IP Library Granted Patent US 12713751
Granted Patent B2
US 12713751 · App. 18/243,302 · Granted Aug 18, 2026

Light source device

Inventors: Toru Kuboi (Machida, JP); Yusuke Yabe (Chofu, JP); Rihito Ishikawa (Musashino, JP)
Assignee: OLYMPUS MEDICAL SYSTEMS CORP.
H10H20/8585H10W90/00
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Quick Facts
Patent No.
US 12713751
App. No.
18/243,302
Granted
Aug 18, 2026
Kind
B2
Abstract

A light source device includes: a first light source including a first electrode to which a current is applied, a first light emitter configured to emit light by the current applied to the first electrode, and a first heat release region configured to release heat generated in the first light emitter; a second light source including a second electrode to which a current is applied, a second light emitter configured to emit light in a wavelength different from a wavelength of the first light emitter, by the current applied to the second electrode, and a second heat release region configured to release heat generated in the second light emitter; and a heat release portion electrically-connected with the first electrode, electrically-insulated from the second electrode, and thermally connected to the first heat release region and the second heat release region.

Claims (22)

1 . A light source device comprising:

a first light source including a first electrode to which a current is applied, a first light emitter configured to emit light by the current applied to the first electrode, and a first heat release region configured to release heat generated in the first light emitter;

a second light source including a second electrode to which a current is applied, a second light emitter configured to emit light in a wavelength different from a wavelength of the first light emitter, by the current applied to the second electrode, and a second heat release region configured to release heat generated in the second light emitter; and

a heat release portion electrically-connected with the first electrode, electrically-insulated from the second electrode, and thermally connected to the first heat release region and the second heat release region.

2 . The light source device according to claim 1 , wherein a light source controller configured to independently control the current to be applied to the first electrode, and the current to be applied to the second electrode.

3 . The light source device according to claim 1 , wherein the second light source is a laser diode (LD), a light emitting diode (LED) in which the first electrode and the first heat release region are electrically-insulated, or an LED in which the first electrode and the first heat release region are electrically-connected and an insulation portion positioned between the first heat release region and the heat release portion is included.

4 . The light source device according to claim 1 , wherein the heat release portion has a surface area set based on heat generation amounts of the first light source and the second light source.

5 . The light source device according to claim 1 , wherein the heat release portion has a surface area set based on heat conductances of the first light source and the second light source.

6 . The light source device according to claim 1 , further comprising a third light source including a third electrode to which a current is applied, a third light emitter configured to emit light by the current applied to the third electrode, and a third heat release region configured to release heat generated in the third light emitter,

wherein the heat release portion is electrically-insulated from the third electrode, and thermally connected to the third heat release region.

7 . The light source device according to claim 1 , further comprising:

a fourth light source including a fourth electrode to which a current is applied, a fourth light emitter configured to emit light by the current applied to the fourth electrode, and a fourth heat release region configured to release heat generated in the fourth light emitter;

a fifth light source including a fifth electrode to which a current is applied, a fifth light emitter configured to emit light by the current applied to the fifth electrode, and a fifth heat release region configured to release heat generated in the fifth light emitter; and

a second heat release portion electrically-connected with the fourth electrode, electrically-insulated from the fifth electrode, and thermally connected to the fourth heat release region and the fifth heat release region.

8 . The light source device according to claim 1 ,

wherein a surface area of the heat release portion is set to release heat corresponding to a total heat generation amount of the first light emitter and the second light emitter.

9 . The light source device according to claim 8 ,

wherein the first light emitter and the second light emitter are configured to emit light with a first light amount in a first observation mode,

wherein the first light emitter and the second light emitter are configured to emit light with a second light amount different from the first light amount in a second observation mode, and

wherein the surface area of the heat release portion is set to release heat corresponding to a larger total heat generation amount in

a total heat generation amount of the first light emitter and the second light emitter that is obtained when the light with the first light amount is emitted, and

a total heat generation amount of the first light emitter and the second light emitter that is obtained when the light with the second light amount is emitted.