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Yaskawa VS Mini CIMR-XCBA20P4

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CIMR-XCBA20P4

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The Yaskawa CIMR-XCBA20P4 is designed as an ultra-compact all-digital inverter. This low-noise model conforms to Japan's domestic standards, making it suitable for precise applications.

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Technical specifications for CIMR-XCBA20P4

ManufacturerYaskawa
Product TypeUltra Compact All-Digital Inverter
Product LineVS Mini
Part NumberCIMR-XCBA20P4
Weight1.38 lbs (0.62 kg)
SeriesAC Drives
Inverter TypeLow-noise inverter
Inverter StandardsJapan domestic standards
Rated Phase3-phase
Supply Voltage Class200 Volts AC
Applicable Motor Output0.4 kilowatts (maximum)
Inverter Capacity1.1 kilovolt-amperes
Rated Output Current3 Amperes
Output Voltage0 to 230 Volts AC (maximum)
Control MethodSinusoidal Pulse Width Modulation (PWM) control
Frequency Control Range0.5 to 400 Hertz
Applicable Motor Horsepower0.5 horsepower (maximum)
Overload Capacity150% of 3 Amperes for 60 seconds
Cooling MethodSelf-cooling
Motor Overload Protection TypeElectronic thermal overload relay

The CIMR-XCBA20P4 from Yaskawa is noted for its ultra-compact construction, designed to minimize noise during operation. This inverter adheres to standard requirements set for Japan, ensuring reliability in domestic settings. Operating on a 3-phase system, it is rated for a supply voltage of 200 Volts AC. The maximum output for connected motors can reach 0.4 kilowatts, while its overall inverter capacity extends to 1.1 kilovolt-amperes.

With a rated output current of 3 Amperes, this model can approximately deliver an output voltage ranging from 0 to 230 Volts AC. A sinusoidal pulse width modulation (PWM) control method facilitates smooth and efficient motor operation. The frequency control capability of this inverter spans from 0.5 Hertz to 400 Hertz, allowing for a wide range of applications. The unit supports motors with a maximum horsepower of 0.5, making it effective for various small to medium motor-driven tasks.

For overload scenarios, the CIMR-XCBA20P4 has a robust design that allows for 150% of its rated current for up to 60 seconds, accommodating sudden increases in demand. Cooling is handled through a self-cooling mechanism, ensuring that the inverter remains within operational temperature limits. Additionally, it includes an electronic thermal overload relay for motor protection, safeguarding against potential damage from overload conditions.