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    • 4. 发明授权
    • Display
    • 显示
    • US5973452A
    • 1999-10-26
    • US922842
    • 1997-08-26
    • Christo P. BojkovRichard Lee FinkNalin KumarAlexei TikhonskiZvi Yaniv
    • Christo P. BojkovRichard Lee FinkNalin KumarAlexei TikhonskiZvi Yaniv
    • G09G3/22G09G3/34H01J1/304H01J9/02H01J29/46H01J1/30
    • H01J29/467G09G3/22H01J1/304H01J9/025H01J2201/30457H01J2329/00
    • The present invention provides for a field emission device including an anode assembly and a cathode assembly, wherein the cathode assembly further includes a substrate, a plurality of electrically conducting strips deposited on the substrate, and a continuous layer of diamond material deposited over the plurality of electrically conducting strips and portions of the substrate exposed between the plurality of electrically conducting strips. The field emission device may further include a grid assembly including a perforated silicon substrate, a first dielectric layer deposited on the silicon substrate, and a first conducting layer deposited on the first dielectric layer, wherein the first dielectric layer and the first conducting layer have perforations coinciding with perforations of the silicon substrate. The grid assembly may further include a second dielectric layer deposited on an underside of the silicon substrate, wherein the second dielectric layer has perforations coinciding with perforations of the silicon substrate.
    • 本发明提供一种包括阳极组件和阴极组件的场发射装置,其中阴极组件还包括衬底,沉积在衬底上的多个导电条以及沉积在多个衬底上的金刚石材料的连续层 导电条和基板的部分暴露在多个导电条之间。 场发射器件还可以包括栅极组件,其包括多孔硅衬底,沉积在硅衬底上的第一介电层和沉积在第一介电层上的第一导电层,其中第一介电层和第一导电层具有穿孔 与硅衬底的穿孔重合。 栅格组件还可以包括沉积在硅衬底的下侧上的第二电介质层,其中第二介电层具有与硅衬底的穿孔重合的穿孔。
    • 7. 发明授权
    • Shutter for image projection system
    • 快门用于图像投影系统
    • US06726335B2
    • 2004-04-27
    • US10372005
    • 2003-02-21
    • Zvi YanivMichael C. SweatonAlexei Tikhonski
    • Zvi YanivMichael C. SweatonAlexei Tikhonski
    • G02B532
    • G03B21/28
    • An image projection system comprises an image projector, such as a film or television projector and a projection screen. The projection screen is fabricated of a substantially transparent material, such as glass or plastic. The screen of transparent material has one or more areas or portions formed therein which areas or portions may be made to be translucent upon the application of a stimulus. Once in a translucent condition, the projected image can be received and viewed on the translucent portion. A mirror can be positioned behind the projection screen so that a person can view the reflection of themselves in the mirror when the screen is transparent, and an image can be projected when the projection screen is made to be substantially translucent.
    • 图像投影系统包括诸如电影或电视投影仪和投影屏幕的图像投影仪。 投影屏幕由诸如玻璃或塑料的基本上透明的材料制成。 透明材料的屏幕具有形成在其中的一个或多个区域或部分,其中可以在施加刺激时将这些区域或部分制成为半透明的。 一旦处于半透明状态,可以在半透明部分上接收和观看投影图像。 镜子可以位于投影屏幕的后面,使得当屏幕是透明的时候,人们可以在镜子中观察自身的反射,并且当投影屏幕被制成基本半透明时,可以投影图像。
    • 9. 发明申请
    • GAS SENSOR
    • 气体传感器
    • US20100089122A1
    • 2010-04-15
    • US12543260
    • 2009-08-18
    • JOEL ABDULLAHAlexei TikhonskiRonald I. DassJames Novak
    • JOEL ABDULLAHAlexei TikhonskiRonald I. DassJames Novak
    • G01N25/00
    • G01N27/122
    • A sensor system issues measurement commands at a predetermined regular rate. If a measurement indicates that a gas of interest is present, then the sensor system is signaled to wake-up thereby pulsing a heater for the sensor element that improves the accuracy of measurements. Measurements of humidity, temperature and gas concentration are made. If the gas of interest is detected then the data is used to indicate a compensated gas measurement. The gas level is classified as to its hazard and an adaptive detection algorithm is used to set an activity mode. If the gas of interest is not detected, the adaptive detection algorithm is used to set a sleep mode that saves power. Measurement rates are kept constant while heater power is controlled to reduce power consumption. Measurement rates are changed to increase concentration sensitivity.
    • 传感器系统以预定的正常速率发出测量命令。 如果测量表明存在感兴趣的气体,则传感器系统被发信号通知以唤醒传感器元件的加热器,从而提高测量精度。 测量湿度,温度和气体浓度。 如果检测到感兴趣的气体,则数据用于指示补偿气体测量。 气体水平被分类为其危害,并且使用自适应检测算法来设置活动模式。 如果没有检测到感兴趣的气体,则使用自适应检测算法来设置节省功率的睡眠模式。 当加热器功率被控制以降低功耗时,测量速率保持恒定。 改变测量速率以提高浓度敏感度。