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U1161A Fiches technique(PDF) 3 Page - Agilent(Hewlett-Packard)

No de pièce U1161A
Description  Agilent U1240 Series Handheld Handheld
Download  9 Pages
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Fabricant  HP [Agilent(Hewlett-Packard)]
Site Internet  http://www.home.agilent.com
Logo HP - Agilent(Hewlett-Packard)

U1161A Fiches technique(HTML) 3 Page - Agilent(Hewlett-Packard)

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FUNCTION
RANGE
RESOLUTION
TEST CURRENT/
BURDEN VOLTAGE
ACCURACY ± (% of Reading + No. of Least Significant Digit)
U1241A/U1241B
U1242A/U1242B
VOLTAGE[1]
1000.0 mV
0.1 mV
0.09% + 5
10.000 V
0.001 V
0.09% + 2
100.00 V
0.01 V
1000.0 V
0.1 V
0.15% + 5
CURRENT
1000.0 µA
0.1 µA
< 0.06 V (50 W)
0.1% + 3
10000 µA
1 µA
< 0.55 V (50 W)
0.1% + 3
100.00 mA
0.01 mA
< 0.18 V (0.5 W)
0.2% + 3
440.0 mA[2]
0.1 mA
< 0.8 V (0.5 W)
0.5% + 3
10.000 A[3]
0.001 A
< 0.4 V (0.01 W)
0.6% + 5
RESISTANCE[4]
1000.0 W[5]
0.1 W
0.5 mA
0.3% + 3
10.000 kW[5]
0.001 kW
50 µA
100.00 kW
0.01 kW
4.91 µA
1000.0 kW
0.1 kW
447 nA
10.000 MW
0.001 MW
112 nA
0.8% + 3
100.00 MW[6]
0.01 MW
112 nA
1.5% + 3
DIODE TEST[7]
1 V
0.001 V
approximately 0.5 mA
0.3% + 2
DC SPECIFICATIONS
[1] Input impedance: 10 MW (nominal).
[2] Current can be measured up to 440 mA continuously. An additional 0.2% needs to be added to the specified accuracy if the signal measured is in the range of
440 mA to 1100 mA for 30 seconds maximum. After measuring a current of > 440 mA, leave the meter to cool down for twice the measuring time used before
applying a low current measurement.
[3] Current can be measured up to 10 A continuously with a maximum operating temperature of 50 °C. An additional 0.3% needs to be added to the specified accuracy
if the signal measured is in the range of 10 A to 19.999 A for 15 seconds maximum. After measuring a current of > 10 A, leave the meter to cool down for 60 seconds
before applying a low current measurement.
[4] The maximum open voltage is < 2.8 V. For instant continuity, the built-in buzzer sounds when resistance is < 10.0 W.
[5] The accuracy of 1 kW and 10 kW is specified after Null function, which is used to substrate the test lead resistance and the thermal effect.
[6] For the range of 100 MW, the R.H. is specified for < 60%. The temperature coefficient will be 0.15 times of specified accuracy as > 50 MW.
[7] Overload protection: 1000 V RMS for circuits < 0.3 A short circuit current. The built-in buzzer sounds when reading is approximately below 50 mV and audible single
tone for normal forward biased diode or semiconductor junction as 0.3 V ≤ Reading ≤ 0.8 V.
[8] Input impedance: 10 MW (nominal) in parallel with <100 pF, with overload protection of 1000 V RMS
[9] Crest factor ≤ 3. For non-sinusoidal waveforms with crest factor up to 3, add 2% reading + 2% full scale typical.
[10] Current can be measured from 50 mA to 440 mA continuously. An additional 0.2% needs to be added to the specified accuracy if the signal measured is in the range of
440 mA to 1100 mA for 30 seconds maximum. After measuring a current of > 440 mA, leave the meter to cool down for twice the measuring time used before
application of low current measurement.
[11] Current can be measured from 0.5 A up to 10 A continuously with a maximum operating temperature of 50 °C. An additional 0.3% needs to be added to the
specified accuracy if the signal measured is in the range of 10 A to 19.999 A for 15 seconds maximum. After measuring a current of >10 A, leave the meter to cool
down for 60 seconds before applying a low current measurement.
[12] AC voltage and AC current specifications are AC coupled. True R.M.S. Measurement is valid from 5 % of range to 100 % of range.
AC SPECIFICATIONS
FUNCTION
RANGE
RESOLUTION
TEST CURRENT/
BURDEN VOLTAGE
ACCURACY ± (% of Reading + No. of Least Significant Digit)
40 Hz to 500 Hz
500 Hz to 1 kHz
1 kHz to 2 kHz
AC VOLTAGE[8][12]
TRUE RMS
1000.0 mV
0.1 mV
1% + 5
2% + 5
10.000 V
0.001 V
1% + 5
2% + 5
100.00 V
0.01 V
1000.0 V
0.1 V
AC Current[9][12]
TRUE RMS
1000.0 µA
0.1 µA
< 0.06 V (50 W)
1% + 5
1.5% + 5
10000 µA
1 µA
< 0.55 V (50 W)
100.00 mA
0.01 mA
< 0.18 V (0.5 W)
440.0 mA[10]
0.1 mA
< 0.8 V (0.5 W)
10.000 A[11]
0.001 A
< 0.4 V (0.01 W)


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