Abstract:
A printed circuit board (PCB), which can be implemented on a battery set, having a plurality of soldering holes thereon. A soldering portion and a non-soldering portion are separately arranged around each of the soldering holes on both surfaces of the PCB. Each corresponding conductive stick can respectively pierce each soldering hole and be fixed to each soldering portion of the PCB with the fused solder or move from the soldering portion to the non-soldering portion in the soldering hole. Thus, this invention provides a convenient and efficient way for assembling the PCB on the battery set or disassembling the PCB apart from the battery set.
Abstract:
A printed circuit board (PCB), which can be implemented on a battery set, having a plurality of soldering holes thereon. A soldering portion and a non-soldering portion are separately arranged around each of the soldering holes on both surfaces of the PCB. Each corresponding conductive stick can respectively pierce each soldering hole and be fixed to each soldering portion of the PCB with the fused solder or move from the soldering portion to the non-soldering portion in the soldering hole. Thus, this invention provides a convenient and efficient way for assembling the PCB on the battery set or disassembling the PCB apart from the battery set.
Abstract:
A battery charging method is provided for extending life of batteries. The method includes providing an appropriate charge-off voltage with respect to variation in both of a remaining capacity and an idle time of the battery. Further, the charge-off voltage may vary according to the remaining capacity and the idle time of the battery, so as to increase charging efficiency of the battery. Additionally, the present invention also provides adjusting a charge-off current to a value according to the variation in an actual capacity of the battery.