Manufacturer Part Number
MAX525AEAP+T
Manufacturer
analog-devices
Introduction
The MAX525AEAP+T is a high-performance, 12-bit, quad digital-to-analog converter (DAC) from Analog Devices. It features a fast settling time of 12 µs (typical), making it suitable for a variety of applications that require precise and rapid analog signal generation.
Product Features and Performance
12-bit resolution
Quad DAC design with 4 independent channels
Fast settling time of 12 µs (typical)
Buffered voltage output
External reference input
Single 5V analog and digital supply
Low power consumption
Operating temperature range of -40°C to +85°C
Product Advantages
Excellent linearity with INL/DNL of ±0.25/±1 LSB (max)
Versatile R-2R architecture for flexible configuration
Small 20-SSOP package for space-constrained applications
Wide operating temperature range for robust performance in various environments
Key Reasons to Choose This Product
Precise and fast analog signal generation for high-performance applications
Efficient power consumption and small footprint for space-critical designs
Reliable operation across a wide temperature range, ensuring consistent performance
Flexible configuration options to meet the specific needs of your application
Quality and Safety Features
Analog Devices' high-quality manufacturing processes ensure consistent performance and reliability
Rigorous testing and quality control measures to meet industry standards
Compatibility
The MAX525AEAP+T is compatible with a variety of microcontrollers and digital systems that support the SPI communication protocol.
Application Areas
Industrial automation and control systems
Test and measurement equipment
Medical instrumentation
Audio and video signal processing
Robotic and motion control systems
Product Lifecycle
The MAX525AEAP+T is an active product, and Analog Devices continues to support and manufacture it. There are no known immediate plans for discontinuation. If you require information about equivalent or alternative models, please contact our sales team through our website.