Yukinari
Yukinari Abe, Niigata JP
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20100065790 | Conductive Composition - Conductive compositions which are useful as thermally conductive compositions and may also be useful as electrically conductive compositions are provided. The compositions include a conductive particle constituent in combination with a sintering aid which can, for example be a compound of the same metal in the nanometal, an organo-metallic, a metalorganic salt, mercaptan and/or resinate. In some embodiments the conductive particles include a small amount of nanoscale (<200 nm) particles. The compositions exhibit increased thermal conductivity. | 03-18-2010 |
Yukinari Fujisawa, Yachiyo JP
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20100133944 | ROTATING ELECTRIC MACHINE AND DRIVE SYSTEM THEREOF - In a rotating electric machine, each phase of a plurality of three-phase windings is divided into a plurality of partial windings, disposed on a stator core. For example, the partial windings of the U-phase are distributively arranged on four U-phase winding areas | 06-03-2010 |
Yukinari Ishibashi, Kyoto-Shi JP
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20140333769 | PASSENGER COUNTER - A passenger counter that counts the number of persons who get on/off a vehicle comprising an imaging unit | 11-13-2014 |
Yukinari Kato, Yamagata-Shi JP
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20120308571 | ANTI-PODOPLANIN ANTIBODY, AND PHARMACEUTICAL COMPOSITION CONTAINING ANTI-PODOPLANIN ANTIBODY - Disclosed are: an anti-podoplanin antibody which has a high binding activity and a high effector activity and has low antigenicity in humans or mice; and others. Specifically disclosed are: a chimeric antibody comprising an anti-podoplanin antibody for which an epitope is a polypeptide comprising the amino acid sequence set forth in SEQ ID NO:1 (excluding rat NZ-1 antibody having a heavy chain comprising the amino acid sequence set forth in SEQ ID NO:2 and a light chain comprising the amino acid sequence set forth in SEQ ID NO:3), and a heavy chain complementarity determining region and a light chain complementary determining region of the anti-podoplanin antibody; and others. | 12-06-2012 |
Yukinari Makisaka, Saitama JP
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20080308399 | Switch Mechanism and Disk Device | 12-18-2008 |
Yukinari Naganishi, Makinohara-Shi JP
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20150280332 | GROUNDING TERMINAL - A grounding terminal includes a first grounding terminal including a first bolt insertion portion and a third bolt insertion portion, and a second grounding terminal including a second bolt insertion portion and a fourth bolt insertion portion. In a state that the first grounding terminal and the second grounding terminal are stacked on to each other, the first grounding terminal and the second grounding terminal are fastened and fixed to a fixation target by first and second bolts at first and second fastening portions. In the second fastening portion, the third bolt insertion portion and the fourth bolt insertion portion are stacked on to each other. The third bolt insertion portion has an elliptic shape or an oval shape. The fourth bolt insertion portion is opened and formed to be larger than the third bolt insertion portion. | 10-01-2015 |
20150311623 | TERMINAL CONNECTING STRUCTURE AND TERMINAL CONNECTING METHOD - A terminal connecting structure includes: an electric wire in which a conductor is covered by an insulative covering; a conductor connecting terminal to which a conductor exposed portion in which the covering of an end portion of the electric wire is removed and the conductor is exposed is electrically connected; a water sealant for molding the conductor connecting terminal; and a fixing terminal which includes a terminal fixing portion that is to be fixed and electrically connected to a mount part, and which is electrically connected to a part of the conductor connecting terminal in a state where the water sealant is removed from the part of the conductor connecting terminal. | 10-29-2015 |
20160079684 | Connection Structure for Terminal Metal Fittings - There are provided a first ground terminal metal fitting to which a plurality of first ground electric wires are connected; and a second ground terminal metal fitting to which a plurality of second ground electric wires are connected. One of the first ground terminal metal fitting and the second ground terminal metal fitting is connected and fixed to a mating terminal connection portion or a ground portion exclusively in accordance with the number of the first electric wires and the number of the second electric wires, or the first ground terminal metal fitting and the second ground terminal metal fitting are combined with each other and then connected and fixed to the mating terminal connection portion or the ground portion. | 03-17-2016 |
Yukinari Naganishi, Kosai-Shi JP
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20120205507 | ATTACHMENT STRUCTURE - An attachment structure | 08-16-2012 |
20140325837 | METHOD OF MANUFACTURING GROUND CONNECTION STRUCTURE - A ground connection structure is a structure for collectively connecting, to a body of a vehicle, a plurality of grounding wires which are connected to respective electrical components installed in the vehicle. The ground connection structure includes: a connection box to which the plurality of grounding wires are connected; a grounding terminal part connected to the vehicle in an electrically conducting state; and an electrically conducting connection part having one end connected to the connection box and the other end connected to the grounding terminal part, the electrically conducting connection part connecting the connection box and the grounding terminal part in an electrically conducting manner. The electrically conducting connection part is made of a low-inductance material having low inductance. | 11-06-2014 |
20140327303 | GROUND CONNECTION STRUCTURE - A ground connection structure is a structure for collectively connecting, to a body of a vehicle, a plurality of grounding wires which are connected to respective electrical components installed in the vehicle. The ground connection structure includes: a connection box to which the plurality of grounding wires are connected; a grounding terminal part connected to the vehicle in an electrically conducting state; and an electrically conducting connection part having one end connected to the connection box and the other end connected to the grounding terminal part, the electrically conducting connection part connecting the connection box and the grounding terminal part in an electrically conducting manner. The electrically conducting connection part is made of a low-inductance material having low inductance. | 11-06-2014 |
Yukinari Nishikawa, Hamamatsu-Shi JP
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20100080475 | Lossless compression-encoding device and decoding device for image data - In a lossless compression-encoding device, a calculation part calculates differences between different types of pixel data representing the first, second and third color components of an image, and outputs the calculated differences as a plurality of types of difference data. A lossless compression-encoding part performs lossless compression-encoding on each of color component data which include the different types of the pixel data representing the first to third color components and the plurality of the types of the difference data, and outputs a plurality of types of compressed data which correspond to the respective types of the color component data. A comparison and selection part compares amounts of data of the plurality of the types of the compressed data obtained from the lossless compression-encoding, and selects a combination of three types of compressed data corresponding to three types of color component data capable of synthesizing the respective pixel data representing the first, second and third color components such that a total amount of data of the selected combination is smaller than a total amount of data of other combinations of the compressed data. | 04-01-2010 |
20100080480 | Lossless compression-encoding device - In a lossless compression-encoding device, a differential coding part calculates a prediction value of data to be compressed, and calculates a prediction error that is a difference between the prediction value and an actual value of the data to be compressed. A prediction error conversion part performs reversal of a sign bit of the prediction error output by the differential coding part in case that the reversal of the sign bit of the prediction error decreases an absolute value of the prediction error. A variable-length coding part performs variable-length coding on the prediction error that has been processed by the prediction error conversion part to generate a variable-length code representing the prediction error, and outputs the variable-length code as compressed data in such a manner that a code length of the compressed data decreases as the absolute value of the prediction error decreases. | 04-01-2010 |
20110002553 | COMPRESSIVE CODING DEVICE AND DECODING DEVICE - A compressive coding device is constituted of a coordinates conversion process converting original pixel data of the RGB presentation into pixel data of the YCbCr presentation, an irreversible conversion process, and a reversible compressive coding process. In the irreversible conversion process, the components Cb and Cr of pixel data are thinned out by way of a reduction process and subsequently interpolated based on the component Y of pixel data by way of an expansion process, while some bits of pixel data are reduced by way of a quantization process. The reversible compressive coding process performs a predictive coding process and a variable-length coding process on each pixel data selected in a raster-scanning sequence, thus producing compressive coded data. This makes it possible to decode both reversible compressive coded data and irreversible compressive coded data in units of lines. | 01-06-2011 |
20140063035 | Image Display Apparatus and Method for Displaying Image on Display Device - An image display apparatus is coupled to a nonvolatile memory section, and includes an image processing part configured to display an image on a display device, an initial setting circuit, and a control register configured to control respective parts in the image display apparatus. At power-on or start-up of the image display apparatus, the initial setting circuit reads initialization data from the nonvolatile memory section and sets communication mode for communicating with the nonvolatile memory section to the control register. The communication mode is specified by the initialization data. After the initial setting circuit sets the communication mode to the control register, the image processing part reads image data from the nonvolatile memory section by using the communication mode set in the control register and displays an initial image relating to the image data on the display device. | 03-06-2014 |
Yukinari Nozawa, Moka-Shi JP
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20160054151 | ENCODER SCALE AND METHOD OF MANUFACTURING THE SAME - An encoder scale for an electromagnetic induction linear encoder includes a substrate, an electroconductive layer exhibiting electroconductivity and provided to one surface of the substrate, and an electric conductor provided on the electroconductive layer. The electroconductive layer is wider than the electric conductor in a plan view of the substrate and is grounded. The electroconductive layer is formed on the entire one surface of the substrate except a guide surface, and glass is exposed on the guide surface. | 02-25-2016 |
Yukinari Shibata, Sapporo-Shi JP
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20100073032 | VOLTAGE COMPARATOR AND ELECTRONIC DEVICE - A differential amplifier circuit, a differentiation circuit and an output amplifier circuit are provided. The differential amplifier circuit differentially amplifies differentially inputted signals and provides an output. The differentiation circuit differentiates the output of the differential amplifier circuit, and adds the differentiated output to a bias voltage of a constant current transistor of the output amplifier circuit. A voltage comparator capable of higher speed operation without increasing its current consumption is provided. | 03-25-2010 |
Yukinari Shibata, Suwa-Shi JP
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20150276499 | CIRCUIT DEVICE, TEMPERATURE DETECTION DEVICE, ELECTRONIC DEVICE, AND TEMPERATURE DETECTION METHOD - A circuit device including: a detection circuit ( | 10-01-2015 |
Yukinari Tanabe, Okazaki-Shi JP
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20130069662 | SECONDARY BATTERY, INSPECTION APPARATUS AND INSPECTION METHOD FOR SECONDARY BATTERY, AND BATTERY INSPECTION SYSTEM - A plurality of detection units are connected respectively in parallel with a plurality of battery cells connected in series. The detection units each include an inductor and a zener diode connected in series. A battery checker includes a plurality of detection inductors and a single voltmeter that form a closed circuit. A plurality of detection inductors are arranged so that they are magnetically coupled respectively with the inductors of the plurality of detection units. Each zener diode is connected with the polarity to be reverse biased by the output voltage of the battery cell. Respective breakdown voltages of the zener diodes are set higher than the output voltage of each battery cell in normal use and different in a stepwise manner from each other. | 03-21-2013 |
Yukinari Tanabe, Miyoshi-Shi JP
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20120068532 | POWER SUPPLY APPARATUS AND VEHICLE - A relay that is electrically connected/disconnected to/from a battery in parallel with a smoothing capacitor on an inverter side with respect to a system main relay is provided. Thus, when the system is turned off, the battery and electrode buses are electrically disconnected from each other by the system main relay, and the positive electrode bus is thereby connected to the negative electrode bus by the relay. As a result, electric power accumulated in the smoothing capacitor is more reliably and more swiftly discharged. | 03-22-2012 |
Yukinari Tanabe, Nagoya-Shi JP
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20140111122 | ELECTRICAL STORAGE SYSTEM, AND CONTROL METHOD FOR ELECTRICAL STORAGE SYSTEM - A first electrical storage stack is connected in series with a second electrical storage stack. A current interrupter is configured to interrupt a current path by being removed from the current path. First and second detection line are respectively connected to first and second terminals of the first electrical storage stack. The second electrical storage stack is connected to the second terminal of the first electrical storage stack via the current interrupter. A third detection line is connected to a portion of the current path, located on the second electrical storage stack side of the current interrupter. A controller is configured to control charging and discharging operations of each of the first and second electrical storage stacks on the basis of the voltage of the first electrical storage stack, the voltage being detected via the first detection line and the third detection line. | 04-24-2014 |
20150229143 | ELECTRICAL STORAGE SYSTEM - An electrical storage system includes a relay switching between an on state where an electrical storage device ( | 08-13-2015 |
20150229154 | ELECTRICAL STORAGE SYSTEM - An electrical storage system includes: an electrical storage device ( | 08-13-2015 |
20150255979 | ELECTRICAL STORAGE SYSTEM - An electrical storage system includes an electrical storage device ( | 09-10-2015 |
Yukinari Tanabe, Nagoya-Shi, Aichi-Ken JP
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20150357856 | ELECTRICITY STORAGE SYSTEM - [Problem] To provide a configuration for cutting off energization of an electricity storage block without interposing a controller. | 12-10-2015 |
Yukinari Yamashita, Tokyo JP
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20160059273 | METHOD AND SYSTEM FOR CLEANING COPPER-EXPOSED SUBSTRATE - The water outlet of a subsystem that includes an ultraviolet oxidation device and the water inlet of each substrate treatment device are connected to each other via a main pipe. A hydrogen peroxide removal device is installed between the ultraviolet oxidation device of the subsystem and a non-regenerative ion-exchange device. In addition, a carbon dioxide supply device is installed at the middle of a pipe that branches from the water outlet of the subsystem to reach the substrate treatment device. According to an aspect, the hydrogen peroxide removal device is filled with a platinum-group metal catalyst. Thus, ultrapure water passed through the ultraviolet oxidation device is used as a base to produce carbonated water in which the concentration of hydrogen peroxide dissolved therein is limited to 2 μg/L or less and to which carbon dioxide is added to adjust resistivity to be within the range of 0.03 to 5.0 MΩ·cm. | 03-03-2016 |