Manufacturer Part Number
LTC2756ACG#PBF
Manufacturer
analog-devices
Introduction
The LTC2756ACG#PBF is a high-performance, 18-bit, multiplying digital-to-analog converter (DAC) with a wide input voltage range and an unbuffered current output. It features excellent linearity, low power consumption, and a fast 2.1μs settling time, making it ideal for a variety of industrial and instrumentation applications.
Product Features and Performance
18-bit resolution with ±0.5 LSB maximum INL and ±0.25 LSB maximum DNL
1-channel, unbuffered current output
Wide supply voltage range of 2.7V to 5.5V for both analog and digital sections
1μs typical settling time
Differential output
SPI interface for data and control
External reference support
Product Advantages
Excellent linearity and low noise performance
Wide operating voltage range
Fast settling time for high-speed applications
Flexible SPI interface for easy integration
Versatile current output suitable for a variety of loads
Key Reasons to Choose This Product
High-precision 18-bit performance for demanding applications
Low power consumption and compact 28-SSOP package
Reliable and robust design from a trusted manufacturer
Suitable for a wide range of industrial and instrumentation use cases
Quality and Safety Features
Rigorous quality control and testing procedures
Compliance with relevant industry standards and regulations
Robust design to withstand environmental stresses
Compatibility
The LTC2756ACG#PBF is compatible with a variety of industrial and instrumentation systems that require high-performance, precision digital-to-analog conversion.
Application Areas
Industrial process control and automation
Test and measurement equipment
Instrumentation and data acquisition systems
Medical devices and diagnostic equipment
High-precision control systems
Product Lifecycle
The LTC2756ACG#PBF is an active product, currently available. There are no immediate plans for discontinuation. Customers should contact our website's sales team for information on any potential alternative or equivalent models.