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    • 2. 发明申请
    • Die for Injection Molding Glass with Frame
    • 模具用于注塑成型玻璃与框架
    • US20110045123A1
    • 2011-02-24
    • US12936872
    • 2009-05-01
    • Osamu NakataMitsuhiro Takayama
    • Osamu NakataMitsuhiro Takayama
    • B29C45/14
    • B29C45/14434B29C45/14262B29C45/14311B29C45/2708B29C2045/0027B29K2709/08
    • In an injection molding die, there is defined a cavity for a frame or a cavity for the frame and an auxiliary cavity communicating with the cavity for the frame, and into the cavity for the frame or the auxiliary cavity, there is injected a melted resin from a runner through a gate, and a section of the gate has a width of 1 to 5 mm in the direction of a thickness of a plate glass and a width of 10 mm or more in the direction parallel with a side of the plate glass but smaller than a side length of the plate glass. When this die is practically used, a load that would be applied to a peripheral portion of the plate glass during injection molding is reduced, so that when the frame is integrally molded to the plate glass by injection molding, undesired breakage of the plate glass is suppressed.
    • 在注射成型模具中,限定了用于框架的框架或空腔和用于框架的腔体和与框架或辅助空腔的空腔连通的辅助空腔,注入熔融树脂 从浇道通过浇口,并且浇口的一部分在平板玻璃的厚度方向上具有1至5mm的宽度,并且在与平板玻璃的平行方向平行的方向上具有10mm或更大的宽度 但小于平板玻璃的边长。 当实际使用该模具时,减少了在注射成型期间施加到平板玻璃的周边部分的负荷,使得当框架通过注射成型一体地模制到平板玻璃时,平板玻璃的不期望的破坏是 被压制
    • 7. 发明申请
    • Communication system
    • 通讯系统
    • US20070030336A1
    • 2007-02-08
    • US10560811
    • 2004-05-31
    • Hiroshi HoshigamiOsamu NakataTsuyoshi Shiobara
    • Hiroshi HoshigamiOsamu NakataTsuyoshi Shiobara
    • H04N7/14
    • H04B17/309
    • In a communication system for communicating a plurality of frequency signals between a first apparatus 1 and a second apparatus 2 via a common cable 3, a level loss component of each of the frequency signals in the cable is effectively corrected. Both transmission-sided reference frequency signal level detecting means 41 and 43 of the first apparatus, and reception-sided reference frequency signal level detecting means 71 and 73 of the second apparatus detect a level of a frequency signal which constitutes a reference among frequency signals which are transmitted from the first apparatus to the second apparatus via the cable. In the first apparatus, out-of-reference frequency signal level control means 44 to 51, and 32 to 35 control levels of the frequency signals other than the frequency signal which constitutes the reference and is communicated between the first apparatus and the second apparatus via the cable based upon a compared result between results detected in the first apparatus and results detected in the second apparatus.
    • 在用于经由公共电缆3在第一装置1和第二装置2之间传送多个频率信号的通信系统中,电缆中每个频率信号的电平损耗分量被有效地校正。 第一装置的发送侧参考频率信号电平检测装置41和43以及第二装置的接收侧基准频率信号电平检测装置71和73检测构成频率信号中的基准的频率信号的电平, 经由电缆从第一装置发送到第二装置。 在第一装置中,参考频率信号电平控制装置44至51和32至35控制构成基准的频率信号以外的频率信号的电平,并且在第一装置和第二装置之间通过 基于在第一装置中检测到的结果与在第二装置中检测到的结果之间的比较结果的电缆。