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    • 1. 发明申请
    • Image-burr correcting system of camera
    • 相机的图像毛刺校正系统
    • US20060245663A1
    • 2006-11-02
    • US11409833
    • 2006-04-24
    • Kazuyoshi YamagataMasashi Tabata
    • Kazuyoshi YamagataMasashi Tabata
    • G06K9/40
    • H04N5/23212
    • There is provided a high-performance image-burr correcting system of a camera, which can improve precision of a focusing process, accomplish low power consumption, and shorten a release time lag. The image-burr correcting system includes an image-burr detecting unit which can detect image burr generated upon photographing; an image-burr correcting unit which can correct the image burr based on the image-burr detection result of the image-burr detecting unit; and a focusing detecting unit which can detect the focused result. After the completion of an appropriate focusing process is detected by the focusing detecting unit, the image-burr correcting unit is driven and image-burr correction is performed in correspondence with an image burr amount detected by the image-burr detecting unit.
    • 提供了一种相机的高性能图像毛刺校正系统,其可以提高聚焦过程的精度,实现低功耗,并缩短释放时间延迟。 图像毛刺校正系统包括可以检测拍摄时产生的图像毛刺的图像毛刺检测单元; 图像毛刺校正单元,其可以基于图像毛刺检测单元的图像毛刺检测结果校正图像毛刺; 以及可以检测聚焦结果的聚焦检测单元。 在通过聚焦检测单元检测到适当的聚焦处理完成之后,驱动图像毛刺校正单元并对应于图像毛刺检测单元检测到的图像毛刺量进行图像毛刺校正。
    • 2. 发明授权
    • Relative-angle detection apparatus
    • 相对角度检测装置
    • US5835209A
    • 1998-11-10
    • US720832
    • 1996-10-03
    • Yuichi UmedaMasatoshi UchioKazuyoshi YamagataJunichi Saito
    • Yuichi UmedaMasatoshi UchioKazuyoshi YamagataJunichi Saito
    • G01B11/26G01S3/782G01S5/16G06F3/041G06F3/048G01C1/00
    • G01S3/782G01S5/163
    • A relative-angle detection apparatus which has an infrared-signal transmitting unit and an infrared-signal receiving unit. The transmitting unit includes a first light-emitting device array formed of a plurality of light-emitting devices disposed in a direction substantially coinciding with the fiducial axis for angle detection, and a second light-emitting device array formed of a plurality of light-emitting devices located to be slightly angled in the different directions with respect to the axis. The devices of the first light-emitting device array generate a continously-output first infrared signal in which an infrared signal is intermittently modulated by a first frequency and also modulated by a second frequency higher than the first frequency. The devices of the second light-emitting device array generate a second infrared signal in which an infrared signal is modulated by the first frequency and also divided into a plurality of signals so as to be output at different timings. The receiving unit detects and amplifies the first frequency contained in the first and second infrared signals and executes signal-processing on the amplified first frequency, thereby detecting the angle of the transmitting unit relative to the receiving unit.
    • 一种相对角度检测装置,其具有红外线信号发送部和红外线信号接收部。 发送单元包括:第一发光装置阵列,其由与基准重合的用于角度检测的基准线的多个发光装置构成;以及第二发光装置阵列,其由多个发光 位于相对于轴线在不同方向上稍微倾斜的装置。 第一发光装置阵列的装置产生连续输出的第一红外信号,其中红外信号被第一频率间歇地调制,并且还被比第一频率高的第二频率进行调制。 第二发光装置阵列的装置产生第二红外信号,其中红外信号被第一频率调制,并且还被分成多个信号,以便以不同的定时输出。 接收单元检测并放大第一和第二红外信号中包含的第一频率,并对放大的第一频率执行信号处理,从而检测发送单元相对于接收单元的角度。
    • 6. 发明授权
    • Light-emitting diode device with reduced scatter
    • 具有降低散射的发光二极管器件
    • US5841154A
    • 1998-11-24
    • US731376
    • 1996-10-10
    • Masatoshi UchioKazuyoshi YamagataYuichi UmedaJunichi Saito
    • Masatoshi UchioKazuyoshi YamagataYuichi UmedaJunichi Saito
    • G02B5/02H01L33/54H01L33/00
    • H01L33/58H01L33/44
    • A light-emitting diode device includes a light-emitting diode, a lens cap made of synthetic resin, for covering the light-emitting surface of the light-emitting diode means, and a refractive layer formed between the light-emitting surface and the lens cap, the refractive layer having a composition, such as an air layer, with a refractive index different from the refractive index of said synthetic resin. In this arrangement the relationship between the light intensity and directional angles is shown by characteristics in which the light intensity is maximum in the center of the directional angles, and is relatively flat in the form of a sinusoid in the wide range of the directional angles. Therefore, even when the characteristics of each light-emitting diode is not verified, a predetermined light-signal transmission range is readily obtained without being affected by a scatter in the characteristics.
    • 发光二极管装置包括发光二极管,由合成树脂制成的透镜盖,用于覆盖发光二极管装置的发光表面,以及形成在发光表面和透镜之间的折射层 盖,具有折射率不同于所述合成树脂的折射率的组成的折射层,例如空气层。 在这种布置中,光强度和方向角之间的关系由方向角的中心处的光强度最大的特性表示,并且在方向角的宽范围内以正弦曲线的形式相对平坦。 因此,即使没有验证各发光二极管的特性,也容易得到预定的光信号传输范围,而不受特性的散射的影响。