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TLE2062AID
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TLE2062AID Description
TLE2062AID Description
The TLE2062AID from Texas Instruments is a high-performance, dual-channel JFET-input operational amplifier designed for precision applications. Housed in an 8-SOIC package, this IC operates over a wide supply voltage range of 7V to 36V, making it versatile for both low and high-voltage systems. With an ultra-low input bias current of 4 pA and a low input offset voltage of 800 µV, it ensures high accuracy in signal conditioning and measurement circuits. The device offers a 2 MHz gain bandwidth product and a 3.4V/µs slew rate, enabling efficient performance in dynamic signal processing.
TLE2062AID Features
- Low Power Consumption: Only 625µA per channel supply current, ideal for battery-powered systems.
- High Output Drive: 80 mA output current per channel for robust performance in driving loads.
- JFET Input: Provides high input impedance and minimal input bias current, critical for sensor interfaces and high-impedance applications.
- Wide Supply Range: 7V to 36V operation supports diverse power environments.
- RoHS3 Compliant & REACH Unaffected: Meets environmental and regulatory standards.
- Last Time Buy Status: Available for final procurement before discontinuation.
TLE2062AID Applications
The TLE2062AID excels in precision applications such as:
- Medical Instrumentation: ECG amplifiers, patient monitoring systems.
- Test & Measurement Equipment: Data acquisition systems, signal conditioning.
- Industrial Controls: Process control loops, transducer interfaces.
- Audio Processing: High-impedance preamplifiers, active filters.
- Automotive Systems: Sensor signal conditioning, low-noise amplification.
Conclusion of TLE2062AID
The TLE2062AID stands out for its low noise, high precision, and wide voltage range, making it a reliable choice for demanding analog designs. Its JFET input and low power consumption are particularly advantageous in high-impedance and portable applications. While marked as Last Time Buy, it remains a high-performance solution for engineers seeking accuracy and stability in critical systems.



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