Processor Type:Microprocessor-based
Operating System:Flexible, compatible with multiple software environments
Memory Capacity:Up to 32K words
Programming Languages:Ladder logic, Structured Text, SFC/SFB, etc.
Communication Interfaces:RS-232, RS-485, Ethernet
Power Supply:12V DC
Dimensions (WxHxD):4.3 x 1.4 x 4.3 inches
Weight:Approximately 1.0 lbs
Environmental Conditions:Temperature: 32°F to 122°F (-0°C to 50°C), Humidity: 10% to 90% non-condensing
The GE 1747-L30C Controller Module is engineered for seamless integration into complex industrial systems, offering unparalleled performance and reliability. This state-of-the-art module supports a wide range of applications from process control to machine automation, ensuring precision and efficiency in every operation.
Equipped with robust memory capacity, it ensures smooth data processing and storage capabilities, enabling users to handle extensive tasks without compromising system performance. Its extensive input/output channels facilitate a flexible connection to sensors and actuators, providing enhanced control over processes.
Designed for durability and operational versatility, this controller module operates within a broad temperature range (-40°C to 70°C), making it suitable for diverse environmental conditions encountered in industrial settings. Its power supply voltage of 12-24V DC ensures compatibility with a wide array of power sources, ensuring reliable operation under various conditions.
Featuring a communication interface compatible with RS-485, the 1747-L30C Controller Module seamlessly integrates with other components in the system, allowing for efficient data exchange and command execution. This feature is crucial for enhancing system responsiveness and coordination between different components.
Compact yet powerful, the 1747-L30C Controller Module is meticulously designed for ease of installation and maintenance, minimizing downtime and reducing operational costs. Its lightweight design (0.6 kg) facilitates quick setup and relocation if needed, offering flexibility in deployment scenarios.
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