FC-302PK75T5131X7334H2BGXXXXSXXXXAXBXCXXXXDX Danfoss
Wake Industrial LLC is not an authorized distributor of this product.
The Danfoss FC-302PK75T5131X7334H2BGXXXXSXXXXAXBXCXXXXDX is part of the VLT FC 302 Automation Drives series. This drive supports a mains voltage of 380 to 500 VAC with three-phase power and has a power rating of 0.75 kW or 1.0 HP. It comes with a standard language pack and does not include the C1 option.
Internal Product Review
The FC-302PK75T5131X7334H2BGXXXXSXXXXAXBXCXXXXDX is a Danfoss VLT FC 302 automation drive built for controlled operation on 380 - 500 VAC mains. Three-phase power architecture and a 0.75 kW rating give the drive smooth integration and dependable performance in light industrial motion applications.
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Product Description:
The FC-302PK75T5131X7334H2BGXXXXSXXXXAXBXCXXXXDX is a variable-frequency drive manufactured by Danfoss for the VLT FC 302 Automation Drives series. It converts fixed-frequency mains power into a variable-frequency output, allowing a connected controller to regulate induction-motor speed and torque. This control method supports changing process demands in conveyors, pumps, packaging equipment, and other automated machinery. By adjusting motor output to the required load, the drive can reduce energy consumption compared with systems that continuously operate a motor at full speed and regulate flow through mechanical throttling. Controlled acceleration and deceleration can also reduce stress on couplings, belts, bearings, and other driven components.
The inverter accepts a mains input of 380-500 VAC and operates with three-phase power, so it can connect to common industrial electrical supplies without phase-conversion equipment. Its nominal motor output is 0.75 kW, corresponding to a mechanical shaft capability of 1.0 HP. The drive supports vector-controlled torque, allowing it to regulate motor performance across changing speeds and loads. This capability is useful when an application requires stable movement during startup, steady operation, or process transitions. The applicable electrical ratings should be considered when selecting upstream circuit protection, conductor sizes, motor cables, and cabinet ventilation. Adequate clearance around the heat sink allows generated heat to leave the enclosure without obstructed airflow.
The configuration includes no C1 option, so an external radio-frequency interference filter is required when the installation must satisfy Category C1 limits. Filter selection should account for the supply network, motor-cable length, grounding arrangement, and applicable electromagnetic compatibility requirements. The user interface includes the standard language pack, providing access to the normal keypad menus without additional language files. Operators can use these menus to enter motor data, adjust acceleration and deceleration times, select control modes, and review operating information. Protective settings should be matched to the connected motor so current limits and thermal monitoring respond appropriately during overload conditions. Proper grounding and shield termination also help reduce electrical noise in nearby control and feedback circuits.