会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 6. 发明授权
    • Coplanar-type plasma panel with improved matrix structure arrangement
    • 具有改进的矩阵结构布置的共面型等离子体面板
    • US06437505B1
    • 2002-08-20
    • US09451213
    • 1999-11-29
    • Guy BaretPierre Paul JobertYvan Raverdy
    • Guy BaretPierre Paul JobertYvan Raverdy
    • H01J1749
    • H01J11/36H01J11/12H01J11/32H01J2211/326
    • The present invention relates to a plasma panel comprising a first tile called the rear tile and a second tile called the front tile, the two tiles being joined together with a distance of separation defining a space filled with gas, a first array of electrodes which is formed from a set of two parallel electrodes, called the sustaining electrodes, and which is placed on one of the tiles, a second array of electrodes called the addressing electrodes which is placed on the other tile, and an array of barriers which is placed on one of the tiles parallel to the array of addressing electrodes. According to the invention, the array of barriers is positioned on the tile carrying the first array of electrodes, the barriers having a height of less than the distance of separation between the two tiles and the separation between the two tiles is obtained by specific spacing means.
    • 等离子体面板技术领域本发明涉及一种等离子体面板,其包括称为后瓦片的第一瓦片和称为前瓦片的第二瓦片,所述两个瓦片以限定充满气体的空间的间隔距离连接在一起,第一电极阵列 由一组称为维持电极的平行电极形成,并且其被放置在瓦片之一上,被称为寻址电极的第二阵列阵列放置在另一个瓦片上,并且屏蔽阵列放置在 平铺于寻址电极阵列的瓦片之一。 根据本发明,阻挡阵列位于承载第一电极阵列的瓦片上,该阻挡层的高度小于两个瓦片之间的间隔距离,并且两个瓦片之间的间隔通过特定的间隔装置 。
    • 7. 发明授权
    • Input screen for radiological image intensifier tube utilizing an
anti-reflecting layer
    • 用于放射图像增强管的输入屏幕,使用反反射层
    • US5146076A
    • 1992-09-08
    • US640386
    • 1991-01-23
    • Yvan RaverdyFrancois ChareyrePaul De Grott
    • Yvan RaverdyFrancois ChareyrePaul De Grott
    • G01T1/20A61B6/00A61B6/03G01J1/28G01T1/28G21K4/00H01J29/38H01J31/50
    • H01J29/385G01J1/28G01T1/28
    • An input screen for radiological image intensifier tube that includes a scintillator (12), deposited on an aluminum substrate (10), which converts incident X-photons into visible photons which then go on to excite a photocathode (16). Previously, the luminous photons produced by the scintillator were emitted towards and were reflected by the aluminum layer; but this reflection reduces the resolution. According to the invention, in order to suppress this reflection, an input screen--in which a thin layer (20), transparent or slightly absorbent to the wavelengths emitted by the scintillator and or size to cause an anti-reflecting effect--is interposed between the aluminum substrate and the scintillator. Choices of anti-reflecting slightly absorbent layer include indium oxide, or alternatively antimony, tin or bismuth oxide, or a combination of these oxides, such as indium-tin oxide. The thickness is from a few hundred to a few thousand angstroms.
    • PCT No.PCT / FR90 / 00340 Sec。 371日期1991年1月23日 102(e)日期1991年1月23日PCT提交1990年5月15日PCT公布。 WO90 / 15432 PCT出版物 日期1990年12月13日。一种用于放射图像增强管的输入屏幕,其包括沉积在铝基板(10)上的闪烁体(12),其将入射的X光子转换成可见光子,然后继续激发光电阴极( 16)。 以前,由闪烁体产生的发光光子向铝层发射并被铝层反射; 但这种反射降低了分辨率。 根据本发明,为了抑制这种反射,对于由闪烁器发射的波长透明或稍微吸收的薄层(20)或者引起防反射效应的尺寸的输入屏(20)插入在其中, 铝基板和闪烁体。 抗反射轻微吸收层的选择包括氧化铟,或者锑,锡或氧化铋,或这些氧化物的组合,例如氧化铟锡。 厚度从几百到几千埃。