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    • 5. 发明授权
    • Cathode ray tube having an internal voltage-dividing resistor
    • 具有内部分压电阻器的阴极射线管
    • US06495952B1
    • 2002-12-17
    • US09516202
    • 2000-02-29
    • Hisao NakamuraSatoru MiyamotoAtsushi Tsuruoka
    • Hisao NakamuraSatoru MiyamotoAtsushi Tsuruoka
    • H01J2948
    • H01J29/485H01J3/027H01J2229/968
    • A cathode ray tube includes an electron gun having plural focus electrodes and an anode in its neck portion, a voltage-dividing resistor for producing an intermediate voltage applied to a first one of the focus electrodes adjacent to the anode by dividing an anode voltage, a metal conductor attached to a second one of the focus electrodes to surround the voltage-dividing resistor, and a metal film on an insulating substrate of the voltage-dividing resistor between the metal conductor and an intermediate-voltage terminal of the voltage-dividing resistor. The second one of the focus electrodes is disposed upstream of the first one of the focus electrodes, and the metal film extends at least 1 mm axially and is spaced at least 1 mm from the metal conductor.
    • 阴极射线管包括具有多个聚焦电极和其颈部中的阳极的电子枪,分压电阻器,用于通过分隔阳极电压产生施加到与阳极相邻的第一个聚焦电极的中间电压, 金属导体,其连接到第二聚焦电极以围绕分压电阻器;以及金属膜,在金属导体和分压电阻器的中间电压端子之间的分压电阻器的绝缘基板上。 聚焦电极中的第二个设置在第一个聚焦电极的上游,并且金属膜沿轴向延伸至少1mm,并且与金属导体间隔至少1mm。
    • 6. 发明授权
    • Cathode ray tube having an internal voltage-dividing resistor
    • 具有内部分压电阻器的阴极射线管
    • US06433469B1
    • 2002-08-13
    • US09514285
    • 2000-02-28
    • Atsushi TsuruokaSakae IshiiSatoru MiyamotoHisao Nakamura
    • Atsushi TsuruokaSakae IshiiSatoru MiyamotoHisao Nakamura
    • H01J2996
    • H01J29/96H01J2229/966
    • A cathode ray tube includes an evacuated envelope having a panel portion having a phosphor screen, a neck portion and a funnel portion connecting the panel portion and the neck portion; an electron gun housed in the neck portion having a cathode, a first grid electrode, a second grid electrode, plural focus electrodes and an anode arranged in the order named and fixed in predetermined axially spaced relationship by two glass beads; a voltage-dividing resistor attached to one of the two glass beads for producing an intermediate voltage to be applied to a first one of the plural focus electrodes adjacent to the anode by dividing a voltage applied to the anode; and a metal conductor facing and attached to a second one of the plural focus electrodes to surround the voltage-dividing resistor and the one of the two glass beads, the second one of the plural focus electrodes being disposed upstream of the first one of the plural focus electrodes. The voltage-dividing resistor includes a first overcoat insulating film, a resistance element, an insulating substrate and a second overcoat insulating film stacked in the order named from the first overcoat insulating film facing the one of the two glass beads, and a portion of the second overcoat insulating film containing a region thereof facing the metal conductor is made locally thicker than a remainder of the second overcoat insulating film.
    • 阴极射线管包括具有荧光屏的面板部分的真空外壳,颈部和连接面板部分和颈部的漏斗部分; 容纳在具有阴极的颈部的电子枪,第一栅极,第二栅极,多个聚焦电极和阳极,按照以两个玻璃珠的预定的轴向间隔的关系被定义和固定; 分压电阻器,其附接到所述两个玻璃珠之一,用于通过分压施加到所述阳极的电压来产生施加到与所述阳极相邻的所述多个聚焦电极中的第一个的中间电压; 以及金属导体,其面对并附接到所述多个聚焦电极中的第二个聚焦电极,以围绕所述分压电阻器和所述两个玻璃珠中的所述一个,所述多个聚焦电极中的第二个设置在所述多个聚焦电极中的第一个的上游 聚焦电极 分压电阻器包括第一覆盖绝缘膜,电阻元件,绝缘基板和第二覆盖层绝缘膜,其以从第一外涂层绝缘膜指向的顺序层叠,所述第一外涂层绝缘膜面向两个玻璃珠之一,以及一部分 含有面向金属导体的区域的第二覆盖层绝缘膜比第二外涂层绝缘膜的其余部分局部地厚。
    • 8. 发明授权
    • Compound engine mount with variable orifice
    • 具有可变孔口的复合发动机支架
    • US4699099A
    • 1987-10-13
    • US10052
    • 1987-02-02
    • Katsuyoshi AraiHisao Nakamura
    • Katsuyoshi AraiHisao Nakamura
    • F16F13/00B60K5/12F16F13/26B62D21/00
    • F16F13/262
    • A compound engine mount has a first and a second fluid chamber defined thereinside and communicated to each other by a first orifice which is controllable in length and a second orifice which is controllable in effective path area. In an engine idling range, the two fluid chambers are intercommunicated by the first orifice only. The length of the first orifice is controlled to change the mass of a fluid inside of the orifice in response to a length of the orifice, whereby the dynamic spring constant of the engine mount is controlled. In a high engine speed range, the fluid chambers are intercommunicated by the second orifice resulting in a decrease in the dynamic spring constant of the engine mount. The effective area of the second orifice is controllable to control the dynamic spring constant.
    • 复合发动机支架具有限定在其中的第一和第二流体室,并且通过长度可控的第一孔口和可在有效路径区域中控制的第二孔口彼此连通。 在发动机怠速范围内,两个流体室仅由第一孔连通。 控制第一孔口的长度以响应于孔口的长度来改变孔口内的流体的质量,由此控制发动机支架的动态弹簧常数。 在高发动机转速范围内,流体室由第二孔相互连通,导致发动机支架的动态弹簧常数的减小。 第二孔的有效面积是可控的,以控制动态弹簧常数。