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Lenze Series 9300 EVS9330-ESV100

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EVS9330-ESV100

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The Lenze EVS9330-ESV100 is a servo inverter designed for applications that require precise control. This unit operates within a mains voltage range of 320 to 528 volts AC and supports an alternative DC supply of 460 to 740 volts.

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Technical specifications for EVS9330-ESV100

ManufacturerLenze
Product LineSeries 9300
Part NumberEVS9330-ESV100
Controller TypeServo Inverter
Design VariantFor IT Mains
Max Operating Altitude4000 m above sea level
Mains Voltage3 AC 320 ... 528 V ± 0%, 45 ... 65 Hz ± 0%
Alternative DC SupplyDC 460 ... 740 V ± 0%
Mains Current (with Filter)78.0 A
Motor Power (4-pole ASM)45.0 kW (for 400 V and 480 V)
Output Power (8 kHz)61.6 kVA (at 400 V), 69.8 kVA (at 480 V)
Output Power (PDC)5 kW (at 400 V), 6 kW (at 480 V)
Output Current (8 kHz)89.0 A (for 400 V), 84.0 A (for 480 V)
Max Output Current (8 kHz)133.5 A (at 400 V), 126.0 A (at 480 V)
Max Standstill Current (8 kHz)80.0 A (for 400 V), 72.0 A (for 480 V)
Power Loss (with I_N)1100 W
Power Derating2.5%/K (between 40 °C and 50 °C); 5%/1000m

Lenze's EVS9330-ESV100 servo inverter is crafted for specialized tasks in IT mains environments. This piece of equipment has a maximum operating altitude capability of 4000 meters above sea level, allowing deployment in high-altitude scenarios. Weighing in at 36.5 kg, the inverter ensures stability during operation. The mains voltage supports a range from 320 to 528 volts AC with a frequency between 45 and 65 Hz. Additionally, it can utilize an alternative DC supply spanning from 460 to 740 volts.

Under standard conditions with a filter, the inverter can carry a maximum mains current of 78.0 A. When configured for motor operations, it delivers impressive performance with a motor power of 45.0 kW when operating at both 400 V and 480 V inputs.

At an 8 kHz output frequency, the components can generate an output power of 61.6 kVA at 400 V and 69.8 kVA at 480 V. Additionally, the PDC output power is rated at 5 kW and 6 kW for 400 V and 480 V, respectively.

Current specifications indicate that the output current levels at 8 kHz are 89.0 A for 400 V and 84.0 A for 480 V. The maximum output current peaks at 133.5 A when operating at 400 V and 126.0 A at 480 V. Max standstill currents are recorded at 80.0 A (400 V) and 72.0 A (480 V). Power losses at the nominal input are calculated at 1100 W. Furthermore, as temperatures ascend, the unit experiences power derating of 2.5% for every degree Celsius rise between 40 °C to 50 °C, and a 5% reduction for every additional 1000 meters in altitude.