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LM258P

LM258P

Active
Texas Instruments

DUAL, 30-V, 700-KHZ OPERATIONAL AMPLIFIER WITH -25°C TO 85°C OPERATION

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LM258P

LM258P

Active
Texas Instruments

DUAL, 30-V, 700-KHZ OPERATIONAL AMPLIFIER WITH -25°C TO 85°C OPERATION

Find alt

Description

General part information

LM258 Series

The LM358B and LM2904B devices are the next-generation versions of the industry-standard operational amplifiers (op amps) LM358 and LM2904, which include two high-voltage (36V) op amps. These devices provide outstanding value for cost-sensitive applications, with features including low offset (300µV, typical), common-mode input range to ground, and high differential input voltage capability.

The LM358B and LM2904B op amps simplify circuit design with enhanced features such as unity-gain stability, lower offset voltage maximum of 3mV (2mV maximum for LM358BA and LM2904BA), and lower quiescent current of 300µA per amplifier (typical). High ESD (2kV, HBM) and integrated EMI and RF filters enable the LM358B and LM2904B devices to be used in the most rugged, environmentally challenging applications.

The LM358B and LM2904B amplifiers are available in micro-sized packaging, such as the SOT23-8, as well as industry standard packages including SOIC, TSSOP, and VSSOP.

Technical Specifications

Parameters and characteristics for this part

SpecificationLM258P
Amplifier TypeGeneral Purpose
Current - Input Bias20 nA
Current - Output / Channel40 mA
Current - Supply500 µA
Gain Bandwidth Product700 kHz
Mounting TypeThrough Hole
Number of Circuits2
Operating Temperature (Max)85 °C
Operating Temperature (Min)-25 °C
Package Length0.3 in
Package Name8-PDIP, 8-DIP
Package Width7.62 mm
Slew Rate0.3 V/µs
Voltage - Input Offset3 mV
Voltage - Supply Span (Max)32 V
Voltage - Supply Span (Min)3 V

Pricing

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CAD

3D models and CAD resources for this part

Documents

Technical documentation and resources

AN-262 Applying Dual and Quad FET Op Amps (Rev. B)
AN-46 The Phase Locked Loop IC as a Communication System Building Block
AN-256 Circuitry for Inexpensive Relative Humidity Measurement (Rev. B)
AN-24 A Simplified Test Set for Op Amp Characterization
AN-79 IC Preamplifier Challenges Choppers on Drift (Rev. B)
AN-446 A 150W IC Op Amp Simplifies Design of Power Circuits
Industry-Standard Dual Operational Amplifiers datasheet (Rev. AB)
AN-241 Working with High Impedance Op Amps
True RMS Detector
AN-31 Amplifier Circuit Collection (Rev. D)
Building an Op Amp With Bipolar Transistors, A Historical Application Note (Rev. A)
AN-263 Sine Wave Generation Techniques (Rev. C)
AN-20 An Applications Guide for Op Amps (Rev. C)
AN-30 Log Converters (Rev. B)
Precise Tri-Wave Generation
General Purpose Power Supply
Get Fast Stable Response From Improved Unity-Gain Followers
Application Design Guidelines for LM324 and LM358 Devices (Rev. B)
Super Matched Bipolar Transistor Pair Sets New Standards for Drift and Noise (Rev. B)
Get More Power Out of Dual or Quad Op-Amps
AN-4 Monolithic Op Amp—The Universal Linear Component (Rev. B)
Audio Applications of Linear Integrated Circuits
Predicting Op Amp Slew Rate Limited Response
Low Drift Amplifiers
AN-260 A 20-Bit (1 ppm) Linear Slope-Integrating A/D Converter (Rev. B)
AN-480 A 40 MHz Programmable Video Op Amp
AN-29 IC Op Amp Beats FETs on Input Current (Rev. B)
AN-32 FET Circuit Applications
Applying a New Precision Op Amp
AN-278 Designing with a New Super Fast Dual Norton Amplifier (Rev. B)
Product Change Notice EN