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14-SOIC
Integrated Circuits (ICs)

LM224D

Obsolete
Texas Instruments

QUAD, 30-V, 1.2-MHZ OPERATIONAL AMPLIFIER WITH -25°C TO 85°C OPERATION

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14-SOIC
Integrated Circuits (ICs)

LM224D

Obsolete
Texas Instruments

QUAD, 30-V, 1.2-MHZ OPERATIONAL AMPLIFIER WITH -25°C TO 85°C OPERATION

Technical Specifications

Parameters and characteristics for this part

SpecificationLM224D
Amplifier TypeGeneral Purpose
Current - Input Bias20 nA
Current - Output / Channel [custom]40 mA
Current - Supply1.4 mA
Gain Bandwidth Product1.2 MHz
Mounting TypeSurface Mount
Number of Circuits4
Operating Temperature [Max]85 C
Operating Temperature [Min]-25 °C
Package / Case14-SOIC
Package / Case [x]0.154 in
Package / Case [y]3.9 mm
Voltage - Input Offset3 mV
Voltage - Supply Span (Max) [Max]30 V
Voltage - Supply Span (Min) [Min]3 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyTube 1$ 1.59
10$ 1.01
25$ 0.85
100$ 0.68
250$ 0.59
500$ 0.54
1000$ 0.50
2500$ 0.45
Texas InstrumentsTUBE 1$ 0.72
100$ 0.55
250$ 0.41
1000$ 0.29

Description

General part information

LM224-N Series

The LM324B and LM2902B devices are the next-generation versions of the industry-standard operational amplifiers (op amps) LM324 and LM2902, which include four high-voltage (36V) op amps. These devices provide outstanding value for cost-sensitive applications,

with features including low offset (600µV, typical), common-mode input range to ground, and high differential input voltage capability.

The LM324B and LM2902B are unity-gain stable and achieve a low offset voltage maximum of 3mV (2mV maximum for LM324BA and LM2902BA) and quiescent current of 240µA per amplifier (typical). High ESD (2kV HBM and 1.5kV CDM) and integrated EMI and RF filters enable the LM324B and LM2902B devices to be used in the most rugged, environmentally challenging applications.

Documents

Technical documentation and resources

AN-46 The Phase Locked Loop IC as a Communication System Building Block

Application note

AN-20 An Applications Guide for Op Amps (Rev. C)

Application note

AN-31 Amplifier Circuit Collection (Rev. D)

Application note

Application Design Guidelines for LM324 and LM358 Devices (Rev. B)

Application note

LMx24, LMx24x, LMx24xx, LM2902, LM2902x, LM2902xx, LM2902xxx Quadruple Operational Amplifiers datasheet (Rev. AD)

Data sheet

General Purpose Power Supply

Application note

AN-32 FET Circuit Applications

Application note

Applying a New Precision Op Amp

Application note

Super Matched Bipolar Transistor Pair Sets New Standards for Drift and Noise (Rev. B)

Application note

Get Fast Stable Response From Improved Unity-Gain Followers

Application note

Building an Op Amp With Bipolar Transistors, A Historical Application Note (Rev. A)

Application note

AN-263 Sine Wave Generation Techniques (Rev. C)

Application note

AN-4 Monolithic Op Amp—The Universal Linear Component (Rev. B)

Application note

True RMS Detector

Application note

AN-29 IC Op Amp Beats FETs on Input Current (Rev. B)

Application note

AN-256 Circuitry for Inexpensive Relative Humidity Measurement (Rev. B)

Application note

AN-260 A 20-Bit (1 ppm) Linear Slope-Integrating A/D Converter (Rev. B)

Application note

AN-480 A 40 MHz Programmable Video Op Amp

Application note

Audio Applications of Linear Integrated Circuits

Application note

AN-446 A 150W IC Op Amp Simplifies Design of Power Circuits

Application note

Get More Power Out of Dual or Quad Op-Amps

Application note

Low Drift Amplifiers

Application note

AN-30 Log Converters (Rev. B)

Application note

AN-241 Working with High Impedance Op Amps

Application note

Precise Tri-Wave Generation

Application note

Predicting Op Amp Slew Rate Limited Response

Application note

AN-79 IC Preamplifier Challenges Choppers on Drift (Rev. B)

Application note

AN-24 A Simplified Test Set for Op Amp Characterization

Application note

AN-278 Designing with a New Super Fast Dual Norton Amplifier (Rev. B)

Application note