M061-LE-532E Danaher
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The Danaher M061-LE-532E is a stepping motor from the Slo-Syn Stepping Motors series, featuring a 60 mm NEMA 23 frame size and a double ended shaft. It offers a 75 oz-in bipolar holding torque, 1.8 degree step angle, and can reach a maximum step rate of 20,000 steps per second. The single stack motor weighs 1.3 lb and supports up to 8 leads with ±3% step accuracy.
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Product Description:
The M061-LE-532E is a hybrid stepper in Danaher’s Slo-Syn Stepping Motors series. As a two-phase incremental actuator, it converts pulse trains from an indexer or PLC into discrete shaft positions for positioning tables, labelers, and light pick-and-place axes. The frame follows the NEMA 23 mounting pattern common to motion stages, allowing the motor to fit existing brackets without redrilling. Its incremental operation provides predictable angular movement when paired with a compatible stepper drive and motion controller.
When driven in bipolar mode, the motor develops 75 oz-in of holding torque, while a unipolar drive yields 60 oz-in for applications that favor simpler electronics. The square housing measures 60 mm across and contains a single magnetic stack that keeps the overall length modest. Each full step advances the rotor by 1.8°, and cumulative positioning error remains within ±3% of a step, providing adequate repeatability for medium-resolution indexing tasks. Speed capability tops out at 20,000 steps/s, supporting rapid motion under light loads before mid-range resonance becomes significant. Eight color-coded leads emerge from the stator, providing series or parallel winding options. The terminations are supplied as stripped leads for connection to screw terminals or plug-in headers.
The motor handles an axial thrust of up to 25 lb and a radial overhang load of 15 lb, supporting belt tension or lead-screw end loads without external bearings. Its low rotor inertia of 0.0017 oz-in-s² keeps settling times short during rapid start-stop cycles. The assembly weighs only 1.3 lb, minimizing carriage mass in gantry systems and other moving installations. Residual detent torque is 1.0 oz-in, so back-driving force must exceed this value to overcome cogging when power is off. A double-ended shaft simplifies encoder attachment on the end opposite the load. This arrangement also permits auxiliary components to be coupled without interfering with the primary mechanical connection.