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    • 2. 发明授权
    • Xenon excimer radiation source with fluorescent materials
    • 具有荧光材料的氙准分子辐射源
    • US5714835A
    • 1998-02-03
    • US525757
    • 1995-09-25
    • Martin ZachauDieter SchmidtUlrich Muller
    • Martin ZachauDieter SchmidtUlrich Muller
    • C09K11/00C09K11/02C09K11/08C09K11/64C09K11/77C09K11/78C09K11/79C09K11/80C09K11/81G21K5/00H01J61/35H01J61/42H01J61/44H01J61/46H01J61/76H01J65/00H01J65/04H05B41/00H05B41/24H05B41/28H05B41/282H01J1/62
    • H01J61/46C09K11/025C09K11/7774C09K11/7777C09K11/7792C09K11/7797H01J61/42H01J61/44H01J61/76H01J65/00H01J65/046H05B41/2806Y02B20/22
    • A xenon excimer (Xe.sub.2) radiation source for producing vacuum ultraviolet (VUV), broad-band, molecular radiation of wavelengths shorter than 200 nm includes fluorescent materials for excitation by the VUV radiation and illumination purposes. The fluorescent materials include a mixed borate with the general formula: (Y.sub.x Gd.sub.y Eu.sub.z)BO.sub.3 ; a mixed aluminate with the general formula: (B.sub.a Eu.sub.y)MgAl.sub.10 O.sub.17 ; a mixed aluminate with the general formula: (Y.sub.x Gd.sub.y Eu.sub.z).sub.3 Al.sub.5 O.sub.12 ; a mixed silicate with the general formula: (Y.sub.x Sc.sub.y Tb.sub.z).sub.2 SiO.sub.5 ; a mixed borate with the general formula: (Y.sub.x Gd.sub.y Tb.sub.z)BO.sub.3 ; and a mixed phosphate with the general formula: (Ln.sub.x Ce.sub.y Sc.sub.w Tb.sub.z)PO.sub.3. In an alternate embodiment, a fluorescent lamp includes a xenon excimer radiation source for producing vacuum ultraviolet (VUV) radiation, and fluorescent materials for excitation by the VUV radiation and illumination purposes, wherein the fluorescent materials includes a red fluorescent material of a mixed borate with the general formula: (Y.sub.x Gd.sub.y Eu.sub.z)BO.sub.3 ; a green fluorescent material of a mixed phosphate with the general formula: (Ln.sub.x Ce.sub.y Sc.sub.w Tb.sub.z)PO.sub.3 wherein Ln is either La, Y, or Gd; and a blue fluorescent material of a mixed aluminate with the general formula: (Ba.sub.x Eu.sub.y)MgAl.sub.10 O.sub.17.
    • PCT No.PCT / DE94 / 00382 Sec。 371 1995年9月25日第 102(e)1995年9月25日PCT PCT 1994年4月5日PCT公布。 第WO94 / 22975号公报 日期1994年10月13日用于产生真空紫外线(VUV)的氙准分子(Xe2)辐射源,波长短于200nm的宽带分子辐射包括用于通过VUV辐射和照明目的激发的荧光材料。 荧光材料包括具有以下通式的混合硼酸盐:(YxGdyEuz)BO3; 具有以下通式的混合铝酸盐:(BaEuy)MgAl10O17; 具有以下通式的混合铝酸盐:(YxGdyEuz)3Al5O12; 具有以下通式的混合硅酸盐:(YxScyTbz)2 SiO 5; 具有以下通式的混合硼酸盐:(YxGdyTbz)BO3; 和具有以下通式的混合磷酸盐(LnxCeyScwTbz)PO3。 在替代实施例中,荧光灯包括用于产生真空紫外(VUV)辐射的氙准分子辐射源和用于通过VUV辐射和照明目的激发的荧光材料,其中荧光材料包括混合硼酸盐的红色荧光材料, 通式:(YxGdyEuz)BO3; 具有以下通式的混合磷酸盐的绿色荧光材料:(LnxCeyScwTbz)PO3,其中Ln是La,Y或Gd; 和具有以下通式的混合铝酸盐的蓝色荧光材料:(BaxEuy)MgAl10O17。
    • 8. 发明申请
    • Dosing System and Method for the Dosing of a Medium
    • 中等剂量给药系统和方法
    • US20110148597A1
    • 2011-06-23
    • US13059362
    • 2009-11-05
    • Oscar-Werner ReifReinhard BaurnfalkDieter SchmidtChristian OldendorfSwen Weitemeier
    • Oscar-Werner ReifReinhard BaurnfalkDieter SchmidtChristian OldendorfSwen Weitemeier
    • G06K7/01
    • B01F13/1055B01F15/0445
    • A dosing system and a method for dosing a medium, having a dosing control unit (4), at least one exchangeable container (2) containing a medium to be dosed, and a dosing valve (3, 3′) that can be connected to the container (2), wherein at least one part of the dosing valve (3, 3′) that comes into contact with the medium is designed as an exchangeable system component (7, 10) and has a machine-readable code for identification purposes, wherein at least one container (2), as an exchangeable system component (2), has a machine-readable code for identification purposes, wherein the exchangeable parts (2, 7, 10, 19) that come into contact with the medium are designed as disposable parts, and wherein the dosing control unit (4) is connected with a communication unit (5) to read the codes, and wherein the communication unit (5) has a unique read connection (22) to each exchangeable system component (2, 7, 10, 19) or its code.
    • 一种定量给料系统和一种用于计量介质的方法,所述计量系统和方法具有计量控制单元(4),包含待计量介质的至少一个可替换容器(2)和可连接到 所述容器(2),其中与所述介质接触的所述计量阀(3,3')的至少一部分被设计为可更换系统部件(7,10),并且具有用于识别目的的机器可读代码 ,其中作为可交换系统组件(2)的至少一个容器(2)具有用于识别目的的机器可读代码,其中与介质接触的可更换部件(2,7,10,19)是 设计为一次性部件,并且其中所述计量控制单元(4)与通信单元(5)连接以读取代码,并且其中所述通信单元(5)具有到每个可更换系统组件的唯一读取连接(22) 2,7,10,19)或其代码。