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Study of contactless inductive charging platform with core array structure for portable products

机译:具有芯阵列结构的便携式产品非接触式感应充电平台的研究

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In this research, contactless power transmission technique is applied in the charging of lithium battery for portable electronic products and the concept of common charging platform is proposed. The charging platform is comprised of several pot type cores with array structure, allowing circuit to be charged within a permitted region of displacement on the charging platform. However, a larger air gap exists in contactless structure compared to other contact structures, i.e. poor power transmission efficiency. In order to overcome the weakness, phase-locked loop (PLL) is applied to enable the operation frequency of circuit to be maintained above primary resonant frequency and microprocessor is utilized to improve the transmission efficiency when charging platform is standby. In addition, printed-circuit-board (PCB) is utilized on the secondary to reduce the thickness of the secondary circuit, forming PCB coil. Experimental results show that the transmission efficiency between contactless inductive structures is 55% under the condition of charging current 200mA and air gap 2.5mm.
机译:在该研究中,提出了用于便携式电子产品的锂电池充电的非接触式电力传输技术,并提出了公共充电平台的概念。充电平台由具有阵列结构的多个罐式核构成,允许电路在充电平台上的允许位移区域内充电。然而,与其他接触结构相比,在非接触式结构中,即电力传输效率差,存在较大的气隙。为了克服弱点,施加锁相环(PLL)以使得能够维持在初级谐振频率的电路的操作频率,并且微处理器被利用在充电平台待机时提高传输效率。另外,在次级上使用印刷电路板(PCB)以减小次级电路的厚度,形成PCB线圈。实验结果表明,在充电电流200mA和气隙2.5mm的情况下,非接触式电感结构之间的传输效率为55%。

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