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    • 1. 发明申请
    • ISA BRIDGING WITH CALLBACK
    • ISA电话与电话
    • US20140040921A1
    • 2014-02-06
    • US13995935
    • 2012-01-10
    • Jianhui LiLing LinYong WuXiaodong LinWen TanHonesty Cheng YoungYihua Jin
    • Jianhui LiLing LinYong WuXiaodong LinWen TanHonesty Cheng YoungYihua Jin
    • G06F9/54
    • G06F9/54G06F9/45504G06F9/541
    • Methods, apparatuses and storage medium associated with ISA bridging with callback, are disclosed. In various embodiments, at least one computer-readable storage medium may include instructions configured to enable a target device with a target ISA, in response to execution of the instructions, to provide an ISA bridging layer to the target device to facilitate a library service to callback a callback function of an application. The library service may be implemented for the target ISA, and the application may be implemented at least partially for a source ISA that may be different from the target ISA. The ISA bridging layer may include a source ISA emulator and a library emulator configured to cooperate to enable the application to call the library service, and the library service to callback the callback function, across the two instruction set architectures. Other embodiments may be disclosed or claimed.
    • 公开了与与回调桥接的ISA相关联的方法,装置和存储介质。 在各种实施例中,至少一个计算机可读存储介质可以包括被配置为使得具有目标ISA的目标设备响应于指令的执行而向目标设备提供ISA桥接层以促进图书馆服务 回调一个应用程序的回调函数。 可以为目标ISA实现库服务,并且应用可以至少部分地针对可能与目标ISA不同的源ISA来实现。 ISA桥接层可以包括源ISA仿真器和库仿真器,其被配置为协作以使应用能够调用库服务,并且库服务在两个指令集体系结构之间回调回调函数。 可以公开或要求保护其他实施例。
    • 2. 发明授权
    • ISA bridging with callback
    • ISA与回调桥接
    • US09513977B2
    • 2016-12-06
    • US13995935
    • 2012-01-10
    • Jianhui LiLing LinYong WuXiaodong LinWen TanHonesty Cheng YoungYihua Jin
    • Jianhui LiLing LinYong WuXiaodong LinWen TanHonesty Cheng YoungYihua Jin
    • G06F3/00G06F9/54G06F9/455
    • G06F9/54G06F9/45504G06F9/541
    • Methods, apparatuses and storage medium associated with ISA bridging with callback, are disclosed. In various embodiments, at least one computer-readable storage medium may include instructions configured to enable a target device with a target ISA, in response to execution of the instructions, to provide an ISA bridging layer to the target device to facilitate a library service to callback a callback function of an application. The library service may be implemented for the target ISA, and the application may be implemented at least partially for a source ISA that may be different from the target ISA. The ISA bridging layer may include a source ISA emulator and a library emulator configured to cooperate to enable the application to call the library service, and the library service to callback the callback function, across the two instruction set architectures. Other embodiments may be disclosed or claimed.
    • 公开了与与回调桥接的ISA相关联的方法,装置和存储介质。 在各种实施例中,至少一个计算机可读存储介质可以包括被配置为使得具有目标ISA的目标设备响应于指令的执行而向目标设备提供ISA桥接层以促进图书馆服务 回调一个应用程序的回调函数。 可以为目标ISA实现库服务,并且应用可以至少部分地针对可能与目标ISA不同的源ISA来实现。 ISA桥接层可以包括源ISA仿真器和库仿真器,其被配置为协作以使应用能够调用库服务,并且库服务在两个指令集体系结构之间回调回调函数。 可以公开或要求保护其他实施例。
    • 5. 发明申请
    • ISA BRIDGING INCLUDING SUPPORT FOR CALL TO OVERIDDING VIRTUAL FUNCTIONS
    • ISA桥接包括支持以覆盖虚拟功能
    • US20140046649A1
    • 2014-02-13
    • US13745203
    • 2013-01-18
    • Yong WuJianhui LiXiaodong Lin
    • Yong WuJianhui LiXiaodong Lin
    • G06F9/455
    • G06F9/45504G06F9/455G06F9/45508G06F9/541
    • Methods, apparatuses and storage medium associated with ISA bridging with support for virtual functions, are disclosed. In embodiments, at least one computer-readable storage medium may include instructions configured to enable a target device with a target ISA, in response to execution, to provide an ISA bridging layer to the target device to facilitate a library service of a library of the target device to call a virtual function of the library, while servicing an application operating on the target device, where the application has an overriding implementation. The ISA bridging layer may include a loader configured to load the application for execution, and as part of loading the application, detect the virtual function and modify a virtual function table of the application to enable the call. Other embodiments may be disclosed or claimed.
    • 公开了与支持虚拟功能的ISA桥接相关联的方法,装置和存储介质。 在实施例中,至少一个计算机可读存储介质可以包括被配置为使得具有目标ISA的目标设备响应于执行而向目标设备提供ISA桥接层以促进图书馆服务 目标设备调用库的虚拟功能,同时为在目标设备上运行的应用程序提供服务,其中应用程序具有重写的实现。 ISA桥接层可以包括被配置为加载应用以执行的加载器,并且作为加载应用的一部分,检测虚拟功能并修改应用的虚拟功能表以启用该呼叫。 可以公开或要求保护其他实施例。
    • 7. 发明授权
    • Optimized RF shield design
    • 优化射频屏蔽设计
    • US09013185B2
    • 2015-04-21
    • US13407852
    • 2012-02-29
    • Robert W. BrownYong WuZhen YaoShmaryu ShvarstsmanThomas ChmielewskiTimothy Eagan
    • Robert W. BrownYong WuZhen YaoShmaryu ShvarstsmanThomas ChmielewskiTimothy Eagan
    • G01R33/422G01R33/565
    • G01R33/422G01R33/341G01R33/385G01R33/4822G01R33/56518Y10T83/505
    • Radio frequency (RF) shields used with magnetic resonance imaging (MRI) apparatus may experience gradient field induced eddy currents and RF field induced eddy currents. These eddy currents can cause the RF shield to heat up at an undesirable rate. RF shields are designed to have a desired degree of RF shielding and a desired heating attribute. Design goals for RF shields include gradient field transparency and RF field opacity, both of which can be influenced by eddy currents. Example methods identify a gradient field that will induce eddy currents and identify an RF field that will induce eddy currents. If a region on the RF shield is identified where the desired heating attribute will not be achieved, then a pattern of axial cuts and azimuthal cuts can be made in the RF shield to reduce gradient eddy current heating in the RF shield while maintaining desired RF shielding.
    • 与磁共振成像(MRI)装置一起使用的射频(RF)屏蔽可能会经历梯度场感应涡流和射频场感应涡流。 这些涡流可以使RF屏蔽以不期望的速率加热。 RF屏蔽被设计为具有期望的RF屏蔽程度和期望的加热属性。 RF屏蔽的设计目标包括梯度场透明度和RF场不透明度,这两者都可以受涡流影响。 示例性方法识别将引起涡流的梯度场,并识别将产生涡流的RF场。 如果RF屏蔽上的区域被识别出将不能实现所需的加热属性,则可以在RF屏蔽中进行轴向切割和方位切割的图案,以减少RF屏蔽中的梯度涡流加热,同时保持所需的RF屏蔽 。
    • 8. 发明授权
    • Calibration method for tool center point of a robot manipulator
    • 机器人机械手工具中心点的校准方法
    • US09002516B2
    • 2015-04-07
    • US13648416
    • 2012-10-10
    • Long-En ChiuYong Wu
    • Long-En ChiuYong Wu
    • G05B19/04G01L25/00B25J9/16
    • B25J9/1692
    • A calibration method for calibration a tool center point for a robot manipulator includes the steps of: driving the tool to move above one of the inclined surfaces; defining a preset coordinate system TG; rotating the TCP relative to the UG-axis by about 180 degrees, calculating the value of Δw; updating the position parameters of the preset TCP, defining a new preset coordinate system TG′; rotating the TCP relative to the UG′-axis by about 90 degrees, calculating the value of Δv; updating the position parameters of the new preset TCP, defining a new preset coordinate system TG″; driving the tool to move above a planar horizontal surface; rotating the TCP relative to a axis by about 30 degrees, calculating the value of Δu; repeating the aforementioned steps until the deviation ΔP (Δw, Δv, Δu) is less than or equal to a maximum allowable deviation of the robot manipulator.
    • 用于校准机器人操纵器的工具中心点的校准方法包括以下步骤:驱动所述工具以在所述倾斜表面之一上方移动; 定义预设坐标系TG; 将TCP相对于UG轴旋转约180度,计算&Dgr; w的值; 更新预设TCP的位置参数,定义新的预设坐标系TG'; 将TCP相对于UG'轴旋转约90度,计算&Dgr; v的值; 更新新的预设TCP的位置参数,定义新的预设坐标系TG“; 驱动工具移动到平面水平面上方; 将TCP相对于轴旋转大约30度,计算&Dgr; u的值; 重复上述步骤,直到偏差&Dgr; P(&Dgr; w,&Dgr; v,&Dgr; u)小于或等于机器人操纵器的最大允许偏差。
    • 9. 发明授权
    • High conductivity energy-saving clamping device
    • 高导电节能夹紧装置
    • US08342892B2
    • 2013-01-01
    • US13126149
    • 2010-07-09
    • YePing FanYong WuZhangXi YanDi YuWei Duan
    • YePing FanYong WuZhangXi YanDi YuWei Duan
    • H01R11/24
    • H01R11/24H01R13/025
    • The high conductivity energy-saving clamping device comprises a clamp and a cable fixed upon the clamp. Inside the cable, the conductive material protrudes and is set on the juncture of the clamp and the external conductor. When the clamp is connected to the external conductor, the conductive material and the external conductor contact and meet. This invention possesses the following advantages: it simplifies the production technology, lessens raw materials needed for production and hence saves resources and cost by the direct contact of the conductive material and the external conductor; moreover, due to the increase of conductive contact area, it enhances the electrical conductivity by 10% to 15% compared to those common clamps which use tooth-like conductive parts to connect the external conductor. Meanwhile, the invention greatly decreases environmental pollution by omitting the plating process of tooth-like conductive parts.
    • 高导电节能夹紧装置包括夹具和固定在夹具上的电缆。 在电缆内部,导电材料突出并设置在夹具和外部导体的接合处。 当夹具连接到外部导体时,导电材料和外部导体接触并相遇。 本发明具有以下优点:它简化了生产技术,减少了生产所需的原料,从而通过导电材料和外部导体的直接接触节省了资源和​​成本; 此外,由于导电接触面积的增加,与使用齿形导电部件连接外部导体的普通夹具相比,其导电率提高10%至15%。 同时,本发明通过省略牙形导电部件的电镀工艺,大大降低了环境污染。