Synchronous

Toshiba Synchronous Motors operate at a constant speed, synchronized with the supply current and frequency, making them essential for various industries. They drive heavy machinery like compressors, pumps, fans, and mills, ensuring precise speed control. These motors enhance system efficiency through power factor correction, reduce energy losses, and support high-speed applications such as blowers and DC generators. They also aid in voltage regulation by acting as variable inductors or capacitors, stabilizing transmission line voltage. With reliable performance and energy efficiency, Toshiba Synchronous Motors are a trusted solution for demanding industrial applications.

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Overview

Efficiency

Generally more efficient than induction motors, especially at higher loads, often reaching up to 95% or higher in larger industrial sizes.

 

Less Maintenance

Robust construction, durable materials, and fewer moving parts, help minimize wear and tear. Predictive and preventive maintenance programs, along with built-in damping mechanisms, contribute to long-term reliability and reduced downtime.

 

Compact Design

Modern synchronous motors are designed to be smaller and lighter than traditional models, enabling easier integration into space-constrained systems. Their compact design enhances flexibility across various applications.

 

Ease of Installation

These motors are often designed with features that streamline installation, such as standard IEC frame compatibility for easy mounting and alignment with other equipment. Many models also include quick-connect electrical terminals and pre-configured mounting options, reducing setup time and complexity.

 

Reduced Weight

The smaller size and lighter weight of these motors simplify handling during installation while also minimizing the overall equipment footprint.

 

Versatile Mounting Options

Synchronous motors support multiple orientations and configurations, offering greater flexibility across a wide range of applications.

 

Enhanced Durability

Despite their compact size, these motors are engineered for durability and reliability, requiring minimal maintenance over time.

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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