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The EVS9325-CRV003 from Lenze acts as a servo register controller, capable of handling various voltage inputs. It operates on a three-phase mains voltage ranging from 320 to 528 volts AC and can additionally support DC supply voltages from 460 to 740 volts.
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| Manufacturer | Lenze |
|---|---|
| Product Line | Series 9300 |
| Part Number | EVS9325-CRV003 |
| Controller Type | Servo Register Controller |
| Mains Voltage (Ur) | 3 AC 320 ... 528 V ± 0%; 45 ... 65 Hz ± 0% |
| Alternative DC Supply Voltage (UDC) | DC 460 ... 740 V ± 0% |
| Mains Current with Filter | 12.0 A |
| Mains Current without Filter | 16.8 A |
| Motor Power (Pr) @ 400 V 480 V | 5.5 kW |
| Output Power (SN8) @ 400 V (8 kHz) | 9.0 kVA |
| Output Current (IN8) @ 400 V (8 kHz) | 13.0 A |
| Max Output Current (Imax8) @ 400 V (8 kHz) | 19.5 A |
| Max Standstill Current (I08) @ 400 V (8 kHz) | 19.5 A |
| Output Power (SN8) @ 480 V (8 kHz) | 10.8 kVA |
| Output Current (IN8) @ 480 V (8 kHz) | 13.0 A |
| Max Output Current (Imax8) @ 480 V (8 kHz) | 19.5 A |
| Max Standstill Current (I08) @ 480 V (8 kHz) | 19.5 A |
| Power Loss (Pv) | 260 W |
Lenze's EVS9325-CRV003 is a servo register controller designed for diverse industrial applications. This controller operates on a three-phase input voltage of 320 to 528 volts AC at a frequency range of 45 to 65 Hz. Additionally, it can accommodate a DC voltage supply varying from 460 to 740 volts.
For mains current specifications, the unit draws 12.0 A with a filter installed and 16.8 A when operated without it. This controller is rated for motor power at 5.5 kW, making it effective for moderate to high power requirements in various tasks. Under optimal conditions, the output power at 400 volts and an 8 kHz frequency is 9.0 kVA. If operating at 480 volts at the same frequency, the output capacity increases to 10.8 kVA.
Current ratings remain consistent, with the output current peaking at 13.0 A. For maximum output current, both the 400V and 480V levels allow for up to 19.5 A output, which is especially beneficial during demanding operational peaks. In addition, the maximum standstill current at both voltage levels also maintains the same rating at 19.5 A.
Power efficiency is essential to this system, resulting in a loss of only 260 watts, which is reasonable considering the capability it provides across various applications.