GE IS230SNRLH2A: Discrete Output Module for Reliable Industrial Control Systems
The GE IS230SNRLH2A discrete output module is a critical component for managing industrial control systems. It offers precise control over actuators and sensors, ensuring optimal performance and reliability in manufacturing and automation environments.
Detailed content
Extended Product Type:Discrete Output Module
Product ID:IS230SNRLH2A
GE Type Designation:Mark VI
Series:VIe
Dimensions:W: 2 cm x H: 18.6 cm x D: 26.1 cm
Weight:1.14 kg
Nominal Voltage:24/48/125 VDC
Max Current:5/1.2/0.6 A
Operating Temperature Range:-20°C to +60°C
Hazardous Location Approved:Yes
The GE IS230SNRLH2A is a critical component for industrial control applications, offering unparalleled reliability and performance in demanding environments. This discrete output module is specifically engineered to meet the needs of complex automation systems, ensuring precise control over actuators, valves, and other devices.
Crafted with advanced semiconductor technology, this module supports up to 24 independent output channels, each capable of delivering a maximum current of 5A at a stable DC voltage of 24V, providing robust control capabilities.
Operating within an extensive temperature range of -40°C to +70°C, the IS230SNRLH2A ensures continuous operation in extreme conditions without compromising performance, making it ideal for use in a wide array of industrial settings, including petrochemical plants, manufacturing lines, and energy production facilities.
Manufactured to stringent quality standards, this module complies with international safety certifications such as UL and CE, guaranteeing its compatibility and reliability in global markets.
With its compact design and durable construction, the IS230SNRLH2A is easily integrated into existing control systems, minimizing installation time and costs while maximizing system efficiency. Its compatibility with various industrial protocols facilitates seamless communication with other system components, enhancing overall operational performance.