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    • 1. 发明申请
    • PROJECTION OBJECTIVE WITH DIAPHRAGMS
    • 投影目标与石墨片
    • US20110285979A1
    • 2011-11-24
    • US13107011
    • 2011-05-13
    • Nils DieckmannAlexander WolfChristian HollandUlrich LoeringFranz Sorg
    • Nils DieckmannAlexander WolfChristian HollandUlrich LoeringFranz Sorg
    • G03B27/72G02B17/08G02B27/18
    • G03F7/70941G02B27/0043
    • A projection objective for imaging an object arranged in an object plane of the projection objective into an image of the object lying in an image plane of the projection objective has a multiplicity of transparent optical elements and holding devices for holding the optical elements at prescribable positions along an imaging beam path of the projection objective. Each of the optical elements has an optical useful region lying in the imaging beam path and an edge region lying outside the optical useful region. At least one holding element of the holding device assigned to the optical element acts at the edge region in the region of a contact zone. At least one of the optical elements is assigned a diaphragm arrangement with a false light diaphragm arranged directly upstream of the optical element and a second false light diaphragm arranged directly downstream of the optical element. Each of the false light diaphragms is fashioned in such a way that the false light diaphragm screens at least a part of the edge region against radiation running outside the imaging beam path.
    • 用于将布置在投影物镜的物平面中的物体成像为位于投影物镜的像平面中的物体的图像的投影物镜具有多个透明光学元件和用于将光学元件保持在规定位置的保持装置 投影物镜的成像光束路径。 每个光学元件具有位于成像光束路径中的光学有用区域和位于光学有用区域外部的边缘区域。 分配给光学元件的保持装置的至少一个保持元件作用在接触区域的边缘区域。 至少一个光学元件被分配有具有布置在光学元件的正上游的假光膜的膜片装置和直接布置在光学元件的下游的第二假光膜。 每个假光隔膜以这样的方式形成,使得假光隔膜将至少一部分边缘区域屏蔽到抵抗在成像光束路径外部运行的辐射。
    • 2. 发明授权
    • Projection objective with diaphragms
    • 投影目的与隔膜
    • US08488104B2
    • 2013-07-16
    • US13107011
    • 2011-05-13
    • Nils DieckmannAlexander WolfChristian HollandUlrich LoeringFranz Sorg
    • Nils DieckmannAlexander WolfChristian HollandUlrich LoeringFranz Sorg
    • G03B27/72G03B27/54
    • G03F7/70941G02B27/0043
    • A projection objective for imaging an object arranged in an object plane of the projection objective into an image of the object lying in an image plane of the projection objective has a multiplicity of transparent optical elements and holding devices for holding the optical elements at prescribable positions along an imaging beam path of the projection objective. Each of the optical elements has an optical useful region lying in the imaging beam path and an edge region lying outside the optical useful region. At least one holding element of the holding device assigned to the optical element acts at the edge region in the region of a contact zone. At least one of the optical elements is assigned a diaphragm arrangement with a false light diaphragm arranged directly upstream of the optical element and a second false light diaphragm arranged directly downstream of the optical element. Each of the false light diaphragms is fashioned in such a way that the false light diaphragm screens at least a part of the edge region against radiation running outside the imaging beam path.
    • 用于将布置在投影物镜的物平面中的物体成像为位于投影物镜的像平面中的物体的图像的投影物镜具有多个透明光学元件和用于将光学元件保持在规定位置的保持装置 投影物镜的成像光束路径。 每个光学元件具有位于成像光束路径中的光学有用区域和位于光学有用区域外部的边缘区域。 分配给光学元件的保持装置的至少一个保持元件作用在接触区域的边缘区域。 至少一个光学元件被分配有具有布置在光学元件的正上游的假光膜的膜片装置和直接布置在光学元件的下游的第二假光膜。 每个假光隔膜以这样的方式形成,使得假光隔膜将至少一部分边缘区域屏蔽到抵抗在成像光束路径外部运行的辐射。
    • 7. 发明授权
    • Gas-gun for acoustic well sounding
    • 气枪声音测井
    • US4646871A
    • 1987-03-03
    • US646860
    • 1984-09-04
    • Alexander Wolf
    • Alexander Wolf
    • G01V1/137G01V1/52G01V1/04G01V1/133
    • G01V1/52G01V1/137
    • In the art of acoustic well sounding a gas-gun for the sudden discharge of a measured quantity of compressed gas, comprised of two chambers, viz. a discharge chamber closed at one end by a poppet, and on the opposite end by a power-head, the latter a cylinder including a sealed piston, with the poppet connected by sealed piston rod penetrating the cylinder head, and terminated at the piston. The entire assembly to be so proportioned that regardless of the position of the piston a gap remains between the piston and the cylinder-head penetrated by the piston rod. Means for connecting this gap to the inside of the discharge chamber through a check valve permits gas flow from the discharge chamber to the gap, but not in the reverse direction, and means for venting the gap to the atmosphere. A passage from the opposite side of the piston to the axial outlet of the discharge chamber, a spring or a positive locking device for pressing the poppet against the valve seat. The entire construction is limited by the requirement that the piston rod be smaller in diameter than the seat diameter of the poppet, and the latter to be smaller than the diameter of the piston.
    • 在声学井的技术领域,用于突然排出由两个室组成的测量量的压缩气体的气枪, 排气室一端由提升阀封闭,而在另一端由动力头封闭,后者是一个包括一个密封活塞的气缸,该提升阀由密封的活塞杆连接,穿过气缸盖,并终止于活塞。 整个组件如此成比例,无论活塞的位置如何,活塞和活塞杆所穿透的气缸盖之间保留有间隙。 通过止回阀将该间隙连接到排出室内部的装置允许气体从排出室流到间隙而不是相反方向,以及用于将间隙排放到大气中的装置。 从活塞的相对侧到排放室的轴向出口的通道,用于将提升阀压靠在阀座上的弹簧或正锁定装置。 整个结构受到活塞杆直径小于提升阀座直径的要求的限制,后者要小于活塞的直径。