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    • 81. 发明授权
    • Method and camera (apparatus) for optically capturing a screen
    • 用于光学捕获屏幕的方法和相机(装置)
    • US07706634B2
    • 2010-04-27
    • US11185658
    • 2005-07-19
    • Peter SchmittDieter SchmidtGuenther KostkaRolf Behrendt
    • Peter SchmittDieter SchmidtGuenther KostkaRolf Behrendt
    • G06K9/36G06K9/40G06K9/32H04N5/228H04N5/225H04N9/04
    • H04N5/32
    • A camera for optically capturing a screen, wherein the screen has an area and wherein a predetermined overall resolution is provided for the optical capture, comprises a camera support with an array of camera mounts, an array of optical individual cameras as well as an image processing device for processing digital individual images of the array of optical individual cameras to generate the optical capture of the screen with the predetermined overall resolution. The image processing device is effective to reduce a correction of the individual images with regard to alignment inaccuracies and/or parameter variations, wherein for correction purposes a correction resolution is used, which is higher than the overall resolution, and wherein for every individual camera an individual correction rule is used for the correction. After the correction has been performed, the corrected overall image is brought to the predetermined overall resolution by combining adjacent pixels. Thereby, with inexpensive individual cameras, an image of a large-format screen is obtained efficiently, inexpensively and with little artifacts.
    • 一种用于光学捕获屏幕的相机,其中屏幕具有区域,并且其中为光学捕获提供预定的整体分辨率,包括具有相机安装件阵列的相机支架,光学单独相机阵列以及图像处理 用于处理光学单独相机阵列的数字单独图像的装置,以以预定的总分辨率产生屏幕的光学捕获。 图像处理装置有效地减少关于对准不精确度和/或参数变化的各个图像的校正,其中为了校正目的,使用高于总分辨率的校正分辨率,并且其中对于每个单独的相机 单独校正规则用于校正。 在执行校正之后,通过组合相邻像素将校正的整体图像带到预定的整体分辨率。 因此,利用廉价的单个摄像机,可以有效率地,低成本地获得大幅面画面的图像,并且几乎没有伪像。
    • 86. 发明申请
    • Field device with display
    • 现场设备带显示屏
    • US20060036339A1
    • 2006-02-16
    • US11258913
    • 2005-10-27
    • Michael KonradDieter Schmidt
    • Michael KonradDieter Schmidt
    • G05B11/01G05B15/00
    • G01D7/06G01D21/02G05B2219/23147G05B2219/23171G05B2219/25014G06T11/206
    • A display for on-site visualization of conditions of an automated process is disclosed. It comprises a display controller which at least temporarily provides a state indication signal representing a constellation of states of at least two process data signals. At least one of the two process data signals is derived from a signal generated externally to the field device. The field device has a display element which responds to a change in the state indication signal with a significant change in its appearance, thus signaling the constellation of the states of the two process data signals in a visually perceptible manner. Therefore, the field device is particularly suited for on-site monitoring of entire plants or sections thereof by operating personnel.
    • 公开了用于现场可视化自动化处理条件的显示器。 它包括显示控制器,其至少暂时提供表示至少两个处理数据信号的状态的状态的状态指示信号。 两个过程数据信号中的至少一个是从现场设备外部产生的信号导出的。 现场设备具有显示元件,其响应状态指示信号的变化,其外观有显着变化,从而以视觉上可察觉的方式发信号通知两个处理数据信号的状态的星座图。 因此,现场设备特别适用于由操作人员对整个工厂或其部分进行现场监控。
    • 87. 发明授权
    • Electro-optical para-axial distance measuring system
    • 电光对轴测距系统
    • US06781675B2
    • 2004-08-24
    • US10388013
    • 2003-03-13
    • Torsten GogollaAndreas WinterHelmut SeifertMartin PenzoldGero SchusserDieter Schmidt
    • Torsten GogollaAndreas WinterHelmut SeifertMartin PenzoldGero SchusserDieter Schmidt
    • G01C308
    • G01S17/10G01S7/481G01S7/487G01S7/497
    • An electro-optical distance measuring system (1, 1′) for large measurement ranges having a para-axial arrangement of a beam source (2) with a transmitting optics (3) and a beam receiver, configured as at least one small-area photodiode (4), with an associated receiving optics (5), which contains the processes for signal extension for the lower distance measurement range for distances (X). The beam source (2), the transmitting optics (3), the small-area photodiode (4) and the receiving optics (5) are each oriented with their optical axes (A1, A2) parallel to the measurement light beam (6). The measurement light beam (6) is directed from the transmitting optics (2) to the measurement object and continues to the receiving optics. The beam source (2) and the small-area photodiode (4) are connected rigidly with each other by at least one rigidly connected circuit board (8, 8a, 8b), such that at least the small-area photodiode (4) can electrically conduct and temporarily adjust in a position (9, 9′) at least using its electrical contacts (10). The small-area photodiode (4) is fixed directly in the adjusted position (9, 9′) on the circuit board (8, 8a, 8b).
    • 一种用于大测量范围的电光距离测量系统(1,1'),其具有光束源(2)与发射光学器件(3)和光束接收器的对轴布置,该光束源配置为至少一个小面积 具有相关联的接收光学器件(5)的光电二极管(4),其包含用于距离(X)的较低距离测量范围的信号扩展的处理。 光源(2),发射光学器件(3),小面积光电二极管(4)和接收光学元件(5)各自的光轴(A1,A2)与测量光束(6)平行, 。 测量光束(6)从发射光学器件(2)引导到测量对象并且继续到接收光学器件。 光束源(2)和小面积光电二极管(4)通过至少一个刚性连接的电路板(8,8a,8b)彼此刚性连接,使得至少小面积光电二极管(4)可以 至少使用其电触头(10)在导电和临时调节位置(9,9')。 小面积光电二极管(4)直接固定在电路板(8,8a,8b)上的调整位置(9,9')上。
    • 89. 发明授权
    • Tilting or drag lever with a valve clearance equalizing element
    • 倾斜或拖动杆与阀门间隙均衡元件
    • US6065434A
    • 2000-05-23
    • US142516
    • 1998-09-04
    • Dieter Schmidt
    • Dieter Schmidt
    • F01L1/24F01L1/20F01L1/18
    • F01L1/2411
    • A rocker arm or a finger lever (1) receives a valve clearance compensation element (4) in a reception bore (3). A cap (15) inserted into this reception bore (3) supports one end of an inner piston (7) of the valve clearance compensation element (4). This cap, through which on the one hand, the pressure medium is fed into an oil reservoir (8) and which, on the other hand, vents this oil reservoir (8) is fixed by an extension (17) in a complementary opening (18) of the rocker arm or the finger lever.
    • PCT No.PCT / EP96 / 05665 Sec。 371日期:1998年9月4日 102(e)1998年9月4日PCT PCT 1996年12月17日PCT公布。 公开号WO97 / 35097 日期1997年9月25日摇臂或手指杆(1)在接收孔(3)中接收阀间隙补偿元件(4)。 插入该接收孔(3)中的盖(15)支撑阀间隙补偿元件(4)的内活塞(7)的一端。 另一方面,该盖通过其将压力介质供给到储油器(8)中,另一方面,该储油器(8)的通风口由互补开口中的延伸部(17)固定 18)摇臂或手指杆。