EL5193C, EL5193AC
®
Single 300MHz Current Feedback Amplifier with Enable
®
Features
General Description
• 300MHz -3dB bandwidth
• 4mA supply current
• Single and dual supply operation,
from 5V to 10V supply span
• Fast enable/disable (EL5193AC
only)
• Available in SOT-23 packages
• Dual (EL5293C) and triple
(EL5393C) available
• High speed, 1GHz product
available (EL5193C)
• High speed, 6mA, 600MHz
product available (EL5192C,
EL5292C, and EL5392C
The EL5193C and EL5193AC are current feedback amplifiers with a
bandwidth of 300MHz. This makes these amplifiers ideal for today’s
high speed video and monitor applications.
With a supply current of just 4mA and the ability to run from a single
supply voltage from 5V to 10V, these amplifiers are also ideal for
hand held, portable or battery-powered equipment.
The EL5193AC also incorporates an enable and disable function to
reduce the supply current to 100µA typical per amplifier. Allowing the
CE pin to float or applying a low logic level will enable the amplifier.
The EL5193C is offered in the 5-pin SOT-23 package and the
EL5193AC is available in the 6-pin SOT-23 as well as the industry-
standard 8-pin SO packages. Both operate over the industrial tempera-
ture range of -40°C to +85°C.
Applications
Pin Configurations
• Battery powered equipment
• Hand held, portable devices
• Video amplifiers
• Cable drivers
• RGB amplifiers
• Test equipment
• Instrumentation
NC
IN-
1
2
3
4
8
7
6
5
CE
VS+
OUT
NC
-
+
IN+
VS-
• Current to voltage converters
EL5193ACS
(8-Pin SO)
Ordering Information
Tape &
Part No
Package
5-Pin SOT-23*
5-Pin SOT-23*
6-Pin SOT-23*
6-Pin SOT-23*
8-Pin SO
Reel
Outline #
MDP0038
MDP0038
MDP0038
MDP0038
MDP0027
MDP0027
MDP0027
EL5193CW-T7
EL5193CW-T13
EL5193ACW-T7
EL5193ACW-T13
EL5193ACS
7”
13”
7”
OUT
VS-
IN+
1
2
3
6
5
4
VS+
CE
OUT
VS-
IN+
1
2
3
5
4
VS+
IN-
13”
-
+
-
EL5193ACS-T7
EL5193ACS-T13
8-Pin SO
7”
+
-
IN-
8-Pin SO
13”
EL5193ACW
(6-Pin SOT-23)
EL5193CW
(5-Pin SOT-23)
*EL5193CW & EL5193ACW symbol is .Pxxx where xxx
represents date code
CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.
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