Rockwell Automation 1756-OF8I ControlLogix Eight-channel Isolated Analog I/O Modules  User Manual

Page 76

Advertising
background image

76

Rockwell Automation Publication 1756-UM540A-EN-P - May 2014

Chapter 4

1756-IRT8I Combined Temperature-sensing Isolated Analog Module

Because these modules can each be used in various applications, differences exist
when a wire off condition is detected in each application. The table lists the
differences that occur when a wire off condition occurs in various applications.

Table 10 - 1756-IRT8I Module - Wire Off Conditions

Application Configuration

Wire Off Condition Cause

Resulting Module Behavior

Input Type = RTD
Sensor Type = Temperature or
Ohm

When using a 3-wire RTD device and any of the following exists:

One wire is disconnected from any of the channel’s terminals.

Wires are disconnected from any combination of terminals:

IN_x(+)/A
IN_x(-)/B
IN_x/RTD C

All of the wires are disconnected from the channel.

With the 3-wire RTD device, the wire off condition is detected
within two seconds
of wires getting disconnected.

The following occurs:

Input data for the channel changes to the highest scaled temperature

value associated with the selected sensor type.

The I.Ch[x].Overrange tag is set to 1.

x represents the channel number.

When using a 4-wire RTD device and any of the following exists:

A wire is disconnected from only terminal IN_x(-)/B.

Wires are disconnected from any combination of the channel’s

terminals, that is:
IN_x(+)/A
IN_x(-)/B
IN_x/RTD C
IN_x/RTD D
IMPORTANT: There is one combination exception that does not
apply.

A wire off condition is not detected when wires are
simultaneously disconnected from only IN_x/RTD C and IN_x/
RTD D terminals.

All wires are disconnected from the module.

With the 4-wire RTD device, the wire off condition is detected
within five seconds
of wires getting disconnected.

If bullet 1, the following occurs:

Input data for the channel changes to the lowest scaled temperature

value associated with the selected sensor type.

The I.Ch[x].Underrange tag is set to 1.

x represents the channel number.

If bullets 2 or 3, the following occurs:

Input data for the channel changes to the highest scaled temperature

value associated with the selected sensor type.

The I.Ch[x].Overrange tag is set to 1.

x represents the channel number.

Input Type = Thermocouple
Sensor Type = Temperature

A wire is disconnected from the module.

With the Thermocouple input type, the wire off condition is
detected within two seconds of wires getting disconnected.

Input data for the channel changes to the highest scaled temperature

value associated with the selected sensor type.

The I.Ch[x].Overrange tag is set to 1.

x represents the channel number.

Input Type = Thermocouple
Sensor Type = mV

Input data for the channel changes to the scaled value associated with

the overrange signal value.

The I.Ch[x].Overrange tag is set to 1.

x represents the channel number.

Advertising