Yoshiji
Yoshiji Arai, Tokyo JP
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20150351274 | VEHICLE CONTROL DEVICE FOR ELECTRIC ROLLING STOCK - A draining member protrudes from both openings of a through-hole in a vehicle control device. It has a pair of spaced elastic members extending from a connection. The connection has a width smaller than a width of the through-hole. The width between the elastic members varies from the connection toward their ends, reaching a narrow portion smaller than the width of the through-hole via an increased width portion greater than the width of the through-hole. A leg portion beyond the narrow portion has a width greater than the width of the through-hole. A minimum distance between a location where the width between the increased width portion and the narrow portion matches the width of the through-hole, and another location where the width of the leg portion is equal to or greater than the width of the through-hole, is equal to or greater than a thickness of the housing. | 12-03-2015 |
Yoshiji Fujita, Koutou-Ku JP
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20090004171 | COMPOUND PROFILING METHOD - The present invention provides a method for deriving an upstream or downstream component of a component necessary for phenotypic alteration of a living organism, the method comprising the steps of: specifying a pathway of interest related to the phenotypic alteration and a reference pathway different from the pathway of interest, and specifying a stimulant of interest and a reference stimulant which respectively stimulate the pathway of interest and the reference pathway; giving the stimulant of interest to the living organism to identify a collection of components of interest necessary for the phenotypic alteration; giving the reference stimulant to the living organism to identify a collection of reference components necessary for the phenotypic alteration; calculating an intersection between the collections of the components of interest and the reference components; and calculating a differential collection by subtracting the intersection from the collection of components of interest. | 01-01-2009 |
20100210708 | COMPOUND PROFILING METHOD - The present invention provides a method for deriving an upstream or downstream component of a component necessary for phenotypic alteration of a living organism, the method comprising the steps of: specifying a pathway of interest related to the phenotypic alteration and a reference pathway different from the pathway of interest, and specifying a stimulant of interest and a reference stimulant which respectively stimulate the pathway of interest and the reference pathway; giving the stimulant of interest to the living organism to identify a collection of components of interest necessary for the phenotypic alteration; giving the reference stimulant to the living organism to identify a collection of reference components necessary for the phenotypic alteration; calculating an intersection between the collections of the components of interest and the reference components; and calculating a differential collection by subtracting the intersection from the collection of components of interest. | 08-19-2010 |
Yoshiji Fujita, Koto-Ku JP
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20100280096 | TREATMENT OF INFLUENZA - The present invention provides a double-stranded RNA which inhibits replication of influenza B viruses by RNA interference, in which the double-stranded RNA comprises an RNA having 19 to 25 nucleotides homologous with a part of an mRNA transcribed from a genomic RNA of the influenza B viruses and an antisense RNA thereof. | 11-04-2010 |
20120232128 | TREATMENT OF INFLUENZA - The present invention provides a double-stranded RNA which inhibits replication of influenza B viruses by RNA interference, in which the double-stranded RNA comprises an RNA having 19 to 25 nucleotides homologous with a part of an mRNA transcribed from a genomic RNA of the influenza B viruses and an antisense RNA thereof. | 09-13-2012 |
Yoshiji Ishizuka, Kobe-Shi JP
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20100127996 | In-vehicle device, remote control system, and remote control method - To provide an in-vehicle device including a layout-information acquiring unit, a relating unit, a combination display unit, a converting unit, and an output-signal transmitting unit. The layout-information acquiring unit acquires layout information of input keys of the portable terminal device. The relating unit relates each input key included in the layout information to a predetermined area on a touch panel display. The combination display unit causes a layout screen of each input key related to a predetermined area on the touch panel display to be displayed in the touch panel display. The converting unit converts an input to the touch panel display into an output signal corresponding to a pressing operation of the input key or a combination of the output signals, based on the layout information. The output-signal transmitting unit transmits the output signal obtained by conversion to the portable terminal device. | 05-27-2010 |
20110029239 | NAVIGATION SYSTEM, IN-VEHICLE DEVICE, NAVIGATION METHOD, AND COMPUTER-READABLE MEDIUM - A navigation system is provided. An in-vehicle device is mounted on a vehicle. A data providing apparatus provides data regarding navigation to the in-vehicle device. The data providing apparatus detects current position data of the vehicle, accumulates map image data, cuts the map image data in a display size of the in-vehicle device, and separately transmits the detected current position data and the cut map image data to the in-vehicle device. The in-vehicle device receives the current position data and the cut map image data from the data providing apparatus, and superimposes the received current position data and the cut map image data to display a guide image. The current position data is transmitted in a first transmission cycle and the cut map image data is transmitted in a second transmission cycle which is shorter than the first transmission cycle. The current position data is updated while maintaining the cut map image data when the current position data is received, and the cut map image data is updated when the current position data is located at an update position in the periphery of the cut map image data. | 02-03-2011 |
20110213550 | NAVIGATION SYSTEM - A data providing apparatus included in a navigation system obtains, from the in-vehicle apparatus, first direction data which represents a direction in which the vehicle heads at a start of providing the navigation data and derives second direction data which represents the direction in which the vehicle heads based on a change of a location of the vehicle after a start of traveling of the vehicle. The data providing apparatus transmits, to the in-vehicle apparatus, the navigation data in accordance with the direction in which the vehicle heads and transmits, to the in-vehicle apparatus, the second direction data which is derived. The in-vehicle apparatus included in the navigation system displays the navigation data which is received from the data providing apparatus, and the in-vehicle apparatus stores, during a stop of working of the in-vehicle apparatus, the second direction data received from the data providing apparatus. Then the in-vehicle apparatus transmits the second direction data which is stored, to the data providing apparatus as the first direction data after activation of the in-vehicle apparatus. | 09-01-2011 |
20120232793 | NAVIGATION SYSTEM AND ON-VEHICLE DEVICE - A navigation system is configured in which a driven distance calculating unit of an on-vehicle device calculates a first driven distance in a predetermined section based on vehicle speed calculated using vehicle speed pulses outputted from a vehicle and a vehicle speed calculation coefficient, a driven distance calculating unit of a portable terminal device calculates a second driven distance of the vehicle in the predetermined section based on GPS information provided from global navigation satellites, a learning unit corrects the vehicle speed calculation coefficient based on the result of comparing the first driven distance with the second driven distance, and a vehicle location predicting unit of the portable terminal device predicts a vehicle location based on the vehicle speed calculated using the vehicle speed pulses and the corrected vehicle speed calculation coefficient. | 09-13-2012 |
Yoshiji Ishizuka, Hyogo JP
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20100039224 | BIOMETRICS INFORMATION MATCHING APPARATUS, BIOMETRICS INFORMATION MATCHING SYSTEM, BIOMETRICS INFORMATION MATCHING METHOD, PERSON AUTHENTICATION APPARATUS, AND PERSON AUTHENTICATION METHOD - An occupant authentication apparatus is incorporated in a vehicle. The occupant authentication apparatus includes a communication processor, a biometric-data obtaining unit, a matching unit, and an association processor. The biometric-data obtaining unit obtains biometric data of an occupant of the vehicle. The communication processor communicates with a portable terminal device, and receives biometric data held by the portable terminal device. The matching unit matches the biometric data of the occupant obtained by the biometric-data obtaining unit with the biometric data that the communication processor receives from the portable terminal device. When the obtained biometric data matches the received biometric data, the association processor associates the occupant (or a seat position of the occupant), from whom the biometric data is obtained, with the portable terminal device, from which the biometric data is received. | 02-18-2010 |
Yoshiji Kawamura, Sano-Shi JP
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20090296008 | POLARIZATION CONVERSION ELEMENT, POLARIZED LIGHT ILLUMINATION OPTICAL ELEMENT, AND LIQUID CRYSTAL PROJECTOR - A prism sheet is bonded to the bottom faces of rectangular prisms constituting a polarization beam splitter array. In the front face of the prism sheet, a plurality of rectangular prism elements are arranged in parallel to each other and a phase difference compensation film is formed on the surface. The edge lines of the rectangular prism elements are inclined at 45 degrees relative to the edge lines of the rectangular prisms. Linear polarized light of S-polarization component reflected by a polarized light separation film is reflected twice sequentially in a phase difference compensation film formed in a pair of oblique faces of the rectangular prism elements, so that the polarization direction is rotated by 90 degrees and then the light reenters the rectangular prism. Then, the light is transmitted through the polarized light separation film and then extracted from the rectangular prism. | 12-03-2009 |
20100245690 | POLARIZATION CONVERSION DEVICE, POLARIZED ILLUMINATION OPTICAL DEVICE, AND LIQUID CRYSTAL PROJECTOR - Polarizing split layers | 09-30-2010 |
20100245691 | POLARIZATION CONVERSION DEVICE, POLARIZED ILLUMINATION OPTICAL DEVICE, AND LIQUID CRYSTAL PROJECTOR - A polarizing split layer | 09-30-2010 |
Yoshiji Kawamura, Tochigi JP
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20100245772 | OPTICAL FILTER, PROJECTION DISPLAY, AND METHOD FOR MANUFACTURING OPTICAL FILTER - An optical filter capable of removing an unnecessary component of incident light. The optical filter has a transparent body of a flat plate-like shape. A plurality of filtering layers, each that separate an unnecessary polarization component of incident light from a necessary polarization component, are formed within the transparent body in series and at uniform intervals with an angle inclination relative to the travel direction of incident light. A plurality of light-absorptive layers are formed within the transparent body in series and at uniform intervals between the filtering layers to absorb an unnecessary component reflected by the filtering layers. | 09-30-2010 |
Yoshiji Ohta, Osaka-Shi JP
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20100232209 | CONTROL CIRCUIT FOR FORMING PROCESS ON NONVOLATILE VARIABLE RESISTIVE ELEMENT AND CONTROL METHOD FOR FORMING PROCESS - A nonvolatile semiconductor memory device can carry out a forming process simultaneously on the nonvolatile variable resistive elements of memory cells and make the forming time shorter. The nonvolatile semiconductor memory device has a forming detection circuit provided between the memory cell array and the second selection line (bit line) decoder. The forming detection circuit detects the completion of the forming process for memory cells by measuring the fluctuation in the potential of second selection lines or the current flowing through the second selection lines when applying a voltage pulse for a forming process through the second selection lines simultaneously to the memory cells on which a forming process is to be carried out connected to the same first selection line (word line), and prevents a voltage from being applied to the second selection lines connected to the memory cells where the completion of the forming process is detected. | 09-16-2010 |
20110228586 | NONVOLATILE SEMICONDUCTOR MEMORY DEVICE - A nonvolatile semiconductor memory device includes a bit voltage adjusting circuit which, for each bit line, fixes potentials of a selected bit line and a non-selected bit line to a predetermined potential to perform a memory operation and a data voltage adjusting circuit which, for each data line, fixes potentials of a selected data line and a non-selected data line to a predetermined potential to perform a memory operation. Each of the voltage adjusting circuits includes an operational amplifier and a transistor, a voltage required for a memory operation is input to the non-inverted input terminal of the operational amplifier, and the inverted input terminal of the operational amplifier is connected to the bit line or the data line, so that the potential of the bit line or the data line is fixed to a potential of the non-inverted input terminal of the operational amplifier. | 09-22-2011 |
20110292715 | SEMICONDUCTOR MEMORY DEVICE - A semiconductor memory device includes a memory cell array in which a plurality of memory cells is aligned in a matrix shape, each memory cell including a two-terminal memory element and a transistor for selection connected in series; a first voltage applying circuit that applies a writing voltage pulse to first bit lines; and a second voltage applying circuit that applies a pre-charge voltage to the first bit lines and second bit lines, wherein in a writing of a memory cell, after the second voltage applying circuit has pre-charged both ends of the memory cell to a same voltage, the first voltage applying circuit applies the writing voltage pulse via the first bit line that is directly connected to the transistor for selection, and the second voltage applying circuit applies the pre-charge voltage to the second bit line directly connected to the memory element. | 12-01-2011 |
20120014163 | SEMICONDUCTOR MEMORY DEVICE AND METHOD OF DRIVING THE SAME - A semiconductor memory device includes a memory cell array where a plurality of memory cells are arranged in a matrix, each of the memory cells serially connecting a two-terminal type memory element and a transistor for selection, a first voltage applying circuit that applies a write voltage pulse to a bit line, and a second voltage applying circuit that applies a precharge voltage to a bit line and a common line. In writing the memory cell, after the second voltage applying circuit has both terminals of the memory cell previously precharged to the same voltage, the first voltage applying circuit applies the write voltage pulse to one terminal of the writing target memory cell via the bit line, and while the write voltage pulse is applied, the second voltage applying circuit maintains the application of the precharge voltage to the other terminal of the memory cell via the common line. | 01-19-2012 |
20130054069 | VEHICLE DRIVING DEVICE, VEHICLE CHARGING SYSTEM, AND AUTOMOBILE - A vehicle driving device is arranged such that in accordance with an instruction signal from the outside, a first battery managing section outputs, to the outside, a signal related to charging/discharging control for a first battery. | 02-28-2013 |
20130068277 | PHOTOVOLTAIC MODULE AND PHOTOVOLTAIC MODULE ARRAY - A photovoltaic module of the present invention includes a cluster power generation unit in which multiple photovoltaic elements are connected in series via connection points, a pair of output terminals connected to respective ends of a series circuit formed by the cluster power generation unit, and a specified terminal connected to a specified connection point that is specified from among the connection points. | 03-21-2013 |
20130069582 | PUSH-PULL CIRCUIT, DC/DC CONVERTER, SOLAR CHARGING SYSTEM, AND MOVABLE BODY - A push-pull circuit comprising: a push-pull first switching element and second switching element; a first rectifier element; a third switching element for switching a pathway between conductance and cutoff, the pathway leading from a connection point between the first switching element and an inductive load via the first rectifier element to a connection point between a DC power source and a center tap of the inductive load; a second rectifier element; and a fourth switching element for switching a pathway between conductance and cutoff, the pathway leading from a connection point between the second switching element and the inductive load via the second rectifier element to a connection point between the DC power source and the center tap of the inductive load. | 03-21-2013 |
20130106342 | DC-DC CONVERTER, SOLAR CHARGING SYSTEM, AND MOVABLE BODY | 05-02-2013 |
20140009952 | LIGHT EMITTING DEVICE, LIGHTING SYSTEM, HEADLIGHT, AND VEHICLE - A light emitting device which includes at least one of a laser light source ( | 01-09-2014 |
20140028375 | SEMICONDUCTOR DEVICE, AND INVERTER, CONVERTER AND POWER CONVERSION DEVICE EMPLOYING THE SAME - A semiconductor device includes a high breakdown voltage, high Gm first transistor and a low breakdown voltage, low Gm second transistor connected in series between first and second nodes, and a low breakdown voltage, high Gm third transistor connected to the second transistor in parallel. When the second transistor is turned on, the first transistor turns on, and furthermore, when the third transistor is turned on, an electrically conducting state is established between the first and second nodes. The second, low breakdown voltage transistor is turned on to turn on the first, high breakdown voltage transistor, and a turn-on time with only limited variation can be achieved. | 01-30-2014 |
20140168940 | LASER-BEAM UTILIZATION DEVICE AND VEHICLE HEADLIGHT - A headlamp ( | 06-19-2014 |
Yoshiji Ohta, Kashiwara-Shi JP
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20090237154 | SEMICONDUCTOR DEVICE, LIQUID CRYSTAL DISPLAY DEVICE AND ELECTRONIC EQUIPMENT - The semiconductor device of the present invention has a circuit block in which m (m is an integer of not smaller than two) sets of first through m-th transistor columns where two or more transistors are connected in series, one terminal of the first through m-th transistor columns is connected to a first output node, and the other terminal of the first through m-th transistor columns is connected to a second output node. A control signal for substantially simultaneously turning on and off all the transistors of the first through m-th transistor columns is inputted to the control input terminals of the transistors of the first through m-th transistor columns. | 09-24-2009 |
Yoshiji Ohta, Kasiwara-Shi JP
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20080247232 | SEMICONDUCTOR STORAGE DEVICE AND ELECTRONIC EQUIPMENT THEREFOR - A semiconductor storage device includes a first memory cell for storing two kinds of states, a second memory cell for storing two kinds of states, and a sense amplifier for detecting a potential difference between voltages equivalent to readout currents of the first and second memory cells, respectively. Either one of information data “0” or data “1”, which is stored in combination of the first and second memory cells, is read out by detecting the potential difference equivalent to the readout current difference between the first and second memory cells. | 10-09-2008 |
Yoshiji Ohtsu US
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20140138710 | SEMICONDUCTOR DEVICE AND METHOD FOR PRODUCING THE SAME - A semiconductor device includes a circuit substrate which is configured with an insulative substrate formed of a ceramic material and provided on its one surface with an electrode formed of a copper material, and a power semiconductor element bonded with the electrode using a sinterable silver-particle bonding material, wherein the electrode has a Vickers hardness of 70 HV or more in its portion from the bonding face with the power semiconductor element toward the insulative substrate to a depth of 50 μm, and has a Vickers hardness of 50 HV or less in its portion at the side toward the insulative substrate. | 05-22-2014 |
20140312361 | SEMICONDUCTOR ELEMENT, SEMICONDUCTOR DEVICE AND METHOD FOR MANUFACTURING SEMICONDUCTOR ELEMENT - The semiconductor element has an electrode including: a Ni-inclusion metal layer containing nickel formed on a side of at least one surface of the semiconductor-element constituting part; a Ni-barrier metal layer formed outwardly on a side of the Ni-inclusion metal layer opposite to the side toward the semiconductor-element constituting part; and a surface metal layer outwardly formed on a side of the Ni-barrier metal layer opposite to the side toward the semiconductor-element constituting part, to be connected to the metal nanoparticles sintered layer; wherein the Ni-barrier metal layer contains a metal for suppressing diffusion of nickel toward the surface metal layer. | 10-23-2014 |
Yoshiji Okamoto, Nagaokakyo-Shi JP
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20130279071 | MONOLITHIC CERAMIC ELECTRONIC COMPONENT - Solder-repellent portions are each arranged so as to extend over all or substantially all of a portion of a corresponding one of outer electrodes provided on a corresponding one of end surfaces of a monolithic ceramic electronic component and partially on portions of the outer electrode provided over two side surfaces of the monolithic ceramic electronic component. When the monolithic ceramic electronic component is mounted on the circuit board, solder does not adhere to the end surfaces and portions of the outer electrode provided on portions of the two side surfaces. Thus, expansion and contraction that occur as a result of application of an AC voltage is not transmitted or is not significantly transmitted to the circuit board. Consequently, vibrations of the circuit board are significantly reduced or prevented. | 10-24-2013 |
20130279072 | MONOLITHIC CERAMIC ELECTRONIC COMPONENT - When a monolithic ceramic electronic component is viewed from either one of end surfaces thereof, an outer electrode includes a solder-repellent portion and a solder-receivable portion. The solder-repellent portion covers the central portion of an end surface of a ceramic laminate body. The solder-receivable portion includes portions disposed on two opposing sides of the solder-repellent portion. When the monolithic ceramic electronic component is mounted on the circuit board, solder does not adhere to a portion around the central portion of the end surface. Thus, expansion and contraction that occur as a result of application of an AC voltage are not significantly transmitted to the circuit board. Consequently, vibrations of the circuit board are reduced. | 10-24-2013 |
Yoshiji Sato, Itami-Shi JP
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20140363249 | DRILL - A small diameter portion having an outside diameter smaller than a diameter of the drill is formed on a front end side of a body of the drill in which a cutting edge includes at least two portions, that is, a rotation center side cutting edge portion and an outer peripheral side cutting edge portion and point angles of the respective cutting edge portions reducing gradually from the rotation center side cutting edge portion to the outer peripheral side cutting edge portion. The cutting edge with the point angles varied is formed in the small diameter portion. A flat cutting edge having an inclination angle β of 30° or less with respect to a line perpendicular to an axis of the drill is provided in a step portion formed between the small diameter portion and a large diameter portion. | 12-11-2014 |
20150283625 | TWO-EDGE DOUBLE MARGIN DRILL - The problem of making it possible to shorten as much as possible the distance from a major margin to a minor margin of a two-edge double margin drill in an axial direction is addressed. An interval between major margins and respective minor margins, which are provided at outer peripheries of lands, are set at 80° to 100°, flank faces both include a flat second flank face and a flat third flank face, web thinning portions including web thinning surfaces having convex arcs in a direction of drill rotation in front view of the drill are formed at a central portion of an end, and an outer end of each web thinning surface in a radial direction is disposed behind an end of the corresponding minor margin in the direction of drill rotation and extends to the outer periphery of the corresponding land. | 10-08-2015 |
Yoshiji Takahashi, Natori-Shi JP
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20110202308 | ENCODER SYSTEM, SIGNAL PROCESSING METHOD, AND TRANSMISSION SIGNAL GENERATION AND OUTPUT DEVICE - An encoder system includes: a first single-rotation absolute encoder that outputs a first signal corresponding to an angular position of a first rotatable shaft; a power transmission device that transmits the power of the first shaft to a second rotatable shaft with a predetermined transmission ratio; a second single-rotation absolute encoder that outputs a second signal corresponding to an angular position of the second shaft; and a signal processing section that generates data related to the rotation count of the first shaft based on at least the first signal and the second signal. | 08-18-2011 |
20150048724 | CONTROL APPARATUS FOR CONTROLLING ROTATION OF JOINTS OF ROBOT - A joint of a robot includes a driving motor, a speed reducer that reduces rotation of an output shaft of the motor, and an arm connected to the speed reducer. The joint includes an input encoder that detects a rotational position of the motor and an output encoder that detects a rotational position of the arm. A controller controls the motor based on data indicating the rotational positions of the motor and the arm detected by the input encoder and the output encoder, respectively. The input encoder is arranged with a register that latches and retains an input EC value. The output encoder includes a register that latches and retains an output EC value, and an edge pulse output section that outputs an edge pulse to both registers every time the output EC value changes. In response to the edge pulse, both registers concurrently output EC values to the controller. | 02-19-2015 |
20150142377 | ENCODER SYSTEM, SIGNAL PROCESSING METHOD, AND TRANSMISSION SIGNAL GENERATION AND OUTPUT DEVICE - An encoder system includes a signal processing circuit including: (1) a first position data detection circuit that detects first position data representing positional displacement in rotation of an input shaft through first predetermined signal processing based on a first detection signal input from a first absolute position encoder; (2) a second position data detection circuit that detects second position data representing positional displacement in rotation of an output shaft through second predetermined signal processing based on a second detection signal input from a second absolute position encoder; (3) a position data combination circuit that combines the first and second position data to generate combined position data representing the number of rotations of the input shaft and the positional displacement within one rotation of the input shaft; and (4) a position data comparing and collating circuit that compares and collates the first and second position data. | 05-21-2015 |
Yoshiji Usui, Hyogo JP
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20090142595 | Heat Extensible Fiber - A heat extensible fiber comprises a conjugate fiber including a first resin component having an orientation index of 30% to 70% and a second resin component having a lower melting point or softening point than the melting point of the first resin component and an orientation index of 40% or more, the second resin component being present on at least part of the surface of the conjugate fiber in a lengthwise continuous configuration. The conjugate fiber is a heat-treated or crimped fiber and being configured to thermally extend when heated at a temperature lower than the melting point of the first resin component. The heat extensible fiber has higher heat self-extensibility than conventional extensible fibers. | 06-04-2009 |
20100190406 | HEAT-BONDABLE COMPOSITE FIBER, PROCESS FOR PRODUCING THE SAME, AND FIBROUS MASS - A POM/POM thermoadhesive conjugate fiber is produced by providing two kinds of POM-based polymers A and B which satisfy 3007-29-2010 | |
Yoshiji Yamada, Nagoya JP
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20090239227 | Method of diagnosing risk of myocardial infarction - It is intended to provide a means of diagnosing myocardial infarction which shows a high accuracy and a high predictability. The risk of myocardial infarction is diagnosed by a method comprising the following steps: (i) the step of analyzing 2 or more polymorphisms among 10 gene polymorphisms or 5 gene polymorphisms proved as relating to myocardial infarction; (ii) the step of determining the genotype of a nucleic acid sample based on the polymorphism data obtained in the above step; and (iii) the step of determining the genetic risk of myocardial infarction from the genotype thus obtained. | 09-24-2009 |
Yoshiji Yamamoto, Toyohashi-Shi JP
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20130116851 | THERMAL DISPLACEMENT COMPENSATING DEVICE AND THERMAL DISPLACEMENT COMPENSATING METHOD - In a thermal displacement compensating device and a thermal displacement compensating method for a machine tool, a block temperature obtaining section obtains temperatures of respective blocks based on temperature information detected by temperature sensors wherein temperatures in each of the respective blocks into which a column is divided to be pluralized are defined as a uniform value. An FEM analysis section performs a structural analysis by a finite element method based on the temperatures of the respective blocks obtained by the block temperature obtaining section and infers thermal displacement amounts of the column. A compensation value calculation section calculates a compensation value for a machining command position based on the thermal displacement amounts of the column inferred by the FEM analysis section. A compensation section compensates the machining command position by the compensation value obtained by the compensation value calculation section. | 05-09-2013 |