Abstract:
A flexible display (200) includes a display effect layer (128) formed on a back plane substrate (114) configured and dimensioned to be flexible. A front plane substrate (121) is configured and dimensioned to be flexible and is mounted on the display effect layer. The front plane substrate has a color filter (124) formed thereon such that aperture and parallax effects are controlled due to proximity between the display effect layer and the color filter. Methods for fabricating flexible displays are also disclosed.
Abstract:
Die Erfindung betrifft ein Verfahren zur Herstellung von multispektralen Filterbaugruppen, die aus mehreren separat beschichteten Filterelementen zusammengesetzt sind, sowie eine Filteranordnung für Zeilenkameras zur multispektralen Bildaufnahme, insbesondere für die Fernerkundung der Erde. Die Aufgabe der Erfindung, eine neue Möglichkeit zur Herstellung von mehrkanaligen multispektralen Filterbaugruppen zu finden, die das Fertigungs- und Kostenrisiko von kompakten multispektralen Filterbaugruppen auch bei zunehmender Anzahl der Spektralkanäle reduziert, wird erfindungsgemäß gelöst, indem Substratbarren (3) aus für die zu filternde Wellenlänge des jeweiligen Filterelements (4) geeigneten optischem Material zuerst durch beliebige Formgebungsverfahren und Bearbeitungsverfahren maßhaltig hergestellt und erst danach unterschiedliche beschichtet, nach ihrer spektralen Güte selektiert und abschließend in geeigneter Weise zusammengesetzt werden.
Abstract:
A display, such as an EL device having little variation in film thickness between pixels, and a color filter are disclosed. Arranged on a substrate are pixels formed by an ink-jet method in regions to be coated and partitioned by banks so formed as to satisfy the formulae a⊃d/4, d/2∫b∫5d, c⊃t0, c⊃(1/2)x(d/b) where a is the width of the banks, c is the height of the banks, b is the width of the regions to be coated, d is the diameter of droplets of a liquid material for forming a thin film, and t0 is the thickness of the thin film. A method of modifying the surface is a method comprising forming banks of an organic martial on an inorganic bank forming surface, and performing a plasma processing under an excessive fluorine condition, or a method comprising performing oxygen gas plasma processing of a substrate having banks formed of an organic material, and then performing fluorine-based gas plasma processing.
Abstract:
The present invention provides a method of manufacturing a color filter, including: forming a first color pattern in a repeating pattern on a support; forming, on the support, a second color pattern in a repeating pattern in regions where the first color pattern is not formed; removing at least one portion of one of the first color pattern and the second color pattern by dry-etching, the portion being in a region where a third color pattern is to be formed; and forming, on the support, the third color pattern in the region where the portion of one of the first color pattern and the second color pattern has been removed. The present invention also provides a color filter manufactured by the method, and a solid-state image pickup element using the color filter.
Abstract:
There are provided colored composite microparticles having a fine primary particle diameter and exhibiting a high tinting strength, an excellent dispersibility and an excellent light fastness; a process for producing the colored composite microparticles; and a dispersion of the colored composite microparticles. The colored composite microparticles are composite particles comprising silica and an organic pigment in which the silica is enclosed in the organic pigment and contained in an amount of 0.001 to 9% by weight (calculated as Si) based on the weight of the composite particles. The coloring composition for color filters is prepared by dispersing a colorant for color filters comprising the colored composite microparticles in a coloring composition base material, whereas the ink for ink-jet printing is prepared by dispersing a colorant for inks for ink-jet printing comprising the colored composite microparticles in an ink base solution. The colored composite microparticles have a high tinting strength and are excellent in dispersibility and light fastness, and therefore, can be suitably used in various applications such as ordinarily used paints, printing inks, etc., irrespective of an aqueous system or a solvent system.
Abstract:
In einer Ausführungsform beschreibt die Erfindung eine e-lektrolumineszierende Vorrichtung 1 mit einem funktionellen Bereich 5, der Licht mit einer ersten spektralen Verteilung 7 emittiert und mit einer Filterschicht 10, die im Strählengang 6 des funktionellen Bereichs 5 angeordnet ist und spektrale Teilbereiche des Lichts der ersten spektralen Verteilung absorbiert, so dass Licht mit einer zweiten spektralen Verteilung von der Vorrichtung 1 emittiert wird.
Abstract:
An apparatus for producing a color filter includes: a number of heads each having a nozzle row comprising an arrangement of a plurality of nozzles; a mechanism for supplying a filter material to the heads; a supporting mechanism for supporting the heads; a main scanning mechanism for moving the supporting mechanism by main scanning; a sub-scanning mechanism for moving the supporting means by sub-scanning; a nozzle row angle control mechanism for controlling the inclination angles of the nozzle rows; and a nozzle row spacing control mechanism for controlling the spacing between the nozzle rows.
Abstract:
A filter assembly (10;20) includes a film type filter (17;27) with a base film (13;23) and a plurality of light absorption pattern units (11;21) thereon, and an adhesion pattern layer (15;25) attached to the film type filter. The adhesion pattern layer may include a plurality of protrusions, each having a convex lens shape, arranged in a zigzag structure with respect to the light absorption pattern units of the film type filter.