The ADR290ER is a high-precision voltage reference component manufactured by Analog Devices Inc., a leader in the semiconductor industry. This robust product offers a unique combination of accuracy, stability, and reliability for applications requiring a stable voltage reference over a wide range of environmental conditions.
Key Features
- High Accuracy: The ADR290ER provides an exceptional level of accuracy, which is essential for precision analog-to-digital conversions, ensuring that systems relying on this voltage reference maintain their performance over time.
- Low Temperature Coefficient: With a very low temperature coefficient, the ADR290ER maintains its accuracy across a broad temperature range, making it suitable for use in environments with varying temperatures.
- Long-Term Stability: The device exhibits excellent long-term stability, a critical characteristic for maintaining system calibration without frequent adjustments.
- Wide Supply Voltage Range: It operates effectively across a wide supply voltage range, providing flexibility in various power supply configurations.
- Low Noise: The ADR290ER is designed to produce minimal output noise, which is crucial for sensitive electronic applications where noise can significantly impact performance.
Applications
The ADR290ER is ideally suited for a range of applications that require a stable reference voltage. These include:
- Data Acquisition Systems
- Precision Instrumentation
- Industrial Process Control
- Battery-Powered Devices
- Automotive Electronics
Technical Specifications
| Parameter |
Value |
| Initial Accuracy |
±0.1% |
| Temperature Coefficient |
10 ppm/°C |
| Operating Temperature Range |
-40°C to +125°C |
| Output Voltage |
2.048 V |
| Package |
TO-226 |
Conclusion
The ADR290ER from Analog Devices Inc. is a top-tier voltage reference component that delivers precise and stable performance. Its robustness and versatility make it a preferred choice for engineers and designers across various industries seeking to enhance the accuracy and reliability of their electronic systems.