KSL061T1Y Danaher
Wake Industrial LLC is not an authorized distributor of this product.
The KSL061T1Y synchronous motor operates at 0.5 A current, with a minimum torque of 80 oz-in, an IP42-rated enclosure, and supports voltages of 120 VAC or 240 VAC ±5%. Manufactured by Danaher as part of the Slo-Syn Synchronous Motors series, it features Class B insulation and operates within temperatures from -40°F to 140°F.
Internal Product Review
The KSL061T1Y synchronous motor delivers stable 72 RPM output and 0.25 A current draw. Its 1,000 Ohm resistor and 2 µF capacitor ensure precise phase shifting. With 80 oz-in torque and 1.5 Kg·cm² load inertia, the KSL061T1Y supports controlled motion in demanding applications.
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Product Description:
Danaher's KSL061T1Y is a Synchronous motor made for uses that need to control the speed. The motor is part of the 60 Series and has a steady speed output of 72 RPM. Power for the motor is 120 Volts at 60 Hz, and it is set up to work with a single phase.
The KSL061T1Y synchronous motor can produce 80 oz-in of power, which is equal to 56 N·cm. During normal use, the motor takes in 0.25 amps of electricity. Its wiring is set up like an R/C plan. The phase changing system has a resistor kit with a rating of 1,000 Ohms and a power capacity of 12 watts. The motor works with a capacitor with a rating of 240 VAC and a capacitance of 2 µF. These parts make sure that the phase shift and alignment of the rotor position are done right. When the frequency and voltage input stay the same, the synchronous process keeps the RPM constant. It works in a steady state, which means that changes in load don't affect speed. The built-in phase shift network makes sure that the motor works well with a single-phase input. Because of these specifications, it can be used in precision-driven assemblies in industrial robotics.
The KSL061T1Y motor is made with a speed rate of 72 RPM that stays the same because it is synchronous. Load inertia of 1.5 kg/cm² makes it possible for it to move consistently even when torque conditions change. The motor works with systems that need accurate shaft rotation and efficiency that can be predicted. The electrical and mechanical specs of the motor are the same, so it can be used in drive circuits that use phase changing based on resistors and capacitors.