IP Library Granted Patent US 8,603,230
Granted Patent B2
US 8,603,230 · App. 12/864,286 · Granted Dec 10, 2013

Indoor unit of air conditioner

Inventors: Tsuyoshi Yokomizo (Osaka, JP); Yoshiteru Nouchi (Osaka, JP); Yukihiro Takagaki (Osaka, JP); Akihiko Sakashita (Osaka, JP)
Assignee: Daikin Industries, Ltd.
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Quick Facts
Patent No.
US 8,603,230
App. No.
12/864,286
Granted
Dec 10, 2013
Kind
B2
Abstract

An indoor unit ( 1 ) is provided with an output control portion ( 35, 71 ) for controlling a cleaning signal output portion ( 33, 48 ) to output a cleaning signal when it is determined that the amount of dust in a dust storing portion ( 60, 90 ) has reached a predetermined first level, and when it is determined that the amount of dust in the dust storing portion ( 60, 90 ) has reached a second level that is higher than the first level.

Claims (31)

1. An indoor unit of an air conditioner, comprising:

a casing having an inlet and an outlet;

an indoor fan that blows air drawn through the inlet, into the outlet;

an air filter that captures dust contained in the air drawn through the inlet;

a refrigerant circuit that performs an air conditioning operation on the air drawn through the inlet prior to being blown into a room through the outlet;

a dust removing portion that performs a filter cleaning operation that removes, from the air filter, the dust captured by the air filter;

a dust collecting container that collects the dust removed from the air filter;

a dust storing container that stores dust transferred from the dust collecting container;

a cleaning signal output portion that outputs cleaning signals indicating a need to remove the dust from the dust storing container, the cleaning signals including a warning signal, a first abnormal signal, and a second abnormal signal;

an output control portion configured to control the cleaning signal output portion to output the warning signal when it is determined that an amount of dust in the dust collecting container has reached a predetermined first level, output the first abnormal signal when it is determined that the amount of dust in the dust collecting container has reached a second level that is higher than the first level, and output the second abnormal signal when it is determined that the amount of dust in the dust collecting container has reached a third level that is higher than the second level;

inhibit the filter cleaning operation of the dust removing portion, when it is determined that the amount of dust in the dust collecting container has reached the second level; and

perform a dust transfer operation that transfers dust collected in the dust collecting container to the dust storing container; and

a reset input portion that inputs a command to terminate a state where the output control portion inhibits the cleaning operation,

wherein the state where the output control portion inhibits the cleaning operation can be terminated by input to the reset input portion, only before it is determined that the amount of dust in the dust collecting container has reached the third level.

2. The indoor unit of claim 1 , further comprising:

a clogging detection section that detects clogging of the air filter, wherein

the output control portion is further configured to inhibit air conditioning operation when it is determined based on an output of the clogging detection section that the clogging of the air filter has reached a predetermined level, after it is determined that the amount of dust in the dust storing portion has reached the second level.

3. The indoor unit of claim 1 , wherein the output control portion is further configured to inhibit the air conditioning operation when it is determined that the amount of dust in the dust storing container has reached the second level.

4. The indoor unit of claim 1 , further comprising:

a detection sensor for detecting the amount of dust in the dust storing container, and

wherein the output control portion is further configured to determine if the amount of dust in the dust storing container has reached the first level or not, based on an output of the detection sensor.

5. The indoor unit of claim 4 , further comprising:

a measuring timer for measuring an accumulated operation time of the indoor fan or the air conditioner after the amount of dust in dust storing portion has reached the first level, wherein the output control portion is further configured to determine if the amount of dust in the dust storing container has reached the second level or not, based on an accumulated operation time of the indoor fan or the air conditioner after it is determined that the amount of dust in the dust storing container has reached the first level.

6. The indoor unit of claim 5 , further comprising:

a measuring timer for measuring an accumulated operation time of the indoor fan or the air conditioner after the amount of dust in dust storing portion has reached the second level, wherein the output control portion is further configured to: determine if the amount of dust in the dust storing container has reached the third level or not, based on the accumulated operation time of the indoor fan or the air conditioner after it is determined that the amount of dust in the dust storing container has reached the second level.

7. The indoor unit of claim 1 , further comprising:

a measuring timer for measuring an accumulated operation time of the indoor fan or the air conditioner after the dust is removed from the dust storing container, and

wherein the output control portion is further configured to control the cleaning signal output portion to output the caution signal, when the time measured by the measuring timer or a time calculated by using the measured time reaches a predetermined reference value.

8. The indoor unit of claim 4 , further comprising:

a sensor box attached to the dust storing container, the sensor box housing the detection sensor.

9. The indoor unit of claim 8 , wherein the detection sensor includes a pair of components positioned at a height slightly lower than the center of the dust storing container such that light emitted from one of the components is detected by the second component after it sequentially passes through a first window and a second window of the dust storing container.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2010
From: YOKOMIZO, TSUYOSHI; NOUCHI, YOSHITERU; TAKAGAKI, YUKIHIRO; SAKASHITA, AKIHIKO
To: DAIKIN INDUSTRIES, LTD.
Reel/Frame 024735/0382 →
Priority Claims (1)
JP 2008-015520 · Jan 25, 2008 · national
Continuity (1)
Related Publication 20100294134A1 · Nov 25, 2010