M063-FD06U Danaher
Wake Industrial LLC is not an authorized distributor of this product.
The Danaher M063-FD06U is part of the Slo-Syn Stepping Motors series and features a brushless permanent magnet design. This Nema 23 motor has a 60 mm frame size, a full-step angle of 1.8 degrees, and can reach a maximum speed of 6000 rpm. Its step accuracy is within plus or minus 3 percent, and it delivers 200 steps per revolution.
Internal Product Review
The M063-FD06U is a Danaher Slo-Syn stepping motor designed as a brushless permanent magnet unit. A 1.8° full-step angle and 200 steps per revolution give the motor precise, repeatable indexing in motion-control applications. High-speed capability up to 6000 rpm makes the M063-FD06U a strong performer for demanding stepper systems.
To contact sales for pricing and lead time:
Payment Methods
Shipping Methods
Our Credentials
Product Description:
The M063-FD06U stepping motor is produced by Danaher for the Slo-Syn Stepping Motors series. This brushless permanent-magnet device converts discrete command pulses from indexers or microstepping drives into controlled shaft movement. It provides open-loop positioning for feeders, small gantries, and compact conveyor zones within industrial automation cells. The brushless permanent-magnet construction eliminates brush wear and provides consistent torque in forward and reverse directions under microprocessor control.
The motor has a 60 mm square frame that matches common brackets and couplings. Each full step advances the rotor by 1.8°, yielding the standard 200 steps per revolution needed for integer gear ratios. When higher throughput is required, the winding can accept pulse trains up to 20,000 steps/s, supporting rapid indexing without missed counts. Dynamic response is aided by a 0.11 lb-in² rotor inertia, so acceleration profiles can be steep without requiring excessive drive current. Positional repeatability remains within ±3%, which is suitable for pick-and-place nests, vision-guided dispensers, and light machining fixtures. These operating characteristics allow the motor to perform frequent starts and stops while maintaining repeatable open-loop movement.
For finer resolution, the drive can shift to microstep operation, with a 0.9° half-step available as the first subdivision. A compatible controller can reduce the increment to 0.0072° when an application requires sub-arc-minute motion. Sustained operation at speeds up to 6000 rpm is possible when load inertia and drive voltage are properly matched, allowing the motor to handle low-speed torque tasks and high-speed feeding zones. The mounting face follows the NEMA 23 outline, simplifying installation in established machine frames and supporting shaft alignment with commonly available couplings. Proper drive selection helps preserve step accuracy during acceleration, while suitable coupling alignment reduces unnecessary radial loading on the shaft. Load inertia should remain compatible with the selected acceleration profile to reduce the risk of lost steps during rapid indexing.