Zenode.ai Logo
Beta
SOIC (D)
Integrated Circuits (ICs)

LMC6492AEM/NOPB

Obsolete
Texas Instruments

DUAL, 15.5-V, 1.5-MHZ OPERATIONAL AMPLIFIER

Deep-Dive with AI

Search across all available documentation for this part.

SOIC (D)
Integrated Circuits (ICs)

LMC6492AEM/NOPB

Obsolete
Texas Instruments

DUAL, 15.5-V, 1.5-MHZ OPERATIONAL AMPLIFIER

Technical Specifications

Parameters and characteristics for this part

SpecificationLMC6492AEM/NOPB
Amplifier TypeCMOS
Current - Input Bias0.15 pA
Current - Output / Channel30 mA
Current - Supply1.3 mA
Gain Bandwidth Product1.5 MHz
Mounting TypeSurface Mount
Number of Circuits2
Operating Temperature [Max]125 °C
Operating Temperature [Min]-40 °C
Output TypeDifferential, Rail-to-Rail
Package / Case8-SOIC
Package / Case [x]0.154 in
Package / Case [y]3.9 mm
Slew Rate1.3 V/µs
Supplier Device Package8-SOIC
Voltage - Input Offset110 çV
Voltage - Supply Span (Max) [Max]15.5 V
Voltage - Supply Span (Min) [Min]2.5 V

Pricing

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

DistributorPackageQuantity$
DigikeyTube 1$ 6.02
10$ 4.06
25$ 3.55
100$ 2.98
250$ 2.70
Texas InstrumentsTUBE 1$ 3.57
100$ 3.13
250$ 2.19
1000$ 1.77

Description

General part information

LMC6492 Series

The LMC6492 and LMC6494 (LMC649x) amplifiers were specifically developed for single-supply applications that operate from −40°C to +125°C. This feature is an excellent choice for automotive systems because of the wide temperature range. A unique design topology enables the LMC649x common-mode voltage range to accommodate input signals beyond the rails. This eliminates non-linear output errors due to input signals exceeding a traditionally limited common-mode voltage range. The LMC649x signal range has a high CMRR of 82dB for excellent accuracy in noninverting circuit configurations.

The LMC649x rail-to-rail input is complemented by rail-to-rail output swing. This configuration provides maximum dynamic signal range and is particularly important in 5V systems.

An ultra-low input current of 150fA and a 120dB open-loop gain provide high accuracy and direct interfacing with high-impedance sources.