IP Library Granted Patent US 6,885,685
Granted Patent B2
US 6,885,685 · App. 10/457,009 · Granted Apr 26, 2005

Control system for a laser diode and a method for controlling the same

Assignee: Sumitomo Electric Industries, Ltd.
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Quick Facts
Patent No.
US 6,885,685
App. No.
10/457,009
Granted
Apr 26, 2005
Kind
B2
Abstract

According to the present invention, an optical transmitting system, which enables a precise control of the power and the extinction ratio of the optical output without a small amount of the preset data, will be provided. The system comprises a laser module and a control system that supplies a bias current and a modulation current to the laser module. In the present invention, one of the bias current and the modulation current of the semiconductor laser in the laser module is varied to maintain the power and the extinction ratio of the optical output, and the other of the bias current and the modulation current is calculated based on the specific function. Only coefficients of the specific function are stored in the control system. Therefore, the present invention does not need a large size of the storage in which both the bias current and the modulation current are stored as a table.

Claims (32)

1. A method of controlling a semiconductor laser diode for emitting light with a predetermined optical output power and an extinction ratio by supplying a bias current and a modulation current thereto, the laser diode being installed in a laser module having a data storage and a means for monitoring a portion of the light emitted from the laser diode, the method comprising the steps of:

(a) storing a plurality of parameters into the data storage, the parameters defining a specific function that relates one of the bias current and the modulation current to the other current, thereby the laser diode emitting light with the predetermined optical output power and the extinction ratio;

(b) monitoring a photo current generated by the monitoring means, the photo current corresponding to the optical output power of the laser diode;

(c) comparing the photo current with a target photo current;

(d) changing one of the bias current and the modulation current by a prescribed magnitude;

(e) calculating the other current based on the specific function characterized by the plurality of parameters;

(f) supplying the bias current and the modulation current to the laser diode; and

(g) iterating the steps from (b) to (f) until the optical output power and the extinction ratio of the laser diode become predetermined values.

2. The method of controlling the laser diode according to claim 1 , wherein the step (d) completes when the absolute difference of the photo current to the target photo current is smaller than a first threshold, and the step (d) starts when an absolute difference is greater than a second threshold, the first threshold being smaller than the second threshold.

3. The method of controlling the laser diode according to claim 2 , wherein the first threshold is greater than a half of a predetermined level of the photo current and the second threshold is smaller than the predetermined level,

wherein the predetermined level is a change of the photo current when one of the bias current and the modulation current is changed by the prescribed magnitude.

4. The method of controlling the laser diode according to claim 2 , wherein the first threshold is greater than a half of a predetermined level of the photo current and the second threshold is smaller than the predetermined level,

wherein the predetermined level is a change of the photo current of a reference diode when one of the bias current and the modulation current supplied to the reference diode is changed by the prescribed magnitude, multiplied by a ratio of the target photo current to a target photo current of the reference diode.

5. The method of controlling the laser diode according to claim 1 , wherein the specific function is n-th order homogeneous function.

6. The method of controlling the laser diode according to claim 5 , wherein the specific function is the second order homogeneous function.

7. The method of controlling the laser diode according to claim 5 , wherein the specific function is the third order homogeneous function.

8. The method of controlling the laser diode according to claim 1 , wherein the prescribed magnitude is varied based on a result of comparing the photo current with the target photo current.

9. A control system for a laser diode, comprising:

a laser module including:

a semiconductor laser diode for emitting light with a predetermined optical output power and an extinction ratio by supplying a bias current and a modulation current thereto, and

a means for monitoring a portion of the light emitted from the laser diode and generating a photo current corresponding to the monitored light; and

a control apparatus including:

a data storage for storing a plurality of parameters to define a specific function relating one of the bias current and the modulation current to the other current, and

a processing unit for performing sequences of comparing the photo current generated by the monitoring means with a target photo current, changing one of the bias current and the modulation current by a prescribed magnitude, and calculating the other current based on the specific function characterized by the plurality of parameters stored in the data storage.

10. A control system according to claim 9 , wherein the processing unit completes the change of one of the bias current and the modulation current when an absolute difference of the photo current to the target photo current is smaller than a first threshold, and starts the change of one of the bias current and the modulation current when the absolute difference of the photo current to the target photo current is greater than a second threshold.

11. A control system according to claim 10 , wherein the first threshold is greater than a half of a predetermined level of the photo current and the second threshold is smaller than the predetermined level, the predetermined level being a change of the photo current when one of the bias current and the modulation current is changed by the prescribed magnitude.

12. A control system according to claim 10 , wherein the first threshold is greater than a half of a predetermined level of the photo current and the second threshold is smaller than the predetermined level,

wherein the predetermined level is a change of the photo current of a reference diode when one of the bias current and the modulation current supplied to the reference diode is changed by the prescribed magnitude, multiplied by a ratio of the target photo current to a target photo current of the reference diode.

13. A control system according to claim 9 , wherein the specific function is n-th order homogeneous function.

14. A control system according to claim 9 , wherein the specific function is the second order homogeneous function.

15. A control system according to claim 9 , wherein the specific function is the third order homogeneous function.

16. A control system according to claim 9 , wherein the prescribed magnitude for changing of one of the bias current and the modulation current is varied based on a result of comparing the photo current with the target photo current.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 29, 2003
From: HIDAKA, HIROTOSHI; IWADATE, HIROTAKE
To: SUMITOMO ELECTRIC INDUSTRIES, LTD.
Reel/Frame 014552/0856 →
Priority Claims (2)
JP 2002-170473 · Jun 11, 2002 · national
JP 2002-359602 · Dec 11, 2002 · national
Continuity (1)
Related Publication 20040032889A1 · Feb 19, 2004