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Thread: Millipede Data Storage PPT PDF Paper Presentation & Seminar Report

  1. #1

    Pdf 32 Millipede Data Storage PPT PDF Paper Presentation & Seminar Report

    Millipede Data Storage Paper Presentation & Seminar

    Given the rapidly increasing data volumes that are downloaded onto mobile devices such as cell phones and PDAs, there is a growing demand for suitable storage media with more and more capacity. At CeBIT, IBM for the first time shows
    the prototype of the MEMS- Micro Electrical Mechanical System- assembly of a nano mechanical storage system known internally as the "millipede" project. Using revolutionary nanotechnology, scientists at the IBM Zurich Research Laboratory,
    Switzerland, have made it to the millionths of a millimetre range, achieving data storage densities of more than one terabit (1000 gigabit) per square inch, equivalent to storing the content of 25 DVDs on an area the size of a postage stamp.

    With this new technique, 3040-nm-sized bit indentations of similar pitch size have been made by a single cantilever in a thin (50-nm) polymethylmethacrylate (PMMA) layer, resulting in a data storage density of 400500 ~ b l i n .T*h e Millipede project could bring tremendous data capacity to mobile devices such as personal digital assistants, cellular phones, and multifunctional watches, can be used to explore a variety of other applications, such as large-area microscopic imaging, nanoscale lithography or atomic and molecular manipulation.

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  2. #2

    Pdf 32 Millipede Paper Presentation & Seminar PDF Download

    Millipede Paper Presentation & Seminar

    "Millipede"
    is a new (AFM)-based data storage concept that has a potentially ultrahigh density, terabit capacity, small form factor, and high data rate. Its potential for ultrahigh storage density has been demonstrated by a new thermomechanical local-probe technique to store and read back data in very thin polymer films. With this new technique, 3040-nm-sized bit indentations of similar pitch size have been made by a single cantilever/tip in a thin (50-nm) polymethylmethacrylate (PMMA) layer, resulting in a data storage density of 400500 Gb/in.2

    High data rates are achieved by parallel operation of large two-dimensional (2D) AFM arrays that have been batch-fabricated by silicon surface-n Mcromachining techniques. The very large scale integration (VLSI) of micro/nanomechanical devices (cantilevers/tips) on a single chip leads to the largest and densest 2D array of 32 x 32 (1024) AFM cantilevers with integrated write/read storage functionality ever built. Initial areal densities of 100200 Gb/in.2 have been achieved with the 32 x 32 array chip, which has potential for further improvements.
    In addition to data st
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