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The A06B-0590-B001 from FANUC is a rotary AC servo motor. Optimized for high performance, this motor is rated for a voltage of 156 VAC and features 3-phase operation with a stall torque of 37 Nm, equivalent to 327.5 lbf-in.
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| Manufacturer | FANUC |
|---|---|
| Product Line | A06B |
| Part Number | A06B-0590-B001 |
| Weight | 93.00 lbs (42.18 kg) |
| Name of Module | AC Servo Motor |
| Movement | Rotary |
| Encoder Type | Incremental |
| Encoder Resolution | 2000 ppr |
| Stall Torque | 37 Nm (327.5 lbf-in) |
| Stall Current | 16 A |
| Number of Phases | 3-phase |
| Number of Poles | 8-pole |
| Insulation | Class F |
| Rated Speed | 1200 rpm |
| Excitation | Permanent Magnet |
| Voltage Rating | 156 VAC |
| Pulse Coder | Yes |
| Shaft | Straight, Slick |
The AC servo motor sporting part number A06B-0590-B001, produced by FANUC, delivers outstanding performance characterized by rotary motion. It functions on a 3-phase system and is designed with an 8-pole arrangement, optimizing operational efficiency during use. This motor reliably operates at a rated speed of 1200 RPM, making it suitable for varying applications that demand precision in rotational movement.
With a voltage rating of 156 VAC, the A06B-0590-B001 sustains a substantial stall torque of 37 Nm, which translates to 327.5 lbf-in, allowing it to manage significant loads under stalled conditions.
The incremental encoder built into this motor has a resolution of 2000 pulses per revolution (ppr), enhancing the feedback precision necessary for accurate motion control. Stall current is rated at 16 A, accommodating various dynamic operating conditions effectively. The motor’s insulation class is rated as Class F, ensuring its reliability and durability in various environments.
Featuring a permanent magnet excitation mechanism, this unit promises consistent performance and robustness over time. A straight, slick shaft design allows for seamless integration in different setups, ensuring that users can adopt this motor in their systems without complications in the installation process. Additionally, it incorporates a pulse coder, adding to its utility in applications requiring positional feedback.