Human Machine Interface (HMI)

Toshiba’s Micro PLCs and HMI Series are designed for high reliability and advanced control performance, maximizing productivity by minimizing process inefficiencies. These programmable logic controllers (PLCs) and human machine interfaces (HMI) provide precise automation, diagnostics, and flexible control to support a wide range of system processes.

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Overview

Complete Micro PLC & HMI System

  • Gain operational visibility quickly
  • Access to alarms and process trend
  • Provide discrete, precision control with remote access option
  • Access to process data logs
  • Information to improve process

 

V100/V200 Micro PLCs

The Toshiba Micro PLC V100/V200 series is engineered to optimize
factory operations, enhancing productivity, efficiency, and quality.
These PLCs are adept at remote monitoring and logging critical runtime
data such as machine productivity and operating temperatures,
providing a seamless production flow. With the ability to generate alarms
during machine malfunctions, they reduce downtime. Their rapid scan times and versatile communication options, including USB, serial, and
ethernet, along with expansion I/O capabilities, make them ideal for intricate, high-speed batch processes.

 

Advanced Human Machine Interface (HMI)

Toshiba Human Machine Interface (HMI) are engineered to enhance user experience and operational efficiency in complex applications. Featuring high-resolution touchscreens, built-in WebServer, VNC Server, and MQTT Protocol, these interfaces offer clear visualization and control of machine
processes. The HMI logs data for trend analysis, enabling operators to
monitor performance over time. Additionally, integrated alarms and
reliable messaging systems provide immediate alerts to operators, further enhancing functionality responsiveness and availability.

Insulated Bearings

  • An electric motor operating on an adjustable speed drive is at risk for premature bearing failure caused by stray currents. Experience indicates using insulated bearings on both ends of the motors is the most effective way to protect the motor from destructive currents. A high level of bearing protection is especially beneficial in applications where motor maintenance and replacement are difficult.
  • Extended Horsepower Capability

  • Extended horsepower capability allows a smaller motor to run at a higher horsepower than its baseline depending on the application requirements. This provides motor users potential cost savings while achieving the same motor performance.
  • Insulation with Wide Thermal Capability

  • Critical cooling motors utilize many Class H insulation materials in its winding designs, which provides increased thermal protection. These motors operate with a very low temperature rise at rated conditions, giving them a wide thermal margin and extended motor life.
  • Low Vibration

  • A vibration level exceeding NEMA MG1 requirements provides stability and durability by prolonging motor and bearing life and helping to reduce downtime.
  • Specifications

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