Промышленное применение

Промышленное применение

Промышленное применение

ATA QBLV10 series low voltage frequency converter (power range: 75kW-90kW)

Время выпуска:

2022-07-13 13:35

Excellent acceleration and deceleration performance

Outstanding current and voltage control technology, alternating acceleration and deceleration repeatedly with a 0.1S command, ensuring stable and jump-free operation of the inverter.

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Rich in features and widely applicable

Output frequency of 0 to 3000HZ, allowing the ATA QBLV10 series products to be used in various fields such as air compressors, central air conditioning, water pumps, textiles, plastics, ceramics, mining, pharmaceuticals, and processing machinery.

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Reliable components

Utilizes Infineon's seventh-generation IGBT, reducing losses by 30% compared to the previous generation.

 

Significant heat dissipation

Employs computer simulation technology to reasonably distribute heat sources, significantly reducing the temperature rise of components.

 

Simple wiring

Adopts a top-in and bottom-out wiring method, which better meets on-site working conditions and is favored by customers.

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Modular structural design

Portable cooling fan for easier and more operable fan replacement. The modular design concept provides users with various general application controls, and the output capability of the ATA QBLV10 series products has been proven to meet the requirements of the vast majority of industrial controls.

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Phase-locking function

The ATA QBLV10 series inverter soft starter significantly reduces the switching current when the motor switches from variable frequency operation to power frequency operation.

The switching current of ordinary inverters without phase-locking function is 4-7 times or higher than the rated current of the motor, while the switching current of the ATA QBLV10 series inverter soft starter is below 1.5 times the rated current of the motor, with most applications below 1 time the rated current of the motor.

 

Strong adaptive performance

Intelligently adjusts the acceleration and deceleration rates based on the load operating status. By intelligently identifying the braking strength of the magnetic flux, it minimizes deceleration time; intelligently determines the energy-saving strength, maximizing the reduction of energy consumption during motor operation.