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The FANUC A06B-0658-B011 is a highly efficient DC servo motor designed for precision control in industrial environments. Featuring a pulse encoder for feedback, this unit ensures accurate positioning and speed regulation.
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| Manufacturer | FANUC |
|---|---|
| Product Type | DC Servo Motor |
| Product Line | A06B |
| Part Number | A06B-0658-B011 |
| Feedback Type | Pulse encoder |
| Excitation Method | Permanent magnet |
| Cooling Method | Forced cooling |
| Encoder Resolution | 2,000 pulses per revolution |
| Rated Phase | 3-phase |
| Shaft End Type | Straight shaft |
| Input Frequency | 50 to 60 Hertz |
| Design Type | Slick design |
| Ambient Operating Temperature | 0 to 40°C (in a non-condensing environment) |
| Insulation Class | F class |
| 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 |
| Humidity Tolerance | 95% relative humidity or less (without condensation) |
| Speed Rating | 3,000 revolutions per minute (RPM) |
FANUC's A06B-0658-B011 is a DC servo motor engineered for advanced motion control applications. This motor utilizes a permanent magnet for excitation and features a force-cooling mechanism to effectively manage heat. It features a pulse encoder that delivers feedback with a resolution of 2,000 pulses per revolution, enabling precise movement control.
With a rated phase of three, the motor accommodates a power supply frequency ranging from 50 to 60 Hz. The shaft end is designed as a straight shaft, making it suitable for various mounting setups. The motor's sleek design further enhances adaptability in compact spaces.
Operating successfully within a temperature span of 0 to 40°C in non-condensing conditions, the motor also demonstrates a robust tolerance for storage temperatures between -20 and 60 60°C. It can function at a maximum altitude of 6,561.68 feet (2,000 meters) and can withstand humidity levels of up to 95% relative humidity without condensation. The insulation class is rated as F class, signifying the motor's ability to endure substantial thermal stress, making it a reliable choice for diverse operational needs.