Manufacturer Part Number
LDC1041NHRR
Manufacturer
Texas Instruments
Introduction
The LDC1041NHRR is a dual-channel inductance-to-digital converter (LDC) that provides an accurate and reliable solution for measuring changes in inductance. It features advanced signal processing capabilities, enabling precise measurements of various inductive sensors, such as those used in proximity detection, position sensing, and fluid level monitoring applications.
Product Features and Performance
Dual-channel LDC with 8-bit and 24-bit resolution modes
Sampling rate optimized for various applications
Wide operating voltage range of 1.8V to 5.25V
Wide operating temperature range of -40°C to 125°C
Supports SPI communication interface
Compact 16-WFDFN exposed pad package
Product Advantages
Highly accurate and stable inductance measurements
Seamless integration with a wide range of inductive sensors
Low power consumption for efficient energy usage
Robust design for reliable operation in harsh environments
Key Reasons to Choose This Product
Exceptional performance and precision in inductance measurements
Versatile design suitable for a variety of applications
Efficient power management for extended battery life
Compact and space-saving package for easy integration
Quality and Safety Features
Rigorous quality control and testing procedures
Compliance with relevant industry standards and regulations
Designed for reliable and safe operation
Compatibility
The LDC1041NHRR is compatible with a wide range of inductive sensors and can be easily integrated into various systems and applications.
Application Areas
Proximity detection
Position sensing
Fluid level monitoring
Rotary encoder applications
Industrial automation and control systems
Product Lifecycle
The LDC1041NHRR is an active product, and there are no plans for discontinuation at this time. There are no direct equivalent or alternative models available from Texas Instruments. For the latest information or to discuss custom requirements, please contact our sales team through our website.