The AD581KHZ is a high-precision voltage reference module from Analog Devices Inc., designed to offer a stable and accurate 10 V output. This integrated circuit (IC) is part of a series that has established itself as a standard in the industry for providing a reference voltage in a wide array of applications, including digital voltmeters, power supplies, and operational amplifier circuitry.
Key Features
- High Accuracy: The AD581KHZ boasts an impressive initial accuracy of ±0.05%, ensuring reliable performance for precision applications.
- Temperature Stability: With a temperature coefficient as low as 10 ppm/°C, users can trust the output voltage to remain consistent across a broad temperature range.
- Low Drop-Out Voltage: This device operates effectively with a minimal difference between the input and output voltage, enhancing its efficiency and versatility in various circuit configurations.
- High Output Current: Capable of sourcing up to 10 mA of output current, the AD581KHZ can drive heavier loads without compromising its performance.
- Long-Term Stability: An excellent long-term stability of less than 25 ppm/1000 hours at 125°C ensures a dependable reference voltage over the lifespan of the product.
- Wide Operating Range: The IC can be operated over a broad input voltage range, making it suitable for diverse applications.
Applications
The AD581KHZ is ideal for high-precision instrumentation that demands a stable reference voltage. Its robustness and accuracy make it suitable for:
- Digital and analog converters (DACs and ADCs)
- Precision power supplies
- Calibration equipment
- Industrial control systems
- Laboratory instruments
- Automotive electronics
Technical Specifications
| Parameter |
Value |
| Output Voltage |
10 V |
| Initial Accuracy |
±0.05% |
| Temperature Coefficient |
10 ppm/°C |
| Output Current |
10 mA |
| Input Voltage Range |
12 V to 30 V |
With its combination of precision, stability, and versatility, the AD581KHZ from Analog Devices Inc. is an excellent choice for professionals seeking a reliable voltage reference source.