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    • 51. 发明授权
    • Method and apparatus for biologically treating waste water containing fluorine
    • 用于生物处理含氟废水的方法和装置
    • US06228264B1
    • 2001-05-08
    • US09328880
    • 1999-06-09
    • Kazuyuki YamasakiTakashi ImaiTakashi Fujiwara
    • Kazuyuki YamasakiTakashi ImaiTakashi Fujiwara
    • C02F330
    • C02F3/1273C02F1/52C02F3/301C02F2101/14Y02W10/15
    • A waste water treatment method and apparatus uses microorganism-containing sludge to treat waste water containing fluorine and does not utilize any chemical reaction. For waste water treatment, a treatment tank has an anaerobic part having sludge containing microorganisms and an aerobic part having sludge containing microorganisms and communicating with the anaerobic part. Waste water to be treated and biological excess sludge are introduced into the anaerobic part. Once treated by the microorganisms, the water is filtered by a membranous separation device in the aerobic part, and output as treated water. In the treatment tank, the microorganisms are moved between the anaerobic part and aerobic part to enhance their ability to concentrate or accumulate therein fluorine or other substances contained in the waste water.
    • 废水处理方法和装置使用含微生物污泥处理含氟废水,不利用任何化学反应。 对于废水处理,处理槽具有含有微生物污泥的厌氧部分和含有微生物的污泥和需要厌氧部分连通的需氧部分。 待处理的废水和生物过剩的污泥被引入厌氧部分。 一旦用微生物处理,水被有氧部分中的膜分离装置过滤,并作为处理水输出。 在处理槽中,微生物在厌氧部分和需氧部分之间移动,以提高其在其中浓缩或积聚其中含有的氟或其它物质的能力。
    • 52. 发明授权
    • Multichip press-contact type semiconductor device
    • 多芯片压接式半导体器件
    • US5866944A
    • 1999-02-02
    • US665980
    • 1996-06-19
    • Michiaki HiyoshiTakashi FujiwaraHideo Matsuda
    • Michiaki HiyoshiTakashi FujiwaraHideo Matsuda
    • H01L29/74H01L23/051H01L23/48H01L25/04H01L25/07H01L25/18H01L23/16
    • H01L23/051H01L24/72H01L2924/01004H01L2924/01013H01L2924/01029H01L2924/01033H01L2924/01042H01L2924/01047H01L2924/01082H01L2924/1305H01L2924/13055
    • In the present invention, by virtue of heat buffer plates respectively located on the major surfaces of IGBT chips and FRD chips arranged in a single plane, the total thickness of each chip and a corresponding one of the heat can be set to a substantially predetermined value. A thickness-correcting member having elongated projections corresponding to the chips is provided on those surfaces of the heat buffer plates which is remote from the chips. A heat buffer disk plate is provided on those surfaces of the chips which are opposite to the major surfaces thereof. The thickness-correcting member, the heat buffer plates and the IGBT and FRD chips are held and simultaneously pressed between an emitter press-contact electrode plate and a collector press-contact electrode plate. Before using the device, a force of press, which is higher than that applied at the time of using the device and can plastically deform the thickness-correcting member, is applied to the emitter press-contact electrode plate and the collector press-contact electrode plate, thereby correcting variations in total thickness of each semiconductor chip and a corresponding one of the heat buffer plates.
    • 在本发明中,由于分别位于布置在单个平面中的IGBT芯片和FRD芯片的主表面上的热缓冲板,每个芯片的总厚度和相应的一个热量可以被设置为基本上预定的值 。 具有与芯片相对应的细长突起的厚度校正构件设置在远离芯片的热缓冲板的表面上。 在与其主表面相对的芯片的这些表面上设置有缓冲盘片。 厚度校正构件,热缓冲板和IGBT和FRD芯片被保持并同时按压在发射极压接电极板和集电体压接电极板之间。 在使用该装置之前,将加压力高于在使用该装置时施加的压力并使厚度校正构件塑性变形的压力施加到发射体压接电极板和集电体压接电极 从而校正每个半导体芯片和对应的一个热缓冲板的总厚度的变化。
    • 54. 发明授权
    • Multiprocess input system with suppressed amount of communication
between processes
    • 多进程输入系统与进程之间的通信量被抑制
    • US5555361A
    • 1996-09-10
    • US553084
    • 1995-11-03
    • Masahiko NaritaTakashi FujiwaraKeisuke FukuiMakiko ShimamuraTakanori Tateno
    • Masahiko NaritaTakashi FujiwaraKeisuke FukuiMakiko ShimamuraTakanori Tateno
    • G06F9/46G06F3/023G06F3/033G06F3/038G06F9/54G06F17/21G06F3/00
    • G06F3/023G06F3/038
    • A multiprocess input system includes a first process execution part for processing input data, a second process execution part for processing the input data, and a third process execution part for distributing the input data to the first and second process execution part. The third process execution part is provided with a data storage request receiving part for receiving from the first process execution part storage start conditions for starting storage of the input data and identification information related to the second process execution part and for storing the storage start conditions and the identification information related to the second process execution part, an input data storage part for starting storage of the input data when the storage start conditions stored in the data storage request receiving part are satisfied and for notifying the first process execution part of the start of the data storage, an identification information collating part for collating the identification information stored in the data storage request receiving part and identification information received from the second process execution part, and a stored data transmitting part for transmitting the input data stored in the data storage request receiving part to the second process execution part when the two identification information collated in the identification information collating part match.
    • 多进程输入系统包括用于处理输入数据的第一处理执行部分,用于处理输入数据的第二处理执行部分和用于将输入数据分配给第一处理执行部分和第二处理执行部分的第三处理执行部分。 第三处理执行部件设置有数据存储请求接收部分,用于从第一处理执行部分接收用于开始存储输入数据的存储开始条件和与第二处理执行部分相关的识别信息,并存储存储开始条件,以及 与第二处理执行部相关的识别信息,满足存储在数据存储请求接收部中的存储开始条件时开始存储输入数据的输入数据存储部,并且通知第一处理执行部的开始 数据存储器,用于对存储在数据存储请求接收部分中的识别信息和从第二处理执行部分接收到的识别信息进行整理的识别信息对照部分和用于发送存储在数据存储请求中的输入数据的存储数据发送部分 接收部分 当在识别信息对照部分中整理的两个识别信息匹配时,第二处理执行部分。