Product Overview: MAX873AESA+ from Maxim Integrated
The MAX873AESA+ is a precision voltage reference component crafted by Maxim Integrated, renowned for its stability and accuracy. This device is part of a series that is engineered to provide a reliable reference voltage for various applications such as data converters, power supplies, and general analog circuits.
Key Features
- High Accuracy: The MAX873AESA+ offers an impressive initial accuracy of ±0.2% which ensures precision in applications requiring a stable voltage reference.
- Low Temperature Coefficient: With a temperature coefficient as low as 20ppm/°C, this component maintains its accuracy over a wide temperature range, making it suitable for demanding environments.
- Low Dropout Voltage: The device operates with a minimal dropout voltage, enhancing its performance in systems with low headroom.
- Wide Supply Range: It can be powered by a supply voltage ranging from 4.5V to 36V, offering flexibility in various circuit designs.
- Low Power Consumption: The MAX873AESA+ is designed for power-sensitive applications, consuming minimal quiescent current.
Applications
The versatile nature of the MAX873AESA+ makes it an ideal choice for a multitude of applications. It is commonly used in:
- Data Acquisition Systems
- Industrial Control Systems
- Battery-Operated Equipment
- Precision Power Supplies
- Portable Instrumentation
Package and Reliability
The MAX873AESA+ comes in a compact 8-pin SOIC package, which is suitable for space-constrained applications. Its robust design ensures long-term reliability, and it is specified over the extended industrial temperature range of -40°C to +85°C.
Conclusion
Maxim Integrated's MAX873AESA+ stands out as a high-precision voltage reference that combines accuracy, stability, and low power consumption. Its versatility and reliability make it an excellent choice for designers who require a consistent reference voltage under varying conditions. Whether for industrial, commercial, or sophisticated electronics, the MAX873AESA+ is engineered to meet the stringent requirements of advanced electronic systems.