Takisawa
Haruhiko Takisawa, Osaka JP
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20120115232 | METHOD FOR INDUCING DEGRADATION OF PROTEIN IN MAMMALIAN CELL - Provided is a system which can induce the degradation of a protein of interest in a mammalian cell system reliably and stably within a short time. A mammalian cell inducible for protein degradation, the degradation of a protein of interest being induced by an auxin, in which the mammalian cell has both a TIR1 family protein gene from rice and a chimeric gene expressing a protein of interest labeled with a plant Aux/IAA family protein. | 05-10-2012 |
Hisashi Takisawa, Akita-Shi JP
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20100315305 | HYBRID ANTENNA UNIT - A hybrid antenna unit includes a circuit board having top and bottom surfaces, a planer antenna element which is mounted on the top surface of the circuit board and which receives first and second radio waves, an antenna base and a top cover that cover the circuit board and the planer antenna element. A bar antenna element stands on the top cover in a slanting position. A processing unit is mounted on the bottom surface of the circuit board and is connected to the planer antenna element. The processing unit processes the first and the second radio waves. A shielding case is mounted on the bottom surface of the circuit board and shields the processing unit. A booster circuit is mounted on the circuit board and is for use in the bar antenna element. | 12-16-2010 |
Hisashi Takisawa, Tokyo JP
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20100090923 | Antenna Device and Antenna Waterproof Structure - An antenna device includes an antenna module configured to receive radio waves. A plate has a plurality of first through holes. A cover is coupled with the plate to define a space accommodating the antenna module. The cover includes a rib and a side wall surrounding the antenna module. The side wall has an end face opposing the plate and formed with a plurality of threaded holes. The rib is projected from the end face. A gasket has a part formed with a plurality of openings and is disposed between the rib and the plate. A plurality of screws are respectively screwed into the threaded holes through the first through holes and the openings. At least a part of each of the screws is surrounded by an associated one of the openings. | 04-15-2010 |
20100117912 | ANTENNA WITH A METALLIC HOLDER DISPOSED BETWEEN AN ANTENNA ELEMENT AND A CIRCUIT BOARD - An antenna includes an antenna element, a circuit board, and a planer metallic holder disposed between the antenna element and the circuit board. The metallic holder supports the antenna element on a base. | 05-13-2010 |
20100328179 | ANTENNA UNIT INCLUDING A SHIELD COVER HAVING A CEILING PORTION WITH A MOUNTER VACUUMED PORTION - A shield cover is disposed so as to be opposed to a bottom plate and electromagnetic-shields a signal processing circuit mounted on a rear surface of a circuit board. The shied cover has a ceiling portion which includes a mounter vacuumed portion disposed in a center portion of the ceiling portion and vacuumed by a vacuum nozzle of a mounter, a ring-shaped outer edge disposed from an end of the side wall portion inwardly, and a plurality of beam portions joining the mounter vacuumed portion to the outer edge. An electromagnetic shielding of the signal processing unit is carried out using both of the shield cover and the bottom plate. | 12-30-2010 |
Hisashi Takisawa, Akita JP
Patent application number | Description | Published |
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20080266184 | Antenna Device - A hinge portion is formed on the base portion. An antenna portion is attached to the hinge portion so as to be pivotable thereabout. The hinge portion includes a hinge base having a first shaft formed on one end thereof, a second shaft formed on the other end thereof, and a first protrusion formed on an outer periphery of the second shaft, and a hinge bush rotatably mounted on the first shaft and engaged with the antenna portion. The antenna portion is formed with a hole surrounding the outer periphery of the second shaft. A projection is formed on an inner periphery of the hole. The first protrusion is brought into contact with the projection when the antenna portion is pivoted so as to define a predetermined angle with respect to the base portion. | 10-30-2008 |
20090002256 | Antenna Device - A hinge portion is formed on the base portion. An antenna portion is attached to the hinge portion so as to be pivotable thereabout. The hinge portion includes a hinge base having a first shaft formed on one end thereof, a second shaft formed on the other end thereof, and a first protrusion formed on an outer periphery of the second shaft, and a hinge bush rotatably mounted on the first shaft and engaged with the antenna portion. The antenna portion is formed with a hole surrounding the outer periphery of the second shaft. A projection is formed on an inner periphery of the hole. The first protrusion is brought into contact with the projection when the antenna portion is pivoted so as to define a predetermined angle with respect to the base portion. | 01-01-2009 |
Ryo Takisawa, Tokyo JP
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20140125552 | ANTENNA AND ANTENNA UNIT INCLUDING SAME - An antenna includes a support body having a rod shape, a first helical antenna element, and a second helical antenna element. The first helical antenna element is wound about the axis of the support body. The second helical antenna element overlaps the first helical antenna element with an insulator provided between the first helical antenna element and the second helical antenna element. The second helical antenna element is wound about the axis in a direction opposite to a direction in which the first helical antenna element is wound. | 05-08-2014 |
Ryoto Takisawa, Hamamatsu-Shi JP
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20150137301 | MANUFACTURING METHOD FOR SOLID-STATE IMAGING DEVICE AND SOLID-STATE IMAGING DEVICE - A method for manufacturing a solid-state imaging device comprises a first step of preparing an imaging element including a second principal surface having an electrode arranged thereon, and a photoelectric converter part configured to photoelectrically convert the incident energy line so as to generate a signal charge; a second step of preparing a support substrate, provided with at least one through hole extending in a thickness direction thereof, having a third principal surface; a third step of aligning the imaging element and the support substrate with each other so that the one electrode is exposed out of the one through hole while the second and third principal surfaces oppose each other and joining the imaging element and the support substrate to each other; and a fourth step of embedding a conductive member in the through hole after the third step. | 05-21-2015 |
Takahiro Takisawa, Osaka JP
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20100015877 | METHOD FOR PRODUCING PLASMA DISPLAY PANEL - A method for producing a plasma display panel, the method comprising the steps of: (i) preparing a front panel and a rear panel, the front panel being a panel wherein an electrode A, a dielectric layer A and a protective layer are formed on a substrate A, and the rear panel being a panel wherein an electrode B, a dielectric layer B, a partition wall and a phosphor layer are formed on a substrate B; (ii) applying a glass frit material onto a peripheral region of the substrate A or B, and then opposing the front and rear panels with each other such that the glass frit material is interposed therebetween; (iii) supplying a gas into a space formed between the opposed front and rear panels from a direction lateral to the opposed front and rear panels, under such a condition that the front and rear panels are heated; and (iv) melting the glass frit material to cause the front and rear panels to be sealed. | 01-21-2010 |