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Texas Instruments TL074IDR-NG — Analog & Data Acquisition

TL074IDR-NG Quad General-Purpose Op-Amp, 5.25 MHz GBW

MPNTL074IDR-NG
Active

Texas Instruments TL074IDR-NG, quad general-purpose op-amp, 5.25 MHz gain bandwidth, 13V/µs slew rate, 1.4mA supply per channel, 10 V to 30 V supply span, 14-SOIC package, -40°C to 85°C operating temperature.

Independent supplier — new & surplus stockAuthenticity-screened · ESD-safe packingListing updated Jul 2026

Specifications

TL074IDR-NG specifications
ParameterValue
Output typePush-Pull
MountingSurface Mount
Amplifier typeGeneral Purpose
Voltage - input offset3 mV
Voltage - supply span30 V
Current - supply1.4mA
Current - input bias65 pA
Operating temperature-40°C ~ 85°C (TA)
Gain bandwidth product5.25 MHz
PackageBulk
Slew rate13V/µs
Case14-SOIC (0.154\", 3.90mm Width)
Number of circuits4

Product details

Quad op-amp with 5.25 MHz GBW and 13V/µs slew rate

The TL074IDR-NG is a quad general-purpose operational amplifier from Texas Instruments, packing four independent JFET-input op-amps into a 14-SOIC package. Its 5.25 MHz gain-bandwidth product and 13V/µs slew rate make it a workhorse for audio preamplifiers, active filters, signal conditioning, and data-acquisition front ends where moderate speed and low noise are needed.

Supply range and current budget

The amplifier operates from a total supply span of 10 V to 30 V. Each of the four amplifiers draws 1.4 mA quiescent current.

Input offset and bias current

The low bias current — typical of JFET-input stages — means the TL074IDR-NG can interface with high-impedance sensors and sources without significant loading error, a key advantage in precision measurement and photodiode amplifier circuits.

Frequently asked questions

Is TL074IDR-NG a direct replacement for TL074ID?

The TL074IDR-NG shares the same basic quad JFET-input op-amp architecture and 14-SOIC package as the TL074ID, but the suffix differences may indicate minor parametric or qualification variations. Confirm the specific datasheet ratings for your application before substituting.