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T991B1060 The solar control system consists of solar panels, batteries, controllers and loads.

A solar controller is a device used to control photovoltaic panels to charge batteries and provide load control voltage for voltage-sensitive equipment. It stipulates and controls the charging and discharging conditions of the battery, and controls the power output of the solar cell components and the battery to the load according to the power demand of the load. It is the core control part of the entire photovoltaic power supply system.

It is specially designed for power supply systems for communication or monitoring equipment in remote areas. The controller's charge control and load control voltages are fully adjustable and can display battery voltage, load voltage, solar array voltage, charging current and load current.

Almost all solar power generation systems powered by batteries require a solar charge and discharge controller. The function of the solar charge and discharge controller is to regulate the power delivered from the solar panels to the battery. Battery overcharging will at least significantly reduce battery life, and at worst damage the battery until it cannot be used normally.

The solar controller uses a high-speed CPU microprocessor and a high-precision A/D analog-to-digital converter. It is a microcomputer data acquisition and monitoring control system. It can quickly collect the current working status of the photovoltaic system in real time and obtain the working information of the PV station at any time. It can also accumulate the historical data of the PV station in detail, providing an accurate and accurate way to evaluate the rationality of the PV system design and inspect the reliability of the system component quality. Sufficient basis. In addition, the solar controller also has a serial communication data transmission function, which can centrally manage and remotely control multiple photovoltaic system substations.

Solar controllers usually have 6 nominal voltage levels: 12V, 24V, 48V, 110V, 220V, 600V.

At present, controllers are developing towards multi-functions, and there is a tendency to integrate traditional control parts, inverters and monitoring systems.

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