IP Library Granted Patent US 12,386,248
Granted Patent B2
US 12,386,248 · App. 18/192,856 · Granted Aug 12, 2025

Method of controlling display device and display device

Inventor: Tomonori Miyajima (Matsumoto, JP)
Assignee: SEIKO EPSON CORPORATION
G03B21/16H05K7/20136
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Quick Facts
Patent No.
US 12,386,248
App. No.
18/192,856
Granted
Aug 12, 2025
Kind
B2
Abstract

A method of controlling a display device includes feeding electrical power to an image supply device coupled to a first terminal configured to feed the electrical power and provided to the display device via the first terminal with a first power feeding amount when the display device is in an operating state, and feeding the electrical power to the image supply device via the first terminal with a second power feeding amount smaller than the first power feeding amount when the display device is in a standby state.

Claims (31)

1. A method of controlling a display device, comprising:

feeding electrical power to an image supply device coupled to a first terminal configured to feed the electrical power and provided to the display device via the first terminal with a first power feeding amount when the display device is in an operating state; and

feeding the electrical power to the image supply device via the first terminal with a second power feeding amount smaller than the first power feeding amount when the display device is in a standby state, wherein

a rotational frequency of a cooling fan provided to the display device is a first rotational frequency when the display device is in the operating state,

the rotational frequency of the cooling fan is a second rotational frequency lower than the first rotational frequency when the display device is in the standby state,

the image supply device is separate from the display device, and

the standby state further includes an ECO standby mode in which power is supplied to the display device but not to the image supply device, and the cooling fan is not operated.

2. The method of controlling the display device according to claim 1 , further comprising:

transmitting a first instruction for making a transition of the image supply device from the operating state to the standby state to the image supply device via the first terminal when the display device receives a transition instruction from the operating state to the standby state.

3. The method of controlling the display device according to claim 2 , further comprising:

transmitting a second instruction for making a transition of the image supply device from the standby state to the operating state to the image supply device via the first terminal when the display device receives a transition instruction from the standby state to the operating state.

4. The method of controlling the display device according to claim 2 , further comprising:

receiving a third instruction for making a transition of the display device from the standby state to the operating state from the image supply device via the first terminal when the image supply device receives a transition instruction from the standby state to the operating state.

5. A display device comprising:

a first terminal configured to feed electrical power;

a power feeding circuit configured to feed the electrical power to an image supply device via the first terminal;

a cooling fan provided to the display device; and

a processor programmed for controlling the power feeding circuit, including

making the power feeding circuit feed the electrical power to the image supply device with a first power feeding amount when the display device is in an operating state, and

making the power feeding circuit feed the electrical power to the image supply device with a second power feeding amount smaller than the first power feeding amount when the display device is in a standby state, wherein

the processor is further programmed for controlling

a rotational frequency of the cooling fan to be a first rotational frequency when the display device is in the operating state, and

the rotational frequency of the cooling fan to be a second rotational frequency lower than the first rotational frequency when the display device is in the standby state,

the image supply device is separate from the display device, and

the standby state further includes an ECO standby mode in which power is supplied to the display device but not to the image supply device, and the cooling fan is not operated.

6. The display device according to claim 5 , wherein:

the processor is further programmed for transmitting a first instruction for making a transition of the image supply device from the operating state to the standby state to the image supply device via the first terminal when the display device receives a transition instruction from the operating state to the standby state.

7. The display device according to claim 6 , wherein:

the processor is further programmed for transmitting a second instruction for making a transition of the image supply device from the standby state to the operating state to the image supply device via the first terminal when the display device receives a transition instruction from the standby state to the operating state.

8. The display device according to claim 6 , wherein:

the processor is further programmed for receiving a third instruction for making a transition of the display device from the standby state to the operating state from the image supply device via the first terminal when the image supply device receives a transition instruction from the standby state to the operating state.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2023
From: MIYAJIMA, TOMONORI
To: SEIKO EPSON CORPORATION
Reel/Frame 063172/0245 →
Priority Claims (1)
JP 2022-055315 · Mar 30, 2022 · national
Continuity (1)
Related Publication 20230314919A1 · Oct 5, 2023
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