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    • 1. 发明授权
    • Handle with a closure insert
    • 用封闭插件处理
    • US08122745B2
    • 2012-02-28
    • US12412088
    • 2009-03-26
    • Dieter RamsauerKlaus BergmannFrank NoetheThorsten Kuester
    • Dieter RamsauerKlaus BergmannFrank NoetheThorsten Kuester
    • E05B13/10
    • E05B9/08E05B15/02E05B65/02Y10T16/458Y10T70/5363Y10T70/5757Y10T70/5819Y10T70/5832Y10T70/8459Y10T292/57
    • The invention relates to a handle (e.g., a fixed handle, rotary handle, or swivel lever handle) particularly with a lock insert or the like or escutcheon for mounting in a preferably thin wall (e.g., a sheet metal cabinet door leaf, sheet metal drawer front, or sheet metal box lid). Wherein the handle has a longitudinal extension at whose ends is arranged at least one fastening means (e.g., a screw, nut, hook fastening or clip-in fastening). The lock insert includes a housing with a collar in the vicinity of its front end, and a receiving space for the front end of the housing with the collar is provided at this end of the handle in the vicinity of the fastening means proceeding from the contact surface contacting the thin wall, this receiving space passing through the handle to the front side of the handle while changing in cross section.
    • 本发明涉及一种手柄(例如,固定手柄,旋转手柄或旋转杆手柄),特别是用于安装在优选薄壁(例如,金属板门板,钣金件)中的锁定插入件或类似物或孔罩 抽屉前部或钣金盒盖)。 其中手柄具有纵向延伸部,其端部设置有至少一个紧固装置(例如,螺钉,螺母,钩紧固件或夹紧件)。 锁定插入件包括具有在其前端附近的套环的壳体,并且具有套环的壳体的前端的容纳空间设置在手柄的该端部处的紧固装置附近,从触头 表面接触薄壁,该接收空间在横截面变化的同时通过手柄到手柄的前侧。
    • 3. 发明申请
    • Latch Lock
    • 锁扣锁
    • US20090241619A1
    • 2009-10-01
    • US12086668
    • 2006-11-08
    • Thorsten KuesterKlaus Bergmann
    • Thorsten KuesterKlaus Bergmann
    • E05B11/00E05B35/12
    • E05B11/00E05B35/08Y10T70/7452Y10T70/7768
    • A latch lock having a latch which is arranged so as to be displaceable against spring force in a lock case that can be fastened to a wall, door leaf, or the like, having a first locking cylinder whose thumb draws the latch back against spring force when the cylinder core is rotated by a key. The locking cylinder is constructed in such a way that it allows the key to be pulled out only in a determined position of the cylinder core with reference to the cylinder housing such as in the locking position. According to the invention, a second locking cylinder is arranged in the lock case and coupled with the first locking cylinder such that, when rotated by means of a key, its thumb moves the first locking cylinder into the determined position in which the key can be extracted from the first locking cylinder.
    • 一种具有闩锁的闩锁,该闩锁被布置成能够抵抗弹簧力抵靠在可以被固定到墙壁,门扇等上的锁定壳体中的弹簧力,所述锁定壳体具有第一锁定缸,所述第一锁定缸的拇指将所述闩锁拉回以抵抗弹簧力 当气缸芯被钥匙旋转时。 锁定缸被构造成使得其仅在气缸芯的确定位置处相对于气缸壳体例如处于锁定位置而被拉出。 根据本发明,第二锁定筒设置在锁定壳体中并且与第一锁定筒联接,使得当其通过钥匙旋转时,其拇指将第一锁定缸移动到所述确定位置,在该位置中,钥匙可以 从第一个锁定缸提取。
    • 6. 发明授权
    • Method and device for producing extreme ultraviolet and soft X-rays from a gaseous discharge
    • 用于从气体放电产生极紫外和软X射线的方法和装置
    • US06389106B1
    • 2002-05-14
    • US09555819
    • 2000-07-28
    • Willi NeffRainer LebertGuido SchrieverKlaus Bergmann
    • Willi NeffRainer LebertGuido SchrieverKlaus Bergmann
    • H01J3500
    • H05G2/003G03F7/70033H05H1/48
    • A method and a device for generating extreme ultraviolet (EUV) and soft x-ray radiation from a gas discharge. The device has at least two electrodes each having a flush opening by which an axis of symmetry is defined, in which an intermediate space with a wide spatial homogenous gas filling between anode and cathode is provided. The electrodes are formed in such a way, that the gas discharge is formed exclusively in the volume defined by the flush openings. The current pulses with respect to amplitude and period duration are selected in such a way that a dense hot plasma channel is formed on the axis of symmetry, the plasma being the source of EUV and/or soft x-ray radiation. The preferred area of application is the EUV projection lithography in the spectral range around 13 nm.
    • 一种用于从气体放电产生极紫外(EUV)和软X射线辐射的方法和装置。 该装置具有至少两个电极,每个电极具有齐平的开口,通过该开口限定对称轴,其中提供了在阳极和阴极之间填充宽空间均匀气体的中间空间。 电极以这样的方式形成,即气体排出仅在由冲洗开口限定的体积中形成。 选择相对于振幅和周期持续时间的电流脉冲,使得在对称轴上形成致密的热等离子体通道,等离子体是EUV和/或软X射线辐射源。 优选的应用领域是在约13nm的光谱范围内的EUV投影光刻。