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    • 31. 发明授权
    • Method and apparatus for recapture of hooked endoprosthesis
    • 钩状内假体重新捕获的方法和装置
    • US5902334A
    • 1999-05-11
    • US832703
    • 1997-04-11
    • Clifford J. DwyerTimothy RobinsonMichael Weiser
    • Clifford J. DwyerTimothy RobinsonMichael Weiser
    • A61F2/82A61F2/06
    • A61F2/07A61F2/95A61F2/848A61F2002/075A61F2002/825A61F2002/8486A61F2002/9522A61F2002/9528A61F2220/0008A61F2220/0016A61F2220/0058A61F2220/0075A61F2230/0054
    • An endoprosthesis assembly adapted to be positioned within a body lumen includes a resilient, self-expanding anchor attached to a tubular graft. The endoprosthesis can be recaptured in a delivery device to enable repositioning or removal of the endoprosthesis at any time prior to complete deployment of the endoprosthesis in the patient. The delivery device includes an outer tubular member that carries the endoprosthesis in a radially contracted configuration and an elongate inner tubular member that extends through the prosthesis and beyond the distal end of the outer tubular member. A retainer is carried by the inner member that engages and retains the proximal end of the endoprosthesis relative to the inner member until the endoprosthesis is released. The inner member is formed from an alloy that has superelastic characteristics throughout the range of body temperatures to which it will be exposed to enhance the column strength and pushability of the device while providing a high level of longitudinal flexibility.
    • 适于定位在体腔内的内假体装置包括附接到管状移植物的弹性自扩张锚。 可以在输送装置中重新获得内假体,以使得能够在完成内部假体在患者体内展开之前的任何时间重新定位或移除内用假体。 输送装置包括外管状构件,该外管状构件以径向收缩构造承载内假体,以及延伸穿过假体并且超出外管状构件的远端的细长内管状构件。 保持器由内部构件承载,内部构件相对于内部构件接合并保持内部假体的近端,直到内部假体被释放。 内部构件由合金形成,该合金在其暴露的体温范围内具有超弹性特性,以提供装置的柱强度和推力,同时提供高水平的纵向柔性。
    • 33. 发明授权
    • System for placing entries of an outstanding processor request into a
free pool after the request is accepted by a corresponding peripheral
device
    • 在请求被相应的外围设备接受之后,将未完成的处理器请求的条目放入空闲池中的系统
    • US5737547A
    • 1998-04-07
    • US480739
    • 1995-06-07
    • William K. ZuravleffMark SemmelmeyerTimothy RobinsonScott Furman
    • William K. ZuravleffMark SemmelmeyerTimothy RobinsonScott Furman
    • G06F9/38G06F13/36G06F9/22
    • G06F9/3824
    • A non-blocking load buffer is provided for use in a high-speed microprocessor and memory system. The non-blocking load buffer interfaces a high-speed processor/cache bus, which connects a processor and a cache to the non-blocking load buffer, with a lower speed peripheral bus, which connects to peripheral devices. The non-blocking load buffer allows data to be retrieved from relatively low bandwidth peripheral devices directly from programmed I/O of the processor at the maximum rate of the peripherals so that the data may be processed and stored without unnecessarily idling the processor. I/O requests from several processors within a multiprocessor may simultaneously be buffered so that a plurality of non-blocking loads may be processed during the latency period of the device. As a result, a continuous maximum throughput from multiple I/O devices by the programmed I/O of the processor is achieved and the time required for completing tasks and processing data may be reduced. Also, a multiple priority non-blocking load buffer is provided for serving a multiprocessor running real-time processes of varying deadlines by prioritization-based scheduling of memory and peripheral accesses.
    • 提供非阻塞负载缓冲器用于高速微处理器和存储器系统。 非阻塞负载缓冲器将高速处理器/高速缓存总线接口,该总线将处理器和高速缓存连接到非阻塞负载缓冲区,其中低速外设总线连接到外围设备。 非阻塞负载缓冲器允许以相对较低带宽的外围设备从外围设备的最大速率直接从处理器的编程I / O检索数据,从而可以处理和存储数据,而不会使处理器无需空闲。 可以同时缓冲多处理器内的多个处理器的I / O请求,以便可以在设备的等待时间期间处理多个非阻塞负载。 因此,通过处理器的编程I / O实现来自多个I / O设备的连续最大吞吐量,并且可以减少完成任务和处理数据所需的时间。 此外,提供了多重优先级的非阻塞负载缓冲器,用于通过基于优先级的存储器和外设访问调度来服务运行不同期限的实时处理的多处理器。
    • 37. 发明申请
    • Night vision compatible area light fixture
    • 夜视兼容区域灯具
    • US20070025106A1
    • 2007-02-01
    • US11193040
    • 2005-07-29
    • Timothy Robinson
    • Timothy Robinson
    • F21V9/00F21V11/00
    • G02B5/208G02B5/282
    • A night vision equipment compatible area light fixture may include a housing, one or more LEDs such as gallium nitride or indium gallium nitride LEDs, and a filter assembly positioned to filter electromagnetic radiation with a wavelength of 950 nm. The filer may, for example, substantially block electromagnetic radiation with wavelengths between approximately 930 nm and approximately 1000 nm. The filter may additionally, for example, substantially blocking electromagnetic radiation with wavelengths between approximately 900 nm and approximately 1000 nm. The filter may further, for example, substantially block electromagnetic radiation with wavelengths between approximately 700 nm and approximately 1000 nm.
    • 一种夜视设备兼容区域灯具可以包括壳体,一个或多个LED,例如氮化镓或氮化铟镓LED,以及定位成滤波波长为950nm的电磁辐射的滤光器组件。 滤波器可以例如基本上阻挡波长在约930nm和约1000nm之间的电磁辐射。 另外,滤波器可以另外地例如基本上阻挡波长在约900nm和约1000nm之间的电磁辐射。 滤波器可以进一步例如基本上阻挡波长在约700nm和约1000nm之间的电磁辐射。
    • 38. 发明申请
    • METHOD AND APPARATUS FOR ELECTROWINNING COPPER USING THE FERROUS/FERRIC ANODE REACTION AND A FLOW-THROUGH ANODE
    • 使用FERROUS / FERRIC阳极反应和流通阳极电镀铜的方法和装置
    • US20060226024A1
    • 2006-10-12
    • US10907638
    • 2005-04-08
    • Scot SandovalPaul CookWesley HoffmanTimothy Robinson
    • Scot SandovalPaul CookWesley HoffmanTimothy Robinson
    • C25C1/12
    • C25C1/12
    • The present invention relates, generally, to a method and apparatus for electrowinning metals, and more particularly to a method and apparatus for copper electrowinning using the ferrous/ferric anode reaction and a flow-through anode, such as, for example, a dimensionally stable carbon, carbon composite, metal-graphite, or stainless steel anode. In general, the use of a flow-through anode—coupled with an effective electrolyte circulation system—enables the efficient and cost-effective operation of a copper electrowinning system employing the ferrous/ferric anode reaction at a total cell voltage of less than about 1.5 V and at current densities of greater than about 26 Amps per square foot (about 280 A/m2), and reduces acid mist generation. Furthermore, the use of such a system permits the use of low ferrous iron concentrations and optimized electrolyte flow rates as compared to prior art systems while producing high quality, commercially saleable product (i.e., LME Grade A copper cathode or equivalent), which is advantageous.
    • 本发明一般涉及用于电解金属的方法和装置,更具体地说,涉及一种使用亚铁/三价铁阳极反应的铜电解提取方法和装置以及流通阳极,例如尺寸稳定的 碳,碳复合材料,金属石墨或不锈钢阳极。 通常,使用与有效电解质循环系统耦合的流通阳极使得能够以小于约1.5的总电池电压对采用亚铁/三价铁阳极反应的铜电解冶金系统进行有效和经济有效的操作 V,电流密度大于约26安培/平方英尺(约280A / m2),并减少酸雾产生。 此外,与现有技术的系统相比,使用这种系统允许使用低亚铁浓度和优化的电解质流速,同时生产高品质的商业可售产品(即LME A级铜阴极或等效物),这是有利的 。