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WITH GETTER

Subclass of:

313 - Electric lamp and discharge devices

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Class / Patent application numberDescriptionNumber of patent applications / Date published
313553000WITH GETTER26
20080231183Apparatus and method for evacuating a field emission display - A vacuum container comprising: a first and second substrate of relatively the same dimensions and areas, a peripheral seal positioned about the outer periphery of each substrate for bonding the first substrate to the second substrate to form a composite stacked member; and a getter box having a vacuum aperture in one side with an evacuation tube of a given diameter opening to enclose the vacuum aperture, the tube joined to the box about the opening and having a sealed end remote from the box, the getter box having a getter source in the box hollow to absorb any residual gasses in the display hollow after the display hollow has been evacuated to a desired vacuum before sealing the end of the evacuation tube, wherein the area of the aperture is equal to or greater than π(D/2)09-25-2008
20080272694Methods of Conditioning Getter Materials - Provided are methods for conditioning a getter material, comprising subjecting the getter material to microwave radiation. Electronic devices uses the conditioned getter materials and methods of making such electronic devices are also provided.11-06-2008
20090212701IMAGE DISPLAY APPARATUS - An image display apparatus includes at least one electron-emitting device, at least one wiring arranged to apply a voltage to the electron-emitting device, a getter disposed on the wiring, and an insulating layer interposed between the getter and wiring. The getter has penetrating portions formed in a part thereof corresponding to a region where an image is displayed in the image display apparatus. The penetrating portions are at least one opening, and an area of an inner wall surface of the getter facing the opening is substantially the same as or larger than an area of the opening.08-27-2009
20090278455METHODS AND MATERIALS FOR THE REDUCTION AND CONTROL OF MOISTURE AND OXYGEN IN OLED DEVICES - Novel uses and methods of use for inorganic and macroreticulate polymer bonding to metals to control moisture and oxygen in OLED, and other like devices, are provided. Materials having color change capacity are also provided for the removal of moisture from an OLED, where the material changes color upon reaching its capacity and thereby signals the user that the OLED is no longer protected from moisture damage.11-12-2009
20090289549Organic light emitting diode display - An organic light emitting diode (OLED) display is provided. The OLED display includes a substrate, a subpixel on the substrate, and a multi-layered protective layer covering the subpixel. The multi-layered protective layer has a structure in which organic layers and inorganic layers are alternately stacked in a repeated manner and at least one moisture absorbing layer is interposed in the multi-layered protective layer.11-26-2009
20090322223STARTER MEMBER FOR A LOW-PRESSURE DISCHARGE LAMP - Disclosed is a starter member to which a mercury-absorbing layer is applied and which can be used in low-pressure mercury discharge lamps. A starter member for a low-pressure amalgam discharge lamp comprises a mercury-absorbing layer on a base. A coating layer which is provided on the mercury-absorbing layer has a getter effect and prevents the material of the mercury-absorbing layer from coming off.12-31-2009
20100141136ORGANIC LIGHT EMITTING DISPLAY - An organic light emitting display includes a substrate; an organic light emitting diode on one surface of the substrate; an encapsulation substrate located opposite and substantially parallel to the substrate with the organic light emitting diode therebetween; a filler layer on one surface of the encapsulation substrate facing the substrate; a first encapsulation layer located between the encapsulation substrate and the substrate and sealing the substrate and the encapsulation substrate together; and a second encapsulation layer located adjacent to the first encapsulation layer and between the encapsulation substrate and the substrate, wherein the filler layer and the second encapsulation layer include a moisture absorbent.06-10-2010
20110101858DIELECTRIC BARRIER DISCHARGE LAMP CONFIGURED AS A COAXIAL DOUBLE TUBE HAVING A GETTER - A dielectric barrier discharge lamp (05-05-2011
313554000 Plural 3
20110234091NON-EVAPORABLE GETTER FOR FIELD-EMISSION DISPLAY - The present invention provides a non-evaporable getter for an FED which can remove a plurality of types of gases. The non-evaporable getter for the FED has a first layer containing titanium, and a second layer containing crystalline zirconium layered on the first layer. The average value of crystalline grain sizes of the crystalline zirconium is 3 nm or more but 20 nm or less.09-29-2011
20140145589ELECTRON BEAM DEVICE, A GETTER SHEET AND A METHOD OF MANUFACTURING AN ELECTRON BEAM DEVICE PROVIDED WITH SAID GETTER SHEET - An electron beam device has a body provided with an exit window, said body is forming or is at least partly forming a vacuum chamber, the vacuum chamber comprising therein a cathode housing and at least one electron generating filament. At least one getter sheet is provided between the cathode housing and the filament. The invention is further comprising a getter sheet for use in an electron beam device and a method of manufacturing an electron beam device comprising at least one getter sheet.05-29-2014
20140217883MERCURY DOSING COMPOSITION - An improved mercury dosing composition is described. A method for dispensing mercury with this composition and to discharge lamps containing each composition is also described.08-07-2014
313556000 And vapor generator 1
20080265770LIGHT EMISSION DEVICE AND DISPLAY DEVICE USING THE LIGHT EMISSION DEVICE AS A LIGHT SOURCE - A light emission device having an evaporating getter unit and a display device utilizing the light emission device as a light source. The light emission device includes a vacuum vessel having first and second substrates facing each other and a sealing member, the first and second substrates having an active area and a non-active area, an electron emission unit located on the first substrate at the active area, a light emission unit located on the second substrate at the active area, a getter unit provided between the first and second substrates at the non-active area, and a barrier disposed between the getter unit and the active area. The barrier blocks diffusion of getter material toward the active area during the getter activating process and prevents (or reduces) a slip or a movement of the getter unit.10-30-2008
313558000 Electrode includes getter, supports getter, or is connected to getter 4
20080284332GUN CHAMBER, CHARGED PARTICLE BEAM APPARATUS AND METHOD OF OPERATING SAME - A gun chamber for a charged particle emitter is provided, said gun chamber comprising at least one electrode coated with a non-evaporable getter (NEG) material.11-20-2008
20100134001SHORT ARC TYPE DISCHARGE LAMP - To stabilize the illumination fluctuation rate of a short arc type discharge lamp of the type having a pair of electrodes disposed inside an arc tube in a manner of facing each other and a hydrogen getter, by absorbing hydrogen gas in an arc tube without causing a decline in the performance of the short arc type discharge lamp arising out of a hydrogen getter, the hydrogen getter is formed of a hollow container made of a material that allows the transmission of hydrogen with a getter material sealed tightly inside the hollow container, and a holder for the hydrogen getter is held on the electrode with the hydrogen getter fixed in the holder.06-03-2010
20110204774SUPPORT FOR FILIFORM ELEMENTS CONTAINING AN ACTIVE MATERIAL - A support for filiform elements containing an active material in form of powders is described, comprising anchoring means of the support and blocking means for the filiform element, a method for manufacturing said support and lamps wherein said supports are employed.08-25-2011
20140292186VACUUM FIRED AND BRAZED ION PUMP ELEMENT - A Vacuum Fired and Brazed (“VFB”) anode array element for use in an ion pump is described. The VFB anode array element includes a first VFB conduit anode element and second VFB conduit anode element, wherein the second VFB conduit anode element is adjacent the first VFB conduit anode element. The first VFB conduit anode element is vacuum brazed together with second VFB conduit anode element.10-02-2014
313561000 With contained getter 4
20100039032High Pressure Discharge Lamp - The frame that holds a discharge vessel in an outer bulb is manufactured from Nb or Zr, said frame acting as getter in an evacuated outer bulb.02-18-2010
20100060159DISCHARGE LAMP - To provide a flickerless discharge lamp which can remove hydrogen by a simple and safe means even if the lamp is a large discharge lamp with high pressure when lit, the discharge lamp has a pair of electrodes and a hydrogen getter (03-11-2010
20100201263VACUUM DEGASSING BOX OF A FIELD EMISSION DISPLAY - In a vacuum degassing box of a field emission display, the field emission display includes a faceplate, and the faceplate has a chamber and a through opening which is defined on the faceplate and communicated with the chamber. The vacuum degassing box includes a housing and a getter. The through opening of the faceplate is covered by the housing. A contained chamber is formed between the housing and the faceplate, and a rough surface is formed inside the contained chamber. The getter is distributed on the rough surface of the contained chamber. Therefore, a vacuum condition of the vacuum degassing box is kept for a long time to increase use life of the field emission display.08-12-2010
20140175974GAS DISCHARGE LAMP WITH GETTER AND METHOD FOR PRODUCING A GAS DISCHARGE LAMP - A gas discharge lamp may include: a discharge vessel; getter material in the discharge vessel, wherein the getter material has been introduced into the discharge vessel in anhydrous form. A method for producing the gas discharge lamp may include: introducing getter material into the discharge vessel of the gas discharge lamp, wherein the getter material is introduced into the discharge vessel in anhydrous form.06-26-2014
313562000 Gas or vapor device type 6
20090174327RAPID RE-STRIKE CERAMIC DISCHARGE METAL HALIDE LAMP - The hot re-strike time of a high wattage (150 W or greater) ceramic discharge metal halide (CDM) lamp is reduced by: (a) increasing the ratio A of the diameter (D07-09-2009
20090251053HIGH WATT CERAMIC HALIDE LAMP - An electroded high watt ceramic metal halide lamp assembly is provided which comprises a light transmissive arc-tube surrounding at least one electrode, a fill disposed in the arc-tube that includes at least one metal halide component and at least one metallic halide getter. The metallic halide getter has a Gibbs Free Energy greater than mercury halide and less than thallium halide, vapor pressure less than mercury halide, free energy of formation of oxide less than Aluminum oxide.10-08-2009
20090267510DISCHARGE LAMP - In a discharge lamp comprising a discharge vessel enclosed with space by an outer, a hydrogen getter is used comprising more than 70% by weight of Y and one or more Y alloys from Al and/or Mn. The getter effectively removes hydrogen from the outer bulb.10-29-2009
20110006675Xenon short arc lamp for digital a projector - A xenon short arc lamp for a digital projector, includes an anode, a cathode having a cathode main body that is made of tungsten containing electron emissive material, and an arc tube made of silica glass, wherein a supply source of carbon is formed on a metal portion in the arc tube except a tip area of the cathode, and the carbon is supplied to the tip of the cathode through a gaseous phase during lamp lighting, so that a surface layer of the cathode is melt.01-13-2011
20130270995LIGHTING APPARATUS FOR CAPTURING AND STABILIZING MERCURY - The present invention is a method and material for using a sorbent material to capture and stabilize mercury. The method for using sorbent material to capture and stabilize mercury contains the following steps. First, the sorbent material is provided. The sorbent material, in one embodiment, is nano-particles. In a preferred embodiment, the nano-particles are unstabilized nano-Se. Next, the sorbent material is exposed to mercury in an environment. As a result, the sorbent material captures and stabilizes mercury from the environment. In the preferred embodiment, the environment is an indoor space in which a fluorescent has broken.10-17-2013
20150357178HIGH INTENSITY DISCHARGE LAMPS WITH DOSING AID - A ceramic metal halide lamp according to various embodiments can include a discharge vessel and an ionizable fill. The ionizable fill is sealed within the discharge vessel. The ionizable fill includes an oxygen dispenser to introduce oxygen in a form of a pellet into the discharge vessel in a controlled manner to facilitate a tungsten halogen wall cleaning cycle. The pellet comprises aluminum-oxide and molybdenum-oxide.12-10-2015

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