Siemens Module B3 ユーザーズマニュアル

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Automation and Drives - SCE 
 
 
 
 
T I A  Training Document 
Page 63 of 64 
  Module 
 
Parameter 
Data Type  Value Range 
Default 
Description 
LMN_HLM REAL  LMN_LLM... 
+100.0 % or 
phys. variable 2 
100.0 
MANIPULATED VALUE HIGH LIMIT. The 
manipulated value is always limited to a high 
and a low limit.  "Manipulated value high limit" 
indicates the high limit. 
LMN_LLM REAL 
-100.0... 
LMN_HLM % 
phys. variable 2 
0.0 
MANIPULATED VALUE LOW LIMIT.  The 
manipulated value is always limited to a high 
and a low limit.  "Manipulated value low limit" 
indicates the low limit. 
PV_FAC 
REAL 
 
1.0 
PROCESS VARIABLE FACTOR / actual 
value factor. The input  "Actual value factor" is 
multiplied with the actual value.  The input is 
used for adjusting the actual value range. 
PV_OFF 
REAL 
 
0.0 
PROCESS VARIABLE OFFSET / Actual 
value offset. The input "Actual value offset" is 
added to the actual value. The input is used 
for adjusting the actual value range. 
LMN_FAC 
REAL 
 
1.0 
MANIPULATED VALUE FACTOR The input 
"Manipulated value factor" is multiplied with 
the manipulated value. The input is used for 
adjusting the manipulated value range. 
LMN_OFF 
REAL 
 
0.0 
MANIPULATED VALUE OFFSET. The input 
"Manipulated value offset" is added to the 
manipulated value. The input is used for 
adjusting the manipulated value range. 
I_ITLVAL REAL 
-100.0...+100.0% 
or 
phys. variable 2 
0.0 
INITIALIZATION VALUE OF THE INTEGRAL 
ACTION / Initialization value for the I-
component.  The output of the integrator can 
be set at the input I_ITL_ON.  The 
initialization value is located at the input 
"Initialization value for I-component". 
DISV REAL 
-100.0...+100.0% 
or 
phys. variable 2 
0.0 
DISTURBANCE VARIABLE. Feedforward 
control  is wired at the input "Disturbance 
variable". 
 
Preface     Fundamentals     Discontinuous Action Controller     Controller Block (S)FB41     Setting the System     Appendix 
B3 
Issued: 02/2008                                                                                                                                     Control Engineering with STEP 7