The Schneider TSXH5744M is a Unity Hot Standby Processor designed for the Modicon Premium Automation platform. This advanced processor is engineered to ensure high availability and reliability in industrial automation systems. It supports a single rack configuration with options for 6, 8, or 12 slots, making it versatile for various application needs.
Equipped with robust communication capabilities, the TSXH5744M features Ethernet TCP/IP RJ45, USB type A, and a non-isolated serial link via a female mini DIN RS485 port. These interfaces facilitate seamless integration and efficient data exchange within your automation network.
The processor boasts a substantial I/O capacity, supporting up to 2048 discrete I/O and 256 analogue I/O points. It also accommodates up to 64 application-specific channels and 20 to 60 simple process control loops, providing extensive flexibility for complex automation tasks.
Memory management is a key strength of the TSXH5744M, with internal RAM configurations that include 2048 kB for programs and 440 kB for data when using a PCMCIA card. Without the card, it offers 440 kB for both program and data storage. Additionally, a PCMCIA card can provide an extra 16384 kB for data storage, ensuring ample space for extensive applications.
The processor's performance is marked by its efficient execution times, ranging from 0.039 to 0.073 microseconds per instruction, depending on the task complexity and whether a PCMCIA card is used. It can handle up to 15.75 Kinst/ms for Boolean instructions, ensuring rapid processing and response times.
Designed to operate in demanding environments, the TSXH5744M can function within a temperature range of 0 to 60°C and can be stored between -25 to 70°C. It supports relative humidity levels from 10 to 95% without condensation during operation and 5 to 95% during storage. The unit is built to withstand altitudes up to 2000 meters and adheres to IP20 protection standards.
The Schneider TSXH5744M is a reliable and high-performance solution for maintaining continuous operation in critical industrial automation systems, ensuring minimal downtime and optimal productivity.