IP Library › Granted Patent US 12,264,834
Granted Patent B2
US 12,264,834 · App. 17/706,014 · Granted Apr 1, 2025

Air conditioner

Inventors: Hayato Nuno (Osaka, JP); Hiroshi Itou (Osaka, JP)
Assignee: DAIKIN INDUSTRIES, LTD.
F24F11/64A61L2/10C02F1/325F24F13/22A61L2202/11A61L2202/14C02F2201/326C02F2209/02C02F2209/42C02F2209/44C02F2303/04F24F2013/228F24F2110/10F24F2110/12F24F2140/20F24F2140/30
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Quick Facts
Patent No.
US 12,264,834
App. No.
17/706,014
Granted
Apr 1, 2025
Kind
B2
Abstract

An air conditioner includes a heat exchanger provided in an indoor unit, a drain pan that receives drain water generated in the heat exchanger, an irradiation unit that irradiates the drain pan with ultraviolet rays, and a control unit that controls ultraviolet intensity of the irradiation unit. The control unit controls the irradiation unit to make the ultraviolet intensity after a cooling operation is larger than the ultraviolet intensity during the cooling operation.

Claims (70)

1. An air conditioner comprising:

a heat exchanger provided in an indoor unit of the air conditioner;

a drain pan configured to receive drain water generated in the heat exchanger;

an irradiation unit configured to irradiate the drain pan with ultraviolet rays;

a controller configured to control ultraviolet intensity of the ultraviolet rays from the irradiation unit; and

a water sensor configured to detect a water level of the drain water,

wherein

the controller controls the irradiation unit to make the ultraviolet intensity after a cooling operation larger than the ultraviolet intensity during the cooling operation,

the irradiation unit comprises a light emitter, and

the controller controls the irradiation unit to irradiate the drain pan with the ultraviolet rays when an accumulated time during which the water level of the drain water detected by the water sensor is equal to or lower than a predetermined level becomes equal to or longer than a predetermined time during the cooling operation.

2. An air conditioner comprising:

a heat exchanger provided in an indoor unit of the air conditioner;

a drain pan configured to receive drain water generated in the heat exchanger;

an irradiation unit configured to irradiate the drain pan with ultraviolet rays;

a controller configured to control ultraviolet intensity of the ultraviolet rays from the irradiation unit; and

a temperature sensor configured to detect a temperature of the heat exchanger,

wherein

the controller controls the irradiation unit to make the ultraviolet intensity after a cooling operation larger than the ultraviolet intensity during the cooling operation,

the irradiation unit comprises a light emitter, and

the controller controls the irradiation unit to irradiate the drain pan with the ultraviolet rays when an accumulated time during which the temperature of the heat exchanger detected by the temperature sensor is equal to or higher than a dew-point temperature becomes equal to or longer than a predetermined time during the cooling operation.

3. An air conditioner comprising:

a heat exchanger provided in an indoor unit of the air conditioner;

a drain pan configured to receive drain water generated in the heat exchanger;

an irradiation unit configured to irradiate the drain pan with ultraviolet rays;

a controller configured to control ultraviolet intensity of the ultraviolet rays from the irradiation unit; and

an indoor temperature sensor configured to detect an indoor temperature,

wherein

the controller controls the irradiation unit to make the ultraviolet intensity after a cooling operation larger than the ultraviolet intensity during the cooling operation,

the irradiation unit comprises a light emitter,

the controller controls the irradiation unit to emit the ultraviolet rays when a temperature difference between the indoor temperature detected by the indoor temperature sensor and a set temperature selected by a user or the controller becomes equal to or less than a predetermined temperature during the cooling operation, and

the controller controls the irradiation unit to make a dose obtained by multiplying the ultraviolet intensity by the irradiation time during the cooling operation equal to a dose obtained by multiplying the ultraviolet intensity by the irradiation time after the cooling operation.

4. An air conditioner comprising:

a heat exchanger provided in an indoor unit of the air conditioner;

a drain pan configured to receive drain water generated in the heat exchanger;

an irradiation unit configured to irradiate the drain pan with ultraviolet rays; and

a controller configured to control ultraviolet intensity of the ultraviolet rays from the irradiation unit,

wherein

the controller controls the irradiation unit to make the ultraviolet intensity after a cooling operation larger than the ultraviolet intensity during the cooling operation,

the irradiation unit comprises a light emitter,

the controller controls an irradiation time of the irradiation unit, and

the controller controls the irradiation unit to make the irradiation time during the cooling operation longer than the irradiation time after the cooling operation.

5. The air conditioner according to claim 1 , wherein the controller controls the irradiation unit to make a dose obtained by multiplying the ultraviolet intensity by the irradiation time during the cooling operation equal to a dose obtained by multiplying the ultraviolet intensity by the irradiation time after the cooling operation.

6. The air conditioner according to claim 1 , wherein the drain pan is structured to cause the drain water to flow out by its own weight.

7. An air conditioner comprising:

a heat exchanger provided in an indoor unit of the air conditioner;

a drain pan configured to receive drain water generated in the heat exchanger;

an irradiation unit configured to irradiate the drain pan with ultraviolet rays;

a controller configured to control the irradiation unit; and

a water sensor configured to detect a water level of the drain water,

wherein

the controller controls the irradiation unit to emit the ultraviolet rays intermittently or to emit no ultraviolet rays during a cooling operation,

the irradiation unit comprises a light emitter, and

the controller controls the irradiation unit to irradiate the drain pan with the ultraviolet rays when an accumulated time during which the water level of the drain water detected by the water sensor is equal to or lower than a predetermined level becomes equal to or longer than a predetermined time during the cooling operation.

8. An air conditioner comprising:

a heat exchanger provided in an indoor unit of the air conditioner;

a drain pan configured to receive drain water generated in the heat exchanger;

an irradiation unit configured to irradiate the drain pan with ultraviolet rays;

a controller configured to control the irradiation unit; and

a temperature sensor configured to detect a temperature of the heat exchanger,

wherein

the controller controls the irradiation unit to emit the ultraviolet rays intermittently or to emit no ultraviolet rays during a cooling operation,

the irradiation unit comprises a light emitter, and

the controller controls the irradiation unit to irradiate the drain pan with the ultraviolet rays when an accumulated time during which the temperature of the heat exchanger detected by the temperature sensor is equal to or higher than a dew-point temperature becomes equal to or longer than a predetermined time during the cooling operation.

9. The air conditioner according to claim 7 , wherein the drain pan is structured to cause the drain water to flow out by its own weight.

10. The air conditioner according to claim 8 , wherein the drain pan is structured to cause the drain water to flow out by its own weight.

11. The air conditioner according to claim 2 , wherein the controller controls the irradiation unit to make a dose obtained by multiplying the ultraviolet intensity by the irradiation time during the cooling operation equal to a dose obtained by multiplying the ultraviolet intensity by the irradiation time after the cooling operation.

12. The air conditioner according to claim 4 , wherein the controller controls the irradiation unit to make a dose obtained by multiplying the ultraviolet intensity by the irradiation time during the cooling operation equal to a dose obtained by multiplying the ultraviolet intensity by the irradiation time after the cooling operation.

13. The air conditioner according to claim 2 , wherein the drain pan is structured to cause the drain water to flow out by its own weight.

14. The air conditioner according to claim 3 , wherein the drain pan is structured to cause the drain water to flow out by its own weight.

15. The air conditioner according to claim 4 , wherein the drain pan is structured to cause the drain water to flow out by its own weight.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 29, 2022
From: NUNO, HAYATO; ITOU, HIROSHI
To: DAIKIN INDUSTRIES, LTD.
Reel/Frame 059421/0748 →
Priority Claims (1)
JP 2019-180008 · Sep 30, 2019 · national
Continuity (2)
Continuation PCTJP2020034321 · Sep 10, 2020
Related Publication 20220214069A1 · Jul 7, 2022
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