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    • 16. 发明申请
    • EXTERNAL ELECTRODE LAMP, BACKLIGHT UNIT, AND LIQUID CRYSTAL DISPLAY
    • 外部电极灯,背光单元和液晶显示器
    • US20090262278A1
    • 2009-10-22
    • US12064295
    • 2006-09-26
    • Nobuhiro ShimizuTeruaki Shigeta
    • Nobuhiro ShimizuTeruaki Shigeta
    • G02F1/133H01J61/06H01J63/04H05B41/14
    • H01J65/046H05B41/2806Y02B20/22
    • An external electrode lamp (2) includes a glass discharge container (4) having a discharge medium enclosed therein, and first and second external electrodes (6 and 8) provided external to the discharge container. Since the surface area of the first external electrode is larger than that of the second external electrode, the capacitance of a first capacitor constituted from the first external electrode and a first dielectric part including a portion of the discharge container between the first external electrode and the discharge medium is larger than that of a second capacitor constituted from the second external electrode and a portion of the discharge container between the second external electrode and the discharge medium. Consequently, when a high-voltage output of a lighting circuit is connected to the first external electrode, the second external electrode is grounded, and a voltage is applied, the voltage-to-ground at a portion of the inner wall of the discharge container that faces the first external electrode is higher than conventional, which facilitates starting discharges, thus improving the in-dark starting characteristic.
    • 外部电极灯(2)包括其中包含放电介质的玻璃放电容器(4)和设置在放电容器外部的第一和第二外部电极(6和8)。 由于第一外部电极的表面积大于第二外部电极的表面积,所以由第一外部电极构成的第一电容器的电容和包括第一外部电极和第一外部电极之间的放电容器的一部分的第一电介质部 放电介质大于由第二外部电极构成的第二电容器和第二外部电极与放电介质之间的放电容器的一部分。 因此,当点火电路的高电压输出连接到第一外部电极时,第二外部电极接地,施加电压,在放电容器的内壁的一部分处的电压接地 面向第一外部电极的电极高于常规电极,这有助于启动放电,从而改善暗暗的启动特性。
    • 17. 发明申请
    • HOT-CATHODE FLUORESCENT LAMP
    • 热阴极荧光灯
    • US20100134004A1
    • 2010-06-03
    • US12443687
    • 2007-11-02
    • Shiro OtakeTeruaki ShigetaNobuhiro Shimizu
    • Shiro OtakeTeruaki ShigetaNobuhiro Shimizu
    • H01J61/067
    • H01J61/0672H01J61/36
    • The present invention provides a hot cathode discharge lamp comprising an electrode that has a filament coil, a first and a second connection-reinforcing members (5a) and (5b), a first and a second lead-in wires (6a) and (6b), the filament coil including: a coil part (4a); a first lead wire (4b) connected to the first lead-in wire (6a) via the first connection-reinforcing member (5a); and a second lead wire (4c) connected to the second lead-in wire (6b) via the second connection-reinforcing member (5b), wherein a first plane of the first connection-reinforcing member (6a) and a second plane of the second connection-reinforcing member (6b) intersect with each other. According to this structure, the filament is more resistant to swinging and is more stably fixed than the filaments of the conventional lamps, even if the filament is extended in the direction of the tube axis in order to extend the lamp life.
    • 本发明提供一种热阴极放电灯,包括具有灯丝线圈的电极,第一和第二连接加强件(5a)和(5b),第一和第二引入线(6a)和(6b ),所述灯丝线圈包括:线圈部(4a); 经由第一连接加强部件连接到第一引入线(6a)的第一引线(4b); 以及经由所述第二连接加强部件(5b)与所述第二引入线(6b)连接的第二引线(4c),其中,所述第一连接加强部件(6a)的第一平面和所述第二连接加强部件 第二连接加强件(6b)彼此相交。 根据该结构,即使灯丝沿管轴方向延伸以延长灯的使用寿命,灯丝更耐摆动并且比常规灯的灯丝更稳定地固定。
    • 18. 发明申请
    • HOT-CATHODE FLUORESCENT LAMP
    • 热阴极荧光灯
    • US20100072873A1
    • 2010-03-25
    • US12447424
    • 2007-11-02
    • Shiro OtakeTeruaki ShigetaTakeshi ArakawaNobuhiro Shimizu
    • Shiro OtakeTeruaki ShigetaTakeshi ArakawaNobuhiro Shimizu
    • H01J61/52H01J63/04
    • H01J61/0672
    • A hot-cathode fluorescent lamp includes a pair of filament coils (4) at the respective ends of a glass bulb. Each filament coil (4) has a coiled portion (4a) coated with an electron emissive material, a first lead portion (4b) extending from one end of the coiled portion (4a), and a second lead portion (4c) extending from another end of the coiled portion (4a). The first lead portion (4b) and the second lead portion (4c) are connected to lead-in wires inserted into the glass bulb via connecting members (5a, 5b). At least one insulating member (11a or 11b) is provided between closest edges of the connecting members (5a, 5b) to each other. The provision of the insulating member prevents a short circuit occurring between the closest edges of the plate-shaped connecting members during lighting. Occurrence of such a short circuit would cause lighting to start without the coil portion being sufficiently pre-heated, which results in excessive sputtering of the electron emissive material to shorten the lamp life.
    • 一种热阴极荧光灯在玻璃灯泡的各个端部包括一对灯丝线圈(4)。 每个灯丝线圈(4)具有涂覆有电子发射材料的螺旋部分(4a),从所述螺旋部分(4a)的一端延伸的第一引线部分(4b)和从另一端延伸的第二引线部分(4c) 卷绕部分(4a)的端部。 第一引线部分(4b)和第二引线部分(4c)经由连接部件(5a,5b)连接到插入玻璃灯泡的引入线。 至少一个绝缘构件(11a或11b)设置在彼此的连接构件(5a,5b)的最近边缘之间。 绝缘构件的设置防止了在照明期间在板状连接构件的最近边缘之间发生短路。 发生这样的短路将导致点亮而没有线圈部分被充分预热,这导致电子发射材料的过度溅射以缩短灯的寿命。
    • 19. 发明申请
    • HOT CATHODE FLUORESCENT LAMP
    • 热阴极荧光灯
    • US20100060128A1
    • 2010-03-11
    • US12447613
    • 2007-11-02
    • Shiro OtakeTeruaki ShigetaTakeshi ArakawaNobuhiro Shimizu
    • Shiro OtakeTeruaki ShigetaTakeshi ArakawaNobuhiro Shimizu
    • H01J61/04
    • H01J61/0672
    • A hot-cathode fluorescent lamp includes a pair of filament coils (4) at the respective ends of a glass bulb. Each filament coil (4) has a coiled portion (4a) coated with an electron emissive material. Each coiled portion is covered by a heat-resistant sleeves (7). At least a region of the inner circumferential surface of the sleeve is electrically insulating. The insulating region prevents a short circuit between the coiled portion of the filament coil and the inner circumferential surface of the sleeve that would otherwise occur upon lighting. Occurrence of such a short circuit would cause lighting to start without the coil portion being sufficiently pre-heated, which results in excessive sputtering of the electron emissive material to shorten the lamp life.
    • 一种热阴极荧光灯在玻璃灯泡的各个端部包括一对灯丝线圈(4)。 每个灯丝线圈(4)具有涂覆有电子发射材料的盘绕部分(4a)。 每个卷绕部分被耐热套筒(7)覆盖。 套筒的内周面的至少一个区域是电绝缘的。 绝缘区域防止了灯丝线圈的卷绕部分和否则将在照明时发生的套筒的内圆周表面之间的短路。 发生这样的短路将导致点灯开始,而不会使线圈部分被充分预热,这导致电子发射材料的过度溅射以缩短灯的寿命。