ADA4856-3YCPZ-R2 Analog Devices Inc, ADA4856-3YCPZ-R2 Datasheet - Page 12

IC, VIDEO AMPLIFIER, TRI, 225MHZ LFCSP16

ADA4856-3YCPZ-R2

Manufacturer Part Number
ADA4856-3YCPZ-R2
Description
IC, VIDEO AMPLIFIER, TRI, 225MHZ LFCSP16
Manufacturer
Analog Devices Inc
Datasheet

Specifications of ADA4856-3YCPZ-R2

Gain Bandwidth
225MHz
Supply Voltage Range
3V To 5.5V
Slew Rate
800V/µs
No. Of Amplifiers
3
Output Current
52mA
Amplifier Output
Single Ended
Operating Temperature Range
-40°C To +105°C
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
ADA4856-3
THEORY OF OPERATION
The ADA4856-3 is a voltage feedback op amp that employs a
new input stage that achieves a high slew rate while maintaining
a wide common-mode input range. The input common-mode
range of the ADA4856-3 extends from 200 mV below the negative
rail to about 1 V from the positive rail. This feature makes the
ADA4856-3 ideal for low voltage single-supply applications. In
addition, this new input stage does not sacrifice noise performance
for slew rate. At 14 nV/√Hz, the ADA4856-3 is one of the
lowest noise rail-to-rail output video amplifiers in the market.
Besides a novel input stage, the ADA4856-3 employs the Analog
Devices, Inc., patented rail-to-rail output stage. This output
stage makes an efficient use of the power supplies, allowing the
op amp to drive up to three video loads to within 300 mV from
both rails. In addition, this output stage provides the amplifier
with very fast overdrive characteristics, an important property
in video applications.
Rev. A | Page 12 of 20
The ADA4856-3 comes in a 16-lead LFCSP that has an exposed
thermal pad for lower operating temperature. This pad is connected
internally to the negative rail. To avoid printed circuit board (PCB)
layout problems, the ADA4856-3 features a new pinout flow that
is optimized for video applications. As shown in Figure 4, the
feedback and gain resistors are on-chip, which minimizes the
number of components needed and improves the design layout.
The ADA4856-3 is fabricated in Analog Devices dielectrically
isolated eXtra Fast Complementary Bipolar 3 (XFCB3) process,
which results in the outstanding speed and dynamic range
displayed by the amplifier.
+IN
–IN
G
m1
Figure 33. High Level Design Schematic
–V
+V
S
S
R
C
G
C
m2
1
OUT

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