Manufacturer Part Number
MAX5206BEUB+T
Manufacturer
analog-devices
Introduction
The MAX5206BEUB+T is a high-performance, 16-bit digital-to-analog converter (DAC) that provides excellent linearity and low noise performance. It is designed for a wide range of industrial, instrumentation, and consumer applications requiring precision voltage output.
Product Features and Performance
16-bit resolution
1 channel of D/A conversion
25µs typical settling time
Buffered voltage output
SPI digital interface
External reference
7V to 3.6V analog and digital supply voltages
±20 LSB maximum integral nonlinearity (INL)
±2 LSB maximum differential nonlinearity (DNL)
Operating temperature range of -40°C to +105°C
Product Advantages
High-performance 16-bit resolution for precise voltage output
Wide supply voltage range for flexibility in system design
Excellent linearity and low noise for demanding applications
Small 10-pin package options for space-constrained designs
Key Reasons to Choose This Product
Exceptional precision and accuracy for critical analog applications
Robust operating temperature range for industrial and harsh environments
Ease of integration with SPI digital interface
Compact package options to fit compact system designs
Quality and Safety Features
Rigorous quality control and testing to ensure reliable performance
Compliance with relevant industry standards for safety and environmental regulations
Compatibility
The MAX5206BEUB+T is compatible with a variety of microcontrollers and digital systems that support SPI communication.
Application Areas
Industrial automation and control systems
Test and measurement equipment
Medical instrumentation
Consumer electronics with precision analog requirements
Product Lifecycle
The MAX5206BEUB+T is an active product, and there are currently no plans for discontinuation. Analog Devices offers several alternative models with similar features and performance, such as the MAX5205, MAX5207, and MAX5208 series. For more information or assistance, please contact our website's sales team.