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    • 6. 发明申请
    • CONTROL CIRCUIT FOR OVERCOMING STICTION
    • 控制电路用于覆盖
    • WO2007040756A1
    • 2007-04-12
    • PCT/US2006/029316
    • 2006-07-29
    • HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.MARTIN, EricPIEHL, Arthur
    • MARTIN, EricPIEHL, Arthur
    • G09G3/34
    • B81C1/00968G02B26/001G09G3/2011G09G3/3466G09G2310/0251G09G2310/06G09G2320/0693
    • A circuit (30) and method for controlling a micro-electromechanical system (10) is herein disclosed. In one embodiment of a micro-electromechanical system (10) having top (16) and bottom (14) capacitor plates with a pixel plate (18) movably positioned therebetween, a release voltage sufficient to overcome stiction forces adhering the pixel plate (18) to one of the capacitor plates (14, 16) is applied to the pixel plate (18) to cause the pixel plate (18) to be attracted to the capacitor plate (14, 16) opposite the capacitor plate (14, 16) to with which the pixel plate (18) is in contact. After the pixel plate (18) has moved a predetermined distance away from the capacitor plate (14, 16) to which it had been adhered by stiction forces, the release voltage is removed. Thereafter, a positional voltage is applied to the pixel plate (18) to move the pixel plate (18) to a desired location between the capacitor plates (14, 16). Release and positional voltages are coupled to and decoupled from the pixel plate (18) by one or more switching mechanisms (32, 34).
    • 本文公开了一种用于控制微机电系统(10)的电路(30)和方法。 在具有顶部(16)和底部(14)电容器板的微机电系统(10)的一个实施例中,具有可移动地位于其间的像素板(18),释放电压足以克服粘附像素板(18)的粘性力, 将电容器板(14,16)中的一个施加到像素板(18),以使像素板(18)被吸引到与电容器板(14,16)相对的电容器板(14,16)至 像素板(18)与其接触。 在像素板(18)已经通过静电力已经被粘附到其的电容器板(14,16)移动了预定距离之后,释放电压被去除。 此后,将位置电压施加到像素板(18)以将像素板(18)移动到电容器板(14,16)之间的期望位置。 释放和位置电压通过一个或多个切换机构(32,34)耦合到像素板(18)并与其分离。
    • 7. 发明申请
    • CAPACITANCE GAP CALIBRATION
    • 电容差距校准
    • WO2007027320A1
    • 2007-03-08
    • PCT/US2006/028674
    • 2006-07-24
    • HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.BROWN, MatthewMARTIN, Eric
    • BROWN, MatthewMARTIN, Eric
    • G02B26/08G02B26/00
    • G02B26/001G09G3/3466G09G2320/029
    • A method for calibrating a display device (10) comprises controlling an applied voltage to at least one fabry-perot interferometer pixel (32) through a plurality of switches. The at least one fabry-perot interferometer pixel (32) has a top (34, 41, 64) and a bottom (36, 42, 66) plate defining a gap (44, 58) therebetween wherein the at least one fabry-perot interferometer pixel (32) produces a selected output color in response to the applied voltage. The method further includes controlling a test voltage to the at least one fabry-perot interferometer pixel (32) through the plurality of switches (38, 40) during a calibration sequence to determine a gap capacitance in the at least one fabry-perot interferometer (32). The gap capacitance represents the relative position of the top plate (34, 41, 64) with respect to the bottom plate (36, 42, 66).
    • 用于校准显示装置(10)的方法包括通过多个开关将施加的电压控制到至少一个镜头 - 珀糖干涉仪像素(32)。 所述至少一个辐射干涉仪像素(32)具有在其间限定间隙(44,58)的顶部(34,41,64)和底部(36,42,66)板,其中所述至少一个透镜 干涉仪像素(32)响应于施加的电压产生选择的输出颜色。 该方法还包括在校准序列期间通过多个开关(38,40)控制至少一个实验室 - 超导干涉仪像素(32)的测试电压,以确定至少一个实验室 - 超导干涉仪中的间隙电容( 32)。 间隙电容表示顶板(34,41,64)相对于底板(36,42,66)的相对位置。