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The FANUC A06B-0612-B083 is designed as a DC servo motor suitable for precision applications. It operates with an input frequency of 50 to 60 Hertz and is rated for a maximum speed of 2,000 RPM, making it efficient for various industrial tasks.
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| Manufacturer | FANUC |
|---|---|
| Product Type | DC Servo Motor |
| Product Line | A06B |
| Part Number | A06B-0612-B083 |
| Insulation Class | H class |
| Ambient Operating Temperature | 0 to 40°C (in a non-condensing environment) |
| Feedback Type | Pulse encoder |
| Input Frequency | 50 to 60 Hertz |
| Humidity Tolerance | 95% relative humidity or less (without condensation) |
| Rated Phase | 3-phase |
| Speed Rating | 2,000 revolutions per minute (RPM) |
| Local Signalling | Five display lamps |
| Storage Temperature | -20 to 60°C (in a non-condensing environment) |
| Maximum Operating Altitude | Up to 6,561.68 feet (2,000 meters) above sea level |
| Shaft End Type | Tapered shaft |
| Encoder Resolution | 3,000 pulses per revolution |
| Excitation Method | Permanent magnet |
The A06B-0612-B083 model from FANUC falls into the category of DC servo motors, engineered for high-performance applications. This motor is constructed with H class insulation, ensuring it can operate effectively in environments with temperatures ranging from 0 to 40°C, given that conditions remain non-condensing. The unit is designed to operate on a 3-phase electrical system, facilitating enhanced efficiency across various loads.
With a remarkable speed capability of 2,000 revolutions per minute (RPM), this motor is equipped to meet the demands of dynamic applications. Feedback is accurately provided by a pulse encoder, featuring a resolution of 3,000 pulses per revolution, which supports precise motion control. The input frequency for operation is set between 50 to 60 Hertz.
For operational resilience, this motor tolerates humidity levels of up to 95% relative humidity without condensation. Additionally, it is suitable for storage in a range of -20 to 60°C, allowing versatile use in diverse industrial environments. The tapered shaft end design enhances integration with other mechanical components. Furthermore, the motor can function at altitudes reaching up to 6,561.68 feet (2,000 meters) above sea level, making it reliable in various installation scenarios. Local signaling is facilitated through five display lamps to provide operational statuses.