ABB PM511V08 3BSE011180R1 system processing module
Technical data of product parameters
In the first example, an analog PM511V08 3BSE011180R1 combination module (1746-NIO4I) is in
slot 1 of the chassis. A pressure transducer is connected to input 0 and we
want to read the value in engineering units. The pressure transducer measures
pressures from 0 to 1000 psi and provides a 0 to 10V signal to the analog
module. For a 0 to 10V signal, the analog module provides a range between 0
to 32,767. The following program rung places a number between 0 and 1000
into N7:20 based on the input signal coming from the pressure transducer into PM511V08 3BSE011180R1
the analog moduleIn the second example, an analog I/O combination module (1746-NIO4I) is
in slot 1 of the chassis. We want to control the proportional valve connected
to output 0. The valve takes a
4 to 20 mA signal to control how far it opens (0 to 100%). (Assume that
additional logic is present in the program that calculates how far to open the
valve in percent and places a number between 0 and 100 into N7:21.) The
analog module provides a 4 to 20 mA output signal for a number between
6242 to 31,208. The following program rung directs an analog output to
provide a 4 to 20 mA signal to the proportional valve (N7:21), based on a
number between 0 and 100.When the rung state is false, the current time is not updated and the
destination value is not calculated. When the rung state sees another false to
true change the current time is determined from the last updated position. An
accuracy of +/- one unit (1 second or 0.01 seconds depending on ramp) or
one scan, whichever is larger, can be expected for a false-to-true or
true-to-false rung transition.
The Ramp instruction is retentive. If a Ramp instruction is executing when a
power cycle occurs, the instruction continues to operate starting with the last
updated position. The accuracy is limited to one unit or one scan, whichever is PM511V08 3BSE011180R1
larger. Ramp instructions can be cascaded.Use the ABS instruction to calculate the absolute value of the Source and place
the result in the Destination. This instruction supports integer and floating
point values. Use this instruction with SLC 5/03 (OS302), SLC 5/04 (OS401),
and SLC 5/05 processors.
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