FC-302P5K5T2131F9314H2BGXXXXSXXXXAXBXCXXXXDX Danfoss
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The Danfoss FC-302P5K5T2131F9314H2BGXXXXSXXXXAXBXCXXXXDX is part of the VLT FC 302 Automation Drives series. This model supports three-phase power at a mains voltage of 200 to 240 VAC and has a power rating of 5.5 kW, or 7.5 HP. It includes a standard language pack and does not have the C1 option.
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Product Description:
The FC-302P5K5T2131F9314H2BGXXXXSXXXXAXBXCXXXXDX is an AC variable frequency drive produced by Danfoss for the VLT FC 302 Automation Drives series. In factory automation, the drive converts fixed-frequency mains power into a regulated output that allows controllers to adjust induction motor speed and torque. This capability lets conveyors, pumps, and mixers respond to changing process demands while reducing unnecessary energy use. Its AutomationDrive design provides consistent mechanical dimensions, parameter menus, and fieldbus options across compatible models.
The inverter delivers a continuous output of 5.5 kW to the motor terminals under rated operating conditions. It accepts an input supply of 200–240 VAC, allowing direct connection to compatible low-voltage industrial networks without an upstream transformer. The drive requires three-phase power, which balances input current across the phases and helps reduce ripple on the DC link. The absence of a C1 option means that electromagnetic compliance accessories for EN 61800-3 category C1 are not factory installed. An external filter is therefore required when the installation must meet C1 limits for conducted and radiated emissions.
The drive carries platform code 302, which indicates the control architecture and supported expansion options used by this model. Its Standard language pack provides English and other commonly used languages through the graphical keypad, making menus and operating messages accessible from the local interface. Compatible fieldbus modules can connect the inverter to higher-level control systems, while the shared menu structure helps users apply familiar parameter arrangements across related drives. The regulated output supports controlled acceleration and deceleration, which can reduce mechanical stress on connected equipment and limit abrupt current demand during motor starts.