Abstract:
Vacuum arc discharge devices having improved arc shielding characteristics are disclosed. Such improved devices comprise a vacuum sealed envelope comprising a cylindrical metallic member which functions not only as a part of the vacuum envelope, but as a shield for collecting molten metallic particles produced during high current arcing. Various embodiments of interleaved arcing electrodes which provide high current and high voltage capabilities in a fixed diameter envelope are also disclosed.
Abstract:
A mounting arrangement for parallax barriers for use in color tubes wherein relatively flat leaf springs are utilized and are mounted upon a predetermined tension determining plane which is formed in sidewalls of the parallax barrier support frame.
Abstract:
A display apparatus includes: a display region provided with a plurality of pixel portions; wires installed to the respective pixel portions within the display region from an outside of the display region and transmitting a signal to drive the respective pixel portions; connection pads provided on the outside of the display region and serving as input portions that provide the wires with a signal while electrically conducting with the wires; switch elements provided on the outside of the display region in a middle of the wires; and a light shielding covering portion shielding the switch elements from light and formed to cover the connection pads while electrically conducting with the connection pads.
Abstract:
A luminescent display is provided that comprises: a plurality of individual phosphor elements (13) formed over a glass anode plate (11), and conductive segments (21) formed on each of the individual phosphor elements, wherein each of the conductive segments are electrically isolated from one another and have an anode potential (15) applied thereto.
Abstract:
A backlight module includes a connector capable of performing voltage conversion or a voltage converter capable of transmitting signals. The connector or the voltage converter, disposed between an inverter and a lamp set, receives low-voltage signals generated by the inverter, performs voltage conversion, and outputs high-voltage signals for driving the lamp set.
Abstract:
[Problems] To provide processes that can increase the work function of electrodes by simple procedures, and organic EL devices that have an anode of high work function and a quality emitting surface showing excellent luminous properties (luminous efficiency, life) without uneven brightness or defects, and are free of leakage current.[Means for solving problems] A process for treating an electrode surface of the invention includes a contact step of bringing an electrode formed of a metal oxide or a metal into contact with an alkaline solution of a compound having an Si—O bond. An organic EL device according to the invention includes a metal oxide or metal anode that has been surface-treated by the process, and an emitting layer and a cathode laminated on the anode in this order.
Abstract:
A display device includes: a plurality of first pixel electrodes which are arranged in a first direction and a second direction intersecting the first direction; a plurality of second pixel electrodes which are arranged in the first and second directions; a counter electrode which is formed to be opposed to the plurality of first pixel electrodes and the plurality of second pixel electrodes; a first power supply line which electrically connects the plurality of first pixel electrodes; and a second power supply line which electrically connects the plurality of second pixel electrodes. One or more pixels are formed to correspond to the respective pixel electrodes of the plurality of first pixel electrodes and the plurality of second pixel electrodes. A light-emitting layer made of an organic light-emitting material or an insulating layer made of an organic compound is disposed between a first electrode which is one of the plurality of first pixel electrodes and the counter electrode and between a second electrode which is one of the plurality of second pixel electrodes and the counter electrode. Power is supplied to the plurality of first pixel electrodes via the first power supply line upon displaying a first image and power is supplied to the plurality of second pixel electrodes via the second power supply line upon displaying a second image.
Abstract:
A display device includes plural pixels each including a pixel electrode and a transparent electrode formed above the pixel electrode and an auxiliary wiring formed between light emitting regions each in each of the pixels on the transparent electrode, in which the auxiliary wiring is a metal wiring in a stripe shape formed on a resin. The transparent electrode is formed in common with each of the pixels, and a sheet resistance obtained by combining the transparent electrode with the metal wiring is 10 Ω/□ or less. The metal wiring is Cu, Al or SUS. A blackening treatment is applied to the metal wiring. The transparent electrode is ITO, IZO or ZnO. The metal wiring is formed in a non-light emitting region between the light emitting regions in each of the pixels in an extending direction of a scanning line. The resin is PET, TAC or POC.