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    • 3. 发明授权
    • Web cutting control system
    • 网页切割控制系统
    • US4020406A
    • 1977-04-26
    • US582406
    • 1975-05-29
    • Masateru TokunoMasayuki MatsuuraNoboru ShinmuraMasayoshi Kaneko
    • Masateru TokunoMasayuki MatsuuraNoboru ShinmuraMasayoshi Kaneko
    • B23D36/00G05B19/26B26D5/20B26D5/40
    • B23D36/005Y10T83/148Y10T83/159
    • A web cutting control system controlling the speed of a rotary cutter for automatic, continuous and precise cutting of a web fed at a constant speed into predetermined lengths or on the marks on the web. Two transducers generate pulses the number of which corresponds to the web feed length and the rotating angle of the rotary cutter, respectively. Three sensors detect the marks on the web, the completion of cutting, and the arrival of the cutter blades, respectively, to control the flow of signals. A desired cutting length or the distance between the mark detection point and the point of completion of cutting is preset. A reversible counter receives the pulses from these two transducers and the difference signal between the preset value and a reference signal and performs reversible counting thereof, the result of which is used to control the speed of motor for the rotary cutter to bring its speed into synchronization with the web feed speed for accurate cutting.
    • 一种卷筒纸切割控制系统,其控制用于自动,连续和精确地切割以恒定速度进给到预定长度的卷筒纸或卷筒纸上的标记的旋转切割器的速度。 两个换能器产生的脉冲数分别对应于卷筒纸进给长度和旋转切割器的旋转角度。 三个传感器分别检测网上的标记,切割的完成以及刀片的到来,以控制信号的流动。 预设切割长度或标记检测点与切割完成点之间的距离。 可逆计数器接收来自这两个换能器的脉冲和预设值与参考信号之间的差信号,并执行可逆计数,其结果用于控制旋转刀具的电机速度使其速度同步 使用网络进给速度进行精确切割。
    • 7. 发明申请
    • Method and Apparatus for Producing Oxidized Compound
    • 生产氧化化合物的方法和设备
    • US20080262235A1
    • 2008-10-23
    • US11662740
    • 2005-09-13
    • Masayoshi KanekoShigeo YabunoKenji IwaokaHidetoshi Nishimura
    • Masayoshi KanekoShigeo YabunoKenji IwaokaHidetoshi Nishimura
    • C07D401/12
    • C07D401/12
    • There is provided a method and an apparatus for producing an oxidized compound, which includes measuring an electric potential of an oxidation reaction solution for producing an oxidized compound by an oxidation reaction, and determining an end point of the oxidation reaction on the basis of a predefined decrease of the electric potential, thereby simply determining the end point of the oxidation reaction to swiftly move on to the next step. For example, the apparatus for producing an oxidized compound has a reactor (1) for carrying out an oxidation reaction; an oxidation reduction potential detection means (5) for detecting the value of an oxidation reduction potential of an oxidation reaction solution in the reactor; and a determination means (6) for monitoring at all time the detected values of the oxidation reduction potential detected by the oxidation reduction potential detection means and determining a point where the amount of an electric potential dropped from a highest electric potential of the oxidation reduction potential reaches the predefined amount of an electric potential, as an endpoint of the oxidation reaction, in which the apparatus allows to carry out the method of the invention at an industrial production level.
    • 提供了一种氧化化合物的制造方法和装置,其包括通过氧化反应来测定氧化化合物的氧化反应液的电位,并根据规定的氧化反应来测定氧化反应的终点 降低电位,从而简单地确定氧化反应的终点,以迅速地移动到下一步骤。 例如,氧化化合物的制造装置具有进行氧化反应的反应器(1) 用于检测反应器中的氧化反应溶液的氧化还原电位值的氧化还原电位检测装置(5) 以及确定装置(6),用于随时监测由氧化还原电位检测装置检测的氧化还原电位的检测值,并确定从氧化还原电位的最高电位下降的电位量的点 达到预定量的电位,作为氧化反应的终点,其中该装置允许在工业生产水平上执行本发明的方法。
    • 10. 发明申请
    • Dye-sensitized photoelectric conversion device
    • 染料敏化光电转换装置
    • US20090084441A1
    • 2009-04-02
    • US11920899
    • 2006-05-23
    • Koichiro ShigakiMasayoshi KanekoAkira MaenosonoTakayuki HoshiTeruhisa Inoue
    • Koichiro ShigakiMasayoshi KanekoAkira MaenosonoTakayuki HoshiTeruhisa Inoue
    • H01L31/04C07D215/04C07D403/02H01L31/042C07D209/04
    • H01G9/2059C09B23/0066C09B23/0075C09B23/0091C09B23/02Y02E10/542
    • The invention relates to a photoelectric conversion device, using oxide semiconductor fine particles sensitized with a methine dye represented by the following formula (1) and a solar cell using the same, and a solar cell high in conversion efficiency can be obtained at low cost: in the formula (1), n represents an integer of 0 to 7; R1 represents an optionally-substituted aromatic residue or optionally-substituted aliphatic hydrocarbon residue, or an acyl group; X represents an optionally-substituted hydrocarbon residue which has 2 to 4 carbon atoms; Y represents a hydrogen atom, an optionally-substituted aromatic residue or aliphatic hydrocarbon residue, a carboxyl group or the like, and preferably represents a carboxyl group; Z represents an optionally-substituted aromatic residue or aliphatic hydrocarbon residue, or an acyl group; A1, A2 and A3 each independently represent a hydrogen atom, an optionally-substituted aromatic residue or aliphatic hydrocarbon residue or the like, and preferably represent a hydrogen atom; and a benzene ring a may have substituent(s) other than those shown in the above formula.
    • 本发明涉及使用由下式(1)表示的次甲基染料敏化的氧化物半导体微粒和使用该光电转换装置的太阳能电池,能够以低成本获得高转换效率的太阳能电池: 在式(1)中,n表示0〜7的整数, R1表示任选取代的芳族残基或任选取代的脂族烃残基或酰基; X表示任选取代的具有2至4个碳原子的烃基; Y表示氢原子,任选取代的芳族残基或脂肪族烃残基,羧基等,优选表示羧基; Z表示任选取代的芳族残基或脂族烃残基或酰基; A1,A2和A3各自独立地表示氢原子,任选取代的芳族残基或脂肪族烃残基等,优选表示氢原子; 苯环a可以具有除上述式所示的取代基以外的取代基。