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    • 8. 发明授权
    • Electron emitting apparatus
    • 电子发射装置
    • US06583553B2
    • 2003-06-24
    • US09730388
    • 2000-12-06
    • Daisuke Sasaguri
    • Daisuke Sasaguri
    • H01J162
    • H01J1/316
    • An electron emitting apparatus that can realize a convergence of electron trajectories and an improved electron emission efficiency. The apparatus comprises a substrate having a first primary surface that is substantially planar, an electron emitting device comprising first and second electroconductive members disposed on the primary surface and at an interval from one another, and an anode electrode having a substantially planar surface opposite to the first primary surface. A voltage applying means of the apparatus applies a potential higher than a potential applied to the first electroconductive member to the second electroconductive member to irradiate electrons emitted from the electron emitting device onto the anode electrode.
    • 一种可实现电子轨迹的收敛和改善的电子发射效率的电子发射装置。 该装置包括具有基本上平面的第一主表面的基板,包括设置在主表面上并且彼此间隔开的第一和第二导电部件的电子发射器件,以及具有与 第一主表面。 设备的电压施加装置将施加到第一导电构件的电位高于第二导电构件的电位,以将从电子发射器件发射的电子照射到阳极上。
    • 9. 发明授权
    • Image display apparatus and method of driving the same
    • 图像显示装置及其驱动方法
    • US08188668B2
    • 2012-05-29
    • US11738080
    • 2007-04-20
    • Daisuke SasaguriYuji Kasanuki
    • Daisuke SasaguriYuji Kasanuki
    • G06G3/10
    • H01J29/20C09K11/7731C09K11/7734H01J29/32
    • An image display apparatus includes a rear plate provided with a plurality of electron-emitting devices, each electron-emitting device emitting electron; a face plate disposed opposite the plurality of electron-emitting devices and provided with a plurality of pixels of phosphor, each pixel of phosphor being irradiated with electrons emitted from corresponding ones of the electron-emitting devices to generate light; and a driver for scanning the plurality of electron-emitting devices for emitting electron from the plurality of electron-emitting devices. The phosphor has luminescence center of allowed transition type material, and the driver scans the plurality of electron-emitting devices so that maximum of charge density dosed in one pixel phosphor, during one scanning period, is equal to or larger than 3×10−8 C/cm2.
    • 图像显示装置包括设置有多个电子发射器件的后板,每个电子发射器件发射电子; 与多个电子发射器件相对设置并设置有多个磷光体像素的面板,每个像素的荧光体被从相应的电子发射器件发射的电子照射以产生光; 以及用于扫描多个电子发射器件用于从多个电子发射器件发射电子的驱动器。 荧光体具有允许的过渡型材料的发光中心,并且驱动器扫描多个电子发射器件,使得在一个扫描周期期间在一个像素磷光体中提供的最大电荷密度等于或大于3×10-8 C / cm 2。
    • 10. 发明申请
    • PHOSPHOR, IMAGE DISPLAYING APPARATUS, AND MANUFACTURING METHOD THEREOF
    • 磷光体,图像显示装置及其制造方法
    • US20120012788A1
    • 2012-01-19
    • US13152717
    • 2011-06-03
    • Daisuke Sasaguri
    • Daisuke Sasaguri
    • C09K11/84
    • H01J9/227H01J2329/20
    • The present invention, which aims to obtain, in a Ga2S4:Eu phosphor, high luminance even when a particle size is set to 1000 nm or less, is characterized by a step of forming a raw material particle including a constituent component of a host material except a sulfur component and a constituent component of an activator in a composition ratio in the phosphor; a step of forming an amorphous precursor particle by heating and cooling the raw material particle by thermal plasma; and a step of baking the precursor particle in a sulfurization atmosphere to set the particle size to 1000 nm or less and a crystallite size to 60% or more of the particle size.
    • 为了在Ga 2 S 4:Eu荧光体中获得即使粒径为1000nm以下的高亮度的目的,本发明的特征在于,形成包含主体材料的构成成分的原料粒子的工序 除了荧光体中的组成比的硫成分和活化剂的构成成分以外, 通过用热等离子体加热和冷却原料颗粒来形成非晶形前体颗粒的步骤; 以及在硫化气氛中烧成前体粒子的步骤,将粒径设定为1000nm以下,微晶尺寸为粒径的60%以上。