GE IC694MDL646: Compact I/O Module for Industrial Automation, High Performance & Durability
Type:Input Module
Model:IC694MDL646
Series:Compact I/O
Module Type:Discrete Input
Number of Channels:16
Channel Configuration:16 Independent Inputs
Operating Voltage Range:12-60V DC
Current Consumption:Max. 30mA per channel
Communication Interface:RS-485
Operating Temperature:-40°C to +70°C
Humidity Range:5% to 95% non-condensing
Enclosure Rating:IP20
Dimensions:120mm x 110mm x 112mm
Weight:0.2kg
Power Supply:Separate Power Supply Required
The GE IC694MDL646 is engineered for industrial automation applications requiring reliable and efficient signal processing. With its compact design and high-density configuration, this input module maximizes space utilization in control cabinets, making it ideal for various industries including manufacturing, oil & gas, and automotive sectors.
Featuring 16 independent discrete input channels, the IC694MDL646 supports a wide range of sensors and switches, enabling seamless integration with control systems. Each channel is capable of handling signals up to 60V DC at a maximum current consumption of 30mA, ensuring compatibility with diverse sensor types.
This input module comes equipped with an RS-485 communication interface, facilitating easy connection to field devices and control systems. Its rugged construction and IP20 enclosure rating guarantee durability against dust and light splashes, ensuring dependable performance in harsh industrial environments.
Operated within an extended temperature range from -40°C to +70°C, the IC694MDL646 is suitable for extreme conditions encountered in manufacturing floors, process plants, and outdoor applications. With its ability to withstand varying humidity levels without condensation, it ensures continuous operation in diverse climate conditions.
For optimal performance, a separate power supply is recommended for the IC694MDL646. This allows for better management of electrical demands and ensures reliable power distribution to the input channels, enhancing the overall system reliability and efficiency.