Boonton 4530 Peak Power Meter User Manual User Manual

Page 162

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Chapter 5

Boonton Electronics

Making Measurements

4530 Series RF Power Meter

5-20

Typical Example #2: Model 57518 Peak Power Sensor

Measurement conditions:

Source Frequency:

900 MHz

Source Power:

13 dBm (20mW)

Source SWR :

1.12 (reflection coefficient = 0.057) at 900 MHz

AutoCal Source:

External 2530 1GHz Calibrator

AutoCal Temperature: 38C

Current Temperature: 49C

In this example, we will assume that an AutoCal was performed on the sensor earlier in the day, so time and temperature
drift may play a role in the uncertainty.

Step 1: The Instrument Uncertainty figure for the 4530 Series is ±0.20%. Since it has been a while since AutoCal, we’ll
use the published figure.

U

Instrument

= ±0.20%

Step 2: The Calibrator Level Uncertainty for the Model 2530 1GHz external calibrator may be calculated from the
calibrator’s specification. The 0dBm uncertainty is 0.065dB, or 1.51%. To this figure, we must add 0.03dB or 0.69% per
5dB step from 0dBm. 13dBm is 2.6 5dB steps (13/5) away from 0dBm. Any fraction must always be rounded to the next
highest whole number, so we’re 3 steps away.

U

CalLevel

= ±(1.51% + (3

0 0.69%))

= ±3.11%

Step 3: The Calibrator Mismatch Uncertainty is calculated using the formula in the previous section, using the 2530
calibrator’s published figure for

,

CAL

and calculating the value

,

SNSR

from the SWR specification on the 57518’s

datasheet.

,

CAL

= 0.091 (external 2530 calibrator’s reflection coefficient at 1GHz)

,

SNSR

= (1.15 - 1) / (1.15 + 1) = 0.070 (calculate reflection coefficient of 57518, max SWR = 1.15 at 1 GHz)

U

CalMismatch

= ±2

0 ,

CAL

0 ,

SNSR

0 100 %

= ±2

0 0.091 0 0.070 0 100 %

= ±1.27%

Step 4: The Source Mismatch Uncertainty is calculated using the formula in the previous section, using the DUT’s
specification for

,

SRCE

and calculating the value

,

SNSR

from the SWR specification on the 57518’s datasheet.

,

SRCE

= 0.057 (source reflection coefficient at 900 MHz)

,

SNSR

= (1.15 - 1) / (1.15 + 1) = 0.070 (calculate reflection coefficient of 57518, max SWR = 1.15 at 0.9 GHz)

U

SourceMismatch

= ±2

0 ,

SRCE

0 ,

SNSR

0 100 %

= ±2

0 0.057 0 0.070 0 100 %

= ±0.80%

Step 5: The uncertainty caused by Sensor Shaping Error for a 57518 peak sensor is 4% at all levels, from the sensor’s
datasheet. But since we’re measuring at 900MHz, which is very close to the 1GHz AutoCal frequency, we’ll assume
that the frequency-dependent portion of the shaping error becomes very small, and we’ll estimate that 2% remains.

U

ShapingError

= ±2.0 %

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