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    • 13. 发明授权
    • Discharge lamp
    • 放电灯
    • US08264148B2
    • 2012-09-11
    • US12682266
    • 2007-10-09
    • Gerhard LoefflerDirk RosenthalSwen-Uwe Baacke
    • Gerhard LoefflerDirk RosenthalSwen-Uwe Baacke
    • H01J17/18H01J61/36
    • H01J61/30H01J61/16H01J61/86
    • A discharge lamp may include a substantially ellipsoidal discharge vessel that surrounds an anode and a cathode that are respectively fixed by current-carrying electrode holders, the latter being guided through bulb shafts arranged diametrically on the discharge vessel, there being provided around the electrode holders at the transition from the discharge vessel to the bulb shafts constrictions that form a connecting channel between the discharge space, surrounded by the discharge vessel, and in each case the bulb shaft spaces surrounded by the bulb shafts, wherein at least one of the discharge vessel, the constrictions and the anode coating is designed in such a way as to reduce or avoid blackening of the discharge vessel in the light-emitting region.
    • 放电灯可以包括基本上椭圆形的放电容器,其围绕阳极和阴极,所述阳极和阴极分别由载流电极保持器固定,所述载流电极保持器被引导通过径向设置在放电容器上的灯泡轴, 从放电容器到灯泡轴的过渡,其在由放电容器围绕的放电空间之间形成连接通道,并且在每种情况下都是由灯泡轴包围的灯泡轴空间,其中放电容器, 收缩和阳极涂层被设计成减少或避免放电容器在发光区域变黑。
    • 14. 发明申请
    • DISCHARGE LAMP
    • 放电灯
    • US20110260597A1
    • 2011-10-27
    • US12682266
    • 2007-10-09
    • Gerhard LoefflerDirk RosenthalSwen-Uwe Baacke
    • Gerhard LoefflerDirk RosenthalSwen-Uwe Baacke
    • H01J61/36H01J61/52
    • H01J61/30H01J61/16H01J61/86
    • A discharge lamp may include a substantially ellipsoidal discharge vessel that surrounds an anode and a cathode that are respectively fixed by current-carrying electrode holders, the latter being guided through bulb shafts arranged diametrically on the discharge vessel, there being provided around the electrode holders at the transition from the discharge vessel to the bulb shafts constrictions that form a connecting channel between the discharge space, surrounded by the discharge vessel, and in each case the bulb shaft spaces surrounded by the bulb shafts, wherein at least one of the discharge vessel, the constrictions and the anode coating is designed in such a way as to reduce or avoid blackening of the discharge vessel in the light-emitting region.
    • 放电灯可以包括基本上椭圆形的放电容器,其围绕阳极和阴极,所述阳极和阴极分别由载流电极保持器固定,所述载流电极保持器被引导通过径向设置在放电容器上的灯泡轴, 从放电容器到灯泡轴的过渡,其在由放电容器围绕的放电空间之间形成连接通道,并且在每种情况下都是由灯泡轴包围的灯泡轴空间,其中放电容器, 收缩和阳极涂层被设计成减少或避免放电容器在发光区域变黑。
    • 17. 发明申请
    • FLOW- AND PRESSURE-CONTROL VALVE
    • 流量和压力控制阀
    • US20100170581A1
    • 2010-07-08
    • US12600896
    • 2008-04-18
    • Gerhard Loeffler
    • Gerhard Loeffler
    • F16K15/00F16K37/00
    • G05D7/005Y10T137/7722Y10T137/7784Y10T137/7791Y10T137/7808Y10T137/8225
    • The invention relates to a valve combination for regulating the rate of flow or the differential pressure in liquid-conveying heating and cooling systems, consisting of a housing (2) provided with a feed pipe (10), a discharge pipe (11) and a connection pipes (6) arranged between them and a regulator (3) which is arranged axially in the connection pipe (6), wherein the regulator (3) keeps the differential pressure constant at a preset value by means of a first flow regulator (4) also arranged axially in the connection pipe (6) and can be adjusted by an actuating part (8) which projects from the housing (2) and acts on a second seat (24), and by means of a presettable second flow regulator (5) which is arranged axially or coaxially thereto, wherein the flow cross section (9) is adjustable, which is characterized in that, when an actuator (29) that acts on the actuating part (8) is installed, the flow cross section (9) is adjustable by means of a handle (7) not covered by the actuator and that, when the actuator (29) is installed, the position of the handle (7) on a display unit (19) which is not covered by the actuator can be read, and the display unit (19) shows the presetting of the flow cross section (9).
    • 本发明涉及一种用于调节液体输送加热和冷却系统中的流速或压差的阀门组合件,其包括设置有进料管(10)的壳体(2),排出管(11)和 布置在它们之间的连接管(6)和轴向布置在连接管(6)中的调节器(3),其中调节器(3)通过第一流量调节器(4)将压差保持在预设值 )还布置在连接管(6)中,并且可以由从壳体(2)突出并且作用在第二座(24)上的致动部件(8)调节,并且借助于可预设的第二流量调节器 5),其轴向或同轴布置,其中,所述流动横截面(9)是可调节的,其特征在于,当安装作用在所述致动部件(8)上的致动器(29)时,所述流动横截面 9)可以通过未被致动器a覆盖的把手(7)来调节 d,当安装致动器(29)时,可以读取未被致动器覆盖的显示单元(19)上的手柄(7)的位置,并且显示单元(19)示出预置 流动横截面(9)。
    • 18. 发明授权
    • Process for electro optical inspection of the mouth area of glass bottles
    • 玻璃瓶口区电光检查工艺
    • US4807995A
    • 1989-02-28
    • US882229
    • 1986-07-07
    • Hans-Ulrich DasslerRuediger HaasGerhard LoefflerLutz Liebers
    • Hans-Ulrich DasslerRuediger HaasGerhard LoefflerLutz Liebers
    • G01N21/90G01N33/00
    • G01N21/9054G01N2033/0081
    • A bottle is moved over a sector of a circular path and simultaneously rotated around its longitudinal axis for the opto-electronic inspection of the mouth area for chipping of the glass. The bottle is guided through the beam path of a measuring apparatus on its way over the circular path. A measuring beam passes at an oblique angle to the longitudinal axis of the bottle in the area of the mouth opening. The location dependent scanning signal generated by the measuring apparatus during each scan corresponding to every discrete angular position of the bottle displays a characteristic intensity modulation. The presence of a chip in the glass may be recognized in the scanning signal by the absence of the intensity maximum present at the location of a chip. The absence of the intensity maximum may be ascertained by measuring the distance between two adjacent intensity maxima and comparing the measured distance with a reference value.
    • 瓶子在圆形路径的一个扇区上移动,同时围绕其纵向轴线旋转,用于玻璃的口部区域的光电检查。 瓶子在通过圆形路径的途中被引导通过测量装置的光束路径。 测量光束在嘴部开口处以与倾斜角度相对的方式通过。 在对应于瓶子的每个离散角位置的每次扫描期间由测量装置产生的与位置相关的扫描信号显示特征强度调制。 通过不存在芯片位置处的强度最大值,可以在扫描信号中识别玻璃中的芯片的存在。 可以通过测量两个相邻强度最大值之间的距离并将测量的距离与参考值进行比较来确定强度最大值的不存在。