Claims
- 1. A single stage bi-flyback Power Factor Correction (PFC) converter power supply comprising the combination of:
(a) a PFC cell containing a first flyback circuit which operates in the Discontinuous Conduction Mode (DCM); and, (b) a Direct Current/Direct Current (DC/DC) conversion cell containing a second flyback circuit which operates in the Conduction Mode of the class consisting of the Continuous Conduction Mode (CCM) and Discontinuous Conduction Mode (DCM) whereby said combination provides a high power factor and high efficiency.
- 2. The PFC converter power supply of claim 1 further comprising: a low loss snubber circuit to absorb the voltage spike by transformer leakage inductance.
- 3. The PFC converter power supply of claim 2 further comprising: an active clamp circuit to carry out soft-switching and snubber function.
- 4. The PFC converter power supply of claim 1 wherein the PFC cell and the DC/DC cell function together with a single switch.
- 5. The PFC converter power supply of claim 1 wherein said first flyback circuit includes a first transformer, a rectifier, an input bridge, diode, output filter capacitor and a power switch which is a Metal Oxide Silicon Field Effect Transistor (MOSFET).
- 6. The PFC converter power supply of claim 1 wherein said second flyback circuit includes a second transformer, an intermediate bus capacitor, a second diode, an output filter capacitor and a power switch which is a MOSFET.
- 7. The PFC converter power supply of claim 1 wherein said first flyback circuit operates as an existing flyback circuit when the input voltage is less than a pre-defined amount.
- 8. The PFC converter power supply of claim 1 wherein said first flyback circuit operates as a boost circuitwhen the input voltage exceeds a pre-defined amount.
- 9. A method of providing a power supply comprising the steps of:
(a) operating a PFC cell containing a first flyback circuit in a discontinuous conduction mode (DCM); and, (b) operating a direct current/direct current (DC/DC) conversion cell containing a second flyback circuit in a conduction mode of a class consisting of a continuous conduction mode (CCM) and a discontinuous conduction mode (DCM) whereby said combination provides a high power factor and high efficiency.
- 10. The method of claim 9 includes the step of: operating in combination a low loss snubber circuit to offset transformer leakage inductance.
- 11. The method of claim 9 includes the step of: providing an active clamp circuit to the supply whereby zero voltage switching is realized.
- 12. A power factor correction (PFC) alternating current/direct current (AC/DC) power supply comprising:
(a) first flyback topology; (b) a second flyback topology integrated with the first flyback topology; (c) a single switch for said integrated topologies; and, (d) a single capacitor whereby the combination can operate for all universal voltage applications under approximately 400 volts.
Parent Case Info
[0001] This invention relates to alternating current (ac)/direct current (dc) converter power supplies and more particularly to those which employ a Power Factor Correction (PFC) topology which integrates two flyback topologies enabling a simple control circuit and claims the benefit of priority to U.S. Provisional Application Serial No. 60/363,145 filed Mar. 8, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60363145 |
Mar 2002 |
US |