Claims
- 1. An IC controller for operating a transistor to switch at a fixed frequency, comprising:
an oscillator circuit for supplying a fixed frequency oscillation signal; a soft start circuit coupled to the oscillator to receive the oscillation signal and produce a pulse length modifying signal to modify a pulse signal derived from the oscillation signal to vary a length of a pulse in the pulse signal; the soft start circuit being selectively operable to modify the pulse signal; a driver circuit for receiving the pulse signal and providing an output suitable for operating the transistor.
- 2. The IC controller according to claim 1, further comprising a comparator in the soft start circuit for comparing the oscillation signal to a reference value to modify the pulse signal when the soft start circuit is selectively operated.
- 3. The IC controller according to claim 2, wherein the reference signal changes during the comparison with the oscillation signal.
- 4. The IC controller according to claim 1, further comprising an overcurrent detection circuit for disabling the pulse signal or the driver circuit when an overcurrent condition is detected.
- 5. The IC controller according to claim 1, further comprising another driver circuit for receiving the pulse signal and producing an output suitable for operating a transistor.
- 6. The IC controller according to claim 1, further comprising a level shifting circuit for translating the pulse signal from one reference voltage to another reference voltage.
- 7. The IC controller according to claim 6, further comprising a DV/DT boost circuit coupled to the level shift circuit for improving noise immunity in the level shift circuit.
- 8. The IC controller according to claim 1, further comprising an pulse signal disabling circuit, wherein the disabling circuit is operable to disable the pulse signal for a predetermined period of time after a fault event occurs.
- 9. The IC controller according to claim 4, further comprising an pulse signal disabling circuit coupled to the overcurrent detection circuit and operable to disable the pulse signal for a predetermined period of time after an overcurrent condition is detected.
- 10. A half-bridge driver for operating switches in a switching half-bridge, wherein the half-bridge driver includes the IC controller according to claim 1.
- 11. A full-bridge driver for driving a switching full-bridge, comprising the IC controller according to claim 1.
- 12. The IC controller according to claim 1, wherein the oscillation signal from the oscillator circuit further comprises:
a pulse train with pulses at the fixed frequency and having a width related to a dead time between operation of switches in a half-bridge; a saw tooth wave form at the fixed frequency, wherein the output of the soft start circuit is combinable with the saw tooth waveform to vary the width of pulses supplied to the driver in a soft start mode.
- 13. A method for providing a soft start operation for a transistor driver circuit, comprising:
providing a saw tooth waveform from an oscillator at a given frequency; comparing the saw tooth waveform to a reference value; and modifying the saw tooth waveform as a result of the comparison to produce pulses of increased length when the reference value is below a value of the saw tooth waveform.
- 14. The method according to claim 13, further comprising supplying the pulses to a driver circuit for driving the transistor.
- 15. A driver circuit for driving a transistor, comprising:
an oscillator circuit for producing an oscillation signal; a driver circuit for receiving the oscillation signal and producing an output signal suitable for operating the transistor; and an overcurrent detection circuit for detecting an overcurrent condition and operable to disable the oscillation signal or the driver circuit for a predetermined period of time to recover from the overcurrent condition.
- 16. A soft start circuit for increasing a pulse length delivered to a transistor driver, comprising:
a comparator having an input coupled to a saw tooth waveform to provide a varying comparison operation; a reference value coupled to another input of the comparator for comparison against the saw tooth waveform.
- 17. An output of the comparator operable on a pulse train derived from the saw tooth waveform to vary a pulse width when the reference value is less than a value of the saw tooth waveform.
- 18. The circuit according to claim 17, wherein the reference value is derived from a voltage on a capacitor.
- 19. The circuit according to claim 17, wherein the reference value is variable.
- 20. The circuit according to claim 18, wherein the voltage across the capacitor varies to provide a variable comparison with the saw tooth waveform.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present application is based on and claims the benefit of U.S. Provisional Application No. 60/465,250, filed Apr. 24, 2003, entitled HALF BRIDGE DRIVER, to which a claim of priority is hereby made, and which is hereby incorporated into the present application in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60465250 |
Apr 2003 |
US |