Datasheet Texas Instruments LM324N

ManufacturerTexas Instruments
SeriesLM324
Part NumberLM324N
Datasheet Texas Instruments LM324N

Quadruple Operational Amplifier 14-PDIP 0 to 70

Datasheets

Datasheet LM124, LM124A, LM124M, LM224, LM224A, LM224K, LM224KA, LM2902, LM2902K, LM2902KAV, LM2902KV, LM2902V, LM324, LM324A, LM324K, LM324KA
PDF, 1.8 Mb, Revision: W, File published: Mar 30, 2014, Pages: 42
Quadruple Operational Amplifiers
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Prices

Status

Lifecycle StatusActive (Recommended for new designs)
Manufacture's Sample AvailabilityNo

Packaging

Pin14
Package TypeN
Industry STD TermPDIP
JEDEC CodeR-PDIP-T
Package QTY25
CarrierTUBE
Device MarkingLM324N
Width (mm)6.35
Length (mm)19.3
Thickness (mm)3.9
Pitch (mm)2.54
Max Height (mm)5.08
Mechanical DataDownload

Parametrics

Additional FeaturesN/A
ArchitectureBipolar
CMRR(Min)65 dB
CMRR(Typ)80 dB
GBW(Typ)1.2 MHz
Input Bias Current(Max)250000 pA
Iq per channel(Max)0.3 mA
Iq per channel(Typ)0.175 mA
Number of Channels4
Offset Drift(Typ)7 uV/C
Operating Temperature Range0 to 70 C
Output Current(Typ)40 mA
Package GroupPDIP
Package Size: mm2:W x LSee datasheet (PDIP) PKG
Rail-to-RailIn to V-
RatingCatalog
Slew Rate(Typ)0.5 V/us
Total Supply Voltage(Max)32 +5V=5, +/-5V=10
Total Supply Voltage(Min)3 +5V=5, +/-5V=10
Vn at 1kHz(Typ)35 nV/rtHz
Vos (Offset Voltage @ 25C)(Max)7 mV

Eco Plan

RoHSCompliant
Pb FreeYes

Application Notes

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    Simplify your frequency-to-voltage (F/V) converter designs with versatile V/F ICs. Starting with a basicconverter circuit you can modify it to meet almost any application requirement. You can spare yourselfsome hard labor when designing F/V converters by using a voltage-to-frequency (V/F) IC in your designs.These ICs form the basis of a series of accurate yet economical F/V converters sui
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    This application report discusses how combining an “inferior”, 20 year old A/D conversion technique with amicroprocessor, a developmental A/D converter achieves 1 part-per-million (20-bit) linearity.
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  • AN-79 IC Preamplifier Challenges Choppers on Drift (Rev. B)
    PDF, 940 Kb, Revision: B, File published: May 1, 2013
    Since the introduction of monolithic IC amplifiers there has been a continual improvement in DC accuracy.Bias currents have been decreased by 5 orders of magnitude over the past 5 years. Low offset voltagedrift is also necessary in a high accuracy circuits. This is evidenced by the popularity of low drift amplifiertypes as well as the requests for selected low-drift op amps. However until n
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    The availability of dual and quad packaged FET op amps offers the designer all the traditional capabilitiesof FET op amps including low bias current and speed and some additional advantages. The cost-peramplifieris lower because of reduced package costs. This means that more amplifiers are available toimplement a function at a given cost making design easier. At the same time the availab
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  • AN-256 Circuitry for Inexpensive Relative Humidity Measurement (Rev. B)
    PDF, 262 Kb, Revision: B, File published: May 6, 2013
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    It is well known to analog experts that you can use the positive and negative inputs of an operationalamplifier to make a high-impedance current source (current pump) using a conventional operationalamplifier (op amp). This basic circuit can put out both + and - output current (or zero current) into variousloads. The theory is simple. But the practical problems involved are not so simple or
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    This application report discusses the effect of heavy loads on the accuracy and linearity of operationalamplifier circuits.

Model Line

Manufacturer's Classification

  • Semiconductors > Amplifiers > Operational Amplifiers (Op Amps) > General-Purpose Op Amps