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    • 1. 发明申请
    • Error Tolerant Flip-Flops
    • 容错触发器错误
    • US20120240014A1
    • 2012-09-20
    • US13047090
    • 2011-03-14
    • Georg GeorgakosMichael GösselAnton Huber
    • Georg GeorgakosMichael GösselAnton Huber
    • H03M13/09G06F11/10
    • G11C11/419G06F11/1032G11C2029/0411
    • One embodiment of the present invention relates to an error tolerant memory circuit having a low hardware overhead that can tolerate both single volatile soft errors and permanent errors. In one embodiment, the method and apparatus comprise a memory circuit having a plurality of memory element pairs, respectively having two memory storage elements configured to store a data unit. One or more parity generation circuits are configured to calculate a first parity bit from data written to the plurality of memory element pairs (e.g., the two memory storage elements) and a second parity bit from data read from one of the two memory storage elements in the plurality of memory element pairs. Based upon the calculated first and second parity bits, the memory circuit chooses to selectively output data from memory storage elements not known to contain an error.
    • 本发明的一个实施例涉及具有低硬件开销的容错存储器电路,其可容忍单个易失性软错误和永久错误。 在一个实施例中,该方法和装置包括具有多个存储元件对的存储器电路,其分别具有被配置为存储数据单元的两个存储器存储元件。 一个或多个奇偶校验生成电路被配置为从从两个存储器元件对(例如,两个存储器元件)中写入的数据中计算第一奇偶校验位,并且从位于 多个存储元件对。 基于所计算的第一和第二奇偶校验位,存储器电路选择选择性地从不知道包含错误的存储器存储元件输出数据。
    • 2. 发明授权
    • Error tolerant flip-flops
    • 容错触发器
    • US08589775B2
    • 2013-11-19
    • US13047090
    • 2011-03-14
    • Georg GeorgakosMichael GoesselAnton Huber
    • Georg GeorgakosMichael GoesselAnton Huber
    • G06F11/00
    • G11C11/419G06F11/1032G11C2029/0411
    • One embodiment of the present invention relates to an error tolerant memory circuit having a low hardware overhead that can tolerate both single volatile soft errors and permanent errors. In one embodiment, the method and apparatus comprise a memory circuit having a plurality of memory element pairs, respectively having two memory storage elements configured to store a data unit. One or more parity generation circuits are configured to calculate a first parity bit from data written to the plurality of memory element pairs (e.g., the two memory storage elements) and a second parity bit from data read from one of the two memory storage elements in the plurality of memory element pairs. Based upon the calculated first and second parity bits, the memory circuit chooses to selectively output data from memory storage elements not known to contain an error.
    • 本发明的一个实施例涉及具有低硬件开销的容错存储器电路,其可容忍单个易失性软错误和永久错误。 在一个实施例中,该方法和装置包括具有多个存储元件对的存储器电路,其分别具有被配置为存储数据单元的两个存储器存储元件。 一个或多个奇偶校验生成电路被配置为从从两个存储器元件对(例如,两个存储器元件)中写入的数据中计算第一奇偶校验位,并且从位于 多个存储元件对。 基于计算的第一和第二奇偶校验位,存储器电路选择选择性地从不知道包含错误的存储器存储元件输出数据。
    • 8. 发明授权
    • Firing control device for triggering a passenger restraint system of a
vehicle
    • US5327014A
    • 1994-07-05
    • US956019
    • 1992-12-07
    • Anton HuberDieter NeugebauerMarten Swart
    • Anton HuberDieter NeugebauerMarten Swart
    • B60R21/16B60R21/01B60R21/32
    • B60R21/0173
    • A firing control device (G) for triggering a passenger restraint system of a vehicle by electrically firing one or more firing pellets (Z1, Z2), having a processor (P) which, during operation, criteria for the necessity of triggering derives from the output signals of one or more crash sensors (S1, S2), having at least one measuring unit (R/DR, DZ1, DZ2) which, during a crash, measures at least the firing current (I1, I2) flowing through the respective firing pellets (Z1, Z2) and/or values (for example voltages) which depend on said firing current (I1, I2), having a PROM memory (M), and having a measuring unit (R/DR) which (R/DR) contains a measuring resistor (R) which is inserted into the firing circuit (I1, I2) of the firing pellet (Z1, Z2) so as not to be usually directly accessible from the outside via external terminals (A0 to A5) of the housing (G) of the firing control device in order to determine data relating to the variation of the firing current (I1, I2) flowing across the resistor (R) during triggering. In the event of a crash, data, from which it can later be detected whether and how the passenger restraint system triggered during the crash, is written into the PROM memory (M), the data in fact being at least some of the data which relates to the criteria derived by the processor (P) during the crash, and the measuring unit (R/DR, DZ1, DZ2), the processor (P), the measuring unit (R/DR, DZ1 and/or DZ2) and the PROM memory (M), but no firing pellet (Z1, Z2) and also no explosive charge of the passenger restraint system, being mounted in the housing (G) which survives a crash intact and cannot be opened without leaving behind detectable damage.
    • 10. 发明授权
    • Pivoting basket stacker for deep-drawn articles
    • 用于深冲文章的活页篓式堆垛机
    • US07690883B2
    • 2010-04-06
    • US11449297
    • 2006-06-08
    • Anton HuberJohannes CrepazStefan JulinekFrank Scheutz
    • Anton HuberJohannes CrepazStefan JulinekFrank Scheutz
    • B65H29/00
    • B65G57/165B29C51/445B29C2793/009B29C2795/007
    • A device for stacking articles which are molded and stamped in a multi-impression molding and stamping tool includes a transfer device having a single gripper plate made of lightweight construction for accepting all articles ejected from one work cycle of the molding and stamping tool. A stacking station having two stacking baskets arranged on respective arms is arranged so that the baskets are pivotable about a first axis for moving a first basket of the two baskets to a transfer position and a second basket of the two baskets to an ejection position, the transfer device transferring the articles to the transfer position of the stacking station. An ejector unit and conveyor belt are arranged proximate the ejection position, each of the first and second baskets being pivotable about a second axis, perpendicular to the first axis, at the ejection position to a pivoted position. The ejector unit pushes a row of article stacks onto the conveyor at the pivoted position, the each of the first and second baskets being movable in steps to align successive rows of articles stacks with the ejector unit, and the ejector unit being movable transversely to the movement of the each of the first and second baskets.
    • 用于堆叠在多压模和冲压工具中成型和冲压的物品的装置包括具有由轻型结构制成的单个夹持板的传送装置,用于接收从成型和冲压工具的一个工作循环中排出的所有物品。 具有布置在相应臂上的两个堆叠篮子的堆垛站被布置成使得篮可围绕第一轴线枢转,用于将两个篮子的第一筐移动到两个篮子的转移位置和第二筐到排出位置, 传送装置将物品传送到堆放站的传送位置。 喷射器单元和传送带布置在喷射位置附近,第一和第二篮子中的每一个可在垂直于第一轴线的第二轴线处在弹出位置处枢转到枢转位置。 排出器单元在枢转位置将一排物品堆栈推送到输送机上,第一和第二筐中的每一个可以逐步移动,以使连续的物品堆叠排列与排出器单元对齐,并且排出器单元可横向移动 第一和第二筐的每一个的运动。