GE IS220PDOAH1A Discrete Output Pack, Industrial Control Interface Module
The GE IS220PDOAH1A is a discrete output module designed for integration with up to two I/O Ethernet networks. It supports various terminal boards and provides reliable digital output capabilities.
Brand:GE
Model:IS220PDOAH1A
Compatibility:Compatible with Six Discrete Output Terminal Boards, including SRLY and TRLY Connectors
Dimensions:3.25″ high x 1.65″ wide x 4.78″ deep
Memory Types:Flash and RAM
Number of Ethernet Ports:Two
Number of LEDs:Four; Power, Attention, TxRx, and Link
Power Management:28 V Input
Relay Channels:Quantity 12
Technology:Surface-Mount
The GE IS220PDOAH1A is a precision-engineered industrial control module designed to provide seamless integration into automation systems. As a Discrete Output Pack, it supports up to two I/O Ethernet networks and interfaces efficiently with multiple discrete output terminal boards, making it a versatile solution for complex industrial applications.
This module is built with surface-mount technology to ensure high durability and stable performance in challenging environments. Its compact dimensions make it ideal for installations where space is a constraint, while the dual Ethernet ports enable robust communication capabilities for real-time data exchange.
Featuring 12 relay channels and four LED indicators (Power, Attention, TxRx, and Link), the IS220PDOAH1A offers clear status monitoring and efficient control over industrial processes. The inclusion of Flash and RAM memory types enhances data retention and processing speed, ensuring minimal latency in critical operations.
Designed for ease of integration, the module is compatible with various control systems and includes SRLY and TRLY connectors, a DC connector, and two RJ45 connectors for flexible deployment. Comprehensive technical support and user-friendly documentation simplify installation, maintenance, and troubleshooting.
Whether used in manufacturing, energy management, or process automation, the GE IS220PDOAH1A delivers high reliability, precision, and scalability. Its robust design and advanced features make it an essential component for upgrading or expanding existing industrial control systems to meet evolving operational demands.













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