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    • 52. 发明申请
    • BURNER FOR PRODUCING INORGANIC SPHERICAL PARTICLES
    • 用于生产无机球形颗粒的燃烧器
    • US20110135775A1
    • 2011-06-09
    • US13057546
    • 2009-08-03
    • Yoshiyuki HagiharaYasuyuki Yamamoto
    • Yoshiyuki HagiharaYasuyuki Yamamoto
    • F23D14/22
    • F23D14/32B01J2/02C03B19/1025C03B2201/02F23C2900/07021F23C2900/07022F23D14/22
    • A burner for production of inorganic spheroidized particles according to the present invention includes a first raw material supply path (1A) through which a raw material powder is supplied together with a carrier gas; a fuel supply path (4A) disposed around the outer circumference of the first raw material supply path (1A), through which a fuel gas is supplied; a primary oxygen supply path (5A) disposed around the outer circumference of the fuel supply path (4A), through which an oxygen-containing gas is supplied; a second raw material supply path (6A) disposed around the outer circumference of the primary oxygen supply path (5A), through which a raw material powder is supplied together with a carrier gas; and a secondary oxygen supply path (7A) disposed around the outer circumference of the second raw material supply path (6A), through which an oxygen-containing gas is supplied.
    • 本发明的无机球状粒子的制造用燃烧器包括:原料粉末与载体一起供给的第一原料供给路径(1A) 设置在第一原料供给路径(1A)的外周的燃料供给路径(4A),供给燃料气体的燃料供给路径(4A) 设置在燃料供给路径(4A)的外周周围的主供氧路径(5A),供给含氧气体的主供氧路径 设置在主氧供给路径(5A)的外周的第二原料供给路径(6A),通过该第一原料供给路径与载气一起供给原料粉末; 以及设置在所述第二原料供给路径(6A)的外周的二次供氧路径(7A),供给所述含氧气体。
    • 53. 发明授权
    • Element mounting substrate and method for manufacturing same
    • 元件安装基板及其制造方法
    • US07888187B2
    • 2011-02-15
    • US11791595
    • 2005-11-18
    • Masakatsu MaedaYasuyuki YamamotoKunihiro Gotoh
    • Masakatsu MaedaYasuyuki YamamotoKunihiro Gotoh
    • H01L21/50H01L23/06
    • H01L23/49822H01L21/4857H01L33/486H01L2924/0002H01L2924/09701H05K1/0306H05K3/28H05K3/3452H05K2201/017H01L2924/00
    • An element-mounting substrate includes a ceramic substrate, an electrode layer formed on the substrate and a ceramic coating layer which is formed on a part of the electrode layer and has a thickness of 5 to 50 μm. A process for producing the element-mounting substrate includes the steps of forming an electrode precursor layer in the shape of a pattern of an electrode layer on a ceramic plate or a green sheet of a large diameter, forming a ceramic coating precursor layer on a part of the electrode precursor layer and then firing the resulting precursor. In this process, it is preferable to form the ceramic coating layer so as to cover the electrode layer on a predetermined cutting line of the firing product. According to the element-mounting substrate in which a part of the electrode layer is covered with a ceramic, a failure in mounting an element attributable to the thickness of the ceramic coating layer can be prevented when the element is mounted. In addition, peeling or cracking of the electrode layer caused by impact during dicing can be prevented.
    • 元件安装衬底包括陶瓷衬底,形成在衬底上的电极层和形成在电极层的一部分上并具有5至50μm厚度的陶瓷涂层。 一种用于制造元件安装基板的方法包括以下步骤:在陶瓷板或大直径的生片上形成电极层图案形状的电极前体层,在部件上形成陶瓷涂层前体层 的电极前体层,然后烧结所得的前体。 在该方法中,优选形成陶瓷被覆层,以覆盖烧制品的规定切断线上的电极层。 根据其中电极层的一部分被陶瓷覆盖的元件安装基板,当安装元件时,可以防止由于陶瓷涂层的厚度而导致的元件的安装失败。 此外,可以防止由切割期间的冲击引起的电极层的剥离或破裂。
    • 56. 发明申请
    • Method for Producing Metallized Ceramic Substrate
    • 生产金属化陶瓷基板的方法
    • US20080131673A1
    • 2008-06-05
    • US11793185
    • 2005-12-13
    • Yasuyuki YamamotoMasakatsu MaedaKunihiro Gotoh
    • Yasuyuki YamamotoMasakatsu MaedaKunihiro Gotoh
    • C04B41/90H05K3/12
    • C04B41/52C04B41/90H05K1/0306H05K1/092H05K3/1291H05K3/4667H05K2203/1126Y10T428/24926Y10T428/24942Y10T428/26
    • The process for producing a metallized ceramic substrate of the present invention comprises a step (A) of preparing a raw material substrate comprising a ceramic substrate which may have on its surface a conductive layer or a conductor paste layer, a step (B) of preparing a metallized ceramic substrate precursor, said step (B) comprising a step of forming a ceramic paste layer on the raw material substrate and a step of forming a conductive paste layer on the ceramic paste layer, and a step (C) of firing the metallized ceramic substrate precursor obtained in the previous step. In the step (B), formation of a ceramic paste layer and formation of a conductive paste layer may be alternately repeated plural times. According to the present invention, running or spreading of the conductive paste is prevented, and a metallized ceramic substrate which has a high degree of freedom of wiring design and high reliability and has a fine metallization pattern can be produced.
    • 本发明的金属化陶瓷基板的制造方法包括制备包括陶瓷基板的原料基板的工序(A),该陶瓷基板在其表面上可以具有导电层或导体糊层,制备步骤(B) 金属化陶瓷基板前体,所述工序(B)包括在所述原料基板上形成陶瓷浆料层的步骤和在所述陶瓷浆料层上形成导电浆料层的工序,和对所述金属化陶瓷基板前体进行烧成的工序 在前一步骤中获得的陶瓷衬底前体。 在步骤(B)中,陶瓷浆料层的形成和导电糊层的形成可以交替重复多次。 根据本发明,能够防止导电性糊料的运行或扩散,可以制造具有高自由度的布线设计和高可靠性且具有精细金属化图案的金属化陶瓷基板。
    • 59. 发明授权
    • Color cathode ray-tube with electron gun having a reinforcing electrode
    • 具有电子枪的彩色阴极射线管具有增强电极
    • US06239546B1
    • 2001-05-29
    • US09181538
    • 1998-10-28
    • Yasufumi WadaYasuyuki YamamotoMasao Natsuhara
    • Yasufumi WadaYasuyuki YamamotoMasao Natsuhara
    • H01J2946
    • H01J29/488
    • A reinforcing electrode plate having at least one electron-beam through-hole that passes an electron beam is connected to at least one of a focusing electrode and a final accelerating electrode at its opening portion. Supporting portions of the reinforcing electrode plate are formed so as to project further outside than the opening portion or the peripheral face of the electrode, thus fixing the reinforcing electrode plate to an insulating support. Therefore, the deformation of the focusing electrode or the final accelerating electrode that occurs in assembling a main lens of an electron gun used for a color cathode-ray tube is prevented, thus decreasing the variation in property of the electron gun. Additionally, by adjusting the shape or the like of an opening through which an electron beam passes in the reinforcing electrode plate, a focusing power of the main lens can be adjusted in the horizontal direction and in the vertical direction.
    • 具有至少一个通过电子束的电子束通孔的加强电极板在其开口部连接到聚焦电极和最终加速电极中的至少一个。 加强电极板的支撑部分形成为比电极的开口部分或外周面更外侧突出,从而将加强电极板固定到绝缘支撑件上。 因此,防止了在组装用于彩色阴极射线管的电子枪的主透镜时发生的聚焦电极或最终加速电极的变形,从而降低了电子枪的性能变化。 此外,通过调整电子束通过加强电极板的开口的形状等,可以在水平方向和垂直方向上调节主透镜的聚焦能力。