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    • 9. 发明申请
    • CALIBRATION CAMERA WITH SPECTRAL DEPTH
    • 校准摄像机与光谱深度
    • WO2009115961A1
    • 2009-09-24
    • PCT/IB2009/051042
    • 2009-03-13
    • KONINKLIJKE PHILIPS ELECTRONICS N. V.MEIJER, Eduard, J.DE GRAAF, JanVERSCHUUREN, Marcus, A.
    • MEIJER, Eduard, J.DE GRAAF, JanVERSCHUUREN, Marcus, A.
    • G03B15/05G03B15/03H04N3/08H04N5/225H04N1/60
    • H04N5/2256G03B15/05G03B2215/05G03B2215/0585H04N17/002
    • An imaging device (300), a lighting control system (400) including the imaging device (300), and a method for aligning with a reference image lighting of a site (220) illuminated by least one light source (240) are provided. The imaging device (300) and/or the lighting control system (400) include at least one processor (410) configured to control the imaging device (300) and the light source (240). The imaging device (300) has an array of reflectors (320) including selectable reflectors; a lens configured to receive image rays (330) for forming an image including pixels and provide the image rays (330) to the array of reflectors (320) for reflection as reflected rays (355); and a detector (310) configured to receive the reflected rays (355) and detect characteristics of each pixel of the image for form a resolved image. The processor (410) is further configured to sequentially select each reflector (350) of the array of reflectors (320) for reflecting the reflected rays (355) towards the detector (310).
    • 提供了一种成像设备(300),包括成像设备(300)的照明控制系统(400)和用于与由至少一个光源(240)照明的场所(220)的参考图像照明进行对准的方法。 成像设备(300)和/或照明控制系统(400)包括配置成控制成像设备(300)和光源(240)的至少一个处理器(410)。 成像装置(300)具有包括可选反射器的反射器阵列(320) 配置为接收用于形成包括像素的图像的图像射线(330),并将所述图像射线(330)提供给所述反射器阵列(320)以作为反射射线(355)反射; 以及被配置为接收所述反射光线(355)并检测所述图像的每个像素的特征以形成分辨图像的检测器(310)。 处理器(410)还被配置为顺序地选择反射器阵列(320)的每个反射器(350),以将反射光线(355)反射到检测器(310)。
    • 10. 发明申请
    • FIELD EMISSION DISPLAY AND METHOD OF MANUFACTURING THE SAME
    • 场发射显示及其制造方法
    • WO2004102604A1
    • 2004-11-25
    • PCT/IB2004/050648
    • 2004-05-12
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.DE GRAAF, JanVINK, Teunis, J.GILLIES, Murray, F.
    • DE GRAAF, JanVINK, Teunis, J.GILLIES, Murray, F.
    • H01J9/02
    • B82Y10/00H01J9/025H01J2201/30469
    • A field emission device (200) comprises a substrate on which an emitter material (270), such as printed CNT paste, is provided. During manufacturing, the emitter material (270) is activated by bringing a patterned mould or stamp (280) comprising an adhesive material into adhesive contact with the emitter material (270). The adhesive contact is such that it provides sufficient adhesive force when the stamp (280) is separated from the material (270), or vice versa, so that at least a portion off the emitter material is removed or rearranged to form a new emission surface on the emitter layer (270). The pattern of the mould or stamp (280) should match that of the emitter structure of the field emission device (200). Preferably, the adhesive material is provided as an adhesive layer on contact surfaces of protrusions of the stamp (280), which is suitable for activating emitter material inside the gate holes (235) of a triode structure for a field emission display.
    • 场发射器件(200)包括衬底,在衬底上提供诸如印刷CNT浆料的发射体材料(270)。 在制造期间,通过使包含粘合剂材料的图案化模具或印模(280)与发射体材料(270)粘合接触来激活发射器材料(270)。 粘合剂接触使得当印模(280)与材料(270)分离时,其提供足够的粘合力,反之亦然,使得至少一部分离开发射体材料被去除或重排以形成新的发射表面 在发射极层(270)上。 模具或印模(280)的图案应与场发射装置(200)的发射极结构的图案相匹配。 优选地,粘合剂材料被设置为在印模(280)的突起的接触表面上的粘合剂层,其适合于激活用于场致发射显示器的三极管结构的栅极孔(235)内的发射体材料。