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    • 3. 发明公开
    • Cathode ray tube phosphor protection
    • LeuchtstoffsschutzfürKathodenstrahlröhren
    • EP1294180A2
    • 2003-03-19
    • EP02292049.0
    • 2002-08-16
    • Thomson Licensing, Inc.
    • Allender, Jeffrey Owen
    • H04N3/20H04N3/24
    • H04N3/20H04N3/24
    • A cathode ray tube video display comprises a cathode ray tube (CRT) for displaying a video signal (Vin) coupled thereto. A cathode ray tube electron beam blanker (201) is coupled to the cathode ray tube (CRT) and is responsive to a blanking trigger signal (GK) for blanking an electron beam (e) within the cathode ray tube (CRT). A blanking controller (200) is coupled to the cathode ray tube electron beam blanker (201) and generates the blanking trigger signal (Gk) for controlling electron beam blanking, wherein the electron beam (e) is blanked for different durations in accordance with one of a hot and cold start condition.
    • 阴极射线管视频显示器包括用于显示与其耦合的视频信号(Vin)的阴极射线管(CRT)。 阴极射线管电子束消除器(201)耦合到阴极射线管(CRT),并且响应于消隐触发信号(GK)以消除阴极射线管(CRT)内的电子束(e)。 消隐控制器(200)耦合到阴极射线管电子束消除器(201)并产生用于控制电子束消隐的消隐触发信号(Gk),其中电子束(e)根据一个消隐不同的持续时间 的冷启动条件。
    • 5. 发明公开
    • VIDEO DISPLAY PROTECTION CIRCUIT
    • 屏幕保护电路
    • EP1118209A1
    • 2001-07-25
    • EP99951666.9
    • 1999-09-29
    • Thomson Licensing S.A.
    • JACKSON, David, RossGRIEPENTROG, Dal, Frank
    • H04N3/20H04N5/63
    • H04N5/63H04N3/20
    • An apparatus and a method for protecting a video display device, having an anode and a cathode, against excessive beam current conditions. In particular, the present invention protects the video display device against zero-biasing of the device, wherein the cathode driver circuit is supplied by a plurality of power supplies and the loss of anyone of the power supplies causes zero-biasing of the cathode. The invention provides, in a video display device (100) having an anode (112) and a cathode (102) for generating and controlling beam currents in the display device, a protection circuit comprising: a source of video signals (36); a driver circuit (40) coupled to the source of video signals and the cathode (102), the driver circuit coupled to a driver circuit power supply (+ 12V, + 215V), the driver circuit causing a cathode voltage to be generated on the cathode in response to the video signals and the driver circuit power supply; a high voltage power supply (X1) coupled to the anode (112) for providing high voltage accelerating potential in the display device; and a shutdown circuit (44) coupled to the driver circuit power supply and the high voltage power supply, the shutdown circuit disabling the high voltage power supply if the driver circuit power supply voltage decreases below a threshold level.
    • 6. 发明公开
    • Stray emission reduction circuit
    • Schaltung zur Reduktion desStörausströmens
    • EP0810785A3
    • 1999-07-28
    • EP97401131.4
    • 1997-05-23
    • THOMSON multimedia
    • Hsu, FlameWu, Chun SingNg, Seng Huat
    • H04N5/63
    • H04N3/20H01J2229/0015H04N5/63
    • The most popular method for reducing stray emission effects in a cathode ray tube is to install a bleeder resistor at the flyback transformer of the tube. Such a bleeder resistor is, however, quite expensive. Therefore, the stray emission reduction circuit according to the invention differentiates the H pulse when the TV set is switched from "on" to "standby" which results in a higher duty cycle of the control transistor, implying a lower duty cycle of the horizontal output transistor HOT. This results in a lower voltage at the tuning capacitor and hence lowers the flyback peak voltage at the anode. This results in a drop of the EHT voltage.
    • 在阴极射线管中减少杂散发射效应的最流行的方法是在管的反激式变压器上安装泄放电阻器。 然而,这样的泄放电阻器是非常昂贵的。 因此,根据本发明的杂散发射减少电路在电视机从“接通”切换到“待机”时区分H脉冲,这导致控制晶体管的占空比更高,这意味着水平输出的占空比较小 晶体管HOT。 这导致调谐电容器处的电压较低,因此降低了阳极处的反激峰值电压。 这导致EHT电压下降。