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    • 6. 发明授权
    • Molding apparatus, optical element molding method, and optical element and prism as molded products
    • 成型装置,光学元件成型法,光学元件和棱镜作为成型品
    • US06295172B1
    • 2001-09-25
    • US09366538
    • 1999-08-04
    • Nobuhiro YamamichiNobuyuki NakagawaKosei Matsumoto
    • Nobuhiro YamamichiNobuyuki NakagawaKosei Matsumoto
    • G02B702
    • C03B11/08C03B2215/03C03B2215/49C03B2215/50C03B2215/73
    • It is an object of this invention to provide a molding apparatus capable of obtaining an optical element of which both an optical functional surface and a lens mounting reference can be molded simultaneously and which has an appropriate lens thickness. In order to achieve this object, the apparatus includes a lower mold having one molding surface on its upper surface, a lower periphery regulating member for fitting on an outer surface of the lower mold to regulate an excess of a glass material swelling outward from the molding surface of the lower mold, an upper mold having the other molding surface on its lower surface, and an upper periphery regulating member for fitting on an outer surface of the upper mold to regulate the excess of the glass material swelling outward from the molding surface of the upper mold. When at least one of the upper and lower molds is moved vertically to press-mold the thermally softened glass material with the molding surfaces, the excess of the glass material flows into a space formed by upper and lower ends of the lower and upper periphery regulating members, respectively. Positions of the upper and lower ends of the space where the excess of the glass material flows into change vertically along edges of the molding surfaces.
    • 本发明的目的是提供一种能够获得能够同时模制光学功能表面和透镜安装基准的光学元件并具有适当的透镜厚度的成型设备。 为了实现该目的,该装置包括在其上表面具有一个成型表面的下模具,用于装配在下模具的外表面上的下外周限制构件,以调节从模制件向外膨胀的玻璃材料的过量 下模具的表面,在其下表面具有另一成型表面的上模,以及用于装配在上模的外表面上的上外周限制构件,以调节从模制表面向外膨胀的玻璃材料的过量 上模具。 当上模具和下模具中的至少一个垂直移动以对具有模制表面的热软化玻璃材料进行模压时,多余的玻璃材料流入由上下周边调节的上端和下端形成的空间中 成员。 玻璃材料过剩的空间的上端和下端的位置沿着模制表面的边缘垂直地改变。
    • 8. 发明授权
    • Power line communication system
    • 电力线通信系统
    • US09337897B2
    • 2016-05-10
    • US14001421
    • 2012-02-01
    • Yousuke TakataYutaka KomatsuTakeshi HagiharaNobuyuki Nakagawa
    • Yousuke TakataYutaka KomatsuTakeshi HagiharaNobuyuki Nakagawa
    • H02J7/00H04B3/54H04B3/56B60L11/18
    • H04B3/54B60L11/1838B60L2230/12H04B3/56Y02T10/6269Y02T10/7005Y02T10/7088Y02T90/121Y02T90/128Y02T90/14Y02T90/16Y02T90/163
    • Provided is a power line communication system in which power line communication devices having different configurations from each other coexist. A charging station performs power line communication, using a signal superimposition/separation section in which a capacitor, a coupling transformer, and a capacitor are connected to branch lines branched from two AC lines. An electric vehicle performs power line communication, using a signal superimposition/separation section in which the coupling transformer is inserted in one AC line and a capacitor is connected to and between two AC lines. In a case where the charging station and the electric vehicle are connected to each other with a charging cable, a closed loop circuit is formed that is composed of the AC line, the branch line, the capacitor, a primary coil of the coupling transformer, the capacitor, the branch line, the AC line, an AC line, the AC line, the capacitor, a primary coil of a coupling transformer, the AC line, and an AC line. Thus, power line communication can be performed.
    • 提供了具有彼此不同配置的电力线通信装置共存的电力线通信系统。 充电站进行电力线通信,使用其中电容器,耦合变压器和电容器连接到从两条交流线路分支的分支线路的信号叠加/分离部分。 电动车辆使用信号叠加/分离部分进行电力线通信,其中耦合变压器插入一个AC线路中,并且电容器连接到两个AC线路之间并在两个AC线路之间连接。 在充电站和电动车辆用充电电缆彼此连接的情况下,形成由AC线,分支线,电容器,耦合变压器的初级线圈构成的闭环电路, 电源线,交流线路,交流线路,交流线路,电容器,耦合变压器的初级线圈,交流线路和交流线路。 因此,可以进行电力线通信。