Manufacturer Part Number
AD688BQ
Manufacturer
Analog Devices
Introduction
The AD688BQ is a high-precision, low-noise voltage reference that provides an accurate, stable output voltage over a wide temperature range. It is designed for use in a variety of applications, including industrial control systems, instrumentation, and medical equipment.
Product Features and Performance
Highly stable output voltage of ±10V
Low output current of 10mA
Excellent voltage accuracy of ±0.02%
Low temperature coefficient of 3ppm/°C
Low noise performance of 6µVp-p (0.1Hz to 10Hz)
Wide input voltage range of 12V to 38V
Low power consumption of 12mA
Product Advantages
Exceptional stability and accuracy
Robust performance over a wide temperature range
Compact and efficient design
Ease of integration into various systems
Key Reasons to Choose This Product
Unparalleled precision and stability for critical applications
Reliable and long-lasting performance
Cost-effective solution for voltage reference needs
Versatile compatibility with a wide range of systems
Quality and Safety Features
Rigorous testing and quality control measures
Compliance with industry standards and regulations
Robust design for reliable operation in harsh environments
Compatibility
The AD688BQ is compatible with a wide range of electronic systems and devices that require a stable and accurate voltage reference, including:
Industrial control systems
Instrumentation and measurement equipment
Medical devices
Telecommunications equipment
Automotive electronics
Application Areas
Process control and automation
Test and measurement equipment
Medical diagnostics and imaging
Communications and networking
Automotive electronics and sensors
Product Lifecycle
The AD688BQ is an active product, and Analog Devices continues to manufacture and support it. There are no immediate plans for discontinuation. However, as technology evolves, customers should consult with our website's sales team for the latest information on product availability and any potential alternative or replacement models.