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ohms.mc
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ohms.mc
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MET/CAL Procedure
=============================================================================
INSTRUMENT: Resistance in
INSTRUMENT: Resistance out
DATE: 2024-04-18 10:01:33
AUTHOR: Dan Erlandsen
REVISION:
ADJUSTMENT THRESHOLD: 70%
NUMBER OF TESTS: 15
NUMBER OF LINES: 105
CONFIGURATION: Fluke 5550A
CONFIGURATION: Fluke 8558A
=============================================================================
STEP FSC RANGE NOMINAL TOLERANCE MOD1 MOD2 3 4 CON
1.001 JMPT 1.003 Resistance in
1.002 JMPT 8.003 Resistance out
1.003 LABEL Ohms_in
1.004 TARGET -p
1.005 IF (M[5] == -9)
1.006 VSET TDESC = [MEM1] nOhm
1.007 5550A +Resistance = [MEM1] nohm
1.008 MEMI Skriv inn måleresultat i nano Ohms
1.009 MEMCX 30 nOhms TOL
2.001 ELSEIF (M[5] == -6)
2.002 VSET TDESC = [MEM1] µOhm
2.003 5550A +Resistance = [MEM1] µohm
2.004 MEMI Skriv inn måleresultat i mikro Ohms
2.005 MEMCX 30 µOhms TOL
3.001 ELSEIF (M[5] == -3)
3.002 VSET TDESC = [MEM1] mOhm
3.003 5550A +Resistance = [MEM1] mohm
3.004 MEMI Skriv inn måleresultat i milli Ohms
3.005 MEMCX 30 mOhms TOL
4.001 ELSEIF (M[5] == 0)
4.002 VSET TDESC = [MEM1] Ohm
4.003 5550A +Resistance = [MEM1] ohm
4.004 MEMI Skriv inn måleresultat i Ohms
4.005 MEMCX 30 Ohms TOL
5.001 ELSEIF (M[5] == 3)
5.002 VSET TDESC = [MEM1] kOhm
5.003 5550A +Resistance = [MEM1] kohm
5.004 MEMI Skriv inn måleresultat i kilo Ohms
5.005 MEMCX 30 kOhms TOL
6.001 ELSEIF (M[5] == 6)
6.002 VSET TDESC = [MEM1] MOhm
6.003 5550A +Resistance = [MEM1] Mohm
6.004 MEMI Skriv inn måleresultat i mega Ohms
6.005 MEMCX 30 MOhms TOL
7.001 ELSEIF (M[5] == 9)
7.002 VSET TDESC = [MEM1] GOhm
7.003 5550A +Resistance = [MEM1] Gohm
7.004 MEMI Skriv inn måleresultat i giga Ohms
7.005 MEMCX 30 GOhms TOL
8.001 ENDIF
8.002 END
8.003 LABEL Ohms_out
8.004 TARGET -p
8.005 IF (M[5] == -9)
8.006 VSET TDESC = [MEM1] nOhm
8.007 8558A +Resistance = [MEM1] nOhms; Setup; LowCurrent = On
8.008 DISP Set UUT til [MEM1] nOhm Source
8.009 8558A +Resistance = [MEM1] nOhms; Read; LowCurrent = On
8.010 MEMCX 30 nOhms TOL
9.001 ELSEIF (M[5] == -6)
9.002 VSET TDESC = [MEM1] µOhm
9.003 8558A +Resistance = [MEM1] µOhms; LowCurrent = On; Setup
9.004 DISP Set UUT til [MEM1] µOhm Source
9.005 8558A +Resistance = [MEM1] µOhms; Read; LowCurrent = On
9.006 MEMCX 30 µOhms TOL
10.001 ELSEIF (M[5] == -3)
10.002 VSET TDESC = [MEM1]mOhm
10.003 8558A +Resistance = [MEM1] mOhms; LowCurrent = On; Setup
10.004 DISP Set UUT til [MEM1] mOhm Source
10.005 8558A +Resistance = [MEM1] mOhms; Read; LowCurrent = On
10.006 MEMCX 30 mOhms TOL
11.001 ELSEIF (M[5] == 0)
11.002 VSET TDESC = [MEM1] Ohm
11.003 8558A +Resistance = [MEM1] Ohms; Setup; LowCurrent = On
11.004 DISP Set UUT til [MEM1] Ohm Source
11.005 8558A +Resistance = [MEM1] Ohms; Read; LowCurrent = On
11.006 MEMCX 30 Ohms TOL
12.001 ELSEIF (M[5] == 3)
12.002 VSET TDESC = [MEM1] kOhm
12.003 8558A +Resistance = [MEM1] kOhms; Setup; LowCurrent = On
12.004 DISP Set UUT til [MEM1] kOhm Source
12.005 8558A +Resistance = [MEM1] kOhms; Read; LowCurrent = On
12.006 MEMCX 30 kOhms TOL
13.001 ELSEIF (M[5] == 6)
13.002 VSET TDESC = [MEM1] Mohm
13.003 8558A +Resistance = [MEM1] MOhms; Setup; LowCurrent = On
13.004 DISP Set UUT til [MEM1] MOhm Source
13.005 8558A +Resistance = [MEM1] MOhms; Read; LowCurrent = On
13.006 MEMCX 30 MOhms TOL
14.001 ELSEIF (M[5] == 9)
14.002 VSET TDESC = [MEM1] Gohm
14.003 8558A +Resistance = [MEM1] GOhms; Setup; LowCurrent = On
14.004 DISP Set UUT til [MEM1] GOhm Source
14.005 8558A +Resistance = [MEM1] GOhms; Read; LowCurrent = On
14.006 MEMCX 30 GOhms TOL
15.001 ENDIF
15.002 END