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
    • 21. 发明授权
    • Lamp holder for a dielectric barrier discharge lamp
    • 介质阻挡放电灯用灯座
    • US07855492B2
    • 2010-12-21
    • US11816533
    • 2006-02-14
    • Wolfgang SchieneGeorg GreuelMichael SchaafAndreas Poque
    • Wolfgang SchieneGeorg GreuelMichael SchaafAndreas Poque
    • H01J7/24
    • H01J65/046C02F1/32H01J5/48
    • A lamp holder for a dielectric barrier discharge (DBD) lamp (1), especially for use in a treatment system or reactor or housing or in an irradiation apparatus, for radiating a medium like a fluid and/or a gas and/or a solid material by means of the DBD lamp (1) is disclosed. The holder substantially comprises two end caps (21, 31) at the axial ends of the lamp (1) and an inner electrode (23, 24; 33, 34) with a screw fitting (SF) for exerting an axial pressure on both axial ends of the lamp (I) via both end caps (21, 31) and with axial bores (25, 35) into an inner volume (14) for guiding especially a cooling medium and for electrically contacting an inner tube (II) of the lamp (1). The holder has a comparatively simple construction and can easily be assembled. Furthermore, even larger tolerances of the lamp length can be compensated and a reliable sealing of the inner volume (14) against the outside of the lamp (1) is achieved.
    • 一种用于电介质阻挡放电(DBD)灯(1)的灯座,特别用于处理系统或电抗器或壳体或照射设备中,用于辐射介质如流体和/或气体和/或固体 公开了借助于DBD灯(1)的材料。 保持器基本上包括在灯(1)的轴向端部处的两个端盖(21,31)和具有螺钉配件(SF)的内部电极(23,24; 33,34),用于在两个轴向上施加轴向压力 灯头(I)的端部经由两个端盖(21,31)和轴向孔(25,35)进入内部容积(14),用于特别引导冷却介质并用于电连接 灯(1)。 支架具有相对简单的结构,可以方便地组装。 此外,可以补偿灯长度的更大公差,并且实现内部容积(14)相对于灯(1)的外部的可靠的密封。
    • 23. 发明授权
    • Planar transformer with boards
    • 平板变压器带板
    • US08378775B2
    • 2013-02-19
    • US12596495
    • 2008-04-17
    • Wolfgang SchieneGeorg GreuelMarc Maria Alex BleukxRoman Siegfried Schichl
    • Wolfgang SchieneGeorg GreuelMarc Maria Alex BleukxRoman Siegfried Schichl
    • H01F5/00H01F27/02H01F27/28
    • H01F19/04H01F27/2804
    • Transformers (1) for transforming primary signals into secondary signals comprise primary and secondary parts that comprise boards (11-14, 21-23) with turns. By introducing distances larger than zero between for example any pair of neighboring boards (11-14, 21-23), parasitic capacitances of the transformers (1) are reduced, and the secondary signals may comprise relatively fast/high voltage pulses having rise times >1 kV/μsec. To reduce proximity effects and any resulting losses, the primary and secondary boards (11-14, 21-23) may be stacked in interleaved ways. Such sandwich constructions reduce leakage inductances. In a particular direction, distances between subsequent primary boards (11-14, 21-23) and distances between subsequent combinations of primary and secondary boards (11-14, 21-23) are to be increased to further reduce capacitive losses in that particular direction. Relatively low voltage differences may be present between relatively close boards (11-14, 21-23), and relatively high voltage differences may be present between boards (11-14, 21-23) that are relatively far away from each other.
    • 用于将主信号变换成次信号的变压器(1)包括具有转弯的板(11-14,21-23)的主零件和次零件。 通过在例如任何一对相邻板(11-14,21-23)之间引入大于零的距离,变压器(1)的寄生电容被减小,并且次级信号可以包括具有上升时间的相对快速/高电压脉冲 > 1 kV /μsec。 为了减少邻近效应和任何所造成的损失,主板和次板(11-14,21-23)可以以交错方式堆叠。 这种三明治结构减少漏电感。 在特定方向上,要增加后续主板(11-14,21-23)之间的距离以及主板和次板(11-14,21-23)的后续组合之间的距离,以进一步降低该特定板 方向。 相对较小的电路板(11-14,21-23)之间可能存在相对较低的电压差异,并且彼此相对较远的电路板(11-14,21-23)之间可能存在相对高的电压差异。
    • 25. 发明申请
    • SENSING UV DOSAGE OF A FLUID STREAM
    • 感染流体的紫外线剂量
    • US20120175524A1
    • 2012-07-12
    • US13496641
    • 2010-09-24
    • Georg Greuel
    • Georg Greuel
    • G01J1/44
    • G01J1/429C02F2201/326G01F1/68G01F1/688G01F1/6884G01J1/44G01J5/0846
    • Devices and Methods for sensing UV dosage of a fluid stream are described. In a first aspect, a device 22 has a first sensor arrangement 44 for measuring a flow speed of the fluid and a second sensor arrangement 50 for measuring an intensity of UV light radiation. A dosage calculation unit 36 calculates a dosage value from measurements of the sensor arrangements 44, 50. The first sensor arrangement includes a resistive electrical component 32 in thermal contact with the fluid. The electrical component 32 may be heated by an electrical current and has a temperature dependent electrical resistance. Thus, the first sensor arrangement may be used to determine the flow speed of the fluid from a cooling rate of the resistive electrical component 32. According to a second aspect, a device 70 includes at least one UV sensor component 76 for measuring an intensity of UV light irradiation. A data storage 82 for storing intensity or dosage values and an electrical power storage 88 are provided. The device is adapted to freely float within the fluid stream. As such, the device 70 may be inserted into a fluid flowing through a channel, and a dosage value may be determined from data stored in the data storage after the device 70 has passed through the channel.
    • 描述了用于感测流体流的UV剂量的装置和方法。 在第一方面,装置22具有用于测量流体的流速的第一传感器装置44和用于测量UV光辐射强度的第二传感器装置50。 剂量计算单元36从传感器装置44,50的测量中计算剂量值。第一传感器装置包括与流体热接触的电阻电气部件32。 电气部件32可以被电流加热并且具有依赖于温度的电阻。 因此,第一传感器装置可用于根据电阻电气部件32的冷却速率来确定流体的流速。根据第二方面,装置70包括至少一个UV传感器部件76,用于测量 紫外线照射。 提供用于存储强度或剂量值的数据存储器82和电力存储器88。 该装置适于在流体流内自由浮动。 因此,装置70可以插入流过通道的流体中,并且可以在装置70已经通过通道之后从存储在数据存储器中的数据确定剂量值。
    • 26. 发明申请
    • FLUID TREATMENT SYSTEM COMPRISING RADIATION SOURCE MODULE AND COOLING MEANS
    • 包含辐射源模块和冷却装置的流体处理系统
    • US20090257926A1
    • 2009-10-15
    • US12307946
    • 2007-07-05
    • Wolfgang SchieneGeorg Greuel
    • Wolfgang SchieneGeorg Greuel
    • B01J19/08
    • C02F1/32A61L2/10C02F1/325C02F2303/04
    • In a fluid treatment system comprising a housing with a fluid inlet and a fluid outlet for a process fluid, an irradiation zone disposed between the fluid inlet and fluid outlet, and at least one radiation source module comprising at least one radiation source comprising a discharge vessel with an outer wall and an inner wall, the inner wall enclosing an internal volume with at least one opening and means for igniting and maintaining a discharge, the radiation source module also comprising a submersible frame with guiding means to guide the process fluid into and out of the internal volume of the radiation source. The dissipation of the heat generated by the discharge in the discharge gap via a fluid flow in the internal volume of the lamp and in contact with the internal electrodes is substantially more effective than dissipation via a cooling channel separated from the internal electrode. It is therefore substantially easier to maintain the discharge at an approximately optimal temperature.
    • 在包括具有流体入口的壳体和用于过程流体的流体出口的流体处理系统中,设置在流体入口和流体出口之间的照射区域以及包括至少一个辐射源的至少一个辐射源模块,该辐射源模块包括放电容器 具有外壁和内壁,所述内壁包围具有至少一个开口的内部容积和用于点燃和保持排放的装置,所述辐射源模块还包括具有引导装置的引导装置的引导装置,以将过程流体引导和排出 的辐射源的内部体积。 由放电间隙中的放电产生的热量通过灯的内部体积中的流体流动并与内部电极接触而产生的热量比通过与内部电极分离的冷却通道的耗散更为有效。 因此,将放电维持在近似最佳的温度是比较容易的。
    • 27. 发明申请
    • Uvc/Vuv Dielectric Barrier Discharge Lamp with Reflector
    • Uvc / Vuv介质阻挡放电灯与反射器
    • US20080061667A1
    • 2008-03-13
    • US11571837
    • 2005-07-05
    • Georg Friedrich GaertnerGeorg GreuelThomas JuestelWolfgang Schiene
    • Georg Friedrich GaertnerGeorg GreuelThomas JuestelWolfgang Schiene
    • H01J5/16H01J9/02
    • H01J65/046H01J61/045H01J61/35H01J65/00
    • The subject of the present invention relates to a high efficiently dielectric barrier discharge (DBD) -lamp for generating and/or emitting a radiation of ultraviolet (UV)-light comprising: a discharge gap (1) being at least partly formed and/or surrounded by at least an inner wall (2) and an at least partly transparent (3), each with an inner surface (2a, 3a), facing the discharge gap (1) and an outer surface (2b, 3b) arranged opposite of and directed away from the corresponding inner surface (2a, 3a), a filling located inside the discharge gap (1), at least two electrical contacting means (4), a first electrical contacting means (4a) at the inner wall (2) and a second electrical contacting means (4b) at the outer wall (3), and at least one luminescent coating layer (5) arranged at/on and at least partly covering at least a part of the respective wall's inner surface (3a), arranged such, that at least a part of the generated UV-light of a certain wavelength range can pass the luminescent coating layer (5) from the discharge gap (1) to the outside of the DBD-lamp, whereby at least one of both walls (2, 3) is at least partly arranged with directing means (6), so that the diffusive radiation is directed in direction through the transparent part of the outer wall (3) with reduced losses due to absorption effects and the like.
    • 本发明的主题涉及用于产生和/或发射紫外线(UV)光的辐射的高效电介质阻挡放电(DBD) - 光源,包括:放电间隙(1)至少部分地形成和/或 由至少内壁(2)和至少部分透明的(3)包围,每个具有面向放电间隙(1)的内表面(2a,3a)和外表面(2b,3b) ),布置在相应的内表面(2a,3a)的相对并远离相应的内表面(2a,3a),位于放电间隙(1)内的填充物,至少两个电接触装置(4),第一电接触装置(4a) 在外壁(3)处的内壁(2)和第二电接触装置(4b)处,以及至少一个发光涂层(5)布置在/至少部分地覆盖至少一部分 相应的壁的内表面(3a)被布置成使得产生的特定波浪的UV光的至少一部分 第一范围可以使发光涂层(5)从放电间隙(1)传递到DBD-灯的外部,由此两个壁(2,3)中的至少一个至少部分地布置有引导装置(6) ,使得漫射辐射通过外壁(3)的透明部分被引导,由于吸收效应等而减少了损失。
    • 29. 发明授权
    • UV disinfecting device
    • 紫外消毒装置
    • US09045358B2
    • 2015-06-02
    • US13256520
    • 2010-03-19
    • Georg Greuel
    • Georg Greuel
    • G21K5/00C02F1/32
    • C02F1/325A61L2/10Y02W10/37
    • A disinfecting device is proposed that is well suited for household and outdoor use. The device comprises a container housing 12 with an interior volume 24, which may contain an object or a liquid to be disinfected. The container housing 12 comprises a side wall 16 and an end cover 14. A dielectric barrier discharge lamp 32 is provided for emitting ultraviolet light into the volume 24. The lamp 32 comprises a lamp vessel 34 with gas filling and electrodes 42, 44 arranged electrically insulated from the gas filling. An alternating voltage applied to the electrodes 42, 44 causes a discharge in the gas filling. The lamp vessel 34 has a planar window from which during the discharge ultraviolet light 46 is emitted. The window is arranged in the end cover 14.
    • 提出了一种非常适合家庭和户外使用的消毒装置。 该装置包括具有内部容积24的容器壳体12,其可以包含待消毒的物体或液体。 容器壳体12包括侧壁16和端盖14.提供介质阻挡放电灯32用于将紫外光发射到容积24中。灯32包括具有气体填充的灯容器34和电气排列的电极42,44 与气体填充绝缘。 施加到电极42,44的交流电压导致气体填充物中的放电。 灯管34具有平面窗口,在放电紫外线46期间从该窗口发射。 窗口布置在端盖14中。