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4.2 Performance Tests
4 – 5
4.2.5
Integral Gain Accuracy
Use the same connections as for the proportional and derivative gain
accuracy tests, but now add the divider network to form a closed-
loop configuration.
•
Connect the top of the divider to the Output of the SIM960,
connect the center of the divider to the Measure input of the
SIM960, and connect the bottom of the divider to ground. This
ground should be accessed at one of the BNC shields.
•
Reset the SIM960 via the remote interface using
*RST
.
•
Set the
P
(gain) parameter to 8.0 using
GAIN
8.0
.
•
Turn o
ff
the
P
(gain) control using
PCTL
OFF
.
•
Turn on the
I
control using
ICTL
ON
.
•
With the SR785 in swept sine mode and the source output
amplitude at 0.5 V, measure the frequency response at the fre-
quencies below for each
I
setting.
I
(1
/
sec)
frequency
expected response
5
10 Hz
0.6366
100
150 Hz
0.8488
2
×
10
3
3.0 kHz
0.8488
5
×
10
4
100 kHz
0.6366
5
×
10
5
100 kHz
6.366
In each case the frequency response should be within
±
2% of the
programmed gain value.
4.2.6
Ramp Rate Accuracy
To test the ramp rate, wire the SIM960 as a ’follower’ by connecting
the output to the Measure input. Reset the SIM960 using
*RST
. Set
the
P
(gain) to 8.0 using
GAIN
8.0
, and turn o
ff
the
P
control using
PCTL
OFF
. Turn on
I
control using
ICTL
ON
, and set the
I
parameter
to 10
5
using
INTG
1.0E5
.
The Setpoint input should be set to Internal using
INPT
INT
, and
ramping should be enabled using
RAMP
ON
. The Multimeter can
be used to measure the SIM960 output during a ramp. Set up the
multimeter to take 10-20 samples at a known time interval during
a ramp, based on the ramp rate being tested, and the range of the
ramp. Then extract the ramp rate by calculating the average slope of
the ramp data using a least squares fit routine. For each ramp rate
being tested, measure both a positive going ramp and a negative one,
and calculate the average ramp rate magnitude.
SIM960 Analog PID Controller
Содержание SIM960
Страница 4: ...ii Contents SIM960 Analog PID Controller...