Toshiba RAV-SM801AT-E Final Installation Checks, Check and Test Operation, New tools for R410A

Models: RAV-SM561AT-E RAV-SM801AT-E RAV-SM1401AT-E RAV-SM1101AT-E

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RAV-SM561AT-E, RAV-SM801AT-E

7 FINAL INSTALLATION CHECKS

Check and Test Operation

For R410A, use the leak detector exclusively manufactured for HFC refrigerant (R410A, R134a, etc.).

*The conventional leak detector for HCFC refrigerant (R22, etc.) cannot be used because its sensitivity for HFC refrigerant lowers to approx. 1/40.

Pressure of R410A is approx. 1.6 times higher than that of R22.

If installation work is incompletely finished, a gas leakage may occur when pressure rises during operation.

Therefore, be sure to test the piping connections for leakage.

Check gas leakage at the flare nut connections, valve stem cap connections and service port cap fittings with a leak detector or soap water.

Valve cover

Piping cover

Check points of outdoor unit

Flare nut connections (Indoor unit)

CAUTION

When the remote controller is used for the first time, it accepts an operation approx. 5 minutes after the power supply has been turned on.

It is not a trouble, but is because the setup of the remote controller is being checked.

For the second power-ON time and after, approx. 1 minute is required to start the operation by the remote controller.

Installation/Servicing Tools

Changes in the product and components

In the case of an air conditioner using R410A, in order to prevent any other refrigerant from being charged accidentally, service port diameter of the outdoor unit control valve (3 way valve) has been changed. (1/2 UNF 20 threads per inch)

In order to increase the pressure resisting strength of the refrigerant piping flare processing diameter and size of opposite side of flare nuts has been changed. (for copper pipes with nominal dimensions 1/2 and 5/8)

New tools for R410A

New tools for R410A

Applicable to R22 model

Changes

 

 

As pressure is high, it is impossible to measure by means of conventional

Gauge manifold

 

gauge. In order to prevent any other refrigerant from being charged, each

 

 

 

port diameter is changed.

 

 

 

 

 

 

In order to increase pressure resisting strength, hose materials and port

Charge hose

 

size are changed (to 1/2 UNF 20 threads per inch).

 

 

 

When purchasing a charge hose, be sure to check the port size.

 

 

 

 

Electronic balance

¡

 

As pressure is high and gasification speed is fast, it is difficult to read the

for refrigerant charging

 

indicated value by means of charging cylinder, as air bubbles occur.

 

 

 

 

 

 

Torque wrench

 

The sizes of opposite sides of flare nuts have been increased. Inciden-

(nominal diam. 1/2, 5/8)

 

 

tally, a common wrench is used for nominal diameters 1/4 and 3/8.

 

 

 

 

Flare tool

¡

 

By increasing the clamp bar’s receiving hole, strength of spring in the tool

(clutch type)

 

has been improved.

 

 

 

 

 

 

Gauge for projection adjustment

Used when flare is made with using conventional flare tool.

 

 

 

 

 

 

 

Connected to the conventional vacuum pump. It is necessary to use an

 

 

 

adapter to prevent vacuum pump oil from flowing back to the charge hose.

Vacuum pump adapter

¡

 

The charge hose connecting part has two ports - one for conventional

 

refrigerant (7/16 UNF 20 threads per inch) and the other for R410A. If the

 

 

 

 

 

 

vacuum pump oil (mineral) mixes with R410A, sludge may occur and

 

 

 

damage the equipment.

Gas leakage detector

X

Exclusive for HFC refrigerant.

Incidentally, the “refrigerant cylinder” comes with the refrigerant designation (R410A) and protector coating in the U.S.’s ARI specified rose color (ARI color code: PMS 507).

Also, the “charge port and packing for refrigerant cylinder” require 1/2 UNF 20 threads per inch corresponding to the charge hose’s port size.

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Toshiba RAV-SM801AT-E, RAV-SM1101AT-E Final Installation Checks, Check and Test Operation, Installation/Servicing Tools