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    • 5. 发明申请
    • Method of producing micro-lens-carrying display panel and display unit and exposure system
    • 生产微透镜显示面板和显示单元和曝光系统的方法
    • US20070097293A1
    • 2007-05-03
    • US10582172
    • 2004-12-08
    • Hiroshi NakanishiKuniaki Okada
    • Hiroshi NakanishiKuniaki Okada
    • G02F1/1335
    • B29D11/00365B29D11/00153G02B3/0012G02B3/005G02B5/201G02F1/133526
    • A production method for a display panel according to the present invention is production method for a display panel 100 including a display panel 101 and a plurality of microlenses 107 provided on a light-incident side of the display panel 101, including: (a) a step of providing a display panel having a plurality of pixels in a matrix arrangement, wherein each of the plurality of pixels has a plurality of picture elements, including a first picture element 104B transmitting first color light and a second picture element 104R (104G) transmitting second color light which is different from the first color light; (b) a step of forming a photocurable material layer 105 on one of a pair of principal faces, being opposite to each other, of the display panel; (c) a step of exposing the photocurable material layer to light via the display panel, wherein the photocurable material layer is at least partially cured with light which has been transmitted through at least the first picture element; and (d) a step of removing an uncured portion of the photocurable material layer 105′ having been exposed to light, thereby forming a plurality of microlenses 107.
    • 根据本发明的显示面板的制造方法是显示面板100的制造方法,显示面板100具备显示面板101和设置在显示面板101的光入射侧的多个微透镜107,包括:(a) 提供具有矩阵布置中的多个像素的显示面板的步骤,其中多个像素中的每一个具有多个图像元素,包括发送第一颜色光的第一图像元素104B和第二图像元素104 R(104 G)传输与第一颜色光不同的第二颜色光; (b)在显示面板的彼此相对的一对主面之一上形成光固化性材料层105的工序; (c)通过显示面板将光固化材料层曝光的步骤,其中光可固化材料层至少部分地被已经透过至少第一像素的光固化; 以及(d)去除已曝光的光固化材料层105'的未固化部分的步骤,从而形成多个微透镜107。
    • 6. 发明授权
    • Reverse-turn mimetics and methods relating thereto
    • 反转模拟物及其相关方法
    • US07008941B2
    • 2006-03-07
    • US10150481
    • 2002-05-16
    • Jan UrbanHiroshi NakanishiMin S. Lee
    • Jan UrbanHiroshi NakanishiMin S. Lee
    • G01N33/53G08D498/04
    • C07D487/04C07D487/14
    • Conformationally constrained compounds which mimic the secondary structure of reverse-turn regions of biologically active peptides and proteins having the following structure are disclosed: wherein A, B, X, R1, and R5 are as defined herein. Such compounds have utility over a wide range of fields, including use as diagnostic and therapeutic agents. In particular, compounds of this invention are useful in pharmaceutical compositions as anti-inflammatory agents as well as inhibitors of central nervous disorders. Libraries containing the compounds of this invention are also disclosed, as well as methods for screening the same to identify biologically active members.
    • 公开了具有以下结构的模拟具有生物活性肽和蛋白质的反向转转区域的二级结构的构象约束化合物:其中A,B,X,R 1和R 5, / SUB>如本文所定义。 这些化合物可用于广泛的领域,包括用作诊断和治疗剂。 特别地,本发明的化合物可用作作为抗炎剂的药物组合物以及中枢神经障碍的抑制剂。 还公开了含有本发明化合物的文库,以及筛选该文库以鉴定生物活性成员的方法。
    • 9. 发明申请
    • Power supply circuit for vacuum fluorescent display
    • 真空荧光显示电源电路
    • US20050046402A1
    • 2005-03-03
    • US10922767
    • 2004-08-19
    • Masashi KamedaKazuhisa ShibataHiroshi NakanishiShinichi TerakamiToshihide Eguchi
    • Masashi KamedaKazuhisa ShibataHiroshi NakanishiShinichi TerakamiToshihide Eguchi
    • H01J31/15G05F1/40G09G3/20G09G3/22
    • G09G3/22G09G2330/02
    • A power supply circuit for a vacuum fluorescent display includes a boosting coil, input terminal, switching transistor, PWM control circuit, boosting circuit, first filament terminal, and second filament terminal. The boosting coil is provided in a current path to generate an induced voltage in accordance with a change in current flowing therein. The input terminal receives a DC voltage to be applied to one terminal of the boosting coil. The switching transistor is provided between the other terminal of the boosting coil and a ground line. The PWM control circuit periodically turns on/off the switching transistor. The boosting circuit generates a boosted voltage on the basis of an induced voltage generated at the other terminal of the boosting coil when the switching transistor is switched from ON to OFF. The first terminal is connected to the node between the other terminal of the boosting coil and the switching transistor. A DC voltage lower than the induced voltage generated at the other terminal of the boosting coil is applied to the second terminal.
    • 用于真空荧光显示器的电源电路包括升压线圈,输入端子,开关晶体管,PWM控制电路,升压电路,第一灯丝端子和第二灯丝端子。 升压线圈设置在电流路径中,以根据其中流过的电流的变化产生感应电压。 输入端子接收要施加到升压线圈的一个端子的直流电压。 开关晶体管设置在升压线圈的另一端子与接地线之间。 PWM控制电路周期性地接通/关断开关晶体管。 升压电路基于在将开关晶体管从接通切换到断开时在升压线圈的另一端产生的感应电压而产生升压电压。 第一端子连接到升压线圈的另一端子与开关晶体管之间的节点。 低于在升压线圈的另一端产生的感应电压的直流电压被施加到第二端子。