Abstract:
A display device includes a first reference pixel section configured to be driven to emit light at a predetermined luminance, a second reference pixel section configured to be driven to emit light when an amount of luminance degradation is to be detected, and a correcting unit configured to correct luminance degradation of effective pixels that contribute to display on the basis of a detection result of luminances of the first reference pixel section and the second reference pixel section.
Abstract:
A display panel is disclosed which suppresses appearance of structural fault at a frame portion of an opposing glass plate. The display panel has a panel structure ready for an active matrix driving method and includes an element having a formation face on which pixel circuits are formed, and an opposing substrate configured to seal the formation face. The opposing substrate has a protrusion pattern formed in a region thereof opposing to an outer edge of the opposing substrate. The protrusion pattern has a layer structure similar to that in a display region of the formation face.
Abstract:
A circuit includes a first shift register configured to be reset with a reset signal, to shift a first pulse signal and output the shifted first pulse signal as a second pulse signal, and a second shift register configured to be reset with the first pulse signal, to shift the second pulse signal and to output the shifted second pulse signal as a third pulse signal.
Abstract:
An on-board emergency reporting apparatus includes a collision detection sensor, an airbag inflator for inflating an airbag in the event of collision detection, an airbag deflator for deflating the inflated airbag, a camera for capturing an image of an occupant seated on a seat provided with the airbag, a controller for transmitting the captured image to an emergency reporting center through a communication device, and a deflation sensor for detecting whether the volume of the inflated airbag is reduced to a predetermined threshold value. The controller causes the camera to start capturing upon detection of a reduction in the volume of the inflated airbag to the predetermined threshold value.
Abstract:
Disclosed is a novel polypeptide which can inhibit angiogenesis. Also disclosed is use of the polypeptide. The polypeptide comprises at least one amino acid sequence selected from the amino acid sequences depicted in SEQ ID NOs: 1-3, is composed of 120 or less amino acid residues, and has an anti-angiogenic activity. The polypeptide has an anti-angiogenic activity, has a lower molecular weight compared with that of PEDF, and has excellent penetration or absorption into a living body, particularly an affected part in a living body.
Abstract translation:公开了可抑制血管发生的新型多肽。 还公开了多肽的用途。 多肽包含选自SEQ ID NO:1-3所示的氨基酸序列的至少一个氨基酸序列,由120个或更少的氨基酸残基组成,并且具有抗血管生成活性。 该多肽具有抗血管生成活性,与PEDF相比具有较低的分子量,并且对生物体,特别是活体中的受影响部位具有优异的渗透或吸收。
Abstract:
A stereoscopic video display system includes a display device for displaying stereoscopic video, an image pickup element for generating image data, a position determiner for processing the image data received by the image pickup element to determine position information of at least one object identified in the image data, and a plurality of light output sections each having one or more light transmitters. Each light transmitter is configured to output timing signals having a signal strength based on the determined position information. The stereoscopic video display system also includes at least one set of shutter eyeglasses including a light receiving section for receiving timing signals output from at least one of the light transmitters of the light output sections.
Abstract:
It is a technical common knowledge that a chaplet used in casting of a hollow casting is fusion-bonded with the melt and is incorporated into the casting. However, the adhesion between the chaplet and the casting body is not necessarily satisfactory, thereby incurring the strength reduction of a thin-wall hollow casting. A core for a thin-wall hollow casting according to the present invention is provided with a chaplet mounted thereon. The chaplet has arcuate portion 2 with a gap 5 and a plurality of projections 4 from an outer peripheral of the arcuate portion and is in contact with an inner wall 7 of a mold. The entire arcuate portion of the chaplet is included in a groove 6 formed around an outer peripheral portion of the core body. Only the projections 4 of the chaplet protrude from the core body, when the chaplet is inserted in the groove.
Abstract:
The present invention provides an organic EL display and a method of manufacturing the same capable of assuring excellent electric connection between an auxiliary wiring and a second electrode without using large-scale equipment. The organic EL display includes: a plurality of pixels each having, in order from a substrate side, a first electrode, an organic layer including a light emission layer, and a second electrode; an auxiliary wiring disposed in a periphery region of each of the plurality of pixels and conducted to the second electrode; and another auxiliary wiring disposed apart from the auxiliary wiring at least in a part of outer periphery of a formation region of the auxiliary wiring in a substrate surface.
Abstract:
A motorcycle includes a carburetor, an electronically controlled opening/closing valve that opens and closes an intake passage, an ECU that controls the opening/closing valve, a main switch, an engine start switch and a rotation speed sensor. The ECU causes the opening/closing valve to perform a determined initial operation if a determined condition is satisfied when the main switch is turned on. If the determined condition is not satisfied when the main switch is turned on, the determined initial operation is performed when the rotation speed of the engine has reached a determined rotation speed range after the engine has been started. To ensure that an initial operation of an opening/closing valve that opens and closes an intake passage is performed with a high degree of reliability.
Abstract:
Disclosed herein is a display panel based on active matrix driving having a display area made up of N pixel control lines, M video signal lines orthogonally intersecting the N pixel control lines, and pixel circuits arranged at intersections between the N pixel control lines and M video signal lines, wherein positional identification patterns are arranged on every k (k being a natural number) pixel control lines inside each of the pixel circuits.