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Prospect of Recording Technologies for Higher Storage Performance

机译:更高存储性能的记录技术的前景

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With the progress of information technology (IT), we need more advanced storage devices to accommodate the unprecedented expansion of information and the rapidly changing IT environment. Magnetic and optical recording storage devices, such as hard disk drive (HDD) and optical disk drive (ODD), are the best candidates for satisfying these demands and requirements. For 10 Tb/in$^{2}$ HDD magnetic recording, we need to develop several advanced and innovative technologies related to the head disk interface (HDI), head/media, servo, and signal processing in current perpendicular magnetic recording (PMR). And, several new read/write mechanisms, such as heat-assisted magnetic recording (HAMR) and bit-patterned media (BPM), are being investigated by many researchers at several institutes around the world. In optical data storage, the page-based holographic data storage system (HDSS) and micro-HDSS are expected to achieve a higher user capacity with beyond terabyte. The near field recording (NFR) system was developed to confirm the feasibility of achieving a multiple terabyte capacity, and currently, through the application of NF nanogap servo system using a flexible media, it is possible to enhance the recording density and data transfer rate together.
机译:随着信息技术(IT)的发展,我们需要更先进的存储设备来适应信息的空前扩展和瞬息万变的IT环境。磁记录和光记录存储设备,例如硬盘驱动器(HDD)和光盘驱动器(ODD),是满足这些需求的最佳选择。对于10 Tb / in $ ^ {2} $ HDD磁记录,我们需要开发几种与当前垂直磁记录(PMR)中的磁头磁盘接口(HDI),磁头/媒体,伺服和信号处理相关的先进创新技术)。而且,世界各地多家研究所的许多研究人员正在研究几种新的读/写机制,例如热辅助磁记录(HAMR)和位模式媒体(BPM)。在光学数据存储中,基于页面的全息数据存储系统(HDSS)和微型HDSS有望实现超过T​​B的更高用户容量。开发近场记录(NFR)系统是为了确认实现多TB容量的可行性,目前,通过使用使用柔性介质的NF纳米间隙伺服系统,可以一起提高记录密度和数据传输速率。

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