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The Lenze E82EV302K2C is a built-in frequency inverter from the Series 8200, designed for efficient motor control. Delivering an output power of 4.0 kW (or 5.0 HP), it operates with a mains voltage of 230V and supports a three-phase configuration.
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| Manufacturer | Lenze |
|---|---|
| Product Line | Series 8200 |
| Part Number | E82EV302K2C |
| Name | Frequency inverter (base controller) |
| Design Type | Built-in unit |
| Version | Vector controlled inverter |
| Output Power | 4.0 kW or 5.0 HP |
| Mains Voltage | 230V |
| Voltage Phases | 3 phase |
| Output DC Power | 0 kW |
| Rated Mains Current (3 phase) | 18.7A without mains choke and 14.4A with mains choke |
| Dissipated Power Loss | 150W |
| Thermal Resistor | Less than or equal to 0.3 K/W |
| Electronic Product | Yes |
The E82EV302K2C from Lenze represents a high-efficiency solution in the form of a frequency inverter. This device functions primarily as a base controller for motor applications. It features a built-in unit design and is classified as a vector-controlled inverter, which allows for precise motor control and performance optimization.
This inverter can deliver an output power rating of 4.0 kW, equivalent to 5.0 HP, operating within a mains voltage of 230V. It is configured to work with three-phase power, ensuring effective energy distribution for connected equipment. Meanwhile, the output DC power is specified at 0 kW, indicating that the inverter is tailored for AC applications.
Under standard conditions, the rated mains current measures at 18.7A when utilized without a mains choke. When a choke is incorporated, the rated current adjusts to 14.4A. The unit efficiently manages power loss, as evidenced by its dissipated power loss of 150W.
For thermal management, the inverter employs a thermal resistor rated at less than or equal to 0.3 K/W, which contributes to maintaining stable operating temperatures. Weighing in at 2.9 kg, the unit is designed for light-weight applications without sacrificing durability. Overall, the Lenze E82EV302K2C combines functionality and efficiency within a compact form, making it suitable for various industrial settings.