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    • 1. 发明授权
    • Processor performance adjustment system and method
    • 处理器性能调整系统及方法
    • US07882369B1
    • 2011-02-01
    • US10295619
    • 2002-11-14
    • Brian M. KelleherLudger MimbergKevin KranzuschJohn LamSenthil S. Velmurugan
    • Brian M. KelleherLudger MimbergKevin KranzuschJohn LamSenthil S. Velmurugan
    • G06F1/00G06F1/26G06F1/32
    • G06F1/3203G06F1/324G06F1/3296Y02D10/126Y02D10/172
    • The present invention performance enhancement and reliability maintenance system and method pushes a processor to its maximized performance capabilities when performing processing intensive tasks (e.g., 3D graphics, etc). For example, a clock speed and voltage are increased until an unacceptable error rate begins to appear in the processing results and then the clock speed and voltage are backed off to the last setting at which excessive errors did not occur, enabling a processor at its full performance potential. The present invention also includes the ability to throttle back settings which facilitates the maintenance of desired reliability standards. The present invention is readily expandable to provide adjustment for a variety of characteristics in response to task performance requirements. For example, a variable speed fan that is software controlled can be adjusted to alter the temperature of the processor in addition to clock frequency and voltage.
    • 本发明的性能增强和可靠性维护系统和方法在执行处理密集型任务(例如,3D图形等)时将处理器推送到其最大化的性能能力。 例如,时钟速度和电压增加,直到处理结果中开始出现不可接受的错误率,然后将时钟速度和电压退回到最后一个设置,在这种情况下,不会出现过大的错误,从而使处理器处于完整状态 性能潜力 本发明还包括有利于维护期望可靠性标准的设置的节制的能力。 本发明易于扩展,以响应于任务性能要求提供各种特性的调整。 例如,可以调节软件控制的变速风扇,以便改变处理器的温度以及时钟频率和电压。
    • 2. 发明申请
    • PROCESSOR PERFORMANCE ADJUSTMENT SYSTEM AND METHOD
    • 处理器性能调整系统和方法
    • US20110126056A1
    • 2011-05-26
    • US13019249
    • 2011-02-01
    • Brian M. KelleherLudger MimbergKevin KransuschJohn LamSenthil S. Velmurugan
    • Brian M. KelleherLudger MimbergKevin KransuschJohn LamSenthil S. Velmurugan
    • G06F11/34
    • G06F1/3203G06F1/324G06F1/3296Y02D10/126Y02D10/172
    • The present invention performance enhancement and reliability maintenance system and method pushes a processor to its maximized performance capabilities when performing processing intensive tasks (e.g., 3D graphics, etc). For example, a clock speed and voltage are increased until an unacceptable error rate begins to appear in the processing results and then the clock speed and voltage are backed off to the last setting at which excessive errors did not occur, enabling a processor at its full performance potential. The present invention also includes the ability to throttle back settings which facilitates the maintenance of desired reliability standards. The present invention is readily expandable to provide adjustment for a variety of characteristics in response to task performance requirements. For example, a variable speed fan that is software controlled can be adjusted to alter the temperature of the processor in addition to clock frequency and voltage.
    • 本发明的性能增强和可靠性维护系统和方法在执行处理密集型任务(例如,3D图形等)时将处理器推送到其最大化的性能能力。 例如,时钟速度和电压增加,直到处理结果中开始出现不可接受的错误率,然后将时钟速度和电压退回到最后一个设置,在这种情况下,不会出现过大的错误,从而使处理器处于完整状态 性能潜力 本发明还包括有利于维护期望可靠性标准的设置的节制的能力。 本发明易于扩展,以响应于任务性能要求提供各种特性的调整。 例如,可以调节软件控制的变速风扇,以便改变处理器的温度以及时钟频率和电压。
    • 3. 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。
    • 5. 发明授权
    • Method and apparatus for drawing lines in a graphics system
    • 用于在图形系统中绘制线的方法和装置
    • US5206628A
    • 1993-04-27
    • US908591
    • 1992-06-30
    • Brian M. Kelleher
    • Brian M. Kelleher
    • G06T11/20
    • G06T11/203
    • A method is provided for generating pixel color information for use in producing an image of a line segment on a graphics display screen, the method comprising the steps of: denoting at least one planar region of the display screen that encompasses the line segment; assigning respective intensity values for at least three selected pixels encompassed by the at least one planar region; assigning respective color values for the at least three selected pixels; and interpolating respective final color values for each respective pixel encompassed by the at least one planar region based upon the respective assigned intensity values and the respective assigned color values.
    • 提供了一种用于生成用于在图形显示屏幕上产生线段的图像的像素颜色信息的方法,该方法包括以下步骤:表示包含线段的显示屏幕的至少一个平面区域; 为由所述至少一个平面区域包围的至少三个所选择的像素分配各个强度值; 为所述至少三个所选择的像素分配相应的颜色值; 以及基于相应的分配的强度值和相应的分配的颜色值,内插由所述至少一个平面区域包围的每个相应像素的各个最终颜色值。
    • 7. 发明授权
    • Virtual binning
    • 虚拟合并
    • US08249819B1
    • 2012-08-21
    • US11612835
    • 2006-12-19
    • Sean Jeffrey TreichlerBrian M. Kelleher
    • Sean Jeffrey TreichlerBrian M. Kelleher
    • G01R15/00
    • G01R31/31718G01R31/3004
    • An electronic device is assigned to a virtual bin by setting an operating voltage of the electronic device to a first voltage, determining an operating frequency and an operating power consumption level for the electronic device, determining an operating frequency differential equal to the absolute value of difference between the operating frequency and a minimum operating frequency of the physical bin, determining a power consumption level differential equal to the absolute value of difference between the operating power consumption level and a maximum operating power consumption level of the physical bin, and assigning a virtual bin identifier to the electronic device to identify the operating voltage of the electronic device if the operating frequency is greater than or equal to the minimum operating frequency of the physical bin and the operating power consumption level is less than or equal to the maximum power consumption level of the physical bin.
    • 通过将电子设备的工作电压设置为第一电压,确定电子设备的工作频率和操作功耗水平,将电子设备分配给虚拟箱,确定等于差分绝对值的工作频率差 在所述操作频率和所述物理仓的最小工作频率之间,确定等于所述操作功率消耗水平与所述物理仓的最大操作功率消耗水平之间的差的绝对值的功率消耗水平差,以及分配虚拟箱 如果操作频率大于或等于物理箱的最小工作频率,并且操作功率消耗水平小于或等于最大功率消耗水平,则识别电子设备的标识符以识别电子设备的工作电压 物理仓。