Masanori Ando
Masanori Ando, Ishikawa-Ken JP
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20100066967 | LIQUID CRYSTAL DISPLAY DEVICE - A liquid crystal display device includes a liquid crystal display panel having an active area in which pixels are arranged in a matrix including first and second signal lines and connecting lines. The second signal lines and connecting lines extend in a column direction in the active area. The first signal lines extend in a row direction so as to cross the second signal lines and the connecting lines. The first signal lines are connected to the connecting lines through contact portions provided at the cross area where the first signal lines cross with the connecting lines interposing an insulating layer. The second signal lines and the connecting lines are pulled out from the active area to a signal supply source provided at outside of the active area without detouring in a peripheral region of the display panel. | 03-18-2010 |
20130271716 | LIQUID CRYSTAL DISPLAY DEVICE AND METHOD OF MANUFACTURING THE SAME - In one embodiment, an array substrate includes a first array area and a second array area adjoining the first array area. The first array area includes a first electric power supply line arranged along a periphery of the first array area. The second array area includes a pixel electrode, a second electric power supply line arranged along a periphery of the second array area, and an electric power supply pad electrically connected with the second electric power supply line. The electric power supply pad is arranged facing the first electric power supply line so as to sandwich a boundary between the first array area and the second array area. Corner potions of the electric power supply pad facing the first electric power supply line are formed in an arc shape. | 10-17-2013 |
Masanori Ando, Iida-Shi JP
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20100052428 | MULTI-CELL BATTERY SYSTEM, AND MANAGEMENT NUMBER NUMBERING METHOD - A multi-cell battery system includes a plurality of modules connected in series, each of the modules comprising a battery cell and a slave for monitoring a state of the battery cell, and a master for monitoring the state of the battery cell by communicating with the slave of each of the plurality of modules. The master transmits, in order, to the plurality of modules a series of numbers to be numbered on each module as a numbering signal. Each of the plurality of modules numbers the series of numbers in the series-connected order by receiving the numbering signal from the master and executing numbering based on number information contained in the numbering signal when receiving a numbering reception request signal for executing the numbering, and transmitting the numbering reception request signal to a module of a next stage in the series when the numbering is completed. | 03-04-2010 |
Masanori Ando, Ikeda-Shi JP
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20090315446 | WATER-DISPERSIBLE NANOPARTICLES HAVING HIGH LUMINOUS EFFICIENCY AND METHOD OF PRODUCING THE SAME - The present invention provides nanoparticles having a core/shell structure consisting of a core comprising a Group III element and a Group V element at a molar ratio of the Group III element to the Group V element in the range of 1.25 to 3.0, and a shell comprising a Group II element and a Group VI element and having a thickness of 0.2 nm to 4 nm, the nanoparticles having a photoluminescence efficiency of 10% or more and a diameter of 2.5 to 10 nm; a method of producing the water-dispersible nanoparticles comprising bringing a dispersion of III-V semiconductor nanoparticles in an organic solvent into contact with an aqueous solution of a Group II element-containing compound and a Group VI element-containing compound to thereby transfer the III-V semiconductor nanoparticles of the organic solvent dispersion to the aqueous solution, and then irradiating the aqueous solution with light; and a method of producing a glass matrix having the nanoparticles dispersed therein. | 12-24-2009 |
20120301971 | FLUORESCENT PARTICLE, WITH SEMICONDUCTOR NANOPARTICLES DISPERSED THEREIN, FABRICATED BY THE SOL-GEL PROCESS - An object of the present invention is to prepare a fine particle with high durability and high brightness, in which semiconductor nanoparticles are assembled. The present invention provides fluorescent fine particles comprising Cd- and Se-containing semiconductor nanoparticles dispersed in silicon-containing fine particles, wherein the average particle size of the silicon-containing fine particles is 20 to 100 nm, and the number of semiconductor nanoparticles dispersed in the silicon-containing fine particles is 10 or more. | 11-29-2012 |
Masanori Ando, Minamisaitama-Gun JP
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20130338367 | PYRAZOLE DERIVATIVES AND PESTICIDES - Novel pesticide, especially insecticides or miticides are provided. | 12-19-2013 |
Masanori Ando, Nishio-Shi JP
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20150053529 | FLEXIBLE MANUFACTURING SYSTEM - A flexible manufacturing system that makes it possible to give a higher priority to machining of a workpiece that is a super-urgent item is provided. When a pallet to which a workpiece, which is a super-urgent item, is attached is loaded on a loading station, a second controller gives a command to a conveyor to convey a pallet to which a workpiece, which is a normal item, is attached and which is located at a standby position of a pallet changer to a pallet storage room. Then, the second controller controls the conveyor to convey the pallet to which the workpiece, which is the super-urgent item, is attached and which is loaded on the loading station to the standby position. | 02-26-2015 |
Masanori Ando, Tokyo JP
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20150162357 | DISPLAY DEVICE - According to one embodiment, a display device includes a first light shielding layer, a second light shielding layer, a first semiconductor layer, a second semiconductor layer, a gate line, a first source line, a second source line, a switching element, and a pixel electrode, wherein an area in which the first light shielding layer and the pixel electrode are opposed to each other and an area in which the second light shielding layer and the pixel electrode are opposed to each other are equal in size. | 06-11-2015 |
Masanori Ando, Aichi JP
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20150280593 | POWER SUPPLY DEVICE - A power supply device includes: a power factor correction circuit which includes a capacitor and which corrects a power factor of power; a DC-DC converter which includes a switching element and which steps up or down an output voltage of the power factor correction circuit; a control unit; and a voltage detection unit which detects a voltage of an input side of the power factor correction circuit. The control unit controls the switching element such that an output voltage of the DC-DC converter is gradually reduced when stopping an operation of the DC-DC converter in a normal state in which the voltage detection unit does not detect a voltage lower than a predetermined value. When the voltage detection unit detects a voltage lower than the predetermined value, the control unit immediately turns off the switching element to stop the operation of the DC-DC converter. | 10-01-2015 |