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AD8318ACPZ-R2 データシート(PDF) 17 Page - Analog Devices

部品番号 AD8318ACPZ-R2
部品情報  1 MHz to 8 GHz, 70 dB Logarithmic Detector/Controller
PDF  24 Pages
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メーカー  AD [Analog Devices]
ホームページ  http://www.analog.com
Logo AD - Analog Devices

AD8318ACPZ-R2 データシート(HTML) 17 Page - Analog Devices

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Data Sheet
AD8318
USING THE AD8318
analog.com
Rev. E | 17 of 24
VARIATION IN TEMPERATURE DRIFT FROM
DEVICE TO DEVICE
Figure 36 shows a plot of output voltage and error for multiple
AD8318 devices measured at 5.8 GHz. The concentration of black
error plots represents the performance of the population at 25°C
(slope and intercept are calculated for each device). The red and
blue curves indicate the measured behavior of a population of
devices over temperature. This suggests a range on the drift (from
device to device) of 1.2 dB.
Figure 36. Output Voltage and Error vs. Temperature (+25°C, −40°C, and
+85°C) of a Population of Devices Measured at 5.8 GHz
TEMPERATURE DRIFT AT DIFFERENT
TEMPERATURES
Figure 37 shows the log slope and error over temperature for a 5.8
GHz input signal. Error due to drift over temperature consistently re-
mains within ±0.5 dB, and only begins to exceed this limit when the
ambient temperature drops below −20°C. When using a reduced
temperature range, higher measurement accuracy is achievable for
all frequencies.
Figure 37. Typical Drift at 5.8 GHz for Various Temperatures
SETTING THE OUTPUT SLOPE IN
MEASUREMENT MODE
To operate in measurement mode, VOUT is connected to VSET.
This yields the typical logarithmic slope of −25 mV/dB. The output
swing corresponding to the specified input range is then approxi-
mately 0.5 V to 2.1 V. The slope and output swing can be increased
by placing a resistor divider between VOUT and VSET (that is,
one resistor from VOUT to VSET and one resistor from VSET to
common).
As an example, if two equal resistors, such as 10 kΩ/10 kΩ, are
used, the slope doubles to approximately −50 mV/dB. The input
impedance of VSET is approximately 500 kΩ. Keep slope setting
resistors below ~50 kΩ to prevent this input impedance from affect-
ing the resulting slope. When increasing the slope, the new output
voltage range cannot exceed the output voltage swing capability
of the output stage. Refer to the Measurement Mode section for
further details.
Figure 38. Increasing the Slope



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