• Title/Summary/Keyword: Magnetic recording

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Improvement of characteristics and dependence on underlayer substrate temperature of CoCrTa/Ti double layer (CoCrTa/Ti 이층막의 하지층기판온도의존성 및 특성개선)

  • 김용진;성하윤;금민종;손인환;김경환
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2000.11a
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    • pp.492-495
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    • 2000
  • In order to develop an ultra-thin CoCr perpendicular magnetic recording layer, we prepared CoCrTa/Ti double layer for perpendicular magnetic recording media by new facing targets sputtering system, Crystallgraphics and magnetic characteristics of CoCrTa on underlayer substrate temperature have been investigated. Crystallgraphic and magnetic characteristic of thin films were evaluated by X-ray diffractometry(XRD), vibrating sample magnetometer(VSM) and atomic force microscopy(AFM). The coercivity and anisotropy field was increased by increasing under layer substrate temperature, c-axis orientation of CoCrTa magnetic recording layer was improved 8$^{\circ}$ to 5.6$^{\circ}$when under layer substrate temperature was 250[$^{\circ}C$]. Also, through annealing effect for CoCrTa/Ti double layer, it was certain that crystallgraphics and magnetic characteristics was improved.

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Microstructure and Magnetic Properties in Fe-Co-B/M Films for Soft Magnetic Underlayer of Perpendicular Magnetic Recording Media (수직자기기록매체용 Fe-Co-B/M 하지연자성층의 미세결정구조 및 자기특성)

  • 공석현;손인환;금민종;최형욱;박용서;김경환
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.17 no.8
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    • pp.888-892
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    • 2004
  • It is necessary to develop soft magnetic layer with high saturation magnetization 4 $\pi{M}_s$ and in-plane magnetic anisotropy field Hk for soft magnetic underlayer of perpendicular magnetic recording media with high signal to noise ratio. Fe-Co-B layer with high 4 $\pi$Ms of about 23 kG deposited on Ni-Fe and Ni-Fe/Si seedlayer exhibited very high in-plane magnetic anisotropy filed Hk of about 280 and 380 Oe, respectively, In-plane XRD studies clarified that the lattice spacing of planes along the easy axis direction was longer than that along the hard axis direction in the Fe-Co-B layers with high Hk. These results indicate that high Hk of Fe-Co-B/Ni-Fe and Fe-Co-B/[Ni-Fe/si] layers were resulted from magnetoelastic anisotropy owing to a residual stress. Moreover, the high Hk in the Fe-Co-B/Ni-Fe layer was maintained until 30$0^{\circ}C$ annealing temperature.

Effective Interdiffusion of Co/Pd multilayers

  • Kim, Jai-Young;Jan E. Evetts
    • Journal of Magnetics
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    • v.2 no.3
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    • pp.86-92
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    • 1997
  • An artificially modulated magnetic Co/Pd multilayer is one of the promising candidates for high density magneto-optic (MO) recording media in the wavelength of a blue laser beam, due to large Kerr rotation angle. However, since the Co/Pd multilayer is a non-equilibrium state in terms of free energy and MO recording is a kind of thermal recording which is conducted around Curie temperature (Tc) of the recording media, the assessment of the thermal stability in the Co/Pd multilayer is crucially important both for basic research and applications. As the parameter of the thermal stability in this research, effective interdiffusion coefficients (Deff) perpendicular to the interface of the Co/Pd multilayers are measured in terms of Ar sputtering pressure and heat treatment temperature. From the results of the research, we find out that the magnetic exchange energy between Co and Pd sublayers strongly affects Deff of the Co/Pd multilayers. This discovery will provide the understanding of the magnetic exchange energy in the effective interdiffusion process of a magnetic multilayer structure and suggest the operating temperature range for MO recording in the Co/Pd multilayer for the basic research and applications, respectively.

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Characteristics of Electronic, Magnetic Transformation for Environment Change in Magnetic Recording Media (자기기록매체에 있어서 환경변화에 따른 자기 및 전자 변환 특성)

  • Yoon, Man-Youn;Shin, Jong-Soon
    • Journal of the Korean Graphic Arts Communication Society
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    • v.22 no.2
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    • pp.13-22
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    • 2004
  • Selected chemical, physical, mechanical, and magnetic properties of magnetite, Co-${\gamma}-Fe_2O_3$, $CrO_2$ recording tapes were studied, under three sets of temperature and humidity conditions, to accelerate the tapes' aging. The results. obtained indicated that changes in temperature, huminity and magnetic properties were dependent. Changes in the magnetic properties can be used to predict the life expentancy of the information stored in the media. Together, all of these properties can be used to assess the overall storage characteristics of magnetitie, Co-${\gamma}-Fe_2O_3$, $CrO_2$ recording tapes.

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Preparation for Mn-Zn Ferrite Soft Magnetic Underlayer Perpendicular Magnetic Recording Disk using Mn-Zn-Fe-O Metal Target (Mn-Zn-Fe-O 금속타깃을 이용한 수직자기기록디스크의 하지연자성층용 Mn-Zn ferrite 박막제작)

  • Kong, Sok-Hyun;Kim, Kyung-Hwan
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.19 no.9
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    • pp.883-887
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    • 2006
  • In order to attain high-rate deposition of Mn-Zn ferrite thin film for soft magnetic underlayer in perpendicular magnetic recording media, a reactive sputtering using powder-metal targets under the mixture gas of Ar and $O_{2}$ was performed. It was succeeded that Mn-Zn ferrite films with (111) crystal orientation were deposited on Pt(111) underlayer without any annealing process. The film revealed 3.4 kG of 4 ${\pi}Ms$, 70 Oe of coercivity. The deposition rate of the new method was 16 times as high as that of the conventional method using ferrite target.

Preparation of Co-Cr-Ta Thin Films using Two step Method For Perpendicular Magnetic recording Layer (Two-Step 방식을 이용한 수직자기 기록용 Co-Cr-Ta 박막의 제작)

  • 박원효;공석현;제우성;최형욱;박용서;김경환
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.17 no.7
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    • pp.793-796
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    • 2004
  • In order to improve c-axis crystalline orientation and high perpendicular coercivity of deposited ${Co}_77{Cr}_20{Ta}_3$perpendicualr recording layer, Two step method was investigated using a Facing Targets Sputtering System(FTS). The ${\Delta\theta}_50$ of ${Co}_77{Cr}_20{Ta}_3$recording layer deposited on seedlayer prepared at Room Temperature was as low as $5^\circ$, while that of the recording layer without seedlayer was about 11$^{\circ}$. The Two-Step method using ${Co}_77{Cr}_20{Ta}_3$seedlayer prepared at Room Temperature was shown to be very effective in controling the c-axis orientation of ${Co}_77{Cr}_20{Ta}_3$ recording layer with thin thickness.

MICROSTRUCTURE AND NOISE CHARACTERISTICS IN Co-Cr BASED ALLOY THIN FILM MAGNETIC RECORDING MEDIA

  • Koshimoto, Y.;Hirono, S.;Ohkubo, T.;Umemura, S.;Maeda, Y.
    • Journal of the Korean Magnetics Society
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    • v.5 no.5
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    • pp.690-694
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    • 1995
  • Reducing media noise is a key to realizing high areal recording density. However, perpendicularly oriented Co-Cr films, stong candidates for high density recording media, have received little attention in terms of recording noise. We studied the noise characteristics of Co-Cr based alloy films by varying the compositionally separated structure. Co-Cr films with fine compositionally separated microstructure were observed to have low noise, which recording density dependence were negative or week. Studies on control of the microstructure and magnetic properties in combination with noise analysis are important to realize high density recording media.

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Preparation of Co-Cr-Ta recording layers by FTS (FIS에 의한 Co-Cr-Ta 기록층의 제작)

  • 공석현;손인환;박창옥;김재환;김경환
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1999.05a
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    • pp.578-581
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    • 1999
  • The Co-Cr-Ta films are one of the most suitable candidates for perpendicular magnetic recording media. The facing targets sputtering(FTS) system has a advantage of preparing films over a wide range of working gas pressure on plasma-free substrates. In this study, we investigated the effect underlayers on the growths layers of Co-Cr-Ta recording layers. The Co-Cr-Ta/Ti(CoCr) double layers were deposited with sputter gas pressure$(P_N, 0.3-1mTorr)$ by using FTS apparatus at temperature of$40^{\circ}C~-300^{\circ}C$, respectively. Crystallographic and magnetic characteristics were evaluated by x-ray diffractometry(XRD) and vibrating sample magnetometer(VSM), respectively.

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Barium Ferrite Media for Extremely High Density Recording Applications

  • Yang-Ki Hong;Hong-Sik Jung
    • Journal of Magnetics
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    • v.3 no.3
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    • pp.96-98
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    • 1998
  • In this paper a structurally coupled and magnetically decoupled Ba-ferrite thin film medium is proposed to evade the superparamagnetic limit and reduce media noise. The proposed medium consists of ferrimagnetic Ba-ferrite nano-grains (< 10 nm) and a non-magnetic grain boundary material. Magnetic grains are crystallographically matched with the grain boundary material. Spherical or cubic shaped Ba-ferrite particle is also proposed for above 100 Kfci particulate recording application.

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Playback Signal Processing in a Digital High Density Magnetic Recording System (디지털 고밀도 자기기록 장치의 재생신호 처리에 관한 연구)

  • 이상록;박시우;박선기;박진우
    • Journal of the Korean Institute of Telematics and Electronics B
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    • v.30B no.12
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    • pp.31-39
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    • 1993
  • In the playback signal processing of a digital magnetic recording system, the major signal processing processes consist of pulse equalization. pulse detection, clock recovery, and data recovery. Equalizer which compensates interference occurrde between pulses recorded in high density on a magnetic media is realized by pulse slimming method, and pulse detection by a integrating detector. Clock recovery from the detector output was accomplished by using PLL. and data recovery to reduce noise effects was carried out by utilizing the three sampling clocks recovered in clock recovery process. In this paper these processes are implemented in hardware and its performance is evaluated by experimenting with a commercial DAT. It was found that the playback signal processor proposed is suitable to the practical high density magnetic recording system.

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