X1100 Danaher
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The Danaher X1100 is part of the Slo-Syn Synchronous Motors series and operates on a single-phase 120 VAC rated voltage at 60 Hz. It delivers a minimum torque of 1100 oz-in and can handle up to 100 pounds of axial load, with a maximum speed of 72 RPM. The motor has a 3 amp line current and features a capacitance of 17.5 microfarads along with a maximum load inertia of 9 lb-in².
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Product Description:
The X1100 is a stepping synchronous motor manufactured by Danaher for the Slo-Syn Synchronous Motors series. In automated machinery, it provides low-speed, high-torque rotation that can be synchronized directly with the utility power supply. This operating method allows indexers, feeders, and dosing devices to move in accurate angular steps without complex feedback hardware. Its synchronous operation also maintains a consistent relationship between the electrical supply frequency and shaft movement, which is useful for machinery that requires repeatable motion at a steady rate.
When the stator is energized with 120 VAC at 60 Hz, the single-phase winding draws a steady 3 A. That input produces a minimum shaft torque of 1100 oz-in, allowing the rotor to start and hold substantial loads without stalling. Mechanical output is delivered at a fixed speed of 72 rpm, which can eliminate the need for a gearbox in some slow-drive applications. The motor operates through an RC phase network with a capacitor rated for 330 VAC. This split-phase arrangement creates the quadrature magnetic field needed for unidirectional stepping. Load inertia reflected to the shaft must not exceed 9 lb-in², so connected couplings and flywheels must remain within the motor’s damping capability. Proper load matching also helps the rotor settle accurately after each commanded movement.
The RC network uses a capacitor with a value of 17.5 µF and a series resistor rated at 100 Ω. These components shape the phase angle needed to establish the motor’s rotating magnetic field. The resistor has a thermal rating of 160 W, allowing it to withstand heat generated during locked-rotor or high-duty operation. Axial thrust must remain below 100 lb, while radial force must stay below 50 lb to protect the sleeve bearings from excessive loading. Connected equipment should apply shaft forces evenly and avoid misalignment that could increase localized bearing pressure. The motor is suitable for packaging, metering, and light material-handling equipment that operates from single-phase utility power.