AD602AR-REEL Analog Devices Inc, AD602AR-REEL Datasheet - Page 15

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AD602AR-REEL

Manufacturer Part Number
AD602AR-REEL
Description
IC AMP VGA DUAL LN 50MA 16SOIC
Manufacturer
Analog Devices Inc
Series
X-AMP®r
Datasheet

Specifications of AD602AR-REEL

Rohs Status
RoHS non-compliant
Amplifier Type
Variable Gain
Number Of Circuits
2
Slew Rate
275 V/µs
-3db Bandwidth
35MHz
Current - Input Bias
350nA
Current - Supply
11mA
Current - Output / Channel
50mA
Voltage - Supply, Single/dual (±)
±4.75 V ~ 5.25 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
16-SOIC (0.300", 7.5mm Width)
Output Type
-
Gain Bandwidth Product
-
Voltage - Input Offset
-
APPLICATIONS
The full potential of any high performance amplifier can only
be realized by careful attention to details in its applications. The
following pages describe fully tested circuits in which many
such details have already been considered. However, as is always
true of high accuracy, high speed analog circuits, the schematic
is only part of the story; this is no less true for the AD600/
AD602. Appropriate choices in the overall board layout and the
type and placement of power supply decoupling components
are very important. As explained previously, the input grounds
A1LO and A2LO must use the shortest possible connections.
The following circuits show examples of time-gain control for
ultrasound and sonar, methods for increasing the output drive,
and AGC amplifiers for audio and RF/IF signal processing
using both peak and rms detectors. These circuits also illustrate
methods of cascading X-AMPs for either maintaining the
optimal SNR or maximizing the accuracy of the gain-control
voltage for use in signal measurement. These AGC circuits can
be modified for use as voltage-controlled amplifiers in sonar
and ultrasound applications by removing the detector and
substituting a DAC or other voltage source for supplying the
control voltage.
TIME-GAIN CONTROL (TGC) AND TIME-VARIABLE
GAIN (TVG)
Ultrasound and sonar systems share a similar requirement: both
need to provide an exponential increase in gain in response to a
linear control voltage, that is, a gain control that is linear in dB.
Figure 33 shows the AD600/AD602 configured for a control
voltage ramp starting at −625 mV and ending at +625 mV for a
gain-control range of 40 dB. The polarity of the gain-control
voltage can be reversed, and the control voltage inputs C1HI
and C1LO can be reversed to achieve the same effect. The gain-
control voltage can be supplied by a voltage-output DAC, such
as the AD7244, which contains two complete DACs, operates
from ±5 V supplies, has an internal reference of +3 V, and
provides ±3 V of output swing. As such, it is well suited for use
with the AD600/AD602, needing only a few resistors to scale
the output voltage of the DACs to the levels needed by the
AD600/AD602.
Rev. E | Page 15 of 28
INCREASING OUTPUT DRIVE
The AD600/AD602’s output stage has limited capability for
negative-load driving capability. For driving loads less than
500 Ω, the load drive can be increased by approximately 5 mA
by connecting a 1 kΩ pull-down resistor from the output to the
negative supply (see Figure 34).
DRIVING CAPACITIVE LOADS
For driving capacitive loads of greater than 5 pF, insert a 10 Ω
resistor between the output and the load. This lowers the
possibility of oscillation.
CONTROL VOLTAGE,
Figure 33. The Simplest Application of the X-AMP Is as a TGC or TVG Amplifier
V
+625mV
IN
Figure 34. Adding a 1 kΩ Pull-Down Resistor Increases the X-AMP’s Output
in Ultrasound or Sonar. Only the A1 connections are shown for simplicity.
Drive by About 5 mA. Only the A1 connections are shown for simplicity.
0dB
V
G
–625mV
C1LO
A1LO
A2LO
C2LO
GAT1
GAT2
40dB
A1HI
A2HI
A1
GAIN
1
2
3
4
5
6
7
8
+
+
GAIN-CONTROL
AD600/
AD602
VOLTAGE
C1LO
A1LO
A2LO
C2LO
GAT1
GAT2
A1HI
A2HI
A1
A2
REF
1
2
3
4
5
6
7
8
+
+
16
15
14
13
12
11
10
VOLTAGE-OUTPUT
9
AD600 OR
AD602
A2CM
C1HI
A1CM
A1OP
VPOS
A2OP
C2HI
VNEG
DAC
A1
A2
REF
+5V
AD600/AD602
16
15
14
13
12
11
10
9
A2CM
C1HI
A1CM
A1OP
VPOS
VNEG
A2OP
C2HI
1kΩ
–5V
V
PULL-DOWN
G
RESISTOR
ADDED
–5V
+5V

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