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    • 1. 发明授权
    • Image sensor having improved moving target discernment capabilities
    • US4176369A
    • 1979-11-27
    • US857633
    • 1977-12-05
    • Richard D. NelsonA. James Hughes
    • Richard D. NelsonA. James Hughes
    • H01L21/339H01L27/148H01L29/76H01L29/762H01L29/772H01L29/78H01L31/00
    • H01L29/762H01L27/14831H01L27/14875
    • A semiconductor image sensor comprises an array of charge collection elements buried within the semiconductor for collecting charge photogenerated in response to the image. This sensor is easily configured to discern changes in an image. One or more charge transfer devices (CTD's) of an array are associated with each column of charge collection elements. For readout, the charge collected by each charge collection element is transferred to an associated storage cell of an array CTD associated with the column in which that charge collection element is disposed.For discernment of moving targets or image changes, a difference between the charge collected by a given charge collection element during a first frame and a second frame is determined. To discern a moving target, each column of charge collection elements has a first and a second array CTD associated therewith and a first image frame of charge is collected, transferred to and stored in the channels of the first array CTD's, after which a second image frame of charge is collected, transferred to and stored in the channels of the second array CTD's. The charges in the first and second array CTD's are then read out in parallel, thereby transferring the image frames in parallel. Output CTD channels positioned to accept charge from the channels of the array CTD's have special charge transfer control structures for transferring the charge from the channels of the array's first CTD's to the channel of a first output CTD and from the channels of the array's second CTD's to the channel of a second output CTD to ensure that parallel transfer of the image frames continues in the output CTD's. This parallel in the array, parallel in the output (parallel-parallel) CTD transfer architecture minimizes interframe cross-talk and maximizes resolution. Interleaved first and second array CTD's to which charge may be selectively transferred are achieved by splitting the propagation electrodes for one phase into two electrodes each in order to control charge transfer from the charge collectors to the first and second associated CTD's independently.The CTD's (array and output together) may be combined with a prior art single-frame-at-a-time imager to form a system which appears (at the external system output) to be the same as the monolithic structure.
    • 2. 再颁专利
    • Integrated cooling system
    • 集成冷却系统
    • USRE40618E1
    • 2009-01-06
    • US11071898
    • 2005-03-04
    • Richard D. NelsonAnjan Somadder
    • Richard D. NelsonAnjan Somadder
    • H05K7/20H01L23/36
    • H01L23/473A61K31/00F28F2250/08G06F1/20G06F1/203H01L2924/0002Y10T29/4935H01L2924/00
    • Systems and methods are described for integrated cooling system. A method includes: circulating a liquid inside a flexible multi-layer tape; and transporting heat between a heat source that is coupled to the flexible multi-layer tape and a heat sink that is coupled to the flexible multi-layer tape. A method includes installing a flexible multi-layer tape in an electrical system, wherein the flexible multi-layer tape includes a top layer; an intermediate, layer coupled to the top layer; and a bottom layer coupled to the intermediate layer, the intermediate layer defining a closed loop circuit for a circulating fluid. An apparatus includes a flexible multi-layer tape, including: a top layer; an intermediate layer coupled to the top layer; and a bottom layer coupled to the intermediate layer, wherein the intermediate layer defines a closed loop circuit for a circulating fluid.
    • 系统和方法描述为集成冷却系统。 一种方法包括:使柔性多层带内的液体循环; 并且在耦合到柔性多层带的热源和耦合到柔性多层带的散热器之间传输热量。 一种方法包括在电气系统中安装柔性多层带,其中柔性多层带包括顶层; 耦合到顶层的中间层; 以及耦合到所述中间层的底层,所述中间层限定用于循环流体的闭环回路。 一种装置包括柔性多层带,包括:顶层; 耦合到顶层的中间层; 以及耦合到所述中间层的底层,其中所述中间层限定用于循环流体的闭环回路。
    • 3. 发明授权
    • Microelectromechanical device having an active opening switch
    • 具有主动开启开关的微机电装置
    • US07053736B2
    • 2006-05-30
    • US10260598
    • 2002-09-30
    • Richard D. Nelson
    • Richard D. Nelson
    • H01H51/22
    • B81B3/0054B81B2201/014H01H59/0009
    • A microelectromechanical device is provided which includes a beam configured to apply an opening force on a closed switch. The opening force may be substantially independent of a force stored in the closed switch. A combination of the force applied by the beam and the force stored in the closed switch may be sufficient to open the switch after removal of a force associated with actuation of the switch. Another microelectromechanical device includes a switch beam spaced above a closing gate and a contact structure. The device may also include an additional beam configured to apply a force on the switch beam in a direction away from the contact structure. A method for opening a switch includes reducing an attractive force between a switch beam and a closing gate. The method also includes externally applying a mechanical force on the switch beam in a direction away from the closing gate.
    • 提供了一种微机电装置,其包括被构造成在闭合的开关上施加开启力的梁。 打开力可以基本上独立于存储在闭合开关中的力。 由梁施加的力与存储在闭合开关中的力的组合可能足以在移除与开关的致动相关联的力之后打开开关。 另一微电子机械装置包括在闭合闸门上方间隔开的开关梁和接触结构。 该装置还可以包括被配置成沿远离接触结构的方向在开关梁上施加力的附加梁。 用于打开开关的方法包括减小开关束和关闭门之间的吸引力。 该方法还包括在离开关闭门的方向上向开关梁外部施加机械力。