Regen

Toshiba’s Regen medium voltage adjustable speed drive is a fully regenerative system that can be easily configured with commonly used options for a hassle-free, turnkey installation. While the standard T300MV2® drive supports only two-quadrant operation, adding the Regen module upgrades it to a four-quadrant operation with an active front end. This enhancement allows energy from an induction or synchronous motor to be efficiently regenerated back into the power grid, with adjustable power factor control and minimal reflected harmonics.

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Overview

100% Regeneration 

The Regen medium voltage speed drive is a 100% regenerative drive that can be configured with commonly-used options for an easy-to-install, turn-key package.

 

Four Quadrant Operation

The standard T300MV2® adjustable speed drive is only capable of two-quadrant operation. When the T300MV2® is configured with the Regen module, it is equipped with an active front end and is capable of four quadrant operation.

 

Synchronous Motor Control

Allows control, transfer or capture of multiple motors between adjustable speed drive control and utility power. Single drive synchronous systems reduce overall system footprint and cost, compared to multiple single drive/motor designs. Toshiba’s synchronous motor transfer requires additional motor and control center.

 

Three Cables In, Three Cables Out 

Incorporates a standard pad-lockable input disconnect switch and interlocked doors. The control and auxiliary power are derived internally, eliminating the need for a secondary power source and helping to improve the safety of system personnel.

 

Versatile Control Interface

Offers ten digital inputs, ten digital outputs, two analog inputs, and eight analog outputs as standard. Each of the inputs/outputs can be programmed for a variety of different functions for ultimate flexibility.

 

Multi-Level PWM Output

Closely simulates a true sine wave by employing several layers of switching devices to provide smooth output waveform to the motor, virtual eliminating motor failures caused by insulation stress and long-lead-length issues. These output waveforms are friendly to existing non-inverter duty motors without a need to upgrade the motor.

 

Plain-English LCD Electronic Operator Interface (EOl)

Allows for quick, user-friendly programming. Faults are logged with date and time stamps.

 

Toshiba’s Proprietary Windows®-Based MVD Tool Software

Designed to offer a full range of programming and monitoring tools. Operating data can be captured with the snapshot feature, and up to 12 drive signals can be trended. In addition, the MVD Tool offers traceback data for detailed fault analysis.

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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