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    • 1. 发明申请
    • METHOD AND APPARATUS FOR VERIFYING PLANARITY IN A PROBING SYSTEM
    • 用于在探测系统中验证平面的方法和装置
    • WO2006083862A1
    • 2006-08-10
    • PCT/US2006/003392
    • 2006-01-30
    • FORMFACTOR, INC.GRUBE, Gary, W.WATSON, Thomas, N.
    • GRUBE, Gary, W.WATSON, Thomas, N.
    • G01R31/02
    • G01B7/287G01B11/306G01R31/2886
    • An apparatus for determining a planarity of a first structure configured to hold a probing device to the planarity of a second structure configured to hold a device to be probed is disclosed. In one example of the apparatus, a plurality of moveable push rods are disposed in a substrate, which is attached to the first structure. In initial non-displaced positions, the push rods correspond to a planarity of the first structure. The second structure is then brought into contact with the push rods, displacing the push rods into second positions that correspond to a planarity of the second structure. In another example of the apparatus, beams of light are reflected off of reflectors disposed on the first structure and onto sensors disposed on the second structure. The locations of the reflected beams on the sensors are noted and used to determine the planarity of the first structure with respect to the second structure.
    • 公开了一种用于确定构造成将探测装置保持为构造成保持要探测的装置的第二结构的平面性的第一结构的平坦度的装置。 在该装置的一个示例中,多个可移动的推杆设置在附接到第一结构的基板中。 在初始非位移位置,推杆对应于第一结构的平面度。 然后将第二结构与推杆接触,将推杆移位到与第二结构的平面度对应的第二位置。 在该设备的另一示例中,光束从设置在第一结构上的反射器和设置在第二结构上的传感器上反射。 注意反射光束在传感器上的位置并用于确定第一结构相对于第二结构的平面度。
    • 3. 发明申请
    • MICROELECTRONIC SPRING WITH ADDITIONAL PROTRUDING MEMBER
    • 微电子弹簧与附加推进会员
    • WO2002084736A1
    • 2002-10-24
    • PCT/US2002/012762
    • 2002-04-10
    • FORMFACTOR, INC.GRUBE, Gary, W.
    • GRUBE, Gary, W.
    • H01L23/48
    • H01R13/2464G01R1/06727H01L2924/0002H01R12/57H01L2924/00
    • Various structural features for modifying the performance characteristics of cantilevered microelectronic spring structures are disclosed. Generally, the features comprise a protruding member mounted between a supporting substrate and the transverse cantilever beam of a microelectronic spring structure, at a distance spaced apart from the supporting structure from which the beam is cantilevered. The protruding member may be equal to the clearance under the beam, less than the clearance under the beam, or adjustable in height; and may be attached or mounted to either the beam or the substrate. The protruding member may be substantially rigid and incompressible, and shorter than the clearance under the beam or "soft" and compressible. The protruding member may comprise an electronic device attached to both the substrate and the beam. Additionally the protruding member may be comprised of an adjustable pressure device.
    • 公开了用于改变悬臂微电子弹簧结构的性能特征的各种结构特征。 通常,这些特征包括安装在支撑基底和微电子弹簧结构的横向悬臂梁之间的突出构件,其与支撑结构间隔开距离梁悬臂。 突出构件可以等于梁下方的间隙,小于梁下的间隙,或高度可调; 并且可以附接或安装到梁或基板上。 突出构件可以是基本上刚性的和不可压缩的,并且比梁下的间隙短或“软”并且可压缩。 突出构件可以包括附接到基板和梁两者的电子装置。 另外,突出构件可以由可调压力装置构成。
    • 10. 发明申请
    • MEMORY CONTROLLER UTILIZING DISTRIBUTED STORAGE
    • 存储控制器利用分布式存储
    • WO2011014823A1
    • 2011-02-03
    • PCT/US2010/043995
    • 2010-07-30
    • CLEVERSAFE, INC.GRUBE, Gary, W.MARKISON, Timothy, W.
    • GRUBE, Gary, W.MARKISON, Timothy, W.
    • G06F11/30
    • G06F11/1076G06F3/0619G06F3/064G06F3/067G06F9/30145G06F9/4401G06F11/0727G06F11/10G06F11/1016G06F11/1092G06F11/14G06F11/1666G06F12/14
    • A memory controller comprises at least a memory control processing module and/or a distributed storage processing module. A method begins by the memory control processing module receiving a memory access request regarding a data segment. The method continues with the memory control processing module interpreting the memory access request to determine whether an error coding dispersal function of the data segment is applicable. The method continues with the memory control processing module sending the memory access request to the distributed storage processing module when the error coding dispersal function is applicable. The method continues with the distributed storage processing module performing the error coding dispersal function on the data segment to produce an error coded processed data segment. The method continues with the distributed storage processing module sending the error coded processed data segment to the memory control processing module.
    • 存储器控制器至少包括存储器控制处理模块和/或分布式存储处理模块。 存储器控制处理模块开始接收关于数据段的存储器访问请求的方法。 该方法继续存储器控制处理模块解释存储器访问请求以确定数据段的错误编码分散功能是否适用。 当适用错误编码分散功能时,该方法继续存储器控制处理模块向分布式存储处理模块发送存储器访问请求。 该方法继续分布式存储处理模块对数据段执行错误编码分散功能,以产生经错误编码的处理数据段。 该方法继续分布式存储处理模块将错误编码处理的数据段发送到存储器控制处理模块。