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    • 9. 发明授权
    • LED light module
    • LED灯模组
    • US09285091B2
    • 2016-03-15
    • US13883721
    • 2011-11-17
    • Markus DannerAndreas MoserJohannes JungwirthGunther KrennMartin Stein
    • Markus DannerAndreas MoserJohannes JungwirthGunther KrennMartin Stein
    • F21S8/10
    • F21S48/1241B60Q2400/30F21S41/143F21S41/24F21S41/26F21S48/1154F21S48/1266
    • The invention relates to a vehicle headlamp (1) for producing a main light distribution and an auxiliary light distribution, wherein the vehicle headlamp (1) comprises two or more LED light modules (10), wherein each of the LED light modules (10) comprises one or more primary LED light sources (11), wherein a primary LED light source (11′) comprises at least one light-emitting diode, comprises two or more secondary LED light sources (12, 12a), wherein a secondary LED light source (12, 12a) comprises at least one light-emitting diode (12′), and comprises a lens (13), wherein the light emitted by the at least one primary LED light source (11) is radiated directly onto the lens (13) and projected by the lens into the exterior space, wherein the light emitted by the primary LED light sources (11) of a all LED modules (10) forms the main light distribution, and wherein the light emitted by the secondary LED light sources (12, 12a) of an LED modules (10) is radiated onto the lens (13) of the LED module (10) by means of an optical waveguide (14), which lens (13) projects the light into the exterior space, and wherein the light emitted by the secondary LED light sources (12, 12a) of all LED modules (10) forms the auxiliary light distribution, wherein preferably at least one of the secondary LED light sources (12a) shines directly through the optical waveguide (14) in order to achieve a homogeneous light distribution contribution to the auxiliary light distribution, and wherein light is coupled by at least one of the secondary LED light sources (12) into the optical waveguide (14) via at least one light incoupling point (140) and exits directed substantially parallel via at least one light decoupling point (141) in order to produce a maximum contribution to the auxiliary light distribution.
    • 本发明涉及一种用于产生主配光和辅助配光的车辆用前照灯(1),其中,所述车辆用前照灯(1)包括两个以上的LED灯模块(10),其中,所述LED灯模块(10) 包括一个或多个主要LED光源(11),其中主要LED光源(11')包括至少一个发光二极管,包括两个或更多个次级LED光源(12,12a),其中次级LED光源 源(12,12a)包括至少一个发光二极管(12'),并且包括透镜(13),其中由至少一个主要LED光源(11)发射的光直接辐射到透镜 13),并且由透镜投影到外部空间中,其中由所有LED模块(10)的主要LED光源(11)发射的光形成主光分布,并且其中由次级LED光源发射的光 (12,12a)辐射到所述透镜(13)上 所述LED模块(10)借助于光波导(14),所述透镜(13)将光投射到所述外部空间中,并且其中由所述LED模块的所述次级LED光源(12,12a)发射的光 10)形成辅助光分布,其中优选地,次级LED光源(12a)中的至少一个直接照射通过光波导(14),以实现对辅助光分布的均匀的光分布贡献,并且其中光是 通过至少一个光耦合点(140)将次级LED光源(12)中的至少一个耦合到光波导(14)中并通过至少一个光去耦点(141)基本上平行地退出,以便产生 对辅助光分布的最大贡献。
    • 10. 发明授权
    • Magnetic recording disk with antiferromagnetically-coupled magnetic layer having multiple lower layers
    • 具有多层下层的反铁磁耦合磁性层的磁记录盘
    • US07125616B2
    • 2006-10-24
    • US10788687
    • 2004-02-26
    • Hoa Van DoEric Edward FullertonDavid MarguliesAndreas Moser
    • Hoa Van DoEric Edward FullertonDavid MarguliesAndreas Moser
    • G11B5/66
    • G11B5/66G11B5/656
    • A magnetic recording disk has an antiferromagnetically-coupled (AFC) structure that has three lower ferromagnetic layers (LL1, LL2, LL3) and an upper ferromagnetic layer (UL), all four ferromagnetic layers being antiferromagnetically-coupled together across corresponding antiferromagnetically-coupling layers. The UL has a magnetization-remanence-thickness product (Mrt) greater than the Mrt each of the three lower layers LL1, LL2, LL3, and greater than the sum of the Mrt values of LL1 and LL3. The middle lower layer LL2 has an Mrt less than the Mrt of each of the other lower layers LL1 and LL3, and as a result the composite Mrt of the AFC structure is less than the composite Mrt of a conventional AFC structure having only a single lower layer. The AFC structure achieves this composite Mrt reduction without increasing the Mrt of any of the three lower layers above the maximum Mrt of the single lower layer in the conventional AFC structure.
    • 磁记录盘具有反铁磁耦合(AFC)结构,其具有三个低铁磁层(LL 1,LL 2,LL 3)和上铁磁层(UL),所有四个铁磁层在相应的反铁磁层上反铁磁耦合在一起 - 耦合层。 UL具有大于三个下层LL 1,LL 2,LL 3中的每一个的Mrt的磁化剩磁厚度乘积(Mrt),并且大于LL 1和LL 3的Mrt值之和。 中下层LL 2的Mrt小于其他下层LL 1和LL 3中的每一个的Mrt,结果,AFC结构的复合Mrt小于仅具有传统AFC结构的复合材料Mrt 单个下层。 AFC结构在不增加传统AFC结构中单个下层的最大Mrt以上的三个下层中的任何一个的Mrt的情况下实现了该复合Mrt的还原。