IP Library Granted Patent US 11,894,652
Granted Patent B2
US 11,894,652 · App. 17/610,408 · Granted Feb 6, 2024

Passive Q switching laser device, control method, and laser processing device

Inventor: Yasuyuki Ishihama (Tokyo, JP)
Assignee: SONY GROUP CORPORATION
H01S3/113H01S3/0941H01S3/102H01S5/0427B23K26/082H01S3/094076H01S3/1305H01S3/1307
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Quick Facts
Patent No.
US 11,894,652
App. No.
17/610,408
Granted
Feb 6, 2024
Kind
B2
Abstract

A passive Q switching laser device according to an embodiment of the present technology includes: a passive Q switching laser; a signal source; a modulation unit; and a power source unit. The passive Q switching laser includes an excitation light source that emits excitation light, and a resonator that is excited by the excitation light to emit oscillation light. The signal source outputs a drive signal for driving the excitation light source. The modulation unit modulates, on the basis of emission timing at which the oscillation light is emitted from the passive Q switching laser, the drive signal output from the signal source. The power source unit drives, on the basis of the drive signal modulated by the modulation unit, the excitation light source to emit the excitation light.

Claims (42)

1. A passive Q switching laser device, comprising:

a passive Q switching laser that includes an excitation light source that emits excitation light, and a resonator that is excited by the excitation light to emit oscillation light;

a signal source that outputs a drive signal for driving the excitation light source;

a modulation unit that modulates, on a basis of emission timing at which the oscillation light has been emitted from the passive Q switching laser, the drive signal output from the signal source; and

a power source unit that drives, on a basis of the drive signal modulated by the modulation unit, the excitation light source to emit the excitation light,

wherein the drive signal is a pulse signal,

wherein the power source unit causes the excitation light source to emit the excitation light while the drive signal modulated by the modulation unit is at an on-level, and

wherein the modulation unit modulates a time period of the on-level of the pulse signal output from the signal source.

2. The passive Q switching laser device according to claim 1 , wherein—the modulation unit modulates the drive signal to stop emission of the excitation light in accordance with the emission timing.

3. The passive Q switching laser device according to claim 1 , wherein—the modulation unit includes a detection unit that detects emission of the oscillation light and outputs a detection signal and a modulator circuit that modulates the drive signal upon receiving the detection signal output from the detection unit.

4. The passive Q switching laser device according to claim 3 , wherein—the detection unit includes a splitting element that partially splits the oscillation light, and a photodetector that receives part of the oscillation light split by the splitting element, converts the received part into a signal, and outputs the converted signal as the detection signal.

5. The passive Q switching laser device according to claim 3 , wherein—the detection unit is a photodiode.

6. The passive Q switching laser device according to claim 1 , wherein—the modulation unit sets the pulse signal output from the signal source in accordance with the emission timing to an off-level.

7. The passive Q switching laser device according to claim 1 , wherein—the signal source emits the pulse signal in which on-timing has been set on the basis of target timing at which the oscillation light is to be emitted.

8. The passive Q switching laser device according to claim 1 , wherein—the signal source outputs the pulse signal having pulses corresponding to a desired target number of times of emission of the oscillation light.

9. The passive Q switching laser device according to claim 1 , wherein—the modulation unit includes a detection unit that detects emission of the oscillation light and outputs a detection signal, and a modulator circuit that modulates the pulse signal upon receiving the detection signal output from the detection unit, and

wherein a pause time of a pulse included in the pulse signal emitted from the signal source is set to be at least equal to or larger than a minimum pause time.

10. The passive Q switching laser device according to claim 9 , wherein—the pause time of the pulse is set on a basis of a time difference between timing at which the detection signal is output from the detection unit and timing at which the excitation light is stopped.

11. The passive Q switching laser device according to claim 1 , wherein—the excitation light source is a laser diode.

12. A control method for a passive Q switching laser including an excitation light source that emits excitation light and a resonator that is excited by the excitation light to emit oscillation light, comprising:

operating a signal source to output a drive signal for driving the excitation light source of the passive Q switching laser;

operating a modulation unit to modulate, on a basis of emission timing at which the oscillation light has been emitted from the resonator of the passive Q switching laser, the drive signal output from the signal source; and

operating a power source unit to drive, on a basis of the modulated drive signal, the excitation light source to emit the excitation light,

wherein the drive signal is a pulse signal,

wherein the power source unit causes the excitation light source to emit the excitation light while the modulated drive signal is at an on-level, and

wherein the modulation unit modulates a time period of the on-level of the pulse signal output from the signal source.

13. A laser processing device, comprising:

a passive Q switching laser that includes an excitation light source that emits excitation light, and a resonator that is excited by the excitation light to emit oscillation light;

a signal source that outputs a drive signal for driving the excitation light source;

a modulation unit that modulates, on a basis of emission timing at which the oscillation light has been emitted from the passive Q switching laser, the drive signal output from the signal source;

a power source unit that drives, on a basis of the drive signal modulated by the modulation unit, the excitation light source to emit the excitation light; and

an emission mechanism for emitting, toward a workpiece, the oscillation light emitted from the resonator of the passive Q switching laser,

wherein the drive signal is a pulse signal,

wherein the power source unit causes the excitation light source to emit the excitation light while the drive signal modulated by the modulation unit is at an on-level, and

wherein the modulation unit modulates a time period of the on-level of the pulse signal output from the signal source.

14. The laser processing device according to claim 13 , wherein—the emission mechanism includes at least one of an optical scanning mechanism that performs scanning with the oscillation light and a transport mechanism that transports the workpiece.

15. The laser processing device according to claim 13 , wherein the modulation unit modulates the drive signal to stop emission of the excitation light in accordance with the emission timing.

16. The laser processing device according to claim 13 , wherein the modulation unit includes a detection unit that detects emission of the oscillation light and outputs a detection signal and a modulator circuit that modulates the drive signal upon receiving the detection signal output from the detection unit.

17. The laser processing device according to claim 16 , wherein the detection unit includes a splitting element that partially splits the oscillation light, and a photodetector that receives part of the oscillation light split by the splitting element, converts the received part into a signal, and outputs the converted signal as the detection signal.

18. The laser processing device according to claim 13 , wherein the modulation unit sets the pulse signal output from the signal source in accordance with the emission timing to an off-level.

19. The laser processing device according to claim 13 , wherein the signal source emits the pulse signal in which on-timing has been set on the basis of target timing at which the oscillation light is to be emitted.

20. The laser processing device according to claim 13 , wherein the signal source outputs the pulse signal having pulses corresponding to a desired target number of times of emission of the oscillation light.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2021
From: ISHIHAMA, YASUYUKI
To: SONY GROUP CORPORATION
Reel/Frame 058077/0754 →
Priority Claims (1)
JP 2019-095324 · May 21, 2019 · national
Continuity (1)
Related Publication 20220209489A1 · Jun 30, 2022