会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • System for controlling printer cooling fan
    • 控制打印机冷却风扇的系统
    • US07317467B2
    • 2008-01-08
    • US10968391
    • 2004-10-19
    • Benjamin Kyle ShepherdKevin Dean SchoedingerPhil Wright
    • Benjamin Kyle ShepherdKevin Dean SchoedingerPhil Wright
    • B41J2/385G03G21/20
    • G03G21/206
    • A control system for a cooling fan of a laser printer enables selection of fan speed based on the actual degree of usage of the printer. The system provides first and second sets of fan speeds where each set contains information corresponding to a plurality of fan speeds. Information regarding the current operational condition of the fuser of the printer is periodically obtained, preferably during a preset interval. The fan is then operated at one of the fan speeds of the first or second set of fan speeds, with the selection of the first or second set and the selection of one of the fan speeds based on the current operational condition of the fuser. In this manner, the speed of the fan is substantially continuously controlled based on the operational condition of the printer.
    • 用于激光打印机的冷却风扇的控制系统可以基于打印机的实际使用程度来选择风扇速度。 该系统提供第一组和第二组风扇速度,其中每组包含对应于多个风扇速度的信息。 定期获得关于打印机的定影器的当前操作状态的信息,优选地在预设间隔期间。 风扇然后以第一或第二组风扇速度的风扇速度之一运行,根据定影器的当前操作条件选择第一组或第二组,并选择其中一个风扇转速。 以这种方式,基于打印机的操作条件,基本上连续地控制风扇的速度。
    • 3. 发明授权
    • Nematic liquid crystal phase spatial light modulator for enhanced
display resolution
    • 向列液晶相空间光调制器,用于增强显示分辨率
    • US5777706A
    • 1998-07-07
    • US651188
    • 1996-05-17
    • Diana ChenFred V. RichardPhil Wright
    • Diana ChenFred V. RichardPhil Wright
    • G02F1/01G02F1/13G02F1/133G02F1/1335G02F1/1347G09G3/36H01L51/50
    • G02F1/13471
    • A phase spatial light modulator composed of a first liquid crystal cell and one or more additional liquid crystal cells. Each of the liquid crystal cells is positioned so that their extraordinary optical axis (N.sub.e) lies orthogonal to the next liquid crystal cell, and the group of cells is positioned along the optical axis of light emitted by an image source. The modulator, or scanner, thereby capable of steering substantially 100% of unpolarized light therethrough. The modulator intended for use within a display system additionally composed of an image source, driver/control circuitry and an optical magnification system. In operation, an external stimulus is applied, such as a voltage supplied by an external power source, thereby spatially changing the phase of light emitted therethrough. The scanning action enhances display resolution of the generated resultant image without an increase in the number of pixels of the image source.
    • 一种由第一液晶单元和一个或多个附加液晶单元组成的相位空间光调制器。 每个液晶单元被定位成使得其非凡光轴(Ne)垂直于下一个液晶单元,并且该单元组沿着由图像源发射的光的光轴定位。 因此,调制器或扫描仪能够基本上100%的非偏振光转向其中。 用于另外由图像源,驱动器/控制电路和光学放大系统组成的显示系统内的调制器。 在操作中,施加外部刺激,例如由外部电源提供的电压,从而空间上改变通过其发射的光的相位。 扫描动作增强了生成的合成图像的显示分辨率,而不增加图像源的像素数量。
    • 10. 发明授权
    • Led array with stacked driver circuits and methods of manfacture
    • 带阵列驱动电路的LED阵列和制造方法
    • US5789766A
    • 1998-08-04
    • US820851
    • 1997-03-20
    • Rong-Ting HuangChan-Long ShiehPhil Wright
    • Rong-Ting HuangChan-Long ShiehPhil Wright
    • H01L27/15H01L33/00H01L31/12H01L31/153
    • H01L27/156H01L27/15
    • A method of fabricating an LED array and stacked driving circuitry includes sequentially forming layers of material on the surface of a substrate, the layers cooperating to emit light when activated. An insulating layer is positioned on the layers and divided into LEDs arranged in an array of rows and columns. Row and column driver circuits are formed on the insulating layer overlying the array by patterning portions of recrystallized amorphous silicon on the insulating layer, depositing a gate insulator layer and a gate metal layer on each of the portions to form an MOS gate, implanting a source and drain in each of the portions, using the MOS gate as a self-aligned mask, and forming contacts for the power terminals and the MOS gate, and coupling each LED in the array to the row and column driver circuits.
    • 制造LED阵列和层叠驱动电路的方法包括在衬底的表面上顺序地形成材料层,所述层在激活时协同发光。 绝缘层位于层上并分成以行和列排列成排列的LED。 通过对绝缘层上的再结晶非晶硅的图案化部分,在覆盖阵列的绝缘层上形成行和列驱动电路,在每个部分上形成栅极绝缘体层和栅极金属层,形成MOS栅极, 并使用MOS栅极作为自对准掩模,并且为电源端子和MOS栅极形成触点,并将阵列中的每个LED耦合到行和列驱动器电路,在每个部分中漏极。