Satoshi Ishikawa
Satoshi Ishikawa, Kodaira-Shi JP
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20110077343 | RUBBER COMPOSITION FOR TIRE BASE RUBBER COMPOSITION, AND PNEUMATIC TIRE MADE USING SAID RUBBER COMPOSITION - Provided are: a rubber composition for a tire base rubber, including: (A) a rubber component including an amine-based functional group modified polybutadiene rubber; and (B) silica having a cetyltrimethylammonium bromide (CTAB) adsorption specific surface area of 50 to 120 (m | 03-31-2011 |
20110112212 | TIRE - Provided is a tire using a rubber composition, in which: the rubber composition contains a rubber component and a filler; the rubber component contains (A) a modified conjugated diene polymer and (B) a modified conjugated diene-aromatic vinyl copolymer; a modifying agent used for each of the component (A) and the component (B) includes (C) a hydrocarbyloxysilane compound containing a nitrogen atom and a silicon atom or (D) a hydrocarbyloxysilane compound containing a silicon atom; a combination of an unmodified conjugated diene polymer and the modifying agent, and a combination of an unmodified conjugated diene-aromatic vinyl copolymer and the modifying agent include any one of the following items 1 to 3: 1: the conjugated diene polymer and the component (C), and the conjugated diene-aromatic vinyl copolymer and the component (D); 2: the conjugated diene polymer and the component (D), and the conjugated diene-aromatic vinyl copolymer and the component (C); and 3: the conjugated diene polymer and the component (C), and the conjugated diene-aromatic vinyl copolymer and the component (C); and the filler contains silica and carbon black at a mass ratio of 10:90 to 80:20, the tire having good low fuel consumption, good on-ice performance, good wet performance, and good dry performance. | 05-12-2011 |
Satoshi Ishikawa, Tokyo JP
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20110053799 | METHOD OF PRODUCING MICROARRAY SUBSTRATE, RADIATION-SENSITIVE COMPOSITION, PARTITION OF MICROARRAY SUBSTRATE, METHOD OF PRODUCING BIOCHIP, AND BIOCHIP - A method is of producing a microarray substrate that includes a substrate, a partition that is formed on a surface of the substrate, and an area that is positioned over the substrate and defined by the partition. The method includes forming a first film on the substrate using a radiation-sensitive composition. The radiation-sensitive composition includes a coloring agent (A) including at least one of a violet pigment (a2) and a compound (a1) shown by a formula (1) in which each of R | 03-03-2011 |
20150290978 | PNEUMATIC TIRE - A pneumatic tire, comprising: a tread surface; a plurality of grooves formed in the tread surface, including a plurality of widthwise grooves each extending from a corresponding tread end on the inner side in the tread width direction and a plurality of circumferential grooves each extending in the tread circumferential direction to intersect the widthwise grooves; blocks demarcated by the plurality of grooves; and a chamfered portion formed at a corner, on the trailing edge side and on the outer side in the tread width direction, of each block. | 10-15-2015 |
Satoshi Ishikawa, Gunma-Ken JP
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20110028010 | POWER CONNECTION APPARATUS - There is disclosed a power connection apparatus which can secure connection between a power socket and a power plug and which can simplify the connecting operation properties thereof. A handle rotatably attached to the power plug having terminals includes engaging claw disengageably engaged with engagement portion of the power socket having an electrode portion, an abutment portion which abuts on the power socket, and a grip portion. The rotation of the grip portion in such a direction as to come away from the power socket is limited by the angle of the rotation of the handle in a direction in which the grip portion comes close to the power socket. | 02-03-2011 |
20110028014 | POWER CONNECTION APPARATUS - There is disclosed a power connection apparatus which can secure connection between a power socket and a power plug with a simple constitution and which can simplify the connecting operation properties thereof. A handle rotatably attached to the power plug having terminals includes engaging claw disengageably engaged with engagement portion of the power socket having an electrode portion, an abutment portion which abuts on the power socket, and a grip portion. In a state where the handle is rotated to such an angle that the handle is at substantially right angles to the power socket, the abutment portion abuts on the power socket, thereby releasing connection between the electrode portion and the terminals or the like. | 02-03-2011 |
Satoshi Ishikawa, Saitama JP
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20100320858 | AXIAL GAP TYPE MOTOR AND METHOD OF MANUFACTURING ROTOR OF MOTOR | 12-23-2010 |
Satoshi Ishikawa, Fukuoka JP
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20100166577 | HERMETIC COMPRESSOR - A hermetic compressor is disposed with an annular motor stator, a motor rotor, a casing and plural spot joining portions. The motor rotor is disposed such that it may freely rotate in a space inside the motor stator. The casing includes a cylindrical portion. The cylindrical portion houses the motor stator and the motor rotor. The plural spot joining portions fix the motor stator to the cylindrical portion by spot joining in a state where a clearance is secured between the motor stator and the cylindrical portion. | 07-01-2010 |
20100175409 | AIR CONDITIONING APPARATUS - An air conditioning apparatus is provided whereby the pressure pulsation generated by a compressor can be entirely reduced both during cooling and during heating, and a muffler can be shared. The air conditioning apparatus has a refrigerant circuit. The refrigerant circuit is configured so that a compressor for compressing a refrigerant, an indoor heat exchanger, an outdoor heat exchanger, and a four-way switch valve are connected via a refrigerant pipe. The four-way switch valve switches the flow of refrigerant compressed by the compressor to either the indoor heat exchanger or the outdoor heat exchanger. The air conditioning apparatus further includes a pressure pulsation reducing component. The pressure pulsation reducing component is provided between the four-way switch valve and the indoor heat exchanger. The pressure pulsation reducing component reduces pressure pulsation inside the refrigerant circuit. The pressure pulsation is generated by the compressor. | 07-15-2010 |
20100242522 | REFRIGERATION SYSTEM - A refrigeration system includes a first refrigerant passage, a π-type silencer, and a second refrigerant passage. The π-type silencer has a first silencing space, a second silencing space, and a communication path. The first silencing space communicates with the first refrigerant passage. The second silencing space is disposed below the first silencing space. The communication path extends from the lower end of the first silencing space to the outside of the first silencing space and communicates with the second silencing space. The second refrigerant passage extends from the lower end of the second silencing space. | 09-30-2010 |
20100275632 | REFRIGERATION SYSTEM - A refrigeration system includes a compression mechanism, a radiator, an expansion mechanism, an evaporator and a π-type silencer | 11-04-2010 |
Satoshi Ishikawa, Gifu JP
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20090126456 | SENSOR AND METHOD OF PRODUCING SENSOR - The present invention provides a sensor capable of maintaining an electrical connection between the lead frame and an electrode terminal section of the detection element even when an inadequate external force is applied to a lead frame and a sensor production method capable of preventing the lead frame from buckling and being deformed into an inadequate shape. The lead frame (second lead frame) can inhibit movement of a second frame main body section axially toward a rear end side through engagement of a third locking surface of a second locking section with a second locking groove and can inhibit the second frame main body section from going apart from an inner surface of an insertion hole through engagement of a fourth locking surface of the second frame locking section, which faces an element engagement section side. Namely, even when an external force is applied to the lead frame, movement of the lead frame main body section (second lead frame main body section) can be inhibited and a variation in the relative positions of the lead frame and the detection element can be prevented. | 05-21-2009 |
Satoshi Ishikawa, Osaka JP
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20090013714 | Refrigeration System - A compressor ( | 01-15-2009 |
Satoshi Ishikawa, Kani-Shi JP
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20120020385 | TEMPERATURE SENSOR | 01-26-2012 |
20120044972 | TEMPERATURE SENSOR - A temperature sensor ( | 02-23-2012 |
20120239271 | SENSOR CONTROL APPARATUS AND SENSOR CONTROL METHOD - A sensor control apparatus including a gas sensor having a sensor element, a housing and a base part formed of a resin. The apparatus includes a heating part and a control part. When the control part determines that a predetermined automatic stop condition has been satisfied, the control part switches from a control for maintaining the temperature of the sensor element at an activating temperature to a control in a stop state for reducing at least one of voltage and current supplied to the heating part so as to set a temperature of the base part to a value equal to or lower than a shape holding temperature of the resin. Also disclosed is a sensor control method for holding a temperature of a sensor element to an activating temperature. | 09-20-2012 |
20120294331 | SENSOR - A sensor including a tube having a small-diameter portion loosely inserted into a tube insertion hole of an annular mounting fixture and a large-diameter portion having a diameter larger than an inside diameter of the tube insertion hole. A flow path is formed, so that when the large-diameter portion of the tube is locked on the rear end of the tube insertion hole, a rear end of a gap, defined between an inner circumferential surface of the tube insertion hole and an outer circumferential surface of the small-diameter portion of the tube, remains open. Further, the inner circumferential surface of the tube insertion hole and the outer circumferential surface of the small-diameter tubular portion of the tube are brazed together with a brazing filler which flows into the gap. | 11-22-2012 |
Satoshi Ishikawa, Kanagawa-Ken JP
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20120056145 | NONVOLATILE MEMORY DEVICE AND METHOD FOR MANUFACTURING SAME - According to one embodiment, a nonvolatile memory device includes a selection element layer and a nanomaterial aggregate layer. The selection element layer includes silicon. The nanomaterial aggregate layer is stacked on the selection element layer. The nanomaterial aggregate layer includes a plurality of micro conductive bodies and fine particles dispersed in a plurality of gaps between the micro conductive bodies. At least a surface of the fine particle is made of an insulating material other than silicon oxide. | 03-08-2012 |
20120104352 | MEMORY DEVICE AND METHOD FOR MANUFACTURING THE SAME - According to one embodiment, a memory device includes a nanomaterial assembly layer, a first electrode layer and a second electrode layer. The nanomaterial assembly layer is formed of an assembly of a plurality of micro conductors via gaps between the micro conductors. The first electrode layer is provided on the nanomaterial assembly layer. The second electrode layer is provided on the first electrode layer. | 05-03-2012 |
20120205609 | MEMORY DEVICE AND METHOD FOR MANUFACTURING THE SAME - According to one embodiment, a memory device includes a lower electrode layer, a nanomaterial assembly layer, a protective layer and an upper electrode layer. The nanomaterial assembly layer is provided on the lower electrode layer and includes a plurality of fine conductors assembled via a gap. The protective layer is provided on the nanomaterial assembly layer, is conductive, is in contact with the fine conductors, and includes an opening. The upper electrode layer is provided on the protective layer and is in contact with the protective layer. | 08-16-2012 |
20130295743 | NONVOLATILE MEMORY DEVICE AND METHOD FOR MANUFACTURING SAME - According to one embodiment, a nonvolatile memory device includes a selection element layer and a nanomaterial aggregate layer. The selection element layer includes silicon. The nanomaterial aggregate layer is stacked on the selection element layer. The nanomaterial aggregate layer includes a plurality of micro conductive bodies and fine particles dispersed in a plurality of gaps between the micro conductive bodies. At least a surface of the fine particle is made of an insulating material other than silicon oxide. | 11-07-2013 |
20140147942 | MEMORY DEVICE AND METHOD FOR MANUFACTURING THE SAME - According to one embodiment, a memory device includes a nanomaterial assembly layer, a first electrode layer and a second electrode layer. The nanomaterial assembly layer is formed of an assembly of a plurality of micro conductors via gaps between the micro conductors. The first electrode layer is provided on the nanomaterial assembly layer. The second electrode layer is provided on the first electrode layer. | 05-29-2014 |
Satoshi Ishikawa, Yokohama-Shi JP
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20120217464 | NONVOLATILE STORAGE DEVICE - A nonvolatile storage device is formed by laminating a plurality of memory cell arrays, the memory cell array including a plurality of word lines, a plurality of bit lines, and memory cells. The memory cell includes a current rectifying device and a variable resistance device, the variable resistance device includes a lower electrode, an upper electrode, and a resistance change layer including a conductive nano material formed between the lower electrode and the upper electrode, one of the variable resistance devices provided adjacent to each other in the laminating direction has titanium oxide (TiOx) between the resistance change layer and the lower electrode serving as a cathode, the other of the variable resistance devices provided adjacent to each other in the laminating direction has titanium oxide (TiOx) between the resistance change layer and the upper electrode serving as a cathode. | 08-30-2012 |
Satoshi Ishikawa, Kanagawa JP
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20130242325 | COMMUNICATION SYSTEM, METHOD AND STORAGE MEDIUM - A communication system includes an apparatus transmitting management information about management of consumable supplies and a mobile communication device that receives the management information. The communication device includes a detection part configured to detect a position of the communication device; a memory part configured to store a supplier's name of the consumable supplies and a position of the supplier; a setting part configured to set an area specified by a circle with a radius of predetermined length, which is centered on the position of the supplier stored in the memory part, as a control area; a display part; and a display control part configured to allow the display part to display the management information, the name of the supplier, and/or the position of the supplier when the display control part receives the management information from the apparatus and the position detected by the detection part falls within the control area. | 09-19-2013 |
Satoshi Ishikawa, Shizuoka-Ken JP
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20140212157 | IMAGE FORMING APPARATUS - In accordance with one embodiment, an image forming apparatus comprises a first image forming unit, a second image forming unit and a processing unit. The first image forming unit forms an image using an erasable image forming material. The second image forming unit forms an image using an inerasable image forming material. The processing unit forms an image to be printed using an erasable image forming material with the first image forming unit, and forms a specific pattern for duplication prevention using an inerasable image forming material with the second image forming unit. | 07-31-2014 |
Satoshi Ishikawa, Shizuoka JP
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20150090546 | STEERING DAMPER, A SADDLE RIDING TYPE VEHICLE HAVING THE SAME, AND A METHOD OF MANUFACTURING THE SAME - A steering damper is configured to adjust a damping force of a rotor covered by a lower casing and an upper casing by changing the viscosity of a magnetic fluid with an electromagnet. Since a magnetic fluid chamber is provided with a volume compensating unit, even when the volume of the magnetic fluid expands, or air entrainment occurs, air bubbles lighter than the magnetic fluid are collected in the volume compensating unit. Thus, characteristic variations of the steering damper due to volume expansion or air entrainment of the magnetic fluid are prevented. | 04-02-2015 |
Satoshi Ishikawa, Masuda-Shi JP
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20150296667 | METHOD OF MANUFACTURING ELECTRONIC COMPONENT - Component parts are mounted on a top surface of a ceramic substrate having therein a ground line including a ground layer electrically connected to a grounding portion exposed on a bottom surface of the ceramic substrate. Then, the top surface of the ceramic substrate is coated with a mold resin layer. Half-cut is performed on the ceramic substrate from the surface of the mold resin layer to expose a portion of the ground line from a side surface of the ceramic substrate. A conductive shield film is so formed to cover the surface of the mold resin layer and the exposed portion of the ground line by the half-cut. A slit for dividing the ceramic substrate into individual electronic components is formed before the dividing the ceramic substrate. The ceramic substrate is divided into the individual electronic components by the slit. | 10-15-2015 |
Satoshi Ishikawa, Tachikawa-Shi, Tokyo JP
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20150306913 | TIRE - A tire can deliver improved on-ice performance with a reduced rolling resistance. The tire includes a foam rubber layer in a tread that comes into contact with a road surface, wherein a foaming ratio of the foam rubber layer is in a range from 3% to 50%, a rubber composition forming the foam rubber layer includes ethylene-vinylalcohol copolymer fiber coated with a resin having affinity for a rubber component, and the rubber composition forming the foam rubber layer includes 5 to 30 parts by mass at least one type of inorganic compound powder with respect to 100 parts by mass the rubber component, the inorganic compound powder having an average particle diameter greater than or equal to 10 μm and expressed by the following general formula (I). | 10-29-2015 |