Inventors list |
Assignees list |
Classification tree browser |
Top 100 Inventors |
Top 100 Assignees |
Daisuke
Funao Daisuke, Osaka JP
| Patent application number | Description | Published |
|---|---|---|
| 20110254974 | SIGNAL PROCESSING APPARATUS, SOLID-STATE IMAGE CAPTURING APPARATUS, ELECTRONIC INFORMATION DEVICE, SIGNAL PROCESSING METHOD, CONTROL PROGRAM AND STORAGE MEDIUM - A signal processing apparatus is provided, for processing pixel signals corresponding to a plurality of respective pixels, the signal processing apparatus comprising a color matrix section for detecting brightness of the pixel and performs color adjustment on the pixel signals using a color matrix in accordance with the detected brightness of the pixel. | 10-20-2011 |
Itoh Daisuke, Ann Arbor, MI US
| Patent application number | Description | Published |
|---|---|---|
| 20100156162 | SEAT BACK ASSEMBLY WITH INTEGRAL REINFORCEMENT STRUCTURE - A seat back assembly including a frame formed of a low density material such as expanded polypropylene (EPP) and a reinforcement structure encapsulated within the frame is provided. The reinforcement structure includes a load transferring surface extending between opposite ends of the seat back. Each end of the reinforcement structure is secured to a vehicle body structure. The reinforcement structure transfers a load placed upon the seat back assembly throughout the frame so as to maintain the structural integrity of the frame under a predetermined load. Specifically, the load transferring surface of the reinforcement structure is in contact with the frame and transfers the load across a predetermined area of the frame and to the vehicle body. | 06-24-2010 |
| 20100156163 | SEAT BACK ASSEMBLY WITH LOW DENSITY FRAME - A seat back assembly including a frame molded from expanded polypropylene (EPP). The expanded polypropylene frame includes a first surface and a second surface. The EPP frame is molded so as to include at least one standoff. The standoff extends outwardly from the second surface into a contact surface. The contact surface is registered to engage a vehicle body structure. Thus when the seat back experiences a frontal load, the frontal load is transformed so as to compress the standoff, and also transfers a load to the vehicle body structure. The EPP frame may also be molded so as to encapsulate an armrest bracket for attaching a pivotable armrest, or attachment wires to secure the seat back assembly to the vehicle body. The EPP frame may also be molded to include a headrest. | 06-24-2010 |
| 20110285161 | SEAT BACK ASSEMBLY WITH INTEGRAL REINFORCEMENT STRUCTURE - A seat back assembly including a frame formed of a low density material such as expanded polypropylene (EPP) and a reinforcement structure encapsulated within the frame is provided. The reinforcement structure includes a load transferring surface extending between opposite ends of the seat back. Each end of the reinforcement structure is secured to a vehicle body structure. The reinforcement structure transfers a load placed upon the seat back assembly throughout the frame so as to maintain the structural integrity of the frame under a predetermined load. Specifically, the load transferring surface of the reinforcement structure is in contact with the frame and transfers the load across a predetermined area of the frame and to the vehicle body. | 11-24-2011 |
Kuboshima Daisuke, Osaka JP
| Patent application number | Description | Published |
|---|---|---|
| 20110300475 | Electrophotographic Photoconductor and Image-Forming Apparatus - An electrophotographic photoconductor includes a photosensitive layer on a conductive base, in which 1) the photosensitive layer includes a charge-generating layer including a charge-generating material, and a charge-transport layer including a charge-transport material and a binder resin, the charge-generating layer and the charge-transport layer being stacked, in that order, on the conductive base, and the charge-transport layer having a yield strain of about 5%-25%, or 2) the photosensitive layer includes a charge-generating material, a charge-transport material, and a binder resin in the same layer and has a yield strain of about 5%-25%, corresponding to the yield strain measured using a 10 mm×30 mm rectangular, sample having a thickness of 30 μm with both 10-mm sides held at an initial load of 1 N, a strain rate of 0.5 %/min, and a temperature of 30°C., in which the electrophotographic photoconductor is used as an image-bearing member. | 12-08-2011 |
| 20110300476 | POSITIVE CHARGING SINGLE-LAYER ELECTROPHOTOGRAPHIC PHOTOCONDUCTOR, IMAGE-FORMING APPARATUS AND METHOD FOR FORMING AN IMAGE - A positive charging single-layer electrophotographic photoconductor configured to serve as an image-bearing member for use in an image-forming apparatus includes a photosensitive layer on a conductive base, including a charge-generating material, a hole-transport material, an electron-transport material, and a binder resin, in which the photosensitive layer has a polysiloxane oil, with the amount of the polysiloxane oil being in the range of about 0.005% by mass to about 0.021% by mass with respect to the total mass of materials. | 12-08-2011 |
Niwa Daisuke, Kyoto-Shi JP
| Patent application number | Description | Published |
|---|---|---|
| 20120022382 | WIRELESS PLETHYSMOGRAM SENSOR UNIT, A PROCESSING UNIT FOR PLETHYSMOGRAM AND A PLETHYSMOGRAM SYSTEM - A wireless plethysmogram sensor unit is capable of obtaining a plethysmogram from a living tissue of a measuring object and of transmitting the plethysmogram to a processing unit outside the wireless plethysmogram sensor unit. The sensor unit includes a light source to emit measuring light into the living tissue and a light receiving element to receive light emerging from the tissue, which is accompanied by pulsation caused by absorption by arteries in the tissue. A memory stores a plethysmogram obtained in accordance with the light received by the light receiving element. A short range wireless communicator transmits the plethysmogram to the processing unit. A power source provides power to other elements in the sensor unit, and a controller controls the elements of the sensor unit. | 01-26-2012 |
