Introducing the ADR392BUJZ-R2 Voltage Reference
The ADR392BUJZ-R2 is a precision 2.048V voltage reference from Analog Devices Inc., renowned for its high accuracy and stability. This product is part of the ADR39x series, which is well-suited for applications requiring a low-power, high-precision reference voltage. The device comes in a compact SOT-23 package, making it ideal for space-constrained applications.
Key Features
- Precision Voltage: The ADR392BUJZ-R2 offers a precise 2.048V output, making it compatible with various analog-to-digital converters (ADCs) and digital-to-analog converters (DACs) that require a 2V reference.
- Low Temperature Coefficient: With a low temperature coefficient of 8 ppm/°C (max), this voltage reference maintains its accuracy across a wide temperature range.
- Low Noise: It exhibits low noise performance, which is essential for high-resolution data conversion in sensitive applications.
- Low Dropout Voltage: The ADR392BUJZ-R2 operates with a low dropout voltage, enhancing its performance in battery-operated devices where power efficiency is critical.
- Long-Term Stability: The device demonstrates excellent long-term stability, ensuring reliable performance throughout the product's lifespan.
- Wide Operating Range: It is operational over a supply range of 2.8V to 5.5V, providing versatility in various system designs.
Applications
The ADR392BUJZ-R2 is ideal for high-performance applications where precision is paramount. Its typical applications include:
- Precision data acquisition systems
- Battery-powered instruments
- Portable medical devices
- Industrial process control systems
- Automotive control systems
Quality and Reliability
Analog Devices Inc. is known for its commitment to quality, and the ADR392BUJZ-R2 is no exception. It is designed to meet the stringent requirements of various industries, ensuring reliability and performance. With its robust design and high precision, the ADR392BUJZ-R2 is a smart choice for designers looking to enhance the accuracy and efficiency of their electronic systems.