Takahiro Harada
Takahiro Harada, Tokyo JP
Patent application number | Description | Published |
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20080255335 | Resin Composition, Polyimide Resin Composition, Polybenzoxazole Resin Composition, Varnish, Resin Film and Semiconductor Device Using the Same - A resin composition having high heat resistance and low dielectric constant after heat treatment, a varnish thereof and a semiconductor device using the same are provided by a resin composition including a compound having a structure represented by the general formula (1): | 10-16-2008 |
20090118431 | RESIN COMPOSITION, VARNISH, RESIN FILM AND SEMICONDUCTOR DEVICE USING THE SAME - A main object of the present invention is to provide a resin composition having high heat resistance and a low dielectric constant, a varnish thereof, a resin film thereof and a semiconductor device using the same. | 05-07-2009 |
20100171769 | DISPLAY APPARATUS AND METHOD FOR DRIVING THE SAME - A display apparatus according to an aspect of the invention includes a first scanning line disposed in a first direction, a second scanning line disposed to accompany the first scanning line, and a first signal line crossing the first and second scanning lines. The display apparatus also includes a first pixel electrode connected to the first signal line via a first switching element having a terminal that is connected to the first scanning line so that the first pixel electrode is applied with a gray scale signal under control of the first switching element, and a second pixel electrode connected to the first pixel electrode via a second switching element having a terminal that is connected to the second scanning line so that the second pixel electrode is applied with a gray scale signal through the first pixel electrode under control of the first switching element and the second switching element. | 07-08-2010 |
20140183715 | SEMICONDUCTOR DEVICE - According to the present invention, a semiconductor device having superior electrical conductivity is provided. The semiconductor device of the present invention is provided with a base material, a semiconductor element, and an adhesive layer that adheres the base material and the semiconductor element while interposed there between. In the adhesive layer of the semiconductor device, a metal particle and an insulating particle are dispersed, and the metal particle has flaked shape or ellipsoidal/spherical shape. As the content percentage by volume of the metal particle in the adhesive layer is a and the content percentage by volume of the insulating particles in the adhesive layer is b, the content percentage (a+b) by volume of fillers in the adhesive layer is 0.20 or more and 0.50 or less and the content percentage a/(a+b) by volume of the metal particles in the fillers is 0.03 or more and 0.70 or less. | 07-03-2014 |
Takahiro Harada, Chiryu-Shi JP
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20100050433 | PROCESSING METHOD, PROCESSING JIG FOR CYLINDER BLOCK AND THE CYLINDER BLOCK - In a processing method for processing a cylinder block, a finish processing for the cylinder bore is performing, by pressing the portion of the bolt phase for fastening the cylinder head on the cylinder portion outer peripheral surface forming the inside surface of a water jacket, on the condition that the rigidity of the pressed portion on the cylinder portion toward the pressure from the side of the cylinder bore (the surface pressure from the grinding stones by honing process) is enhanced compared with the other portions. | 03-04-2010 |
20100072687 | JIG AND METHOD FOR PROCESSING CYLINDER BLOCK - In a dummy head (a jig for processing a cylinder block) having a dummy head body deforming a cylinder bore by assembling into a mounting surface of the cylinder block by bolt fastening, during the finish processing of the cylinder bore, a boss having a contact surface contacting a peripheral portion of the cylinder bore on the head mounting surface is provided on a mounting surface side for the cylinder block of the dummy head body, and at least the dummy head body has a higher rigidity than the cylinder block. | 03-25-2010 |
20130055970 | CYLINDER HEAD HAVING EGR GAS COOLING STRUCTURE, AND METHOD FOR MANUFACTURING SAME - It has been difficult to manufacturing a cylinder head having an EGR gas cooling structure which has high cooling performance and can be easily configured. A cylinder head having an EGR gas cooling structure is configured in such a manner that a gas passage which guides to the air intake port side a part of the exhaust gas discharged from the exhaust port is disposed within the cylinder head water jacket to cool the exhaust gas flowing through the gas passage. The gas passage comprises a cooling section which makes contact with the coolant within the cylinder head water jacket, and also comprises a hollow pipe which has high-strength sections located at side portions of the cooling section and having higher strength than the cooling section. The high-strength sections of the gas passage are molded within and surrounded by the cylinder head. | 03-07-2013 |
20150252749 | INTERNAL COMBUSTION ENGINE - In an internal combustion engine, a first oil chamber includes a curved surface portion provided on the upstream side in an oil flow direction and an inclined surface portion provided on the downstream side. The engine is so constructed that oil drops from upper oil passages onto the curved surface portion on the upstream side of the first oil chamber and the inclined surface portion on the downstream side. The curved surface portion on the upstream side has a curved shape which is convex downward, and the inclined surface portion on the downstream side has a slope shape which is inclined downward with respect to the horizontal direction. The curved shape of the curved surface portion on the upstream side is connected to the inclined surface portion before a tangent line of the curved surface portion turns to the horizontal direction. | 09-10-2015 |
Takahiro Harada, Kyoto JP
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20090146053 | MASS SPECTROMETER - In a mass spectrometer for carrying out mass analysis while microscopically observing a two-dimensional area of a sample | 06-11-2009 |
20100044563 | MASS SPECTROMETER - A sample plate | 02-25-2010 |
20110300935 | GAME APPARATUS, STORAGE MEDIUM STORING A GAME PROGRAM, AND GAME CONTROL METHOD - A game apparatus includes an LCD and is provided a touch panel in relation to the LCD. The LCD displays a game screen for making a player character hit a ball. For example, when touch-on is performed on the LCD (touch panel), the stance and shot power of the player character are decided according to coordinates of the touch-on position. With this, the path of the ball is decided to be a straight ball, draw ball or fade ball, and the carry of the ball is decided with regard to the shot power. Following the touch-on, when a slide operation is performed, an impact is decided according to the slide operation. For example, the path of the ball is changed by the decided impact. | 12-08-2011 |
20130190085 | GAME APPARATUS, STORAGE MEDIUM STORING A GAME PROGRAM, AND GAME CONTROL METHOD - A game apparatus includes an LCD and is provided a touch panel in relation to the LCD. The LCD displays a game screen for making a player character hit a ball. For example, when touch-on is performed on the LCD (touch panel), the stance and shot power of the player character are decided according to coordinates of the touch-on position. With this, the path of the ball is decided to be a straight ball, draw ball or fade ball, and the carry of the ball is decided with regard to the shot power. Following the touch-on, when a slide operation is performed, an impact is decided according to the slide operation. For example, the path of the ball is changed by the decided impact. | 07-25-2013 |
20150380229 | MASS SPECTROMETER - A mass spectrometer ( | 12-31-2015 |
Takahiro Harada, Uji JP
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20090230301 | MASS SPECTROMETRY APPARATUS AND METHOD - Disclosed is a mass spectrometry apparatus and method capable of providing enhanced analysis sensitivity in a mass spectrometric analysis for a small amount of ions. A quadrupole rod-type ion guide is employed to temporarily accumulate ions to be introduced into an ion trap, and ions are introduced into the ion guide in an amount less than a saturated ion amount in the ion guide, and accumulated in an exit end of the ion guide. As compared with an octopole rod-type ion guide, the quadrupole rod-type ion guide has a higher ion-converging capability, and therefore can confine and hold a small amount of ions around an ion optical axis, although it is inferior in ion-accumulating capability. This makes it possible to efficiently introduce the ions into the ion trap through two openings of an electric field-correcting electrode and an entrance endcap electrode, so as to perform a high-sensitive analysis. | 09-17-2009 |
Takahiro Harada, Kyoto-Shi JP
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20090166529 | METHOD FOR PREPARING SPECIMEN FOR MASS SPECTROMETRY - The present invention provides a specimen preparation method for mass spectrometry based on Matrix Assisted Laser Desorption Ionization (MALDI), wherein the method enables to form microcrystals (cocrystals) between matrices and biological molecules (protein and the like) on a biological tissue to generate ions thereof highly efficiently and to perform highly sensitive measurement. Microcrystals are formed on the specimen containing biological molecules, i.e. objects of the measurement, by spraying matrix solution beforehand. Furthermore, dispensation of matrix solution on the microcrystals allows crystals to grow by making preformed micro-matrix crystals as crystal nuclei. Therefore, much finer and more homogeneous crystals (cocrystals) are prepared to enable to perform highly sensitive mass spectrometry based on MALDI. The present invention is a specimen preparation method for mass spectrometry based on matrix assisted laser desorption ionization, wherein the method comprises steps forming microcrystals of matrices on the specimen by spraying matrix solution on the specimen and allowing the microcrystals to grow further by dispensing matrix solutions to the specimen. | 07-02-2009 |
20110315874 | Mass Spectrometer - When specimen ( | 12-29-2011 |
Takahiro Harada, Toride-Shi JP
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20090021518 | Method for constructing data structure used for proximate particle search, program for the same, and storage medium for storing program - A method for constructing a data structure of a proximate particle search is executed by a GPU, and computes a simulation of a physical object by converting three-dimensional digital image data to two-dimensional digital image data. The memory for a bucket is composed of buckets for dividing a memory space that is created in accordance with a space in which the physical object occurs. A writing step is provided in which a scattering function (GPU: vertex shader) is used by the GPU to read a particle coordinate and the particle number of a particle stored in the bucket and write the particle coordinate and the particle number to a two-dimensional image space. | 01-22-2009 |
20090070079 | Sliced data structure for particle-based simulation, and method for loading particle-based simulation using sliced data structure into GPU - The sliced data structure used for a particle-based simulation using a CPU or GPU is a data structure for a calculation space. The space is a three-dimensional calculation space constructed from numerous voxels; a plurality of slices perpendicular to the Y axis is formed; numerous voxels are divided by a plurality of two-dimensional slices; the respective starting coordinates of the maximum and minimum voxels are calculated for a range of voxels in which particles are present in each of a plurality of two-dimensional slices; the voxel range is determined as a bounding box surrounded by a rectangular shape; and memory is provided for the voxels contained in the bounding boxes of each of the plurality of two-dimensional slices. | 03-12-2009 |
20090070080 | Method for constructing surface of fluid-body simulation based on particle method, program for the same, and storage medium for string program - Thin films or sharp edges in a fluid body are expressed in the display of a particle-based fluid-body simulation. The surface construction method is a method applied to a method for rendering calculation results on the screen of a display device using data that are obtained by calculation of a fluid-body simulation based on a particle method executed by a CPU or the like. The method has a first stage of allocating a concentration sphere to a particle that is a calculation object and computing an implicit function curved surface, and computing a plurality of base vertices (V | 03-12-2009 |
Takahiro Harada, Nikaho-Shi JP
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20080236723 | Production method of dielectric ceramic composition and production method of electronic device - A production method of a dielectric ceramic composition at least including a main component including a dielectric oxide having perovskite-type crystal structure expressed by a formula ABO | 10-02-2008 |
Takahiro Harada, Uji-Shi JP
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20110168883 | MASS SPECTROMETER - A mass spectrometer is provided that restrains the signal intensity of an MS/MS spectrum from decreasing according to the secondary dissociation of a primary fragment ion generated by a photodissociation. An excitation laser light for causing a photodissociation is irradiated to the trapping space A in the ion trap | 07-14-2011 |
Takahiro Harada, Hino-Shi JP
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20110181571 | DISPLAY DRIVING DEVICE AND DISPLAY APPARATUS COMPRISING THE SAME - A display driving device includes a gradation voltage generating section for generating a plurality of gradation voltages corresponding to the number of gradation levels in display data and reversing polarities of the gradation voltages at a time based on a horizontal synchronizing signal corresponding to the display data. A plurality of applying circuit sections are provided for every predetermined number of a plurality of signal lines, for generating a display signal voltage corresponding to the display data on the basis of the plurality of gradation voltages and for sequentially applying the display signal voltage to each of the predetermined number of signal lines. The time when the gradation voltage generating section reverses the polarities of the gradation voltages is set to occur before a timing for the next horizontal synchronizing signal and after completion of application of the display signal voltage to the signal lines. | 07-28-2011 |
Takahiro Harada, Kizugawa-Shi JP
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20110198496 | Mass Spectrometer - When a sample plate | 08-18-2011 |
20110266438 | Mass Spectrometer - A mass spectrometer capable of obtaining a clear microscopic observation image with high spatial resolution in real time, even during a mass analysis, without affecting the analysis is provided. An aperture | 11-03-2011 |
Takahiro Harada, Shinagawa-Ku JP
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20120142879 | COMPOSITION FOR FILM FORMATION, INSULATING FILM AND SEMICONDUCTOR DEVICE - A composition for film formation according to the present invention includes polymerizable compounds each having at least one polymerizable functional group, and the polymerizable compound includes a partial structure containing an adamantane type cage structure and at least one polymerizable reactive group contributing to polymerization reaction in one molecule thereof. Further, the polymerizable reactive group contains an aromatic ring and at least one ethynyl or vinyl group directly bonded to the aromatic ring as the polymerizable functional group, and the number of carbon atoms derived from the aromatic ring is in the range of 15 to 38% with respect to the number of total carbon atoms of the polymerizable compound. | 06-07-2012 |
Takahiro Harada, Santa Clara, CA US
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20130328873 | FORWARD RENDERING PIPELINE WITH LIGHT CULLING - A method for enhanced forward rendering is disclosed which includes a depth pre-pass, light culling and a final shading. The depth pre-pass minimizes the cost of final shading by avoiding high pixel overdraw. The light culling stage calculates a list of light indices overlapping a pixel. The light indices are calculated on a per-tile basis, where the screen has been split into units of tiles. The final shading evaluates materials using information stored for each light. The forward rendering method may be executed on a processor, such as a single graphics processing unit (GPU) for example. | 12-12-2013 |