MTX® Outdoor

Toshiba’s MTX® NEMA 3R outdoor medium voltage adjustable speed drive features an advanced enclosure design and power section topology. As the world’s first medium voltage drive specifically designed for outdoor installation, the MTX is engineered for remote applications or locations where a building does not exist. It can be mounted virtually anywhere, from jungles to deserts, eliminating the need for indoor floor space.   The MTX is an excellent option for extreme environmental conditions and challenging remote installations.

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Overview

Lower Cost of Ownership

Eliminates the expense of integrating drives into buildings and the need for building air conditioning units, resulting in significant lifetime operational cost savings by removing the necessity for air handling units.

 

Outdoor Enclosure Design

A hybrid enclosure featuring a force-air cooled drive cabinet and a convection-cooled transformer cabinet, enabling reliable operation in temperatures ranging from -20°C to 50°C.

 

Integrated Isolation Transformer

Reduces overall harmonics to meet or exceed IEEE 519-2014 standards using a phase shifting transformer. The integral transformer simplifies design and minimizes the overall footprint, offering a more efficient and compact solution.

 

Synchronous Motor Transfer

Enables control of multiple motors using a single drive, providing smooth transitions between drive and utility power by eliminating current and torque transients.

 

Three Cables In, Three Cables Out

Control and cooling fan power are derived internally, eliminating the need for secondary power sources and simplifying installation.

 

Versatile Control Interface

Offers eight digital inputs, six digital outputs, two analog inputs, and eight analog outputs (with the ability to expand up to eight outputs). Each input/output can be programmed for various functions for ultimate flexibility.

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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