Claims
- 1. A method of measuring parameters of a device under test (DUT) at a specified frequency and providing a measurement result using a vector network analyzer (VNA), the method comprising the steps of:measuring a magnitude of a first signal reflected from the DUT at the specified frequency; measuring a magnitude of a second signal reflected from the DUT at a frequency greater than the specified frequency; measuring a magnitude of a third signal reflected from the DUT at a frequency less than the specified frequency; providing a median of the magnitude measurements of the first, second and third signals as the measurement result.
- 2. The method of claim 1 further comprising the steps of:measuring a phase for the first, second and third signals; and providing the phase measured for one of the first, second and third signals with the median magnitude as part of the measurement result.
- 3. A method of measuring parameters of a device under test (DUT) at a specified frequency and providing a measurement result using a vector network analyzer (VNA), the method comprising the steps of:measuring a magnitude of each of a number of signals reflected from the DUT including a signal substantially at the specified frequency and signals at frequencies near the specified frequency; providing a median of the magnitude measurements of the number of signals as the measurement result; measuring a phase for the number of signals reflected from the DUT; and providing the phase measured for one of the number of signals with the median magnitude as part of the measurement result, wherein when more than one ofthe number of signals has substantially the same magnitude which is the median magnitude, the phase provided as part of the measurement result is the phase of the one of the number of signals with a frequency closest to the specified frequency.
- 4. A method of measuring parameters of a device under test (DUT) at a specified frequency and providing a measurement result using a vector network analyzer (VNA), the method comprising the steps of:measuring a magnitude of a first signal transmitted through the DUT at the specified frequency; measuring a magnitude of a second signal transmitted through the DUT at a frequency greater than the specified frequency; measuring a magnitude of a third signal transmitted through the DUT at a frequency less than the specified frequency; providing a median of the magnitude measurements of the first, second and third signals as the measurement result.
- 5. The method of claim 4 further comprising the steps of:measuring a phase for the first, second and third signals; and providing the phase measured for one of the first, second and third signals with the median magnitude as part of the measurement result.
- 6. A method of measuring parameters of a device under test (DUT) at a specified frequency and providing a measurement result using a vector network analyzer (VNA), the method comprising the steps of:measuring a magnitude of each of a number of signals transmitted through the DUT including a signal substantially at the specified frequency and signals at frequencies near the specified frequency; providing a median of the magnitude measurements of the number of signals as the measurement result; measuring a phase for the number of signals reflected from the DUT; and providing the phase measured for one of the number of signals with the median magnitude as part of the measurement result, wherein when more than one of the number of signals has substantially the same magnitude which is the median magnitude, the phase provided as part of the measurement result is the phase of the one of the number of signals with a frequency closest to the specified frequency.
CROSS-REFERENCE TO RELATED APPLICATION
This application claims the benefit of U.S. Provisional Application No. 60/131,132, filed Apr. 27, 1999.
US Referenced Citations (4)
| Number |
Name |
Date |
Kind |
|
3783389 |
Gutleber |
Jan 1974 |
A |
|
5072189 |
Openlander |
Dec 1991 |
A |
|
5748000 |
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Provisional Applications (1)
|
Number |
Date |
Country |
|
60/131132 |
Apr 1999 |
US |