IP Library Granted Patent US 9,337,616
Granted Patent B2
US 9,337,616 · App. 14/320,238 · Granted May 10, 2016

Bias current control of laser diode instrument to reduce power consumption of the instrument

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Quick Facts
Patent No.
US 9,337,616
App. No.
14/320,238
Granted
May 10, 2016
Kind
B2
Abstract

Embodiments for driving a laser diode includes generating a bias current having a duty cycle that is less than 100%. The current level of the bias current is insufficient to turn on the laser diode. A drive current is generated and combined with the bias current to turn on the laser diode almost instantly.

Claims (38)

1. A laser diode driver comprising:

a first current source configured to generate one or more bias current pulses;

a second current source configured to generate one or more drive current pulses;

a controller configured to operate the first current source to generate a first bias current pulse and to operate the second current source to generate a first drive current pulse; and

a summer having inputs to receive the one or more bias current pulses and the one or more drive current pulses, and having an output terminal configured for connection to a laser diode, the summer configured to drive the output terminal with an output current that is the sum of the bias current pulses and the drive current pulses, wherein the first drive current pulse has a rising edge that is delayed in time relative to a rising edge of the first bias current pulse by the time period T DELAY , wherein a current level of the bias current pulses is less than a turn-on current threshold of the laser diode, and wherein the laser diode turns on in response to the sum of the bias current pulses and the drive current pulses exceeding the turn-on current threshold.

2. The laser diode driver of claim 1 , wherein the first drive current pulse has a falling edge that coincides with a falling edge of the first bias current pulse.

3. The laser diode driver of claim 1 , further comprising:

a trigger input for receiving a trigger signal from a source external to the device, wherein the controller generates the first bias current pulse in response to receiving the trigger signal.

4. The laser diode driver of claim 1 , further comprising:

a trigger input for receiving a trigger signal from a source external to the device, wherein the controller generates the first drive current pulse in response to receiving the trigger signal.

5. The laser diode driver of claim 1 , wherein the one or more bias current pulses forms a pulse width modulated (PWM) signal, and wherein the PWM signal has a duty cycle less that is less than 100%.

6. The laser diode driver of claim 1 , wherein the controller is configured to operate the first current source and the second current source such that each of the one or more bias current pulses is synchronized with respect to each of the one or more drive current pulses.

7. The laser diode driver of claim 1 , wherein a pulsewidth of the first drive current pulse is less than a pulsewidth of the first bias current pulse.

8. The laser diode driver of claim 1 , wherein the laser diode driver causes the laser diode to turn on in response to a rising edge of the first drive current pulse.

9. A device comprising:

a first current source;

a second current source;

a controller configured to operate the first current source to generate a bias current pulse, wherein the controller is also configured to operate the second current source to generate a drive current pulse;

an output terminal coupled to a laser diode, wherein the bias current pulse generated by the first current source has a current level that is below a turn-on threshold current of the laser diode;

a combining circuit that is coupled to receive the bias current pulse and the drive current pulse and to generate a laser diode driver output current, wherein the combining circuit supplies the laser diode driver output current onto the output terminal, and wherein laser diode driver output current has a current level that is above a turn-on threshold current of the laser diode; and

an input terminal that receives a trigger signal, wherein in response to receiving the trigger signal, the controller causes the first current source to generate the bias current pulse and causes the second current source to generate the drive current pulse a time period T DELAY after the bias current pulse is generated.

10. The device of claim 9 , wherein the drive current pulse has a falling edge that coincides with a falling edge of the bias current pulse.

11. The device of claim 9 , wherein a pulsewidth of the drive current pulse is less than a pulsewidth of the bias current pulse.

12. The device of claim 9 , wherein the time period T DELAY is less than twenty milliseconds.

13. The device of claim 9 , wherein the device causes the laser diode to turn on in response to the combining circuit supplying the laser diode driver output current onto the output terminal.

14. A laser diode driver comprising:

a first current source configured to generate one or more bias current pulses;

a second current source configured to generate one or more drive current pulses;

a controller configured to operate the first current source to generate a first bias current pulse and to operate the second current source to generate a first drive current pulse; and

means for receiving the one or more bias current pulses and the one or more drive current pulses and for outputting an output current onto a laser diode, wherein the output current is the sum of the bias current pulses and the drive current pulses, wherein the first drive current pulse has a rising edge that is delayed in time relative to a rising edge of the first bias current pulse by the time period T DELAY , wherein a current level of the bias current pulses is less than a turn-on current threshold of the laser diode, and wherein the sum of the bias current pulses and the drive current pulses exceeding the turn-on current threshold causes the laser diode to turn on.

15. The laser diode driver of claim 14 , wherein the first drive current pulse has a falling edge that coincides with a falling edge of the first bias current pulse.

16. The laser diode driver of claim 14 , further comprising:

a trigger input for receiving a trigger signal from a source external to the device, wherein the controller generates the first bias current pulse in response to receiving the trigger signal.

17. The laser diode driver of claim 14 , further comprising:

a trigger input for receiving a trigger signal from a source external to the device, wherein the controller generates the first drive current pulse in response to receiving the trigger signal.

18. The laser diode driver of claim 14 , wherein the one or more bias current pulses forms a pulse width modulated (PWM) signal, and wherein the PWM signal has a duty cycle less that is less than 100%.

19. The laser diode driver of claim 14 , wherein the controller is configured to operate the first current source and the second current source such that each of the one or more bias current pulses is synchronized with respect to each of the one or more drive current pulses.

20. The laser diode driver of claim 14 , wherein the laser diode driver causes the laser diode to turn on in response to a rising edge of the first drive current pulse.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 1, 2019
From: IXYS, LLC
To: LITTELFUSE, INC.
Reel/Frame 049056/0649 →
MERGER AND CHANGE OF NAME Recorded Mar 31, 2018
From: IXYS CORPORATION; IXYS, LLC
To: IXYS, LLC
Reel/Frame 045406/0624 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2014
From: BUDAI, JAMES
To: IXYS CORPORATION
Reel/Frame 033215/0664 →