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    • 1. 发明授权
    • Vertical synchronizing signal generation apparatus and video signal processing apparatus
    • 垂直同步信号发生装置和视频信号处理装置
    • US07199834B2
    • 2007-04-03
    • US10480235
    • 2002-06-07
    • Kunihiko FujiiToshihiro MiyoshiKazuhide FujimotoManabu YumineToshiya Noritake
    • Kunihiko FujiiToshihiro MiyoshiKazuhide FujimotoManabu YumineToshiya Noritake
    • H04N5/06H04N5/95
    • H04N5/12H04N5/10
    • The vertical sync signal generator includes: a vertical sync signal separation circuit for separating a vertical sync signal of an input luminance signal and outputting the separated signal as a first vertical sync signal; an automatic frequency control circuit for generating a second vertical sync signal having a repeat frequency corresponding with an average repeat frequency of the first vertical sync signal and outputting the generated signal; a vertical sync signal phase detection circuit for detecting whether or not the first vertical sync signal has two different periods repeated alternately and outputting the detection result as a decision signal; and a selector for receiving the first and second vertical sync signals, selecting the first vertical sync signal when the decision signal indicates that the first vertical sync signal has two different periods repeated alternately and otherwise selecting the second vertical sync signal and outputting the selected signal.
    • 垂直同步信号发生器包括:垂直同步信号分离电路,用于分离输入亮度信号的垂直同步信号并输出​​分离信号作为第一垂直同步信号; 自动频率控制电路,用于产生具有与第一垂直同步信号的平均重复频率对应的重复频率的第二垂直同步信号,并输出所产生的信号; 垂直同步信号相位检测电路,用于检测第一垂直同步信号是否具有交替重复的两个不同周期,并将检测结果作为判定信号输出; 以及选择器,用于接收第一和第二垂直同步信号,当判定信号指示第一垂直同步信号具有交替重复的两个不同周期时,选择第一垂直同步信号,否则选择第二垂直同步信号并输出​​所选择的信号。
    • 2. 发明授权
    • Full-auto labeling system
    • 全自动贴标系统
    • US4363693A
    • 1982-12-14
    • US117614
    • 1980-02-01
    • Kunihiko FujiiYoshihisa Nishiyama
    • Kunihiko FujiiYoshihisa Nishiyama
    • G01G11/04G01G19/414G05G15/00
    • G01G19/414G01G11/04
    • A full-auto labeling system having sending-in conveyor, a weighing conveyor and a sticking conveyor disposed in alignment, and the respective conveyors provided with sensors for detecting a commodity, so as to control an operation of a load cell with outputs of the sensors providing the basis of an improvement which consists of a load cell periodically operated even when no commodity is being transported, whereby when a measurement value becomes necessary a stable operation can be immediately performed, and that A/D conversion by the load cell is executed twice with a single start signal, a second output being taken as the measurement value, whereby the measurement value of high reliability can be obtained.
    • 一种全自动贴标系统,具有输入输送机,称重输送机和布置在一起的粘贴输送机,以及各自输送机设置有用于检测商品的传感器,以便通过传感器的输出控制称重传感器的操作 提供即使在没有商品被输送的情况下由负载传感器周期性地操作的改进的基础,由此当需要测量值时,可以立即执行稳定的操作,并且由负载传感器进行A / D转换两次 利用单个启动信号,将第二输出作为测量值,由此可以获得高可靠性的测量值。
    • 3. 发明授权
    • Injection apparatus
    • 注射装置
    • US06415670B1
    • 2002-07-09
    • US09534989
    • 2000-03-27
    • Kihachiro OhkuraShigeo MukaiKunihiko Fujii
    • Kihachiro OhkuraShigeo MukaiKunihiko Fujii
    • G01N100
    • G01N35/1097B01D15/14B01D15/1864G01N30/20G01N30/466G01N35/1072G01N2030/628G01N30/16
    • An injection apparatus of the present invention includes a first switching valve RV1 which is selectively connected to any of a plurality of injectors 21-30 at one end sides thereof; a second switching valve RV2 which is selectively connected to any of the plurality of injectors at the other end sides thereof; a third switching valve RV4 which is connected to the second switching valve and is selectively connected to any of a plurality of columns 31-40 at one end sides thereof; and a fourth switching valve RV5 which is selectively connected to any of the plurality of columns at the other end sides thereof A sequential switching of these four switching valves can permit the sample liquids in the injectors 21-30 to be delivered in sequence into any selected column 31-40, and as such can allow the sample liquids packed in the plurality of injectors to be efficiently dispensed or analyzed by a chromatograph.
    • 本发明的注射装置包括:第一切换阀RV1,其选择性地连接到其一端侧的多个喷射器中的任一个; 第二切换阀RV2,其另一端侧选择性地连接到多个喷射器中的任一个; 第三切换阀RV4,其连接到第二切换阀,并且在其一端侧选择性地连接到多个柱31-40中的任一个; 以及第四切换阀RV5,其在另一端侧选择性地连接到多个列中的任何一个。这四个切换阀的顺序切换可允许喷射器21-30中的样品液体顺序地输送到任何选定的 柱31-40,因此可以允许通过色谱仪有效地分配或分析在多个喷射器中包装的样品液体。
    • 6. 发明授权
    • Microorganism capable of microbially decomposing chloro-, methylthio- and methoxy-triazine agrichemicals
    • 微生物能够微量分解氯,甲硫基和甲氧基三嗪农药
    • US08168420B2
    • 2012-05-01
    • US12513573
    • 2007-11-20
    • Kazuhiro TakagiKunihiko FujiiNaoki HaradaAkio Iwasaki
    • Kazuhiro TakagiKunihiko FujiiNaoki HaradaAkio Iwasaki
    • C12N1/20C02F3/34A62D3/02
    • B09C1/10A62D3/02A62D2101/26C02F3/34C02F2101/306C12R1/01Y10S435/822
    • Disclosed are: a novel microorganism which can decompose a methylthiotriazine compound (particularly, simetryn, dimethametryn, prometryn), a chlorotriazine compound (particularly, simazine, atrazine, propazine) and a methoxytriazine compound (particularly, simeton, atraton, prometon) which have been frequently used as agrichemicals or the like; and a method for decomposing a methylthiotriazine compound, a chlorotriazine compound and/or a methoxytriazine compound by using the microorganism. Specifically disclosed are: a novel bacterium Nocardioides sp. strain MTD22 which is capable of decomposing a methylthiotriazine compound, a chlorotriazine compound and a methoxytriazine compound; and a method for decomposing a methylthiotriazine compound, a chlorotriazine compound and/or a methoxytriazine compound, particularly simetryn, dimethametryn, prometryn, simazine, atrazine, propazine, simeton, atraton and/or prometon, by using the microorganism.
    • 公开了一种可以分解甲基硫代三嗪化合物(特别是西米特,二甲基丙烯酸甲酯,prometryn),氯代三嗪化合物(特别是西马拉嗪,莠去津,丙嗪)和甲氧基三嗪化合物(特别是西蒙特,阿特拉津,普罗特酮)的新型微生物, 经常用作农药等; 以及通过使用微生物分解甲基硫代三嗪化合物,氯代三嗪化合物和/或甲氧基三嗪化合物的方法。 具体公开的是:新型细菌诺卡氏菌属 能够分解甲基硫代三嗪化合物,氯代三嗪化合物和甲氧基三嗪化合物的菌株MTD22; 以及通过使用该微生物分解甲基硫代三嗪化合物,氯代三嗪化合物和/或甲氧基三嗪化合物,特别是西蒙特,二甲基丙烯酸,衍生物,西马拉平,莠去津,丙嗪,西蒙,阿特拉津和/或前导子的方法。
    • 10. 发明申请
    • NOVEL MICROORGANISM CAPABLE OF MICROBIALLY DECOMPOSING CHLORO-, METHYLTHIO- AND METHOXY-TRIAZINE AGRICHEMICALS
    • 新型微生物微生物分解氯化物,甲基硫代和甲基三唑类农药
    • US20100068788A1
    • 2010-03-18
    • US12513573
    • 2007-11-20
    • Kazuhiro TakagiKunihiko FujiiNaoki HaradaAkio Iwasaki
    • Kazuhiro TakagiKunihiko FujiiNaoki HaradaAkio Iwasaki
    • A62D3/02C12N1/20
    • B09C1/10A62D3/02A62D2101/26C02F3/34C02F2101/306C12R1/01Y10S435/822
    • Disclosed are: a novel microorganism which can decompose a methylthiotriazine compound (particularly, simetryn, dimethametryn, prometryn), a chlorotriazine compound (particularly, simazine, atrazine, propazine) and a methoxytriazine compound (particularly, simeton, atraton, prometon) which have been frequently used as agrichemicals or the like; and a method for decomposing a methylthiotriazine compound, a chlorotriazine compound and/or a methoxytriazine compound by using the microorganism. Specifically disclosed are: a novel bacterium Nocardioides sp. strain MTD22 which is capable of decomposing a methylthiotriazine compound, a chlorotriazine compound and a methoxytriazine compound; and a method for decomposing a methylthiotriazine compound, a chlorotriazine compound and/or a methoxytriazine compound, particularly simetryn, dimethametryn, prometryn, simazine, atrazine, propazine, simeton, atraton and/or prometon, by using the microorganism.
    • 公开了一种可以分解甲基硫代三嗪化合物(特别是西米特,二甲基丙烯酰胺,prometryn),氯代三嗪化合物(特别是西马拉嗪,莠去津,丙嗪)和甲氧基三嗪化合物(特别是西蒙特,阿特拉津,普罗特酮)的新型微生物, 经常用作农药等; 以及通过使用微生物分解甲基硫代三嗪化合物,氯代三嗪化合物和/或甲氧基三嗪化合物的方法。 具体公开的是:新型细菌诺卡氏菌属 能分解甲基硫代三嗪化合物,氯代三嗪化合物和甲氧基三嗪化合物的菌株MTD22; 以及通过使用该微生物分解甲基硫代三嗪化合物,氯代三嗪化合物和/或甲氧基三嗪化合物,特别是西蒙特,二甲基丙烯酸,衍生物,西马拉平,莠去津,丙嗪,西蒙,阿特拉津和/或前导子的方法。