IP Library › Granted Patent US 12,327,976
Granted Patent B2
US 12,327,976 · App. 17/675,166 · Granted Jun 10, 2025

External resonance-type laser module

Inventors: Tadataka Edamura (Hamamatsu, JP); Atsushi Sugiyama (Hamamatsu, JP); Naota Akikusa (Hamamatsu, JP)
Assignee: HAMAMATSU PHOTONICS K.K.
H01S3/08059H01S3/1055H01S5/02253H01S5/141H01S5/3401H01S5/3402
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Quick Facts
Patent No.
US 12,327,976
App. No.
17/675,166
Granted
Jun 10, 2025
Kind
B2
Abstract

An external resonance-type laser module includes: a quantum cascade laser; a MEMS diffraction grating including a movable portion capable of swinging around an axis and a diffraction grating portion formed on the movable portion; a lens; a magnet; and a yoke. The MEMS diffraction grating includes a pair of coils respectively disposed on one side and the other side with respect to the axis when viewed in a normal direction parallel to a normal line of the diffraction grating portion, and each of the pair of coils includes an inside part extending along the axis. A recess portion is formed in the magnet, and at least a part of the recess portion overlaps the inside part when viewed in the normal direction.

Claims (26)

1. An external resonance-type laser module comprising:

a quantum cascade laser;

a MEMS diffraction grating including a movable portion capable of swinging around a predetermined axis and a diffraction grating portion formed on the movable portion, wherein the MEMS diffraction grating diffracts and reflects light emitted from the quantum cascade laser by the diffraction grating portion, and returns a part of the light to the quantum cascade laser;

a lens disposed between the quantum cascade laser and the MEMS diffraction grating;

a magnet disposed on a side opposite to the quantum cascade laser with respect to the MEMS diffraction grating; and

a yoke forming a magnetic circuit together with the magnet, wherein

the movable portion is formed in a plate shape, the MEMS diffraction grating includes a support portion and a connecting portion connecting the movable portion to the support portion on the axis such that the movable portion is capable of swinging around the axis, the movable portion is capable of vibrating as a single degree-of-freedom vibration system,

the MEMS diffraction grating further includes a coil formed in the movable portion and on which a magnetic force of the magnet acts, the coil includes a pair of coils respectively disposed on one side and the other side with respect to the axis when viewed in a normal direction parallel to a normal line of the diffraction grating portion, and each of the pair of coils includes an inside part extending along the axis, and

a recess portion is formed in a surface of the magnet on a side of the MEMS diffraction grating and at least a part of the recess portion overlaps the inside part of each of the pair of coils when viewed in the normal direction.

2. The external resonance-type laser module according to claim 1 , wherein the recess portion is a groove extending along a direction parallel to the axis.

3. The external resonance-type laser module according to claim 1 , wherein the recess portion is a hole having a bottom surface.

4. The external resonance-type laser module according to claim 1 , wherein the surface of the magnet includes a pair of inclined surfaces inclined such that a distance from the movable portion increases as a distance from the axis increases when viewed in a direction parallel to the axis.

5. The external resonance-type laser module according to claim 1 , wherein the magnet consists of a single member having different magnetic poles on one side and the other side in the normal direction.

6. The external resonance-type laser module according to claim 1 , wherein a width of the recess portion exceeds a width of the inside part of the pair of coils when viewed in the normal direction.

7. The external resonance-type laser module according to claim 1 , wherein

each of the pair of coils includes an outside part extending in parallel to the inside part along an outer edge of the movable portion, and

the recess portion does not overlap the outside part of each of the pair of coils when viewed in the normal direction.

8. An external resonance-type laser module comprising:

a quantum cascade laser;

a MEMS diffraction grating including a movable portion capable of swinging around a predetermined axis and a diffraction grating portion formed on the movable portion, wherein the MEMS diffraction grating diffracts and reflects light emitted from the quantum cascade laser by the diffraction grating portion, and returns a part of the light to the quantum cascade laser;

a lens disposed between the quantum cascade laser and the MEMS diffraction grating;

a magnet disposed on a side opposite to the quantum cascade laser with respect to the MEMS diffraction grating; and

a yoke forming a magnetic circuit together with the magnet, wherein

the MEMS diffraction grating further includes a coil on which a magnetic force of the magnet acts, the coil includes a pair of coils respectively disposed on one side and the other side with respect to the axis when viewed in a normal direction parallel to a normal line of the diffraction grating portion, and each of the pair of coils includes an inside part extending along the axis,

a recess portion is formed in a surface of the magnet on a side of the MEMS diffraction grating and at least a part of the recess portion overlaps the inside part of each of the pair of coils when viewed in the normal direction, and

the surface of the magnet includes a pair of inclined surfaces inclined such that a distance from the movable portion increases as a distance from the axis increases when viewed in a direction parallel to the axis.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 11, 2022
From: EDAMURA, TADATAKA; SUGIYAMA, ATSUSHI; AKIKUSA, NAOTA
To: HAMAMATSU PHOTONICS K.K.
Reel/Frame 059238/0516 →
Priority Claims (1)
JP 2021-027525 · Feb 24, 2021 · national
Continuity (1)
Related Publication 20220271491A1 · Aug 25, 2022
References Cited (6)
US 20090225802A1 · Day et al. · 2009 [cited by applicant]
US 20180062350A1 · Sugiyama · 2018 [cited by examiner]
US 20190052058A1 · Edamura · 2019 [cited by examiner]
JP 2008076569A · 2008 [cited by applicant]
JP 2019036577A · 2019 [cited by applicant]
A machine translation of JP2008-076569A (Year: 2008). [cited by examiner]
Cited By (1)
US 12,700,710