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GE IC200ALG630 VERSAMAX THERMOCOUPLE 7 POINT 16 BIT ANALOG TYPES
J/K/T/S/R
Product information GE IC200ALG630 :
The preferred installation technique is to mount the Thermocouple
Module on a Connector-style I/O Carrier and connect thermocouples
to an Interposing Thermocouple Carrier as shown below.
The Interposing Thermocouple-style I/O Carrier provides both
box-style wiring terminals and a built-in thermistor for Local Cold
Junction Compensation. It connects to the Connector-Style Carrier
via a cable as shown. This allows the thermocouple connections to
be located away from the I/O modules in the system.
Each TC terminal on the Interposing Thermocouple Carrier
accommodates one solid or stranded AWG #14 (avg. 2.1mm2 cross
section) to AWG #22 (avg. 0.36mm2 cross section) wire, or two wires
up to AWG #18 (avg. 0.86mm2 cross section). However, it is also
possible to mount the Thermocouple Module on one of the
terminal-style carriers (box-style, spring-style, or barrierstyle)
and provide Local Cold Junction Compensation by using a kit that
includes the correct type of thermistor, as described in the I/O
Modules User Manual.
Both methods are shown below. The thermistor kit must be installed
on the A9 and A10 terminals of the carrier. If the module will only
be used to measure millivolt inputs, not thermocouple inputs, it
can be mounted on any type of I/O Carrier. The thermistor terminals
A9 and A10 cannot be used as millivolt input terminals.
No Cold Junction Compensation:
This is used for millivolt inputs or if cold junction is maintained
at 0 degrees C.
Remote Cold Junction Compensation: With this option, cold junction
is measured externally and provided to the module from the
application, via the module’s analog output (word output) data. If
the module has multiple thermocouples that are configured for
remote compensation, the same compensation value must be used by
each.
Fixed Cold Junction Compensation: This option uses a fixed
compensation value which is provided as part of the module
configuration.
Local Cold Junction Compensation: The best way to provide local
compensation is with an Interposing Thermocouple Carrier, which has
a built-in thermistor. Using an Interposing Carrier allows the
thermocouple connections to be placed farther away from the I/O
modules in the system, which helps shield thermocouple connections
from module heat.
Features:
More information:
Output Voltage (5VDC-TTL mode) | 4.75 to 5.25 Volts DC, 5 Volts DC nominal |
Output Voltage (12/24VDC mode) | 10.2 to 30 Volts DC, 12/24 Volts DC nominal |
Group to Group Isolation | None |
Point to Point Isolation | None |
LED Indicator | One LED per point, OK, FLD PWR |
Backplane Current Consumption | 5 Volts, 70 milliamps |
External Power Supply | Yes |
IC694MDL230 | 120 VAC Isolated Input (8 Points) |
IC694MDL231 | 240 VAC Isolated Input (8 Points) |
IC694MDL240 | 120 VAC Input (16 Points) |
IC694MDL241 | 24 VAC/VDC Input (16 Points) |
IC694MDL250 | 120 VAC Isolated Input (16 Points) |
IC694MDL260 | 120 VAC Input (32 Points)** |
IC694MDL632 | 125 VDC Input (8 Points) |
IC694MDL634 | 24 VDC Input, Neg/Pos Logic (8 Points) |
IC694MDL645 | 24 VDC Input, Neg/Pos Logic (16 Points) |
IC694MDL646 | 24 VDC Input, Neg/Pos Logic, 1 msec Filter (16 Points) |
IC694MDL654 | 5/12 VDC (TTL) Input, Neg/Pos Logic, (32 Points) |
IC694MDL655 | 24 VDC Input, Neg/Pos Logic, 1 ms, (32 Points) |
IC694MDL660 | 24 VDC Input (32 Points)** |
IC694ACC300 | Input Simulator Module (8 Points) |
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