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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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| Manufacturer | Yaskawa |
|---|---|
| Product Type | Ultra Compact All-Digital Inverter |
| Product Line | VS Mini |
| Part Number | CIMR-XCBA20P4 |
| Weight | 1.38 lbs (0.62 kg) |
| Series | AC Drives |
| Inverter Type | Low-noise inverter |
| Inverter Standards | Japan domestic standards |
| Rated Phase | 3-phase |
| Supply Voltage Class | 200 Volts AC |
| Applicable Motor Output | 0.4 kilowatts (maximum) |
| Inverter Capacity | 1.1 kilovolt-amperes |
| Rated Output Current | 3 Amperes |
| Output Voltage | 0 to 230 Volts AC (maximum) |
| Control Method | Sinusoidal Pulse Width Modulation (PWM) control |
| Frequency Control Range | 0.5 to 400 Hertz |
| Applicable Motor Horsepower | 0.5 horsepower (maximum) |
| Overload Capacity | 150% of 3 Amperes for 60 seconds |
| Cooling Method | Self-cooling |
| Motor Overload Protection Type | Electronic 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.