Kenta Suzuki
Kenta Suzuki, Fujinomiya-Shi JP
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20120078051 | GUIDE WIRE FOR ENDOSCOPE - A guide wire includes a wire having an elongated body section and a distal portion decreasing in outer diameter from the body section. The guide wire may have a resin coating portion coating the body section and the distal portion and having a smooth outer surface; and a visually discernible mark provided at the resin coating portion. The body section may have a flexible portion which constitutes a part of the body section and lower in flexural rigidity than other portions of the body section different from the part, and the visually discernible mark is provided at a position of the resin coating portion at which the flexible portion is coated with the resin coating portion | 03-29-2012 |
20150094693 | HOUSING TOOL - A housing tool suppresses rotation of a tubular body in a winding direction that holds an elongated medical body in a packaging body, and suppresses deformation of a distal end portion of the elongated medical body. The housing tool includes a tube-shaped holder that is wound in a circular shape for holding a guide wire, a fastening member that fixes adjacent portions of the wound holder, and a mounting member that includes engagement portions and to be engaged with the fastening member, reaches an outer side of a circle of the holder wound in a circular shape, and covers an end portion of the holder from which the guide wire is derived. | 04-02-2015 |
Kenta Suzuki, Zama-Shi JP
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20130075132 | ELECTRICAL COMPONENT - A resistant body | 03-28-2013 |
20150208545 | POWER CONVERSION APPARATUS - To reduce the diameter of a power conversion apparatus. The power conversion apparatus comprises power modules, a shielding plate, and a bus bar electrically connected with the power modules, which are disposed to be layered in this order on one side of a heatsink. The plural power modules are annularly disposed along a surface of the heatsink. Then, the power modules disposed annularly, the shielding plate, and the bus bar are disposed to overlap each other at least partially when viewed in a layering direction. | 07-23-2015 |
Kenta Suzuki, Yokkaichi-City JP
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20140118986 | ONBOARD ELECTRONIC CONTROL UNIT - Some embodiments protect aluminum electrolytic capacitors without increasing the thickness or height dimension of a unit case of an onboard electronic control unit, which is provided with the unit case and a circuit board on which the aluminum electrolytic capacitors are mounted. The circuit board includes a first surface and a second surface, and the unit case houses the circuit board. The unit case includes a first main wall facing the first surface, a second main wall facing the second surface, and perimeter walls. The capacitors are mounted on the second surface so as to extend along a specific periphery of the circuit board and be mutually connected in parallel. The unit case has a height dimension capable of housing the aluminum electrolytic capacitors without the aluminum electrolytic capacitors contacting the inside surface of the second main wall. | 05-01-2014 |
Kenta Suzuki, Hitachinaka-Shi JP
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20130223775 | Journal Bearing Device - In a journal bearing device having an upper bearing liner, a lower bearing liner, an upper base metal and a lower base metal, the lower bearing liner is divided into a sliding portion having a sliding surface and a clearance portion provided with a space between the lower bearing liner and a rotor, and is provided with an oil path formed on a back side of the sliding portion and extending from a border portion between the sliding portion and the clearance portion toward an upstream side in the rotational direction of the rotor, and an oil supply hole extending from an upstream end portion of the oil path to the sliding surface, and the lower base metal has an oil supply path and extending from an outer circumferential side of the lower base metal to the oil path at the border portion. | 08-29-2013 |
Kenta Suzuki, Tokyo JP
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20140169712 | Journal Bearing Device - In a journal-bearing device for bearing a rotary shaft of a rotary machine, including an upper-bearing liner, a lower-bearing liner connected to a lower part of the upper-bearing liner, and an oil removing groove provided in a sliding surface of the lower-bearing liner and extending to both bearing side surfaces from a center portion in a bearing-width direction, the oil removing groove is provided on a downstream side in a rotary shaft-rotation-direction relative to an oil-film-pressure producing portion of the sliding surface of the lower-bearing liner, an end portion of the oil removing groove in the bearing-width direction is arranged on the rotation direction downstream side relative to a center portion of the groove in the bearing-width direction, and the journal-bearing device has a sliding surface on a downstream side of the oil removing groove of the lower-bearing liner in the rotary-shaft rotation direction. | 06-19-2014 |
20150132105 | Tilting-Pad Thrust Bearing and Rotary Machine Having the Same - The invention provides a tilting-pad thrust bearing that requires less oil supply and a rotary machine having the same. A tilting-pad thrust bearing | 05-14-2015 |
20150354628 | Duplex Bearing Device - There are provided a duplex bearing device that can reduce the temperature of lubricating oil supplied from a journal bearing to a thrust bearing and thereby can reduce the total amount of oil supplied, and a rotating machine equipped with this. A duplex bearing device | 12-10-2015 |
Kenta Suzuki, Atsugi-Shi JP
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20150360214 | REACTION CATALYST FOR CROSS-COUPLING AND METHOD FOR MANUFACTURING AROMATIC COMPOUND - The object of the present invention is to provide a new organic phosphorus ligand that can efficiently promote cross-coupling reaction to obtain the target substance at high yield, as well as a method of manufacturing such ligand whose steric characteristics and electronic characteristics can be fine-tuned and which can be used to cause cross-coupling reaction at high yield. As a means for achieving the aforementioned object, a phosphine compound expressed by General Formula (1) below is provided. | 12-17-2015 |
Kenta Suzuki, Ninomiya JP
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20160085557 | PROCESSOR AND PROCESSING METHOD OF VECTOR INSTRUCTION - A processor includes: a plurality of pipelines including a first pipeline and a second pipeline and configured to pipeline-process vector instructions including load instructions with respect to a memory, and when an instruction issuance controller configured to decode a vector instruction read out from an instruction memory and issue instructions to the pipelines issues a first load instruction with respect to a first region of a memory to the first pipeline and a second load instruction with respect to the first region of the memory is being processed in the second pipeline, a processing order in the first load instruction in the first pipeline is changed on the basis of an offset value determined according to a number of cycles that have been processed already in the second load instruction so that an access address of the first load instruction matches an access address of the second load instruction. | 03-24-2016 |
Kenta Suzuki, Atsugi JP
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20160123291 | CONTROL DEVICE FOR COMMON RAIL FUEL INJECTION DEVICE - A common rail fuel injection device includes a first and second flow rate regulating valve for regulating a delivery volume of a pressurized fuel feed pump that feeds pressurized fuel to a common rail, a pressure reducing valve for reducing a common rail pressure, and a control device. The control device for the common rail fuel injection device includes a first drive controlling unit that controls a first electromagnetic driving unit for the second flow rate regulating valve and a second electromagnetic driving unit for the pressure reducing valve, and a second drive controlling unit that controls a third electromagnetic driving unit for the first flow rate regulating valve. The first drive controlling unit prohibits a drive instruction from being sent to the second flow rate regulating valve when the first drive controlling unit sends a drive instruction to the pressure reducing valve. | 05-05-2016 |