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    • 6. 发明授权
    • Thin film inductor with integrated gaps
    • 具有集成间隙的薄膜电感器
    • US08102236B1
    • 2012-01-24
    • US12968118
    • 2010-12-14
    • Robert E. Fontana, Jr.William J. GallagherPhilipp HergetBucknell C. Webb
    • Robert E. Fontana, Jr.William J. GallagherPhilipp HergetBucknell C. Webb
    • H01F5/00
    • H01F17/0006H01F3/14
    • A thin film inductor according to one embodiment includes one or more arms; one or more conductors passing through each arm; a first ferromagnetic yoke wrapping partially around the one or more conductors in a first of the one or more arms, the first ferromagnetic yoke comprising a magnetic top section, a magnetic bottom section, and via regions positioned on opposites sides of the one or more conductors in the first of the one or more arms, wherein the magnetic top section and magnetic bottom section are coupled together through a low reluctance path in the via regions; and one or more non-magnetic gaps between the top section and the bottom section in at least one of the via regions. Additional systems and methods are also provided.
    • 根据一个实施例的薄膜电感器包括一个或多个臂; 穿过每个臂的一个或多个导体; 所述第一铁磁磁轭围绕所述一个或多个臂中的第一个中的所述一个或多个导体包围,所述第一铁磁轭包括磁性顶部,磁性底部部分和位于所述一个或多个导体的相​​对侧上的通孔区域 在一个或多个臂中的第一个中,其中磁性顶部部分和磁性底部部分通过通孔区域中的低磁阻路径耦合在一起; 以及在至少一个通孔区域中的顶部和底部之间的一个或多个非磁性间隙。 还提供了附加的系统和方法。
    • 7. 发明授权
    • Magnetic writer having multiple gaps with more uniform magnetic fields across the gaps
    • 具有多个间隙的磁记录器,跨越间隙具有更均匀的磁场
    • US08385018B2
    • 2013-02-26
    • US12611294
    • 2009-11-03
    • Robert G. BiskebornPhilipp HergetBucknell C. Webb
    • Robert G. BiskebornPhilipp HergetBucknell C. Webb
    • G11B5/265
    • G11B5/3116G11B5/17G11B5/23G11B5/265G11B5/2652G11B5/59638
    • A magnetic device according to one embodiment includes a source of flux; a magnetic pole coupled to the source of flux, the magnetic pole having two or more gaps; and a low reluctance path positioned towards at least one of the gaps and not positioned towards at least one other of the gaps for affecting a magnetic field formed at the at least one of the gaps when the source of flux is generating flux. Other disclosed embodiments include devices having coil turns with a non-uniform placement in the magnetic yoke for altering a magnetic field formed at the at least one of the gaps during writing. In further embodiments, a geometry of the magnetic pole near or at one of the gaps is different than a geometry of the magnetic pole near or at another of the gaps to help equalize fields formed at the gaps when the source of flux is generating flux.
    • 根据一个实施例的磁性装置包括通量源; 耦合到磁通源的磁极,所述磁极具有两个或更多个间隙; 以及朝向所述间隙中的至少一个定位的低磁阻路径,并且朝向所述间隙中的至少另一个定位,以在所述通量源产生磁通时影响形成在所述至少一个间隙处的磁场。 其他公开的实施例包括具有在磁轭中具有不均匀布置的线圈匝的装置,用于在写入期间改变在至少一个间隙处形成的磁场。 在另外的实施例中,靠近或在其中一个间隙处的磁极的几何形状不同于磁极在靠近或另一个间隙处的几何形状,以帮助当磁通源产生磁通时在间隙处形成的场均衡。
    • 8. 发明申请
    • MAGNETIC WRITER HAVING MULTIPLE GAPS WITH MORE UNIFORM MAGNETIC FIELDS ACROSS THE GAPS
    • 具有更多均匀磁场的多个GAPS的磁性写作
    • US20110102116A1
    • 2011-05-05
    • US12611294
    • 2009-11-03
    • Robert G. BiskebornPhilipp HergetBucknell C. Webb
    • Robert G. BiskebornPhilipp HergetBucknell C. Webb
    • H01F7/02
    • G11B5/3116G11B5/17G11B5/23G11B5/265G11B5/2652G11B5/59638
    • A magnetic device according to one embodiment includes a source of flux; a magnetic pole coupled to the source of flux, the magnetic pole having two or more gaps; and a low reluctance path positioned towards at least one of the gaps and not positioned towards at least one other of the gaps for affecting a magnetic field formed at the at least one of the gaps when the source of flux is generating flux. Other disclosed embodiments include devices having coil turns with a non-uniform placement in the magnetic yoke for altering a magnetic field formed at the at least one of the gaps during writing. In further embodiments, a geometry of the magnetic pole near or at one of the gaps is different than a geometry of the magnetic pole near or at another of the gaps to help equalize fields formed at the gaps when the source of flux is generating flux.
    • 根据一个实施例的磁性装置包括通量源; 耦合到磁通源的磁极,所述磁极具有两个或更多个间隙; 以及朝向所述间隙中的至少一个定位的低磁阻路径,并且朝向所述间隙中的至少另一个定位,以在所述通量源产生磁通时影响形成在所述至少一个间隙处的磁场。 其他公开的实施例包括具有在磁轭中具有不均匀布置的线圈匝的装置,用于在写入期间改变在至少一个间隙处形成的磁场。 在另外的实施例中,靠近或在其中一个间隙处的磁极的几何形状不同于磁极在靠近或另一个间隙处的几何形状,以帮助当磁通源产生磁通时在间隙处形成的场均衡。