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    • 5. 发明申请
    • METHOD FOR FORMING FREE STANDING MICROSTRUCTURES
    • 形成自由定位微结构的方法
    • US20060273065A1
    • 2006-12-07
    • US11421715
    • 2006-06-01
    • Chang-Jin KimRihui HeFardad Chamran
    • Chang-Jin KimRihui HeFardad Chamran
    • C23F1/00
    • B81C1/00333B81C2203/0136B81C2203/0145
    • A method of forming free standing microstructures includes providing a substrate and forming a sacrificial layer on the substrate. A thin-film structural layer is then formed around and over the sacrificial layer. The sacrificial layer may be formed from an electrically conductive or non-electrically conductive material in certain embodiments of the invention. Nanometer-scale pores are then introduced through the thin-film structural layer by a non-lithographic method, such as anodic etching. Via the pores, at least a portion of the sacrificial layer is etched away or otherwise removed from underneath the thin-film structural layer. The free standing microstructures may be sealed by application of a sealing layer on top thereof. The microstructure may form an encapsulating cavity and provide integrated on-wafer packaging if separate microdevices are disposed inside the cavity. The entire process may be done at or near room temperature in some cases.
    • 形成自由立体微结构的方法包括提供衬底并在衬底上形成牺牲层。 然后在牺牲层周围形成薄膜结构层。 在本发明的某些实施例中,牺牲层可以由导电或非导电材料形成。 然后通过非平版印刷法,例如阳极蚀刻,通过薄膜结构层引入纳米级的孔。 通过孔,牺牲层的至少一部分被蚀刻掉或以其它方式从薄膜结构层下方移除。 可以通过在其顶部施加密封层来密封自立式微结构。 如果单独的微型器件设置在空腔内,则微结构可以形成封装空腔并提供集成的晶片封装。 在某些情况下,整个过程可以在室温或室温附近完成。
    • 6. 发明授权
    • Electromechanical systems device
    • 机电系统装置
    • US08803861B2
    • 2014-08-12
    • US13403792
    • 2012-02-23
    • Tsongming KaoCharles LeuKostadin DjordjevRihui He
    • Tsongming KaoCharles LeuKostadin DjordjevRihui He
    • G06F3/038G09G5/00
    • G02B26/001G02B26/0841
    • This disclosure provides systems, methods and apparatus for EMS devices. In one aspect, an EMS device includes an array of display elements and a plurality of driver lines with at least a portion of the plurality of driver lines routed above or below the array between one or more driver circuits and the array. In some implementations, at least a portion of the plurality of driver lines is disposed above a non-active area of the array. In one aspect, an EMS device can form a portion of at least one of the plurality of driver lines. In some implementations, movable layers of the array can be disposed between at least a portion of the plurality of driver lines and stationary electrodes of the display.
    • 本公开提供了EMS设备的系统,方法和设备。 在一个方面,EMS设备包括显示元件阵列和多个驱动器线,其中多个驱动器线的至少一部分在一个或多个驱动器电路和阵列之间路由到阵列的上方或下方。 在一些实现中,多个驱动器线的至少一部分设置在阵列的非有效区域之上。 在一个方面,EMS装置可以形成多个驱动器线中的至少一个的一部分。 在一些实施方案中,阵列的可移动层可以设置在多个驱动线的至少一部分和显示器的固定电极之间。
    • 7. 发明申请
    • ELECTROMECHANICAL SYSTEMS DEVICE
    • 电子系统设备
    • US20130222351A1
    • 2013-08-29
    • US13403792
    • 2012-02-23
    • Tsongming KaoCharles LeuKostadin DjordjevRihui He
    • Tsongming KaoCharles LeuKostadin DjordjevRihui He
    • G09G5/00
    • G02B26/001G02B26/0841
    • This disclosure provides systems, methods and apparatus for EMS devices. In one aspect, an EMS device includes an array of display elements and a plurality of driver lines with at least a portion of the plurality of driver lines routed above or below the array between one or more driver circuits and the array. In some implementations, at least a portion of the plurality of driver lines is disposed above a non-active area of the array. In one aspect, an EMS device can form a portion of at least one of the plurality of driver lines. In some implementations, movable layers of the array can be disposed between at least a portion of the plurality of driver lines and stationary electrodes of the display.
    • 本公开提供了EMS设备的系统,方法和设备。 在一个方面,EMS设备包括显示元件阵列和多个驱动器线,其中多个驱动器线的至少一部分在一个或多个驱动器电路和阵列之间路由到阵列的上方或下方。 在一些实现中,多个驱动器线的至少一部分设置在阵列的非有效区域之上。 在一个方面,EMS装置可以形成多个驱动器线中的至少一个的一部分。 在一些实施方案中,阵列的可移动层可以设置在多个驱动线的至少一部分和显示器的固定电极之间。