Manufacturer Part Number
AD588ARWZ
Manufacturer
Analog Devices
Introduction
The AD588ARWZ is a high precision voltage reference component designed for power management and voltage calibration applications, manufactured by Analog Devices.
Product Features and Performance
High precision voltage reference with programmable output
Outputs of ±5V or ±10V
Low noise performance – 6µVp-p from 0.1Hz to 10Hz
Excellent temperature stability (3ppm/°C)
Supports a wide range of input voltages (10.8V to 36V)
Low current requirements (10mA)
Product Advantages
Versatile output voltage options for flexibility in design
Superior low noise operation for high precision applications
Enhanced temperature stability ensures reliable operation under varying conditions
Wide input voltage range supports use in multiple scenarios
Efficient current usage optimizes power consumption
Key Technical Parameters
Output Type: Programmable
Voltage Output (Min/Fixed): ±5V, ±10V
Current Output: 10 mA
Tolerance: ±0.03%
Temperature Coefficient: 3ppm/°C
Noise 0.1Hz to 10Hz: 6µVp-p
Voltage Input: 10.8V ~ 36V
Current Supply: 10mA
Operating Temperature: -25°C ~ 85°C (TA)
Quality and Safety Features
Built with Analog Devices' rigorous quality standards
Highly stable and reliable over operating temperature range
Compatibility
Surface Mount Technology (SMT) compatible with 16-SOIC package
Adaptable for use in various circuit designs due to programmable output
Application Areas
Precision instrumentation
Calibration equipment
High-end audio equipment
Industrial control systems
Data acquisition systems
Product Lifecycle
Status: Active
Not currently nearing discontinuation, with ongoing support and availability
Several Key Reasons to Choose This Product
Exceptional accuracy and stability suitable for precision applications
Flexible and programmable output options provide design versatility
Low noise specifications for sensitive applications
Wide input voltage range and efficient current use enhance compatibility
Manufactured by Analog Devices, known for quality and reliability