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    • 1. 发明授权
    • Landing gear energy absorption system
    • 起落架能量吸收系统
    • US5366181A
    • 1994-11-22
    • US159606
    • 1993-12-01
    • Christopher P. Hansen
    • Christopher P. Hansen
    • B64G1/22B64G1/62F16F7/08B64C25/58
    • B64G1/62B64G1/22F16F7/08
    • A landing pad system for absorbing horizontal and vertical impact forces upon engagement with a landing surface (15) where circumferentially arranged landing struts (12) respectively have a clevis (24) which receives a slidable rod member (13) and where the upper portion of a slidable rod member is coupled to the clevis by friction washers (30,32) which are force fit onto the rod member to provide for controlled constant force energy absorption when the rod member moves relative to the clevis. The lower end of he friction rod is pivotally attached by a ball and socket (44) to a support plate (42) where the support plate is arranged to slide in a transverse direction relative to a housing which contains an energy absorption material (50) for absorbing energy in a transverse direction.
    • 一种用于在与着陆表面(15)接合时吸收水平和垂直冲击力的着陆垫系统,其中周向布置的着陆支柱(12)分别具有接收可滑动杆构件(13)的U形夹(24),并且其中上部 可滑动的杆构件通过摩擦垫圈(30,32)联接到U形夹上,摩擦垫圈(30,32)在杆构件相对于U形夹移动时强制配合到杆构件上以提供受控恒定的能量吸收。 摩擦杆的下端通过球窝(44)枢转地附接到支撑板(42),其中支撑板布置成相对于包含能量吸收材料(50)的壳体在横向方向上滑动, 用于在横向上吸收能量。
    • 3. 发明授权
    • Method and system for estimating sensor dark current drift and sensor/illumination non-uniformities
    • 用于估计传感器暗电流漂移和传感器/照明非均匀性的方法和系统
    • US06707557B2
    • 2004-03-16
    • US09753431
    • 2001-01-02
    • Robert S. Young, Jr.Richard D. BallMark S. BishopMarc C. DigbyChristopher P. HansenClyde W. Hinkle, IIPhilip E. Cannata
    • Robert S. Young, Jr.Richard D. BallMark S. BishopMarc C. DigbyChristopher P. HansenClyde W. Hinkle, IIPhilip E. Cannata
    • G01N2186
    • H04N1/401H04N2201/0408
    • One aspect of the present invention is a system for estimating sensor and illumination non-uniformities. The system comprises a first light source, and a first sensor operable to capture light reflected from a first side of film illuminated by the light source while the film has a developer chemical applied thereto and processing circuitry coupled to the first sensor. The processing circuitry is operable to capture a first plurality of readings from the sensor responsive to light reflected from an unexposed region of film to determine a first set of non-uniformity data and adjust image data obtained from the film in response to the first set of non-uniformity data. In a further embodiment, the processing circuitry is further operable to dim the first light source for at least a portion of the time that the sensor is being used to sense the unexposed region of the film. The processing circuitry may also capture a second plurality of readings from the sensor while the first light source is dimmed to determine a second set of non-uniformity data and adjust image data obtained from the film in response to the second set of non-uniformity data.
    • 本发明的一个方面是用于估计传感器和照明不均匀性的系统。 该系统包括第一光源和第一传感器,第一传感器可操作以捕获由光源照射的膜的第一侧反射的光,同时膜具有施加于其上的显影剂化学品和耦合到第一传感器的处理电路。 所述处理电路可操作以响应于从未曝光区域反射的光来从所述传感器捕获第一多个读数,以确定第一组不均匀性数据,并响应于所述第一组的第一组调整从所述胶片获得的图像数据 不均匀数据。 在另一个实施例中,处理电路还可操作以在传感器被用于感测胶片的未曝光区域的至少一部分时间内调暗第一光源。 当第一光源被调暗以确定第二组不均匀性数据并且响应于第二组非均匀性数据调整从胶片获得的图像数据时,处理电路还可以从传感器捕获第二多个读数 。