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    • 2. 发明授权
    • Discharge tube
    • 放电管
    • US08796925B2
    • 2014-08-05
    • US13698138
    • 2011-05-10
    • Koichi ImaiYoshikazu HanamuraTakeshi Nishigata
    • Koichi ImaiYoshikazu HanamuraTakeshi Nishigata
    • H01J17/00
    • H01T4/12H01T1/20
    • A discharge tube 10 includes first electrode 12, second electrode 14 and third electrode 16 which are arranged in parallel, airtight outer enclosure 22 including first tubular body 18 sandwiched between first electrode 12 and second electrode 14, and second tubular body 20 sandwiched between second electrode 14 and third electrode 16. Through-holes 24 is formed in second electrode 14 and allows internal spaces of first tubular body 18 and second tubular body 20 to communicate with each other. On first electrode 12 and third electrode 16, discharge electrode portions 26 are formed which protrude toward a center of airtight outer enclosure 22 and are disposed opposite to each other with discharge gap 28 provided in between, and discharge gas is filled in airtight outer enclosure 22. The discharge electrode portions 26 are inserted and arranged in through-hole 24 of second electrode 14.
    • 放电管10包括平行布置的第一电极12,第二电极14和第三电极16,气密外壳22包括夹在第一电极12和第二电极14之间的第一管状体18和夹在第二电极之间的第二管状体20 14和第三电极16.通孔24形成在第二电极14中,并且允许第一管状体18和第二管状体20的内部空间彼此连通。 在第一电极12和第三电极16上形成有朝向气密外壳22的中心突出的放电电极部26,并且彼此相对设置有设置在其间的放电间隙28,并且放电气体填充在气密的外壳22中 放电电极部分26插入并布置在第二电极14的通孔24中。
    • 5. 发明授权
    • Electric discharge lamp having ceramic luminous tube
    • 具有陶瓷发光管的放电灯
    • US08049422B2
    • 2011-11-01
    • US12276502
    • 2008-11-24
    • Toshiaki TsudaYukihiro Onoda
    • Toshiaki TsudaYukihiro Onoda
    • H01J11/00H01J17/00H01J17/20H01J61/12
    • H01J61/827H01J61/34
    • An electric discharge lamp has a ceramic luminous tube 5 and filled with xenon gas, a pair of electrodes 9, 10 held by the ceramic luminous tube, and a glass outer tube 6 accommodating the ceramic luminous tube and the pair of electrodes. The ceramic luminous tube includes a luminous portion 7 emitting light by electric discharge, and a pair of small diameter tube portions 8, 8 respectively connected to both end portions of the luminous portion in a longitudinal direction. Value of P/(r•t) is not less than 4.8 and not more than 32, where P (atm) is pressure of xenon gas filled into the ceramic luminous tube, r (mm) is an inner diameter of the luminous portion of the ceramic luminous tube, and t (mm) is thickness of the luminous portion of the ceramic luminous tube.
    • 放电灯具有陶瓷发光管5并填充有氙气体,由陶瓷发光管保持的一对电极9,10和容纳陶瓷发光管和一对电极的玻璃外管6。 陶瓷发光管包括通过放电发光的发光部分7和分别连接到发光部分的纵向两端部的一对小直径管部分8,8。 P /(r·t)的值不小于4.8且不大于32,其中P(atm)是填充到陶瓷发光管中的氙气的压力,r(mm)是发光部分的内径 陶瓷发光管,t(mm)是陶瓷发光管的发光部的厚度。
    • 7. 发明申请
    • EVALUATION METHOD OF DEVICE LAYER STRUCTURE DESIGN FOR LIGHT EMITTING DEVICE, EVALUATION APPARATUS AND LIGHT EMITTING DEVICE
    • 用于发光装置的设备层结构设计的评估方法,评估装置和发光装置
    • US20100194261A1
    • 2010-08-05
    • US12669697
    • 2008-06-26
    • Fumihiro Sakano
    • Fumihiro Sakano
    • H01J17/00G01J3/46
    • G06F17/5009G06F17/5018H01L51/5265
    • The present invention is intended to evaluate outgoing light from a light emitting device including a structure in which four or more layers of thin films, including a light-emitting layer, are laminated, in a shorter period of computation time, as compared with conventional methods. An evaluation method for the device layer structure design of a light emitting device is a method for evaluating outgoing light from a light emitting device including a structure in which four or more layers of thin films, including a light-emitting layer, are laminated, using an information processing apparatus, the method including: an input step (S01) of inputting parameters of the thin films constituting the light emitting device and information indicating a spectrum of light emitted from the light-emitting layer; a spectrum calculation step (S03) of generating information based on the parameters input in the input step and indicating the light emitting device divided into meshes only in the lamination direction of the thin films, and calculating a spectrum of outgoing light from the light emitting device by an FDTD method using the generated information and the information indicating the spectrum of the light emitted from the light-emitting layer; and a spectrum information output step (S03) of outputting information indicating the calculated spectrum of outgoing light.
    • 本发明旨在评估来自包括其中层叠四层或更多层薄膜(包括发光层)的结构的发光器件的输出光,与传统方法相比,在更短的计算时间内 。 发光器件的器件层结构设计的评估方法是用于评估来自发光器件的出射光的方法,该发光器件包括其中层叠有包含发光层的四层或更多层薄膜的结构,其中使用 一种信息处理装置,该方法包括:输入构成发光装置的薄膜的参数的输入步骤(S01)和表示从发光层发射的光谱的信息; 基于在输入步骤中输入的参数产生信息的频谱计算步骤(S03),并且仅在薄膜的层叠方向上指示分为网格的发光器件,并计算来自发光器件的出射光谱 通过使用所生成的信息的FDTD方法和表示从发光层发射的光的光谱的信息; 以及频谱信息输出步骤(S03),输出表示计算出的出射光谱的信息。
    • 10. 发明授权
    • Plasma display panel
    • 等离子显示面板
    • US07679288B2
    • 2010-03-16
    • US11727905
    • 2007-03-28
    • Jung-Suk SongJoon-Hyeong Kim
    • Jung-Suk SongJoon-Hyeong Kim
    • H01J17/00
    • H01J11/54H01J11/12
    • A plasma display panel that includes a first substrate affixed to a second substrate, a plurality of discharge cells arranged between the first and the second substrates to define a display area, an exhaust aperture included in at least one of the first and the second substrates, frit arranged around the exhaust aperture, an application area of the frit being on a side of the exhaust aperture closest to the display area being less than an application area of the frit on a side of the exhaust aperture furthest from the display area and an exhaust tube attached, via said frit, to the at least one of the first and the second substrates to communicate with said exhaust aperture. The application area of the frit is skewed so as to minimize the occurrence of a stain in a portion of the display area near the exhaust aperture.
    • 一种等离子体显示面板,包括固定到第二基板的第一基板,布置在第一和第二基板之间的多个放电单元,以限定显示区域,包括在第一和第二基板中的至少一个基板中的排气孔, 玻璃料布置在排气孔附近,玻璃料的最靠近显示区域的排气孔的一侧的施加区域小于最远离显示区域的排气孔一侧的玻璃料的施加区域,排气口 通过所述玻璃料连接到所述第一和第二基板中的至少一个,以与所述排气孔连通。 玻璃料的应用区域是倾斜的,以便最小化在排气孔附近的显示区域的一部分中的污渍的发生。