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    • 2. 发明申请
    • LASER-BASED THERMAL PRINTER
    • 基于激光的热打印机
    • WO2005097507A2
    • 2005-10-20
    • PCT/US2005/009983
    • 2005-03-24
    • SILICON LIGHT MACHINES CORPORATIONZAREM, Harold ALEUNG, Omar S
    • ZAREM, Harold ALEUNG, Omar S
    • B41J2/315
    • B41J2/32
    • One embodiment described pertains to a thermal printer is provided having a spatial light modulator (SLM) (114) to modulate light from a laser source (102) to record information on a thermal-sensitive surface of a recording medium (106), and a heater (108) adjacent to the medium to preheat the thermal-sensitive surface prior to recording of information thereon. The printer may further include illumination optics (112) for focusing the light beam onto the SLM, and imaging optics (116) to image the light on the thermal-sensitive surface. The heater (108) may comprise a resistive, a convective or a radiant heater. The printer may further include a feed mechanism with a roller having an outer surface in contact with the recording medium for feeding it past the imaging optics (116), and the heater (108) may be disposed inside of the roller to heat the recording medium (106) in contact with the roller. Other embodiments are also described.
    • 所描述的一个实施例涉及一种具有空间光调制器(SLM)(114)以调制来自激光源(102)的光以在记录介质(106)的热敏表面上记录信息的热敏打印机,以及 加热器(108),以在其上记录信息之前预热热敏表面。 打印机还可以包括用于将光束聚焦到SLM上的照明光学元件(112),以及成像光学元件(116),用于对光敏感表面进行成像。 加热器(108)可以包括电阻,对流或辐射加热器。 打印机可以进一步包括具有滚筒的进给机构,滚筒具有与记录介质接触的外表面,用于将其通过成像光学器件(116),并且加热器(108)可以设置在滚筒内部以加热记录介质 (106)与辊接触。 还描述了其它实施例。
    • 5. 发明申请
    • DIELECTRIC SPACER FOR ENHANCED SQUEEZE-FILM DAMPING OF MOVABLE MEMBERS OF MEMS DEVICES
    • 用于增强MEMS器件可移动元件阻尼的电介质隔离器
    • WO2006052647A3
    • 2007-07-05
    • PCT/US2005039777
    • 2005-11-04
    • SILICON LIGHT MACHINES CORPPAYNE ALEXANDER PLEUNG OMAR S
    • PAYNE ALEXANDER PLEUNG OMAR S
    • G02B26/00
    • G02B26/0808
    • In one embodiment, a capacitive micro electro-mechanical systems (MEMS) device (500) includes a dielectric spacer (502) between a bottom electrode (503) and a movable member (501). The movable member (501) may serve as a top electrode. A gap (614) separates the top electrode from the dielectric spacer (502). The movable member (501) may be actuated to deflect towards the bottom electrode (503) by electrostatic force. The dielectric spacer (502) reduces the height of the gap that would otherwise be formed between a top surface of the bottom electrode (503) and a bottom surface of the movable member (501), thereby improving squeeze-film damping. The movable member (501) may be a ribbon of a ribbon-type diffractive spatial light modulator, for example.
    • 在一个实施例中,电容式微电子机械系统(MEMS)装置(500)包括在底部电极(503)和可移动部件(501)之间的电介质间隔物(502)。 可动构件(501)可以用作顶部电极。 间隙(614)将顶部电极与电介质间隔物(502)分开。 可动构件(501)可被致动以通过静电力朝向底部电极(503)偏转。 电介质间隔物(502)减小了底部电极(503)的顶表面和可移动部件(501)的底表面之间将形成的间隙的高度,从而改善了挤压膜阻尼。 可动构件(501)例如可以是带状衍射空间光调制器的带状物。