DBL3-0130-30-Y-560 Kollmorgen
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The Kollmorgen DBL3-0130-30-Y-560 is a brushless servo motor with a smooth shaft design and standard length. Part of the DBL Synchronous Servomotors series, it features a 75 mm flange size and operates in ambient temperatures from 5 to 40°C. This model does not include a holding brake and supports up to 95% relative humidity.
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Product Description:
The DBL3-0130-30-Y-560 is a brushless servo motor produced by Kollmorgen within the DBL Synchronous Servomotors series. As a rotary actuator intended for industrial automation, it converts the drive’s electrical output into precise mechanical rotation for indexing tables, packaging lines, and coordinated axes. The motor belongs to the third-generation DBL platform and is compatible with matching drives and feedback devices. By integrating a high-energy permanent-magnet rotor with digital commutation, the unit supports repeatable positioning cycles while requiring less maintenance than brushed motors. Electronic commutation also eliminates brush wear and supports responsive torque control during frequent acceleration and deceleration.
The mechanical interface includes a flange that measures 75 mm across, providing a standard mounting size for compact machinery frames. The housing has a standard length, so its stack depth accommodates gearhead and pulley packages intended for this frame. The motor can operate at ambient temperatures from +5 to +40 °C, allowing use on climate-controlled factory floors during seasonal temperature changes. The winding insulation tolerates humidity levels of up to 95% relative humidity, so short-term moisture increases will not compromise its dielectric strength. The motor is supplied without a holding brake, eliminating residual brake drag and simplifying inertial tuning when an external clamping device is available. Static loads must therefore be held by drive torque or a separate mechanical restraint when the axis is stopped.
The motor has a smooth shaft that accepts backlash-free clamping couplings or shrink-fit hubs without requiring a keyway. This shaft design distributes clamping force around the circumference and supports accurate alignment with connected equipment. Torque is generated through electronically commutated windings, which minimize mechanical wear and accommodate frequent operating cycles. The sealed bearing arrangement helps protect the rotating assembly from ordinary industrial contaminants while supporting stable shaft movement. Its compact flange and standard-length housing allow the motor to fit space-constrained axes without requiring an unusually deep mounting area. The absence of a holding brake also reduces rotating mass, which can improve acceleration response when the connected machine provides an independent method for securing stationary loads.