会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • Virtual test environment
    • 虚拟测试环境
    • US20050240389A1
    • 2005-10-27
    • US11169597
    • 2005-06-28
    • Sunil JainGregory Chema
    • Sunil JainGregory Chema
    • G01R31/3183G06F9/455G06F17/50
    • G01R31/318364
    • A method of and an apparatus for designing a test environment providing reliable test signal integrity, and of evaluating performance of the test environment and an electronic device during testing of the electronic device. A virtual test environment is created emulating an actual test environment in which the electronic device is to be tested. A virtual calibration of the virtual test environment may be performed, to more closely emulate the actual test environment. A virtual device emulating the actual electronic device is implanted into the virtual test environment, and that virtual device is stimulated with an input test signal emulating the actual input signal that is applied to the actual electronic device in the actual test environment. The integrity of the input test signal and the resulting output signal is evaluated. Based on that evaluation an adjustment might be made to the virtual calibration of the virtual test environment and/or to the virtual device, or both, and the design of the actual device might be improved. The invention can be implemented on a properly programmed general purpose processing system or on a special purpose system.
    • 一种用于设计提供可靠测试信号完整性的测试环境的方法和装置,以及在测试电子设备期间评估测试环境和电子设备的性能。 创建虚拟测试环境,模拟实际测试环境,其中要测试电子设备。 可以执行虚拟测试环境的虚拟校准,以更仔细地模拟实际的测试环境。 仿真实际电子设备的虚拟设备被植入到虚拟测试环境中,并且利用在实际测试环境中模拟应用于实际电子设备的实际输入信号的输入测试信号来刺激虚拟设备。 评估输入测试信号和所得到的输出信号的完整性。 基于该评估,可以对虚拟测试环境和/或虚拟设备或两者的虚拟校准进行调整,并且可以改进实际设备的设计。 本发明可以在适当编程的通用处理系统或专用系统上实现。
    • 3. 发明申请
    • Techniques for adapting a color gamut
    • 适应色域的技术
    • US20110157212A1
    • 2011-06-30
    • US12655354
    • 2009-12-29
    • Yanli ZhangAkihiro TakagiSunil Jain
    • Yanli ZhangAkihiro TakagiSunil Jain
    • G09G5/02
    • H04N9/67G09G5/02G09G2340/06G09G2370/047H04N9/69
    • Techniques are described that can be used to provide color space conversion for images and video to a display color gamut space. Some techniques provide for accessing an sRGB gamut color table, determining a color conversion matrix based on the sRGB gamut color table and chromaticity values of RGBW primary and gamma stored in the display or associated with the display, applying color space conversion to the pixels for pixels using the color conversion matrix, and applying linear correction of pixels by applying a normalization factor to the color conversion matrix. In addition, some techniques provide analysis of content gamut with respect to display gamut in HSV space, adjustment in HSV space, and conversion back to RGB space before applying color space conversion.
    • 描述了可用于向显示色域空间提供图像和视频的颜色空间转换的技术。 一些技术提供访问sRGB色域颜色表,基于sRGB色域颜色表确定颜色转换矩阵,以及存储在显示器中或与显示器相关联的RGBW原始和伽马的色度值,将颜色空间转换应用于像素的像素 使用颜色转换矩阵,并通过将归一化因子应用于颜色转换矩阵来应用像素的线性校正。 此外,一些技术提供了在HSV空间中显示色域的内容色域分析,HSV空间调整,以及在应用颜色空间转换之前转换回RGB空间。
    • 4. 发明申请
    • Eye width characterization mechanism
    • 眼宽表征机制
    • US20060048030A1
    • 2006-03-02
    • US10930202
    • 2004-08-31
    • Kim ChowSunil Jain
    • Kim ChowSunil Jain
    • G01R31/28
    • G01R31/31905G01R31/31922G01R31/31937
    • An eye width characterization mechanism determines a pass setting of a sampling phase positioned within an eye width of received data. The sampling phase is incremented in a first direction from the pass setting until the sampling phase is outside the eye width of the received data. The sampling phase is then incremented in an opposite direction of the first direction starting again from the pass setting until the sampling phase is outside the eye width of the received data. The number of the sampling phase increments in the first direction is added to the number of the sampling phase increments in the opposite direction to characterize the eye width of the received data.
    • 眼睛宽度表征机制确定位于接收数据的眼睛宽度内的采样相位的通过设置。 采样相位从通过设置的第一个方向递增到采样相位在接收数据的眼睛宽度之外。 然后,采样相位在第一方向的相反方向上再次从通过设置开始,直到采样相位在接收数据的眼睛宽度之外。 在第一方向上采样相位增量的数量被加到相反方向上的采样相位增量的数量,以表征接收数据的眼宽。
    • 5. 发明授权
    • Customizable user interface for network navigation and management
    • 可定制的用户界面,用于网络导航和管理
    • US06225999B1
    • 2001-05-01
    • US09438026
    • 1999-11-10
    • Sunil JainRobert Williams
    • Sunil JainRobert Williams
    • G06F314
    • H04L41/22H04L41/06Y10S715/969
    • A graphical user interface for network management permits a network manager to select a limited number of network components to be displayed, along with the information relative thereto, while removing the display of undesirable or unnecessary data. Information is provided to inform the network manager that connections to other components may exist. In addition, information regarding the relationship of other components connected to the selected components is displayed. The network manager is provided with the opportunity to navigate about the map which illustrates the network topology, to locate the source of a problem. If the relationship between components changes, the network manager can expand the information displayed on the screen, to view all of the components that are directly connected to an illustrated component associated with a problem. The network manager can continue to request the display of specific connections, until the component which is the source of the problem is itself displayed and identified. Once the problem has been corrected, the manager can collapse the view to the originally selected components.
    • 用于网络管理的图形用户界面允许网络管理器选择要显示的有限数量的网络组件以及与其相关的信息,同时移除不期望或不必要的数据的显示。 提供信息以通知网络管理员可能存在与其他组件的连接。 此外,显示关于连接到所选择的部件的其他部件的关系的信息。 网络管理器被提供了有关映射的机会,该图示出了网络拓扑,以定位问题的根源。 如果组件之间的关系发生变化,则网络管理员可以扩展显示在屏幕上的信息,以查看直接连接到与问题相关联的图示组件的所有组件。 网络管理员可以继续请求显示特定的连接,直到出现问题来源的组件本身被显示和识别为止。 一旦问题得到纠正,管理员可以将视图折叠到最初选择的组件。
    • 6. 发明授权
    • Techniques for adapting a color gamut
    • 适应色域的技术
    • US08654141B2
    • 2014-02-18
    • US12655354
    • 2009-12-29
    • Yanli ZhangAkihiro TakagiSunil Jain
    • Yanli ZhangAkihiro TakagiSunil Jain
    • G09G5/02G09G5/10
    • H04N9/67G09G5/02G09G2340/06G09G2370/047H04N9/69
    • Techniques are described that can be used to provide color space conversion for images and video to a display color gamut space. Some techniques provide for accessing an sRGB gamut color table, determining a color conversion matrix based on the sRGB gamut color table and chromaticity values of RGBW primary and gamma stored in the display or associated with the display, applying color space conversion to the pixels for pixels using the color conversion matrix, and applying linear correction of pixels by applying a normalization factor to the color conversion matrix. In addition, some techniques provide analysis of content gamut with respect to display gamut in HSV space, adjustment in HSV space, and conversion back to RGB space before applying color space conversion.
    • 描述了可用于向显示色域空间提供图像和视频的颜色空间转换的技术。 一些技术提供访问sRGB色域颜色表,基于sRGB色域颜色表确定颜色转换矩阵,以及存储在显示器中或与显示器相关联的RGBW原始和伽马的色度值,将颜色空间转换应用于像素的像素 使用颜色转换矩阵,并通过将归一化因子应用于颜色转换矩阵来应用像素的线性校正。 此外,一些技术提供了在HSV空间中显示色域的内容色域分析,HSV空间调整,以及在应用颜色空间转换之前转换回RGB空间。
    • 8. 发明申请
    • Eye width characterization mechanism
    • 眼宽表征机制
    • US20070277063A1
    • 2007-11-29
    • US11710534
    • 2007-02-23
    • Kim ChowSunil Jain
    • Kim ChowSunil Jain
    • G06K5/04
    • G01R31/31905G01R31/31922G01R31/31937
    • An eye width characterization mechanism determines a pass setting of a sampling phase positioned within an eye width of received data. The sampling phase is incremented in a first direction from the pass setting until the sampling phase is outside the eye width of the received data. The sampling phase is then incremented in an opposite direction of the first direction starting again from the pass setting until the sampling phase is outside the eye width of the received data. The number of the sampling phase increments in the first direction is added to the number of the sampling phase increments in the opposite direction to characterize the eye width of the received data.
    • 眼睛宽度表征机制确定位于接收数据的眼睛宽度内的采样相位的通过设置。 采样相位从通过设置的第一个方向递增到采样相位在接收数据的眼睛宽度之外。 然后,采样相位在第一方向的相反方向上再次从通过设置开始,直到采样相位在接收数据的眼睛宽度之外。 在第一方向上采样相位增量的数量被加到相反方向上的采样相位增量的数量,以表征接收数据的眼宽。
    • 9. 发明授权
    • Customizable user interface for network navigation and management
    • 可定制的用户界面,用于网络导航和管理
    • US6040834A
    • 2000-03-21
    • US775289
    • 1996-12-31
    • Sunil JainRobert Williams
    • Sunil JainRobert Williams
    • H04L12/24G06F3/14G06F15/177
    • H04L41/22H04L41/06Y10S715/969
    • A graphical user interface for network management permits a network manager to select a limited number of network components to be displayed, along with the information relative thereto, while removing the display of undesirable or unnecessary data. Information is provided to inform the network manager that connections to other components may exist. In addition, information regarding the relationship of other components connected to the selected components is displayed. The network manager is provided with the opportunity to navigate about the map which illustrates the network topology, to locate the source of a problem. If the relationship between components changes, the network manager can expand the information displayed on the screen, to view all of the components that are directly connected to an illustrated component associated with a problem. The network manage can continue to request the display of specific connections, until the component which is the source of the problem is itself displayed and identified. Once the problem has been corrected, the manager can collapse the view to the originally selected components.
    • 用于网络管理的图形用户界面允许网络管理器选择要显示的有限数量的网络组件以及与其相关的信息,同时移除不期望或不必要的数据的显示。 提供信息以通知网络管理员可能存在与其他组件的连接。 此外,显示关于连接到所选择的部件的其他部件的关系的信息。 网络管理器被提供了有关映射的机会,该图示出了网络拓扑,以定位问题的根源。 如果组件之间的关系发生变化,则网络管理员可以扩展显示在屏幕上的信息,以查看直接连接到与问题相关联的图示组件的所有组件。 网络管理可以继续请求显示特定的连接,直到出现问题来源的组件本身被显示和识别为止。 一旦问题得到纠正,管理员可以将视图折叠到最初选择的组件。