论文标题
通过光模式投影对光电开关对高压执行器阵列的动态控制
Dynamic control of high-voltage actuator arrays by light-pattern projection on photoconductive switches
论文作者
论文摘要
迄今为止,控制高压执行器阵列的能力依赖于昂贵的微电子过程或每个执行器的单个接线到一个单个芯片高压开关。在这里,我们提出了一种替代方法,该方法将片上光电传输开关与光投影系统一起单独解决高压执行器。除非使用直接照明打开,否则每个执行器连接到名义上关闭的一个或多个开关。我们选择了氢化的无定形硅作为光电传入材料,并提供了其光到深色电导,分解场和光谱响应的完整表征。最终的开关非常健壮,我们提供了其制造过程的全部详细信息。我们证明可以将开关集成到不同的架构中,以支持AC和DC驱动的执行器,并为其功能设计提供工程准则。为了证明我们的方法的多功能性,我们证明了在两个截然不同的微米栅极电极中使用光电传输开关的使用,用于微流体室中的图案流场,并控制厘米大小的静电执行器,以创建具有自动性显示器的机械变形。
The ability to control high-voltage actuator arrays relies, to date, on expensive microelectronic processes or on individual wiring of each actuator to a single off-chip high-voltage switch. Here we present an alternative approach that uses on-chip photoconductive switches together with a light projection system to individually address high-voltage actuators. Each actuator is connected to one or more switches that are nominally OFF unless turned ON using direct light illumination. We selected hydrogenated amorphous silicon as our photoconductive material, and we provide complete characterization of its light to dark conductance, breakdown field, and spectral response. The resulting switches are very robust, and we provide full details of their fabrication processes. We demonstrate that the switches can be integrated in different architectures to support both AC and DC-driven actuators and provide engineering guidelines for their functional design. To demonstrate the versatility of our approach, we demonstrate the use of the photoconductive switches in two distinctly different applications control of micrometer-sized gate electrodes for patterning flow fields in a microfluidic chamber, and control of centimeter-sized electrostatic actuators for creating mechanical deformations for haptic displays.