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    • 36. 发明申请
    • FREQUENCY ADDRESSABLE MICROACTUATORS
    • 频率可寻址微处理器
    • US20120275079A1
    • 2012-11-01
    • US13415840
    • 2012-03-08
    • Mark BachmanGuann-Pyng LiMinfeng WangYang ZhangBrent Puohan Lin
    • Mark BachmanGuann-Pyng LiMinfeng WangYang ZhangBrent Puohan Lin
    • H01H51/32
    • H01H50/005G02B26/0833H01H2001/0042H01H2001/0084H01H2059/0036
    • Frequency addressable micro-actuators having one or more movable resonating elements actuators, such as cantilevers, can be forced into oscillation by, e.g., electromagnetic actuation. The movable structure is designed to latch at a certain amplitude using one of several latching techniques, such as a near-field magnetic field. In operation, the movable element is driven into resonance, producing a large amplitude, which results in the structure latching. Through resonance, a small force applied in a repeating manner can result in the latching of the actuator, an operation which would normally require a large force. If two or more units, each with different harmonic frequencies, are placed under the same influence, only the one with a harmonic response to the driving force will latch. A single influencing signal may be used to latch more than one device on demand by tuning the frequency to match the natural frequency of the device of interest.
    • 具有一个或多个可移动谐振元件致动器(例如悬臂)的可寻址微型致动器可以通过例如电磁致动而被迫振荡。 可移动结构被设计成使用几种闭锁技术之一(例如近场磁场)以一定幅度锁定。 在操作中,可移动元件被驱动到共振中,产生大的幅度,这导致结构锁定。 通过共振,以重复的方式施加的小的力可导致致动器的锁定,这通常需要大的力。 如果两个或更多个具有不同谐波频率的单元被置于相同的影响下,只有具有对驱动力的谐波响应的单元将被锁定。 可以使用单个影响信号来通过调谐频率来匹配感兴趣的装置的固有频率来按需要锁存多于一个的装置。
    • 40. 发明申请
    • MICRO-BUBBLE PLATE FOR PATTERNING BIOLOGICAL AND NON-BIOLOGICAL MATERIALS
    • 用于绘制生物和非生物材料的微孔板
    • US20070128716A1
    • 2007-06-07
    • US11539695
    • 2006-10-09
    • Yuli WangMark BachmanChristopher SimsGuann-Pyng LiNancy Allbritton
    • Yuli WangMark BachmanChristopher SimsGuann-Pyng LiNancy Allbritton
    • C12M1/22
    • B01L3/5085B01L3/5088B01L2200/0642B01L2200/12B01L2300/0819C12M25/06C12M29/20
    • Systems and methods are provided for patterning biological and non-biological material at specific sites on a plate, as well as growing three dimensional structures. Preferred embodiments comprise a plate with regions that will trap gas, usually in the form of bubbles, when the plate is submerged in liquid. Other embodiment of the present invention include a method for placing materials on the plate at pre-determined locations through the use of trapped gas to prevent materials from collecting at unwanted regions. The plate has great utility for plating cells and tissues at specific sites, such as on an array. The disclosed method can also be used to coat the surface of a plate with coatings at specific locations for patterned coating applications and to build up materials to produce three dimensional structures, including micro-mechanical structures—where the structures may be formed from living or non-living material, tissue or non-tissue, organic or inorganic, and the like.
    • 提供了系统和方法,用于在板上的特定位置图案化生物和非生物材料,以及生长三维结构。 优选实施例包括具有区域的板,当板被浸没在液体中时,其具有通常以气泡形式捕获气体的区域。 本发明的其它实施方案包括通过使用捕获的气体将材料放置在预定位置处的材料的方法,以防止材料在不需要的区域收集。 该板对于在特定位置(例如阵列)上的电镀细胞和组织具有很大的用途。 所公开的方法还可以用于在具有特定位置的涂层涂覆板的表面以用于图案化涂布应用,并且建立材料以产生三维结构,包括微机械结构,其中结构可以由活的或非 - 生物材料,组织或非组织,有机或无机物等。