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    • 1. 发明授权
    • Ambient energy powered display
    • 环保节能电源显示屏
    • US06348908B1
    • 2002-02-19
    • US09153327
    • 1998-09-15
    • Edward A. RichleyAlexander E. SilvermanMatthew E. HowardBryan T. Preas
    • Edward A. RichleyAlexander E. SilvermanMatthew E. HowardBryan T. Preas
    • G09G500
    • G09F9/372G02F2001/13324G09G3/3453G09G2330/02
    • A bistable display device that is powered only by ambient energy. Ambient energy is collected by an ambient energy receiver which converts the ambient energy into an operating signal and provides the operating signal to a controller. The controller drives the display device based on the operating signal. A user can create a custom display by fixing customizable patterned electrodes to the display. A display controller uses a self-starting oscillator. The oscillator outputs a clock input signal wave to a ripple counter and a voltage signal to a voltage doubler. The voltage doubler outputs a stored charge signal to a transformer concurrently with a clock pulse that is output by the ripple counter to change a state of the voltage output from the transformer to conductive electrodes within or on the display. The voltage output from the transformers applies an electric field across the display in the portions of the display covered by the conductors to switch the image on the display. As the display is bistable, if the ambient energy receiver and controller are detached from the display or there is an insufficient amount of ambient energy, the image on the display will stop switching, but will not fade.
    • 双稳态显示设备,仅由环境能量供电。 环境能量由环境能量接收器收集,环境能量接收器将环境能量转换为操作信号,并将操作信号提供给控制器。 控制器根据操作信号驱动显示设备。 用户可以通过将可定制的图案化电极固定到显示器来创建自定义显示。 显示控制器使用自启动振荡器。 振荡器将时钟输入信号波输出到纹波计数器,并将电压信号输出到倍压器。 倍压器将存储的电荷信号输出到变压器并与由纹波计数器输出的时钟脉冲并行地改变从变压器输出的电压的状态到显示器内部或之上的导电电极。 来自变压器的电压输出在由导体覆盖的显示部分中的显示器上施加电场,以将图像切换到显示器上。 由于显示屏是双稳态的,如果环境能量接收器和控制器与显示器分离或环境能量不足,显示屏上的图像将停止切换,但不会消失。
    • 3. 发明授权
    • Field addressed displays using charge discharging in conjunction with charge retaining island structures
    • 使用电荷放电与电荷保持岛结构相结合的现场寻址显示
    • US06456272B1
    • 2002-09-24
    • US09438894
    • 1999-11-12
    • Matthew E. HowardEdward A. Richley
    • Matthew E. HowardEdward A. Richley
    • G09G334
    • G09F9/372G02B26/026G02F1/133348G02F1/134336G02F1/167
    • The invention is an electric reusable paper sheet that uses a pattern of conductive charge-retaining islands on the outward-facing side of the first of two thin layers used to encapsulate a Electric reusable paper substrate which interact with conductive areas in the encapsulating sheet. The second encapsulating layer may also coated with a conductive material, or made of a conductive material, and may or may not be patterned. The Electric reusable paper substrate and two encapsulating layers comprise a sheet of Gyricon electric reusable paper on which images can be written and erased repeatedly. The patterned charge-retaining islands of the first encapsulating layer receive electric charges from an external charge-transfer device. After the charge-transfer device is removed, the conductive, charge-retaining islands hold electric charge, creating an electric field in the electric reusable paper sufficient to cause an image change.
    • 本发明是一种电可重复使用的纸张,其使用在两个薄层中的第一个薄膜的面向外侧的导电电荷保持岛的图案,该两个薄层用于封装与封装片中的导电区域相互作用的电可重复使用的纸基材。 第二封装层也可以用导电材料涂覆,或由导电材料制成,并且可以或可以不图案化。 电可重复使用的纸基材和两个封装层包括一张可重复写入和擦除图像的Gyricon电再利用纸。 第一封装层的图案化电荷保持岛接收来自外部电荷转移装置的电荷。 在去除电荷转移装置之后,导电的电荷保持岛保持电荷,在电可重复使用的纸中产生足以引起图像变化的电场。
    • 4. 发明授权
    • Charge retention islands for electric paper and applications thereof
    • 电纸的电荷保持岛及其应用
    • US06222513B1
    • 2001-04-24
    • US09037767
    • 1998-03-10
    • Matthew E. HowardRobert A. SpragueEdward A. Richley
    • Matthew E. HowardRobert A. SpragueEdward A. Richley
    • G09G334
    • G02B26/026G09F9/372
    • The invention is an electric paper sheet that uses a pattern of conductive charge-retaining islands on the outward-facing side of the first of two thin layers used to encapsulate a Gyricon sheet. The second encapsulating layer may also coated with a conductive material, or made of a conductive material, and may or may not be patterned. The Gyricon sheet and two encapsulating layers comprise a sheet of Gyricon electric paper on which images can be written and erased repeatedly. The patterned charge-retaining islands of the first encapsulating layer receive electric charges from an external charge-transfer device. After the charge-transfer device is removed, the conductive, charge-retaining islands hold electric charge, creating an electric field in the electric paper sufficient to cause an image change.
    • 本发明是一种电纸板,其使用用于封装Gyricon片的两个薄层中的第一个薄膜的向外侧的导电电荷保持岛的图案。 第二封装层也可以用导电材料涂覆,或由导电材料制成,并且可以或可以不图案化。 Gyricon片和两个封装层包括一张Gyricon电纸,其上可以重复地写入和擦除图像。 第一封装层的图案化电荷保持岛接收来自外部电荷转移装置的电荷。 在去除电荷转移装置之后,导电的电荷保持岛保持电荷,从而在电纸中产生足以引起图像变化的电场。