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S7-300 I/O Analog -- Setting up and parameterizing hardware -- Initializing and parameterizing modules
How do you standardize and destandardize analog values with STEP 7 (TIA Portal)?
Which modules support channel-granular redundancy?
How can you set or change the resolution of the analog module SM331 (6ES7331-7K..)?
How and for which analog measurements can you use the function FC105 "SCALE" to convert the integer values (INT) into real number values?
What are the differences in the settings for thermocoupler measurements (TC-I/IL/E/EL) in the analog input modules 6ES7331-7KF02-0AB0 and 6ES7331-7KB02-0AB0?
How can you standardize and destandardize analog values with STEP 7 V5.5?
What should you watch out when parameterizing the analog input module 6ES7331-7PF01-0AB0 for Ni1000 thermistors?
What is the maximum interference frequency you can parameterize for the analog input module SM 331 (6ES7331-7NF00-0AB0)?
What should you watch out for with regard to open-circuit monitoring for SM 331 with order numbers 6ES7331-7SF00-0AB0, 6ES7331-7PF10-0AB0 and 6ES7331-7PF11-0AB0?
What happens with substitute values of analog modules and digital modules when power fails in the CPU?
What should you watch out when parameterizing the analog input module 6ES7331-7PF01-0AB0 for Ni1000 thermistors?
Part number:

Description:
Compared with the predecessor module SM331-7PF00-0AB0, a number of characteristics have been added to the module SM331-7PF01-0AB0, e.g.:

  • LG Ni 1000 Standard
  • LG Ni 1000 Climate

In the LG Ni 1000 (Standard and Climate) parameterization, the SM331-7PF01-0AB0 now provides the following temperature coefficients:

  • 0,00618
  • 0,00672
  • 0.0050 (Landis&Staefa)

This results in the following setting options:

  • Ni 1000 in compliance with the old DIN corresponds to the parameterization of LG Ni 1000 with temperature coefficients 0.00618 and 0.00672
    (this is compatible with setting Ni 1000 with temperature coefficients 0.00618 and 0.00672 in the SM331-7PF00-0AB0)
  • Ni 1000 Landis&Staefa corresponds to LG Ni 1000 with temperature coefficient 0.0050

 Entry ID:23219472   Date:2006-05-09 
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