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Nosaka, JP
Hideyuki Nosaka, Kanagawa JP
| Patent application number | Description | Published |
|---|---|---|
| 20110150495 | VECTOR SUM PHASE SHIFTER, OPTICAL TRANSCEIVER, AND CONTROL CIRCUIT - A vector sum phase shifter includes a 90° phase shifter ( | 06-23-2011 |
| 20110236027 | VOLTAGE GENERATOR, CONTROL CIRCUIT, VECTOR SUM PHASE SHIFTER, AND OPTICAL TRANSCEIVER - A voltage generator ( | 09-29-2011 |
| 20110273317 | CURRENT-SWITCHING CELL AND DIGITAL-TO-ANALOG CONVERTER - Two D flip-flops (D-FF | 11-10-2011 |
Hideyuki Nosaka, Atsugi-Shi JP
| Patent application number | Description | Published |
|---|---|---|
| 20110129041 | RECEIVER DEVICE, COMMUNICATION SYSTEM AND RECEIVING METHOD - A receiver device receives a signal inputted to one or a plurality of ports as a plurality of received signals, and includes: a phase offset estimating unit that, on the basis of a unique word of each signal block contained in said received signal, estimates the phase offset, and a phase offset compensating unit that, on the basis of a phase offset estimated by said phase offset estimating unit, compensates the phase offset; the receiver device uses a known signal component (unique word) contained in a frequency-domain equalized signal to compensate the phase offset, whereby it compensates complex phase offset fluctuation, and estimates the phase offset of a signal obtained at each port. | 06-02-2011 |
Hiroyuki Nosaka, Hiroshima JP
| Patent application number | Description | Published |
|---|---|---|
| 20090263305 | WET FLUE-GAS DESULFURIZATION APPARATUS AND METHOD OF WET FLUE-GAS DESULFURIZATION - Exhaust (Flue) gas of boiler is introduced through gas inlet part (port) ( | 10-22-2009 |
| 20100071348 | EXHAUST GAS TREATING METHOD AND APPARATUS - After adjusting an exhaust gas temperature at an exit of a heat recovery unit ( | 03-25-2010 |
| 20100074817 | METHOD AND APPARATUS FOR TREATING DISCHARGE GAS - The following devices are successively disposed in the following order from an upstream side to a downstream side in an exhaust gas duct of a combustion apparatus: an air preheater, preheating combustion air for use in an exhaust gas treating apparatus; a heat recovery unit, recovering exhaust gas heat at an exit of the air preheater; a precipitator, collecting soot/dust contained in an exhaust gas at an exit of the heat recovery unit; a wet flue gas desulfurizer, removing sulfur oxides contained in the exhaust gas at the exit of the precipitator; and a reheater, heating the exhaust gas at the exit of the wet flue gas desulfurizer. Each of the heat recovery unit and the reheater has a heat exchanger tube, and a circulation line is disposed to connect the heat exchanger tubes. A sulfur trioxide (SO | 03-25-2010 |
| 20100077925 | WET FLUE-GAS DESULFURIZATION EQUIPMENT - In an absorbing tower including an absorption unit of relatively small diameter capable of absorption and removal by an absorbent slurry for exhaust gas purification and a tank unit of relatively large diameter for temporarily storing the absorbent slurry flowing down from the absorption unit, the tank unit and the absorption unit are joined together by a conical member. By disposing an entrance flue at the conical member, a distance from an upper portion of the conical member to a spray header is shortened, and a height of the absorbing tower can be reduced accordingly. By extending a front end of the entrance flue to the absorption unit into which droplets of the absorbent slurry fall, a high-temperature exhaust gas from a boiler, etc., that has passed through the entrance flue, is made to pass through a circumference of the conical member so that an inexpensive material can be used in the conical member. | 04-01-2010 |
| 20100116126 | EXHAUST GAS PURIFYING METHOD AND APPARATUS - A system is provided that prevents inhibition of adsorption of Hg and other heavy metals by activated carbon or other heavy metal adsorbent due to prior adsorption of sulfur trioxide (SO | 05-13-2010 |
Koji Nosaka, Shiga-Ken JP
| Patent application number | Description | Published |
|---|---|---|
| 20080266020 | Balanced Splitter - A balanced splitter has six ¼ strip lines. The first and third strip lines are electromagnetically coupled to each other to form a coupler. The second and fourth strip lines are electromagnetically coupled to each other to form a coupler. The first and fifth strip lines are electromagnetically coupled to each other to form a coupler. The second and sixth strip lines are electromagnetically coupled to each other to form a coupler. The first and second strip lines are connected in series to form an unbalanced line, the third and fourth strip lines form a first balanced line, and the fifth and sixth strip lines form a second balanced line. First and second resistors are electrically connected between a first balanced terminal and a second balanced terminal, and between another first balanced terminal and another second balanced terminal, respectively. | 10-30-2008 |
Koji Nosaka, Ishikawa-Gun JP
| Patent application number | Description | Published |
|---|---|---|
| 20100259344 | MULTILAYER RESONATOR AND MULTILAYER FILTER - A multilayer filter includes a plurality of mutually coupled resonant circuits provided within a multilayer body. Capacitor internal electrodes, inductor internal electrodes, and inductor via electrodes, ground via electrodes, and input-output via electrodes are arranged within the multilayer body. The ground via electrodes and the input-output via electrodes are provided on a dielectric layer on a mounting surface, or a second dielectric layer on a first dielectric layer provided on the mounting surface. The capacitor internal electrodes arranged towards the side of the mounting surface do not overlap the input-output electrodes when viewed in plan view. With this configuration, degradation in frequency characteristics of a resonant circuit is effectively prevented by controlling one of an inductive component and a capacitive component of the resonant circuit. | 10-14-2010 |
Kouta Nosaka, Tokyo JP
| Patent application number | Description | Published |
|---|---|---|
| 20110256685 | METHOD OF MANUFACTURING SEMICONDUCTOR DEVICE - A film structure including at least one film is formed on a face of a semiconductor substrate and then a first mask with a pattern is formed on the film structure. A second mask is formed so as to cover the first mask over a bevel region. The film structure is etched using the first and second masks and thereafter the remaining first and second masks are removed away. | 10-20-2011 |
Michiyasu Nosaka, Anjyo-City JP
| Patent application number | Description | Published |
|---|---|---|
| 20080312018 | Power transmission and hub used for power transmission - In a power transmission | 12-18-2008 |
Naohisa Nosaka, Kanagawa JP
| Patent application number | Description | Published |
|---|---|---|
| 20110200734 | CONCENTRATED LIQUID DIET - The concentrated liquid diet disclosed is a concentrated liquid diet having a total amount of a medium-chain fatty acid having 8 carbon atoms and a medium-chain fatty acid having 10 carbon atoms included as constitutive fatty acids of a triglyceride being 2.5 to 8.0 g per 100 kcal of the energy of the concentrated liquid diet, the concentrated liquid diet having in the total mass of the medium-chain fatty acid having 8 carbon atoms and the medium-chain fatty acid having 10 carbon atoms the rate of the medium-chain fatty acid having 10 carbon atoms being no less than 60% by mass, and the rate of the medium-chain fatty acid having 8 carbon atoms being no greater than 40% by mass. | 08-18-2011 |
Naoya Nosaka, Tokyo JP
| Patent application number | Description | Published |
|---|---|---|
| 20090030138 | HYDROGENATED DIENE POLYMER COMPOSITION AND MOLDED RUBBER ARTICLE - A hydrogenated diene polymer composition comprises (A) a first hydrogenated diene polymer having a weight average molecular weight (Mw) of 100,000 to 1,700,000, a molecular weight distribution (Mw/Mn) of 1.0 to 3.0, and a hydrogenation degree of 72 to 96%, the first hydrogenated diene polymer (A) being obtained by hydrogenating the first diene polymer which has a vinyl bond content of 20 to 70%, and (B) a first filler. The hydrogenated diene polymer composition contains the first filler (B) in an amount of 5 to 100 parts by mass per 100 parts by mass of the first hydrogenated diene polymer (A). | 01-29-2009 |
| 20100130669 | MODIFIED HYDROGENATED DIENE POLYMER COMPOSITION - A modified hydrogenated diene polymer composition includes (A) a modified hydrogenated diene polymer obtained by hydrogenating a diene polymer having a vinyl bond content of 20 to 70%, the modified hydrogenated diene polymer having a weight average molecular weight (Mw) of 100,000 to 1,700,000, a molecular weight distribution (Mw/Mn) of 1.0 to 3.0, and a hydrogenation rate of 72 to 96%, and containing a functional group, and (B) a diene rubber, the modified hydrogenated diene polymer composition containing the modified hydrogenated diene polymer (A) and the diene rubber (B) in an amount of 100 parts by mass in total, the amount of the modified hydrogenated diene polymer (A) being 60 to 95 parts by mass, and the amount of the diene rubber (B) being 5 to 40 parts by mass. | 05-27-2010 |
Satoru Nosaka, Nagoya-City JP
| Patent application number | Description | Published |
|---|---|---|
| 20090301062 | EXHAUST EMISSION CONTROL DEVICE FOR INTERNAL COMBUSTION ENGINE - An exhaust emission control device for an internal combustion engine includes a capturing device that is disposed in an exhaust passage of the engine and that captures particulate matter in exhaust gas flowing through the exhaust passage, a sensor that is disposed in the exhaust passage on a downstream side of the capturing device in a flow direction of exhaust gas and that measures an amount of soot in the particulate matter, a control unit for increasing the particulate matter that flows into the capturing device, and a determination device for determining whether the capturing device is at fault based on the amount of soot measured by the sensor after increasing the particulate matter that flows into the capturing device through the control unit. | 12-10-2009 |
Shigekiyo Nosaka, Fukuoka JP
| Patent application number | Description | Published |
|---|---|---|
| 20120092141 | POWER SUPPLY DEVICE - There is provided a power supply apparatus capable of supplying information as a power line communication signal superimposed on a voltage of a commercial frequency, although currents of the commercial frequency are not supplied to power receiving side external equipment, and capable of supplying power to a specific external apparatus together with the power line communication signal, by controlling supply of the currents of the commercial frequency to the external apparatus. This apparatus includes at least a power receiving section that receives the supply of the power from a power line; a power line communicating section that superimposes the power line communication signal on the voltage, which is supplied to the power receiving section, and transmits the power line communication signal to the equipment; and a power supply limiting section which is installed between the power receiving section and the equipment, allows the power line communication signal to pass and limits the supply of the power to the equipment. | 04-19-2012 |
Shuji Nosaka, Tokyo JP
| Patent application number | Description | Published |
|---|---|---|
| 20080237115 | Centrifugal separation-use device - The present invention provides a centrifugal separation-use device capable of maintaining a centrifugal separation-use container in a clean state easily at low cost even when centrifugal separation treatment is carried out using a centrifugal separator in an unclean field. A centrifugal separation-use device | 10-02-2008 |
Toshikazu Nosaka, Izumi-City JP
| Patent application number | Description | Published |
|---|---|---|
| 20100303675 | Method and apparatus for high-efficiency synthesis of carbon nanostructure, and carbon nanostructure - Developed is high-efficiency synthesis method and apparatus capable of promoting the initial growth of carbon nanostructure by eliminating the initial fluctuation time and rising time in raw gas flow quantity. | 12-02-2010 |
