Bacheva Vesna, Firouzeh Amir, Leroy Edouard, Balciunaite Aiste, Davila Diana, Gabay Israel, Paratore Federico, Bercovici Moran, Shea Herbert, Kaigala Govind
3200003 Haifa, Israel Faculty of Mechanical Engineering, Technion - Israel Institute of Technology.
Säumerstrasse 4, 8803 Rüschlikon, Switzerland IBM Research Europe - Zurich.
Microsyst Nanoeng. 2023 May 16;9:59. doi: 10.1038/s41378-023-00528-w. eCollection 2023.
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 (a-Si:H) as our photoconductive material, and we provide a 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 into 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 µm-sized gate electrodes for patterning flow fields in a microfluidic chamber and control of cm-sized electrostatic actuators for creating mechanical deformations for haptic displays.
迄今为止,控制高压致动器阵列的能力依赖于昂贵的微电子工艺,或者依赖于将每个致动器单独连接到单个片外高压开关。在此,我们提出一种替代方法,该方法使用片上光电导开关以及光投射系统来单独控制高压致动器。每个致动器连接到一个或多个开关,这些开关在未使用直射光照射开启时通常处于关闭状态。我们选择氢化非晶硅(a-Si:H)作为我们的光电导材料,并对其从光到暗的电导率、击穿场和光谱响应进行了全面表征。由此产生的开关非常坚固,我们提供了其制造工艺的全部细节。我们证明这些开关可以集成到不同的架构中,以支持交流和直流驱动的致动器,并为其功能设计提供工程指导。为了证明我们方法的通用性,我们展示了光电导开关在两种截然不同的应用中的使用——控制用于在微流体腔室中对流场进行图案化的微米级栅电极,以及控制用于为触觉显示器产生机械变形的厘米级静电致动器。