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Daikin

Daikin Floor Standing Type Indoor Unit FAY100FAVE

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Daikin Floor Standing Type Indoor Unit FAY100FAVE
Daikin Floor Standing Type Indoor Unit FAY100FAVE

The Daikin Floor Standing Type Indoor Unit FAY100FAVE is a high-efficiency air conditioning solution designed for optimal comfort in commercial and residential spaces. This unit combines advanced technology with reliable performance, ensuring effective climate control and energy savings. Ideal for various applications, it enhances indoor air quality while maintaining a sleek design.

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Manual for Daikin Floor Standing Type Indoor Unit FAY100FAVE

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Daikin Floor Standing Type Indoor Unit FAY100FAVE

Daikin Floor Standing Type Indoor Unit FAY100FAVE

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Maintenance Plans for Daikin Floor Standing Type Indoor Unit Model FAY100FAVE

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Fan Motor Connector Check

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Check for Fan Motor Connector (Signal Line)

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(1) Turn the power supply OFF.

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For except FBQ

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(2) With the fan motor connector disconnected, measure the resistance between each pin, then make sure that the resistance is more than the value mentioned in the following table.

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For FBQ

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(2) With the fan motor connector disconnected, measure the resistance between each pin, then make sure that the resistance is balanced in ±30%.

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Check for Fan Motor Connector (Power Supply Line)

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(1) Turn the power supply OFF.

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With the relay connector disconnected, measure the resistance between UVW phases of the connector (3 cores) at the motor side, then make sure that the resistance between each phase is balanced and not short-circuited.;

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Inadequate Refrigerant Check

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As criteria for judging whether refrigerant is inadequate or not, refer to the following operating conditions.

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<Diagnosis of inadequate refrigerant>

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In cooling operation

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(1) As suction superheated degree increases due to refrigerant shortage, the electronic expansion valve tends to open (opens fully) in order to avoid overheat operation.

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(2) In response to decreased evaporator capacity caused by refrigerant shortage, capacity is controlled in the inverter in order to maintain low pressure, which results in a decrease in frequency.

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(3) Because of (1) and (2) above, the compressor frequency decreases despite a large difference (large load) between temperature set by the remote controller and suction air temperature, resulting that cooling capacity becomes unavailable.

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(4) If refrigerant shortage worsens, the electronic expansion valve remains fully open and suction superheated degree further increases. In addition, as compressor frequency drops to the level of the lowest frequency (41 Hz), low pressure cannot be maintained

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<Diagnosis of inadequate refrigerant>

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In heating operation

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Abnormal High Pressure Check

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Warning: High pressure checks should be performed by trained personnel only

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Enter the current pressure level

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Is the pressure level above the normal range?

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If the pressure level is above the normal range, proceed with the following checks

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Check if the condenser side is causing the high pressure

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List the possible causes of high pressure

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Sign off on the high pressure check

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Connecting Wire Check

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Procedure for checking outdoor-outdoor unit transmission wiring for broken wires

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Power supply to all equipment turned OFF?

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Short circuit between the outdoor-outdoor unit terminal F1 and F2 in the 'Outdoor Unit A'

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Continuity checks between the transmission wiring terminal blocks F1 and F2 of the centralized remote controller

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Continuity between the said terminal blocks?

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If there is no continuity, the transmission wiring may have broken wires.

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Continuity checks between the transmission wiring terminal blocks F1 and F2 of the unified ON/OFF controller

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Continuity checks between the outdoor-outdoor unit terminal of the 'Outdoor Unit E'

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Continuity checks between the outdoor-outdoor unit terminal of the 'Outdoor Unit D'

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Clogged Points Check

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Temperature differences must occur before or after the clogged points!

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(1) Around expansion mechanism

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Replace the electronic expansion valve.

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(2) Accumulator Frosting

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Blow a nitrogen gas, and then replace the refrigerant.

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(3) Distributor

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Replace the heat exchanger or distributor.

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(4) Field piping

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Collapsed pipe Replace the pipe.

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