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    • 1. 发明授权
    • Resin molding machine
    • 树脂成型机
    • US07059847B2
    • 2006-06-13
    • US10485754
    • 2003-07-15
    • Takeshi TakedaShigeki TakahashiKunihito SetaNihei Kaishita
    • Takeshi TakedaShigeki TakahashiKunihito SetaNihei Kaishita
    • B29C45/32
    • B29C45/1759B29C45/14655
    • To provide a resin molding machine that can reduce cost by eliminating the need for a residual-material remover, and can reduce cycle time and the amount of residual material, the resin molding machine includes a stationary cavity plate that has a gate communicating with a cavity, a sprue bushing in which a sprue is formed for feeding a molding material through the gate into the cavity, a runner plate disposed between the stationary cavity plate 13 and the sprue bushing, a cylinder unit (runner-plate driving mechanism) for rectilinearly reciprocating the runner plate between ejecting positions and via a molding position, the ejecting positions being separated from the molding position A and provided for ejecting the residual material, and an ejecting channel (residual-material ejecting mechanism) for ejecting the residual material at the ejecting positions.
    • 为了提供能够通过不需要残留材料去除剂来降低成本的树脂成型机,并且可以减少周期时间和剩余材料的量,树脂成型机包括具有与腔连通的门的固定腔板 浇口套管,其中形成有用于将成型材料通过浇口进入空腔的浇道;设置在固定腔板13和浇口衬套之间的流道板,用于直线往复运动的缸单元(流道板驱动机构) 排出位置之间的流道板和模制位置,排出位置与模制位置A分离并被设置用于喷射剩余材料,以及用于将残留材料排出在排出位置的排出通道(残留材料排出机构) 。
    • 5. 发明授权
    • Thermoplastic resin injection molding machine
    • 热塑性树脂注塑机
    • US06824374B1
    • 2004-11-30
    • US09470967
    • 1999-12-23
    • Kunihito SetaTakeshi Takeda
    • Kunihito SetaTakeshi Takeda
    • B29C4577
    • B29C45/542B29C45/54B29C2045/547B29C2045/548
    • An injection molding machine includes a plasticating unit for plasticating a thermoplastic resin, and an injecting unit connected to the plasticating unit through a connecting passage to inject the plasticated resin into a mold. In the connecting passage, provided is a buffering unit for reserving the resin in an amount at least equal to the quantity of the resin injected per one shot. The plasticated resin is temporarily reserved in the buffering unit, and then, the reserved resin is fed to the injecting unit when the measuring is carried out, whereby the plasticating unit can be driven continuously simultaneously with the operation of the injecting unit and the mold. The molding cycle can shortened with the plastication efficiency being enhanced.
    • 注射成型机包括用于塑化热塑性树脂的塑化单元和通过连接通道连接到塑化单元的注射单元,以将塑化树脂注入模具中。 在连接通道中,设置有用于将树脂保持在至少等于每一次喷射的树脂的量的缓冲单元。 将塑化树脂暂时保留在缓冲单元中,然后在进行测量时将预留树脂供给到注射单元,由此可以在注射单元和模具的操作下同时驱动塑化单元。 随着塑化效率的提高,成型周期可以缩短。
    • 7. 发明授权
    • Thermoplastic resin injection molding machine
    • 热塑性树脂注塑机
    • US07090481B2
    • 2006-08-15
    • US10917422
    • 2004-08-13
    • Kunihito SetaTakeshi Takeda
    • Kunihito SetaTakeshi Takeda
    • B29C45/76
    • B29C45/542B29C45/54B29C2045/547B29C2045/548
    • An injection molding machine includes a plasticating unit for plasticating a thermoplastic resin, and an injecting unit connected to the plasticating unit through a connecting passage to inject the plasticated resin into a mold. In the connecting passage, provided is a buffering unit for reserving the resin in an amount at least equal to the quantity of the resin injected per one shot. The plasticated resin is temporarily reserved in the buffering unit, and then, the reserved resin is fed to the injecting unit when the measuring is carried out, whereby the plasticating unit can be driven continuously simultaneously with the operation of the injecting unit and the mold. The molding cycle can shortened with the plastication efficiency being enhanced.
    • 注射成型机包括用于塑化热塑性树脂的塑化单元和通过连接通道连接到塑化单元的注射单元,以将塑化树脂注入模具中。 在连接通道中,设置有用于将树脂保持在至少等于每一次喷射的树脂的量的缓冲单元。 将塑化树脂暂时保留在缓冲单元中,然后在进行测量时将预留树脂供给到注射单元,由此可以在注射单元和模具的操作下同时驱动塑化单元。 随着塑化效率的提高,成型周期可以缩短。
    • 8. 发明授权
    • Methods for producing solid-state imaging device and electronic device
    • 固态成像装置和电子装置的制造方法
    • US07977140B2
    • 2011-07-12
    • US12382713
    • 2009-03-23
    • Takeshi TakedaYukihiro AndoMasaki OkamotoMasayuki OkadaKaori TakimotoKatsuhisa KugimiyaTadayuki Kimura
    • Takeshi TakedaYukihiro AndoMasaki OkamotoMasayuki OkadaKaori TakimotoKatsuhisa KugimiyaTadayuki Kimura
    • H01L21/00
    • H01L27/14812H01L27/14831
    • A method for producing a solid-state imaging device includes steps of: forming transfer electrodes on a substrate having a plurality of light-sensing portions through a gate insulating layer so that the light-sensing portions are exposed; forming a planarized insulating layer on the substrate to cover the transfer electrodes formed on the substrate; forming openings in the planarized insulating layer so that each of the transfer electrodes is partly exposed out of the planarized insulating layer at a predetermined position; forming a wiring material layer so that the openings are filled with the wiring material layer; forming a resist layer on the wiring material layer; exposing and developing the resist layer so that only the resist layer in a predetermined area covering the openings is left; and patterning the wiring material layer using the exposed and developed resist layer to form connection wirings connected to the transfer electrodes by the openings.
    • 一种制造固态成像装置的方法,包括以下步骤:通过栅极绝缘层,在具有多个光检测部分的基板上形成转印电极,使得光敏部分露出; 在所述基板上形成平坦化的绝缘层,以覆盖形成在所述基板上的转移电极; 在平坦化绝缘层中形成开口,使得每个传输电极在预定位置部分地从平坦化绝缘层露出; 形成布线材料层,使得开口被布线材料层填充; 在所述布线材料层上形成抗蚀剂层; 曝光和显影抗蚀剂层,使得仅保留覆盖开口的预定区域中的抗蚀剂层; 并使用曝光和显影的抗蚀剂层图案化布线材料层,以形成通过开口连接到转印电极的连接布线。
    • 9. 发明授权
    • Infrared sensor
    • 红外传感器
    • US07919751B2
    • 2011-04-05
    • US12424565
    • 2009-04-16
    • Koji HayashiTakeshi Takeda
    • Koji HayashiTakeshi Takeda
    • H01L31/0232H01L31/0203G01J5/02
    • G01J1/04G01J1/0271G01J1/0407G01J2001/0276
    • A small infrared sensor has a wide infrared light-receiving area (viewing angle), high electromagnetic shielding characteristics, and excellent electromagnetic-wave resistance characteristics. In the infrared sensor, supporting portions are disposed at four corners of a substantially rectangular opening in a package. The supporting portions support an optical filter, disposed so as to cover the opening, at positions that are lower than an upper end of an inner peripheral wall defining the opening. While the optical filter is supported by the supporting portions as a result of inserting a portion of a surface side of the optical filter facing the supporting portions into the opening, the optical filter is secured to the package. The optical filter and the package are joined and secured, and electrically connected to each other through a conductive adhesive.
    • 小型红外线传感器具有宽的红外光接收面积(视角),高电磁屏蔽特性和优异的电磁波电阻特性。 在红外传感器中,支撑部分设置在包装件中的大致矩形开口的四个角处。 所述支撑部支撑设置成覆盖所述开口的光学过滤器,所述光学过滤器位于比限定所述开口的内周壁的上端低的位置处。 当由于将滤光器的面对支撑部分的表面侧的一部分插入到开口中而由支撑部分支撑滤光器时,滤光器固定在封装上。 光学滤波器和封装被接合并固定,并通过导电粘合剂彼此电连接。