Product Center


Product Features
Vehicle-Grid Interaction:Capable of accepting orderly grid charging/discharging scheduling, completing V2G protocol docking between the grid and vehicles, realizing orderly charging of electric vehicles in batches, and the consumption and storage of new energy power generation. Through the unified EMS platform management, it can realize peak-valley arbitrage, dynamic capacity expansion, load-side response, emergency power supply and other functions.
l Safety and Efficiency:Electrical isolation inside the module ensures no electrical connection between the grid, electric vehicles and other equipment, improving safety.
Adopting an all-SiC design, the maximum charging/discharging efficiency is >95%, enhancing energy conversion efficiency.
l Multi-standard Support:Supports GBT/CCS standards and V2G charging/discharging protocols of mainstream vehicles. It can dock with protocols of the grid and mainstream platforms, featuring strong compatibility to meet the needs of different vehicles and platforms.
l Face Recognition:Simplifies the charging process with AI face recognition technology, solving many pain points of traditional charging pile methods such as card swiping and code scanning.
l Voice Recognition:Built-in exclusive voice assistant allows users to wake up the charging pile and start charging by voice without additional operations, making operation simple and convenient.
Product Features
Vehicle-Grid Interaction:Capable of accepting orderly grid charging/discharging scheduling, completing V2G protocol docking between the grid and vehicles, realizing orderly charging of electric vehicles in batches, and the consumption and storage of new energy power generation. Through the unified EMS platform management, it can realize peak-valley arbitrage, dynamic capacity expansion, load-side response, emergency power supply and other functions.
l Safety and Efficiency:Electrical isolation inside the module ensures no electrical connection between the grid, electric vehicles and other equipment, improving safety.
Adopting an all-SiC design, the maximum charging/discharging efficiency is >95%, enhancing energy conversion efficiency.
l Multi-standard Support:Supports GBT/CCS standards and V2G charging/discharging protocols of mainstream vehicles. It can dock with protocols of the grid and mainstream platforms, featuring strong compatibility to meet the needs of different vehicles and platforms.
l Face Recognition:Simplifies the charging process with AI face recognition technology, solving many pain points of traditional charging pile methods such as card swiping and code scanning.
l Voice Recognition:Built-in exclusive voice assistant allows users to wake up the charging pile and start charging by voice without additional operations, making operation simple and convenient.
Applications
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Suitable for indoors, underground garage of the community, parking lots,etc.
Suitable for home use, factories for self use,etc.
Residential Communities:Charging power can be intelligently regulated, compatible with 99% of vehicle models. Through the unified EMS (Energy Management System), the power and charging time of each charging pile are dynamically adjusted to realize orderly charging, meeting the charging needs of a large number of electric vehicles in the community. It also enables more than ten times flexible capacity expansion for the community, achieves peak shaving and valley filling, and reduces charging costs.
Industrial Parks:It can help microgrids stabilize load pressure and absorb the clean photovoltaic energy generated in the park. Vehicle owners can automatically activate reverse discharge when the grid requires it, gaining revenue from price differences, while alleviating the peak power consumption pressure in the park.
Commercial Venues:For parking lots in commercial areas such as shopping malls, hotels, and office buildings, the EMS system dynamically regulates power and charging time. This not only meets the charging needs of vehicle owners but also realizes optimized energy utilization. A small number of DC fast-charging equipment can be configured to meet the demand for faster charging.
Household Scenarios:Centered on an 11kW V2G charging pile, and equipped with a V2H (Vehicle-to-Home) Box, photovoltaic modules, etc., a home PV-energy storage-charging system can be formed. Users can use clean solar energy to power household loads and charge electric vehicles. In the event of an unexpected grid power outage, electric vehicles can reversely supply power to household loads, and surplus electricity from the home or vehicle can be fed back to the grid, saving household electricity costs.
Product Parameters
| Item | |
| Input Voltage | 400Vac(260Vac~520Vac) |
| Input Current | 16A |
| Input Frequency | 50/60Hz |
| Input Configuration | 3P+N+PE |
| Output Voltage | 250Vdc~1000Vdc |
| Output Power | 11kW |
| Output Current | Charging: 0~44A; Discharging: 0~47A |
| Display Screen Size | 4.3 inches |
| Start-up Mode | Plug-and-Charge / Card Swipe / QR Code Scan |
| Communication Mode | CAN Communication |
| Communication Protocol | GB/T 27930 |
| Alarm Mode | Audible and Visual Alarm |
| Efficiency | Rectification/Inversion ≥95% |
| Metering Function | DC Energy Meter / AC Energy Meter |
| Metering Accuracy | Class 1 |
| Current Regulation Accuracy | ≤±1% (20% - 100% Rated Load) |
| Voltage Regulation Accuracy | ≤±0.5% |
| Power Factor | >0.98 |
| Total Harmonic Distortion (THD) | <5% |
| Number of Charging Channels | 1Channel |
| Operating Temperature/Humidity | -30~+70℃, Derating required above 50℃ |
| Altitude | ≤2000m; Derating required above 2000m |
| Noise | ≤60dB |
| Protection Class | IP65 |
| Charging Cable Length | 5m |
| Wiring Mode | Bottom Inlet & Bottom Outlet |
| Enclosure Material | Metal Enclosure |
| Cooling Method | Forced Air Cooling |
| Installation Mode | Wall-mounted / Pole-mounted (Optional) |
| Dimensions | 680mm×380mm×198mm |
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