Claims
- 1. A power supply system comprising a first single-phase synchronizing converter that produces output power having a first phase, said single-phase synchronizing converter comprising:
a voltage reference; and a voltage feedback loop to control a duty cycle of said single-phase synchronizing converter to produce an output voltage level according to said voltage reference; a loadshare bus configured to provide an offset voltage to said feedback loop to offset said duty cycle according to a respective portion of an output current provided by said first single-phase synchronizing converter to a load.
- 2. The power supply system of claim 1, further comprising a common phase control bus, wherein the first single-phase synchronizing converter provides a channel pulse to the common phase control bus.
- 3. The power supply system of claim 1, further comprising a common phase control bus, wherein the first single-phase synchronizing converter provides a pulse to the common phase control bus, the pulse indicating a phase of the single-phase synchronizing converter.
- 4. The power supply system of claim 3, wherein the single-phase synchronizing converter uses a tri-state driver to provide the pulse to the common phase control bus.
- 5. The power supply system of claim 3, wherein the common phase control bus carries time and amplitude information.
- 6. The power supply system of claim 1, wherein the single-phase synchronizing converter provides a sync pulse to a synchronization bus to indicate a start of a cycle of the power supply system.
- 7. The power supply system of claim 1, wherein said loadshare bus, is provided to a second single-phase synchronizing converter.
- 8. A power supply system comprising a first single-phase synchronizing converter that produces output power having a first phase, the first single-phase synchronizing converter synchronized with at least one other single-phase power converter to produce phase symmetry between the first phase and a phase of the at least one other single-phase power converter, said first single-phase synchronizing converter comprising:
a voltage feedback loop to control a duty cycle of said first single-phase synchronizing converter to produce an output voltage level according to a voltage reference; and a loadshare bus input configured to provide an offset voltage to said feedback loop to offset said duty cycle, said loadshare bus configured to carry a sum of filtered sensed voltages from said first single-phase synchronizing converter and one or more additional single-phase synchronizing converters provided to said loadshare bus.
- 9. The power supply system of claim 8, wherein the first single-phase synchronizing converter is provided to a sync line and to a common phase control line.
- 10. The power supply system of claim 8, wherein the single-phase synchronizing converter comprises a feedback loop to control the first phase by adjusting the first phase to fall between a previous power pulse produced by a first peer of the single-phase synchronizing converter and a subsequent power pulse produced by a second peer of the single-phase synchronizing converter.
- 11. In a system comprising a plurality of power modules, each power module comprising an output inductor having an input side and an output load side, each power module further comprising a feedback loop to control said power output of each power module, a method for controlling a power output of each power module, comprising:
sensing an input voltage on said input side of said output inductor of each power module; filtering said input voltage sensed in each power module to produce a plurality of filtered voltages; providing said plurality of filtered voltages to a common loadshare bus to produce a sum voltage as a sum of said plurality of filtered voltages; and providing said sum voltage to said feedback loop in each module to offset said feedback loop to balance load sharing among said plurality of power modules.
- 12. A power supply system comprising:
a loadshare bus configured to sum a first filtered voltage and a second filtered voltage to produce a sum voltage; a first converter comprising:
a first output inductor, said first output inductor comprising an input side and a load side; a first filter configured to sense a voltage on said input side of said first output inductor to produce said first filtered voltage; and a first feedback loop configured to control an output current of said first converter, said first feedback loop offset by a first offset amount according to said sum voltage; and a second converter comprising:
a second output inductor, said second output inductor comprising an input side and a load side; a second filter configured to sense a voltage on said input side of said second output inductor to produce said second filtered voltage; and a second feedback loop configured to control an output current of said second converter, said second feedback loop offset by a second offset amount according to said sum voltage, said first and second offset amounts configured to balance output current provided by said first converter and said second converter.
- 13. The power supply system of claim 12, further comprising a common phase control bus, wherein the first converter provides a first channel pulse to the common phase control bus and the second converter provides a second channel pulse to the common phase control bus.
- 14. The power supply system of claim 13, wherein the first converter uses a tri-state driver to provide the first channel pulse to the common phase control bus.
- 15. The power supply system of claim 12, further comprising a sync bus, wherein a faster of the first converter and the second converter provides a sync pulse to the sync bus to indicate a start of a cycle of the power supply system.
- 16. The power supply system of claim 12, further comprising a shutdown bus, wherein the first converter provides a signal to the shutdown bus to shutdown the first converter and the second converter.
- 17. The power supply system of claim 12, wherein the first converter is configured to start a first timer at the end of a first second-channel pulse produced by the second converter, the first converter further configured to end the first timer and start a second timer at a start of a first-channel pulse produced by the first converter, the first converter further configured to stop the second timer at a start of a second second-channel pulse produced by the second converter, the first converter configured to adjust a timing of the first-channel pulse to approximately equalize times measured by the first timer and the second timer.
- 18. The power supply system of claim 12, wherein the first converter produces first-channel pulses and the second channel produces second-channel pulses, the first channel configured to adjust a phase of the first-channel pulses to fall between the second-channel pulses.
- 19. The power supply system of claim 12, wherein the first converter produces first-channel pulses and the second channel produces second-channel pulses, the first channel configured to adjust a phase of the first-channel pulses to fall between the second-channel pulses, the second-channel configured to adjust a phase of the second-channel pulses to fall between the first-channel pulses.
- 20. The power supply system of claim 12, wherein the first converter produces first-channel pulses and the second channel produces second-channel pulses, the first channel configured to adjust a phase of the first-channel pulses to produce phase symmetry with respect to the second-channel pulses.
- 21. A multiphase switching converter, comprising:
means for converting voltage waveforms at respective input terminals of respective inductors into respective sensed voltages; means for summing the sensed voltages; and means for adjusting duty cycles of the respective voltage waveforms of said respective inductors to balance current through said respective inductors.
RELATED APPLICATION
[0001] This application claims the benefit of priority under 35 U.S.C. § 119(e) from U.S. Provisional Patent Application No. 60/392,930 filed on Jun. 28, 2002, the entire contents of which is hereby incorporated by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60392930 |
Jun 2002 |
US |