摘要:
A method of forming a planar emissive device, such as a flat fluorescent lamp or plasma display panel, including the steps of applying a frit paste including spherical spacers onto a broad face of a first planar substrate; setting the frit paste; coupling a second planar substrate to the frit paste; and flowing the frit paste to form a seal between the first and second substrate, wherein the gap size between the first and second substrate is substantially defined by the spacer diameter.
摘要:
Disclosed is an interactive genome browser executing within a web browser application, configured to display patient genetic data and additional genetic data tracks which are aligned by base pair. Additional tracks may include public data, community data, private data, sequence gaps, and additional genetic tests or probes which are available. Tests or probes may be ordered by selecting them from a test or probe track. Data in a genetic information database may also be searched using the interactive genome browser. Analyzed patient data may be published and made available to a community of users, which may communicate with one another.
摘要:
The present invention is directed toward a graphics display assembly configured to display a true color palette in illuminated and non-illuminate states. The graphics display assembly includes a backlit electroluminescent (EL) panel and optical interface layer. The optical interface layer is translucent, preventing color shift of transmitted light. In operation, the optical interface layer masks the pink or rose-colored hue visible when the EL panel is in its non-illuminated state.
摘要:
Die Erfindung betrifft Verfahren zur Herstellung eines Kontaktstifts (01) zur Verwendung als elektrisches Kontaktelement einer Leuchtstoffröhre, wobei der Kontaktstift eine entlang seiner Längsachse (05) verlaufende Ausnehmung (06) aufweist, in die einen Anschlussdraht der Leuchtstoffröhre einsteckbar ist und elektrisch mit dem Kontaktstift (01 ) verbunden werden kann, und wobei die Außenwandung des Kontaktstifts (01) einen zylindrischen Kontaktbereich (17) aufweist, der in einer Sockelfassung der Leuchtstoffröhre unter Herstellung eines elektrischen Kontakts zwischen Sockelfassung und Leuchtstoffröhre zum Eingriff bringbar ist, und wobei die Außenwandung des Kontaktstifts (01) einen ringförmigen Bund (08) aufweist, mit der der Kontaktstift beim Einstecken in eine Ausnehmung einer Endkappe (02), die am Axialende der Leuchtstoffröhre angeordnet wird, an der Wandung (04) der Endkappe (02) zur Anlage kommt.
摘要:
A method of sealing a plurality of frame-like frit walls disposed between two substrates. The frit walls are arranged in rows and columns and divided into groups, each group being sealed by a separate laser beam. Several strategies are disclosed for the order in which the frit walls are heated and sealed by a laser beam to optimize the efficiency of the sealing process.
摘要:
Organic light-emitting diodes (OLEDs) comprising at least one nanostructure-film electrode, and fabrication methods thereof are discussed. The nanostructure-film is preferably transparent, and may be deposited on a preferably-transparent substrate using a variety of techniques. A different material may be used to planarize the nanostructure-film and/or otherwise improve OLED performance.
摘要:
A method of making an electroluminescent (EL) light which includes at least one design. A flexible EL lamp is used which has a front electrode, a phosphor layer, a dielectric layer and a rear electrode layer. A pattern is cut out from the flexible EL lamp and at least one line is determined on the cut out to divide the design into at least two geometric areas, which are preferably of approximately equal size. A scribe line is cut into the rear electrode along such line, which forms split electrode areas in the rear electrode. Connecting devices are attached to each split electrode area, which are adapted to be connected to a power source. A method of making an EL light that is adaptable to be inserted into a channel, with the light having at least one indicia such as a letter, number, symbol or the like. A first form of the desired indicia is cut out from a plastic backing sheet. A second form of the desired indicia is cut out from flexible EL lamp of the form mentioned above. A scribe line is cut into the rear electrode of the EL lamp along one or more predetermined lines. The EL lamp is laminated between at least two barrier films, and a connecting device is attached to each split electrode area of the rear electrode. Optionally, a third form of the desired indicia is cut from an outer overlay sheet. The three cut out forms are stacked on top of each other, with the EL lamp structure in the middle, and the periphery of the structure is sealed.
摘要:
An embodiment of the invention is a microdischarge device including a first electrode (230) encapsulated in a dielectric, which may be a nanoporous dielectric film. A second electrode (240) is provided which may also be encapsulated with a dielectric. The electrodes are configured to ignite a discharge in a microcavity when a time-varying (an AC, RF, bipolar or a pulsed DC, etc.) potential is applied between the electrodes. In specific embodiments of the invention, the second electrode may be a screen covering the microcavity opening and the microcavity may be closed at one end. In some embodiments of the invention, the second electrode may be in direct contact with the first electrode. In other embodiments, a gap separates the electrodes. In a preferred method of manufacturing microdischarge devices with encapsulated electrodes, a metal substrate is used to form a nanoporous dielectric encapsulated electrode and dissolve a portion of the dielectric layer. The dielectric layer is then anodized a second time, resulting in a nanoporous dielectric encapsulated electrode with improved regularity of the nanoscale dielectric structures. In some embodiments of the invention, the columnar voids in the dielectric may be backfilled with one or more materials to further tailor the properties of the dielectric.
摘要:
An exemplary method of forming a lamp assembly (115) is provided herein that includes scanning at least one surface of a reflector (125). The method further includes determining an estimated location of a focal point of the reflector (125) based on the scanning, and aligning a burner (140, 200) relative to the estimated location of said focal point.