Charging mode parameters
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Rated output power
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80kW
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Grid side voltage
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380Vac±15%(Three phase)
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Grid frequency
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50Hz±5Hz
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DC side output voltage
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200~750Vdc
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Constant power range
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400~750Vdc
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DC side output current
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Single gun maximum 200A
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Inverter mode parameters
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Rated output power
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80kW
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DC side input voltage
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200~750Vdc
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Grid side voltage
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380Vac(Three phase)
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Grid frequency
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50Hz±5Hz
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system parameter
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THDI
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<5%(Full load)
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Power factor
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±-0.99(Full load)
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Productiveness
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≥95%(Full load)
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Wiring mode
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3P3W
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noise
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≤65 dB
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Cooling method
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forced air cooling
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Power distribution
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Support
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Number of charging guns
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Single gun, double gun
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Protection level
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IP54
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Communication interface
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Ethernet, 4G
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Display
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7-inch touch screen
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DC output characteristics
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Output voltage range
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200 V~750 V
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Output current range
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Single gun maximum 200A
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Voltage stabilization accuracy
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Not more than ± 0.5% (stabilized state, input voltage AC 323 V to 456 V, output voltage 200 V to 750 V, output current 0 to rated current value)
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Steady current accuracy
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Not more than ± 1% (steady current state, input voltage AC 323 V to 456 V, output voltage 200 V to 750 V, output current 20% of rated current to rated current value)
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Voltage ripple factor
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Not more than 1% (in stable state, the input voltage is AC 323 V to 456 V, the output voltage is 200 V to 750 V, and the output current is 0 to the rated current value)
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Output voltage setting error
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Not more than ± 0.5% (stabilized state, output voltage 200 V to 750 V)
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Output current setting error
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Not exceeding ± 0.3 A (set output DC current < 30 A)< br />
Not more than ± 1% (steady current state, set output DC current ≥ 30 A)
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Voltage limiting characteristics
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During steady current operation, when the DC output voltage exceeds the set value, the automatic limit output voltage increases and switches to steady state
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Current limiting characteristics
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During steady state operation, when the DC output current exceeds the set value, the automatic limit output current increases and changes to steady state
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Maximum efficiency
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≥95%
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Protection features: input overvoltage and undervoltage protection, input overcurrent protection, output overvoltage and undervoltage protection, overtemperature protection, etc
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