Manufacturer Part Number
MAX506ACWP+T
Manufacturer
analog-devices
Introduction
The MAX506ACWP+T is a high-performance, quad 8-bit digital-to-analog converter (DAC) with an on-chip voltage reference and output amplifiers. It features low power consumption, fast settling time, and excellent linearity, making it suitable for a wide range of applications, including industrial control, instrumentation, and audio/video systems.
Product Features and Performance
8-bit resolution with 4 independent DAC channels
Fast 6μs settling time (typical)
Voltage-buffered outputs
External reference input
±5V analog supply and 5V digital supply
Low power consumption
INL/DNL of ±1 LSB (maximum)
R-2R architecture for high performance
Product Advantages
Compact 20-SOIC package for space-constrained designs
Flexible parallel data interface
Excellent linearity and stability
Wide operating temperature range of 0°C to 70°C
Key Reasons to Choose This Product
High-performance quad DAC solution in a small footprint
Ideal for industrial, instrumentation, and audio/video applications
Easy to integrate with existing systems
Cost-effective solution for multi-channel DAC requirements
Quality and Safety Features
Manufactured using analog-devices' high-quality, reliable semiconductor process
Designed and tested to meet industry standards for performance and reliability
Compatibility
The MAX506ACWP+T is compatible with a wide range of microcontrollers, DSPs, and other digital systems with a parallel data interface.
Application Areas
Industrial control and automation
Instrumentation and test equipment
Audio/video systems
Process control
Data acquisition and signal processing
Product Lifecycle
The MAX506ACWP+T is an active product, and there are no plans for discontinuation at this time. Analog Devices offers a range of similar and equivalent DAC products, such as the MAX517 and MAX521 series, which may be considered as alternative options. For the most up-to-date information on product availability and alternatives, please contact our website's sales team.