


Texas Instruments
TL054IDR
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TL054IDR Description
TL054IDR Description
The TL054IDR from Texas Instruments is a high-performance JFET-input operational amplifier housed in a 14-SOIC package, designed for precision analog applications. Part of the LinCMOS™ series, this quad-channel op-amp operates over a wide supply voltage range (10V to 30V) and delivers low input bias current (30 pA) and low input offset voltage (560 µV), making it ideal for high-impedance sensor interfaces and signal conditioning. With a slew rate of 17.8V/µs and 2.7 MHz gain bandwidth product, it ensures fast signal response and stability in demanding circuits. The device is RoHS3 compliant, REACH unaffected, and rated MSL 1 (Unlimited), ensuring reliability in industrial environments.
TL054IDR Features
- Quad-channel JFET op-amp with 80 mA output current per channel for driving moderate loads.
- Low power consumption at 8.4mA total supply current (x4 channels).
- High slew rate (17.8V/µs) and 2.7 MHz bandwidth for dynamic signal processing.
- Ultra-low input bias current (30 pA) minimizes errors in high-impedance circuits.
- Wide supply range (10V–30V) accommodates diverse power configurations.
- Surface-mount 14-SOIC package for compact PCB designs.
- Industrial-grade reliability: RoHS3, REACH, and ECCN EAR99 compliant.
TL054IDR Applications
- Precision instrumentation: Ideal for data acquisition systems and medical sensors due to low noise and high input impedance.
- Active filters and signal conditioning: High slew rate and bandwidth suit audio processing and communication systems.
- Test and measurement equipment: Stable performance in oscilloscopes and multimeters.
- Industrial control systems: Robust operation in PLC analog I/O modules and motor control feedback loops.
- Battery-powered devices: Efficient power use extends runtime in portable analyzers.
Conclusion of TL054IDR
The TL054IDR stands out for its JFET-input precision, high-speed response, and multi-channel integration, making it a versatile choice for industrial, medical, and communication applications. Its low noise, wide voltage range, and robust packaging provide a competitive edge over similar op-amps, ensuring reliable performance in high-accuracy analog designs. Engineers seeking a balanced blend of speed, precision, and power efficiency will find this IC exceptionally well-suited for complex signal-chain solutions.



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