Nova Patents
EP1575152A2

Power factor correction circuits

Abstract

A bi-directional boost circuit for power actor correction includes a power factor control circuit and a pair of diodes, a pair of inductors, and a pair of switches. A first diode, a second diode, a first inductor, a second inductor, a first switch, and a second switch convert the AC input voltage, rectify the AC input voltage, and output an intermediate DC voltage. The power factor control circuit receives the AC input voltage and receives the intermediate DC voltage. The power factor control circuit regulates the DC output voltage. Based on the AC input voltage and the intermediate DC output voltage, the power factor control circuit controls an inductor current waveform by driving the first switch and the second switch to create a substantially sinusoidal current as seen by the power source that is in phase with the AC input voltage.

EP1575152A2, drawing sheet 1
Sheet 1 of 12

Term

Term ended

Projected expiry passed 4 February 2025, 1.6 years ago.

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37 claims: 7 independent, 30 dependent

  1. 1
    A bi-directional boost circuit for power factor correction, comprising:a first diode, a second diode, a first inductor, a second inductor, a first switch, and a second switch to convert an AC input voltage, rectify the AC input voltage, and output an intermediate DC voltage;and a power factor control circuit to receive the AC input voltage, to receive the intermediate DC output voltage, to regulate the intermediate DC output voltage, and based on the AC input voltage and the intermediate DC output voltage, to control an inductor current waveform to form a substantially sinusoidal waveform that is in phase with the AC input voltage by driving the first switch and the second switch.
  2. 6
    A current waveform control circuit, comprising:a signal providing circuit to output a haversign signal;a switch to transfer an inductor current;and a current mode controller configured with a clipping threshold value to receive the inductor current and the haversign signal, to compare a magnitude of the inductor current to the clipping threshold value, and to generate a driving signal to turn off the switch if the magnitude of the inductor current is greater than the clipping threshold value.
  3. 9
    A power adapter for providing an output voltage and an output current to a portable appliance, comprising:a bi-directional boost circuit to receive an AC input voltage, including a first diode, a second diode, a first inductor, a second inductor, a first switch, and a second switch to convert the AC input voltage, rectify the AC input voltage, output an intermediate DC voltage and regulate the intermediate DC voltage;and a power factor control circuit to receive the AC input voltage, to receive the DC intermediate voltage, to regulate the DC intermediate voltage, and based on the AC input voltage and the DC intermediate voltage, to control an inductor current waveform by driving the first switch and the second switch to create a substantially sinusoidal current that is in phase with the AC input voltage, a switching device to receive the intermediate DC voltage and to output a switched voltage;a transformer to receive the switched voltage and to output an intermediate voltage;and a regulator to receive the intermediate voltage and to output a DC output voltage.
  4. 14
    A method of power factor correction, comprising:receiving a haversign signal;receiving a first inductor current through a first switch;comparing a magnitude of a haversign signal with a value of the first inductor current;and generating a first driving signal to turn off the first switch if the value of the first inductor current is larger than the magnitude of the haversign signal.
  5. 18
    A method of power factor correction, comprising:receiving a first inductor current through a first switch;comparing a clipping threshold value with a value of the first inductor current;and generating a first driving signal to turn off the first switch if the value of the first inductor current is larger than the magnitude of the clipping threshold value
  6. 21
    A power factor correction circuit, comprising:a first primary winding and a second primary winding of an isolation transformer to receive an AC voltage and an AC current, a first switch coupled to the first winding and a second switch coupled to the second winding to draw current through the first primary winding and the second primary winding when the first switch and the second switch are turned on;a control circuit to drive the first switch and the second switch to generate a current waveform for the AC current in accordance with power factor correction requirements;a first secondary winding and a second secondary winding of the isolation transformer to receive, from the first primary winding and the secondary primary winding, an induced AC voltage and an induced AC current when the first switch and the second switch are turned off;and a rectification circuit on a secondary side of the isolation transformer to rectify the induced AC voltage and the induced AC current.
  7. 32
    A method of providing isolation, power factor correction, and rectification, comprising:receiving an AC voltage and an AC current at a first primary winding and a secondary winding of an isolation transformer;generating a current waveform for the AC current in accordance with power factor correction requirements utilizing the first primary winding, the second primary winding, a first switch, a second switch, and a power factor control circuit;generating a second intermediate voltage and an induced current on a secondary side of the isolation transformer when the first switch and the second switch are turned off by the power factor control circuit;and rectifying the second intermediate voltage and the induced current to create a rectified intermediate voltage and a rectified secondary current.