AD812ARZ Analog Devices Inc, AD812ARZ Datasheet - Page 14

IC OPAMP DUAL CURR-FDBK 8-SOIC

AD812ARZ

Manufacturer Part Number
AD812ARZ
Description
IC OPAMP DUAL CURR-FDBK 8-SOIC
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD812ARZ

Slew Rate
1600 V/µs
Applications
Current Feedback
Number Of Circuits
2
-3db Bandwidth
145MHz
Current - Supply
4.5mA
Current - Output / Channel
50mA
Voltage - Supply, Single/dual (±)
2.4 V ~ 36 V, ±1.2 V ~ 18 V
Mounting Type
Surface Mount
Package / Case
8-SOIC (0.154", 3.90mm Width)
Gain Bandwidth
145MHz
Supply Voltage Range
± 1.2V To ± 18V
No. Of Amplifiers
2
Output Current
50mA
Amplifier Output
Single Ended
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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AD812
Overload Recovery
There are three important overload conditions to consider.
They are due to input common mode voltage overdrive, input
current overdrive, and output voltage overdrive. When the
amplifier is configured for low closed-loop gains, and its input
common-mode voltage range is exceeded, the recovery time will
be very fast, typically under 10 ns. When configured for a higher
gain, and overloaded at the output, the recovery time will also
be short. For example, in a gain of +10, with 6 dB of input
overdrive, the recovery time of the AD812 is about 10 ns.
Figure 43. Response to Large Load Capacitor, V
Figure 44. Pulse Response of Circuit of Figure 41 with
C
L
= 510 pF, R
12
–3
–6
–9
9
6
3
0
1
100
0%
10
90
C
L
= 510pF, R
L
= 1 k , R
S
10
= 15
5V
5V
FREQUENCY – MHz
F
= R
G
= 715 , R
C
L
100
= 150pF, R
V
G = +2
R
R
S
F
L
S
=
= 750
= 1k
100ns
S
= 15
= 30
15V
S
1000
= 15 V
V
V
IN
OUT
–14–
In the case of high gains with very high levels of input overdrive,
a longer recovery time may occur. For example, if the input
common-mode voltage range is exceeded in a gain of +10, the
recovery time will be on the order of 100 ns. This is primarily
due to current overloading of the input stage.
As noted in the warning under “Maximum Power Dissipation,”
a high level of input overdrive in a high noninverting gain circuit
can result in a large current flow in the input stage. For differ-
ential input voltages of less than about 1.25 V, this will be inter-
nally limited to less than 20 mA (decreasing with supply voltage).
For input overdrives which result in higher differential input
voltages, power dissipation in the input stage must be consid-
ered. It is recommended that external diode clamps be used in
cases where the differential input voltage is expected to exceed
1.25 V.
High Performance Video Line Driver
At a gain of +2, the AD812 makes an excellent driver for a back-
terminated 75
errors and wide 0.1 dB bandwidth can be realized over a wide
range of power supply voltage. Outstanding gain and group
delay matching are also attainable over the full operating supply
voltage range.
Figure 45. 6 dB Overload Recovery; G = 10, R
V
Figure 46. Gain of +2 Video Line Driver (R
Table I)
S
V
IN
= 5 V
CABLE
10
75
100
0%
90
R
G
video line. Low differential gain and phase
75
AD812
+V
–V
1V
2V
8
4
S
S
R
F
0.1 F
0.1 F
75
CABLE
75
50ns
F
= R
L
= 500 ,
75
G
from
V
V
V
OUT
REV. B
IN
OUT

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