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    • 8. 发明公开
    • WIRELESS CHARGING APPARATUS
    • 无线充电设备
    • EP2985881A1
    • 2016-02-17
    • EP15178727.2
    • 2015-07-28
    • LG Innotek Co., Ltd.
    • BAE, SeokSONG, Ji YeonMOON, Won HaLEE, Sang WonLEE, Jong HyukHYUN, Soon Young
    • H02J50/00H01F1/14H01F38/14
    • H02J7/025H01F1/15308H01F38/14H02J17/00H02J50/12H02J50/70
    • Disclosed are a soft magnetic alloy and a wireless charging apparatus including the soft magnetic alloy. The soft magnetic alloy has a chemical formula expressed as Fe 100-x-y Cu x B y (wherein x ranges from 0.1 at% to 1.7 at% and y ranges from 2.3 at% to 9.6 at%). Without adding any expensive alloying element, only iron (Fe), copper (Cu), and boron (B) are used to obtain a nanocrystalline soft magnetic alloy that has a low coercive force and a high saturation magnetic flux density. The nanocrystalline soft magnetic alloy is applied to a wireless power transmitter (200) and a wireless power receiver (300). Thereby, it is possible to make a shield member thin and increase a power transmission capacity. The soft magnetic alloy is easily processed into a flake form. The soft magnetic alloy processed in this way is applied to the shield member. Thereby, it is possible to increase permeability in a surface direction.
    • 公开了包括该软磁合金的软磁合金和无线充电设备。 该软磁合金具有以Fe100-x-yCuxBy(其中x在0.1at%至1.7at%范围内且y在2.3at%至9.6at%范围内)表示的化学式。 在不添加任何昂贵的合金元素的情况下,仅使用铁(Fe),铜(Cu)和硼(B)来获得具有低矫顽力和高饱和磁通密度的纳米晶软磁合金。 纳米晶体软磁合金应用于无线电力发射器(200)和无线电力接收器(300)。 由此,可以使屏蔽部件变薄并且增加电力传输容量。 软磁合金易于加工成片状。 以这种方式处理的软磁合金被施加到屏蔽构件。 由此可以提高面方向的磁导率。