Product Features
The cabinet is made of aluminum galvanized steel plate that is bent and assembled multiple times. The cabinet is made of aluminum galvanized steel plate that is bent and assembled multiple times, and can be infinitely expanded.
The main components of the switch are compressed air or vacuum load switches and their combined electrical appliances. Small size, maintenance free, three-phase linkage structure, obvious isolation fracture. The installation of load switches and composite appliances is flexible and can be installed on both sides or the front.
Equipped with complete and reliable mechanical linkage and interlocking devices, fully realizing the “five prevention interlocking” function.
Front maintenance and reliable wall installation. Can be operated manually or with electric tools, and has remote control function.
The load switch adopts a linked protection insulation valve or transparent insulation cover to shield live contacts and ensure personal safety.
HXGN-12 cabinet is a fixed AC metal enclosed switchgear (referred to as ring cabinet), which is a complete set of AC high voltage equipment with a rated voltage of 12KV and a rated frequency of 50Hz. It is mainly used for three-phase AC ring network, terminal distribution network, and industrial electrical equipment to receive, distribute, and protect electrical energy. Commonly used in high-voltage/low-voltage prefabricated cabinet substations. Widely used in industries such as power, metallurgy, petrochemicals, and urban construction.
We are professional EV charger manufacturer.
This depends on the EV battery size, remaining battery capacity, and the type of EV charger used as well as environmental conditions such as temperature.Typically, an AC charger with an output power of 7–22 kW can fully charge an EV in between 3 and 6 hours.With a 50–200-kW DC fast charger, the charge time can be reduced to 10–60 minutes.
An AC charger provides AC power, which is then converted to DC power by an onboard charger inside the EV (before it reaches the battery). AC chargers are normally used in slow-charging applications such as home charging. A DC charger converts AC power from the grid into DC power, which is more efficient and supplies the batteries directly. Thus, the charging time is markedly shorter. DC chargers have higher power requirements and therefore a higher installation complexity. As such, the installation cost can be higher than that for an AC charger. DC systems are generally used in commercial/public charging applications where shorter dwell tines are needed
This depends on your situation. Fast DC chargers are ideal for cases where you need to recharge your EV quickly, such as at an intercity highway charging station or rest stop. An AC charger is suitable for places where you stay longer, such as workplace, shopping malls, cinema and at home.
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