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首页> 外文期刊>Lab on a chip >A light writable microfluidic 'flash memory': Optically addressed actuator array with latched operation for microfluidic applications
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A light writable microfluidic 'flash memory': Optically addressed actuator array with latched operation for microfluidic applications

机译:可写光的微流体“闪存”:具有用于微流体应用的闭锁操作的光学寻址致动器阵列

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This paper presents a novel optically addressed microactuator array (microfluidic "flash memory") with latched operation. Analogous to the address-data bus mediated memory address protocol in electronics, the microactuator array consists of individual phase-change based actuators addressed by localized heating through focused light patterns (address bus), which can be provided by a modified projector or high power laser pointer. A common pressure manifold (data bus) for the entire array is used to generate large deflections of the phase change actuators in the molten phase. The use of phase change material as the working media enables latched operation of the actuator array. After the initial light "writing" during which the phase is temporarily changed to molten, the actuated status is self-maintained by the solid phase of the actuator without power and pressure inputs. The microfluidic flash memory can be re-configured by a new light illumination pattern and common pressure signal. The proposed approach can achieve actuation of arbitrary units in a large-scale array without the need for complex external equipment such as solenoid valves and electrical modules, which leads to significantly simplified system implementation and compact system size. The proposed work therefore provides a flexible, energy-efficient, and low cost multiplexing solution for microfluidic applications based on physical displacements. As an example, the use of the latched microactuator array as "normally closed" or "normally open" microvalves is demonstrated. The phase-change wax is fully encapsulated and thus immune from contamination issues in fluidic environments.
机译:本文介绍了一种具有锁存操作的新型光学寻址微致动器阵列(微流体“闪存”)。类似于电子设备中的地址数据总线介导的存储器地址协议,微致动器阵列由基于相变的单个致动器组成,这些致动器通过聚焦光图案(地址总线)的局部加热来寻址,可以通过修改后的投影仪或大功率激光器来提供指针。整个阵列的公共压力歧管(数据总线)用于在熔融相中产生相变致动器的大挠度。相变材料作为工作介质的使用使得致动器阵列的闩锁操作成为可能。在初始光“写入”之后,在该阶段将相暂时变为熔融状态,然后通过执行器的固相自保持驱动状态,而无需输入功率和压力。可以通过新的光照模式和公共压力信号来重新配置微流体闪存。所提出的方法可以实现大规模阵列中任意单元的致动,而无需诸如电磁阀和电气模块之类的复杂外部设备,从而大大简化了系统的实现并缩小了系统的尺寸。因此,提出的工作为基于物理位移的微流体应用提供了一种灵活,节能且低成本的多路复用解决方案。作为示例,证明了将闩锁的微致动器阵列用作“常闭”或“常开”微型阀。相变蜡被完全包封,因此不受流体环境中污染的困扰。

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