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    • 14. 发明授权
    • Filter control method, and filter controlled by the method
    • 过滤器控制方法和过滤器由该方法控制
    • US07025802B2
    • 2006-04-11
    • US10415099
    • 2002-06-06
    • Kazuya UshiodaYoshiyuki DoiToyosei Aota
    • Kazuya UshiodaYoshiyuki DoiToyosei Aota
    • B01D46/42
    • B01D46/0086B01D46/009
    • A filter maintenance monitoring method and a filter maintained thereby are provided, by which re-use of the filter by wash is smoothly and efficiently promoted. The filter includes that loaned from a filter owner to a filter user. The filter used for a predetermined purpose and having clogging of filter cloth by filtering dust in air is recovered to be washed for re-use. History data base stored in a storage portion of a computer is renewed based on wash history of the recovered filter. Then, re-use of the filter is decided based on the renewed history data base. Changes in the filter by damages or deterioration corresponding to the wash history are automatically grasped. Thereby, an efficient filter maintenance is realized.
    • 提供了一种过滤器维护监视方法和由此维护的过滤器,通过其清洗过滤器的再次使用被顺利且有效地提高。 过滤器包括从过滤器所有者借给过滤器用户的过滤器。 用于预定目的并通过过滤空气中的灰尘堵塞滤布的过滤器被回收以被洗涤以供再次使用。 基于恢复的过滤器的洗涤历史来更新存储在计算机的存储部分中的历史数据库。 然后,基于更新的历史数据库来确定过滤器的重用。 自动掌握过滤器中与洗涤历史相对应的损害或劣化的变化。 从而实现了高效的过滤器维护。
    • 20. 发明申请
    • OPTICAL SEMICONDUCTOR DEVICE
    • 光学半导体器件
    • US20120193740A1
    • 2012-08-02
    • US13356104
    • 2012-01-23
    • Yoshiyuki DoiYoshifumi MuramotoTakaharu Ohyama
    • Yoshiyuki DoiYoshifumi MuramotoTakaharu Ohyama
    • H01L31/0232
    • H01L27/1446H01L31/0203H01L31/022408H01L31/02327H01L31/105H01L2224/48091H01L2224/49175H01L2224/73265H01L2924/12032H01L2924/00014H01L2924/00
    • The present invention is intended to provide a compact and simple optical semiconductor device that reduces crosstalk (leakage current) between light receiving elements. According to the present invention, since a back surface electrode is a mirror-like thin film, crosstalk to an adjacent light receiving element can be suppressed, thereby reducing a detection error of a light intensity. By disposing a patterned back surface electrode or by disposing an ohmic electrode at the bottom of an insulating film over the whole back surface, contact resistance on the back surface can be reduced. By using the optical semiconductor elements with a two-dimensional arrangement and by using a mirror-like thin film as the back surface electrode, crosstalk can be reduced. By accommodating the optical semiconductor elements in the housing in a highly hermetic condition, the optical semiconductor elements can be protected from an external environment.
    • 本发明旨在提供一种紧凑且简单的光学半导体器件,其减少光接收元件之间的串扰(漏电流)。 根据本发明,由于背面电极是镜面状的薄膜,因此能够抑制与相邻的受光元件的串扰,能够降低光强度的检测误差。 通过设置图案化的背面电极或通过在整个背面的绝缘膜的底部设置欧姆电极,可以降低背面的接触电阻。 通过使用具有二维排列的光半导体元件和通过使用镜面状的薄膜作为背面电极,可以降低串扰。 通过将光学半导体元件容纳在高度密封状态的壳体中,可以保护光学半导体元件免受外部环境的影响。