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7

Deep Vacuum Method

The deep vacuum method requires a vacuum pump capable of

pulling a vacuum of 500 microns and a vacuum gage capable of
accurately measuring this vacuum depth. The deep vacuum

method is the most positive way of assuring a system is free of air
and liquid water. (See Fig. 6)

500

MINUTES

0

1

2

3

4

5

6

7

1000

1500

LEAK IN

SYSTEM

VACUUM TIGHT

TOO WET
TIGHT

DRY SYSTEM

2000

M

IC

R

O

N

S

2500

3000

3500

4000

4500

5000

A95424

A95424

Fig. 6 ---

Deep Vacuum Graph

Triple Evacuation Method

The triple evacuation method should only be used when vacuum
pump is only capable of pumping down to 28 in. of mercury

vacuum and system does not contain any liquid water. Refer to
Fig. 7 and proceed as follows:

1. Pump system down to 28 in. of mercury and allow pump

to continue operating for an additional 15 minutes.

2. Close service valves and shut off vacuum pump.
3. Connect a nitrogen cylinder and regulator to system and

open until system pressure is 2 psig.

4. Close service valve and allow system to stand for 1 hr.

During this time, dry nitrogen will be able to diffuse
throughout the system absorbing moisture.

5. Repeat this procedure as indicated in Fig. 7. System will

then be free of any contaminants and water vapor.

CHECK FOR TIGHT, DRY SYSTEM

(IF IT HOLDS DEEP VACUUM)

EVACUATE

BREAK VACUUM WITH DRY NITROGEN

WAIT

EVACUATE

CHARGE SYSTEM

BREAK VACUUM WITH DRY NITROGEN

EVACUATE

WAIT

A95425

Fig. 7 ---

Triple Evacuation Method

FINAL TUBING CHECK

IMPORTANT

: Check to be certain factory tubing on both

indoor and outdoor unit has not shifted during shipment. Ensure
tubes are not rubbing against each other or any sheet metal. Pay
close attention to feeder tubes, making sure wire ties on feeder
tubes are secure and tight.

STEP 7. —

Make Electrical Connections

!

WARNING

ELECTRICAL SHOCK HAZARD

Failure to follow this warning could result in personal

injury or death.
Do not supply power to unit with compressor terminal

box cover removed.

Be sure field wiring complies with local and national fire, safety,
and electrical codes, and voltage to system is within limits shown

on unit rating plate. Contact local power company for correction

of improper voltage. See unit rating plate for recommended
circuit protection device.

NOTE

: Operation of unit on improper line voltage constitutes

abuse and could affect unit reliability. See unit rating plate. Do
not install unit in system where voltage may fluctuate above or
below permissible limits.

NOTE

: Use copper wire only between disconnect switch and

unit.

NOTE

: Install branch circuit disconnect of adequate size per

NEC to handle unit starting current. Locate disconnect within
sight from and readily accessible from unit, per Section 440--14
of NEC.

ROUTE GROUND AND POWER WIRES

Remove access panel to gain access to unit wiring. Extend wires

from disconnect through power wiring hole provided and into

unit control box.

!

WARNING

ELECTRICAL SHOCK HAZARD

Failure to follow this warning could result in personal

injury or death.
The unit cabinet must have an uninterrupted or unbroken

ground to minimize personal injury if an electrical fault

should occur. The ground may consist of electrical wire or

metal conduit when installed in accordance with existing

electrical codes.

24AC

A

Summary of Contents for 24ACA

Page 1: ...2 INSTALLATION 3 9 Step 1 Check Equipment Jobsite 3 Step 2 Install on Solid Pad 3 Step 3 Clearance Requirements 3 Step 4 Operating Ambient 3 Step 5 Install TXV 3 4 Step 6 Make Piping Connections 4 7...

Page 2: ...rate at higher pressures than standard R 22 systems To avoid damage to the unit or possible personal injury do not use R 22 service equipment or components on Puron equipment INSTALLATION RECOMMENDATI...

Page 3: ...ufacturer specifications STEP 3 Clearance Requirements When installing allow sufficient space for airflow clearance wiring refrigerant piping and service Allow 30 in clearance to service end of unit a...

Page 4: ...placing TXV on R 22 Indoor Coil 1 Pump system down to 2 psig and recover refrigerant 2 Remove coil access panel and fitting panel from front of cabinet 3 Remove TXV support clamp using a 5 16 in nut d...

Page 5: ...nd condition Rated tubing diameters shown in Table 1 recommended up to 80 ft See Product Data for acceptable alternates vapor diameters and associated capacity losses For tubing requirements beyond 80...

Page 6: ...the indoor coil 2 Wrap filter drier with damp cloth 3 Braze filter drier to above 5 liquid tube Flow arrow must point towards indoor coil 4 Connect and braze liquid refrigerant tube to the filter dri...

Page 7: ...utdoor unit has not shifted during shipment Ensure tubes are not rubbing against each other or any sheet metal Pay close attention to feeder tubes making sure wire ties on feeder tubes are secure and...

Page 8: ...ine Section Residential Split System Air Conditioners and Heat Pumps Using Puronr Refrigerant STEP 9 Install Electrical Accessories Refer to the individual instructions packaged with kits or accessori...

Page 9: ...cial charging requirements EXAMPLE To calculate additional charge required for a 25 ft line set 25 ft 15 ft 10 ft X 0 6 oz ft 6 oz of additional charge COOLING ONLY PROCEDURE This system requires char...

Page 10: ...ons On On On Off Off Off No 230V power to unit Check 230V disconnect circuit breaker Check 230V L1 L2 wire connections On On On On Off Off Contactor open Check Contactor and replace if necessary Check...

Page 11: ...8 76 74 72 70 68 266 80 78 76 74 72 70 274 82 80 78 76 74 72 283 84 82 80 78 76 74 291 86 84 82 80 78 76 299 88 86 84 82 80 78 308 90 88 86 84 82 80 317 92 90 88 86 84 82 326 94 92 90 88 86 84 335 96...

Page 12: ...s S Do not install a suction line filter drier in liquid line S POE oils absorb moisture rapidly Do not expose oil to atmosphere S POE oils may cause damage to certain plastics and roofing materials S...

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