65kwh 60kW Road Assistance EV Charger ESS Energy Storage Systems
65kwh Road Assistance EV Charger ESS Energy Storage Systems
MIDA has accumulated rich experience in the field of PV-ESS-EV charging applications, and can provide a variety of flexible solutions for charging stations, including ev Charging series solutions, and containerized ESS solutions ,to help customers solve the problems of long construction time for capacity expansion and low utilization rate. MIDA’solution make the charging station more clean and more convenient for the people travel.
It has a complete safety protection strategy, which can effectively deal with overload, short circuit and abnormal power grid conditions;
More than 100MW successful application cases;
Safety Protection: Take proactive protection measures for charging anomaly data to ensure the safety of charging process and battery after charging.
Efficient & flexible
The maximum efficiency more than 98.7%;
It can realize the integration of PV, energy storage and battery;
Intelligent& Friendly
Support on/off-grid mode switching function, Support PV MPPT control;
Air-cooling Energy Storage System
Maximum capacity can be 2MWh with 10 containers parallel
Intelligent thermostat control, high protection structure design, to meet outdoor use
100% DOD deep discharge, cycle life over 6500 times under standard working conditions
System-graded linkage protection, comprehensive protection of system safety

Microgrid ESS Solution
Microgrid, also known as distributed energy island system, is a system that systematically combines generators, loads, photovoltaic power generation, energy storage devices, and control devices to form a single controllable unit, while supplying electricity to users. The combination of microgrids and energy storage is suitable for electricity consumption in remote areas and "power blank areas" that are not covered by some large power grids, such as islands and remote mountainous areas.
The main roles of energy storage in microgrid systems are as follows: 1. Improve the stability of distributed energy . Distributed power sources such as solar energy, wind energy, and biomass energy are greatly affected by external environments such as light, temperature, wind, and climate, and their power generation is characterized by randomness and instability. Energy storage can be jointly controlled with the main power grid through EMS to stabilize the fluctuations and output of distributed energy. Provide on-site utilization of distributed energy to prevent transmission pressure and power loss under long-distance transmission. In addition, energy storage substations can provide power to the main load during nighttime or distributed energy maintenance periods, thereby reducing power outage time...
EV Charging Station ESS Solution
With the rapid development of the EV industry, charging demand is also growing correspondingly, but there is still a huge vacancy in the charging pile market. As a new attempt in the green economy, PV-plus EV charging station with ESS have broad development prospects.
PV-plus EV charging with ESS integration refers to a power system composed of grid, distributed PV, ESS, charging piles, monitoring and protection devices. Its working concept is to use PV energy generation, and the generated energy is used to charge EV or stored into ESS. The emergence of PV-plus EV charging with ESS integration not only solves the problem of distribution network restricted by limited land and power capacity resources, but also achieves local balance between local energy generation and consumption through ESS and optimized configuration. During off-peak hours periods, the PV-plus EV charging station with ESS can charge ESS or EV. During peak hours or when the power grid is insufficient, the PV-plus EV charging station with ESS can supply power to the grid, playing the role of peak shaving.
specifications
| Model | MD-EU-11.5kwh | MD-EU-20kwh | MD-EU-30kwh | MD-EU-65kwh | |
| DC Output | Energy storage capacit | 11.5kwh Life PO4 | 20kwh Life PO4 | 30kwh Life PO4 | 65kwh Life PO4 |
| Number of Charging Points: | CCS2/GBT/CHAdeMO/CCS1 | CCS2/GBT/CHAdeMO/CCS1 | CCS2/GBT/CHAdeMO/CCS1 | CCS2/GBT/CHAdeMO/CCS1 | |
| Max Output Current | 0~100A DC | ||||
| Voltage | 150~750V DC | ||||
| Operation Mode | Single-Alone | ||||
| System Recharge | 3.3-7kw AC Charging Gun | ||||
| Cable Length | 5Meter (Customized acceptable) |
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| User Interface & Control | User Interface | 7 Inch Touch Display ,LED Indicator Light,Emergency Stop Button, | |||
| 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) | 740*465*890mm | |||
| 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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AC-DC Charging Module
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