Split System DC Charging Station 360kW 480kW 720kW 900kW Level 3 DC Charger
Split System DC Charging Station 360kW 480kW 720kW 900kW Level 3 DC Charger
Split DC charging pile mainly adopts the design of separating the pile body responsible for power output and the pile body responsible for charging, and each charging gun dynamically obtains the corresponding charging module resources from the pile body according to the actual vehicle charging demand. Each charging gun dynamically obtains the corresponding charging module resources from the pile body according to the actual vehicle charging demand, which has the advantages of high utilisation rate of charging resources, small footprint, flexible application, high safety and high protection performance compared with the charging pile of one-piece single-gun and one-piece double-gun.
Adopting CAN bus to communicate with split pile, simple networking, reliable performance and high real-time performance.
Support a variety of energy bus topology, full matrix type, non-polar matrix type, ring type, bus type and so on.
360KW Split Type EV Charger Station
480KW Split Type EV Charger Station
720KW Split Type EV Charging Station
960KW Split Type Fast Charging Station
Easy to Use
RFID Card
Mobile APP
Payment for POS Machine
Compatible With All EVS
Equipped With 2PCS EV Charging Guns.
Combined Charging System : CCS 1+ CCS 1/ CCS 2+ CCS 2/CCS 1+ CCS 2/ GB/T + GB/T/CCS 2+ GB/T/CCS 1+ NACS/CCS 1+ CHAdeMO/ CCS 2+ CHAdeMO.DC Fast Charging for Public Parking Charging Stations.
Easy Installation & Charging
The charging pile terminal mainly consists of a card reader, human-machine interaction interface, control module, charging interface, and shell.
Charging Safety and Reliability
Dynamically allocate the charging power according to the charging demand from the BMS of the charging vehicle, thus increasing the utilization of the charging equipment and achieving highly integrated management.
Best Commercial DC Charging Station
The DC split cabinet mainly consists of charging power modules, AC/DC detection units, monitoring units, measuring units, communication modules, and outdoor terminals. The charging machine monitoring unit communicates with the charging pile and battery BMS through the CAN , and communicates with the backend through the protocol converter
User interface
specifications
| Model | MD-EU-360kW | MD-EU-480kW | MD-EU-720kW | MD-EU-900kW | |
| AC Output | Input Voltage | AC400V±10%, 3P+N+PE | |||
| Input Frequency | 60Hz | ||||
| Output Voltage | 200-1000V DC | ||||
| DC Output | Max. Output Power | 360kW | 480kW | 720kW | 900kW |
| Number of Charging Points: | CCS2+CCS2/GBT/CHAdeMO/CCS1 | CCS2+CCS2/GBT/CHAdeMO/CCS1 | CCS2+CCS2/GBT/CHAdeMO/CCS1 | CCS2+CCS2/GBT/CHAdeMO/CCS1 | |
| Max Output Current | CCS2:0~450A DC | ||||
| Voltage Accuracy | <±0.5% | ||||
| Current Accuracy | <±1% | ||||
| Ripple Coefficient | RMS: ±0.5%;Peak: ±1% | ||||
| THD | ≤5%@50%~100%Full Load | ||||
| Meeting Accuracy | 0.5 | ||||
| Efficiency | ≥ 95.2% (Full load) | ||||
| Cable Length | 5Meter (Customized acceptable) |
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| User Interface & Control | User Interface | 7 Inch Touch Display ,LED Indicator Light,Emergency Stop Button, | |||
| Communications Protocol | OCPP 1.6, Integrated 4G,WIFI,LAN,Ethernet Connection | ||||
| Connectivity | RFID Reader, QR Code, Credit Card, APP | ||||
| Protection | Over Voltage Protection, Under Voltage Protection, Short Circuit Protection, Over-Temp Protection, Surge Protection Device, Emergency Stop Protection | ||||
| Working Environment | Protection Degree | IP54 | |||
| Environment Temperature | -30~55℃ | ||||
| Cooling | forced air cooling | ||||
| Relative Humidity | 5%-95% non-condensing | ||||
| Altitude | 2,000 m | ||||
| Housing Material | Stainless steel spraying | ||||
| Noise Emission | <65db | ||||
| Storage Temperature | -40~70℃ | ||||
| Mechanical Impact Resistance | IK10 | ||||
| Mechanical & Mounting | Dimension(W×D×H) | 1350*900*1850mm | |||
| Mounting | Floor-mounting | ||||
| Certificate & Standard | Certificate | CE, TUV | |||
| Standard | EN IEC 61851-1:2019, EN 61851-23:2014, EN 61851-24:2014, EN IEC 61851-21-2:2021 | ||||

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