York MILLENNIUM YK Wiring Diagram Download Page 5

FORM 160.54-PW7

5

YORK INTERNATIONAL

LD06822

FIG. 4 – RUN CONTACTS

When closed, these contacts signify that the unit is op-
erating. The OptiView Control Center will display a Sys-
tem Run Message.

FIG. 4 – RUN CONTACTS

FIG. 5 – ANTICIPATORY/ALARM CONTACTS

These contacts will close whenever one or more of the
following WARNING conditions occurs. They will re-
main closed as long as the condition is in effect. On
most Warnings, the contacts automatically open when
the condition is no longer present. On those warnings
marked with an asterisk, the contacts will open only
after the condition is no longer present and the WARN-
ING RESET key is pressed in Operator (or higher) ac-
cess level.

Real time Clock failure, Condenser or Evaporator Trans-
ducer Error*, Refrigerant level Out Of range, Standby
Lube – Low Oil Pressure*, Setpoint Override*, Con-
denser-High Pressure Limit, Evaporator-Low Pressure
Limit, Vanes Uncalibrated – Fixed speed, Harmonic fil-
ter – Operation Inhibited, Harmonic Filter – Data Loss,
Harmonic Filter – Input Frequency Out of Range.

FIG. 5 – ANTICIPATORY/ALARM CONTACTS

LD04604

FIG. 6 – REMOTE START AND STOP CONTACTS
FROM ENERGY MANAGEMENT SYSTEM

When the OptiView Control Center is in the “Digital”,
“Analog” or “ISN” remote operating mode and the
COMPRESSOR switch is in the “RUN” (

l

) position,

with the Remote Stop Contacts open, and the Remote
Mode Ready to Start Contacts closed (Fig. 1), the unit
will start via a closure of the Remote Start Contacts. A
subsequent closure of the Energy Management System
Remote Stop Contacts causes the chiller to shut down.
The OptiView Control Center will display “REMOTE
STOP” because the Energy Management System Re-
mote Stop Contact has commanded the unit to shut down.

It is recommended that maintained contacts be used for
both START and STOP.

Even when the chiller is applied with
Remote Start-Stop (when the Control
Center is in the “remote operating
mode), an EMERGENCY STOP by an
operator or others can STOP the com-
pressor from the OptiView Control
Center and prevent the chiller from re-
starting. However, the operator cannot
locally start the compressor using
“compressor” start switch, when the
control center is in the “remote” oper-
ating mode.

FIG. 6 – REMOTE START-STOP CONTACTS FROM

ENERGY MANAGEMENT SYSTEM

LD06824

Summary of Contents for MILLENNIUM YK

Page 1: ...s provisions for remote control inputs and provisions for remote setpoint reset of leaving chilled liquid tempera ture and current limit for EMS interfacing See Note 7 Five sets of unit status contact...

Page 2: ...ll load amperes for 1 to 255 minutes following each compressor start For more details refer to OptiView Control Center Instructions Form 160 54 O1 6 Controlling the maximum allowable compressor motor...

Page 3: ...U L or C S A Approved Units Only 8 Fig 14A Electro Mechanical Starter Manual Reset Overloads P Compressors Only 2300 to 4160 Volts U L or C S A Approved Units Only 8 Fig 15 Remote Current Limit Setpo...

Page 4: ...ion so they will allow the unit to start 4 The OptiView Control Center COMPRESSOR switch is in the RUN l position 5 The 30 minute anti recycle timer has timed out A closure of the Remote Mode Ready to...

Page 5: ...f Range FIG 5 ANTICIPATORY ALARM CONTACTS LD04604 FIG 6 REMOTE START AND STOP CONTACTS FROM ENERGY MANAGEMENT SYSTEM When the OptiView Control Center is in the Digital Analog or ISN remote operating m...

Page 6: ...lowing messages CYCLING SHUTDOWN AUTO RESTART and SYSTEM CYCLING CONTACTS OPEN The OptiView Control Center con tains a seven day time clock to select daily schedule Start Stop times Sun day through Sa...

Page 7: ...TWO UNIT SEQUENCE CONTROL Provides that cycling thermostat RWT will automati cally cycle either 1 or 2 unit Timer 3TR is an addi tional feature which prevents simultaneous starting of lead and lag un...

Page 8: ...LE UNITS TWO PARALLEL OPERATION SINGLE CHILLED WATER PUMP For this piping arrangement each chiller s water sensor is located in its own leaving water nozzle This produces a constant mixed chilled wate...

Page 9: ...lts and Microboard Program Jumper JP23 has been removed Calculate the setpoint for various inputs as follows SETPOINT 100 VDC X 7 For example if the input is 5VDC the setpoint would be set to 65 as fo...

Page 10: ...dulation input is in the form of a 1 to 11 second relay contact closure that applies 115VAC to the I O Board TB4 20 for 1 to 11 seconds As shown in Fig 17 connect dry closure relay contacts between I...

Page 11: ...SET F VDC 2 REMOTE RESET TEMP RANGE 8 SETPOINT F LOCAL SETPOINT OFFSET For example if the input is 5VDC and the Remote Re set Temp Range setpoint is programmed for 40 F the setpoint would be set to 43...

Page 12: ...e set to 44 F as follows SIGNAL COMMON 5 4 J22 FIG 19 REMOTE LEAVING CHILLED LIQUID TEMP SETPOINT WITH 0 20MA OR 4 20MA SIGNAL LD04501 OFFSET F 8 10 20 80 20 4 F SETPOINT F 40 4 44 F 4 20mA As shown i...

Page 13: ...J11 1 JP27 1 SHLD GND _ 5V J11 SHLD GND _ 5V J11 SHLD GND _ 5V J12 SHLD GND _ 5V MICROBOARD 031 01730 1 PC 104 2 1 J17 J16 FIG 21 MICROBOARD DIP SWITCH FOR AUTO MANUAL RESTART AFTER POWER FAILURE LD04...

Page 14: ...er square inch psia For Metric Units temperature is in degrees Celsius C and pressure in KiloPascals kPa _ _ On Solid State Starter units only when the Current Imbalance option is selected via the Sol...

Page 15: ...un Light The control relay scheme shown in Fig 23 can also be applied for a remote Run Light AND a Remote Shutdown Indicator when an EMS is not used When Evaporator Water is flowing the flow switch co...

Page 16: ...e accomplished in sev eral ways Two flow switches a flow switch and a relay or separate contacts on the same flow switch 14 15 Do not apply voltage on field wiring terminal blocks TB4 and TB6 in YORK...

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