RXP (PZ30) lighting box
RXP (PZ30) series lighting cabinets are mainly composed of cabinet body, panels, masks, mounting tracks, and modular components. It is suitable for power or lighting distribution in the distribution system with ac 50 / 60Hz voltage within 380V and rated current of 100A and below. Lighting box is widely used in all kinds of buildings, squares, stations and industrial and mining enterprises and other places, as the terminal electrical equipment of power distribution system.
Product Features
- The bottom shell of the lighting cabinet is made of high-quality Q235 steel plate, and the panel can be made of steel plate or ABS plastic shell material. The surface of the steel plate is electrostatically sprayed, and the color can be customized according to user needs
- The components are installed using guide rails. The width of the components is measured in modules of 9 mm.
- The layout is compact and reasonable, and installation, disassembly, and maintenance are all very convenient.
- It can be combined as needed and disassembled quickly and conveniently. The transparent flip cover of the panel exposes the handle of the switch element, and the live and other parts are covered inside the upper cover. Opening the flip cover makes it easy to operate, safe and reliable to use, and convenient to observe the working status of the switch. The box is equipped with inlet and outlet holes for easy wiring. Plastic panel, metal panel, metal bottom box, transparent door, buried installation distribution cabinet.
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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