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    • 41. 发明授权
    • Memory reading method for resistance drift mitigation
    • 电阻漂移缓解的记忆读取方法
    • US07929338B2
    • 2011-04-19
    • US12392032
    • 2009-02-24
    • Michele M. FranceschiniJohn P. KaridisLuis A. Lastras
    • Michele M. FranceschiniJohn P. KaridisLuis A. Lastras
    • G11C11/00
    • G11C13/004G11C11/56G11C11/5678G11C13/0004G11C13/0033G11C2013/0052
    • Techniques for reading phase change memory that mitigate resistance drift. One contemplated method includes apply a plurality of electrical input signals to the memory cell. The method includes measuring a plurality of electrical output signals from the memory cell resulting from the plurality of electrical input signals. The method includes calculating an invariant component of the plurality of electrical output signals dependent on the configuration of amorphous material in the memory cell. The method also includes determining a memory state of the memory cell based on the invariant component. In one embodiment of the invention, the method further includes mapping the plurality of electrical output signals to a measurements region of a plurality of measurements regions. The measurements regions correspond to memory states of the memory cell.
    • 读取相变存储器的技术,减轻电阻漂移。 一种预期的方法包括将多个电输入信号应用于存储器单元。 该方法包括从多个电输入信号测量来自存储器单元的多个电输出信号。 该方法包括根据存储单元中非晶材料的配置来计算多个电输出信号的不变分量。 该方法还包括基于不变分量来确定存储器单元的存储器状态。 在本发明的一个实施例中,该方法还包括将多个电输出信号映射到多个测量区域的测量区域。 测量区域对应于存储器单元的存储器状态。
    • 46. 发明申请
    • COMPLIANT THERMAL INTERFACE STRUCTURE UTILIZING SPRING ELEMENTS
    • 使用弹簧元件的合适的热接口结构
    • US20080144288A1
    • 2008-06-19
    • US12037067
    • 2008-02-25
    • John P. KaridisMark D. SchultzBucknell C. Webb
    • John P. KaridisMark D. SchultzBucknell C. Webb
    • H05K7/20
    • H01L23/433A01H5/02A01H6/42H01L23/427H01L2924/0002H01L2924/00
    • A structure for cooling an electronic device is disclosed. The structure includes a solid heat-conducting layer disposed over the electronic device. The solid heat-conducting layer is a planar surface in contact with the electronic device. The structure further includes a plurality of copper spring elements disposed between the solid heat-conducting layer and the electronic device for providing a heat path from the electronic device and wherein the plurality of spring elements extend in an upper direction away from the electronic device and wherein the plurality of spring elements include a spring for offering resistance when loaded and wherein the spring elements have a smaller profile at a first end in contact with the electronic device, wherein the profile increases in size at a second end in contact with the solid heat-conducting layer.
    • 公开了一种用于冷却电子设备的结构。 该结构包括设置在电子设备上的固体导热层。 固体导热层是与电子设备接触的平面。 该结构还包括设置在固体导热层和电子装置之间的多个铜弹簧元件,用于提供来自电子装置的热路径,并且其中多个弹簧元件沿远离电子装置的上方向延伸,并且其中 多个弹簧元件包括用于在加载时提供电阻的弹簧,并且其中弹簧元件在与电子设备接触的第一端处具有较小的轮廓,其中,在与固体热交换器接触的第二端处的轮廓尺寸增大, 导电层。
    • 49. 发明授权
    • Laptop display screen and keyboard mounting structure
    • 笔记本电脑显示屏和键盘安装结构
    • US06816365B2
    • 2004-11-09
    • US10360491
    • 2003-02-07
    • David W. HillJohn P. Karidis
    • David W. HillJohn P. Karidis
    • G06F116
    • G06F1/1616G06F1/1667G06F1/1679
    • A laptop computer has a base, which base has a front and rear end. A display screen is mounted on a display screen mounting mechanism for movement between a closed position and a first open position, with the display screen adjacent the rear of the base, and a second open position with the display screen spaced above and forward of the rear of the base. The display screen is pivotally movable in both open positions. A keyboard assembly is mounted on the base for movement between a retracted position and an extended position, and a keyboard mounting mechanism guides the keyboard assembly between the retracted and the extended positions, and lifts the rear of the keyboard assembly when the screen is in the second open position. The mechanisms have cooperating structures to retract the keyboard assembly from the extended position responsive to movement of the display screen mounting mechanism.
    • 笔记本电脑具有基座,该基座具有前端和后端。 显示屏安装在显示屏安装机构上,用于在关闭位置和第一打开位置之间移动,显示屏幕邻近基座的后部,第二打开位置与显示屏幕在后方间隔开并且向前 的基地。 显示屏可在两个打开位置枢转运动。键盘组件安装在基座上,用于在缩回位置和延伸位置之间移动,键盘安装机构将键盘组件引导回缩位置和伸出位置之间, 当屏幕处于第二打开位置时,键盘组件的后部。机构具有协作结构,以响应于显示屏幕安装机构的移动而从伸出位置缩回键盘组件。
    • 50. 发明授权
    • Variable capacitor with wobble motor disc selector
    • 可变电容器,带摆动电机盘选择器
    • US6147856A
    • 2000-11-14
    • US282575
    • 1999-03-31
    • John P. Karidis
    • John P. Karidis
    • H01G5/04H01G5/06H01G5/18H01G5/00H01G5/16
    • H01G5/18
    • Devices for use in highly integrated radio frequency transceivers utilize micro-electro-mechanical systems, or wobble motors, to form superior switches and to select and vary components that determine different frequencies of operation. Each device has a substrate with concentric rings of electrodes and contacts. A circular rotor is centrally pivoted or wobbled to engage the contacts along its circumferential edge. The rotor may be mechanically or materially modified to create symmetric or asymmetric forms which interact with one or more stationary capacitor electrodes on the substrate. The positioning of the rotor forms in terms of rotation, overlap and separation, relative to the capacitor electrodes, varies the capacitance.
    • 用于高度集成的射频收发器的设备利用微机电系统或摆动电机来形成优越的开关,并选择和改变决定不同工作频率的元件。 每个器件都具有一个具有电极和触头同心环的衬底。 圆形转子中心枢转或摆动以沿着其周向边缘接合触点。 转子可以被机械地或物理地修改以产生与衬底上的一个或多个固定电容器电极相互作用的对称或非对称形式。 相对于电容器电极,转子的旋转,重叠和分离方向的形状改变电容。