Eichberger
Bernd Eichberger, Calw DE
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20110108242 | Method and Apparatus for Cooling a Temperature-Sensitive Assembly of a Motor Vehicle - A cooling arrangement for cooling a temperature-sensitive assembly, (such as an electrical assembly) of a motor vehicle includes a condenser for liquefying at least a partial volume of a cooling medium in a cooling circuit, and an evaporator disposed downstream of the condenser on which the cooling medium can impinge and to which heat from the electrical assembly (12) can be applied. The cooling arrangement comprises a pump device by which the evaporator can be charged by at least the liquefied partial volume of the cooling medium. A method for cooling a temperature-sensitive assembly, such an electrical assembly, of a motor vehicle is also provided. | 05-12-2011 |
Burkhard Eichberger, Longont, CO US
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20130326134 | RETRIEVING A USER DATA SET FROM MULTIPLE MEMORIES - An apparatus and associated methodology for a data storage system having a data storage space operably transferring user data via input/output (I/O) commands between the data storage system and another device. The data storage space includes a first memory device operably storing location information for a selected user data set corresponding to one of the I/O commands. The first memory also operably stores a first amount of the selected user data set. The data storage space also includes a second memory device different than the first memory device and operably storing a different second amount of the selected user data set. The data storage system has a controller that interleaves an entirety of the selected user data set from the first and second memory devices during execution of another of the I/O commands. | 12-05-2013 |
Burkhard Eichberger, Longmont, CO US
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20130326135 | SEAMLESSLY STITCHING A USER DATA SET FROM MULTIPLE MEMORIES - An apparatus and associated methodology providing a data storage system including a memory having a first addressable storage space and a second differently addressable storage space. A controller selectively accesses stored instructions that when executed store a first amount of a user data set to the first addressable storage space and store a different second amount of the user data set to the second addressable storage space. The controller subsequently calculates an address increment between the stored first and second amounts, and then shifts one of the stored first and second amounts by the address increment. | 12-05-2013 |
20130326136 | POPULATING A SPARSELY ALLOCATED MEMORY IN A STORAGE ARRAY - Apparatus and associated methodology contemplating a data storage system having a memory that includes a first addressable storage space and a second differently addressable storage space. A controller selectively accesses stored instructions that when executed transfer some user data sets with the first addressable storage space in accordance with a dense allocation of the first addressable storage space, and transfer other user data sets with the second addressable storage space in accordance with a sparse allocation of the second addressable storage space that allocates a predefined reserved storage capacity between adjacent stored non-sequential user data sets. | 12-05-2013 |
Georg Eichberger, Graz AT
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20140134469 | BATTERY SYSTEM - A battery system having at least one battery cell, an absorption element, and a temperature-control system having a liquid temperature-control medium configured to cool and/or heat the battery cells in a battery housing, and a motor vehicle having such a battery system. | 05-15-2014 |
20140220405 | BATTERY SYSTEM WITH ABSORPTION DEVICE - A battery system having a plurality of cells in a battery housing, and an absorption device arranged in the battery housing to absorbs fluid that has escaped in the battery housing. | 08-07-2014 |
German Eichberger, San Diego, CA US
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20130282902 | COMPUTER NETWORK NODE DISCOVERY SEQUENCING - A computer network node discovery process ( | 10-24-2013 |
Gert Eichberger, Hassloch DE
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20140137018 | FILE POSITION SHORTCUT AND WINDOW ARRANGEMENT - In response to an identification of a displayed position in a file, a shortcut to the identified position in the file may be created on a desktop environment. In response to an activation of the shortcut, the identified position in the file may be indicated. In response to the activation, the file may be opened. Identification of the position in the file may include dragging a cursor from the position in the file to a location on the desktop environment. Identification of the position in the file may include dragging a cursor from the position in the file to a toolbar and dragging the cursor from the toolbar to a location on the desktop environment. | 05-15-2014 |
Heinz Eichberger, Bad Soden DE
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20080196549 | Direct Reduction Process Using a Single Fluidised Bed - A direct reduction process for a metalliferous material includes supplying the metalliferous material, a solid carbonaceous material, an oxygen-containing gas, and a fluidizing gas into a fluidized bed in a vessel and maintaining the fluidized bed in the vessel, at least partially reducing metalliferous material in the vessel, and discharging a product stream that includes the partially reduced metalliferous material from the vessel. The process comprises (a) reducing the metalliferous material in a solid state in a metal-rich zone in the vessel; (b) injecting the oxygen-containing gas into a carbon-rich zone in the vessel with a downward flow in a range of ±40° to the vertical and generating heat by reactions between oxygen and the metalliferous material (including metallized material), the solid carbonaceous material and other oxidizable solids and gases in the fluidized bed, and (c) transferring heat from the carbon-rich zone to the metal-rich zone by movement of solids within the vessel. The metal-rich zone is formed in a lower section of the vessel and the carbon-rich zone is an intermediate section below an upper section of the vessel. Oxygen-containing gas is injected into a central region of the vessel. | 08-21-2008 |
20080210055 | Direct Reduction Apparatus and Process - An apparatus for reducing a metalliferous material in a fluidized bed includes a vessel for containing the fluidized bed, a mechanism for supplying the metalliferous material, a solid carbonaceous material, an oxygen-containing gas, and a fluidizing gas into the vessel for forming the fluidized bed in the vessel. The oxygen-containing gas supply mechanism includes one or more than one oxygen-containing gas injection lance having a lance tip with an outlet that is positioned for injecting the oxygen-containing gas in a downward flow into the vessel within a range of plus or minus 40° to the vertical. | 09-04-2008 |
20080229881 | Direct Reduction Process - A direct reduction process for a solid metalliferous material having a particle size distribution that at least in part contains micron sized particles includes supplying the metalliferous material, a solid carbonaceous material, an oxygen-containing gas, and a fluidizing gas into a fluidized bed in a vessel and maintaining the fluidized bed in the vessel, at least partially reducing metalliferous material in the vessel, and discharging a product stream that comprises the partially reduced metalliferous material from the vessel. The process includes (a) establishing and maintaining a carbon-rich zone within the fluidized bed; (b) passing metalliferous material, including metallized material (which term includes partially metallized material), through the carbon-rich zone; and (c) injecting the oxygen-containing gas into the carbon-rich zone and oxidizing metallized material, solid carbonaceous material and other oxidizable solids and gases and causing controlled agglomeration of particles. | 09-25-2008 |
20100269636 | DIRECT REDUCTION APPARATUS AND PROCESS - An apparatus for reducing a metalliferous material in a fluidized bed includes a vessel for containing the fluidized bed, a mechanism for supplying the metalliferous material, a solid carbonaceous material, an oxygen-containing gas, and a fluidizing gas into the vessel for forming the fluidized bed in the vessel. The oxygen-containing gas supply mechanism includes one or more than one oxygen-containing gas injection lance having a lance tip with an outlet that is positioned for injecting the oxygen-containing gas in a downward flow into the vessel within a range of plus or minus 40° to the vertical. | 10-28-2010 |