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使用 3D 打印和微控制器设计新型实验室设备。

Engineering Novel Lab Devices Using 3D Printing and Microcontrollers.

机构信息

1 Takeda Pharmaceuticals International Co., Cambridge, MA, USA.

出版信息

SLAS Technol. 2018 Oct;23(5):448-455. doi: 10.1177/2472630318766858. Epub 2018 Mar 19.

Abstract

The application of 3D printing and microcontrollers allows users to rapidly engineer novel hardware solutions useful in a laboratory environment. 3D printing is transformative as it enables the rapid fabrication of adapters, housings, jigs, and small structural elements. Microcontrollers allow for the creation of simple, inexpensive machines that receive input from one or more sensors to trigger a mechanical or electrical output. Bringing these technologies together, we have developed custom solutions that improve capabilities and reduce costs, errors, and human intervention. In this article, we describe three devices: JetLid, TipWaster, and Remote Monitoring Device (REMIND). JetLid employs a microcontroller and presence sensor to trigger a high-speed fan that reliably de-lids microtiter plates on a high-throughput screening system. TipWaster uses a presence sensor to activate an active tip waste chute when tips are ejected from a pipetting head. REMIND is a wireless, networked lab monitoring device. In its current implementation, it monitors the liquid level of waste collection vessels or bulk liquid reagent containers. The modularity of this device makes adaptation to other sensors (temperature, humidity, light/darkness, movement, etc.) relatively simple. These three devices illustrate how 3D printing and microcontrollers have enabled the process of rapidly turning ideas into useful devices.

摘要

3D 打印和微控制器的应用使用户能够快速设计新颖的硬件解决方案,这些方案在实验室环境中非常有用。3D 打印具有变革性,因为它能够快速制造适配器、外壳、夹具和小型结构元件。微控制器允许创建简单、廉价的机器,这些机器可以从一个或多个传感器接收输入,以触发机械或电气输出。将这些技术结合在一起,我们开发了定制的解决方案,提高了能力,降低了成本、错误和人工干预。在本文中,我们描述了三个设备:JetLid、TipWaster 和远程监控设备(REMIND)。JetLid 采用微控制器和存在传感器来触发高速风扇,该风扇可可靠地为高通量筛选系统上的微孔板开盖。TipWaster 使用存在传感器在移液头弹出吸头时激活活动吸头废物滑槽。REMIND 是一种无线、联网的实验室监控设备。在其当前实现中,它可以监控废物收集容器或散装液体试剂容器的液位。该设备的模块化使得适应其他传感器(温度、湿度、光/暗、运动等)相对简单。这三个设备说明了 3D 打印和微控制器如何使快速将想法转化为有用设备的过程成为可能。

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