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    • 11. 发明授权
    • Reconfigurable graphics processing system
    • 可重构图形处理系统
    • US07710741B1
    • 2010-05-04
    • US11120818
    • 2005-05-03
    • Brian M. KelleherLudger MimbergAnthony M. Tamasi
    • Brian M. KelleherLudger MimbergAnthony M. Tamasi
    • H05K1/11H05K1/14
    • G06F1/185H05K1/141
    • One embodiment of a reconfigurable graphics processing system includes a first MXM edge connector and a second MXM edge connector affixed to an interposer board and a first MXM board and a second MXM board coupled to the interposer board via the first and second MXM edge connectors, respectively. Each MXM board includes a GPU and other elements necessary to process graphics data. The system couples to the motherboard of a computing device through an interface connector on the interposer board. One advantage of such a system is that it may be configured to deliver more performance than a standard desktop graphics board, while occupying substantially the same volume, through the use of multiple, small form factor MXM boards.
    • 可重构图形处理系统的一个实施例包括第一MXM边缘连接器和固定到插入器板的第二MXM边缘连接器和分别经由第一和第二MXM边缘连接器耦合到插入器板的第一MXM板和第二MXM板 。 每个MXM板包括GPU和处理图形数据所需的其他元素。 系统通过插入板上的接口连接器耦合到计算设备的主板。 这种系统的一个优点是,通过使用多个小尺寸的MXM板,可以配置成比标准桌面图形板提供更多的性能,同时占据基本上相同的体积。
    • 16. 发明申请
    • Field Changeable Rendering System For A Computing Device
    • 用于计算设备的现场可变渲染系统
    • US20080007552A1
    • 2008-01-10
    • US11779231
    • 2007-07-17
    • Michael DiamondLuc BissonLudger MimbergJoseph Walters
    • Michael DiamondLuc BissonLudger MimbergJoseph Walters
    • G06F17/00
    • G06F13/409
    • One embodiment of a field changeable rendering system includes an output device interfaced to a motherboard, a fixed rendering device mounted to the motherboard for generating information to be output on said output device, a connector for attaching a field-changeable rendering card to the motherboard, said field-changeable rendering card capable of housing a discrete rendering device for generating information to be output on said output device and detection circuitry for detecting that a field-changeable rendering card housing a discrete rendering device is coupled to said connector and causing information from said field-changeable rendering card housing a discrete rendering device to be output on said output device. One advantage of the disclosed edge connector is that it is compatible with a plurality of graphics cards and systems, thereby enabling a computing device user to upgrade the existing device's graphics system. Thus, the user is not forced to purchase an entirely new computing device in order to take advantage of graphics innovations. A further advantage of the disclosed edge connector is that it enables upgrades to low voltage differential signaling (LVDS) features, without the need for additional costly devices capable of operating at LVDS data rates.
    • 现场可变绘制系统的一个实施例包括与主板接口的输出设备,安装到母板上的固定渲染设备,用于产生要在所述输出设备上输出的信息;连接器,用于将现场可变渲染卡连接到主板; 所述现场可变绘制卡能够容纳用于产生要在所述输出设备上输出的信息的离散渲染设备和用于检测容纳离散渲染设备的现场可变渲染卡耦合到所述连接器并检测来自所述连接器的信息的检测电路 现场可变绘制卡,其容纳要在所述输出设备上输出的离散渲染设备。 所公开的边缘连接器的一个优点是它与多个图形卡和系统兼容,从而使得计算设备用户能够升级现有设备的图形系统。 因此,为了利用图形创新,用户不被迫购买全新的计算设备。 所公开的边缘连接器的另一个优点是能够升级到低电压差分信号(LVDS)特征,而不需要能够以LVDS数据速率操作的额外昂贵的设备。
    • 18. 发明授权
    • Field changeable rendering system for a computing device
    • 用于计算设备的现场可变绘制系统
    • US08643657B2
    • 2014-02-04
    • US11779231
    • 2007-07-17
    • Michael B. DiamondLuc R. BissonLudger MimbergJoseph D. Walters
    • Michael B. DiamondLuc R. BissonLudger MimbergJoseph D. Walters
    • G06F13/14G06F15/16
    • G06F13/409
    • One embodiment of a field changeable rendering system includes an output device interfaced to a motherboard, a fixed rendering device mounted to the motherboard for generating information to be output on said output device, a connector for attaching a field-changeable rendering card to the motherboard, said field-changeable rendering card capable of housing a discrete rendering device for generating information to be output on said output device and detection circuitry for detecting that a field-changeable rendering card housing a discrete rendering device is coupled to said connector and causing information from said field-changeable rendering card housing a discrete rendering device to be output on said output device. One advantage of the disclosed edge connector is that it is compatible with a plurality of graphics cards and systems, thereby enabling a computing device user to upgrade the existing device's graphics system. Thus, the user is not forced to purchase an entirely new computing device in order to take advantage of graphics innovations. A further advantage of the disclosed edge connector is that it enables upgrades to low voltage differential signaling (LVDS) features, without the need for additional costly devices capable of operating at LVDS data rates.
    • 现场可变绘制系统的一个实施例包括与主板接口的输出设备,安装到母板上的固定渲染设备,用于产生要在所述输出设备上输出的信息;连接器,用于将现场可变渲染卡连接到主板; 所述现场可变绘制卡能够容纳用于产生要在所述输出设备上输出的信息的离散渲染设备和用于检测容纳离散渲染设备的现场可变渲染卡耦合到所述连接器并检测来自所述连接器的信息的检测电路 现场可变绘制卡,其容纳要在所述输出设备上输出的离散渲染设备。 所公开的边缘连接器的一个优点是它与多个图形卡和系统兼容,从而使得计算设备用户能够升级现有设备的图形系统。 因此,为了利用图形创新,用户不被迫购买全新的计算设备。 所公开的边缘连接器的另一个优点是能够升级到低电压差分信号(LVDS)特征,而不需要能够以LVDS数据速率操作的额外昂贵的设备。
    • 19. 发明授权
    • Dual-mode power supply
    • 双模电源
    • US08417980B1
    • 2013-04-09
    • US12194499
    • 2008-08-19
    • Ludger Mimberg
    • Ludger Mimberg
    • G06F1/00G05F1/10G05F1/00H02J3/12H02M3/335
    • G06F1/26H02J2001/106H02M3/1584
    • A power supply connected to an electrical load that supplies an output voltage to the electrical load. The power supply includes a first portion having a fast transient response topology that supplies a first part of an output current, and a second portion having a slow transient response topology that supplies a second part of the output current, such that the second part of the output current does not increase or decrease as fast as the first part of the output current. Advantageously, embodiments of the invention provide a more efficient power supply design that converts part of the total power supply output current using a fast transient response portion and part using a slow transient response portion of the power supply. Additionally, embodiments of the invention provide an alternate current path for transporting large amounts of current to a GPU, while maintaining the efficiency of the overall current path.
    • 连接到向负载提供输出电压的电负载的电源。 电源包括具有提供输出电流的第一部分的快速瞬态响应拓扑的第一部分和具有提供输出电流的第二部分的慢速瞬态响应拓扑的第二部分,使得第二部分 输出电流不会像输出电流的第一部分那样增加或减小。 有利地,本发明的实施例提供了一种更有效的电源设计,其使用快速瞬态响应部分和使用电源的慢速瞬态响应部分来转换部分总电源输出电流。 另外,本发明的实施例提供了用于将大量电流传送到GPU的备用电流路径,同时保持了整个电流路径的效率。