Voltage Programming And Measurement Accuracy; Current Programming And Measurement Accuracy - Agilent Technologies 66111A User Manual

Fast transient dc source/mobile communications dc source
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Voltage Programming and Measurement Accuracy

This test verifies the voltage programming, GPIB measurement, and front panel meter functions. Values
read back over the GPIB should be the same as those displayed on the front panel. Measure the dc output
voltage at the output terminals. Make sure that the sense terminals are directly jumpered to the
output terminals on both outputs 1 and 2.
Action
1.
Turn off the dc source and connect a DMM to the output 1 terminals.
2.
Turn on the dc source with no load on output 1. Select output 1 and
set the voltage to 0.01 V and the current to 3 A. Press Output
On/Off to enable the output.
3.
Record the voltage reading on the DMM (Vlo) and the voltage
reading on the front panel display (Vfplo).
4.
Set the output 1 voltage to 15 V.
5.
Record the voltage reading on the DMM (Vhi) and the voltage
reading on the front panel display (Vfphi).
Steps 6-10 apply to Agilent 66309B/D output 2 only
6.
Turn off the dc source and connect a DMM to the output 2 terminals.
7.
Turn on the dc source with no load on output 2. Select output 2 and
set the voltage to 0.01 V and the current to 1.5 A. Press Output
On/Off to enable the output.
8.
Record the voltage reading on the DMM (V2lo) and the voltage
reading on the front panel display (V2fplo).
9.
Set the output 2 voltage to 12 V.
10.
Record the voltage reading on the DMM (V2hi) and the voltage
reading on the front panel display (V2fphi).

Current Programming and Measurement Accuracy

This test verifies the current programming and measurement. Connect the appropriate current monitor
(see table B-1) as shown in figure B-1A.
Current Programming and Measurement (High Range on Agilent 66311B/D, 66309B/D)
Action
1.
Turn off the dc source and connect the DMM and current monitor
to output 1 as shown in figure B-1A. Then turn on the dc source and
select Output 1.
2.
Turn on the dc source, access the Input menu, and set the current
sense detector to DC.
3.
Set the output 1 voltage to 5 V and the current to 0 A. Press
Output On/Off to enable the output.
4.
Divide the voltage drop across the current monitor by its resistance
to convert the value to amperes. Record this value (Ilo).
5.
Set the output 1 current 3 A.
6.
Divide the voltage drop across the current monitor by its resistance
to convert the value to amperes. Record this value (Ihi). Also record
the current reading on the front panel display (Ifphi).
Verification and Calibration - B
Normal Result
Output voltage near 0 V.
Output current near 0 A.
Readings within low voltage limits
(see table B-2, B-3, B-4)
Output voltage near 15 V.
Readings within high voltage limits
(see table B-2, B-3, B-4)
Output voltage near 0 V.
Output current near 0 A.
Readings within low voltage limits
(see table B-4)
Output voltage near 12 V.
Readings within high voltage limits
(see table B-4)
Normal Result
CURR:DET DC
Output current near 0 A.
Reading within low current limits
(see table B-2, B-3, B-4)
Readings within high current limits
(see table B-2, B-3, B-4)
149

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