Akira Mori
Akira Mori, Okayama JP
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20110104006 | Method for Sterilizing Powder or Grain and Sterilizing Apparatus Employing the Same - [Problem to be solved] To provide a method for sterilizing powder or grain by which the heating time is a minimum required time to reduce thermal degradation of the quality of the powder or grain while securing sufficient sterilization effect, and a sterilizing apparatus employing the method. | 05-05-2011 |
Akira Mori, Nagaokakyo-Shi JP
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20110056293 | EXTERNAL-FORCE DETECTING APPARATUS AND METHOD OF DETECTING LINE BREAK - An external-force detecting apparatus includes at least one drive line connecting the corresponding drive electrodes to a driving unit and at least one monitor line connecting the corresponding monitor electrodes to the driving unit. The driving unit outputs a drive signal to the at least one of the drive electrodes through the at least one of the drive lines to drive an oscillator and performs automatic gain control to the level of the drive signal based on the oscillation state of the oscillator acquired from the at least one of the monitor electrodes through the at least one of the monitor lines. The external-force detecting apparatus further includes a switching circuit arranged to switch between connection and disconnection of an electric path between the oscillator and the driving unit via at least one of the drive lines or the multiple monitor lines | 03-10-2011 |
20120291550 | OSCILLATION TYPE INERTIA FORCE SENSOR - An oscillation type inertia force sensor includes an oscillator, an oscillation circuit unit, and a detection circuit unit. The oscillation circuit unit functions as a self oscillation circuit of a closed loop with the oscillator as a resonant element, and includes an AGC circuit. The AGC circuit includes a VGA circuit, a comparison circuit comparing a predetermined reference voltage with a voltage of the monitor signal to output a control signal based on the compared result, and a pulse width modulation circuit modulating the control signal to a pulse width modulation signal. Based on the pulse width modulation signal, the driving signal is modulated with the output of the VGA circuit switched between an ON state and OFF state to control the degree of the amplification factor of the VGA circuit. | 11-22-2012 |
20130192366 | OSCILLATION TYPE INERTIA FORCE SENSOR - An inertia force sensor that shortens a time from power activation until inertia force can be detected includes an oscillator, an oscillation circuit unit, and a detection circuit unit. The oscillation circuit unit functions as a closed loop self oscillation circuit with the oscillator as a resonant element, and includes a CV conversion circuit converting a monitor signal based on electrostatic capacitance according to an oscillating state of oscillator into a monitor signal based on a voltage corresponding to an amount in change of the electrostatic capacitance, and an automatic gain control circuit controlling gain based on the monitor signal converted at the CV conversion circuit to generate a driving signal, and supplying the driving signal to the oscillator. The CV conversion circuit includes an amplifier that amplifies a monitor signal with an amplification factor for a predetermined period after power activation. | 08-01-2013 |
Akira Mori, Nagano JP
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20100060994 | LENS DRIVE DEVICE - A lens drive device may include a fixed body, a movable body having a lens, a magnetic drive mechanism for magnetically driving the movable body in a lens optical axis direction, and a spring member which connects the movable body with the fixed body. The fixed body may include a base disposed on an imaging element side, a shield member which is formed in a cover shape and which is provided with a side plate part whose imaging element side end part is abutted with an object side face of the base, and a ground terminal which is a different member from the shield member and connected with the shield member. An imaging element side face of the ground terminal is supported by a ground terminal support part formed on the object side face of the base and a gap space is formed between the object side face of the ground terminal and an end part of the side plate part of the shield member. | 03-11-2010 |
20100061712 | LENS DRIVE DEVICE - A lens drive device may include a thrust direction stopper mechanism which includes a thrust movement preventing abutting part of the movable body and a thrust movement preventing abutted part of the fixed body for restricting a moving range toward an object side of the movable body, and a radial direction stopper mechanism which includes a radial movement preventing abutting part of the movable body and a radial movement preventing abutted part of the fixed body for restricting a moving range in a radial direction of the movable body. The moving range in the radial direction under an inclined posture of the movable body with respect to an optic axis is restricted over all directions by the radial direction stopper mechanism and the thrust direction stopper mechanism. | 03-11-2010 |
20110235198 | LENS DRIVE DEVICE - A lens drive device may include a support body, a movable body which holds a lens, a magnetic drive mechanism which drives the movable body, a spring member provided with an arm part whose both ends are connected with the movable body and the support body. Only one piece of the spring member may be disposed between an end part on one side in a lens optical axis direction of the movable body and the support body. A displacement prevention mechanism may be structured at an end part on the other side in the lens optical axis direction of the movable body. The displacement prevention mechanism may include a protruded part and a recessed part. | 09-29-2011 |
20120134034 | OPTICAL DEVICE AND MANUFACTURING METHOD THEREFOR - An optical device may include a movable body holding a lens, a fixed body movably holding the movable body, a drive magnet and a drive coil for relatively moving the movable body with respect to the fixed body, and a metal member fixed to the drive magnet. The drive magnet is fixed to one of the movable body and the fixed body and the drive coil is fixed to the other of the movable body and the fixed body. A nickel plating layer containing at least nickel is formed on a surface of the drive magnet and a surface of the metal member, and the drive magnet and the metal member are joined to each other by a joining layer which is made of tin-based metal containing at least tin and is disposed between the drive magnet and the metal member. | 05-31-2012 |
Akira Mori, Chiba JP
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20100063217 | FLAME-RETARDANT ADHESIVE RESIN COMPOSITION AND ADHESIVE FILM USING THE SAME - Disclosed is a halogen- and phosphorus-free flame-retardant adhesive resin composition which can be used in heat contact bonding of adherends at or below 250° C. and is excellent in heat resistance, solder heat resistance after moisture absorption, and processability. Also disclosed is an adhesive film produced from said composition. The flame-retardant adhesive resin composition comprises 65-98% by weight of a silicone unit-containing polyimide resin and 2-35% by weight of an epoxy resin having an acenaphthylene-substituted naphthalene skeleton. The adhesive film produced from the flame-retardant adhesive resin composition is suitable as an adhesive for a laminate for a multiplayer printed circuit board substrate, an adhesive for a hybrid circuit board substrate, and an adhesive for a coverlay film. | 03-11-2010 |
Akira Mori, Owariasahi JP
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20090166150 | METHOD AND APPARATUS FOR DISCRIMINATING DOCUMENTS - In a discrimination apparatus of the invention, a banknote or another paper as an object of discrimination is irradiated with ultraviolet radiation from an array of multiple ultraviolet-emitting LEDs. The ultraviolet radiation passes through a visible radiation block filter and is focused onto a preset site of the banknote by a lens. Multiple photodiodes are used to measure the transmitted light of ultraviolet radiation and the fluorescence, which is excited by the ultraviolet radiation from the banknote. The discrimination apparatus of the invention discriminates counterfeit banknotes from genuine banknotes, based on the observed pattern of the transmitted light over a preset range of the banknote. The technique of the invention desirably enhances the accuracy of discrimination in the discrimination apparatus that discriminates counterfeit banknotes from genuine banknotes. | 07-02-2009 |
Akira Mori, Osaka JP
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20120021195 | OPTICAL MEMBER AND PROCESS FOR PRODUCING SAME - An optical member produced from a ceramic in which transparency in each wavelength region can be selectively improved, and a process for producing the optical member. The optical member is obtained by bringing a treatment gas comprising a fluorine atom into contact with an optical material comprising a specific ceramic under conditions according to the specific ceramic to thereby from a fluorinated film capable of improving the transmittance of light having wavelengths in a specific region, on at least some of the surface of the optical material. | 01-26-2012 |
20120184398 | IMAGE-CAPTURING APPARATUS FOR PUTTING PRACTICE AND TRAINING PUTTER HAVING IMAGE-CAPTURING APPARATUS - An image-capturing apparatus for putting practice which is mounted on a putter provided with a head including a face for putting, a shaft, and a grip includes: an image-capturing unit provided with a camera for imaging a hole; a computation unit configured to specify a face perpendicular line which is a vertical line drawn from the center of the face, and calculate a relative relation between the hole and the face perpendicular line based on a hole image captured by the camera; a display unit configured to display the relative relation calculated by the computation unit; and a mounting unit configured to mount at least the image-capturing unit on the shaft or the grip. | 07-19-2012 |
Akira Mori, Hyogo JP
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20120098418 | ORGANIC ELECTROLUMINESCENT ELEMENT AND METHOD FOR MANUFACTURING SAME - Disclosed is an organic electroluminescent element including: a substrate; and a positive electrode, an organic light-emitting layer, and a laminated negative electrode of two or more layers including a lower negative electrode and an upper negative electrode having different specific resistances from each other, the positive electrode, organic light-emitting layer, and laminated negative electrode sequentially provided on the substrate from the substrate side, and in the organic electroluminescent element, the lower negative electrode and the upper negative electrode include any one of ITO, IZO, GZO, and AZO as the main constituent, and the lower negative electrode is provided closer to the organic light-emitting layer than the upper negative electrode, and the lower negative electrode has a specific resistance higher than the specific resistance of the upper negative electrode adjacent to the lower negative electrode. | 04-26-2012 |
Akira Mori, Nagakute JP
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20130119654 | PAPER SHEETS IDENTIFICATION APPARATUS - A paper sheets identification apparatus to identify the monetary kinds of paper sheets and to determine whether or not they are genuine provides for a simplified and general purpose detection to be performed irrespectively of the difference in the portions of each of such sheets in which their optical characteristics are arranged. The paper sheets identification apparatus includes a light emitting element; a light receiving element disposed opposite to the light emitting element with the transport path of such sheets interposed therebetween; a plurality of reflective mirrors to conduct light emitted from the light emitting element to the light receiving element; and a guide to move at least one of the reflective mirrors to the direction crosswise to the transport direction of such sheets within a surface in parallel with the carriage surface. | 05-16-2013 |
Akira Mori, Anjo-Shi JP
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20150270717 | POWER RECEIVING DEVICE, VEHICLE, AND POWER TRANSMISSION DEVICE - This power receiving device includes a magnetic shield, and the magnetic shield includes: a first magnetic sheet located beside the power receiving unit; a conductive sheet located opposite to the power receiving unit with the first magnetic sheet interposed therebetween; and a second magnetic sheet located opposite to the first magnetic sheet with the conductive sheet interposed therebetween. | 09-24-2015 |