开放式光子学:构建3D打印的机动旋转阶段系统的综合方法
Yannic Toschke1, Jan Klenen1, Mirco Imlau1
1Department of Physics, Osnabrueck University, 49076 Osnabrueck, Germany.
HardwareX
|December 16, 2024
概括
研究人员为光学和光子实验室开发了一种低成本的机动旋转阶段. 这种3D打印系统使用步进电机和带,以实现高精度,成本低于100欧元.
科学领域:
- 实验光学和光子学研究.
- 实验室自动化和仪器仪表.
背景情况:
- 机动,高精度的旋转阶段在光学和光子学研究中至关重要.
- 高昂的采购成本限制了这些关键组件的可用性,往往需要手工替代品.
研究的目的:
- 为实验室使用提供一个具有成本效益,机动,高精度的旋转阶段系统.
- 为了解决缺乏负担得起和精确的机动阶段用于自动化光学实验.
主要方法:
- 一个由3D打印组件构建的单体机械框架.
- 一个由ESP32微控制器控制的步进电机.
- 一个有牙的皮带驱动系统,以最大限度地减少反弹,并确保高定位精度.
- 集成远程程序调用,家庭开关和增量编码器.
主要成果:
- 开发了一种功能性电动高精度旋转阶段系统.
- 该系统的总成本减少到不到100欧元.
- 在没有重大妥协的情况下,保持了性能标准.
结论:
- 开发的系统为昂贵的商业旋转阶段提供了一个可行的低成本替代方案.
- 这一创新可以提高光学和光子学实验室的自动化和效率.
- 该设计为研究和教育提供了更广泛的准确机动旋转阶段的可访问性.
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