The predicted operational values can be used in place of a manual reading
or in a place where it’s not possible to deploy a traditional sensor or instrument.
Operations teams can use the predictions to improve quality, increase yield,
increase asset utilization and home in on specific learnings for their operational excellence journey.
A modern control system is more than its name implies. It delivers the fast system performance,
high capacity and optimized productivity that you need from a control system today.
Our ControlLogix® and GuardLogix® 5580 family of controllers use the Studio 5000® design
environment as the standard framework that optimizes productivity, reducing time to commission.
This framework manages Integrated Motion over EtherNet/IP for high-speed
motion applications and SIL2/PLd and SIL3/PLe safety solutions.

The I/O configuration portion of the RSLogix 5000® programming software generates the
configuration data for each I/O module in the control system,
whether the module is in a local or remote chassis.
A remote chassis, also known as networked, contains the I/O module but not the module’s owner-controller.
A remote chassis can be connected to the controller via a scheduled connection on the ControlNet network or an EtherNet/IP network.
RSLogix 5000 configuration data is transferred to the controller during the program
download and later transferred to the appropriate I/O modules.
I/O modules in the local chassis, and modules in a remote chassis connected via the EtherNet/IP network,
or unscheduled connections on the ControlNet network, are ready to run as soon as the configuration data has been downloaded.
RTD Error
Module error on the 1756-IR6I module is defined in ohms and is calculated across
the entire input range that is selected, not the available range of a sensor used with the module.
For example, if the 1…487 input range is used, the module error is calculated across 507 (actual range = 0.86…507.86 ).
The error in ohms translates to temperature, but that translation varies because the
relationship is non-linear. The most effective way to check a 1756-IR6I module
error is to calculate the error in ohms and use that value in a linearization table to check the temperatureerror.
If the module is calibrated at operating temperature and the operating temperature remains relatively stable,
calibration accuracy is better than 0.1% of the full range for the first year after calibration.
This 0.1% value is a worst case value. In other words, with the 1…487input range that is selected,
the worst case module error is 0.507.
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