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    • 1. 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。
    • 6. 发明申请
    • METHODS AND SYSTEMS FOR BATCH PROCESSING IN AN ON-DEMAND SERVICE ENVIRONMENT
    • 在需求服务环境中进行批处理的方法和系统
    • US20110258630A1
    • 2011-10-20
    • US13076794
    • 2011-03-31
    • Gregory D. FeeWilliam J. Gallagher
    • Gregory D. FeeWilliam J. Gallagher
    • G06F9/46
    • G06F9/466G06F9/4843G06F2209/5013
    • In accordance with embodiments disclosed herein, there are provided mechanisms and methods for batch processing in an on-demand service environment. For example, in one embodiment, mechanisms include receiving a processing request for a multi-tenant database, in which the processing request specifies processing logic and a processing target group within the multi-tenant database. Such an embodiment further includes dividing or chunking the processing target group into a plurality of processing target sub-groups, queuing the processing request with a batch processing queue for the multi-tenant database among a plurality of previously queued processing requests, and releasing each of the plurality of processing target sub-groups for processing in the multi-tenant database via the processing logic at one or more times specified by the batch processing queue.
    • 根据本文公开的实施例,提供了在按需服务环境中批量处理的机构和方法。 例如,在一个实施例中,机制包括接收对多租户数据库的处理请求,其中处理请求指定处理逻辑和多租户数据库内的处理目标组。 这样的实施例还包括将处理对象组划分或分块成多个处理对象子组,在多个先前排队的处理请求之间对多租户数据库的批处理队列进行排队处理请求, 多个处理目标子组,用于经由处理逻辑在多租户数据库中处理由批处理队列指定的一个或多个时间。
    • 7. 发明申请
    • Increased Magnetic Damping for Toggle MRAM
    • 增加用于切换MRAM的磁阻
    • US20090235018A1
    • 2009-09-17
    • US12046519
    • 2008-03-12
    • William J. GallagherDaniel C. Worledge
    • William J. GallagherDaniel C. Worledge
    • G06F12/00
    • G11C11/161
    • Magnetic random access memory (MRAM) devices and techniques for use thereof are provided. In one aspect, a magnetic memory cell is provided. The magnetic memory cell comprises at least one fixed magnetic layer; at least one first free magnetic layer separated from the fixed magnetic layer by at least one barrier layer; at least one second free magnetic layer separated from the first free magnetic layer by at least one spacer layer; and at least one capping layer over a side of the second free magnetic layer opposite the spacer layer. One or more of the first free magnetic layer and the second free magnetic layer comprise at least one rare earth element, such that the at least one rare earth element makes up between about one percent and about 10 percent of one or more of the first free magnetic layer and the second free magnetic layer.
    • 提供磁性随机存取存储器(MRAM)器件及其使用技术。 在一个方面,提供了磁存储单元。 磁存储单元包括至少一个固定磁性层; 至少一个第一自由磁性层,通过至少一个阻挡层与固定磁性层分离; 至少一个第二自由磁性层,通过至少一个间隔层与第一自由磁性层分离; 以及在与隔离层相对的第二自由磁性层的一侧上的至少一个覆盖层。 第一自由磁性层和第二自由磁性层中的一个或多个包含至少一种稀土元素,使得至少一种稀土元素占一个或多个第一自由磁性元素的约1%至约10% 磁性层和第二自由磁性层。
    • 8. 发明授权
    • Directing radiation
    • 导向辐射
    • US4060769A
    • 1977-11-29
    • US507877
    • 1974-09-20
    • Philip J. MallozziHarold M. EpsteinDavid C. ApplebaumWilliam J. GallagherBernerd E. Campbell
    • Philip J. MallozziHarold M. EpsteinDavid C. ApplebaumWilliam J. GallagherBernerd E. Campbell
    • H01S3/00H01S3/23G02B27/14
    • H01S3/2316H01S3/005H01S3/2383
    • Methods and apparatus for directing radiation pulses to a region wherein either a pulse or a substance in the region is adversely affected by the presence of more than a given power density therein. A laser pulse is split into a plurality of portions and each portion is directed along a path of different length to provide in rapid succession a plurality of pulses each having less than the given power density. Each pulse is caused to arrive at the region at an angle differing by at least its divergence angle from the arrival angle of every other pulse (or, if at a smaller angle from another pulse, with opposite polarization therefrom) and at a time enough later than the arrival time of the preceding pulse that the total power density in the region at any instant is less than the given power density. Thus, the effective total power density of the radiation directed through the region may exceed the given power density without adversely affecting any pulse or substance in the region. Typically, the region comprises an amplifier from which each pulse emerges at an angle differing by at least its divergence angle from the emergence angle of every other pulse (or, if at a smaller angle from another pulse, with opposite polarization therefrom). Each emerging pulse is separated from the others and is directed along a path of such length as to cause it to arrive at the selected location substantially simultaneously with the other pulses (or, alternatively, at such time relative to the other pulses as to provide a predetermined effective combined pulse shape at the location).
    • 用于将辐射脉冲引导到其中该区域中的脉冲或物质的区域中的多于其给定功率密度的存在受到不利影响的区域的方法和装置。 激光脉冲被分成多个部分,并且每个部分沿着不同长度的路径被引导以快速连续地提供多个脉冲,每个脉冲具有小于给定的功率密度。 使每个脉冲以至少其发散角与每隔一个脉冲的到达角相差的角度(或者如果与另一个脉冲以较小的角度与其相反的极化)到达该区域,并且在足够的时间 比前一脉冲的到达时间,任何时刻的区域中的总功率密度小于给定的功率密度。 因此,穿过该区域的辐射的有效总功率密度可以超过给定的功率密度,而不会对该区域中的任何脉冲或物质产生不利影响。 典型地,该区域包括放大器,每个脉冲从该放大器以与每隔一个脉冲的出射角度至少其发散角度不同的角度出现(或者,如果与另一个脉冲以较小的角度与其相反的极化)出现。 每个出现的脉冲与其他脉冲分离,并且沿着这样的长度的路径被引导,以使得其基本上与其他脉冲同时到达所选择的位置(或者,在这样的时间相对于提供一个 在该位置预定的有效组合脉冲形状)。
    • 9. 发明申请
    • METHODS AND SYSTEMS FOR BATCH PROCESSING IN AN ON-DEMAND SERVICE ENVIRONMENT
    • 在需求服务环境中进行批处理的方法和系统
    • US20130013577A1
    • 2013-01-10
    • US13620147
    • 2012-09-14
    • Gregory D. FeeWilliam J. Gallagher
    • Gregory D. FeeWilliam J. Gallagher
    • G06F17/30
    • G06F9/466G06F9/4843G06F2209/5013
    • In accordance with embodiments disclosed herein, there are provided mechanisms and methods for batch processing in an on-demand service environment. For example, in one embodiment, mechanisms include receiving a processing request for a multi-tenant database, in which the processing request specifies processing logic and a processing target group within the multi-tenant database. Such an embodiment further includes dividing or chunking the processing target group into a plurality of processing target sub-groups, queuing the processing request with a batch processing queue for the multi-tenant database among a plurality of previously queued processing requests, and releasing each of the plurality of processing target sub-groups for processing in the multi-tenant database via the processing logic at one or more times specified by the batch processing queue.
    • 根据本文公开的实施例,提供了在按需服务环境中批量处理的机构和方法。 例如,在一个实施例中,机制包括接收对多租户数据库的处理请求,其中处理请求指定处理逻辑和多租户数据库内的处理目标组。 这样的实施例还包括将处理对象组划分或分块成多个处理对象子组,在多个先前排队的处理请求之间对多租户数据库的批处理队列进行排队处理请求, 多个处理目标子组,用于经由处理逻辑在多租户数据库中处理由批处理队列指定的一个或多个时间。