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Lenze EVS9324-EP
Lenze EVS9324-EP
Lenze EVS9324-EP
Lenze EVS9324-EP
Lenze EVS9324-EP
Lenze EVS9324-EP
· Product image is representative; revision or series may vary. Contact us to request a specific version.

EVS9324-EP

9300 Inverter Servo Drive
In Stock

Product Information:

Series 9300, is a servo inverter

axis module suitable for a 3 kW,

4-pole asynchronous motor. This

device supports a wide mains

voltage range and features a

significant braking capability.

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Technical specifications for EVS9324-EP

  • Manufacturer:
    Lenze
  • Product Category:
    General Automation
  • Estimated shipping dimensions:
    10.2 cm x 35.6 cm x 25.4 cm
  • Weight:
    5.4 kg
  • Tariff Code:
    8537101190
  • Country of origin:
    USA
  • Place of shipment:
    Xiamen, Fujian, China
  • Motor Power (PN):
    3 kW, 4-pole asynchronous motor
  • Mains Voltage Range (UNetz):
    3/PE AC 320–528 V; 45–65 Hz
  • Alternative DC Supply (UDC):
    460–740 V DC
  • Rated Mains Current (INetz):
    7 A with mains choke
  • Rated Output Current (IN):
    7.0 A at 8 kHz; 5.2 A at 16 kHz
  • Brake Chopper Continuous Power:
    11 kW
  • Power Loss (PV):
    200 W
  • Switching Frequency:
    8 kHz (default)
  • Stock:
    10

Ask our team:

  • What functional role does EVS9324-EP fulfill within the Lenze Series 9300 servo inverter platform?
    EVS9324-EP is a high-performance servo inverter engineered for precise speed, torque, and position control within the Lenze Series 9300 modular drive architecture. EVS9324-EP serves as a central motion control component capable of driving synchronous and asynchronous motors in demanding industrial automation environments.
  • How does EVS9324-EP achieve dynamic motion control accuracy under variable load conditions?
    EVS9324-EP incorporates advanced vector control algorithms and high-resolution feedback processing to ensure stable torque generation and speed regulation, even during rapid load transients. The internal control loops of EVS9324-EP are optimized to minimize overshoot, torque ripple, and steady-state error.
  • What distinguishes EVS9324-EP from other power classes within the Lenze 9300 Series?
    EVS9324-EP is positioned in the higher power density segment of the Series 9300 portfolio, offering enhanced current capability and thermal robustness. Compared to lower-rated models, EVS9324-EP supports more demanding mechanical loads and continuous duty applications without compromising control fidelity.
  • Which motor technologies are compatible with EVS9324-EP according to the datasheet specifications?
    EVS9324-EP is designed to operate with Lenze-approved synchronous servo motors and asynchronous induction motors. The inverter’s parameterization framework allows EVS9324-EP to adapt motor-specific electrical characteristics, enabling precise electromagnetic alignment and optimal efficiency.
  • What thermal management strategies are implemented in EVS9324-EP?
    EVS9324-EP utilizes an optimized heat dissipation design, combining conductive cooling through the inverter chassis with forced or cabinet-level airflow. The datasheet specifies thermal monitoring and protective derating mechanisms that allow EVS9324-EP to maintain operational integrity under elevated ambient temperatures.
  • In what way does EVS9324-EP support modular system integration?
    EVS9324-EP follows the Series 9300 modular design philosophy, allowing optional communication modules, feedback cards, and I/O expansions to be installed. This modularity enables EVS9324-EP to scale with system complexity and adapt to evolving control architectures.
  • What diagnostic and fault analysis capabilities are available in EVS9324-EP?
    EVS9324-EP provides detailed fault codes, status monitoring, and runtime diagnostics accessible via the control interface. These diagnostic functions enable predictive maintenance strategies and significantly reduce troubleshooting time during commissioning or operational downtime.
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Moore Disclaimer: Moore Automated's sales automation equipment and related solutions are intended for industrial automation and business operational efficiency improvement purposes only. Product information, technical parameters, and application cases are for reference only and do not constitute an absolute guarantee of performance for any specific industry, scenario, or final application. Actual equipment performance may vary depending on factors such as the usage environment, system integration method, and maintenance conditions. Users should confirm compatibility and safety based on professional technical assessments. Moore Automated assumes no liability for any direct or indirect losses caused by improper use, modification, or failure to operate according to specifications, to the extent permitted by law.