AD8032 Analog Devices, AD8032 Datasheet - Page 17

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AD8032

Manufacturer Part Number
AD8032
Description
Manufacturer
Analog Devices
Datasheet

Specifications of AD8032

-3db Bandwidth
80MHz
Slew Rate
35V/µs
Vos
1mV
Ib
450nA
# Opamps Per Pkg
2
Input Noise (nv/rthz)
15nV/rtHz
Vcc-vee
2.7V to 12V
Isy Per Amplifier
1.6mA
Packages
DIP,SOIC,SOP

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Figure 50 and Figure 51 show the output signal swing and
frequency spectrum at 500 kHz. At this frequency, the output
signal (at V
(50 mV to 2 V), has a THD of −68 dB (SFDR = −77 dB).
Figure 52 and Figure 53 show the output signal swing and
frequency spectrum at 2 MHz. As expected, there is some
degradation in signal quality at the higher frequency. When the
output signal has a peak-to-peak swing of 1.45 V (swinging
from 50 mV to 1.5 V), the THD is −55 dB (SFDR = −60 dB).
Figure 50. Output Signal Swing of Low Distortion Line Driver at 500 kHz
50mV
+9dBm
2V
Figure 51. THD of Low Distortion Line Driver at 500 kHz
100
0%
90
10
START 0Hz
OUT
0.5V
), which has a peak-to-peak swing of 1.95 V
STOP 5MHz
1µs
Rev. D | Page 17 of 20
This circuit could also be used to drive the analog input of a
single-supply, high speed ADC whose input voltage range is
referenced to ground (for example, 0 V to 2 V or 0 V to 4 V). In
this case, a back termination resistor is not necessary (assuming
a short physical distance from transistor to ADC); therefore, the
emitter of the external transistor would be connected directly to
the ADC input. The available output voltage swing of the circuit
would therefore be doubled.
Figure 52. Output Signal Swing of Low Distortion Line Driver at 2 MHz
50mV
+7dBm
1.5V
100
0%
Figure 53. THD of Low Distortion Line Driver at 2 MHz
90
10
START 0Hz
0.2V
AD8031/AD8032
STOP 20MHz
200ns

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