Instruction manual
○
C
Copyright 2009 Agilent Technologies
Change 6
Add TAR in 2 m Impedance Measurement Accuracy Test (Page 9-44) as follows.
Measurement:
Capacitance
Cable length:
2 m
Measurement time:
Long
Test signal level:
1 V
Status
PASS
Standard
Frequency [Hz]
Parameter Limits Result
1
Uncertainty
TAR
100 pF 1 k Cp ±0.19 pF
pF
± 0.011 pF
18.59
100 pF 1 k D ±0.0019 ± 0.000073
26.34
100 pF 10 k Cp ±0.51 pF
pF
± 0.013 pF
41.04
100 pF 10 k D ±0.0051 ± 0.00014
37.14
100 pF 20 k Cp ±1.10 pF
pF
± 0.022 pF
51.11
100 pF 20 k D ±0.0110 ± 0.000094
118.00
1 nF 100 Cp ±0.002 nF
nF
± 0.000090 nF
21.86
1 nF 100 D ±0.0020 ± 0.000075
26.94
1 μF 100 Cp ±0.0018 μF
μF
± 0.000077 μF
23.71
1 μF 100 D ±0.0018 ± 0.000047
38.79
1 μF 1 k Cp ±0.0011 μF
μF
± 0.000069 μF
15.53
1 μF 1 k D ±0.0011 ± 0.000033
34.31
1 μF 10 k Cp ±0.0026 μF
μF
± 0.00014μF
19.38
1 μF 10 k D ±0.0026 ± 0.000062
42.27
Note 1: Result = Measurement – Calibrated Value of Standard
Measurement:
Resistance
Cable length:
2 m
Measurement time:
Long
Test signal level:
1 V
Status
PASS
Standard
Frequency [Hz]
Parameter Limits Result
1
Uncertainty
TAR
100 mΩ
100
R ±0.68 mΩ mΩ ± 0.030 mΩ
22.95
100 mΩ
1k
R ±0.72 mΩ mΩ ± 0.034 mΩ
21.35
Note 1: Result = Measurement – Calibrated Value of Standard
Measurement:
DC Resistance
Cable length:
2 m
Measurement time:
Long
Test signal level:
1 V
Status
PASS
Standard Parameter Limits Result
1
Uncertainty TAR
100 mΩ R ±1.13 mΩ mΩ ± 0.030mΩ
38.28
100 kΩ R ±0.87 kΩ mΩ ± 0.014 kΩ
66.20
Note 1: Result = Measurement – Calibrated Value of Standard