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    • 2. 发明授权
    • Secondary graphics processor control system
    • 二级图形处理器控制系统
    • US09110664B2
    • 2015-08-18
    • US13452181
    • 2012-04-20
    • Thomas P. LanzoniAjay KwatraRandall E. Juenger
    • Thomas P. LanzoniAjay KwatraRandall E. Juenger
    • G06F15/16G06F1/32G06F9/50
    • G06F1/3218G06F1/3212G06F1/3265G06F9/5094Y02D10/153Y02D10/174Y02D10/22
    • A secondary graphics processor control system includes a secondary graphics processor. A controller is coupled to the secondary graphics processor. The controller detects the start of an application that is associated with a secondary graphics processor and then determines a power capability of a battery. The controller then either prevents enablement of the secondary graphics processor if the power capability is below a predetermined threshold such that only a primary graphics processor processes graphics for the application, or allows enablement of the secondary graphics processor if the power capability is above the predetermined threshold such that the secondary graphics processor processing graphics for the application. The primary graphics processor may be an integrated graphics processing unit (iGPU) provided by a system processor that is mounted to a board, and the secondary graphics processor may be a discrete graphics processing unit (dGPU) that is coupled to the board.
    • 辅助图形处理器控制系统包括辅助图形处理器。 控制器耦合到辅助图形处理器。 控制器检测与二级图形处理器相关联的应用的开始,然后确定电池的功率能力。 然后,如果功率能力低于预定阈值,则控制器可以防止辅助图形处理器的启用,使得只有主图形处理器处理应用的图形,或者如果功率能力高于预定阈值则允许辅助图形处理器的启用 使二级图形处理器处理图形的应用。 主图形处理器可以是由安装到板的系统处理器提供的集成图形处理单元(iGPU),并且辅助图形处理器可以是耦合到板的分立图形处理单元(dGPU)。
    • 3. 发明申请
    • SECONDARY GRAPHICS PROCESSOR CONTROL SYSTEM
    • 二次图形处理器控制系统
    • US20130278613A1
    • 2013-10-24
    • US13452181
    • 2012-04-20
    • Thomas P. LanzoniAjay KwatraRandall E. Juenger
    • Thomas P. LanzoniAjay KwatraRandall E. Juenger
    • G06F15/16G06F13/14
    • G06F1/3218G06F1/3212G06F1/3265G06F9/5094Y02D10/153Y02D10/174Y02D10/22
    • A secondary graphics processor control system includes a secondary graphics processor. A controller is coupled to the secondary graphics processor. The controller detects the start of an application that is associated with a secondary graphics processor and then determines a power capability of a battery. The controller then either prevents enablement of the secondary graphics processor if the power capability is below a predetermined threshold such that only a primary graphics processor processes graphics for the application, or allows enablement of the secondary graphics processor if the power capability is above the predetermined threshold such that the secondary graphics processor processing graphics for the application. The primary graphics processor may be an integrated graphics processing unit (iGPU) provided by a system processor that is mounted to a board, and the secondary graphics processor may be a discrete graphics processing unit (dGPU) that is coupled to the board.
    • 辅助图形处理器控制系统包括辅助图形处理器。 控制器耦合到辅助图形处理器。 控制器检测与二级图形处理器相关联的应用的开始,然后确定电池的功率能力。 然后,如果功率能力低于预定阈值,则控制器可防止辅助图形处理器的启用,使得只有主图形处理器处理用于应用的图形,或者如果功率能力高于预定阈值则允许辅助图形处理器的启用 使二级图形处理器处理图形的应用。 主图形处理器可以是由安装到板的系统处理器提供的集成图形处理单元(iGPU),并且辅助图形处理器可以是耦合到板的分立图形处理单元(dGPU)。
    • 5. 发明授权
    • System and method for DVI native and docking support
    • DVI本机和对接支持的系统和方法
    • US07624218B2
    • 2009-11-24
    • US10689253
    • 2003-10-20
    • Randall E. Juenger
    • Randall E. Juenger
    • G06F13/00
    • G09G5/006
    • DVI native and docking station support for a portable information handling system provides output of display information from a either DVI connector at the portable information handling system housing or from a DVI connector at the portable information handling system docking station. A DVO signal outputs from a graphics component to a multiplexer that selectively provides the DVO signal to a TMDS transmitter associated with a housing DVI connector or to a TMDS transmitter associated with a docking station to information handling system connector and docking station DVI connector. Selection of the housing TMDS transmitter to receive the DVO signal is made if the information handling system is not coupled to the docking station, and selection of the docking station TMDS transmitter to receive the DVO signal is made if the information handling system is coupled to the docking station at the docking station connector.
    • 便携式信息处理系统的DVI本地和对接站支持从便携式信息处理系统外壳上的DVI连接器或便携式信息处理系统对接站处的DVI连接器输出显示信息。 DVO信号从图形组件输出到多路复用器,其选择性地将DVO信号提供给与壳体DVI连接器相关联的TMDS发射器或与对接站相关联的TMDS发射器到信息处理系统连接器和对接站DVI连接器。 如果信息处理系统没有耦合到对接站,则选择外壳TMDS发送器来接收DVO信号,并且如果信息处理系统耦合到对接站,则选择对接站TMDS发送器来接收DVO信号 对接站在对接站连接器。
    • 6. 发明授权
    • Dynamic switching of parallel termination for power management with DDR memory
    • 使用DDR内存进行电源管理的并行终端的动态切换
    • US06894691B2
    • 2005-05-17
    • US10136067
    • 2002-05-01
    • Randall E. Juenger
    • Randall E. Juenger
    • G06F3/14G09G5/39H03K17/16
    • G09G5/39G06F3/14G09G2330/021G09G2360/12
    • A system and method for managing power consumption of an information handling system dynamically switches between high and low clock speed data transfers with double data rate (DDR) memory. The selection of a high clock speed dynamically switches the DDR memory to connect to a parallel termination for more rapid data transfers with increased power consumption. The selection of a low clock speed dynamically switches the DDR memory to disconnect the parallel termination for slower data transfers with reduced power consumption. In one embodiment, portable computer graphics DDR memory reduces power consumption by selecting low clock speed transfers without parallel termination when operating on internal power. The portable computer graphics DDR memory provides improved display resolution by selecting high clock speed transfers with parallel termination when operating on external power or when displaying information from high resolution applications.
    • 用于管理信息处理系统的功耗的系统和方法在具有双倍数据速率(DDR)存储器的高和低时钟速度数据传输之间动态地切换。 高速时钟速度的选择动态地切换DDR存储器以连接到并行终端,从而更快速地进行数据传输,并增加功耗。 选择低时钟速度可以动态地切换DDR存储器,以便以较低的功耗消除并行终端,从而实现较慢的数据传输。 在一个实施例中,便携式计算机图形DDR存储器通过选择低时钟速度传输来减少功耗,而不需要在内部电源运行时并行终止。 便携式计算机图形DDR存储器通过在外部电源运行时或当显示来自高分辨率应用的信息时选择具有并行终端的高速时钟速度传输来提供改进的显示分辨率
    • 9. 发明授权
    • System and method for dynamic adjustment of an information handling systems graphics bus
    • 用于动态调整信息处理系统图形总线的系统和方法
    • US07539809B2
    • 2009-05-26
    • US11207298
    • 2005-08-19
    • Randall E. Juenger
    • Randall E. Juenger
    • G06F13/40
    • G06F13/4063G06F13/40Y02D10/14Y02D10/151
    • PCI Express bus utilization is monitored for one or more predetermined thresholds to adjust the width of the bus in accordance with the utilization to provide power savings with minimal impact on performance. For instance, a performance monitor of a graphics controller tracks bus utilization with registers to adjust bus width between one, eight and sixteen lanes. Reduced numbers of active lanes are used at low utilization, such as one lane when a desktop graphic is presented on the display, increased numbers of active lanes are used at moderate utilization, such as eight lanes when a video image is presented on the display, and all lanes are active at high utilization, such as for presentation of three dimensional images.
    • 对一个或多个预定阈值监视PCI Express总线利用率,以根据利用率来调整总线的宽度,从而以最小的性能影响提供功率节省。 例如,图形控制器的性能监视器通过寄存器跟踪总线利用率,以调整一个,八个和十六个车道之间的总线宽度。 在低利用率下使用减少的活动车道数量,例如当在显示器上呈现桌面图形时的一个车道,在中等利用率下使用增加的活动车道数量,例如当显示器上呈现视频图像时的八个车道, 并且所有车道在高利用率下是活跃的,例如呈现三维图像。