Advanced Analog Signal Acquisition for Industrial Applications
Honeywell's CC-GAIX11 Analog Input Module is engineered to meet the rigorous demands of industrial process control systems. Designed for high-precision analog signal acquisition, this module ensures accurate and reliable data collection from a range of field devices, providing critical insights for optimal process performance.
Key Features of the CC-GAIX11 Analog Input Module
Honeywell's CC-GAIX11 A 16 Input Channels: Supports multiple channels for efficient data acquisition from various sensors.
Precision Performance: Features an accuracy of ±0.02% full scale + 2 least significant bits (LSBs), ensuring the highest level of precision.
Wide Signal Range: Accommodates analog signals ranging from -10 to +10 Volts DC, making it adaptable to different measurement needs.
Power Supply Flexibility: Operates on a power supply range of 12 to 36 Volts DC, providing compatibility with a variety of industrial systems.
Built for Harsh Industrial Environments
Operating Temperature Range: -40°C to +70°C, ensuring performance in both high and low-temperature environments.
Humidity Tolerance: 10% to 95% relative humidity (RH), non-condensing, making it suitable for a wide range of industrial environments.
Its rugged construction ensures that the CC-GAIX11 continues to function reliably, even in extreme conditions, making it ideal for industrial sectors where environmental stability is critical.
Seamless Integration and Communication
The Honeywell CC-GAIX11 Analog Input Module is designed for seamless integration with a variety of industrial control systems, making it highly versatile for both new installations and retrofitting projects.
Communication Protocol: It supports RS-485 communication, a widely accepted industrial protocol, ensuring easy connectivity with other systems and devices.
MODBUS RTU: The CC-GAIX11 uses the MODBUS RTU communication protocol for reliable and efficient data exchange, simplifying integration into existing industrial networks.
This ensures that data from sensors and field devices can be easily incorporated into broader control systems, allowing for real-time decision-making and enhanced operational efficiency.
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