首页> 外文会议>2018 IEEE 10th International Conference on Humanoid, Nanotechnology, Information Technology, Communication and Control, Environment and Management >Electrostatic Discharge / Contamination Control in Slider Fabrication through Process Automation and Integration
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Electrostatic Discharge / Contamination Control in Slider Fabrication through Process Automation and Integration

机译:通过过程自动化和集成控制滑块制造中的静电放电/污染

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The productivity success of hard disk drive (HDD) head lies in the manufacturing capability of slider fabrication with high reliability using extensive electro static discharge (ESD) and contamination control. Both tunneling magnetoresistive (TMR) and heat-assisted magnetic recording (HAMR) sensors are the most extremely ESD sensitive device in the world and due to its nano-size architecture, the built-in ESD protective method being popularly used by semiconductor and electronics industries are not possible. In addition, most conventional ESD control practices being developed for highly sensitive electronic materials are not feasible or useful to protect the TMR or HAMR heads. Also, there is no immediate ESD protection on magnetic head sensor during actual slicing, grinding, lapping, photolithography and testing of slider head. The ESD damage and contamination issue are considered critical reliability concerns of most HDD manufacturers and these have cost hundreds of thousands of US dollars lost from the company when they struck. Therefore, this technical research aims to develop a full proof ESD and contamination control in slider fabrication through development of either a semi or a fully automated process in critical stations. The research will also tap the evaluation of improvised tooling/device to eliminate risks on particular processes and test stations that will fit the requirements of slider fabrication without inducing ESD and contamination to TMR or HAMR heads. Development of automated process is the key to future slider manufacturing, but this must be ESD safe, as well as full proof against transient current, electromagnetic interference (EMI) noise and cross contamination. The above process developments on slider fabrication will be subjected to series of both electrical and visual mechanical test to gather data and to conduct a series of design of experiments and statistical analysis to prove their feasibility on actual slider production and subjective to customer reliability qualification. Since automation and process integration are involved in this research, Promodel software was used to simulate the leadtime reduction and productivity cycle.
机译:硬盘驱动器(HDD)头的生产率成功取决于使用广泛的静电放电(ESD)和污染控制的滑块制造的制造能力,并具有很高的可靠性。隧道磁阻(TMR)和热辅助磁记录(HAMR)传感器都是世界上对ESD最敏感的设备,并且由于其纳米尺寸的结构,内置的ESD保护方法已在半导体和电子行业中广泛使用。是不可能的。此外,针对高灵敏度电子材料开发的大多数常规ESD控制方法对于保护TMR或HAMR磁头都是不可行或无用的。此外,在实际切片,研磨,研磨,光刻和滑动头测试期间,磁头传感器上没有即时的ESD保护。 ESD损坏和污染问题被认为是大多数HDD制造商至关重要的可靠性问题,当他们遭受打击时,这些损失使该公司损失了数十万美元。因此,这项技术研究的目的是通过在关键工位开发半自动或全自动工艺来开发滑块制造中的完全防静电和污染控制。该研究还将利用对简易工具/设备的评估,以消除特定工艺和测试工位上的风险,这些风险将符合滑块制造的要求,而不会引起ESD和对TMR或HAMR磁头的污染。自动化过程的开发是未来滑块制造的关键,但这必须是ESD安全的,并具有针对瞬态电流,电磁干扰(EMI)噪声和交叉污染的全面证明。上述滑块制造工艺的发展将经受一系列的电气和视觉机械测试,以收集数据并进行一系列的实验设计和统计分析,以证明其在实际滑块生产中的可行性并受客户可靠性鉴定的约束。由于这项研究涉及自动化和过程集成,因此使用Promodel软件来模拟交货时间减少和生产率周期。

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