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The A06B-1015-B910#0215 model from FANUC is a powerful 15 kW AC spindle motor designed for high-efficiency performance. This motor features a tapered shaft design, enabling precise connections during operation, and incorporates overcurrent and thermal overload protection for safe functionality.
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| Manufacturer | FANUC |
|---|---|
| Product Type | AC Spindle Motor |
| Product Line | A06B |
| Part Number | A06B-1015-B910#0215 |
| Power Rating | 15 kW |
| Spindle Interface | TPR (tapered) shaft design |
| Shaft Design | Hybrid SLK (slick) surface |
| Mounting Style | Integrated flange |
| Encoder Feedback | Incremental encoder |
| Keyway Configuration | Dual-key shaft coupling |
| Cooling Method | Forced air cooling (fan-assisted) |
| Operating Temperature Range | -10°C to 50°C |
| Max Speed | 4,500 RPM |
| Motor Protection | Includes overcurrent and thermal overload protection |
The FANUC A06B-1015-B910#0215 is categorized as an AC spindle motor tailored for demanding industrial applications. With a power output of 15 kW, this motor is engineered to deliver robust performance. It incorporates a TPR (tapered) shaft design, which facilitates efficient spindle connections, enhancing overall operational effectiveness.
The motor's shaft features a hybrid SLK design, providing a slick surface that minimizes resistance. It is meant for compatible integration through an integrated flange mounting style, making installation more convenient. The motor utilizes an incremental encoder for precise positional feedback, ensuring accurate control throughout its range of operations.
For stability, the keyway configuration includes a dual-key shaft coupling, reinforcing the connection during high-speed operations. Under extreme conditions, the motor can achieve a maximum speed of 4,500 RPM. Effective cooling is maintained through a forced air cooling mechanism, which is fan-assisted to promote longevity and reliability. Operating reliably within a temperature spectrum from -10°C to 50°C, this spindle motor is equipped with built-in overcurrent and thermal overload protections, providing safety and dependability during use.