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    • 51. 发明授权
    • Method and apparatus for cooling hot rolled rod
    • 冷轧棒冷却方法和装置
    • US4023392A
    • 1977-05-17
    • US650448
    • 1976-01-19
    • Tatsu FujitaYoshiro YamadaAtsuo MizutaTetsuo YamadaOsamu TsudaTsugio KanedaShinichi ShimazuYukio Wada
    • Tatsu FujitaYoshiro YamadaAtsuo MizutaTetsuo YamadaOsamu TsudaTsugio KanedaShinichi ShimazuYukio Wada
    • B21B43/00B21C47/26C21D9/52C21D9/573B21B45/02B21B43/08B21F21/00C21D1/62
    • B21C47/262C21D9/5732
    • A method and apparatus for cooling a rod of a coil form, immediately after the hot-rolling thereof and within which the rod, whose loops are spaced a given pitch from one another, is laid flat upon a chain conveyor, and more particularly upon rails thereof, and transported therealong by means of endless chains, includes the cooling of the rod with cooling fluid or air which is introduced from below the cooling floors through means of nozzle portions formed within the bodies of the cooling floors. The method and apparatus features the arrangement and construction, including the configuration, of the nozzle portions thus formed, the cooling fluid being projected upwardly at an angle within the range of 10.degree.-70.degree. with respect to the plane of the cooling bed, and horizontally at an angle within the range of 10.degree.-150.degree. with respect to the transporting direction of the rod, towards the rod directly above the rail and chain portions of the conveyor, as well as being projected upwardly at an angle within the range of 15.degree.-75.degree. with respect to the plane of the cooling bed, and horizontally at an angle within the range of 30.degree.-150.degree. with respect to the direction of the transportation of the rod, towards the overlapped, sidewise circumferential portions of the rod. Thus, uniform cooling may be achieved over the entire length of the coiled rod.
    • 一种用于冷却线圈形式的杆的方法和装置,其在其热轧之后立即将链条彼此间隔开给定的间距,其中链条彼此间隔有给定的间距,并且更特别地在轨道 并且通过环形链条运送,包括用冷却流体或空气冷却杆,该冷却流体或空气通过形成在冷却地板的主体内的喷嘴部分从冷却地板的下方引入。 该方法和装置的特征在于包括如此形成的喷嘴部分的构造,冷却流体相对于冷却床的平面以10°-70°的范围向上突出,并且 水平地相对于杆的传送方向在10°-150°范围内的角度,朝向传送带的轨道和链条部分正上方的杆,并且以 相对于冷却床的平面为15°-75°,相对于杆的输送方向水平地在30°-150°范围内的角度,朝向 竿。 因此,可以在盘绕杆的整个长度上实现均匀的冷却。
    • 53. 发明授权
    • Solid state imaging device with increased vertical resolution in interlace scanning method
    • 具有逐行扫描方式的垂直分辨率增加的固态成像装置
    • US07612812B2
    • 2009-11-03
    • US11057751
    • 2005-02-15
    • Tetsuo Yamada
    • Tetsuo Yamada
    • H04N3/14H04N5/335H04N9/04
    • H04N9/045H01L27/14621H01L27/14812H01L27/14831H04N5/347H04N5/3728
    • A solid state imaging device comprises a semiconductor substrate defining a two-dimensional surface, a plurality of photoelectric conversion elements disposed in a light receiving area of said semiconductor substrate in a plurality of rows and columns, an electric charge read-out device that reads out signal electric charges accumulated in said plurality of photoelectric conversion elements in interlace by dividing the signal electric charges in a plurality of fields, each field at least including the signal electric charges accumulated in the vertically adjacent photoelectric conversion elements corresponding to one color, and a vertical adding device that adds, for each field, the read-out signal electric charges divided into the plurality of fields. A solid state imaging device that can increase vertical resolution at a time of an interlace operation is provided.
    • 固态成像装置包括限定二维表面的半导体衬底,多个行和列设置在所述半导体衬底的光接收区域中的多个光电转换元件,读出电荷读出装置 通过分割多个场中的信号电荷而在所述多个光电转换元件中积累的信号电荷,每个场至少包括累积在与一种颜色对应的垂直相邻的光电转换元件中的信号电荷,以及垂直 对每个场添加分割为多个场的读出信号电荷的加法装置。 提供了可以在隔行扫描操作时增加垂直分辨率的固态成像装置。
    • 54. 发明申请
    • Red Nitride Phosphor and Production Method Thereof
    • 红色氮化物荧光粉及其制备方法
    • US20080128726A1
    • 2008-06-05
    • US11795298
    • 2006-01-25
    • Shin-ichi SakataTakeshi YamaoTetsuo Yamada
    • Shin-ichi SakataTakeshi YamaoTetsuo Yamada
    • H01L27/15C09K11/77
    • C09K11/0883C01B21/0602C01P2002/54C01P2002/72C01P2002/77C01P2002/84C01P2006/60C09K11/7728
    • A red phosphor where the crystal phase constituting the phosphor is monoclinic Eu-activated CaAlSiN3. A red phosphor which is Eu-activated CaAlSiN3 powder having an average particle diameter of 10 μm or less as measured in the non-pulverized state by the laser scattering particle size distribution analysis. A light-emitting device comprising a blue light-emitting element, a yellow phosphor capable of converting the blue light emitted from the blue light-emitting element into yellow light, and the above-described red phosphor capable of converting the blue light emitted from the blue light-emitting element into red light. A method for producing Eu-activated CaAlSiN3, comprising firing a raw material powder comprising Ca3N2, AlN, Si3N4 and EuN at 1,400 to 2,000° C. in a nitrogen-containing atmosphere, the Ca3N2, AlN and Si3N4 giving a composition falling in the region surrounded by a straight line connecting the following four points A to D in the composition diagram of FIG. 1 and EuN being contained in an amount of 0.01 to 10 parts by weight as Eu per 100 parts by weight in total of Ca3N2, AlN and Si3N4.
    • 构成荧光体的晶相的红色荧光体是单斜晶Eu激活的CaAlSiN 3 N 3。 红色荧光体,其是通过激光散射粒度分布分析在非粉碎状态下测定的平均粒径为10μm以下的Eu活化的CaAlSiN 3 N 3粉末。 一种发光装置,包括蓝色发光元件,能够将从蓝色发光元件发射的蓝色光转换成黄色光的黄色荧光体,以及上述红色荧光体,其能够将从蓝色发光元件发出的蓝色光 蓝色发光元件变成红灯。 一种生产Eu活化的CaAlSiN 3 N的方法,包括焙烧包含Ca 3 N 2 N 2,AlN,Si 3 3的原料粉末 在含氮气氛中,1400〜2000℃下,N 3 N 2 N 2,N N 2,N N 2,N N 2, 和Si 3 N 4 N 4组成的组合物,其中组合物落在由连接图4的组成图中的以下四个点A至D的直线包围的区域中。 1和EuN的含量为0.01-10重量份,作为Eu每100重量份的总和为3重量%的N 2 N 2 N 2,AlN和SiN 2, 3 3 3。
    • 60. 发明授权
    • Method of producing thin film bulk acoustic resonator
    • 制造薄膜体声波谐振器的方法
    • US07140084B2
    • 2006-11-28
    • US10995447
    • 2004-11-23
    • Tetsuo YamadaKeigo NagaoChisen Hashimoto
    • Tetsuo YamadaKeigo NagaoChisen Hashimoto
    • H04R17/00H05K3/10B24B1/00
    • H03H9/173B06B1/0644G10K11/04H03H3/02H03H9/02094H03H9/02102H03H9/02149H03H9/174H03H9/562H03H9/564H03H9/585H03H9/587H03H2003/021H03H2003/0428Y10S977/888Y10T29/42Y10T29/49155
    • A method of producing a thin film bulk acoustic resonator having a piezoelectric layer, a first electrode joined to a first surface of the piezoelectric layer, and a second electrode joined to a second surface of the piezoelectric layer, which is located at the opposite side to the first surface, including the steps of forming a pit on a surface of a substrate; filling the pit with a sacrificial layer; polishing a surface of the sacrificial layer so that the RMS variation of a height of the surface of the sacrificial layer is equal to 25 nm or less; forming the first electrode over a partial area of the surface of the sacrificial layer and a partial area of the surface of the substrate; forming the piezoelectric layer on the first electrode so that RMS variation of a height of the second surface of the piezoelectric layer is equal to 5% or less of a thickness of the piezoelectric layer; forming the second electrode on the piezoelectric layer; and removing the sacrificial layer from the inside of the pit by etching.
    • 一种制造具有压电层的薄膜体声波谐振器的方法,连接到压电层的第一表面的第一电极和连接到压电层的第二表面的第二电极,该第二电极位于与压电层相对的一侧 所述第一表面包括在基板的表面上形成凹坑的步骤; 用牺牲层填充坑; 抛光牺牲层的表面,使得牺牲层的表面的高度的RMS变化等于25nm或更小; 在所述牺牲层的表面的部分区域和所述衬底的表面的部分区域上形成所述第一电极; 在第一电极上形成压电层,使得压电层的第二表面的高度的RMS变化等于压电层的厚度的5%以下; 在压电层上形成第二电极; 并通过蚀刻从凹坑的内部去除牺牲层。