Agilent Technologies 6010A User Manual page 12

Dc autoranging power supply
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DC Output: Voltage, current and power spans indicate range
over which output may be varied using front panel controls.
Load Effect (Load Regulation) Voltage load effect is given for a load
current change equal to the current rating of the supply. Current load
effect is given for a load voltage change equal to the voltage rating of the
supply.
Source Effect (Line Regulation): Given for a change within the rated
line voltage for any output within the rated output voltage, current and
power of the supply
PARD (Ripple and Noise): Measured at any line voltage and under any
load condition within rating (rms 10 Hz to 10 Mhz/p-p 10 Hz to 20 MHz)
Load Effect Transient Recovery: Maximum time required for output
voltage to recover within the specified band around the nominal output
voltage following a step change (10% or 50%) in output current while
operating in the constant voltage mode
Agilent Technologies Model
Programming: Given for control of the
output over the GP-IB or with front panel controls
Front Panel Voltmeter:
Front Panel Ammeter:
Display OVP:
Maximum AC Input Current: +6% -13% (48-63) Hz
Typical input power at rated output power: (see point P
Temperature Coefficient: Output change per degree Celsius change
in ambient following 30 minute warm-up.
Drift (Stability): Change in output (dc to 20 Hz) over 8-hour internal
under constant line, load, and ambient following 30-minute warm-up
Programming Response Time: The maximum time required
to change from zero volts to full scale voltage or from full scale
voltage to 2 volts (6 volts for Agilent 6028A and 5 volts for Agilent 6015A)
and settle within the specified band. Full load is defined as the
resistance equal to Vp1/Ip1. Light load is as specified
Overvoltage Protection: Trip voltage adjustable via front
panel control using the Display OVP function
Monitoring Output Accuracy: 0 to 5 V signals from rear panel terminals that
indicate 0 to full scale output voltage and current. Output impedance = 10K .
Remote Analog Programming Accuracy
Reverse Voltage Protection: Maximum continuous current caused by reverse
voltage impressed across the output terminals.
12
General Information
Table 1-1 Performance Specifications
Table 1-2. Supplemental Characteristics
on Figure 1-1)
2
Resistance (0 to 4K)
Voltage (0 to 5V)
6010A
Volts
0-200 V
Amps
0-17 A
Maximum Power
1000-1200 W
Voltage
0.01% + 5 mV
Current
0.01% + 10 mA
Voltage
0.01% + 5 mV
Current
0.01% + 5 mA
Voltage
22 mV/50 mV
Current
15 mA/
Time 10%/50%
2 ms/3 ms
Level 10%/50%
150 mV/500mV
6010A
Voltage Resolution
70 mV
Current Resolution
7 mA
Range
20 V, 200 V
Resolution
100 mV, 1 V
Accuracy
0.65% + 3.5 counts,
0.65% + 3.5 counts
80 ppm + 1 mV,
T.C. (per/ C)
80 ppm + 1 mV
Range
20 A
Resolution
10 mA
Accuracy
0.6% + 4 counts
100 ppm + 2 mA
T.C. (per/ C)
Range
2000 V
Resolution
1 V
Accuracy
2.5% + 1.1 V
200 ppm + 3 mV
T.C. (per/ C)
100 Vac (Opt.100)
24
120 Vac (Std.)
24 A
220 Vac (Opt.220)
15 A
240 Vac (Opt.240)
14 A
1435 W
Voltage
80 ppm + 15 mV
Current
100 ppm + 4 mA
Voltage
0.03 % + 17 mV
Current
0.03% + 5 mA
Settling
300 mV
Band
Up
Full Load
300 ms (0.4 )
No Load
300 ms
Down
Full Load
500 ms (0.4 )
Light Load
3.5 s (open )
Range
0-214 V
Resolution
600 mV
Accuracy
0.3% + 1.25 V
Voltage
0.3% + 60 mV
Current
0.36% + 10 mA
Voltage
0.5% + 35 mV
Current
1% + 800 mA
Voltage
0.25% + 35 mA
Current
0.4% + 800 mA
Ac power on
17 A
Ac power off
7 A
6011A
0-20 V
0-120 A
840-1072 W
0.01% + 3 mV
0.01% + 15 mA
0.01% + 2 mV
0.01% + 25 mA
2
8 mV/50 mV
1, 4
1,4
120 mA/
2 ms/3 ms
100 mV/300mV
6011A
5 mV
40 mA
20 V, 200 V
10 mV, 100 mV
0.6% + 2 counts,
0.8% + 2 counts
80 ppm + 1mV,
100ppm + 1 mV
200 A
100 mA
0.7% + 300 mA
100 ppm + 3 mA
200 V
100 mV
2.5% + 625 mV
150 ppm + 3 mV
24
24 A
15 A
14 A
1375 W
100 ppm + 2 mV
180 ppm + 15 mA
0.03% + 3 mV
0.1% + 25 mA
30 mV
300 ms (40 )
300 ms
600 ms
1.5 s (50 )
0-22 V
100 mV
0.25% + 625 mV
0.25% + 2 mV
0.3% + 35 mA
0.5% + 215 mV
3
1% + 170 mA
0.3% + 215 mV
3
0.36% + 170 mA
50 A
20 A
4

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