LM124-N, LM224-N, LM2902-N, LM324-N
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SNOSC16B –MAY 2004–REVISED SEPTEMBER 2004
LM124-N/LM224-N/LM324-N/LM2902-N Low Power Quad Operational Amplifiers
Check for Samples: LM124-N, LM224-N, LM2902-N, LM324-N
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FEATURES
ADVANTAGES
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Internally Frequency Compensated for Unity
Gain
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Eliminates Need for Dual Supplies
Four Internally Compensated Op Amps in a
Single Package
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Large DC Voltage Gain 100 dB
Wide Bandwidth (Unity Gain) 1 MHz
(Temperature Compensated)
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Allows Directly Sensing Near GND and VOUT
also Goes to GND
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Wide Power Supply Range:
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Compatible with All Forms of Logic
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Single Supply 3V to 32V
Power Drain Suitable for Battery Operation
or Dual Supplies ±1.5V to ±16V
DESCRIPTION
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Very Low Supply Current Drain (700
μA)—Essentially Independent of Supply
Voltage
The LM124-N series consists of four independent,
high gain, internally frequency compensated
operational amplifiers which were designed
specifically to operate from a single power supply
over a wide range of voltages. Operation from split
power supplies is also possible and the low power
supply current drain is independent of the magnitude
of the power supply voltage.
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Low Input Biasing Current 45 nA (Temperature
Compensated)
Low Input Offset Voltage 2 mV
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and Offset Current: 5 nA
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Input Common-Mode Voltage Range Includes
Ground
Application areas include transducer amplifiers, DC
gain blocks and all the conventional op amp circuits
which now can be more easily implemented in single
power supply systems. For example, the LM124-N
series can be directly operated off of the standard
+5V power supply voltage which is used in digital
systems and will easily provide the required interface
electronics without requiring the additional ±15V
power supplies.
Differential Input Voltage Range Equal to the
Power Supply Voltage
Large Output Voltage Swing 0V to V+ − 1.5V
UNIQUE CHARACTERISTICS
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In the Linear Mode the Input Common-Mode
Voltage Range Includes Ground and the
Output Voltage can also Swing to Ground,
Even Though Operated from Only a Single
Power Supply Voltage
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The Unity Gain Cross Frequency is
Temperature Compensated
The Input Bias Current is also Temperature
Compensated
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Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.
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All trademarks are the property of their respective owners.
PRODUCTION DATA information is current as of publication date.
Products conform to specifications per the terms of the Texas
Instruments standard warranty. Production processing does not
necessarily include testing of all parameters.
Copyright © 2004, Texas Instruments Incorporated