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    • 2. 发明申请
    • SUSPENDED PARTICLE DEVICE AND METHOD FOR DRIVING SAME
    • 悬挂颗粒装置及其驱动方法
    • US20120019897A1
    • 2012-01-26
    • US13189626
    • 2011-07-25
    • Shunsuke MORIYoshiro MIKAMIToshiaki KUSUNOKI
    • Shunsuke MORIYoshiro MIKAMIToshiaki KUSUNOKI
    • G02F1/167
    • G02F1/172G02F1/167
    • A suspended particle device which enables light control without requiring any complicated switching circuit to be formed on a substrate is realized. A suspension containing charged particles and a disperse medium is filled between an A-substrate and a B-substrate, and first and second electrodes are formed on the A-substrate. A DC voltage is applied across the first and second electrodes to localize the charged particles on the second electrode side. Subsequently, an AC voltage is applied across the first and second electrodes to orient, while maintaining the localized state of the charged particles, the charged particles along a direction of an electric field. Light transmittance is lower in an area where the charged particles are present than in an area where no charged particles are present, whereas, in the area where the charged particles are present, the light transmittance can be controlled by adjusting the AC voltage. Thus, in the suspended particle device, the amount of light transmitted through a prescribed area can be controlled.
    • 实现了能够进行光控制而不需要在基板上形成复杂的开关电路的悬浮粒子装置。 含有带电粒子和分散介质的悬浮液填充在A衬底和B衬底之间,并且在A衬底上形成第一和第二电极。 跨越第一和第二电极施加DC电压以使带电粒子定位在第二电极侧。 随后,跨越第一和第二电极施加AC电压,以沿着电场方向定向带电粒子,同时保持带电粒子的局部状态。 在存在带电粒子的区域中的透光率比不存在带电粒子的区域的透光率低,而在带电粒子的区域中,可以通过调整交流电压来控制透光率。 因此,在悬浮粒子装置中,可以控制透过规定区域的光量。