PSD-QS (02/16)
Page 60
Triple Evacuation
Triple evacuation is implemented to evacuate a system to a deep vacuum. It is accomplished by
evacuating a system to a vacuum of 1500 microns, and then bleeding a small amount of dry nitrogen
into the system. The nitrogen is then blown out to the atmosphere. The system is then evacuated
until the vacuum is again reduced to 1500 microns. This procedure is repeated three times, with the
last vacuum level reaching a deep vacuum of 400 microns, which is held for 10 to 15 minutes. The
following is a detailed description of the triple evacuation.
1. Attach an electronic micron gage to the system. The best place is as far from the vacuum port
as possible, which would be the access port on a service valve on the EarthLinked
®
compressor unit.
2. Let the vacuum pump run until the digital vacuum gage reaches
1500 microns.
After reaching
1500 microns, isolate the digital vacuum gage.
3. Allow a small amount of dry nitrogen to enter the system until the LP gage shows about 5 psig.
This small amount of dry nitrogen will fill the system and mix with the other vapors.
4. Release system pressure to 0 psig and close the valve. Then open the isolation valve on the
digital vacuum gage.
5. Open the vacuum pump valve and start the vapor removal process from the system again.
Let the vacuum pump run until the vacuum is again reduced to
1500 microns.
Repeat Step 3.
6. After nitrogen has been added to the system a
second time
, open the vacuum pump valve
and again remove the vapor. Operate the vacuum pump until the vacuum on the electronic
micron gage reads
400 microns.
7. Once the micron gage reads
400 microns for 10 to 15 minutes
, isolate the micron gage. The
system must not exceed 500 microns in 15 minutes. If it does,
repeat step 6
.
8. Then charge the system in accordance with the initial refrigerant charging procedure.
Summary of Contents for Prime-025
Page 15: ...PSD QS 02 16 Page 15 Figure 8 PSD Compressor Unit Electrical Schematic 230 1 60...
Page 16: ...PSD QS 02 16 Page 16 Figure 9 PSD Compressor Unit Electrical Schematic 230 3 60...
Page 17: ...PSD QS 02 16 Page 17 Figure 10 PSD Air Heating Cooling Water Heating Application...
Page 18: ...PSD QS 02 16 Page 18 Figure 11 PSD Air Heating CoolingWater Heating Field Wiring Diagram...
Page 20: ...PSD QS 02 16 Page 20 Figure 11a SureStart Mode of Operation...
Page 27: ...PSD QS 02 16 Page 27 Figure 15 Disassembled Plug Connector...
Page 34: ...PSD QS 02 16 Page 34 Figure 24 PSD Internal Flow Schematic...
Page 35: ...PSD QS 02 16 Page 35 Figure 25 PSD Piping...
Page 37: ...PSD QS 02 16 Page 37 Figure 26 Evacuation of PSD System...
Page 39: ...PSD QS 02 16 Page 39 Figure 27 Initial Charge of PSD System...
Page 41: ...PSD QS 02 16 Page 41 Figure 28 Final Charge of PSD System...
Page 44: ...PSD QS 02 16 Page 44 Figure 32 Start Up Process...
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