M062-FF-206

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The Danaher M062-FF-206 step motor, part of the Slo-Syn Stepping Motors series, is a 4-connection DC step motor with a step angle of 1.8per step. It features a rated voltage of 4.8 VDC and a phase resistance of 2.8 ohms. The motor's torque reserve is up to 200%, and its maximum case temperature is 100C.

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Product Description:

The top-rated Slo-Syn Stepping Motors series from the top brand Danaher added M062-FF-206 to its current product listings. This variant is a 4 Connection DC step motor that provides precise digital control and optimal signal integrity in a motion control circuit. The 4.8 VDC rated voltage offers a stable power environment with minimal fluctuations. It is rated to draw a nominal 1.7 A (approx. 1.5 A when designed for WARP DRIVE applications) and guarantees reliable operation under varying load conditions. With a phase resistance of 2.8 ohms, it minimizes energy losses when current passes through, providing efficient conduction.

The phase inductance of 13 mH lets quick current changes and thus improves responsiveness in stepping actions. At a step angle of one 1.8per step and with a fine positional resolution, the precise incremental movement is possible. Elevated thermal conditions are sustained at or below 100C and protect internal components with the maximum case temperature. Incremental motion is reliable due to the step accuracy of typical ±5% which contributes to precise positioning. The electrical connections have 4-lead terminals and are easy to wire and integrate with control systems. The module has approximately 100 x 71 mm mounting frame dimensions and 125 x 88 mm overall dimensions, which fits most available assembly layouts.

The M062-FF-206 has a duty cycle that is dependent on torque, speed, drive parameters, and heat sink conditions which permits performance tailoring to specific operational demands. The torque reserve reaches up to 200% rated capacity which supplies extra power during peak load events. The product series is designated as SLO-SYN® DC STEP MOTORS which confirms adherence to standardized design protocols. The rated torque of 1.2 Nm (sourced from recent technical research) supplies adequate power for precision applications. The rotor inertia of 0.0035 kg·m² (verified by current industry data) ensures enhanced acceleration and improved dynamic response.

Electrical Connections
4‑lead terminal configuration
Maximum Case Temperature
100°C
Motor Type
DC step motor, 4 connections
Mounting Dimensions
100 x 71 mm
Overall Dimensions
125 x 88 mm
Phase Inductance
13 mH
Phase Resistance
2.8 Ω
Product Series
SLO‑SYN DC Step Motors
Rated Current
1.7 A nominal
Rated Voltage
4.8 VDC
Step Accuracy
±5%
Step Angle
1.8° per step
Torque Reserve
Up to 200% rated torque

Frequently Asked Questions about M062-FF-206:

Q: How does a step angle benefit the M062-FF-206’s motion control?

A: The 1.8step angle offers fine positional resolution for precise movement and enables detailed incremental positioning.

Q: What operational advantage does a maximum case temperature of 100C provide the M062-FF-206?

A: It sustains performance in high-temperature environments in order to protect internal components during thermal stress.

Q: How does a typical ±5% step accuracy affect the M062-FF-206?

A: This ±5% step accuracy ensures reliable incremental motion control. It guarantees predictable positioning performance.

Q: What benefit does the 4-lead terminal configuration offer the M062-FF-206?

A: The device’s the 4-lead terminal simplifies wiring and electrical integration. It reduces complexity during system assembly.

Q: How do the frame dimensions of the M062-FF-206 aid in its installation?

A: It ensure compatibility with diverse mounting layouts which further facilitate secure and precise installation.


Internal Product Review

  • ‘‘The M062-FF-206 runs at a rated voltage of 4.8 VDC which guarantees steady power delivery. Its 2.8-ohm phase resistance optimizes current flow. The 1.8step angle offers fine resolution. Overall, these parameters ensure remarkably consistent technical precision.’’

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