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Ebato

Ichiro Ebato, Kitakyushu-Shi JP

Patent application numberDescriptionPublished
20080264252Method of Diminishing Organochlorine Compound in Cement Production Equipment and Cement Production Equipment - The method for reducing organic chlorine compounds in the cement production facility of the present invention is a method for reducing organic chlorine compounds in cement production facility by which a quantity of organic chlorine compounds contained in cement raw materials is reduced in the cement production facility, which is provided with an organic matter adsorbing step in which an adsorbing powder is supplied into exhaust gas generated on calcination of cement clinker from the cement raw materials, thereby the organic chlorine compounds are adsorbed on the adsorbing powder and an adsorbing-powder removing step in which the adsorbing powder, which has adsorbed the organic chlorine compounds, is collected, thereby removing the adsorbing powder from the exhaust gas.10-30-2008
20090084290Method for Reduction of Organic Chlorinated Compound in Cement Manufacture Plant, and Cement Manufacture Plant - The method for reducing organic chlorine compounds in cement production facility is a method by which a quantity of organic chlorine compounds contained in powder is reduced in the cement production facility, and the method is provided with a heating step for heating the powder to separate the organic chlorine compounds from the powder or decompose the organic chlorine compounds and a gas thermal decomposing step for supplying heat-treated gas containing the organic chlorine compounds generated by heating the powder to a high temperature part of the cement production facility, thereby thermally decomposing the organic chlorine compounds contained in the heat-treated gas.04-02-2009

Osamu Ebato, Chiba JP

Patent application numberDescriptionPublished
20080273292Tantalum Powder and Solid Electrolyte Capacitor Including the Same - In a hydrogen-containing tantalum powder of the present invention, a value obtained by dividing the hydrogen content (ppm) by the specific surface area (m11-06-2008

Takashi Ebato, Asaka-Shi JP

Patent application numberDescriptionPublished
20080304816Camera shaking correcting device, and image pickup device - Output of a gyro sensor is read at intervals of control time ts, time integration is carried out, an integrated value is computed, and an amount of change in an integrated value is determined from a difference between the calculated integrated value and an integrated value of a previous time. Thereafter, on the basis of the amount of change and a delay time determined by a shaking correcting module and the control time, an addition value (an acceleration value of an integrated value of the current time) is computed in order to obtain an amount of movement of a shift lens which can compensate tilting of an optical axis of a lens. After the computed addition value is added to the integrated value of the current time, a control value for moving the shift lens is computed by using the integrated value after addition.12-11-2008

Tsuyoshi Ebato, Yokohama JP

Patent application numberDescriptionPublished
20100033931COOLING UNIT, ELECTRONIC APPARATUS RACK, COOLING SYSTEM, AND CONSTRUCTION METHOD THEREOF - A cooling unit which improves the cooling efficiency of a server rack and minimizes rise in the server room temperature. A cooling unit for a server rack housing a server with a heat source includes: a fan unit having an array of fans for discharging hot air generated by the heat source from the rack; and a radiator unit having an array of pipes for guiding coolant to remove heat from the hot air discharged from the rack by rotation of the fans; and a frame unit which integrally combines the fan unit and the radiator unit. The cooling unit constructs a back door from which the hot air inside the rack is discharged.02-11-2010

Yutaka Ebato, Tochigi-Ken JP

Patent application numberDescriptionPublished
20080203708Interior Material and Laser Beam Processing Method for the Same - A front face distance is obtained by measuring the position of a front face of an instrument panel held by an end effecter of a robot. An error on an optical axis, at the position of the front face is obtained based on the front face distance. Based on the error, the position of the instrument panel is adjusted so that a focal point of a laser meets the position at a predetermined depth defined with the front face as the standard. A back face of the instrument panel is irradiated with a laser to form a fine hole of a fragile section.08-28-2008