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The FANUC A06B-0612-B081 DC servo motor is designed for robust performance in dynamic applications. Operating at a speed of 2,000 RPM, this motor utilizes permanent magnet excitation and operates on a 3-phase system, ensuring effective power delivery and control.
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| Manufacturer | FANUC |
|---|---|
| Product Type | DC Servo Motor |
| Product Line | A06B |
| Part Number | A06B-0612-B081 |
| Excitation Method | Permanent magnet |
| Rated Phase | 3-phase |
| Speed Rating | 2,000 revolutions per minute (RPM) |
| Insulation Class | H class |
| Drive Feedback Type | Equipped with tachogenerator |
| Shaft End Type | Tapered shaft |
| Storage Temperature | -20 to 60°C (in a non-condensing environment) |
| Input Frequency | 50 to 60 Hertz |
| Humidity Tolerance | 95% relative humidity or less (without condensation) |
| Encoder Resolution | 2,000 pulses per revolution |
| Local Signalling | Five display lamps |
| Feedback Type | Pulse encoder |
The A06B-0612-B081 model from FANUC is a high-performance DC servo motor built to meet demanding operational needs. It runs efficiently at a maximum speed of 2,000 revolutions per minute (RPM) and operates on a 3-phase system. Its excitation method is based on permanent magnets, which aids in providing reliable performance.
This servo motor is designed with a robust insulation class rated as H, indicating resilience to higher temperatures. Operating temperatures can range from -20 to 60°C without any concerns in a dry environment. For better control and efficiency, it includes feedback capabilities through a pulse encoder, achieving a resolution of 2,000 pulses per revolution. Additionally, feedback is facilitated by a tachogenerator, ensuring precise motor performance.
The motor can handle input frequencies within 50 to 60 Hertz. It is also designed to tolerate a relative humidity level of up to 95%, but it must be ensured that no condensation occurs. A notable design feature includes a tapered shaft end that supports various coupling options. For local monitoring, five display lamps are integrated into the design, providing clear operational status at a glance.