LM4040AIM3-2.0/NOPB is a precision shunt voltage reference integrated circuit (IC) manufactured by Texas Instruments. It is designed to provide a stable and accurate voltage reference in a wide range of operating conditions.
Description:
The LM4040AIM3-2.0/NOPB is a low-power, precision shunt voltage reference with an output voltage of 2.0V. It is available in a 3-pin SOT-23 package. The device offers excellent temperature stability and low temperature coefficient, making it suitable for a variety of applications requiring high precision.
Features:
- Output Voltage: 2.0V
- Low Power Consumption: 35µA (typical)
- High Precision: ±1% initial accuracy and ±0.05% per °C drift
- Wide Operating Temperature Range: -55°C to +125°C
- Low Temperature Coefficient: 10ppm/°C (typical)
- Short Circuit Protection
- SOT-23 Surface Mount Package
Applications:
- Battery Powered Equipment: The LM4040AIM3-2.0/NOPB can be used as a stable voltage reference for battery-powered devices, ensuring accurate voltage regulation and prolonging battery life.
- Data Acquisition Systems: The high precision and low drift of the LM4040AIM3-2.0/NOPB make it suitable for use in data acquisition systems where accurate voltage references are critical.
- Strain Gauge Amplifiers: The LM4040AIM3-2.0/NOPB can be used in strain gauge amplifiers to provide a stable reference voltage for accurate measurements.
- Temperature Sensors: The device's excellent temperature stability makes it suitable for use in temperature sensor applications, providing a reliable voltage reference for accurate temperature measurements.
- Power Supply Voltage Regulation: The LM4040AIM3-2.0/NOPB can be used to regulate the output voltage of power supplies, providing a stable and accurate voltage reference for sensitive electronic equipment.
In summary, the LM4040AIM3-2.0/NOPB is a versatile and precise voltage reference IC from Texas Instruments, suitable for a wide range of applications requiring high accuracy and stability. Its low power consumption, excellent temperature characteristics, and compact packaging make it an ideal choice for various electronic systems.