CC-GAIX11 Honeywell Analog Input GI/IS IOTA

In stock
Manufacturer:
Honeywell
Product No.:
CC-GAIX11
Condition:
In Stock
Product Type:
Analog Input GI/IS IOTA
Product Origin:
USA
Weight:
300g
Shipping port:
Xiamen
Warranty:
12 months

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GI/IS Analog Input IOTA Model CC-GAIX11

The model CC-GAIX11 Analog Input IOTA accommodates up to sixteen 4-20 mA input signals. This IOTA supports redundancy and allows galvanically isolated inputs from the following isolators:

  • MTL4541 - Single channel 4-to-20 mA isolator with HART®
  • MTL4544 - Dual channel 4-to-20 mA isolator with HART®
  • MTL4575 - Thermocouple/RTD isolating converter with 4-to-20 mA output (or something similar)
  • MTL4599 - Dummy, terminates unused connectors

Analog Input Supported Isolators

The following table defines important distinctions between the various isolators and the Analog Input IOTAs they support.

AI IOTAs and their Supporting Isolators

Item       MTL4541           CC-GAIX11        MTL4544             CC-GAIX11           MTL4575              CC-GAIX11
Maximum current consumption (with 20mA signal) 51mA at 24V 95mA at 24V 50mA at 20V 35mA at 35V
Maximum power dissipation within isolator (with 20mA signal) 0.7W at 24V 1.4W at 24V 1.2W at 35V
Isolation 250V ac between hazardous area and safe/power supply circuits 100V ac between safe and power supply circuits 100V ac between safe and power supply circuits Three port isolation 250V ac between safe- and hazardous-area circuits. Input circuit's floating.
Temperature drift <0.8μA/degrees C <0.8μA/degrees C
Safety description Terminals 2 to 1 and 3: Vo=28V Io=93mA Po=651mW Um = 253V rms or dc Terminals 1 to 3: Non-energy-storing apparatus ≤1.2V, ≤0.1A, ≤20μJ and ≤25mW; can be connected without further certification into any IS loop with an open-circuit voltage <28V Terminals 5 and 6 Non-energy-storing apparatus ≤1.2V, ≤0.1A, ≤20μJ and ≤25mW. Can be connected without further certification into any IS loop with an open-circuit voltage not more than 10V.
Configuration socket Vi=11.2V Ii=12mA Pi=280mW Vo=7.2V Io=14.5mA Po=26mW Vo=7.2V Io=8mA Po=144mW Um = 253V rms or = dc ---