FB30 MAIN P01 : call main P01 |
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Netzwerk 1: P01 Initialisation
IF "M01 Init" OR NOT "M00 OB1 FirstCycle" THEN "M01 MW38 SEQ1" := #STEP_BITS := 0; IF "M01 Init" THEN "M01 MD30" := "M01 MD34" := 0; "M01 HomPosRun" := TRUE; "DatOfMod".P01.CrntModule := 101; END_IF; END_IF; |
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Netzwerk 2: P01 SET execute home position
IF "M01 HomPosRun" AND #SET.SSM.S.step0 THEN #SET.SSM.S.steps := TRUE; END_IF; IF NOT "M01 HomPosRun" OR "HMI KEY".SYS.GLB.F8_Stop OR "HMI KEY".P01.GLB.F8_Stop THEN #SET.SSM.S.steps := "M01 HomPosRun" := FALSE; END_IF; #SET.SSM.S.steph := "M01 FLT ModuleStpSR";
#SET(); |
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Netzwerk 3: P01 SEQ1 start, stop, hold
#SEQ1.SSM1.S.steph := NOT "M00 AutoCmpltMa run" AND "M01 SEQ1 Start"; #SEQ1.SSM1.S.steps := NOT "M01 HomPosRun" AND "M01 SEQ1 Start";
IF "M00 CmpltMaOFF Imp" THEN #SEQ1.SSM1.S.stepin := FALSE; END_IF;
#SEQ1(); |
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Netzwerk 4: P01 FLT faults monitoring
#FLT(FLT_MODULE := "M01 FLT ModuleIS"); |
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Netzwerk 5: P01 STEP.SEQ1_Start
IF "M00 CmpltMaRun Imp" AND ("M00 AutoCmpltMa run" XOR "M00 InchCmpltMa run") THEN #STEP.SEQ1_Start := TRUE; RETURN; ELSIF #STEP.SEQ1_Start THEN IF NOT ("M01 HomPosRun" OR "M01 SEQ1 Active") THEN "M01 SEQ1 Start" := TRUE; ELSIF "M01 SEQ1 Active" THEN #MoDa.RunTimeCntr_seq1 := 0; #STEP_BITS := 0; #STEP.SEQ1_Running := TRUE; END_IF; END_IF; |
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Netzwerk 6: P01 STEP.SEQ1_Running
IF #STEP.SEQ1_Running THEN IF "M01 SEQ1 Done" THEN "M01 SEQ1 Start" := FALSE; #STEP_BITS := 0; #STEP.SEQ1_Done := TRUE; RETURN; END_IF; END_IF; |
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Netzwerk 7: P01 STEP.Done
IF #STEP.SEQ1_Done THEN "M01 SEQ1 Done" := FALSE; #STEP_BITS := 0; #STEP.SEQ1_Write := TRUE; // Save actual data "DatOfMod".P01.STS.RunTimeCntr_seq1 := #MoDa.RunTimeCntr_seq1; "DatOfMod".P01.STS.WPC_ok := "M01 SEQ1 DoWP1" AND "M01 SEQ1 WP1 DnOK"; "DatOfMod".P01.STS.CrntWP_ok := "M01 SEQ1 WP1 DnOK" AND NOT "M01 SEQ1 WP1 DnNOK";
"DatOfMod".P01.TrgtModule := 102; // If necessary, changing drive direction to module 103 IF NOT "DatOfMod".P01.STS.CrntWP_ok THEN "DatOfMod".P01.TrgtModule := 103; END_IF; "DatOfPLC".P01 := "DatOfMod".P01; END_IF; |
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Netzwerk 8: P01 STEP.Write
IF #STEP.SEQ1_Write THEN "M01 SEQ1 WP1 DnOK" := "M01 SEQ1 DoWP1" := FALSE; "M01 TCP/IP Wrt start" := TRUE;
IF "M01 TCP/IP Wrt done" THEN "M01 TCP/IP Wrt start" := "M01 TCP/IP Wrt done" := FALSE; #STEP_BITS := 0; RETURN; END_IF; END_IF; |
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Netzwerk 9: P01 Run-Time
"M01 Enabled" := "M00 AutoCmpltMa run" AND NOT "M01 FLT ModuleStpSR"; IF #STEP.SEQ1_Running THEN IF "M00 Imp 10Hz" AND "M01 Enabled" THEN #MoDa.RunTimeCntr_seq1 := #MoDa.RunTimeCntr_seq1 + 1; END_IF; ELSE IF NOT "M01 Active" AND "M00 AutoCmpltMa run" THEN #STEP.SEQ1_Start := TRUE; END_IF; END_IF; |
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Netzwerk 10: P01 SEQ1 active
"M01 Active" := #STEP.SEQ1_Start AND "M01 SEQ1 Active" OR #STEP.SEQ1_Running OR #STEP.SEQ1_Done OR #STEP.SEQ1_Write; |
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Netzwerk 11: P01 Assign signal
IF "M01 FLT ModuleIS" THEN "M01 FLT ModuleStpSR" := true; END_IF; IF "M01 FLT ModuleStpSR" AND NOT "M01 FLT ModuleStpACK" THEN IF "M00 FLT CmpltMaACK Imp" THEN "M01 FLT ModuleStpACK" := true; END_IF; ELSIF NOT "M01 FLT ModuleIS" AND "M01 FLT ModuleStpACK" THEN "M01 FLT ModuleStpSR" := "M01 FLT ModuleStpACK" := FALSE; END_IF; |
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Netzwerk 12: P01 Assign Products counter
IF #ProdCounter.Flag12 AND #ProdCounter.Flag22 THEN #ProdCounter.GoodProducts := #ProdCounter.GoodProducts + 1; #ProdCounter.Flag12 := #ProdCounter.Flag22 := FALSE; ELSIF "M01 SEQ1 Active" AND #SEQ1.SSM1.S.stepact = #SEQ1.SSM1.MAX_STEP - 1 THEN #ProdCounter.Flag12 := TRUE; ELSIF #SEQ1.SSM1.S.stepact = #SEQ1.SSM1.MAX_STEP AND #ProdCounter.Flag12 THEN #ProdCounter.Flag22 := TRUE; END_IF; #ProdCounter.DlyOnReset(IN := #ProdCounter.ResetGoodProducts,PT := t#3000ms); IF #ProdCounter.DlyOnReset.Q THEN #ProdCounter.GoodProducts := #ProdCounter.SetCounter; END_IF; |
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