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CONTROL METHOD AND CONTROL CIRCUIT FOR FOUR-SWITCH BUCK-BOOST CONVERTER

  • US 20150162835A1
  • Filed: 12/04/2014
  • Published: 06/11/2015
  • Est. Priority Date: 12/11/2013
  • Status: Active Grant
First Claim
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1. A method of controlling a converter having an inductor and first, second, third, and fourth switches, the method comprising:

  • a) when said first and fourth switches are on, and said second and third switches are off, generating an on time signal according to an input voltage and a stable output voltage of said converter, wherein said first switch is coupled between said input voltage and a first terminal of said inductor, said second switch is coupled between said first terminal of said inductor and ground, said third switch is coupled between a second terminal of said inductor and ground, and said fourth switch is coupled between said second terminal of said inductor and said stable output voltage;

    b) generating an off time signal according to said input voltage and said stable output voltage of said converter;

    c) generating a reference time voltage according to a reference current signal and a reference voltage signal;

    d) turning off said first switch and turning on said second switch when said on time signal is activated to indicate that said converter is operating in a buck mode, wherein said first switch is turned on and said second switch is turned off when an inductor current reaches a predetermined valley value;

    e) turning on said third switch and turning off said fourth switch when said off time signal is activated to indicate that said converter is operating in a boost mode, wherein said third switch is turned off and said fourth switch is turned on when said inductor current reaches a predetermined peak value; and

    f) turning off said first switch and turning on said second switch when said reference time signal is activated to indicate that said converter is operating in a buck-boost mode, wherein said first and third switches are turned on and said second and fourth switches are turned off when said inductor current reaches said predetermined valley value, and wherein said third switch is turned off and said fourth switch is turned on when said inductor current reaches said predetermined peak value.

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