Product image is representative; revision or series may vary. Contact us to request a specific version.
The FANUC A06B-0603-B531 is a specialized DC servo motor tailored for precise applications in CNC machinery and robotics. With a rated speed of 1000 RPM and a robust rated torque of 12 Nm, this component is designed for accurate motion control.
We sell industrial automation parts backed by our free 2-Year DO Supply Warranty.
Same-day domestic and fast international shipping with UPS, FedEx, DHL, and more.
AMEX, Visa, MasterCard, Discover, wire transfer, net terms, and more.
Repairs and exchanges are available for all automation products.
Drop shipping, blind shipping, and account shipping with no extra fees.
| Manufacturer | FANUC |
|---|---|
| Product Line | A06B |
| Part Number | A06B-0603-B531 |
| Weight | 90.00 lbs (40.82 kg) |
| Name | DC Servo Motor |
| Shaft Specification | Tapered Shaft |
| Pulse Count | 2000 |
| Rated Current | 24A |
| Rated Torque | 12 Nm |
| Rated Speed | 1000 RPM |
| Application | Designed for CNC machinery and robotics |
| Voltage Type | DC |
| Voltage Rating | 130 V |
| Maximum Operating Temperature | 40° |
| Insulation Class | Class H |
| Excitation | Permanent Magnetic Field |
The FANUC A06B-0603-B531 is a DC servo motor, specifically designed to meet the demanding needs of CNC machinery and robotic applications. Rated for a maximum voltage of 130 V, this motor ensures effective performance under load. It can maintain a constant torque of 12 Nm at a rated current of 24 A, allowing for reliable and sustained operation.
Additionally, the design features a tapered shaft, which aids in ensuring proper fit and alignment during installation. The motor operates at a rated speed of 1000 RPM, suitable for tasks requiring precision control. The pulse count of 2000 adds to its accuracy, enhancing the responsiveness of the system it is integrated into.
This unit is built to function efficiently within a maximum operating temperature of 40°. It possesses Class H insulation, providing an assurance of durability and longevity in challenging environments. The excitation method utilizes a permanent magnetic field, contributing to efficient energy usage and stable operation.