Performance:High-performance modular controller
Memory Type:ECC Memory
Heat Dissipation:Low heat dissipation eliminates the need for a fan
Redundancy Features:CPU self-diagnostics, temperature monitoring, I/O diagnostics, and more
Duplexing Capability:CPU, power supply module, local bus (SB bus), and control network can all be duplexed
Hot-Swap Functionality:All modules are hot-swappable
Foundation Fieldbus Compatibility:Can function as link active schedulers (LASs) for low-speed voltage mode (H1) FOUNDATION Fieldbus
The Yokogawa NFPW444-10 S2 industrial control power module is designed to meet the most demanding industrial control requirements. This high-performance modular controller ensures optimal system performance and reliability, making it an ideal choice for critical operations.
Equipped with ECC (Error-Correcting Code) memory, this power module is exceptionally reliable and resilient against data corruption, ensuring continuous operation even under harsh conditions. Its innovative design eliminates the need for a fan, resulting in reduced maintenance costs and enhanced operational efficiency.
Advanced RAS (Reliability, Availability, Serviceability) features, including CPU self-diagnostics, temperature monitoring, and I/O diagnostics, provide real-time insights into the health of the system, enabling proactive maintenance and minimizing downtime.
With the capability to be duplexed across the CPU, power supply module, local bus (SB bus), and control network, the Yokogawa NFPW444-10 S2 ensures seamless operation and redundancy, enhancing system availability. Furthermore, its hot-swappable modules allow for quick and easy replacement without disrupting system operation.
This module is fully compatible with the low-speed voltage mode (H1) FOUNDATION Fieldbus, making it versatile for a wide range of industrial applications. Its ability to function as a link active scheduler further enhances network reliability, supporting efficient data communication and control processes in complex systems.
There are no reviews yet.