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Automatic Hard Disk Drive Slider Bar Auditing with Spatial Light Modulator based Imaging System

机译:具有基于空间光调制器的成像系统的自动硬盘驱动器滑杆审计

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In Hard Disk Drive (HDD) slider fabrication process, the slider bar auditing is required to verify if the slider bars in the tray are sorted correctly as indicated by the serial numbers printed on sliders. In this paper, we present a machine vision system for automated reading of the serial numbers. Since the sizes of slider bars are very small, an imaging system (CCD camera) with high magnification lens is usually exploited to acquire the slide bar images. For such high magnification vision system, an autofocus module is indispensable. Unlike conventional autofocus modules which perform using mechanical zoom lens, we develop an autofocus module based on Spatial Light Modulator (SLM) where the SLM will act as phase mask filter for focus adjustment. The key contribution of our work is that we perform non-mechanical autofocus approach by adjusting the pixel-based phase mask pattern sending through the SLM. The main advantage of our system is that there is no macromechanical movement part involved in Z-axis focus adjustment. We propose a machine vision algorithm that consists of 3 major steps including coarse localization of slider bar, Autofocus and optical character recognition (OCR). To our best knowledge, our developed system is the first system that uses the SLM based autofocus in machine vision for HDD slider manufacturing. From the experiment, our system can accomplish the task with very high accuracy. By using our system, we can improve the machine vision applications by replacing conventional mechanical zoom lens based autofocus modules that generally cause machine vibrations and increasing maintenance costs related to mechanical movement issues.
机译:在硬盘驱动器(HDD)滑块的制造过程中,需要对滑块进行审核,以验证托盘中的滑块是否按照打印在滑块上的序列号指示的正确排序。在本文中,我们介绍了一种用于自动读取序列号的机器视觉系统。由于滑杆的尺寸非常小,因此通常利用具有高放大倍率镜头的成像系统(CCD摄像机)来获取滑杆图像。对于这种高倍率的视觉系统,自动对焦模块是必不可少的。与使用机械变焦镜头执行的传统自动对焦模块不同,我们开发了一种基于空间光调制器(SLM)的自动对焦模块,其中,SLM将用作用于相位调整的相位掩膜滤镜。我们工作的关键贡献在于,我们通过调整通过SLM发送的基于像素的相位掩模图案来执行非机械自动对焦方法。我们系统的主要优点是Z轴聚焦调整中没有宏观机械运动部分。我们提出了一种机器视觉算法,该算法包括3个主要步骤,包括滑动条的粗略定位,自动聚焦和光学字符识别(OCR)。据我们所知,我们开发的系统是第一个在机器视觉中使用基于SLM的自动对焦进行HDD滑块制造的系统。通过实验,我们的系统可以非常高精度地完成任务。通过使用我们的系统,我们可以通过替换传统的基于机械变焦镜头的自动对焦模块来改善机器视觉应用,这些模块通常会引起机器振动并增加与机械运动问题相关的维护成本。

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