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    • 1. 发明申请
    • THERMOELECTRIC CONVERSION UNITS
    • 热电转换单元
    • US20120325280A1
    • 2012-12-27
    • US13525666
    • 2012-06-18
    • Hirokuni AKIYAMAHirohisa KATOMotoaki OKUDA
    • Hirokuni AKIYAMAHirohisa KATOMotoaki OKUDA
    • H01L35/28
    • H01L35/32
    • Embodiments of the present invention may include a thermoelectric conversion unit having a pair of substrates opposing each other, thermoelectric conversion elements provided between the pair of substrates, a frame member, and a case. The frame member may be mounted along an outer peripheral portion of the pair of substrates. The case may be formed with flow channels having an opened structure. Opening portions of the flow channels may be covered with the substrates. The case may include a peripheral wall portion configured to cover the outer peripheral portion of the frame member. The peripheral wall portion of the case and the outer peripheral portion of the frame member preferably tightly contact each other to achieve sealing.
    • 本发明的实施例可以包括具有彼此相对的一对基板的热电转换单元,设置在该对基板之间的热电转换元件,框架构件和壳体。 框架构件可以沿着该对基板的外周部分安装。 壳体可以形成有具有开放结构的流动通道。 流动通道的开口部分可以被基板覆盖。 壳体可以包括构造成覆盖框架构件的外周部分的周壁部分。 壳体的周壁部分和框架构件的外周部分优选地彼此紧密接触以实现密封。
    • 2. 发明授权
    • System and method for controlling a fuel supply to an internal
combustion engine
    • 用于控制对内燃机的燃料供给的系统和方法
    • US4896644A
    • 1990-01-30
    • US150258
    • 1988-01-29
    • Hirohisa Kato
    • Hirohisa Kato
    • F02D41/00F02D41/12
    • F02D41/126
    • A system and method for controlling a fuel supplied to an internal combustion engine having a fuel supply cut-off function which operates when the engine falls in a predetermined engine deceleration condition. When a fuel supply recovery is restarted immediately after the fuel supply cut-off, a residual quantity of fuel which remains on a wall of an intake air passage is estimated on the basis of an engine load immediately before the fuel supply cut-off is carried out, a fuel recovery increment quantity for incrementing the fuel supply to the engine at a time immediately after the fuel supply recovery is carried out is set on the basis of the estimated residual quantity of fuel and an interval of time for which the fuel supply cut-off is carried out, a basic fuel quantity determined according to an engine operating condition is corrected according to the fuel recovery increment quantity, and the corrected fuel quantity is finally supplied to the engine during the fuel supply recovery. Therefore, a response to an acceleration is remarkably improved due to the fuel recovery increment quantity determined with the residual fuel quantity taken into account.
    • 一种用于控制供给内燃机的燃料的系统和方法,所述燃料供给切断功能在发动机处于预定的发动机减速条件时工作。 当在燃料供给截止之后立即重新开始燃料供应恢复时,基于紧接在燃料供给截止装置之前的发动机负荷来估计残留在进气通道的壁上的剩余量的燃料 根据估计的燃料剩余量和燃料供给切断时间间隔来设定用于在执行燃料供给恢复之后的时刻增加向发动机的燃料供给的燃料回收增量量 按照燃料回收增量量校正根据发动机工作状态确定的基本燃料量,并且在燃料供给恢复期间最终将校正后的燃料量提供给发动机。 因此,由于考虑了剩余燃料量确定的燃料回收增量,所以对加速度的响应显着提高。
    • 5. 发明申请
    • THERMOELECTRIC CONVERSION MODULE AND METHOD OF MANUFACTURING THE SAME
    • 热电转换模块及其制造方法
    • US20120325281A1
    • 2012-12-27
    • US13526795
    • 2012-06-19
    • Hirokuni AKIYAMAHirohisa KATONaoto MORISAKUShimpei MUNE
    • Hirokuni AKIYAMAHirohisa KATONaoto MORISAKUShimpei MUNE
    • H01L35/28B23P11/00H01L35/34
    • H01L35/34F25B21/02F25B2321/023H01L35/32Y10T29/49826
    • The method of manufacturing a thermoelectric conversion module includes the steps of providing a first inner surface of a first substrate with plural first electrodes and a first positioning portion, wherein the first positioning portion is located at a predetermined position to the first electrodes without overlapping with the first electrodes, providing a second inner surface of a second substrate with plural second electrodes and a second positioning portion, wherein the second positioning portion is located at a predetermined position to the second electrodes without overlapping with the second electrodes, providing the first electrodes with plural thermoelectric conversion elements, positioning a spacer to the first substrate with a third positioning portion of the spacer on the first positioning portion, and providing the thermoelectric conversion elements with the second electrodes by positioning the second substrate to the spacer with the second positioning portion on a fourth positioning portion of the spacer.
    • 制造热电转换模块的方法包括以下步骤:提供具有多个第一电极和第一定位部分的第一基板的第一内表面,其中第一定位部分位于与第一电极重叠的预定位置处, 第一电极,提供具有多个第二电极和第二定位部分的第二基板的第二内表面,其中所述第二定位部分位于所述第二电极的预定位置,而不与所述第二电极重叠,从而使所述第一电极具有多个 热电转换元件,将隔离物定位到第一基板上,其中间隔件的第三定位部分在第一定位部分上,并且通过将第二基板定位在第二定位部分的第一定位部分上而将第二电极定位在第一定位部分上, 第四 间隔件的定位部分。
    • 8. 发明授权
    • Method for dirtproofing treatment for plastic lens
    • 塑料镜片防污处理方法
    • US4944962A
    • 1990-07-31
    • US363903
    • 1989-05-17
    • Shoichiro FurutaHirohisa KatoHirohito Seto
    • Shoichiro FurutaHirohisa KatoHirohito Seto
    • C09K3/18C07F7/18G02C13/00
    • G02B1/115G02B1/105B29L2011/0016
    • A method is disclosed which concerns the treatment for imparting dirtproofness to a plastic lens provided in advance on the surface thereof with an antireflection film formed by vacuum evaporation of an inorganic substance. This method forms a dirtproofing film on the antireflection film by mixing a polyfluoroalkyl silane-containing coating liquid and trichlorotrifluoroethane and boiling the resultant mixture, dip coating the plastic lens in the boiled mixture, then treating the dip coated plastic lens with the vapor of fluoroethane, subsequently drying the wet plastic lens with hot air, and optionally immersing the dried plastic lens in water.
    • PCT No.PCT / JP88 / 01079 Sec。 371日期1989年5月17日 102(e)日期1989年5月17日PCT提交1988年10月24日PCT公布。 出版物WO89 / 04005 日期:1989年5月5日。公开了一种方法,其涉及通过预先在其表面上提供的具有通过无机物质的真空蒸发形成的抗反射膜对塑料透镜施加防污性的处理。 该方法通过将含多氟烷基硅烷的涂布液和三氯三氟乙烷混合并将所得混合物煮沸,将塑料透镜浸渍在煮沸的混合物中,然后用氟乙烷的蒸气处理浸涂塑料透镜,从而在防反射膜上形成防污膜, 随后用热空气干燥湿塑料透镜,并且可选地将干燥的塑料透镜浸入水中。