high open-circuit voltage; stacked integrated photodiodes;
  • fLanguage
    English
  • Journal_Title
    Electron Device Letters, IEEE
  • Publisher
    ieee
  • ISSN
    0741-3106
  • Type

    jour

  • DOI
    10.1109/LED.2010.2075910
  • Filename
    5605223