FC-302P1KT5E20H1XGXXXXSXXXXAXBXCXXXXDX Danfoss
Wake Industrial LLC is not an authorized distributor of this product.
The FC-302P1KT5E20H1XGXXXXSXXXXAXBXCXXXXDX is part of the VLT FC 302 Automation Drives series from Danfoss. This drive comes with standard cable entries and has no LCP or mains option. It also belongs to the VLT AutomationDrive FC product group and its PCB is not coated.
Internal Product Review
The FC-302P1KT5E20H1XGXXXXSXXXXAXBXCXXXXDX is a Danfoss VLT FC 302 automation drive in the 302 series with standard cable entries. A no-LCP configuration and no mains option support streamlined panel integration for applications using external control architecture. This unit stands out as a clean, application-focused automation drive for controlled system designs.
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Product Description:
The FC-302P1KT5E20H1XGXXXXSXXXXAXBXCXXXXDX is an AC variable-frequency drive manufactured by Danfoss for the VLT FC 302 Automation Drives series. It converts fixed-frequency three-phase mains power into a pulse-width-modulated output that regulates the speed and torque of a compatible induction motor. This control method allows connected conveyors, pumps, and other process equipment to adjust motor performance in response to operating demands. The drive can also exchange commands and operating data with PLC networks through communication options available for this product line.
The drive belongs to the VLT AutomationDrive FC product group and carries the internal identifier 302. Its mechanical layout and parameter structure are consistent with companion models in the same product group. Cabinet wiring is supported by standard cable glands, which allow direct installation in compatible metric gland plates without additional adapters. The configuration includes no local control panel, so setup and operation require remote software or a compatible optional keypad. It also has no integrated C1 filter, requiring external electromagnetic interference filtering when Category C1 emission limits apply to the installation.
The drive does not include factory-installed mains circuit breakers or fuses. External overcurrent protection must therefore be selected according to the motor circuit, supply conditions, and applicable regional electrical codes. The printed circuit boards do not have a protective coating, making the unit appropriate for clean, dry control cabinets. The enclosure should be protected from condensation, corrosive vapors, conductive dust, and other contaminants that could reach the internal electronics. Appropriate cabinet ventilation is also necessary to remove heat produced by the inverter during continuous operation. The absence of factory-installed mains protection allows the upstream protective devices to be selected for the available fault current and the requirements of the connected equipment. External filtering, circuit protection, and cabinet conditions should be addressed as separate installation requirements because none of these features substitutes for the others.