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    • 1. 发明申请
    • ANTI-DAMAGE PROTECTING SYSTEM FOR A BODY DRIVEN IN A PLANE
    • HAVARIE设备技术驱动一种平面BODY
    • WO1995000773A1
    • 1995-01-05
    • PCT/EP1994002024
    • 1994-06-21
    • JENOPTIK GMBHHÜBNER, GerdNESTLER, KlausMICHL, Uwe
    • JENOPTIK GMBH
    • F16F15/04
    • G01H9/00F16F15/02F16P7/02
    • An anti-damage system for a body driven in a plane additionally delimits its working area determined by measurement systems and end position sensors on a base plate. The object of the invention is to prevent the driven body from leaving the working area in clean-room conditions when the impact possibilities of the driven body are multiple as far as its position and direction of impact are concerned, and to exclude inadmissible accleration values during braking even at the maximum speed of the driven body. The body (2) is enclosed in the plane by a frame (3) whose mass corresponds to that of the body (2) and which has a sliding path delimited in the plane. In addition, the body (2) or the frame (3) is provided with dampening means (8) at its impact surface. The invention is particularly suitable for positioning tables driven by planar motors for use in clean-room conditions.
    • 在平面主体从动用于附加地限制了其通过测量系统指定和限位开关在底板上,对象工作区域中,无尘室条件下,在各种被驱动体的冲击的可能性相对于所述位置和方向,以防止其出口从工作区域为一个事故设备 和避免制动期间超过不​​允许的加速度值,即使在主体的最大速度。 根据本发明,所述主体(2)中在其质量相应于所述主体(2)框架(3)的平面被封闭,其具有在平面内的有限滑动行程。 此外,本体(2)或框架(3)的阻尼元件(8)在其撞击表面具有。 本发明发现了在定位台,这是由平面马达驱动,并且它们的使用是在洁净室条件下的特定应用。
    • 3. 发明申请
    • PROCESS AND DEVICE FOR PHOTO-THERMAL SPECTROSCOPY
    • 方法和系统热PHOTO光谱
    • WO1994002834A1
    • 1994-02-03
    • PCT/EP1993001852
    • 1993-07-14
    • JENOPTIK GMBHGEILER, Hans-DieterWAGNER, Matthias
    • JENOPTIK GMBH
    • G01N21/17
    • G01N21/8422G01N21/17
    • The invention relates to a process and device for photo-thermal spectroscopy (thermal wave analysis) of the single-beam process with double modulation type. The aim of developing a single-beam process which makes use of the advantages of the double modulation system in detecting the photo-thermally generated differential frequency without requiring partial beams and attains a high degree of intermodulation freedom, is achieved by the invention in that the intensity of the laser beam is modulated before impinging on the object in such a way that there are in the modulation spectrum essentially a carrier frequency (f1) and two side-band frequencies (f1-f2), where f2 is the basic pulse frequency of the modulation, a regulating detector and a regulating loop entering into the modulation process are used to suppress the component of the basic pulse frequency (f2) which is of the same phase as the mixed frequency consisting of the carrier and side-band frequencies, and, after interaction with the object, a measuring detector and a frequency and phase-selective device are used to measure the optical response of the object as an amplitude of the component of the basic pulse frequency (f2) which as a photo-thermal mixed product is of the same phase as the mixed frequency of the carrier frequency (f1) and the side-band frequencies (f1-f2). The invention is applicable to the interference-free and contactless analysis of the material parameters of regions of solid bodies close to the surface.
    • 6. 发明申请
    • METHOD AND DEVICE FOR THE NON-INVASIVE TRANSCUTANEAN DETERMINATION OF THE CONCENTRATIONS OF SUBSTANCES IN HUMAN BODY FLUIDS OR TISSUES
    • 方法和设备,用于体液或人的组织燃料浓度变化无创,经皮测定
    • WO1995013739A1
    • 1995-05-26
    • PCT/EP1994003316
    • 1994-10-07
    • JENOPTIK GMBHFISCHBACHER, ChristophJAGEMANN, Kay-UweDANZER, KlausMÜLLER, Ulrich, AlfonsPAPENKORDT, LutzSCHÜLER, Jost
    • JENOPTIK GMBH
    • A61B05/00
    • A61B5/1455A61B5/14532A61B5/14546A61B5/7264G01N21/359
    • The aim of the invention is to provide a method and device for the non-invasive transcutaneous determination of the concentrations of substances in the human body, the method being unaffected by person-dependent interference variables, and the dominance of water absorption, as well as the effect of blood circulation through the tissues, being reduced. This aim is achieved by irradiating (1, 2) a suitable area of the skin with broad-band radiation, by recording the transmission or reflection spectrum (3, 4, 6), by making a series of intensity measurements at suitably spaced intervals (12) over this spectrum and by processing the series of intensity measurements using an artificial neuronal network (13). The neuronal network (13) is taught, in a teaching phase, with a multiplicity of intensity-measurement series and simultaneously invasively obtained concentration values in order to generate weight matrices. The invention is suitable for use in the non-invasive determination of the concentrations of substances in human blood, e.g. haemoglobin, bilirubin, glucose, albumin, urea, cholesterol and other metabolic products.
    • 本发明涉及一种方法和用于体液或人的组织的非侵入性经皮确定物质浓度的布置。 找到抑制在两个人依赖性干扰变量在人体内提供的非侵入性经皮确定物质浓度的可能性的目的和吸水率的主导地位和组织血流量的影响减少,根据本发明通过皮肤的合适的部分来实现被照射的宽带(1 ,2),一个传输或反射光谱(3,4,6)中的溶液,(从适当安排光谱间隔12)的该频谱确定了一系列强度测量值和通过人工神经网络(13),其中,所述的装置评估的系列强度测量值的 与多个强度测量值的序列的学习阶段的神经网络(13),并在同一时间进行加权矩阵的生成创测量浓度值被训练。 本发明是用于非侵入性测定物质浓度的人血中,例如, 血红蛋白,胆红素,葡萄糖,白蛋白,尿素,胆固醇和其他代谢产物。
    • 7. 发明申请
    • DEVICE FOR TESTING UNSET CONCRETE AND MORTAR
    • 用于测试非固化混凝土和碎屑的装置
    • WO1993005382A1
    • 1993-03-18
    • PCT/CH1992000174
    • 1992-08-28
    • ATROF BAUPHYSIK AGJENOPTIK GMBHENZLER, RuediLEMBKE, ElfrunLÜTH, GunterZIMMERMANN, PeterSCHMIDT, Eberhard
    • ATROF BAUPHYSIK AGJENOPTIK GMBH
    • G01N11/14
    • G01N33/383G01N11/14
    • A rotary testing device can be connected to a base unit. A temperature sensor may also be connected to the base unit. The testing device has probe heads that are submerged and rotated in the fluid concrete, and the force required to rotate them is measured by the base unit. Various concrete recipes are stored in a memory of the base unit. Data concerning the concrete to be tested are calculated by comparison of the force required to rotate the testing device with the force derived from a respective characteristic curve and the calculated data are read from a display field. A concrete recipe and its specific measurements are selected by depressing keys by means of which are selected the respective electronic processes in the base unit for measurement and comparison with stored characteristic data.
    • 旋转测试装置可以连接到基本单元。 温度传感器也可以连接到基座单元。 测试装置具有在流体混凝土中浸没和旋转的探针头,并且旋转它们所需的力由基座单元测量。 各种具体配方存储在基本单元的存储器中。 通过将测试装置与从各个特性曲线导出的力进行旋转所需的力的比较来计算关于要测试的混凝土的数据,并且从显示区域读取计算的数据。 通过按下键来选择具体的配方及其特定的测量,所述键通过它们选择基本单元中的各个电子处理,以用于测量并与存储的特征数据进行比较。
    • 9. 发明授权
    • Device for handling disk-shaped objects in a handling plane of a local
clean room
    • 用于在当地洁净室的处理平面处理盘形物体的装置
    • US5642978A
    • 1997-07-01
    • US656698
    • 1996-06-03
    • Berndt LahneKlaus SchultzWerner SchelerMichael HeitmannAxel Gaglin
    • Berndt LahneKlaus SchultzWerner SchelerMichael HeitmannAxel Gaglin
    • H01L21/00H01L21/677
    • H01L21/67265H01L21/67017H01L21/67766Y10S414/137
    • A device for handling disk-shaped objects in a handling plane of a local clean room has the object of ensuring process steps preceding or following the processing and inspection of the disk-shaped objects under the conditions of a local clean room with the use of SMIF boxes. The handling plane (H--H) is in a fixed constructional relationship with a reference plane (E--E) of at least one device comprising the magazine seat as a component part, which device serves to index the shelves of magazines and disk-shaped objects contained therein and is arranged above an intermediate base dividing the clean room into two partial spaces located one above the other, in which an air flow component of an air flow is directed from the partial space above the intermediate base into the partial space below the intermediate base. The device can be used in the manufacture of integrated circuits, particularly for handling tasks.
    • 在本地洁净室的处理平面中处理盘状物体的装置的目的是确保在使用SMIF的局部洁净室的条件下对盘状物体进行处理和检查之前或之后的处理步骤 盒子 处理平面(HH)与至少一个装置的参考平面(EE)处于固定的结构关系,该装置包括作为组成部分的盒式座椅,该装置用于对包含在其中的杂志和盘形物体的架子进行索引, 被布置在将洁净室分成两个彼此上下的局部空间的中间基座的上方,其中空气流的空气流分量从中间基座上方的部分空间引导到中间基座下方的部分空间。 该器件可用于集成电路的制造,特别是用于处理任务。