Emerson XM670 Installation And Operation Manual page 24

Controllers for multiplexed cabinets
Table of Contents

Advertisement

dEM
Type of end defrost: n= the of the LAN defrost are independent; y= the end of the defrost are synchronized
L.A.N. set-point synchronization: y= the section set-point, when modified, is updated to the same value on
LSP
all the other sections; n= the set-point value is modified only in the local section
L.A.N. display synchronization: y= the value displayed by the section is sent to all the other sections; n= the
LdS
set-point value is modified only in the local section
L.A.N. On/Off synchronization this parameter states if the On/Off command of the section will act on all the
LOF
other ones too: y= the On/Off command is sent to all the other sections; n= the On/Off command acts only in
the local section
L.A.N. light synchronization this parameter states if the light command of the section will act on all the other
LLi
ones too: y= the light command is sent to all the other sections; n= the light command acts only in the local
section
L.A.N. AUX output synchronization this parameter states if the AUX command of the section will act on all
LAU
the other ones too: y= the light command is sent to all the other sections; n= the light command acts only in
the local section
L.A.N. energy saving synchronization this parameter states if the energy saving command of the section will
LES
act on all the other ones too: y= the Energy Saving command is sent to all the other sections; n= the Energy
Saving command acts only in the local section
Remote probe display: this parameter states if the section has to display the local probe value or the value
LSd
coming from another section: y= the displayed value is the one coming from another section (which has
parameter LdS = y); n= the displayed value is the local probe one.
Remote pressure probe: n= the value of pressure probe is read from local probe; Y= the value of pressure
LPP
probe is sent via LAN.
Solenoid activation via LAN: n= not used; Y= a generic cooling requests from LAN activate the solenoid
StM
valve connected to compressor relay.
P1C
Probe 1 configuration: (nP - Ptc - ntc - PtM) nP= not present; PtC= Ptc; ntc= Ptc; PtM= Pt1000
Ot
Probe 1 calibration: (-21 to 21°F/ -12.0 to 12.0°C) allows to adjust possible offset of the thermostat probe.
P2C
Probe 2 configuration: (nP - Ptc - ntc - PtM) nP= not present; PtC= Ptc; ntc= Ptc; PtM= Pt1000
OE
Probe 2 calibration: (-21 to 21°F/ -12.0 to 12.0°C) allows to adjust possible offsets of the evaporator probe.
P3C
Probe 3 configuration: (nP - Ptc - ntc - PtM) nP= not present; PtC= Ptc; ntc= Ptc; PtM= Pt1000
o3
Probe 3 calibration: (-21 to 21°F/ -12.0 to 12.0°C) allows to adjust possible offset of the probe 3.
P4C
Probe 4 configuration: (nP - Ptc - ntc - PtM) nP= not present; PtC= Ptc; ntc= Ptc; PtM= Pt1000
o4
Probe 4 calibration: (-21 to 21°F/ -12.0 to 12.0°C) allows to adjust possible offset of the probe 4.
Probe 5 configuration: (nP - Ptc - ntc - PtM - 420 - 5Vr) nP= not present; PtM= Pt1000; 420= 4 to 20mA;
P5C
5Vr= 0 to 5V ratiometric; (Only XM679)
Probe 5 calibration: (-21 to 21°F/ -12.0 to 12.0°C) allows to adjust possible offset of the probe 5. 
o5
(Only XM679)
Probe 6 configuration: (nP - Ptc - ntc - PtM) nP= not present; PtC= Ptc; ntc= Ptc; PtM= Pt1000; 
P6C
(Only XM679)
Probe 6 calibration: (-21 to 21°F/ -12.0 to 12.0°C) allows to adjust possible offset of the probe 6. 
o6
(Only XM679)
Table 8-1 - XM670 to XM679 Parameters List
18 • XM679K I&O Manual
PROBE CONFIGURATION
026-1218 Rev 4

Advertisement

Table of Contents
loading

This manual is also suitable for:

Xm679

Table of Contents