The AD517KH is a high-performance operational amplifier from the renowned semiconductor manufacturer Analog Devices Inc. Designed to meet the demands of precision instrumentation, this op-amp boasts exceptional accuracy, stability, and reliability, making it an ideal choice for a wide range of applications, from medical equipment to industrial control systems.
Key Features
- High Precision: The AD517KH offers outstanding precision with low offset voltage and drift, ensuring accurate signal amplification and processing over time and temperature variations.
- Low Noise: With its low noise characteristics, this operational amplifier is perfect for sensitive applications where signal integrity is paramount.
- Wide Operating Range: The device operates over a wide range of supply voltages, providing flexibility in various circuit configurations and ensuring compatibility with diverse power supplies.
- Robust Output Stage: The AD517KH can drive capacitive loads with ease, making it versatile for use in filters, integrators, or any circuit requiring a robust output.
- High Common-Mode Rejection Ratio (CMRR): The high CMRR of the AD517KH minimizes the influence of unwanted common-mode signals, enhancing measurement precision.
Applications
The precision and robustness of the AD517KH make it suitable for a variety of applications, including:
- Test and Measurement Equipment
- Data Acquisition Systems
- Process Control
- Medical Instrumentation
- Analog Filters
- Precision Power Supplies
Product Specifications
| Parameter |
Value |
| Offset Voltage |
Typically 25 µV |
| Offset Voltage Drift |
Typically 0.6 µV/°C |
| Input Bias Current |
Typically 1.5 nA |
| Supply Voltage Range |
±4.5V to ±18V |
| Package |
TO-99 Hermetic Package |
For engineers and designers looking for an op-amp that offers precision without compromise, the AD517KH from Analog Devices Inc. is a standout choice. Its combination of high accuracy, low noise, and robust performance ensures that it will continue to be a go-to component in precision electronics design.