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    • 2. 发明授权
    • Segmented dielectric barrier discharge lamp
    • 分段电介质阻挡放电灯
    • US07990038B2
    • 2011-08-02
    • US11722889
    • 2006-01-02
    • Georg GreuelWolfgang SchieneNorbert Braun
    • Georg GreuelWolfgang SchieneNorbert Braun
    • H01J1/62
    • H01J65/00
    • The subject of the present invention is a dielectric barrier discharge (DBD-) lamp (1) for generating and emitting ultraviolet radiation comprising: —a housed discharge gap (3), whereby the housing has at least two walls, whereby at least one of the walls is a dielectric wall and at least one of the walls has an at least partly transparent part, a filling located inside the discharge gap (3), at least two electrical contacting means for electrical contacting associated with at least the two walls, respectively, whereby the discharge gap (3) is formed by at least two discharge sub-volumes (7) and/or discharge sub-areas (8) differing in at least one of their discharge parameters for realizing at least two dominant emission regimes and/or one emission regime with different radiant intensities and a method for producing said DBD-lamp (1).
    • 本发明的目的是用于产生和发射紫外线辐射的介质阻挡放电(DBD)灯(1),包括: - 容纳的放电间隙(3),由此所述壳体具有至少两个壁,由此至少一个 所述壁是电介质壁,并且所述壁中的至少一个具有至少部分透明的部分,位于所述放电间隙(3)内的填充物,分别与至少两个壁相关联的至少两个电接触装置 ,由此排放间隙(3)由至少两个其排放参数中的至少一个不同的至少两个放电子体积(7)和/或排出子区域(8)形成,以实现至少两个主要排放方案和/ 或具有不同辐射强度的一个发射方案和用于制造所述DBD灯(1)的方法。
    • 5. 发明申请
    • DIELECTRIC BARRIER DISCHARGE LAMP
    • 介电障碍物放电灯
    • US20100244688A1
    • 2010-09-30
    • US12744083
    • 2008-07-09
    • Norbert BraunGeorg Greuel
    • Norbert BraunGeorg Greuel
    • H01J61/04H01J61/30H01J61/36
    • H01J65/046
    • It is provided a dielectric barrier discharge lamp (10) for providing ultraviolet light, comprising an outer tube (12) filled with a discharge gas for providing ultraviolet light, an inner tube (14) arranged at least partially inside the outer tube (12), an outer electrode (16) electrically connected to the outer tube (12) and an inner electrode (18) electrically connected to the inner tube (14), wherein the inner electrode (18) comprises a conductor (20) and a plurality of an conductive granulated material (22) for providing an electrical contact between the conductor (20) and the inner tube (14). Due to the conductive granulated material (22) an electrical contact between the conductor (20) and the inner tube (14) is safeguarded and different thermal expansions of the inner electrode (18) and the inner tube (14) are compensated at the same time without applying mechanical stress to the inner tube (14). This leads to a dielectric barrier discharge lamp (10), which comprises an increased life time without the need for external cooling.
    • 提供一种用于提供紫外线的介质阻挡放电灯(10),包括填充有用于提供紫外光的放电气体的外管(12),至少部分地布置在外管(12)内部的内管(14) ,电连接到外管(12)的外电极(16)和与内管(14)电连接的内电极(18),其中内电极(18)包括导体(20)和多个 用于在导体(20)和内管(14)之间提供电接触的导电粒状材料(22)。 由于导电粒状材料(22),导体(20)和内管(14)之间的电接触被保护,并且内部电极(18)和内管(14)的不同的热膨胀在相同的情况下被补偿 而不对内管(14)施加机械应力。 这导致介电阻挡放电灯(10),其包括延长的寿命而不需要外部冷却。
    • 6. 发明申请
    • Segmented Dielectric Barrier Discharge Lamp
    • 分段介质阻挡放电灯
    • US20080093971A1
    • 2008-04-24
    • US11722889
    • 2006-01-02
    • Georg GreuelWolfgang SchieneNorbert Braun
    • Georg GreuelWolfgang SchieneNorbert Braun
    • H01J1/62H01J9/02
    • H01J65/00
    • The subject of the present invention is a dielectric barrier discharge (DBD-) lamp (1) for generating and emitting ultraviolet radiation comprising: —a housed discharge gap (3), whereby the housing has at least two walls, whereby at least one of the walls is a dielectric wall and at least one of the walls has an at least partly transparent part, a filling located inside the discharge gap (3), at least two electrical contacting means for electrical contacting associated with at least the two walls, respectively, whereby the discharge gap (3) is formed by at least two discharge sub-volumes (7) and/or discharge sub-areas (8) differing in at least one of their discharge parameters for realizing at least two dominant emission regimes and/or one emission regime with different radiant intensities and a method for producing said DBD-lamp (1).
    • 本发明的目的是用于产生和发射紫外线辐射的介质阻挡放电(DBD)灯(1),包括: - 容纳的放电间隙(3),由此所述壳体具有至少两个壁,由此至少一个 所述壁是电介质壁,并且所述壁中的至少一个具有至少部分透明的部分,位于所述放电间隙(3)内的填充物,分别与至少两个壁相关联的至少两个电接触装置 ,由此排放间隙(3)由至少两个其排放参数中的至少一个不同的至少两个排放子体积(7)和/或排放子区域(8)形成,以实现至少两个主要排放方案和/ 或具有不同辐射强度的一个发射方案和用于制造所述DBD灯(1)的方法。
    • 7. 发明申请
    • DIELECTRIC BARRIER DISCHARGE LAMP
    • 介电障碍物放电灯
    • US20100164410A1
    • 2010-07-01
    • US12595064
    • 2008-04-14
    • Georg GreuelWolfgang SchieneNorbert Braun
    • Georg GreuelWolfgang SchieneNorbert Braun
    • H01J61/54
    • H01J61/545H01J65/046
    • A dielectric barrier discharge (DBD-) lamp (1) comprising a discharge volume (2) which is delimited by a first and a second wall (4, 5) is disclosed, wherein both walls (4, 5) are exposed to different electrical potentials by means of a power supply (11) for exciting a gas discharge within the discharge volume (2). By providing at least one electrically conductive ignition aid or igniter which extends within the discharge volume (2) and which electrically contacts the first and the second wall (4, 5) with each other, a significant reduction of the initial ignition voltage of the lamp (1) can be obtained, especially after long pauses of operation of the lamp (1).
    • 公开了一种包括由第一和第二壁(4,5)限定的排出容积(2)的电介质阻挡放电(DBD-)灯(1),其中两个壁(4,5)暴露于不同的电 借助于用于激发放电容积(2)内的气体放电的电源(11)的电位。 通过提供至少一个在排出容积(2)内延伸并且与第一和第二壁(4,5)电接触的导电点火助剂或点火器,使得灯的初始点火电压显着降低 (1),特别是在长时间停止灯(1)的操作之后。
    • 8. 发明授权
    • Dielectric barrier discharge lamp
    • 介质阻挡放电灯
    • US08212478B2
    • 2012-07-03
    • US12595064
    • 2008-04-14
    • Georg GreuelWolfgang SchieneNorbert Braun
    • Georg GreuelWolfgang SchieneNorbert Braun
    • H01J11/00
    • H01J61/545H01J65/046
    • A dielectric barrier discharge (DBD-) lamp (1) comprising a discharge volume (2) which is delimited by a first and a second wall (4, 5) is disclosed, wherein both walls (4, 5) are exposed to different electrical potentials by means of a power supply (11) for exciting a gas discharge within the discharge volume (2). By providing at least one electrically conductive ignition aid or igniter which extends within the discharge volume (2) and which electrically contacts the first and the second wall (4, 5) with each other, a significant reduction of the initial ignition voltage of the lamp (1) can be obtained, especially after long pauses of operation of the lamp (1).
    • 公开了一种包括由第一和第二壁(4,5)限定的排出容积(2)的电介质阻挡放电(DBD-)灯(1),其中两个壁(4,5)暴露于不同的电 借助于用于激发放电容积(2)内的气体放电的电源(11)的电位。 通过提供至少一个在排出容积(2)内延伸并且与第一和第二壁(4,5)电接触的导电点火助剂或点火器,使得灯的初始点火电压显着降低 (1),特别是在长时间停止灯(1)的操作之后。
    • 9. 发明授权
    • Dielectric barrier discharge lamp
    • 介质阻挡放电灯
    • US08106588B2
    • 2012-01-31
    • US12744083
    • 2008-07-09
    • Norbert BraunGeorg Greuel
    • Norbert BraunGeorg Greuel
    • H05J65/04
    • H01J65/046
    • It is provided a dielectric barrier discharge lamp (10) for providing ultraviolet light, comprising an outer tube (12) filled with a discharge gas for providing ultraviolet light, an inner tube (14) arranged at least partially inside the outer tube (12), an outer electrode (16) electrically connected to the outer tube (12) and an inner electrode (18) electrically connected to the inner tube (14), wherein the inner electrode (18) comprises a conductor (20) and a plurality of an conductive granulated material (22) for providing an electrical contact between the conductor (20) and the inner tube (14). Due to the conductive granulated material (22) an electrical contact between the conductor (20) and the inner tube (14) is safeguarded and different thermal expansions of the inner electrode (18) and the inner tube (14) are compensated at the same time without applying mechanical stress to the inner tube (14). This leads to a dielectric barrier discharge lamp (10), which comprises an increased life time without the need for external cooling.
    • 提供一种用于提供紫外线的介质阻挡放电灯(10),包括填充有用于提供紫外光的放电气体的外管(12),至少部分地布置在外管(12)内部的内管(14) ,电连接到外管(12)的外电极(16)和与内管(14)电连接的内电极(18),其中内电极(18)包括导体(20)和多个 用于在导体(20)和内管(14)之间提供电接触的导电粒状材料(22)。 由于导电粒状材料(22),导体(20)和内管(14)之间的电接触被保护,并且内部电极(18)和内管(14)的不同的热膨胀在相同的情况下被补偿 而不对内管(14)施加机械应力。 这导致介电阻挡放电灯(10),其包括延长的寿命而不需要外部冷却。