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    • 7. 发明申请
    • FULL-PROTECTION CIRCUIT BREAKER
    • 全保护断路器
    • US20090242372A1
    • 2009-10-01
    • US12414988
    • 2009-03-31
    • Ralph Weber
    • Ralph Weber
    • H01H3/00
    • H01H71/1009H01H71/521H01H71/62H01H71/70H01H83/22H01H2071/665
    • A full-protection circuit breaker has a line-protection circuit breaker and a residual-current-operated component which can be fitted thereto. A first switching mechanism, located therein, includes a first switching toggle for operation of a first latching mechanism, which is accommodated in the residual-current-operated component. A second switching mechanism, provided in the line-protection circuit breaker, includes a second switching toggle for operation of a second latching mechanism, which is accommodated in the line-protection circuit. The first and the second latching mechanisms are coupled by means of a first coupling element. The first and the second switching toggle are coupled by means of a second coupling element, wherein the second coupling element acts on the first switching toggle with respect to the second switching toggle, pivoting through the predeterminable lead angle in the direction of its connected position.
    • 全保护断路器具有线路保护断路器和可以安装在其上的剩余电流操作部件。 位于其中的第一切换机构包括用于操作第一闭锁机构的第一开关拨动器,其容纳在剩余电流操作部件中。 设置在线路保护断路器中的第二开关机构包括用于操作第二闭锁机构的第二开关拨动器,该第二闭锁机构容纳在线路保护电路中。 第一和第二闭锁机构通过第一联接元件联接。 第一和第二开关触发器通过第二耦合元件联接,其中第二耦合元件相对于第二开关拨动器作用在第一开关拨动器上,在其连接位置的方向上枢转通过可预定的引导角。
    • 8. 发明申请
    • Storage Management Unit to Configure Zoning, LUN Masking, Access Controls, or Other Storage Area Network Parameters
    • 存储管理单元配置分区,LUN掩码,访问控制或其他存储区域网络参数
    • US20070033566A1
    • 2007-02-08
    • US11463163
    • 2006-08-08
    • Ralph Weber
    • Ralph Weber
    • G06F17/50
    • H04L67/1097G06F3/0601G06F2003/0697H04L63/08
    • Some of the embodiments disclosed are systems and methods of configuring an access masking structure which include, but are not limited to, selecting at least one computer to participate in an access restriction set, selecting at least one storage unit to participate in the access restriction set, disabling all non-selected computers, disabling all non-selected storage units and placing the access masking structure into learn mode. This method also comprises booting the computer, detecting activity between the selected computers and the selected storage units, and automatically building the access restriction set based upon the detected computers and storage units while the access masking structure is in the learn mode.
    • 所公开的一些实施例是配置接入掩蔽结构的系统和方法,其包括但不限于选择至少一台计算机参与访问限制集合,选择至少一个存储单元以参与访问限制集合 ,禁用所有未选择的计算机,禁用所有未选择的存储单元,并将访问屏蔽结构置于学习模式。 该方法还包括启动计算机,检测所选择的计算机与所选择的存储单元之间的活动,以及当访问掩蔽结构处于学习模式时,基于检测到的计算机和存储单元自动建立访问限制集合。
    • 9. 发明授权
    • Metallurgical melting and refining unit
    • 冶金熔炼精炼机组
    • US4389043A
    • 1983-06-21
    • US276362
    • 1981-06-16
    • Ralph WeberWilliam Wells
    • Ralph WeberWilliam Wells
    • C21C5/52C21C5/04C21C5/56F27B3/02C21B3/00
    • C21C5/56C21C5/04C21C5/565F27B3/02Y02P10/216
    • Metallurgical melting and refining unit (21) with which scrap steel, sponge iron, solid and molten pig iron can be processed in any desired ratio of admixture, and coal, oil, gases or electrical power can be used as energy source. For this purpose, and with an eye to low investment costs, the furnace vessel (22) is made in the form of a round hearth furnace with a ratio of the inside dimensions diameter (d) to height (h) of the furnace vessel between 0.8 and 2.5, and one tuyere bench (33) is provided on each side of the tap hole (10), for primary tuyeres which discharge below the melt surface. Furthermore, two tuyeres (25) discharge into the furnace vessel above the melt surface and are constructed as burners. The charge material can be preheated and charged in a controlled manner by a scrap preheater (27) whose floor consists of gas-permeable grate parts (30, 31) which can be opened from the center. (FIG. 3)
    • PCT No.PCT / EP80 / 00151 Sec。 371日期1981年6月16日第 102(e)日期1981年6月16日PCT提交1980年12月19日PCT公布。 公开号WO81 / 01862 日期:1981年7月9日。可以使用废钢,海绵铁,固体和熔融生铁的冶金熔化和精炼单元(21)以任何所需的混合比例和煤,油,气体或电力进行加工 作为能源。 为此目的,为了降低投资成本,炉容器(22)以圆炉底炉的形式制成,其炉内尺寸直径(d)与高度(h)的比率 0.8和2.5,并且在抽头孔(10)的每一侧上设置一个风口台(33),用于在熔体表面下方排放的主要风口。 此外,两个风口(25)在熔体表面上方排放到炉容器中,并被构造为燃烧器。 充电材料可以通过废料预热器(27)以受控的方式预热和充电,废料预热器(27)的地板由可从中心打开的透气性炉排部件(30,31)组成。 (图。