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Fuji Electric FRN0020C2S-2U variable frequency drive optimises energy consumption by adjusting the frequency and voltage supplied to the motor, contributing to increased operational efficiency. It is ideal for fans, pumps, conveyors and other machinery where precise motor speed control is essential.
Working Mechanism:
Variable frequency drives (VFDs) transform incoming alternating current (AC) into direct current (DC) and subsequently utilise an inverter to convert the DC back into AC power, even at a different frequency.
The adjustment of the AC power frequency is achievable through the inverter's switching rate.
Users can elevate the VFD's frequency for motor acceleration, consequently increasing motor speed. Conversely, reducing the frequency decelerates the motor, providing control over its speed.
Features:
Fuji Electric FRN0020C2S-2U variable frequency drive has a dynamic torque vector control for precise power calculation based on motor load.
It has adjustable acceleration and deceleration times from 0 to 3600 seconds for precise speed control.
This variable frequency drive offers a wide output frequency range from 0.1 to 400 Hz, accommodating diverse industrial applications.
It is equipped with a brake chopper for efficient braking during deceleration.
This variable frequency drive has an open enclosure with an overall compact design (5-1/2 inches) suitable for various installations.
It has a built-in protection mechanism against external alarm input, ground fault, overcurrent and overheating.
This variable frequency drive compliance with international standards (CE, EN61800-5-1, UL 508C) ensures reliability and safety.
Compatible Accessories:
Fuji Electric AC Drive NEMA 1 Kit: This NEMA 1 enclosure prevents dust and incidental contact with the VFD, making it suitable for indoor applications. By seamlessly integrating with the VFD, this kit ensures a streamlined and reliable solution for motor speed control, contributing to efficient and optimised operations in industrial settings.
Frequently Asked Questions:
Q. How to maintain this variable frequency drive?
A.
Visually inspect all components showing excessive heating or discolouration due to corrosion / oil leaks.
Clean the accumulated dust & debris using dry compressed air.
Check the torque settings of connectors. Don't over-torque the connections.
Set the replacement schedule for components with short life cycles.
Q. How do I troubleshoot variable frequency drives?
A.
Check for loose connections.
Check for overheating.
Check for proper voltage & current levels.
Q. How does the dynamic torque vector control feature of the FRN0020C2S-2U contribute to motor performance?
A. Dynamic torque vector control calculates and adjusts power based on motor load, optimising torque for improved overall motor performance.
Over breaking, Overvoltage, Under voltage, Motor Thermal Overload, Drive Thermal Overload, Phase to Phase or Phase to Ground Short Circuit, Phase Failure
Over breaking, Overvoltage, Under voltage, Motor Thermal Overload, Drive Thermal Overload, Phase to Phase or Phase to Ground Short Circuit, Phase Failure
Over breaking, Overvoltage, Under voltage, Motor Thermal Overload, Drive Thermal Overload, Phase to Phase or Phase to Ground Short Circuit, Phase Failure
Over breaking, Overvoltage, Under voltage, Motor Thermal Overload, Drive Thermal Overload, Phase to Phase or Phase to Ground Short Circuit, Phase Failure
Overload, Overvoltage, Under voltage, Input phase loss, Overheating, Short-circuit, Ground fault, Motor overload, DB resistor overheating, Stall prevention, Output phase loss, Motor protection by PTC thermistor, Auto reset
Overload, Overvoltage, Under voltage, Input phase loss, Overheating, Short-circuit, Ground fault, Motor overload, DB resistor overheating, Stall prevention, Output phase loss, Motor protection by PTC thermistor, Auto reset