Shinya Aoki
Shinya Aoki, Yokkaichi-Shi JP
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20120012807 | SEMICONDUCTOR MEMORY DEVICE - A semiconductor memory device in an embodiment comprises memory cells, each of the memory cells disposed between a first line and a second line and having a variable resistance element and a switching element connected in series. The variable resistance element includes a variable resistance layer configured to change in resistance value thereof between a low-resistance state and a high-resistance state. The variable resistance layer is configured by a transition metal oxide. A ratio of transition metal and oxygen configuring the transition metal oxide varies between 1:1 and 1:2 along a first direction directed from the first line to the second line. | 01-19-2012 |
Shinya Aoki, Ichihara-Shi JP
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20120219544 | ADHESIVE COMPOSITION FOR SOFT TISSUES, ADHESIVE COMPOSITION FOR WOUND DRESSING OR WOUND DRESSING COMPOSITION - The adhesive composition for soft tissues, the adhesive composition for wound dressing or the wound dressing agent composition of the present invention is an adhesive composition for soft tissues, an adhesive composition for wound dressing or a wound dressing agent composition, comprising a monomer (A), a polymer (B) and a polymerization initiator composition (C) containing an organoboron compound, and is characterized by having a viscosity of 0.4 to 75,000 cp within 30 seconds after mixing of the components (A), (B) and (C). The composition of the present invention not only has low toxicity, low harmfulness and high adhesive strength but also is excellent in workability during application and is capable of forming films of excellent properties. | 08-30-2012 |
20120225012 | COMPOSITION FOR HARD TISSUE REPAIR - The composition for hard tissue repair of the present invention is characterized by comprising 5 to 98.95 parts by weight of a monomer (A), 1 to 75 parts by weight of a (meth)acrylate polymer (B) and 0.05 to 20 parts by weight of a polymerization initiator composition (C) containing an organoboron compound (c1), with the proviso that the total amount of the components (A), (B) and (C) is 100 parts by weight. The composition undergoes small-scale heat generation during curing and can ensure a sufficient working time. | 09-06-2012 |
20130336882 | ADHESIVE COMPOSITION FOR SOFT TISSUES, ADHESIVE COMPOSITION FOR WOUND DRESSING OR WOUND DRESSING COMPOSITION - The adhesive composition for soft tissues, the adhesive composition for wound dressing or the wound dressing agent composition of the present invention is an adhesive composition for soft tissues, an adhesive composition for wound dressing or a wound dressing agent composition, comprising a monomer (A), a polymer (B) and a polymerization initiator composition (C) containing an organoboron compound, and is characterized by having a viscosity of 0.4 to 75,000 cp within 30 seconds after mixing of the components (A), (B) and (C). The composition of the present invention not only has low toxicity, low harmfulness and high adhesive strength but also is excellent in workability during application and is capable of forming films of excellent properties. | 12-19-2013 |
Shinya Aoki, Kuki-Shi JP
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20130021723 | DISPLAY STAND - Disclosed herein is a display stand including: a base member having a pair of side surface sections, a front end section, and a back end section; a pair of arm sections; first hinge sections by which respective first end portions of the pair of arm sections are connected respectively to the pair of side surface sections of the base member so that the pair of arm sections can be turned relative to the base member; and second hinge sections by which second end portions of the pair of arm sections are connected to a display so that the display can be turned relative to the pair of arm sections. | 01-24-2013 |
Shinya Aoki, Kobe-Shi JP
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20140118186 | RADAR APPARATUS AND SIGNAL PROCESSING METHOD - There is provided a radar apparatus. An extracting unit extracts a peak signal obtained from a difference frequency between a transmitting signal and a receiving signal during a first period in which the frequency of the transmitting signal ascends and a second period in which the frequency descends. A pairing unit pairs the peak signals of the first and second periods based on a predetermined condition. A deriving unit derives target information including a position of a target based on paired data obtained by pairing the peak signals. The pairing unit selects normal-paired data which is paired in a correct combination, from among the plurality of paired data, based on a plurality of parameter values of the peak signals of the first and second periods which are to be paired, and a discrimination function for discriminating true or false of the pairing. | 05-01-2014 |
Shinya Aoki, Tokyo JP
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20140090025 | INFORMATION PROCESSING DEVICE AND METHOD - Access restriction is performed on access to a page on which information is posted from a terminal of a subject. It is determined whether positions of terminals used by the subject and a manager, who is associated with the subject in advance, accord with each other. A relaxation operation is received from the terminal of the manager, when it is determined that the positions accord with each other. The access restriction by a restriction unit is relaxed, when the relaxation operation is received. A characteristic word of the page accessed by the terminal of the subject for which the access restriction is relaxed is acquired. The acquired characteristic word is transmitted to the terminal of the manager to display the characteristic word. A recovery operation is received from the terminal of the manager. The access restriction performed by the restriction unit is recovered, when the recovery operation is received. | 03-27-2014 |
Shinya Aoki, Mie-Ken JP
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20140027698 | NONVOLATILE MEMORY DEVICE - A nonvolatile memory device includes a first conductive unit, a second conductive unit, and a storage layer. The first conductive unit has a first work function. The second conductive unit has a second work function smaller than the first work function. The storage layer is provided between the first conductive unit and the second conductive unit. The storage layer is made using a source material including an aromatic diamine molecule and an aromatic tetracarboxylic dianhydride molecule. An ionization potential of the aromatic diamine molecule is greater than the first work function. An electron affinity of the aromatic tetracarboxylic dianhydride molecule is less than the second work function. | 01-30-2014 |
20140027699 | NONVOLATILE MEMORY DEVICE - A nonvolatile memory device includes a first conductive unit, a second conductive unit, and a storage layer. The storage layer is provided between the first conductive unit and the second conductive unit. The storage layer includes a polyimide film and a plurality of micro particles dispersed in the polyimide film. The polyimide film includes a first polyimide made using a first source material including at least a first aromatic diamine molecule and a first aromatic tetracarboxylic dianhydride molecule. The micro particles include at least one selected from a metal atom, a metal ion, a second polyimide, a third polyimide, a first organic molecule, a second organic molecule, and an inorganic compound. | 01-30-2014 |
Shinya Aoki, Minowa JP
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20130328444 | ELECTRONIC DEVICE, ELECTRONIC APPARATUS, MOBILE UNIT, AND METHOD OF MANUFACTURING ELECTRONIC DEVICE - A vibrating element as an element on which a base part, a supporting part extending from the base part, and adjustment electrodes as mass adjustment parts are provided and a semiconductor substrate as a circuit element are provided, and the adjustment electrodes are placed in locations not overlapping with the semiconductor substrate in a plan view, the supporting part and the semiconductor substrate are connected, and thereby, the vibrating element is mounted on the semiconductor substrate. | 12-12-2013 |
20140211384 | METHOD OF MANUFACTURING ELECTRONIC DEVICE, ELECTRONIC DEVICE, ELECTRONIC APPARATUS, AND MOVING OBJECT - A method of manufacturing an electronic device in which an inner space for housing a gyro element is formed between a base and a lid and the base and the lid are bonded includes bonding the base and the lid in which a groove is provided on a surface to be bonded with the base so that the inner space communicates with the outside by not bonding the inner surface of the groove to the base and to position the groove around a concave portion provided on a side surface of the base, and closing a communication portion by irradiating a laser beam to the lid in the communication portion. | 07-31-2014 |
20140239422 | ELECTRONIC DEVICE, PACKAGE, ELECTRONIC APPARATUS, AND MOVING OBJECT - A physical quantity sensor includes an IC chip and a package base mounted with the IC chip. The package base includes a first wiring layer provided with bonding pads connected to the IC chip via a bonding wire, a second wiring layer overlapping the first wiring layer in plan view, and an insulating layer provided between the first wiring layer and the second wiring layer. A contour of a wiring pattern provided on the second wiring layer (of the second wiring layer) is arranged in a position not overlapping the bonding pads in plan view. | 08-28-2014 |
Shinya Aoki, Minowa-Machi JP
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20140146451 | METHOD FOR MANUFACTURING ELECTRONIC DEVICE, COVER BODY, ELECTRONIC DEVICE, ELECTRONIC APPARATUS, AND MOVING OBJECT - A method for manufacturing an electronic device is provided, in which a base and a lid as a cover body are bonded together while forming an interior space between the base and the lid. The method includes: a step of preparing the lid including a groove communicating the interior space with the outside, the groove being in a back surface of the lid; a step of accommodating a gyro element as an electronic component in the interior space; a first bonding step of bonding the base and the lid together by seam welding at an area for bonding except for a portion corresponding to the groove; and a second bonding step of bonding the base and the lid by welding using a laser beam at a portion of the area for bonding, the portion including an end of the groove on the outside side, to thereby close the groove. | 05-29-2014 |