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    • 21. 发明申请
    • HIGH CURRENT AMORPHOUS POWDER CORE INDUCTOR
    • 高电流不对称粉末电感器
    • WO2010042308A1
    • 2010-04-15
    • PCT/US2009/057471
    • 2009-09-18
    • COOPER TECHNOLOGIES COMPANYYAN, YipengBOGERT, Robert James
    • YAN, YipengBOGERT, Robert James
    • H01F17/04H01F41/02H01F1/153
    • H01F17/04H01F1/15358H01F27/255H01F27/2847H01F41/0226H01F41/0246H01F2017/048Y10T29/49073
    • A magnetic component (100) and a method of manufacturing the same. The method comprises the steps of providing at least one shaped-core (110, 150) fabricated from an amorphous powder material, coupling at least a portion of at least one winding (130) to the at least one shaped-core (110), and pressing the at least one shaped-core (110, 150) with at least a portion of the at least one winding (130). The magnetic component (100) comprises at least one shaped-core (110, 150) fabricated from an amorphous powder material and at least a portion of at least one winding (130) coupled to the at least one shaped-core (110), wherein the at least one shaped-core (110, 150) is pressed to at least a portion of the at least one winding (130). The winding (130) may¬ be preformed, semi-preformed, or non-preformed and may include, but is not limited to, a clip or a coil. The amorphous powder material may be an iron-based or cobalt-based amorphous powder material or a nanoamorphous powder material.
    • 磁性部件(100)及其制造方法。 该方法包括以下步骤:提供由非晶质粉末材料制成的至少一个成形芯(110,150),将至少一个绕组(130)的至少一部分耦合到至少一个成形芯(110), 以及用所述至少一个绕组(130)的至少一部分按压所述至少一个成形芯(110,150)。 磁性部件(100)包括由无定形粉末材料制成的至少一个成形芯(110,150)和耦合到至少一个成形芯(110)的至少一个绕组(130)的至少一部分, 其中所述至少一个成形芯(110,150)被压到所述至少一个绕组(130)的至少一部分上。 绕组(130)可以预成型,半预成型或非预成型,并且可以包括但不限于夹子或线圈。 无定形粉末材料可以是铁基或钴基无定形粉末材料或纳米非晶态粉末材料。
    • 24. 发明授权
    • High current amorphous powder core inductor
    • 大电流无定形粉末电感
    • US08310332B2
    • 2012-11-13
    • US12247821
    • 2008-10-08
    • Yipeng YanRobert James Bogert
    • Yipeng YanRobert James Bogert
    • H01F27/24H01F27/02H01F27/29H01F17/04H01F27/28
    • H01F17/04H01F1/15358H01F27/255H01F27/2847H01F41/0226H01F41/0246H01F2017/048Y10T29/49073
    • A magnetic component and a method of manufacturing the same. The method comprises the steps of providing at least one shaped-core fabricated from an amorphous powder material, coupling at least a portion of at least one winding to the at least one shaped-core, and pressing the at least one shaped-core with at least a portion of the at least one winding. The magnetic component comprises at least one shaped-core fabricated from an amorphous powder material and at least a portion of at least one winding coupled to the at least one shaped-core, wherein the at least one shaped-core is pressed to at least a portion of the at least one winding. The winding may be preformed, semi-preformed, or non-preformed and may include, but is not limited to, a clip or a coil. The amorphous powder material may be an iron-based or cobalt-based amorphous powder material or a nanoamorphous powder material.
    • 磁性部件及其制造方法。 该方法包括以下步骤:提供由非晶质粉末材料制成的至少一个成形芯,将至少一个绕组的至少一部分耦合到至少一个成形芯,以及将至少一个成形芯与第 至少一个绕组的至少一部分。 磁性部件包括至少一个成形芯,其由无定形粉末材料制成,并且至少一个绕组的至少一部分耦合到至少一个成形芯,其中至少一个成形芯被压制成至少一个成形芯 至少一个绕组的部分。 绕组可以被预成型,半预成型或非预成型,并且可以包括但不限于夹子或线圈。 无定形粉末材料可以是铁基或钴基无定形粉末材料或纳米非晶态粉末材料。
    • 25. 发明申请
    • High Current Amorphous Powder Core Inductor
    • 高电流无定形粉末电感器
    • US20100085139A1
    • 2010-04-08
    • US12247821
    • 2008-10-08
    • Yipeng YanRobert James Bogert
    • Yipeng YanRobert James Bogert
    • H01F17/04H01F3/08H01F30/12H01F41/02
    • H01F17/04H01F1/15358H01F27/255H01F27/2847H01F41/0226H01F41/0246H01F2017/048Y10T29/49073
    • A magnetic component and a method of manufacturing the same. The method comprises the steps of providing at least one shaped-core fabricated from an amorphous powder material, coupling at least a portion of at least one winding to the at least one shaped-core, and pressing the at least one shaped-core with at least a portion of the at least one winding. The magnetic component comprises at least one shaped-core fabricated from an amorphous powder material and at least a portion of at least one winding coupled to the at least one shaped-core, wherein the at least one shaped-core is pressed to at least a portion of the at least one winding. The winding may be preformed, semi-preformed, or non-preformed and may include, but is not limited to, a clip or a coil. The amorphous powder material may be an iron-based or cobalt-based amorphous powder material or a nanoamorphous powder material.
    • 磁性部件及其制造方法。 该方法包括以下步骤:提供由非晶质粉末材料制成的至少一个成形芯,将至少一个绕组的至少一部分耦合到至少一个成形芯,以及将至少一个成形芯与第 至少一个绕组的至少一部分。 磁性部件包括至少一个成形芯,其由无定形粉末材料制成,并且至少一个绕组的至少一部分耦合到至少一个成形芯,其中至少一个成形芯被压制成至少一个成形芯 至少一个绕组的部分。 绕组可以被预成型,半预成型或非预成型,并且可以包括但不限于夹子或线圈。 无定形粉末材料可以是铁基或钴基无定形粉末材料或纳米非晶态粉末材料。
    • 30. 发明申请
    • BULK STAMPED AMORPHOUS METAL MAGNETIC COMPONENT
    • 大块冲压非晶金属磁性元件
    • WO01084564A2
    • 2001-11-08
    • PCT/US2001/013750
    • 2001-04-26
    • C22C45/02H01F1/153H01F1/16H01F27/24H01F41/02
    • H01F1/15308H01F1/15358H01F1/15375H01F41/0226
    • A bulk amorphous metal magnetic component has a plurality of laminations of ferromagnetic amorphous metal strips adhered together to form a generally three-dimensional part having the shape of a polyhedron. The component is formed by stamping, stacking and bonding. The bulk amorphous metal magnetic component may include an arcuate surface, and an implementation may include two arcuate surfaces that are disposed opposite each other. The magnetic component may be operable at frequencies ranging from between approximately 50 Hz and 20,000 Hz. When the component is excited at an excitation frequency "f" to a peak induction level Bmax, it may exhibit a core-loss less than "L" wherein L is given by the formula L = 0.0074 f (Bmax) + 0.000282 f (Bmax) , said core loss, said excitation frequency and said peak induction level being measured in watts per kilogram, hertz, and teslas, respectively.
    • 块状非晶金属磁性部件具有粘附在一起以形成具有多面体形状的通常三维部分的铁磁非晶金属条的多个叠片。 该部件通过冲压,堆叠和粘合形成。 块状非晶金属磁性部件可以包括弓形表面,并且实施方式可以包括彼此相对设置的两个弧形表面。 磁性部件可以在从约50Hz到20,000Hz之间的频率范围内操作。 当激发频率“f”激发到峰值感应电平Bmax时,其可以表现出小于“L”的磁芯损耗,其中L由公式L = 0.0074f(Bmax)<1.3> + 0.000282 f <1.5>(Bmax)<2.4>,所述铁心损耗,所述激发频率和所述峰值诱导电平分别以瓦特/千克,赫兹和特斯拉计测。