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    • 24. 发明申请
    • ON BOARD DIAGNOSIS OF RF SPECTRA IN ACCELERATORS
    • 加速器中RF频谱的板上诊断
    • US20140049158A1
    • 2014-02-20
    • US13589920
    • 2012-08-20
    • Gongyin CHENJohn C. TURNER
    • Gongyin CHENJohn C. TURNER
    • H01J29/98
    • H01J29/98A61N5/1048H05H7/02H05H9/00H05H2007/025
    • A RF accelerator system includes an accelerator, a RF source coupled to the accelerator for providing RF power to the accelerator, a control for adjusting a frequency of the RF power provided by the RF source through a frequency range, and a sensor for sensing a response resulted from an operation of the accelerator based at least in part on the adjusted frequency of the RF power through the frequency range. A method of diagnosing a RF spectrum in an accelerator system includes providing RF power to an accelerator, adjusting a frequency of the RF power through a frequency range, and sensing a response resulted from an operation of the accelerator, the response being based at least in part on the adjusted frequency of the RF power through the frequency range.
    • RF加速器系统包括加速器,耦合到加速器的RF源以向加速器提供RF功率,用于调整由RF源提供的RF功率的频率通过频率范围的控制,以及用于感测响应的传感器 这是由于加速器的操作至少部分地基于经过频率范围调整的RF功率的频率。 在加速器系统中诊断RF频谱的方法包括向加速器提供RF功率,通过频率范围调整RF功率的频率,以及感测由加速器的操作产生的响应,响应至少基于 部分是通过频率范围调整频率的RF功率。
    • 26. 发明授权
    • CRT display apparatus
    • CRT显示装置
    • US06495975B2
    • 2002-12-17
    • US09758224
    • 2001-01-12
    • Hironobu YasuiAkinori Heishi
    • Hironobu YasuiAkinori Heishi
    • H01J2970
    • H01J29/98H01J29/52
    • A CRT display apparatus including a CRT having an electron gun is disclosed. The electron gun includes a cathode, and a G1 electrode, a G2 electrode and a G3 electrode disposed in that order for drawing electrons from the cathode. The electron gun further includes a modulating electrode disposed between the G2 electrode and the G3 electrode. The CRT display apparatus is provided with a controller for controlling a value of a voltage applied to the modulating electrode in order to suppress or interrupt an electron beam flowing from the cathode to a screen of the CRT.
    • 公开了一种包括具有电子枪的CRT的CRT显示装置。 电子枪包括阴极,G1电极,G2电极和G3电极,其按照从阴极吸取电子的顺序设置。 电子枪还包括设置在G2电极和G3电极之间的调制电极。 CRT显示装置设置有用于控制施加到调制电极的电压的值以控制或中断从阴极流向CRT的屏幕的电子束的控制器。
    • 29. 发明授权
    • Night vision device localized irradiance attenuation
    • 夜视仪器局部辐照衰减
    • US5729010A
    • 1998-03-17
    • US712506
    • 1996-09-11
    • Alan R. PinkusHarry L. TaskPeter L. Marasco
    • Alan R. PinkusHarry L. TaskPeter L. Marasco
    • G02B23/12H01J29/98H01J31/50
    • H01J29/98G02B23/12H01J2231/50063
    • A night vision device enhancement wherein occurrence of a bright object in an input scene of the night vision device is precluded from adversely affecting reproduction of adjacent low radiance level portions of the input scene. By optically limiting or excluding bright object input scene portions from the night vision device input field the disclosed system precludes both image intensifier-related effects, effects such as blooming and current saturation, and also precludes automatic gain control-related effects such as full-field sensitivity decrease based on the bright object. Plural embodiments of the system are disclosed, embodiments based on bright object attenuation by both yet to be developed photo active materials such as photochromics and embodiments which use present state of the art liquid crystal materials and accompanying electronics. Military and non-military uses of the improved night vision device are contemplated.
    • 夜视设备增强,夜视设备的输入场景中的明亮物体的发生被排除不利地影响输入场景的相邻低辐射水平部分的再现。 通过从夜视设备输入区域光学地限制或排除亮物体输入场景部分,所公开的系统排除了图像增强器相关效应,诸如起晕和电流饱和的影响,并且还排除了诸如全场的自动增益控制相关效应 基于亮物体的灵敏度降低。 公开了该系统的多个实施例,基于尚待开发的光活性材料(例如光致变色)的明亮物体衰减的实施例以及使用现有技术液晶材料和伴随电子装置的实施例。 考虑了改进的夜视装置的军事和非军事用途。
    • 30. 发明授权
    • Cathode current detecting method and detecting circuit capable of
correctly detecting cathode current by clamping leak current at 0 V
    • US5686801A
    • 1997-11-11
    • US528430
    • 1995-09-14
    • Katsuhiko NishikawaHiroya Ikeda
    • Katsuhiko NishikawaHiroya Ikeda
    • H04N5/18H01J29/98H04N5/59H04N5/68H04N9/73H01J29/52
    • H01J29/98H04N5/68
    • A cathode current detecting method wherein both a highlight detection pulse used to detect a white component and a cutoff detection pulse used to detect a black component are input to a signal input unit, and a cathode current flowing through a cathode is detected which corresponds to one of the highlight detection pulse and the cutoff detection pulse, includes the steps of: outputting a leak current detection pulse having the same magnitude as that of the cutoff detection pulse at a preselected timing; prohibiting an electron beam emitted from the cathode from flowing through an anode at the preselected timing; and detecting the leak current flowing through the cathode in response to the leak current detection pulse at the preselected timing to clamp a voltage corresponding to the leak current to a predetermined reference potential. A cathode current detecting circuit is provided wherein both a highlight detection pulse used to detect a white component and a cutoff detection pulse used to detect a black component are inputted to a signal input unit, and a cathode current corresponding to an electron beam flowing from a cathode to an anode based upon one of the highlight detection pulse and the cutoff detection pulse, of: includes a signal output circuit for outputting a leak current detection pulse having the same magnitude pulse as that of the cutoff detection pulse at a preselected timing; A current for prohibiting the electron beam emitted from the cathode from flowing at the preselected timing; a prohibit signal circuit for outputting a signal used to cause the prohibiting circuit to perform a prohibit operation in response to the output from the signal output circuit at the preselected timing; and a clamping circuit for detecting a leak current flowing through the cathode in response to the leak current detection pulse at the preselected timing to clamp a voltage corresponding to the leak current to a predetermined reference potential.