HPS Rotary Screw Compressor Units
070.700-IOM (MAR 21)
Page 49
Forms
Communications
Compressor ID
______
Comm 1
Comm 2
Comm 3
Baud Rate ________
Baud Rate __________
Baud Rate ___________
Data Bits _________
Data Bits ____________
Data Bits ____________
Stop Bits _________
Stop Bits ___________
Stop Bits ____________
Parity ___________ Parity
______________ Parity_______________
RS 485 Connection ______
RS 485 Connection _______
RS 485 Connection _______
Protocol _________
Protocol _________ Protocol
__________
Use Map File ________
Ethernet
IP Data
Naming Data
Protocols
Address Type
__________
Host Name __________
ModBus TCP ________
IP Address
__________
Work Group _________
Ethernet I/P _________
Gateway Address __________ Comments __________
Profinet
_____________
Subnet Mask
__________
Web Server Port
__________
Compressor operating log sheet
Starter operating log sheet
Date
Average current
Time
Current phase A
Hour meter reading
Current phase B
Equip. Room temp.
Current phase C
Suction pressure
Full load amps
Suction temperature
Output frequency
Suction superheat
Output voltage
Discharge pressure
DC
bus voltage
Discharge temperature
Input power kW
Corresponding temperature
Actual speed
Oil pressure
Speed command
Oil temperature
Ambient temp F.
Oil filter pressure drop
Convert heatsink temp. °F
Separator temperature
Baseplate temp. °F
Motor amps / FLA %
VSD
operating mode
Capacity control setpoint
Harmonic filter present
Oil level
Harmonic filter mode
Oil added
Water pump energized
Seal leakage (drops/min.)
Precharge relay energized
Evaporator. EWT F.
Trigger
SCR
’s energized
Evaporator LWT F.
Dc inverter link current
Condenser EWT F.
Motor winding temp. °F
Condenser LWT F.
Humidistat % RH
Vyper coolant temp. °F
Total kWh