Sunforge 2 A, 10.7 V CC/CV (Float Voltage) for 3S LiFePO4, 20 W solar panel, 5 A LVD Load Output
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The specifications you've provided appear to be related to a solar charge controller designed for a specific setup with a 3S LiFePO4 battery, a 20W solar panel, and a 5A Low Voltage Disconnect (LVD) Load Output. Let's break down each specification:
2 A: This is the charging current that the solar charge controller can deliver to the battery. It indicates the rate at which the controller will charge the connected 3S LiFePO4 battery.
10.7 V CC/CV (Float Voltage): Float voltage is the voltage at which the battery is maintained after reaching a full state of charge. The charge controller's CC/CV (Constant Current/Constant Voltage) operation ensures that the battery is first charged at a constant current until it reaches the float voltage of 10.7V. At this point, the controller switches to a constant voltage mode to maintain the battery at its full state of charge without overcharging it.
3S LiFePO4: This refers to a 3-series (3S) configuration of LiFePO4 (Lithium Iron Phosphate) batteries. Each cell in the battery has a nominal voltage of around 3.2V, resulting in a total nominal voltage of around 9.6V for a 3S battery.
20W solar panel: This specifies the power output of the solar panel, which is 20 watts. The solar charge controller will manage the energy generated by this panel to charge the connected battery.
5 A LVD Load Output: The charge controller has a Load Output that can provide up to 5 amps of current. LVD stands for Low Voltage Disconnect, which is a feature that protects the battery from over-discharge. When the battery voltage drops to a certain level, the charge controller will disconnect the load to prevent further discharge and potential damage to the battery.
The specifications outline the functionality of a solar charge controller tailored for a specific setup with a 3S LiFePO4 battery, a 20W solar panel, and a 5A Low Voltage Disconnect Load Output. The controller's settings ensure a controlled charging process, maintaining the battery at its float voltage while also providing a Load Output protection mechanism. This configuration is suitable for small-scale solar power systems utilizing LiFePO4 batteries.
Specifications
10 years
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