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The FANUC A06B-0514-B272 is a three-phase AC servo motor designed for high-performance applications. With a maximum speed of 3000 RPM and a rated current of 10.2 Amps, it provides efficient operation and reliable torque of 5.9 Nm.
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| Manufacturer | FANUC |
|---|---|
| Product Type | AC Servo Motor |
| Product Line | A06B |
| Part Number | A06B-0514-B272 |
| Rated Speed | 3000 RPM |
| Shaft Type | Tapered (TPR) |
| Rated Current | 10.2 Amps |
| Rated Torque | 5.9 Nm |
| Phase | 3-Phase |
| Poles | 8 |
| Encoder Type | 2000P INC (incremental encoder) |
| Brake | Yes |
| Insulation Class | Class F |
| Cooling Method | Self-cooled |
| Temperature Range | 0 to 40 degrees Celsius |
| Humidity | Up to 90% (non-condensing) |
The A06B-0514-B272 model by FANUC is a robust AC servo motor designed for precise control in various industrial settings. It achieves a rated speed of 3000 RPM, making it suitable for fast and dynamic applications. Capable of delivering a rated current of 10.2 Amps, the motor generates a torque of 5.9 Nm, ensuring substantial power uptake for demanding tasks.
This motor operates on a three-phase system and features eight poles, ensuring consistent and reliable performance. The tapered shaft type (TPR) lends itself to effective mechanical connections, enhancing integration with other components. For feedback and positioning, a 2000P incremental encoder is incorporated, providing accurate data for motor control.
The A06B-0514-B272 is equipped with a built-in brake, enhancing operational security during sudden stops or power loss scenarios. Utilizing a self-cooling mechanism, the motor is designed to operate efficiently even during prolonged use. Its insulation classification of Class F indicates good resistance to heat, making the motor reliable across a wide range of temperatures, from 0 to 40 degrees Celsius.
Moreover, it can operate in conditions of up to 90% humidity, providing versatility in diverse environments. This motor is suitable for applications that require both durability and high fidelity across a wide range of temperature variations and moisture levels.