They are the powerhouses for electric vehicle charging. These units possess the capacity to store substantial amounts of power, enough to concurrently support multiple EV chargers. Their intelligent load management systems are a marvel, capable of prioritizing charging based on vehicle battery levels and user preferences. For instance, in a busy public charging station, it can allocate more power to a nearly depleted vehicle to get it back on the road quickly, while also ensuring fairness among other users. They are the cornerstone of building a sustainable transportation infrastructure, providing the reliable power supply needed to make electric vehicles a viable option for the masses.
These employ a wireless charging technology optimized for high-power transfer. The production of the wireless charging coils involves a precision winding process using Litz wire, which has multiple insulated strands to reduce skin effect and improve efficiency. The transmitter and receiver coils are carefully tuned to resonate at the same frequency, enabling efficient power transfer over a distance. The control circuitry is integrated with advanced communication protocols that allow for seamless connection and power management between the charging device and the battery, providing a convenient and cable-free charging experience.
These are used in disaster relief efforts. In areas affected by natural disasters such as earthquakes, hurricanes, or floods, they can be rapidly deployed to provide emergency power. They power medical tents, water purification systems, and communication centers, helping to save lives and facilitate recovery. The easy transportation and installation features make them a practical solution in chaotic and challenging disaster scenarios.
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BATTERY CELL |
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RATED VOLTAGE |
3.2V |
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CAPACITY |
280AH |
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BATTERY SYSTEM 1P224S |
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RATED VOLTAGE |
716.8V |
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NOMINAL CAPACITY |
280AH |
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RATED CURRENT |
140A |
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BATTERY POWER |
215KWH |
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MAX EFFICIENCY |
≥95% |
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COOLING |
FORCED AIR |
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WORKING TEMPERATURE |
-20°C-60°C |
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PROTECTION DEGREE |
IP54 |
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CERTIFICATES |
CE, UN38.3,UL,ROHS, EMC, REACH |
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FAQ
Can I expand its capacity later?
Yes, many of our models are designed with expandability in mind. You can add extra modules to increase the overall capacity. The expansion process is relatively straightforward. First, you need to ensure that the new modules are compatible with your existing device, which is usually the case if they're from the same product line. Then, you follow the provided instructions, which typically involve connecting the new modules in a specific sequence and configuring the device settings. This might require using a dedicated software tool or accessing the device's control panel. Once completed, the device will recognize the added capacity and adjust its operation accordingly, allowing you to store more energy for future use.
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