3 – 2
Section 3
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Hardware Architecture
Vission 20/20 • Operation and Service Manual • Emerson • 35391SC 2.7
output is energized. Once the volume slide reaches
0%, this output will not energize.
Oil Sump Heater Output:
• This output is active and energized when the oil
separator temperature is lower than the oil separator
temperature setpoint. It is de-energized when the oil
separator temperature is higher than the oil separa-
tor temperature setpoint.
Trip Output:
• This output is energized when the system has no
Trips. If a trip is issued, the output de-energizes and
stays de-energized until the trip condition is cleared.
Slide Valve Setpoint #1 Output (Economizer Port #1):
• Normally used for an economizer solenoid, but could
be used for other devices. When the compressor slide
valve percentage is equal to or greater than “slide
valve set-point #1”, the output is energized. When
the compressor slide valve percentage is less than
“slide valve set-point #1”, the output is de-energized.
Slide Valve Setpoint #2 Output (Hot Gas Bypass):
• Normally used for a hot gas solenoid, but could be
used for other devices. When the compressor slide
valve percentage is equal to or greater than “slide
valve set-point #2”, the output is energized. When
the compressor slide valve percentage is less than
“slide valve set-point #2”, the output is de-energized.
Alarm Output:
• This output is energized when the system has no
alarms. If an alarm is issued, the output de-energizes
and stays de-energized until the alarm condition is
cleared.
Economizer Port #2 Output:
• This output is energized when the compressor slide
valve percentage is equal to or greater than slide
valve set-point for economizer port 2. It is de-ener-
gized when the compressor slide valve percentage is
less than slide valve set-point for economizer port 2.
Liquid Injection #1 Output (see Figure 3-2):
• The function of this output will differ depending on
what type liquid injection is selected. If the liquid in-
jection solenoid only is chosen, then the output will
energize when discharge temperature is above liquid
injection setpoint #1 and the oil separator tempera-
ture is above the oil separator temperature override
set-point. The output is de-energized when any one
of the above condition is not met.
• If the compressor has liquid injection with motor-
ized value oil cooling, then this output is energized
when the compressor is running and the discharge
temperature is above the oil separator temperature
override set-point and the oil separator temperature
is above the override setpoint. The output is de-en-
ergized when the discharge temperature falls below
the “on” setpoint minus the solenoid differential or
when oil separator temperature is below the oil sepa-
rator temperature override set-point.
Figure 3-2. Liquid Injection #1 logic
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