EL5191C, EL5191AC
®
1GHz Current Feedback Amplifier with Enable
®
Features
General Description
• 1GHz -3dB bandwidth
• 9mA supply current
• Single and dual supply operation,
from 5V to 10V supply span
The EL5191C and EL5191AC amplifiers are of the current feedback
variety and exhibit a very high bandwidth of 1GHz. This makes these
amplifiers ideal for today’s high speed video and monitor applications,
as well as a number of RF and IF frequency designs.
• Fast enable/disable (EL5191AC
only)
• Available in SOT-23 packages
With a supply current of just 9mA and the ability to run from a single
supply voltage from 5V to 10V, these amplifiers offer very high per-
formance for little power consumption.
• High speed, 600MHz product
available (EL5192C, EL5292C,
and EL5392C)
• Lower power, 300MHz product
available (EL5193C, EL5293C,
EL5393C)
The EL5191AC 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 EL5191C is offered in the 5-pin SOT-23 package and the
EL5191AC 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
• Video amplifiers
• Cable drivers
• RGB amplifiers
Pin Configurations
• Test equipment
• Instrumentation
• Current to voltage converters
NC
IN-
1
2
3
4
8
7
6
5
CE
VS+
OUT
NC
-
Ordering Information
+
IN+
VS-
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
EL5191CW-T7
EL5191CW-T13
EL5191ACW-T7
EL5191ACW-T13
EL5191ACS
7”
13”
7”
EL5191ACS
(8-Pin SO)
13”
-
EL5191ACS-T7
EL5191ACS-T13
8-Pin SO
7”
8-Pin SO
13”
OUT
VS-
IN+
1
2
3
6
5
4
VS+
CE
OUT
VS-
IN+
1
2
3
5
4
VS+
IN-
*EL5191CW & EL5191ACW symbol is .Nxxx where xxx
represents date code
+
-
+
-
IN-
EL5191ACW
(6-Pin SOT-23)
EL5191CW
(5-Pin SOT-23)
CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.
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