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DC on line AC brushless motor

  • US 5,606,232 A
  • Filed: 11/22/1994
  • Issued: 02/25/1997
  • Est. Priority Date: 11/22/1994
  • Status: Expired due to Fees
First Claim
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1. A phase regulated power supply to be contained in the housing of a DC brushless motor for converting alternating current (AC) to direct current (DC) to power the motor, the power supply comprising:

  • interrupting means for periodically interrupting an AC line source to rectify and regulate voltage from the AC line source to provide DC current for the motor, the interrupting means to be electrically coupled downstream to said AC line source;

    a power converter stage having first and second input terminals, the power converter stage being coupled electrically downstream of said interrupting means to supply voltage-regulated DC current to the motor, said power converter stage including;

    a voltage level detector coupled to the first and second input terminals of the power converter stage to receive a rectified waveform from the interrupting means, the voltage level detector including a first switch responsive to the voltage across the input terminals of the power converter stage, the first switch being turned off and passing substantially no voltage to an output of the first switch when the voltage across the terminals of the power converter stage is below a first predetermined threshold, and being turned on and passing a voltage above a second predetermined threshold when the voltage across the terminals of the power converter stage is above the first predetermined threshold, a second switch having a control terminal coupled to the output terminal of the first switch for turning on the second switch when the voltage at the control terminal of the second switch is above the second predetermined threshold, the second switch having input and output terminals, the second switch input terminal being coupled to the first input terminal of the power converter stage via a resistive member, and the second switch output terminal being coupled to the second input terminal of the power converter stage, the voltage level at the input terminal of the second switch being above a third predetermined threshold when the second switch is turned off and below the third predetermined threshold when the second switch is turned on; and

    a power switch stage coupled electrically downstream of the power converter stage, the power switch stage including a third switch for charging a voltage-averaging capacitive element, the third switch having a control input responsive to the voltage level of the input terminal of the second switch, the third switch further including input and output terminals, the input terminal of the power switch being coupled to the first terminal of the power converter stage via the voltage-averaging capacitive element, the output terminal of the third switch being coupled to the second terminal of the power converter stage, the third switch being turned on for charging the capacitive element when the voltage at its control input is above the third predetermined threshold, and the third switch being turned off for discharging the capacitive element when the voltage at its control input is below the third predetermined threshold, the capacitive element generating a predetermined average ripple DC voltage based on the capacitance of the capacitive element and the amount of time the third switch is on; and

    a motor driver stage coupled electrically downstream of the power converter stage for driving the motor in response to the average voltage level generated by the power converter stage.

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