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Mutou, JP
Akio Mutou, Yokohama-Shi JP
| Patent application number | Description | Published |
|---|---|---|
| 20100171916 | HOMEOTROPIC ALIGNMENT LIQUID CRYSTAL FILM, OPTICAL FILM COMPRISING THE SAME, AND IMAGE DISPLAY DEVICE - A homeotropic alignment liquid crystal film is provided with a liquid crystalline substance containing a side chain liquid crystalline compound having an oxetanyl group, as a constituent, aligned homeotropically on an alignment substrate while being in a liquid crystal state and fixed in the homeotropic alignment by allowing the oxetanyl group to react. Thus, the homeotropic alignment liquid crystal film can be stably produced without necessitating a complicated step such as light irradiation under an inert gas atmosphere and is excellent in alignment retainability after being fixed in the homeotropic alignment and in mechanical strength. | 07-08-2010 |
Daisuke Mutou, Mobara JP
| Patent application number | Description | Published |
|---|---|---|
| 20100073616 | LIQUID CRYSTAL DISPLAY DEVICE - A liquid crystal display device capable of preventing the occurrence of crack in a capacitor insulating film due to laser marking is provided. The liquid crystal display device includes pixels arranged in a matrix in a display region above a substrate, a thin film layer formed in a non-display region excluding the display region, and a transparent insulating film extending from the display region to the non-display region and formed on the thin film layer, in which the transparent insulating film includes at least an organic insulating film formed of an organic compound for planarizing a surface of the substrate, an inorganic insulating film which is a thin film formed on the organic insulating film and formed of an inorganic compound and formed with an opening extending to the organic insulating film in a region above the thin film layer, and a transparent electrode layer which is formed in the opening of the inorganic insulating film to cover the organic insulating film exposed from the opening of the inorganic insulating film. | 03-25-2010 |
Eigo Mutou, Osaka-Shi JP
| Patent application number | Description | Published |
|---|---|---|
| 20090036521 | Process for Production of Optically Active Amine Derivatives - An industrial process for production of high-purity optically active amine derivatives in high yield while inhibiting the formation of by-products, which comprises subjecting (E)-2-(1,6,7,8-tetrahydro-2H-indeno[5,4-b]furan-8-ylidene)ethylamine to asymmetric reduction, catalytically reducing the obtained product at a reaction temperature of 40 to 100° C. and a pH of 3 to 9, subjecting the obtained (S)-2-(1,6,7,8-tetrahydro-2H-indeno[5,4-b]furan-8-yl)ethylamine to propionylation, and then crystallizing the reaction mixture. | 02-05-2009 |
Fumio Mutou, Tokyo JP
| Patent application number | Description | Published |
|---|---|---|
| 20110168374 | CORRUGATED-FIN TYPE RADIATOR - Disclosed is a corrugated-fin type radiator ( | 07-14-2011 |
Hideki Mutou, Tokyo JP
| Patent application number | Description | Published |
|---|---|---|
| 20100074079 | OPTICAL DISK DRIVE - An optical disk drive includes a servo control unit | 03-25-2010 |
Hideo Mutou, Tokyo JP
| Patent application number | Description | Published |
|---|---|---|
| 20090121337 | SEMICONDUCTOR DEVICE MANUFACTURING METHOD AND SEMICONDUCTOR - To divide a semiconductor wafer by stealth dicing, a test pad in a cutting region and an alignment target are collectively arranged along one side in a width direction of the cutting region, and a laser beam for forming a modified region is irradiated to a position away in plane from the test pad and the alignment target Am. In this manner, defects in cutting shape in a cutting process of a semiconductor wafer using stealth dicing can be reduced or prevented. | 05-14-2009 |
| 20110124180 | SEMICONDUCTOR DEVICE MANUFACTURING METHOD COMPRISING A METAL PATTERN AND LASER MODIFIED REGIONS IN A CUTTING REGION - To divide a semiconductor wafer by stealth dicing, a test pad in a cutting region and an alignment target are collectively arranged along one side in a width direction of the cutting region, and a laser beam for forming a modified region is irradiated to a position away in plane from the test pad and the alignment target Am. In this manner, defects in cutting shape in a cutting process of a semiconductor wafer using stealth dicing can be reduced or prevented. | 05-26-2011 |
| 20120077332 | SEMICONDUCTOR DEVICE MANUFACTURING METHOD AND SEMICONDUCTOR DEVICE - To divide a semiconductor wafer by stealth dicing, a test pad in a cutting region and an alignment target are collectively arranged along one side in a width direction of the cutting region, and a laser beam for forming a modified region is irradiated to a position away in plane from the test pad and the alignment target Am. In this manner, defects in cutting shape in a cutting process of a semiconductor wafer using stealth dicing can be reduced or prevented. | 03-29-2012 |
Hirofumi Mutou, Kariya-Shi JP
| Patent application number | Description | Published |
|---|---|---|
| 20080211284 | Seat for vehicle - A seat for use in a vehicle, which is capable of being turned toward a door opening with a child seat, etc. attached thereto, thereby favorably sitting a child, etc. on the child seat, etc. A turning seat S | 09-04-2008 |
Hiroyuki Mutou, Ichinomiya-City JP
| Patent application number | Description | Published |
|---|---|---|
| 20110090516 | BEAM IRRADIATION DEVICE - A beam irradiation device includes a photodetector which receives servo light and outputs a detection signal depending on a light receiving position of the servo light, and a signal processing section which obtains the light receiving position based on the detection signal. In the above arrangement, the signal processing section has an A/D conversion circuit which converts the detection signal into a digital signal, and an error signal adjusting circuit which converts an error component signal to be outputted from the photodetector when the photodetector is not irradiated by the servo light, into a signal within a processable range of the A/D conversion circuit, and supplies the converted signal to the A/D conversion circuit. A first digital signal derived from the detection signal is corrected with a second digital signal derived from the error component signal. | 04-21-2011 |
Ken Mutou, Obu--City JP
| Patent application number | Description | Published |
|---|---|---|
| 20120031586 | Condenser - Each tube and a corresponding fin satisfy all of the following relationships: Lp−t≧0.03Tr+0.22; Lp−t≦0.115Tr | 02-09-2012 |
Kenji Mutou, Tokyo JP
| Patent application number | Description | Published |
|---|---|---|
| 20080246603 | DIRECTION SEARCHING SYSTEM - The object of the invention is providing a direction searching system for displaying a direction of an objective car location only by easy operations. The solution is as follows. During a switch is being pressed in the first scan, a radio signal from a in-vehicle equipment | 10-09-2008 |
Kouichi Mutou, Sendai-Shi JP
| Patent application number | Description | Published |
|---|---|---|
| 20110121926 | ELECTROMAGNETIC RELAY - To provide an electromagnetic relay having a reduced size, high conductivity, a high insulating performance between two fixed contact terminals and between each of the fixed contact terminals and backstop, a small number of factors causing a failure, and high reliability of electric contact. | 05-26-2011 |
Masahito Mutou, Utsunomiya-Shi JP
| Patent application number | Description | Published |
|---|---|---|
| 20120074113 | SPOT WELDING METHOD AND SPOT WELDING APPARATUS - A spot welding method and a spot welding apparatus are provided. A stacked assembly of at least three workpieces is gripped between first and second welding tips. An inner workpiece positioned inside of the stacked assembly, of two of the workpieces that exhibit a maximum contact resistance in the stacked assembly, is electrically connected to a ground electrode, or to an electrode having the same polarity as the second welding tip near an outer workpiece positioned adjacent to the inner workpiece and facing outwardly from the stacked assembly, of the two workpieces. Then, electric current is applied from the first welding tip toward the second welding tip. In this case, first, the stacked assembly is pressed under a first pressing force, and then, the stacked assembly is pressed under a second pressing force which is greater than the first pressing force. | 03-29-2012 |
Masamichi Mutou, Yokohama-Shi JP
| Patent application number | Description | Published |
|---|---|---|
| 20110046040 | Microorganism-inactivating agent - With a microorganism-inactivating agent comprising a composition containing γ-polyglutamic acid and/or cross-linked product of γ-polyglutamic acid; a calcium ion donor; a sodium ion donor; and an aluminum ion donor, microorganisms in water are inactivated. By further including one or more selected from microbiostatic agents and microbicides into the microorganism-inactivating agent, various microorganisms in water are inactivated to a level at which the water is suitable for drinking. | 02-24-2011 |
Yasuaki Mutou, Osaka JP
| Patent application number | Description | Published |
|---|---|---|
| 20080284681 | Method of Driving Plasma Display Panel, and Plasma Display Device - One field is formed of a plurality of sub-fields, and each one of the sub-fields includes an initializing period, addressing period, and sustained period. The sub-field is one of an entire-cell initialization sub-field or a selective-cell initialization sub-field. When the entire initialization sub-field is switched to the selective one or vice versa, an initializing voltage which generates initializing discharge in the entire initialization sub-field is controlled. This control allows varying the number of the entire initializations and stabilizing address discharge in a plasma display panel, and at the same time, making the black luminance inconspicuous for improving the picture quality. | 11-20-2008 |
| 20100201678 | DRIVING DEVICE, DRIVING METHOD AND PLASMA DISPLAY APPARATUS - A first ramp waveform (RW | 08-12-2010 |
