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Manufacturer number: GE+200 VAC EPLUS
| AC input: | 3 ~ 400 V, +N+PE, +15 % / -20 % |
|---|---|
| Article number: | GE+200 vAC ePLUS |
| Dimensions (L x W x H) (mm): | 850 x 900 x 2000 |
| Frequency range: | 10 Hz - 100 Hz |
| Grid simulation: | Yes |
| Interfaces: | LAN, Digital I/O, RS-232, Fiber Optics Optional: RS-485 |
| Mains feedback: | Yes |
| Measurement functions: | Grid (input): Voltage (RMS), Current (RMS), Power (P, O), Frequency, Output: Voltage (RMS, AVG), Current (RMS, AVG), Power (P, O), Frequency, System Monitoring: Heatsink Temperatures (x2), DC Link Voltage, Data Interface: Datalogging via FTP connection |
| Model: | GE+200 vAC ePLUS |
| Output power (W): | 160000 |
| PLD Testfunction: | No |
| Power factor: | > 0.98 at rated power |
| Protective devices: | Overvoltage (peak, rms), Overcurrent (peak, rms), Overload Shortcircuit, Emergency Stop, Watchdog, Heart Beat, Output Contactar, Wrong Configuration |
| Weight (kg): | 680 |
| max. Power (A): | 232 |
| max. voltage (V): | 400 |
The Cinergia GE+ vAC ePlus series reaches its peak power model with the 200 kW model. It is designed for large-scale test benches where high energy flows and precise grid simulation are required. With state-of-the-art digital control and regenerative feedback, it offers maximum power with minimum energy loss.
The GE+ 200 vAC delivers a rated power of 160 kW and achieves an output current of 232 A (3-phase). It shares the housing design with the 160 kW model (850 × 900 × 2000 mm, 680 kg), but is designed for even higher continuous currents and thermal loads. This model offers maximum power density and maximum precision when simulating a wide range of grid scenarios. Order programmable
Cinergia is a leading developer of regenerative power converters for the test and measurement sector, offering solutions for electromobility, renewable energies, smart grids, as well as research, validation, and end-of-line testing. The portfolio includes AC power supplies and grid simulators from 500 VA to 1 MVA, including for the simulation of high-power AC grid conditions.