Katakabe
Hiroshi Katakabe, Okinawa JP
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20130161773 | DETECTOR ELEMENT, RADIATION DETECTOR, MEDICAL DEVICE, AND METHOD FOR PRODUCING SUCH A DETECTOR ELEMENT - A detector element is disclosed, including a semiconducting converter element and a number of pixilated contacts arranged thereon. A radiation detector is also disclosed including such a detector element, along with a medical device having one or more such radiation detectors. Finally, a method for producing a detector element is disclosed, which includes forming pixelated contacts by way of a photolithographic process on the semiconducting converter element using a lithographic mask arranged on a converter element protective layer. | 06-27-2013 |
Ichiro Katakabe, Kanagawa-Ken JP
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20100043839 | SUBSTRATE PROCESSING METHOD - The present invention provides a substrate processing apparatus having a drying mechanism for removing water from a surface of a substrate which has been cleaned by a wet cleaning process, and a substrate processing apparatus and a substrate processing method which are capable of efficiently removing an unnecessary thin film deposited on or adhering to a bevel or edge portion of a substrate. The substrate processing apparatus of this invention has a substrate holder for holding a substrate, and a dry gas supply section for turning an atmosphere, to which at least a portion of a surface of the substrate held by the substrate holder is exposed, into a humidity-controlled dry gas atmosphere. | 02-25-2010 |
Ichiro Katakabe, Tokyo JP
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20090026068 | Revolution member supporting apparatus and semiconductor substrate processing apparatus - A revolution member supporting apparatus holds and rotates a disc-shaped object (object to be rotated) such as a semiconductor wafer. The revolution member supporting apparatus includes a rotatable member which rotates about an axis of rotation, and a plurality of holding members which are disposed along a circle having a center corresponding to the axis of rotation of the rotatable member. The holding members revolve around the axis of rotation when the rotatable member rotates and are allowed to swing about their own central axes. | 01-29-2009 |
Noboru Katakabe, Kyoto JP
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20090028617 | FIXING APPARATUS, HEATING ROLLER, AND IMAGE FORMING DEVICE - There is provided a fixing apparatus capable of reducing the warm-up time, improving the heating efficiency, and suppressing the temperature increase out of the sheet width by using a magnetic adjuster. In this apparatus, the Currie temperature Tc of the magnetic adjuster material heated by electromagnetic induction is set to 220 degrees C. or below and the fixation setting temperature of a heating member corresponding to the portion where a recording material passes during continuous sheet feed is set lower than a value than the temperature at which the relative magnetic permeability of the magnetic adjuster material begins to decrease. Thus, it is possible to obtain a large difference between the heating portion and the non-heating portion, to surely prevent excessive temperature increase of the portion out of the recording material width, to reduce the warm-up time, and improve the heating efficiency. | 01-29-2009 |
20090142114 | FIXING DEVICE - A fixing device enabling the temperature of a heating element to be uniformly and stably maintained even if the heating element is eccentrically moved or vibrated. An opposed core ( | 06-04-2009 |
20090232565 | HEATING APPARATUS - A heating apparatus which can increase the temperature of a heating element to a target temperature in a short time and ensures temperature uniformity of the heating element. In the heating apparatus, when the specific resistance of a material of a heat generating layer ( | 09-17-2009 |
Toru Katakabe, Fujimi-Machi JP
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20150015934 | ELECTROPHORETIC APPARATUS, MANUFACTURING METHOD OF ELECTROPHORETIC APPARATUS, AND ELECTRONIC APPARATUS - An electrophoretic apparatus includes: an electrophoretic layer that is disposed between an element substrate and a counter substrate, and has a dispersion medium in which electrophoretic particles are dispersed; a partition wall that is disposed to separate the electrophoretic layer into a plurality of cells; a seal material that bonds the element substrate and the counter substrate, and is disposed so as to surround the electrophoretic layer; and a sealing film that is disposed at least between the partition wall and the counter substrate, and has no adhesive material, in which a top section of the partition wall is disposed in the sealing film. | 01-15-2015 |