AD604ARZ Analog Devices Inc, AD604ARZ Datasheet - Page 14

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AD604ARZ

Manufacturer Part Number
AD604ARZ
Description
IC AMP VGA DUAL ULN 40MA 24SOIC
Manufacturer
Analog Devices Inc
Series
X-AMP®r
Type
Var Gain Ampr
Datasheet

Specifications of AD604ARZ

Amplifier Type
Variable Gain
Number Of Circuits
2
Slew Rate
170 V/µs
-3db Bandwidth
40MHz
Current - Input Bias
400nA
Current - Supply
32mA
Current - Output / Channel
40mA
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
24-SOIC (7.5mm Width)
No. Of Amplifiers
2
Bandwidth
40MHz
Gain Accuracy
3dB
No. Of Channels
1
Amplifier Case Style
SOIC
No. Of Pins
24
Operating Temperature Range
-40°C To +85°C
Svhc
No SVHC (18-Jun-2010)
Package
RoHS Compliant
Number Of Channels
2
Number Of Elements
6
Power Supply Requirement
Dual
Common Mode Rejection Ratio
20dB
Voltage Gain Db
54dB
Input Resistance
0.3@±5VMohm
Input Bias Current
27000@±5VnA
Single Supply Voltage (typ)
Not RequiredV
Dual Supply Voltage (typ)
±5V
Power Dissipation
1.7W
Rail/rail I/o Type
No
Single Supply Voltage (min)
Not RequiredV
Single Supply Voltage (max)
Not RequiredV
Operating Temp Range
-40C to 85C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
24
Package Type
SOIC W
Supply Voltage Range
± 5V
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
AD604-EVALZ - BOARD EVAL FOR AD604 AMP
Output Type
-
Voltage - Supply, Single/dual (±)
-
Gain Bandwidth Product
-
Voltage - Input Offset
-
Lead Free Status / Rohs Status
Compliant

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Part Number
Manufacturer
Quantity
Price
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AD604ARZ
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AD604
PREAMPLIFIER
The input capability of the following single-supply DSX (2.5 ± 2 V
for a +5 V supply) limits the maximum input voltage of the
preamplifier to ±400 mV for the 14 dB gain configuration or
±200 mV for the 20 dB gain configuration.
The preamplifier gain can be programmed to 14 dB or 20 dB by
either shorting the FBK1 node to PAO1 (14 dB) or by leaving
the FBK1 node open (20 dB). These two gain settings are very
accurate because they are set by the ratio of the on-chip resistors.
Any intermediate gain can be achieved by connecting the
appropriate resistor value between PAO1 and FBK1 according
to Equation 2 and Equation 3.
Because the internal resistors have an absolute tolerance of ±20%,
the gain can be in error by as much as 0.33 dB when R
where it is assumed that R
Figure 38 shows how the preamplifier is set to gains of 14 dB,
17.5 dB, and 20 dB. The gain range of a single channel of the
AD604 is 0 dB to 48 dB when the preamplifier is set to 14 dB
(Figure 38a), 3.5 dB to 51.5 dB for a preamp gain of 17.5 dB
(Figure 38b), and 6 dB to 54 dB for the highest preamp gain of
20 dB (Figure 38c).
For a preamplifier gain of 14 dB, the −3 dB small signal bandwidth
of the preamplifier is 130 MHz. When the gain is at its maximum
of 20 dB, the bandwidth is reduced by half to 65 MHz. Figure 39
shows the ac response for the three preamp gains shown in
Figure 38. Note that the gain for an R
17.5 dB, but the mismatch between the internal resistors and
the external resistor causes the actual gain for this particular
G
R
EXT
=
V
V
COM1
=
OUT
PAI1
IN
COM1
COM1
Figure 38. Preamplifier Gain Programmability
R
[
PAI1
PAI1
R
7
6
=
×
(
R
(
R6
8Ω
G
R
7
6
8Ω
8Ω
R6
R6
b. PREAMP GAIN = 17.5dB
||
a. PREAMP GAIN = 14dB
c. PREAMP GAIN = 20dB
×
R
(
R
G
EXT
EXT
5
) (
R
+
+
)
is exact.
6
32Ω
+
R5
R
R
32Ω
32Ω
R
R5
R5
6
5
5
)
]
+
+
×
EXT
R
R
R
R7
40Ω
6
6
7
R7
40Ω
R7
40Ω
)
of 40 Ω should be
PAO1
FBK1
PAO1
FBK1
PAO1
FBK1
R10
40Ω
EXT
is 30 Ω,
Rev. G | Page 14 of 32
(2)
(3)
preamplifier to be 17.7 dB. The −3 dB small signal bandwidth of
one complete channel of the AD604 (preamplifier and DSX) is
40 MHz and is independent of gain.
To achieve optimum specifications, power and ground manage-
ment are critical to the AD604. Large dynamic currents result
because of the low resistances needed for the desired noise
performance. Most of the difficulty is with the very low gain
setting resistors of the preamplifier that allow for a total input
referred noise, including the DSX, as low as 0.8 nV/√Hz. The
consequently large dynamic currents have to be carefully
handled to maintain performance even at large signal levels.
The preamplifier uses a dual ±5 V supply to accommodate large
dynamic currents and a ground referenced input. The preamplifier
output is also ground referenced and requires a common-mode
level shift into the single-supply DSX. The two external coupling
capacitors (C1 and C2 in Figure 37) connected to the PAO1 and
+DSXx, and –DSXx, nodes and ground, respectively, perform
this function (see the AC Coupling section). In addition, they
eliminate any offset that would otherwise be introduced by the
preamplifier. It should be noted that an offset of 1 mV at the
input of the DSX is amplified by 34.4 dB (× 52.5) when the gain
control voltage is at its maximum; this equates to 52.5 mV at the
output. AC coupling is consequently required to keep the offset
from degrading the output signal range.
The gain-setting preamplifier feedback resistors are small
enough (8 Ω and 32 Ω) that even an additional 1 Ω in the
ground connection at Pin COM1 (the input common-mode
reference) seriously degrades gain accuracy and noise performance.
This node is sensitive, and careful attention is necessary to
minimize the ground impedance. All connections to the COM1
node should be as short as possible.
The preamplifier, including the gain setting resistors, has a
noise performance of 0.71 nV/√Hz and 3 pA/√Hz. Note that a
significant portion of the total input referred voltage noise is
due to the feedback resistors. The equivalent noise resistance
presented by R5 and R6 in parallel is nominally 6.4 Ω, which
contributes 0.33 nV/√Hz to the total input referred voltage noise.
Figure 39. AC Response for Preamplifier Gains of 14 dB, 17.5 dB, and 20 dB
20
19
18
17
16
15
14
13
12
11
10
100k
V
IN
50Ω
8Ω
IN
1M
FREQUENCY (Hz)
32Ω
40Ω
10M
150Ω
R
40Ω
SHORT
EXT
OPEN
100M

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