Claims
- 1. A laser diode driver circuit to generate a drive current, comprising:
a laser diode source to receive an amount of the drive current; an indicator device configured to receive an input signal corresponding to the amount of the drive current, and to generate an indicator signal indicative of the amount of the drive current received by the laser diode source; and a transient snubber device coupled to the indicator device to receive the indicator signal, that in response to the indicator signal is controlled to have a first impedance state during which a first amount of the drive current is provided to drive the laser diode source, and to have a second impedance state during which a second amount of the drive current is provided to drive the laser diode source, the second amount being less than the first amount.
- 2. The circuit of claim 1, wherein the second amount is substantially zero.
- 3. The circuit of claim 1, wherein the transient snubber device is in parallel with the laser diode source.
- 4. The circuit of claim 1, wherein the transient snubber device is in series with the laser diode source.
- 5. The circuit of claim 1, wherein the transient snubber device comprises a MOSFET transistor.
- 6. The circuit of claim 1, wherein the transient snubber device comprises a bipolar transistor.
- 7. The circuit of claim 1, further comprising a switch in series with the laser diode source to pulse the current provided to the laser diode source.
- 8. The circuit of claim 7, wherein the switch is a GCT device.
- 9. The circuit of claim 1, wherein the indicator device is configured to receive the input signal that represents the amount of the drive current.
- 10. The circuit of claim 1, wherein the indicator device is configured to receive the input signal that represents a voltage across the laser diode source.
- 11. The circuit of claim 1, wherein the indicator device is configured to receive the input signal that represents a ratio of a voltage across the laser diode source to the drive current.
- 12. The circuit of claim 1, wherein the indicator device provides the indicator signal that corresponds to a current density through the laser diode source.
- 13. The circuit of claim 1, further comprising a prime power source coupled to the laser diode source to provide the electrical power to drive the laser diode source.
- 14. The circuit of claim 13, further comprising a charging circuit coupled to the prime power source for receiving an output from the prime power source and for delivering the amount of drive current to the laser diode source.
- 15. The circuit of claim 14, wherein the charging circuit comprises a capacitive device to store a charge to deliver the amount of drive current.
- 16. The circuit of claim 14, wherein the charging circuit comprises an inductive device to store an energy to deliver the amount of drive current.
- 17. A laser diode driver circuit to generate a drive current, comprising:
a laser diode source; a current source coupled to the laser diode source, to produce a source current; and an inductive device coupled to the current source, the inductive device storing energy corresponding to the source current, and the inductive device being coupled to the laser diode source to discharge the energy and thereby provide the drive current.
- 18. The laser diode driver circuit of claim 17, wherein the inductive device comprises a first inductor in series with laser diode source, and a second inductor in parallel with the laser diodes source.
- 19. The laser diode driver circuit of claim 17, further comprising a switch having a first state and a second state, which is coupled to the inductive device such that during the first state the inductive device stores the energy corresponding to the source current, and during a second state the inductive device discharges to provide the drive current.
- 20. The laser diode circuit of claim 19, wherein the switch is a GCT
- 21. A laser diode driver circuit to generate a drive current, comprising
a laser diode source to receive an amount of the drive current; means for generating an indicator signal indicative of the amount of the drive current; and means for suppressing at least a portion of the drive current in response to the indicator signal, coupled to the means for generating an indicator signal, that in response to the indicator signal is controlled to have a first impedance state during which a first amount of the drive current is provided to drive the laser diode source, and to have a second impedance state during which a second amount of the drive current is provided to drive the laser diode source, the second amount being less than the first amount.
- 22. The circuit of claim 21, wherein the second amount is substantially zero.
- 23. The circuit of claim 21, wherein the means for suppressing is in parallel with the laser diode source.
- 24. The circuit of claim 21, wherein the means for suppressing is in series with the laser diode source.
- 25. The circuit of claim 21, wherein the means for suppressing comprises a MOSFET transistor.
- 26. The circuit of claim 21, wherein the means for suppressing comprises a bipolar transistor.
- 27. The circuit of claim 21, further comprising a switching means in series with the laser diode source to pulse the current provided to the laser diode source.
- 28. The circuit of claim 27, wherein the switching mans comprises a GCT device.
- 29. The circuit of claim 21, wherein the means for generating the indicator signal comprises a means for receiving an input which is representative of the amount of the drive current.
- 30. The circuit of claim 21, wherein means for generating the indicator signal comprises a means for receiving an input which is representative of the amount of a voltage across the laser diode source.
- 31. The circuit of claim 21, wherein the means for generating an indicator signal is configured to receive the input signal that represents a ratio of a voltage across the laser diode source to the drive current.
- 32. The circuit of claim 21, further comprising a prime power source coupled to the laser diode driver circuit to provide the electrical power to drive the laser diode source.
- 33. The circuit of claim 32, further comprising a charging circuit for storing the electrical power and for delivering the amount of drive current to the laser diode source.
- 34. The circuit of claim 33, wherein the charging circuit comprises a capacitive device to store a charge to deliver the amount of drive current.
- 35. The circuit of claim 33, wherein the charging circuit comprises an inductive device to store the electrical power to deliver the amount of current.
- 36. A method of driving a laser diode source with an amount of current, comprising:
generating a drive current; providing an amount of the drive current to the laser diode source; generating an indicator signal indicative of the amount of the drive current; and reducing the amount of the drive current provided to the laser diode source in response to the indicator signal indicating that the drive current exceeds a threshold.
- 37. The circuit of claim 36, wherein the act of reducing comprises shunting at least a portion of the current away from the laser diode source.
- 38. The circuit of claim 36, the act of reducing comprises blocking at least a portion of the current from reaching the laser diode source.
- 39. The circuit of claim 36, further comprising pulsing the drive current.
- 40. The circuit of claim 36, wherein the act of generating the indicator signal comprises receiving an input which is representative of the amount of the drive current.
- 41. The circuit of claim 36, wherein the act of generating the indicator signal comprises receiving an input which is representative of a voltage across the laser diode source.
RELATED INVENTIONS
[0001] This invention claims priority under 35 U.S.C. §119(e) to U.S. provisional application No. 60/297,114 to Mangano et al., filed Jun. 7, 2001, entitled, “Method and Apparatus for Driving High Power Laser Diode Array,” the subject matter of which is hereby incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60297114 |
Jun 2001 |
US |