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    • 2. 发明授权
    • Method for using an imaging apparatus to generate image panels for assembly as a poster
    • 使用成像装置生成用于组装为海报的图像面板的方法
    • US08014005B2
    • 2011-09-06
    • US11236063
    • 2005-09-27
    • Adam J. AhneRonald T. Sellers
    • Adam J. AhneRonald T. Sellers
    • G06K15/00
    • H04N1/3876
    • A method to generate a plurality of image panels for assembly as a poster includes determining an individual image boundary for each of a plurality of image data portions; associating a corresponding incising boundary with each individual image boundary, wherein at least a portion of each individual image boundary is coincident with the corresponding incising boundary; printing an image portion at a location on a sheet of media in accordance with the individual image boundary of an image data portion that corresponds to the image portion; incising the sheet of media with the incising unit along the corresponding incising boundary to form an individual image panel of the plurality of image panels; and repeating the printing and the incising until all of the plurality of image data portions are processed to form the plurality of image panels.
    • 生成用于组装为海报的多个图像面板的方法包括为多个图像数据部分中的每一个确定单个图像边界; 将相应的切割边界与每个单独图像边界相关联,其中每个单独图像边界的至少一部分与相应的切割边界一致; 根据对应于图像部分的图像数据部分的单独图像边界,在一张介质上的位置处打印图像部分; 用所述切割单元沿相应的切割边界切割所述介质片以形成所述多个图像面板中的单独图像面板; 并重复打印和切割,直到所有多个图像数据部分被处理以形成多个图像面板。
    • 6. 发明授权
    • Method and apparatus for infrared sensing of gas
    • 用于红外线检测气体的方法和装置
    • US6067840A
    • 2000-05-30
    • US88138
    • 1998-06-01
    • Mahesan ChelvayohanAdam J. Ahne
    • Mahesan ChelvayohanAdam J. Ahne
    • G01J3/42G01N21/35G01N21/61
    • G01N21/3504
    • A gas sensor (10) is shown having alternately energized infrared radiation sources (14, 16) disposed in a gas chamber (12) at different distances from an infrared detector (18). Both radiation sources are filtered at the absorbing wavelength of a gas to be monitored with one radiation source located proximate to the detector serving as a "virtual reference". The differential absorption between the two radiation sources is used to determine the concentration of a gas being monitored. In a modified sensor (30) one radiation source is seated in a parabolic recess (34a) in a base plate (34) with the radiation focused on one angled end wall (32d) of a dished shaped cover member (32) and reflected over to a second angled end wall (32e) and into the detector with the radiation sources and the detector attached directly to a circuit board (24) mounting the sensor. The recessed cover with opposed angled end walls is also used with another embodiment in which the radiation sources are both located the same distance from the detector, are alternately energized and are filtered with sensing and reference filters, respectively. A modified embodiment (50) has a concave end wall (32e') vertically aligned with the detector and another embodiment (60) has an additional detector (18') along with a semi-reflective, semi-transmitting optical baffle (32k) for use with a gas having a higher absorption level. This embodiment also shows cover member (32") received directly on circuit board (24') with no intermediate base plate.
    • 气体传感器(10)被示出为具有与红外线检测器(18)不同的距离处设置在气体室(12)中的交替供电的红外辐射源(14,16)。 两个辐射源在待监测的气体的吸收波长处被过滤,一个位于接近检测器的辐射源用作“虚拟参考”。 两个辐射源之间的差分吸收用于确定被监测气体的浓度。 在改进的传感器(30)中,一个辐射源位于基板(34)中的抛物线凹槽(34a)中,其中辐射聚焦在碟形盖构件(32)的一个成角度的端壁(32d)上并被反射 到达第二倾斜端壁(32e)并且具有辐射源并且检测器直接连接到安装传感器的电路板(24)的检测器中。 具有相对的倾斜端壁的凹入盖也用于其中辐射源两者都位于与检测器相同距离的另一实施例,交替地被激励并且被分别用感测和参考滤波器过滤。 改进的实施例(50)具有与检测器垂直对准的凹端壁(32e'),并且另一实施例(60)具有附加的检测器(18')以及半反射半透射光学挡板(32k),用于 与具有较高吸收水平的气体一起使用。 该实施例还示出了直接接在电路板(24')上而没有中间基板的盖构件(32“)。