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    • 3. 发明授权
    • MOS field effect transistor device with buried channel
    • MOS场效应晶体管器件具有埋入通道
    • US4916500A
    • 1990-04-10
    • US78987
    • 1987-07-29
    • Yoshiaki YazawaAtsuo WatanabeAtsushi HiraishiMasataka MinamiTakahiro Nagano
    • Yoshiaki YazawaAtsuo WatanabeAtsushi HiraishiMasataka MinamiTakahiro Nagano
    • H01L29/10H01L29/78H01L29/786H01L29/808
    • H01L29/78696H01L29/105H01L29/78H01L29/7838H01L29/808
    • The present invention relates to a semiconductor device comprising a semiconductor substrate of a first conductivity type or an insulator, a source comprising an impurity layer of a second conductivity type disposed on said semiconductor substrate or said insulator, a drain comprising an impurity layer of the second conductivity type disposed on said semiconductor substrate or said insulator, an impurity layer of the first conductivity type formed between said source and said drain, a gate formed on said impurity layer of the first conductivity type via an insulation film, and an impurity layer of the second conductivity type having an impurity concentration lower than that of said source and said drain, said impurity layer of the second conductivity type being disposed between said source, said drain and said impurity layer of the first conductivity type, and said semiconductor substrate of the first conductivity type or said insulator.
    • 本发明涉及一种包括第一导电类型或绝缘体的半导体衬底的半导体器件,包括设置在所述半导体衬底或所述绝缘体上的第二导电类型的杂质层的源极,包括第二导电类型或绝缘体的杂质层的漏极 设置在所述半导体衬底或所述绝缘体上的导电类型,形成在所述源极和所述漏极之间的第一导电类型的杂质层,经由绝缘膜形成在所述第一导电类型的所述杂质层上的栅极和 第二导电类型的杂质浓度低于所述源极和漏极的第二导电类型,所述第二导电类型的所述杂质层设置在所述源极,所述漏极和所述第一导电类型的所述杂质层之间,所述第一导电类型的所述半导体衬底 导电类型或所述绝缘体。
    • 9. 发明授权
    • Printed-wiring board
    • 印刷电路板
    • US5028867A
    • 1991-07-02
    • US401302
    • 1989-08-31
    • Yoshiaki Yazawa
    • Yoshiaki Yazawa
    • G01B7/31G01R31/28H05K1/02H05K3/00H05K3/12
    • G01R31/2818G01B7/31H05K1/0269H05K2201/09781H05K2203/163H05K2203/166H05K3/0052H05K3/0097H05K3/1216
    • In a printed-wiring board produced by arranging a plurality of wiring circuit patterns on a printed-wiring board by screen printing and cutting out product regions corresponding to the wiring circuit patterns by punching them along the circumferences of the product regions, the printed-wiring board according to the present invention comprises deviation detecting patterns for determining whether or not the condition of deviation of the printed pattern is within an allowable limit, the deviation detecting patterns being printed at the time of the screen printing of the wiring circuit patterns in the vicinity of the position of the cut plane of the board for each product region of each wiring circuit pattern. Thereby, it is made possible to easily determine whether or not the condition of the pattern deviation is within a specified allowable limit.
    • 在通过丝网印刷在印刷电路板上布置多个布线电路图案并通过沿着产品区域的周边冲压而切除与布线电路图案相对应的产品区域而制造的印刷布线板中,印刷布线 根据本发明的板包括用于确定打印图案的偏离条件是否在可允许极限内的偏差检测图案,在布线电路图案的丝网印刷附近打印的偏差检测图案在附近 对于每个布线电路图案的每个产品区域的板的切割平面的位置。 由此,能够容易地判断图案偏差的条件是否在规定的允许极限内。
    • 10. 发明申请
    • Apparatus and Method for Monitoring Airborne Microorganisms in the Atmosphere
    • 用于监测气氛中的空气微生物的装置和方法
    • US20150010902A1
    • 2015-01-08
    • US14377365
    • 2012-02-08
    • Kei TakenakaHideyuki NodaNaoshi ItabashiYoshiaki Yazawa
    • Kei TakenakaHideyuki NodaNaoshi ItabashiYoshiaki Yazawa
    • G01N33/569G01N1/22G01N21/64
    • G01N33/569G01N1/2214G01N21/6428G01N2001/245G01N2021/6439G01N2201/061G01N2201/0638
    • Disclosed is an apparatus for monitoring airborne microorganisms composed of: a chassis, which has a fan for flowing the air therein from the outside at a portion thereof and of which inside is spatially segmented by partition plates for performing a plurality of steps; a perforated plate, which is disposed at a portion of the chassis and has a plurality of nozzles for focusing split air flows passing through a plurality of spaces in a given direction; a capturing plate, which has a plurality of trapping surfaces at the positions opposite to the plurality of nozzles of the perforated plate; a capturing plate control part, which moves the capturing plate relative to the perforated plate; and an optical detection part for fluorescence generated from the microorganisms on the trapping surface of the capturing plate. The apparatus for monitoring airborne microorganism is characterized in that air containing microorganisms flows into some of the plurality of spaces segmented in the chassis, each of the plurality of trapping surfaces no the capturing plate has a pillar, and the capturing plate control part controls the position of the capturing plate; thereby, the air flows hit sequentially against the plurality of trapping surfaces of the capturing plate through the plurality of nozzles of the perforated plate from the plurality of spaces segmented in the chassis and the optical detection part detects sequentially fluorescence from the trapping surfaces of the capturing plate to detect the microorganisms for monitoring the presence or absence thereof.
    • 本发明公开了一种用于监测空气微生物的装置,其特征在于,包括:底盘,其具有用于使空气的一部分从外部流入其中的风扇,并且其内部通过分隔板空间分段以进行多个步骤; 多孔板,其设置在所述底盘的一部分,并且具有多个喷嘴,用于聚焦沿给定方向穿过多个空间的分流空气流; 捕获板,其在与多孔板的多个喷嘴相对的位置处具有多个捕获表面; 捕获板控制部,其使捕获板相对于多孔板移动; 以及用于从捕获板的捕获表面上的微生物产生的荧光的光学检测部分。 用于监测空气微生物的装置的特征在于,含有空气的微生物流入底盘中分割的多个空间中的一些,多个捕获表面中的每一个没有捕获板具有支柱,并且捕获板控制部分控制位置 的捕获板; 由此,空气流通过多孔板的多个喷嘴从分离在底盘中的多个空间顺序地撞击捕获板的多个捕获表面,并且光学检测部分依次从捕获捕获表面捕获荧光 检测微生物以监测其存在或不存在。