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REF02EP

Part No REF02EP
Manufacturer Maxim Integrated
Description +5V, +10V Precision Voltage References
Sample
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ECAD Module
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Manufacturer Maxim Integrated
Win Source Part Number 1242236-REF02EP
Manufacturer Homepage www.maxim-ic.com
Popularity Medium
Supply and Demand Status Balance
Ultra Librarian 3D Model Ultra Librarian REF02EP CAD Model

Description

The REF02EP from Maxim Integrated is a high-precision voltage reference that provides a fixed 5V output with an impressive ±0.05% initial accuracy. It is an essential component in applications requiring a stable and precise reference voltage, such as data conversion, instrumentation, and industrial process control systems.

This device offers excellent temperature stability, with a typical temperature coefficient of only 10ppm/°C, ensuring reliable performance over a wide temperature range. The REF02EP is capable of sourcing up to 20mA and sinking up to 0.4mA, making it versatile for various load conditions. Additionally, it features a low dropout voltage, which means it can maintain its precision output even when the supply voltage is minimally higher than the output voltage.

The REF02EP also boasts a low quiescent current, typically around 1.4mA, contributing to its efficiency and making it suitable for battery-powered devices where power conservation is crucial. The device's long-term stability and low noise characteristics further enhance its performance in critical applications.

Designed with practicality in mind, the REF02EP is offered in an 8-pin DIP package, allowing for easy integration into a wide range of circuit designs. Its robustness is highlighted by its wide supply voltage range of 4.5V to 30V, providing designers with flexibility and resilience against supply variations.

In summary, the Maxim Integrated REF02EP is a reliable and high-performance voltage reference that meets the stringent requirements of precision analog circuits. Its combination of accuracy, stability, and low power consumption makes it an excellent choice for engineers looking to enhance the performance of their electronic systems.

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