Figure 39 - Sample Printout (History) - York YR Manual

Rotary screw liquid chillers with optiview control center for electro-mechanical starter & solid state starter
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FORM 160.81-O1 (1020)
ISSUE DATE 10/05/2020
YORK HISTORY 1
CHILLER ID 0
(c) 1997 – 2001 YORK INTERNATIONAL CORPORATION
Mon 21 Jun 1999 1:26:51 PM
SYSTEM READY TO START
LCSSS – LOGIC BOARD POWER SUPPLY
[List any warnings that were active at the time of shutdown]
Controls C.MLM.05.02.102
Run Time 0 Days 2 Hr 59 Min
Operating Hours
Number Of Starts
Control Source
Evaporator
–––––––––––––––––––––––––––––––––––––––––––––––––––––
Leaving Chilled Active Setpoint
Chilled Liquid Pump
Chilled Liquid Flow Switch
Leaving Chilled Liquid Temperature
Return Chilled Liquid Temperature
Evaporator Pressure
Evaporator Saturation Temperature
Small Temperature Difference
Condenser
–––––––––––––––––––––––––––––––––––––––––––––––––––––
Condenser Liquid Pump
Condenser Liquid Flow Switch
Leaving Condenser Liquid Temperature
Return Condenser Liquid Temperature
Condenser Pressure
Condenser Saturation Temperature
Small Temperature Difference
Drop Leg Refrigerant Temperature
[If Drop Leg Sensor enabled]
Sub Cooling Temperature
[If Drop Leg Sensor enabled]
Compressor
–––––––––––––––––––––––––––––––––––––––––––––––––––––
Discharge Temperature
Discharge Pressure
Discharge Saturatioin Temperature
Discharge Superheat
Liquid Injector
Low Superheat Event
Low Superheat Run Time
[Skip the following section if Hot Gas Bypass is not enabled]
Hot Gas
–––––––––––––––––––––––––––––––––––––––––––––––––––––
Hot Gas Solenoid

FIGURE 39 - SAMPLE PRINTOUT (HISTORY)

JOHNSON CONTROLS
Oil Sump
–––––––––––––––––––––––––––––––––––––––––––––––––––––
Oil Pressure
Differential Oil Pressure
Differential Filter Pressure
Oil Supply Solenoid
[Skip the following section if Level Control is not enabled]
Refrigerant Level Control
––––––––––––––––––––––––––––––––––––––––––––––––––––––
Refrigerant Level Target
Refrigerant Level Position
= 298 Hr
Ramp Up Time Remaining
= 106
[If Ramp Up in effect]
= Local
[Skip the following section if Motor Type is not EM]
Electro-Mechanical Starter
––––––––––––––––––––––––––––––––––––––––––––––––––––––
= 45.0 ~F
Motor Run
= Run
% Full Load Amps
= Closed
= 50.0 ~F
[Skip the following section if Motor Type is not Mod A SSS]
= 59.3 ~F
Liquid-Cooled Solid State Starter
= 78.2 Psig
––––––––––––––––––––––––––––––––––––––––––––––––––––––
= 41.1 ~F
Motor Run
= 10.0 ~F
% Full Load Amps
% Phase A Voltage
Phase B Voltage
Phase C Voltage
= Run
Phase A Current
= Closed
Phase B Current
= 85.0 ~F
Phase C Current
= 94.9 ~F
= 135.8 Psig
[Skip the following section if Motor Type is not Mod B SSS]
= 71.7 ~F
Liquid-Cooled Solid State Starter
= -13.3 ~F
––––––––––––––––––––––––––––––––––––––––––––––––––––––
= 85.0 ~F
Motor Run
% Full Load Amps
= 2.0 ~F
Starter Model
KW Hours
Input Power
Phase A Voltage
Phase B Voltage
= 121.6 ~F
Phase C Voltage
= 135.7 Psig
Phase A Current
= 120.6ºF
Phase B Current
= 1.0 ~F
Phase C Current
= Open
Phase A Temperature
= 6
Phase B Temperature
= 8 min
Phase C Temperature
= Off
SECTION 4 - PRINTERS
= 120.7 Psig
= 41.6 Psid
= 13.1 Psid
= On
= 80 %
= 35 %
= 15 Sec
4
= On
= 94 %
= On
= 94
= 447 V
= 409 V
= 442 V
= 193 A
= 204 A
= 190 A
= On
= 94 %
= 33L
= 20723 KWH
= 145 KW
= 447 V
= 409 V
= 442 V
= 193 A
= 204 A
= 190 A
= 88 ~F
= 89 ~F
= 75 ~F
105

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