IP Library › Granted Patent US 11,959,675
Granted Patent B2
US 11,959,675 · App. 17/273,418 · Granted Apr 16, 2024

Air-conditioning apparatus

Inventors: Kazuki Watanabe (Tokyo, JP); Masahiko Takagi (Tokyo, JP)
Assignee: Mitsubishi Electric Corporation
F25B49/02F24F11/36F24F11/89F25B2313/0314F25B2500/222F25B2600/2513
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Quick Facts
Patent No.
US 11,959,675
App. No.
17/273,418
Granted
Apr 16, 2024
Kind
B2
Abstract

An air-conditioning apparatus includes an indoor unit and an outdoor unit connected to each other via a refrigerant pipe through which refrigerant flows. The air-conditioning apparatus includes a refrigerant sensor that detects leakage of the refrigerant in the indoor unit, a notification unit that provides a notification of occurrence of leakage of the refrigerant, a transmitter that communicates with an external terminal via a network, and a controller that controls the notification unit and the transmitter. The notification unit includes a display and a speaker disposed on a surface of a casing of the indoor unit, and the external terminal. When leakage of the refrigerant is detected by the refrigerant sensor, the controller controls the notification unit and the transmitter to provide a notification of occurrence of leakage of the refrigerant.

Claims (42)

1. An air-conditioning apparatus provided with an indoor unit and an outdoor unit connected to each other via a refrigerant pipe through which refrigerant flows, the air-conditioning apparatus comprising:

a refrigerant sensor configured to detect leakage of the refrigerant in the indoor unit;

a notification unit configured to provide a notification of occurrence of leakage of the refrigerant;

a transmitter capable of communicating with an external terminal via a network; and

a controller configured to control operations of the indoor unit, and to control at least the notification unit and the transmitter;

wherein the notification unit includes at least one of a display and a speaker disposed on a surface of a casing of the indoor unit;

wherein at least one of the display and the speaker disposed on the surface of the casing of the indoor unit is disposed adjacent to at least one of a temperature sensor and a light receiver disposed on the surface of the casing, the light receiver being configured to receive an operation signal from a remote controller; and

wherein the controller is configured to

determine whether leakage of the refrigerant is detected by the refrigerant sensor, and

in response to determining that leakage of the refrigerant is detected, control both the notification unit to provide a notification of occurrence of leakage of the refrigerant and the transmitter to provide the notification of occurrence of leakage of the refrigerant via the network to the external terminal.

2. The air-conditioning apparatus of claim 1 , wherein the transmitter is provided in the remote controller.

3. The air-conditioning apparatus of claim 1 , further comprising:

a shutoff valve disposed at the refrigerant pipe, and configured to cut off a flow of the refrigerant between the indoor unit and the outdoor unit;

wherein in response to determining that leakage of the refrigerant is detected by the refrigerant sensor, the controller switches the shutoff valve from an open state to a closed state.

4. The air-conditioning apparatus of claim 1 , wherein in response to determining that leakage of the refrigerant is detected by the refrigerant sensor, the controller forcibly operates a fan of the indoor unit.

5. The air-conditioning apparatus of claim 1 ,

wherein the indoor unit includes a plurality of indoor units; and

wherein the controller controls the notification unit such that a form in which the notification of occurrence of refrigerant leakage is provided differently in one of the plurality of indoor units in which leakage of the refrigeration is detected by the refrigerant sensor from other of the plurality of indoor units.

6. The air-conditioning apparatus of claim 1 ,

wherein the indoor unit includes a plurality of indoor units; and

wherein the controller is further configured to control the plurality of indoor units.

7. An air-conditioning apparatus provided with an indoor unit and an outdoor unit connected to each other via a refrigerant pipe through which refrigerant flows, the air-conditioning apparatus comprising:

a refrigerant sensor configured to detect leakage of the refrigerant in the indoor unit;

a notification unit configured to provide a notification of occurrence of leakage of the refrigerant;

a transmitter capable of communicating with an external terminal via a network; and

a controller configured to control operations of the indoor unit, and to control at least the notification unit and the transmitter;

wherein the notification unit includes at least one of a display disposed on a surface of a casing of the indoor unit and a speaker disposed on the surface of the casing of the indoor unit;

wherein at least one of the display and the speaker disposed on the surface of the casing of the indoor unit is apart from at least one of a temperature sensor and a light receiver disposed on the surface of the casing, the light receiver being configured to receive an operation signal having indoor unit settings from a remote controller, and

wherein the controller is configured to

determine whether leakage of the refrigerant is detected by the refrigerant sensor, and

in response to determining that leakage of the refrigerant is detected, control both the notification unit to provide a notification of occurrence of leakage of the refrigerant and the transmitter to provide the notification of occurrence of leakage of the refrigerant via the network to the external terminal.

8. The air-conditioning apparatus of claim 7 , wherein the transmitter is provided in the remote controller.

9. The air-conditioning apparatus of claim 7 , further comprising:

a shutoff valve disposed at the refrigerant pipe, and configured to cut off a flow of the refrigerant between the indoor unit and the outdoor unit;

wherein in response to determining that leakage of the refrigerant is detected by the refrigerant sensor, the controller switches the shutoff valve from an open state to a closed state.

10. The air-conditioning apparatus of claim 7 , wherein in response to determining that leakage of the refrigerant is detected by the refrigerant sensor, the controller forcibly operates a fan of the indoor unit.

11. The air-conditioning apparatus of claim 7 ,

wherein the indoor unit includes a plurality of indoor units; and

wherein the controller controls the notification unit such that a form in which the notification of occurrence of refrigerant leakage is provided differently in one of the plurality of indoor units in which leakage of the refrigeration is detected by the refrigerant sensor from other of the plurality of indoor units.

12. The air-conditioning apparatus of claim 7 ,

wherein the indoor unit includes a plurality of indoor units; and

wherein the controller is further configured to control the plurality of indoor units.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 4, 2021
From: WATANABE, KAZUKI; TAKAGI, MASAHIKO
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 055493/0506 →
Continuity (1)
Related Publication 20210199360A1 · Jul 1, 2021