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PDIP (P)
Integrated Circuits (ICs)

LMC6042AIN/NOPB

Obsolete
Texas Instruments

OP AMP DUAL MICROPOWER AMPLIFIER R-R O/P 15.5V 8-PIN PDIP TUBE

PDIP (P)
Integrated Circuits (ICs)

LMC6042AIN/NOPB

Obsolete
Texas Instruments

OP AMP DUAL MICROPOWER AMPLIFIER R-R O/P 15.5V 8-PIN PDIP TUBE

Technical Specifications

Parameters and characteristics for this part

SpecificationLMC6042AIN/NOPB
Amplifier TypeCMOS
Current - Input Bias0.002 pA
Current - Output / Channel [custom]40 mA
Current - Supply26 µA
Gain Bandwidth Product100 kHz
Mounting TypeThrough Hole
Number of Circuits2
Operating Temperature [Max]85 °C
Operating Temperature [Min]-40 °C
Output TypePush-Pull, Rail-to-Rail
Package / Case0.3 in
Package / Case8-DIP
Package / Case7.62 mm
Slew Rate20 V/ms
Supplier Device Package8-PDIP
Voltage - Input Offset1 mV
Voltage - Supply Span (Max) [Max]15.5 V
Voltage - Supply Span (Min) [Min]4.5 V

LMC6042-MIL Series

Military-grade, dual, 15.5-V, 100-kHz operational amplifier

PartOutput TypeAmplifier TypeCurrent - Input BiasCurrent - Output / Channel [custom]Supplier Device PackageOperating Temperature [Min]Operating Temperature [Max]Mounting TypeVoltage - Supply Span (Min) [Min]Current - SupplyPackage / CasePackage / CasePackage / CaseVoltage - Input OffsetGain Bandwidth ProductVoltage - Supply Span (Max) [Max]Number of CircuitsSlew RatePackage / Case [y]Package / Case [x]
PDIP (P)
Texas Instruments
Push-Pull
Rail-to-Rail
CMOS
0.002 pA
40 mA
8-PDIP
-40 °C
85 °C
Through Hole
4.5 V
26 µA
0.3 in
8-DIP
7.62 mm
1 mV
100 kHz
15.5 V
2
20 V/ms
8-CDIP
Texas Instruments
Push-Pull
Rail-to-Rail
CMOS
0.002 pA
40 mA
8-CDIP
-40 °C
85 °C
Through Hole
4.5 V
26 µA
0.3 in
8-CDIP
7.62 mm
1 mV
100 kHz
15.5 V
2
20 V/ms
8-DIP
Texas Instruments
Push-Pull
Rail-to-Rail
CMOS
0.002 pA
40 mA
8-PDIP
-40 °C
85 °C
Through Hole
4.5 V
26 µA
0.3 in
8-DIP
7.62 mm
1 mV
100 kHz
15.5 V
2
20 V/ms
SOIC (D)
Texas Instruments
Push-Pull
Rail-to-Rail
CMOS
0.002 pA
40 mA
8-SOIC
-40 °C
85 °C
Surface Mount
4.5 V
26 µA
8-SOIC
1 mV
100 kHz
15.5 V
2
20 V/ms
3.9 mm
0.154 in
8-SOIC
Texas Instruments
Push-Pull
Rail-to-Rail
CMOS
0.002 pA
40 mA
8-SOIC
-40 °C
85 °C
Surface Mount
4.5 V
26 µA
8-SOIC
1 mV
100 kHz
15.5 V
2
20 V/ms
3.9 mm
0.154 in
8-SOIC
Texas Instruments
Push-Pull
Rail-to-Rail
CMOS
0.002 pA
40 mA
8-SOIC
-40 °C
85 °C
Surface Mount
4.5 V
26 µA
8-SOIC
1 mV
100 kHz
15.5 V
2
20 V/ms
3.9 mm
0.154 in
8-SOIC
Texas Instruments
Push-Pull
Rail-to-Rail
CMOS
0.002 pA
40 mA
8-SOIC
-40 °C
85 °C
Surface Mount
4.5 V
26 µA
8-SOIC
1 mV
100 kHz
15.5 V
2
20 V/ms
3.9 mm
0.154 in
8-SOIC
Texas Instruments
Push-Pull
Rail-to-Rail
CMOS
0.002 pA
40 mA
8-SOIC
-40 °C
85 °C
Surface Mount
4.5 V
26 µA
8-SOIC
1 mV
100 kHz
15.5 V
2
20 V/ms
3.9 mm
0.154 in
8-SOIC
Texas Instruments
Push-Pull
Rail-to-Rail
CMOS
0.002 pA
40 mA
8-SOIC
-40 °C
85 °C
Surface Mount
4.5 V
26 µA
8-SOIC
1 mV
100 kHz
15.5 V
2
20 V/ms
3.9 mm
0.154 in
8-SOIC
Texas Instruments
Push-Pull
Rail-to-Rail
CMOS
0.002 pA
40 mA
8-SOIC
-40 °C
85 °C
Surface Mount
4.5 V
26 µA
8-SOIC
1 mV
100 kHz
15.5 V
2
20 V/ms
3.9 mm
0.154 in

Pricing

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

DistributorPackageQuantity$
Texas InstrumentsTUBE 1$ 3.20
100$ 2.80
250$ 1.97
1000$ 1.58

Description

General part information

LMC6042-MIL Series

Ultra-low power consumption and low input-leakage current are the hallmarks of the LMC6041, LMC6042, and LMC6044 (LMC604x). Providing input currents of only 2fA (typical), the LMC604x operate from a single supply, with an output swing extending to each supply rail and an input voltage range that includes ground.

The LMC604x are designed for use in systems requiring ultra-low power consumption. In addition, the insensitivity to latch-up, the high output drive, and an output swing to ground without requiring external pulldown resistors make these op amps an excellent choice for single-supply, battery-powered systems.

Other applications for the LMC604x include barcode-reader amplifiers, magnetic- and electric-field detectors, and portable electrometers.