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    • 5. 发明授权
    • Method and apparatus for electronically aligning capacitively coupled mini-bars
    • 用于电容对齐电容耦合迷你条的方法和装置
    • US07384804B2
    • 2008-06-10
    • US11125792
    • 2005-05-09
    • Robert J. DrostIvan E. SutherlandWilliam S. Coates
    • Robert J. DrostIvan E. SutherlandWilliam S. Coates
    • H01L21/66
    • H01L25/0657H01L23/48H01L25/50H01L2224/16H01L2225/06513H01L2225/06531H01L2225/06593H01L2924/00011H01L2924/00014H01L2924/01067H01L2224/0401
    • One embodiment of the present invention provides a system that electronically aligns mini-bars on different semiconductor chips which are situated face-to-face to facilitate communication between the semiconductor chips through capacitive coupling. During operation, the system measures an alignment between a first chip and a second chip. The system then selects a group of transmitter mini-bars on the first chip to form a transmitter bit position based on the measured alignment. In this way, the system allows a data signal to be distributed to and transmitted by the mini-bars that form the transmitter bit position. The system also selects a group of receiver mini-bars on the second chip to form a receiver bit position based on the measured alignment. Next, the system associates transmitter bit positions on the first chip with proximate receiver bit positions on the second chip based on the measured alignment. In this way, the system allows data signals transmitted by the mini-bars within a transmitter bit position on the first chip to be collectively received by the mini-bars within an associated receiver bit position on the second chip.
    • 本发明的一个实施例提供了一种系统,其电子地对准位于面对面的不同半导体芯片上的迷你条,以促进半导体芯片之间通过电容耦合的通信。 在操作期间,系统测量第一芯片和第二芯片之间的对准。 然后,系统在第一芯片上选择一组发射器迷你条,以基于测量的对准来形成发射机位置。 以这种方式,该系统允许将数据信号分配到形成发送器位位置的迷你条并发送。 该系统还在第二芯片上选择一组接收器迷你条,以形成基于测量对准的接收器位位置。 接下来,系统基于测量的对准将第一芯片上的发射机位位置与第二芯片上的接收器位置相关联。 以这种方式,系统允许由第一芯片上的发送器位置内的迷你条发送的数据信号由第二芯片上相关联的接收器位位置内的迷你条集中接收。
    • 7. 发明授权
    • Switch fabric for asynchronously transferring data within a circuit
    • 交换结构,用于在电路内异步传输数据
    • US06741616B1
    • 2004-05-25
    • US09685009
    • 2000-10-05
    • Ivan E. SutherlandWilliam S. CoatesIan W. Jones
    • Ivan E. SutherlandWilliam S. CoatesIan W. Jones
    • H04J304
    • H04L12/4625H04L49/101
    • One embodiment of the present invention provides a system that facilitates asynchronously routing data within a circuit. This system includes a data destination horn, for routing data from a trunk line to a plurality of destinations. This data destination horn includes a plurality of one-to-many switching elements organized into a tree of at least one level that fans out from the trunk line to the plurality of destinations. It also includes a plurality of memory elements for storing data in transit between the plurality of one-to-many switching elements. An asynchronous control structure is coupled to the data destination horn, and is configured to control the propagation of data through the data destination horn, so that when a given data item appears at an input of a memory element, the given data item is asynchronously latched into the memory element as soon space becomes available in the memory element without having to wait for a clock signal. One embodiment of the present invention additionally includes a data source funnel, for routing data from a plurality of sources into the trunk line. This data source funnel includes a plurality of many-to-one switching elements organized into a tree of at least one level that fans in from the plurality of sources to into the trunk line. It also includes a plurality of funnel memory elements for storing data in transit between the plurality of many-to-one switching elements. Moreover, the asynchronous control structure is additionally configured to control propagation of data through the data source funnel.
    • 本发明的一个实施例提供一种便于在电路内异步路由数据的系统。 该系统包括数据目的地喇叭,用于将数据从中继线路由到多个目的地。 该数据目的地喇叭包括组合成至少一个级别的树的多个一对多交换元件,其从干线到多个目的地扇出。 它还包括用于存储在多个一对多交换元件之间传输的数据的多个存储元件。 异步控制结构被耦合到数据目标喇叭,并且被配置为控制数据通过数据目的地喇叭的传播,使得当给定的数据项出现在存储器元件的输入端时,给定的数据项被异步锁存 随着空间在存储器元件中可用,而不必等待时钟信号,就进入存储元件。 本发明的一个实施例还包括数据源漏斗,用于将数据从多个源路由到干线。 该数据源漏斗包括多个多对一的开关元件,其组织成至少一个级别的树,该多个级别的风扇从多个源中进入干线。 它还包括多个漏斗存储器元件,用于存储在多个多对一开关元件之间的传输中的数据。 此外,异步控制结构还被配置为控制数据通过数据源漏斗的传播。