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PDF EL2044 Data sheet ( Hoja de datos )

Número de pieza EL2044
Descripción Low Power/Low Voltage 120MHz Unity-Gain Stable Operational Amplifier
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®
Data Sheet
August 16, 2004
EL2044
FN7029.1
Low Power/Low Voltage 120MHz Unity-
Gain Stable Operational Amplifier
The EL2044 is a high speed, low
power, low cost monolithic operational
amplifier built on Elantec's proprietary
complementary bipolar process. The EL2044 is unity-gain
stable and features a 325V/µs slew rate and 120MHz gain-
bandwidth product while requiring only 5.2mA of supply
current.
The power supply operating range of the EL2044 is from
±18V down to as little as ±2V. For single-supply operation,
the EL2044 operates from 36V down to as little as 2.5V. The
excellent power supply operating range of the EL2044
makes it an obvious choice for applications on a single +5V
supply.
The EL2044 also features an extremely wide output voltage
swing of ±13.6V with VS = ±15V and RL = 1k. At ±5V,
output voltage swing is a wide ±3.8V with RL = 500and
±3.2V with RL = 150. Furthermore, for single-supply
operation at +5V, output voltage swing is an excellent 0.3V
to 3.8V with RL = 500.
At a gain of +1, the EL2044 has a -3dB bandwidth of
120MHz with a phase margin of 50°. Because of its
conventional voltage-feedback topology, the EL2044 allows
the use of reactive or non-linear elements in its feedback
network. This versatility combined with low cost and 75mA of
output-current drive makes the EL2044 an ideal choice for
price-sensitive applications requiring low power and high
speed.
The EL2044 is available in the 8-pin SO and 8-pin PDIP
packages and operates over the full -40°C to +85°C
temperature range.
Ordering Information
PART NUMBER PACKAGE
TAPE &
REEL
PKG. DWG. #
EL2044CS
8-Pin SO
- MDP0027
EL2044CSZ
(See Note)
8-Pin SO
(Pb-free)
- MDP0027
EL2044CS-T7
8-Pin SO
7” MDP0027
EL2044CSZ-T7
(See Note)
8-Pin SO
(Pb-free)
7” MDP0027
EL2044CS-T13
8-Pin SO
13” MDP0027
EL2044CSZ-
T13 (See Note)
8-Pin SO
(Pb-free)
13” MDP0027
EL2044CN
8-Pin PDIP
-
MDP0031
NOTE: Intersil Pb-free products employ special Pb-free material sets; molding
compounds/die attach materials and 100% matte tin plate termination finish, which is
compatible with both SnPb and Pb-free soldering operations. Intersil Pb-free
products are MSL classified at Pb-free peak reflow temperatures that meet or exceed
the Pb-free requirements of IPC/JEDEC J Std-020B.
Features
Pb-free available
• 120MHz -3dB bandwidth
• Unity-gain stable
• Low supply current - 5.2mA @VS = ±15V
• Wide supply range - ±2V to ±18V dual-supply and 2.5V to
36V single-supply
• High slew rate = 325V/µs
• Fast settling - 80ns to 0.1% for a 10V step
• Low differential gain - 0.04% at AV = +2, RL = 150
• Low differential phase - 0.15° at AV = +2, RL = 150
• Wide output voltage swing - ±13.6V with VS = ±15V,
RL = 1kand 3.8V/0.3V with VS = +5V, RL = 500
• Low cost, enhanced replacement for the AD847 and
LM6361
Applications
• Video amplifiers
• Single-supply amplifiers
• Active filters/integrators
• High speed sample-and-hold
• High speed signal processing
• ADC/DAC buffers
• Pulse/RF amplifiers
• Pin diode receivers
• Log amplifiers
• Photo multiplier amplifiers
• Difference amplifiers
Pinout
EL2044
(8-PIN SO & 8-PIN PDIP)
TOP VIEW
NC 1
8 NC
IN- 2
IN+ 3
-
+
7 V+
6 OUT
V- 4
5 NC
1 CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.
1-888-INTERSIL or 321-724-7143 | Intersil (and design) is a registered trademark of Intersil Americas Inc.
Copyright © Intersil Americas Inc. 2003, 2004. All Rights Reserved. Elantec is a registered trademark of Elantec Semiconductor, Inc.
All other trademarks mentioned are the property of their respective owners.

1 page




EL2044 pdf
Typical Performance Curves (Continued)
EL2044
Gain-Bandwidth Product
vs Supply Voltage
Open-Loop Gain
vs Supply Voltage
Slew-Rate vs
Supply Voltage
Bias and Offset Current
vs Input Common-Mode
Voltage
Open-Loop Gain
vs Load Resistance
Voltage Swing
vs Load Resistance
Offset Voltage
vs Temperature
Bias and Offset
Current vs Temperature
Supply Current
vs Temperature
Gain-Bandwidth Product
vs Temperature
Open-Loop Gain PSRR
and CMRR vs Temperature
Slew Rate vs
Temperature
5

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