IP Library Granted Patent US 12663672
Granted Patent B2
US 12663672 · App. 18/366,774 · Granted Jun 23, 2026

Light transmissive optical element module and electronic instrument

Inventors: Norikazu Kadotani (Azumino, JP); Yuki Naito (Matsumoto, JP); Tomoaki Miyashita (Shimosuwa-machi, JP); Masanobu Nakanishi (Azumino, JP)
Assignee: SEIKO EPSON CORPORATION
G02F1/133385G03B21/006G03B21/16H04N9/3144
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Quick Facts
Patent No.
US 12663672
App. No.
18/366,774
Granted
Jun 23, 2026
Kind
B2
Abstract

A light transmissive optical element module includes an optical device having a light transmissive optical element that causes light incident thereon to exit and a heat transfer surface via which heat of the light transmissive optical element is transferred, a heat diffuser that includes a contact section in contact with the heat transfer surface and an extension extending from the contact section and diffuses the received heat, a thermoelectric conversion device that has a first surface in contact with the extension and a second surface disposed at a side opposite from the first surface, absorbs via the first surface the heat transferred from the extension, and dissipates the absorbed heat via the second surface, and a cooler in contact with the second surface.

Claims (36)

1 . A light transmissive optical element module comprising:

an optical device having a light transmissive optical element that causes light incident thereon to exit and a heat transfer surface via which heat of the light transmissive optical element is transferred;

a heat diffuser that includes a contact section in contact with the heat transfer surface and an extension extending from the contact section and diffuses the received heat;

a thermoelectric conversion device that has a first surface in contact with the extension and a second surface disposed at a side opposite from the first surface, absorbs via the first surface the heat transferred from the extension, and dissipates the absorbed heat via the second surface; and

a cooler in contact with the second surface;

wherein:

the thermoelectric conversion device is a Peltier device;

the light transmissive optical element is a liquid crystal panel that includes a liquid crystal layer, which modulates light incident thereon in a first direction, and causes the modulated light to exit in the first direction, and

the heat diffuser transfers the heat supplied from the Peltier device to the liquid crystal panel via the contact section.

2 . The light transmissive optical element module according to claim 1 ,

wherein the heat diffuser is a vapor chamber including a sealed enclosure that houses a working fluid that changes between a gas phase and a liquid phase, and

the contact section and the extension are provided in the sealed enclosure.

3 . The light transmissive optical element module according to claim 1 ,

wherein the heat diffuser is a heat conductor including at least one of a graphite sheet and a graphene sheet.

4 . The light transmissive optical element module according to claim 1 ,

wherein the cooler is a heat sink.

5 . The light transmissive optical element module according to claim 1 ,

wherein the cooler is a cold plate in which a liquid refrigerant flows.

6 . An electronic instrument comprising the light transmissive optical element module according to claim 1 .

7 . A light transmissive optical element module comprising:

an optical device having a light transmissive optical element that causes light incident thereon to exit and a heat transfer surface via which heat of the light transmissive optical element is transferred;

a heat diffuser that includes a contact section in contact with the heat transfer surface and an extension extending from the contact section and diffuses the received heat;

a thermoelectric conversion device that has a first surface in contact with the extension and a second surface disposed at a side opposite from the first surface, absorbs via the first surface the heat transferred from the extension, and dissipates the absorbed heat via the second surface; and

a cooler in contact with the second surface;

wherein the heat diffuser is a vapor chamber including a sealed enclosure that houses a working fluid that changes between a gas phase and a liquid phase, and

the contact section and the extension are provided in the sealed enclosure.

8 . The light transmissive optical element module according to claim 7 ,

wherein the cooler is a heat sink.

9 . The light transmissive optical element module according to claim 7 ,

wherein the cooler is a cold plate in which a liquid refrigerant flows.

10 . The light transmissive optical element module according to claim 7 ,

wherein the thermoelectric conversion device is a Peltier device.

11 . The light transmissive optical element module according to claim 10 ,

wherein the light transmissive optical element is a liquid crystal panel that includes a liquid crystal layer, which modulates light incident thereon in a first direction, and causes the modulated light to exit in the first direction, and

the heat diffuser transfers the heat supplied from the Peltier device to the liquid crystal panel via the contact section.

12 . An electronic instrument comprising the light transmissive optical element module according to claim 7 .