Essential CC-Link IE TSN technology for large-scale equipment
High-speed and high-accuracy coordination with a wide range of devices
With a single MELSEC MX controller, you can build a system that combines real-time
control communication for factory automation equipment with information
communication for IT systems.The IR-S type infrared flame detector is an excellent
high sensitivity type that excels in “detection reliability”, “maintainability” and “economy”.
It supports boiler fuel diversity and low NOx (nitrogen oxide) operation.
By detecting the “average value” and “variation” of the infrared intensity of the
burner flame light transmitted to the infrared sensor (semiconductor element)
via a light guide (optical fiber), the detector can distinguish between the flame
and the light due to the furnace.

The detector distinguishes between flame and infrared light due to the red heat
of the furnace wall and detects flame fluctuations in the burner's ignition zone.
The IR-S type infrared flame detector has low brightness flame detection sensitivity
and a wide dynamic range, so it can be used for a variety of fuels such as natural
gas, heavy oil, and coal.
Achieve multi-axis machine control with one controller
The MX Controller, equipped with a high-performance multi-core MPU as standard,
integrates sequence, motion, and network control, supporting up to 256 axes.
It supports mixed operation cycles, ensuring high-speed control even with multiple
axes. One controller delivers precise control of individual mechanisms and control
of the entire production line.
Achieving high-speed and high-accuracy motion control
Multi-core MPU
A high-speed multi-core MPU significantly increases processing performance,
including double-precision floating-point operations. Inter-core communication
allows multiple cores to perform different tasks simultaneously, enabling parallel
high-speed sequence, motion, and network control. Distributed control across
cores shortens the overall production cycle.
Core load can be monitored and adjusted for optimal machine control
The performance monitor visualizes the operation cycles and load status for each
core assigned to run the program.
Optimize performance by distributing load through mixed operation cycles based
on visualized load status.

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