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    • 2. 发明申请
    • Method and Apparatus for Dynamic Compression in Images or Signal Series
    • 图像或信号系列中动态压缩的方法和装置
    • US20090175546A1
    • 2009-07-09
    • US12281876
    • 2007-03-07
    • Willi PlatzGerald SobottaDieter Wolf
    • Willi PlatzGerald SobottaDieter Wolf
    • G06K9/36
    • G06T5/40G06T5/004G06T5/008G06T9/00G06T2207/20012
    • In a method and apparatus for dynamics compression in images or signal series represented by individual amplitude values, input amplitude values EA of the images or signal series are subjected to a local spatial amplitude averaging, to generate locally spatially averaged input amplitude values . Differential function values are then formed based on differences between the input amplitude values EA and the locally spatially averaged input amplitude values , and output amplitude values AA of the images or signal series are generated from the formed differential function values. In forming the differential function, additional differential values are superimposed on the differences formed from the input amplitude values EA and the locally spatially averaged input amplitude values , which additional differential values are formed from the input amplitude values EA and a predefined reference value GA.
    • 在由单个振幅值表示的图像或信号序列中的动态压缩的方法和装置中,对图像或信号序列的输入幅度值EA进行局部空间幅度平均,以产生局部空间平均的输入幅度值EA。 然后基于输入幅度值EA和局部空间平均输入幅度值之间的差异形成差分函数值,并且从形成的差分函数值产生图像或信号序列的输出幅值AA。 在形成差分函数时,附加的差分值叠加在由输入幅度值EA和局部空间平均的输入幅度值EA组成的差上,这些附加差分值由输入振幅值EA和预定的参考值 GA。
    • 3. 发明授权
    • Sensor element array and method for signal or image processing
    • 用于信号或图像处理的传感器元件阵列和方法
    • US5917544A
    • 1999-06-29
    • US686388
    • 1996-07-25
    • Gerald SobottaWilli PlatzHelmut RiedelKarl Hofmann
    • Gerald SobottaWilli PlatzHelmut RiedelKarl Hofmann
    • H04N3/15H04N5/228
    • H04N3/155
    • An arrangement and method for processing a signal field of sensor signals which originate from the individual sensor elements, for example photodetectors, of a plurality of sensor elements which are regularly spaced in an area and which are each surrounded by six adjacent sensor elements while forming a hexagonal structure. A differential amplifier compares a quantity representing the potential difference and a reference quantity forms a switching quantity (I.sub.Mo) on the output side. A switching comparator, on the input side, receives the switching quantity and, if this switching quantity exceeds the preselectable switching threshold, on the output side emits a switching pulse which causes the "off" switching condition. Four signal outputs 1, 2, 3, 4 as well as four signal inputs (I.sub.M1 I.sub.M2, I.sub.M3, I.sub.M4) are each connected with a signal input and a signal output of one of the four analog circuits assigned to the four next adjacent switchable resistors, one signal respectively being supplied to the four signal outputs which represents the switching quantity. A switching stage for forming the reference quantity takes into account the signals present at the four signal inputs.
    • 一种用于处理来自各个传感器元件(例如,光电检测器)的传感器信号的信号场的布置和方法,所述多个传感器元件在区域中规则地间隔开并且被六个相邻的传感器元件包围,同时形成 六角形结构。 差分放大器比较表示电位差的量和参考量在输出侧形成切换量(IMo)。 在输入侧的开关比较器接收开关量,并且如果该开关量超过预选择的开关阈值,则在输出侧发出导致“截止”开关条件的开关脉冲。 四个信号输出1,2,3,4以及四个信号输入(IM1IM2,IM3,IM4)分别与分配给四个下一个可切换电阻的四个模拟电路的信号输入和信号输出端相连, 一个信号分别被提供给表示切换量的四个信号输出。 用于形成参考量的开关级考虑了存在于四个信号输入端的信号。
    • 4. 发明申请
    • Miniaturized Laser Amplifier Arrangement Having a Pump Source
    • 具有泵浦源的小型化激光放大器布置
    • US20120314724A1
    • 2012-12-13
    • US13512027
    • 2009-11-26
    • Peter PeuserWilli Platz
    • Peter PeuserWilli Platz
    • H01S3/0941
    • H01S3/09415H01S3/061H01S3/0627H01S3/094049H01S3/094053H01S3/094061H01S3/113H01S3/2308
    • A laser amplifier arrangement includes an optical pump source and an axially arranged laser oscillator-amplifier configuration pumped by the pump radiation. The laser oscillator-amplifier configuration includes a laser oscillator excitable by a portion of the pump radiation to emit a laser beam, and a laser amplifier that amplifies the laser beam using the pump radiation. The laser oscillator and laser amplifier are arranged in a substantially coaxial or collinear manner relative to a longitudinal axis of the laser oscillator-amplifier configuration. The pump source includes a first beam source for producing a first pump radiation to pump the laser oscillator, a second beam source for producing a second pump radiation for the laser amplifier, and a pump radiation conducting device, by means of which both the first and the second pump radiation can be lead into the laser oscillator-amplifier configuration substantially in the direction of the longitudinal axis for longitudinal pumping.
    • 激光放大器装置包括由泵浦辐射泵浦的光泵浦源和轴向布置的激光振荡器放大器构造。 激光振荡器放大器配置包括可由泵浦辐射的一部分激发以发射激光束的激光振荡器,以及使用泵浦辐射放大激光束的激光放大器。 激光振荡器和激光放大器相对于激光振荡器 - 放大器配置的纵向轴线基本上同轴或共线布置。 泵浦源包括用于产生用于泵浦激光振荡器的第一泵浦辐射的第一光束源,用于产生用于激光放大器的第二泵浦辐射的第二光束源,以及泵辐射传导装置,借助于该辐射源的第一和 第二泵浦辐射可以基本上沿着纵向轴线的方向引入激光振荡器放大器配置,用于纵向泵浦。
    • 5. 发明授权
    • Miniaturized laser amplifier arrangement having a pump source
    • 具有泵浦源的小型化激光放大器装置
    • US08457171B2
    • 2013-06-04
    • US13512027
    • 2009-11-26
    • Peter PeuserWilli Platz
    • Peter PeuserWilli Platz
    • H01S3/00H01S3/06H01S3/092H01S3/08H01S3/082
    • H01S3/09415H01S3/061H01S3/0627H01S3/094049H01S3/094053H01S3/094061H01S3/113H01S3/2308
    • A laser amplifier arrangement includes an optical pump source and an axially arranged laser oscillator-amplifier configuration pumped by the pump radiation. The laser oscillator-amplifier configuration includes a laser oscillator excitable by a portion of the pump radiation to emit a laser beam, and a laser amplifier that amplifies the laser beam using the pump radiation. The laser oscillator and laser amplifier are arranged in a substantially coaxial or collinear manner relative to a longitudinal axis of the laser oscillator-amplifier configuration. The pump source includes a first beam source for producing a first pump radiation to pump the laser oscillator, a second beam source for producing a second pump radiation for the laser amplifier, and a pump radiation conducting device, by means of which both the first and the second pump radiation can be lead into the laser oscillator-amplifier configuration substantially in the direction of the longitudinal axis for longitudinal pumping.
    • 激光放大器装置包括由泵浦辐射泵浦的光泵浦源和轴向布置的激光振荡器放大器构造。 激光振荡器放大器配置包括可由泵浦辐射的一部分激发以发射激光束的激光振荡器,以及使用泵浦辐射放大激光束的激光放大器。 激光振荡器和激光放大器相对于激光振荡器 - 放大器配置的纵向轴线基本上同轴或共线布置。 泵浦源包括用于产生用于泵浦激光振荡器的第一泵浦辐射的第一光束源,用于产生用于激光放大器的第二泵浦辐射的第二光束源,以及泵辐射传导装置,借助于该辐射源的第一和 第二泵浦辐射可以基本上沿着纵向轴线的方向引入激光振荡器放大器配置,用于纵向泵浦。
    • 6. 发明授权
    • Focal surface and detector for opto-electronic imaging systems, manufacturing method and opto-electronic imaging system
    • 光电成像系统的焦点表面和检测器,制造方法和光电成像系统
    • US06849843B2
    • 2005-02-01
    • US09776343
    • 2001-02-02
    • Fank AnsorgeSiegfried CraubnerMichael FeilWilli PlatzHelmut Riedel
    • Fank AnsorgeSiegfried CraubnerMichael FeilWilli PlatzHelmut Riedel
    • G03B15/00G02B23/06G02B23/12H01L27/14H01L27/146H04N5/335H01L27/00
    • H01L27/14603H01L27/1462H01L27/14625H01L27/14683
    • The focal surface for an opto-electronic imaging system includes an arrangement of detectors for image recording and a detector carrier or a FPA carrier for holding the detectors. The detectors are each made of at least one solid state element that is bonded to a flexible carrier substrate. The focal surface, or the detectors, respectively, exhibits a curvature, such that a curved field of view can be recorded. In a method for manufacturing a focal surface for opto-electronic imaging systems, at least one solid state element is bonded to a flexible carrier substrate to form flexible detectors, whereby a detector carrier provides a curvature and the flexible detectors are adapted to the curvature of the detector carrier. To manufacture a detector according to the present invention, a solid state element is thinned and bonded to a flexible carrier substrate, such that it is formed in a flexible manner and can be adapted to a curvature of a field of view. An opto-electronic imaging system according to the present invention with front optics for capturing an image and a detector arrangement that is arranged in a focal surface of the front optics, in which the detector arrangement is arranged in the focal surface in a curved manner.
    • 用于光电成像系统的焦面包括用于图像记录的检测器的布置以及用于保持检测器的检测器载体或FPA载体。 检测器各自由至少一个固态元件制成,其固定在柔性载体基片上。 焦点表面或检测器分别表现出曲率,使得可以记录弯曲的视场。 在用于制造光电成像系统的焦面的方法中,至少一个固态元件被结合到柔性载体衬底上以形成柔性检测器,由此检测器载体提供曲率,并且柔性检测器适于曲率 检测器载体。 为了制造根据本发明的检测器,固态元件被薄化并结合到柔性载体基底上,使得其以柔性的方式形成并且可以适应于视场的曲率。 根据本发明的光电成像系统具有用于捕获图像的前光学器件和布置在前光学器件的焦面中的检测器装置,其中检测器装置以弯曲的方式布置在焦面中。