The Experimental Demonstration of the Optimized Electrical Probe Memory for Ultra-High Density Recording

被引:4
|
作者
Wang, Lei [1 ]
Gong, Sidi [1 ]
Yang, Cihui [1 ]
Wen, Jing [1 ]
机构
[1] Nanchang Hangkong Univ, Sch Informat Engn, Nanchang 330063, Jiangxi, Peoples R China
基金
中国国家自然科学基金;
关键词
Crystallization; diamond-like carbon; electrical probe memory; resistivity; titanium nitride; ultra-high density;
D O I
10.2174/1872210510666160823163455
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Background: A theoretical model has been previously proposed to optimize the structure of the electrical probe memory system, whereby the optimal thickness and resistivity of DLC capping layer and TiN under layer are predicted to be 2 nm, 0.01 Omega.m, and 40 nm, 2 x 10(-7) Omega.m, respectively However, there is no experimental evidence to show that such a media stack can be fabricated in reality by the time of writing and few patents regarding this intriguing topic have been reviewed and cited. Methods: In order to realize this optimized design experimentally, the thickness dependent resistivity for both DLC and TiN film are assessed, from which it is not possible to obtain a media stack with exactly the same properties as the optimized design. Therefore, the previously proposed architecture is re-optimized using the measured properties values, and the capability of using the modified memory architecture to provide ultra-high density, high data rate, and low energy consumption is demonstrated. Results: The results show that it is difficult to experimentally attain an electrical probe memory with exactly the same properties values as the optimized counterpart. Conclusions: An optimized electrical probe memory structure that includes a DLC capping layer and TiN under layer was previously proposed according to a parametric approach, while the practicality of realizing such a media stack experimentally has not bee investigated. In order to assess its practical feasibility, we first measured the electrical resistivities of DLC and TiN films for different thicknesses. In this case, for the purpose of optimizing the memory system with appropriate, but more physically realistic properties values, we re-designed the architecture using the measured properties, and the modified system is able to provide ultra-high density, large data rate, and low energy consumption.
引用
收藏
页码:70 / 74
页数:5
相关论文
共 50 条
  • [1] Ultra-high density MEMS probe memory device
    Heck, John
    Adams, Donald
    Belov, Nickolai
    Chou, Tsung-Kuan A.
    Kim, Byong
    Kornelsen, Kevin
    Ma, Qing
    Rao, Valluri
    Severi, Simone
    Spicer, Dean
    Tchelepi, Ghassan
    Witvrouw, Ann
    MICROELECTRONIC ENGINEERING, 2010, 87 (5-8) : 1198 - 1203
  • [2] Nanofocusing probe limitations for a ultra-high density optical memory
    Nikolov, ID
    NANOTECHNOLOGY, 2004, 15 (08) : 1076 - 1083
  • [3] Ultra-high Density Rewritability Function Achieved Using Phase-change Electrical Probe Memory
    Pan, Jing
    2017 IEEE 2ND ADVANCED INFORMATION TECHNOLOGY, ELECTRONIC AND AUTOMATION CONTROL CONFERENCE (IAEAC), 2017, : 240 - 246
  • [4] Ultra-High Density Memory Based on Scanning Probe Microscope World
    Denshi Joho Tsushin Gakkai Shi, 11 (1144):
  • [5] Carbon resistive probe memory designed for ultra-high storage density
    Liu, Zhi-Cheng
    Wang, Lei
    NANOTECHNOLOGY, 2020, 31 (38)
  • [6] MAGNETORESISTIVE HEADS FOR ULTRA-HIGH DENSITY RECORDING
    YUAN, SW
    BERTRAM, HN
    IEEE TRANSACTIONS ON MAGNETICS, 1993, 29 (06) : 3811 - 3816
  • [7] A vision of ultra-high density memory
    Morehouse, CC
    SIXTH BIENNIAL IEEE INTERNATIONAL NONVOLATILE MEMORY TECHNOLOGY CONFERENCE, 1996, : 30 - 33
  • [8] Slider surface control for ultra-high density recording
    Tjiptoharsono, Febiana
    Gonzaga, Leonard Verano
    Zhang, Mingsheng
    Hua, Wei
    Liu, Bo
    MICROSYSTEM TECHNOLOGIES-MICRO-AND NANOSYSTEMS-INFORMATION STORAGE AND PROCESSING SYSTEMS, 2010, 16 (1-2): : 301 - 307
  • [9] The Route for Ultra-High Recording Density Using Probe-Based Data Storage Device
    Wang, Lei
    Wen, Jing
    Yang, Cihui
    Gai, Shan
    Peng, YuanXiu
    NANO, 2015, 10 (08)
  • [10] Slider surface control for ultra-high density recording
    Febiana Tjiptoharsono
    Leonard Verano Gonzaga
    Mingsheng Zhang
    Wei Hua
    Bo Liu
    Microsystem Technologies, 2010, 16 : 301 - 307