
Texas Instruments
LM4050AEM3-2.5/NOPB
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LM4050AEM3-2.5/NOPB Description
LM4050AEM3-2.5/NOPB Description
The LM4050AEM3-2.5/NOPB is a precision voltage reference IC from Texas Instruments, designed for applications requiring a stable and accurate reference voltage. With a fixed output voltage of 2.5V, this device offers a low-drift, low-noise performance, making it ideal for a variety of precision electronics applications.
LM4050AEM3-2.5/NOPB Features
- Output Type: Fixed
- Output Voltage (Min/Fixed): 2.5V
- Current - Output: 15 mA
- Tolerance: ±0.1%
- Temperature Coefficient: 50ppm/°C
- Noise - 10Hz to 10kHz: 41µVrms
- Reference Type: Shunt
- Current - Cathode: 65 µA
- Mounting Type: Surface Mount
- Package: Tape & Reel (TR)
- RoHS Status: ROHS3 Compliant
- REACH Status: REACH Unaffected
- Moisture Sensitivity Level (MSL): 1 (Unlimited)
- ECCN: EAR99
- HTSUS: 8542.39.0001
The LM4050AEM3-2.5/NOPB stands out due to its low tolerance and temperature coefficient, ensuring a stable output voltage across a wide temperature range. The low noise performance is crucial for applications sensitive to electrical noise, such as high-resolution data acquisition systems.
LM4050AEM3-2.5/NOPB Applications
This voltage reference IC is ideal for applications requiring high precision and stability, such as:
- Data Acquisition Systems: For accurate signal conditioning and analog-to-digital conversion.
- Sensor Calibration: To provide a stable reference for sensor output.
- Power Management: In battery management systems for accurate voltage monitoring.
- Communication Systems: For maintaining signal integrity over long distances.
Conclusion of LM4050AEM3-2.5/NOPB
The LM4050AEM3-2.5/NOPB is a robust and reliable voltage reference IC, offering a combination of low noise, low drift, and high precision. Its surface-mount packaging and compliance with RoHS and REACH standards make it suitable for a wide range of electronic devices. Whether used in data acquisition systems, sensor calibration, or power management, this IC provides the stable reference voltage needed for accurate and reliable performance.



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