Performance Verification
Manual 31470, Rev. E, April 2001
4-7
Setup Parameters
The following setup parameters should be accomplished prior to performing the Power Linearity test:
1.
The 8650A and sensor should be calibrated (see Section 2.3.3. Refer also to the complete
instructions on how to calibrate the sensor in Appendix B of this manual).
2.
The Averaging is set to AUTO by entering the key sequence (see Figure D-2 to D-3):
[Sensor Setup]
select Sensor A or B
[Avg]
set the number of Periods
[Averages] [Auto]
Test Procedure
Extreme care is required in the following procedure since the accuracy requirements are critical to ensure the
most accurate test results.
Power readings are determined using the thermistor power meter in the same general way as given in the
Power Reference Level test. That is, P1 and P2 north Power Meter reading column of the Performance
verification Test Data Sheet tables are calculated each time for the respective values of V
COMP
, V
0
, and
V
1
read on the DVM.
1.
Set the step attenuator to 70 dB. Turn the source power output off, and then zero the 8650A.
(The 8650A is zeroed by pressing [ZERO/CAL] and then following the softkey label instruc-
tions.)
2.
Set the step attenuator to 0 dB after the 8650A has zeroed.
3.
Set the power output of the RF source so that the thermistor power meter indicates 1.00 mW
±
0.025 mV.
4.
Record the calculated power meter reading and the displayed 8650A reading in the correct
columns of the Linearity Data recording sheet on page 4-9.
5.
Set the power output of the RF source so that the thermistor power meter indicates 3.98 mW
±
0.10 mW.
6.
Record the new calculated power meter reading and the new displayed 8650A reading as in
Step 4 above.
7.
Set the power output of the RF Source so that the thermistor power meter indicates 5.01 mW
±
0.13 mW.
8.
Record the new calculated power meter reading and the new displayed 8650A reading as in
Step 4, above.
9.
Repeat using the power meter indications in the Data Recording sheet on page 4-10. Note that
the Step Attenuator is used to generate the remaining 70 dB range of 10 dB steps for a total
range of 80 dB. Repeat Step 1, above, between each 10 dB step shown on the Linearity Data
Recording sheet.
10. Make the calculations indicated on the Linearity Data sheet, and enter the values in the
appropriate blank spaces.
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