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The Yaskawa CACR-F2TBI-E is a servo drive board designed for various industrial applications. It supports automation, milling, and advanced manufacturing tasks, ensuring stable performance in operational settings.
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| Manufacturer | Yaskawa |
|---|---|
| Product Line | SERVOPACK |
| Part Number | CACR-F2TBI-E |
| Weight | 0.88 lbs (0.40 kg) |
| Series | AC Drives |
| Product | Servo Drive Board |
| Spare Part/Accessory | Yes |
| Maximum Operating Humidity | 80% (non-condensing) |
| Maximum Storage Humidity | 80% (non-condensing) |
| Maximum Operating Altitude | 1000 meters above sea level without derating |
| Operating Temperature | 0 to 40 degrees Celsius |
| Storage Temperature | 0 to 50 degrees Celsius |
| Maximum Storage Altitude | 1000 meters above sea level |
| Environment | Clean indoor environment with no corrosive chemicals |
| Automation Applications | Supported |
| Milling Applications | Supported |
| Advanced Manufacturing Applications | Supported |
Yaskawa's CACR-F2TBI-E model is a specialized servo drive board intended for servomechanism applications in industrial environments. It functions effectively within clean indoor conditions, where exposure to corrosive chemicals is absent. Designed for operation in temperatures ranging from 0 to 40 degrees Celsius, this drive holds up to operational demands while maintaining performance stability. When stored, the unit can withstand temperatures reaching 50 degrees Celsius, aligning with the operational temperature specifications.
Humidity tolerance is substantial, as the CACR-F2TBI-E can function and remain stored in environments with a relative humidity level of up to 80%, without condensation affecting its components. At altitudes of up to 1000 meters above sea level, no performance derating is expected, making it suitable for diverse geographical locations.
The servo drive board supports a variety of applications, including those tailored for automation, milling, and advanced manufacturing processes, reflecting its versatility. Overall, the CACR-F2TBI-E is constructed to meet the needs of applications requiring precision and reliability while functioning within the specified environmental constraints.