Flexibles magnetisches Lese-/Schreibsystem: Einfluss von Wärme auf das Datenbit

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

Autoren

Forschungs-netzwerk anzeigen

Details

Titel in ÜbersetzungFlexible magnetic read/write system: Effect of heat on data bit
OriginalspracheDeutsch
Titel des SammelwerksMikroSystemTechnik Kongress 2017 "MEMS, Mikroelektronik, Systeme", Proceedings
Herausgeber (Verlag)VDE Verlag GmbH
Seiten586-589
Seitenumfang4
ISBN (elektronisch)9783800744916
PublikationsstatusVeröffentlicht - 2017
VeranstaltungMikroSystemTechnik Kongress 2017: MEMS, Mikroelektronik, Systeme - München, Deutschland
Dauer: 23 Okt. 201725 Okt. 2017

Publikationsreihe

NameMikroSystemTechnik Kongress 2017 "MEMS, Mikroelektronik, Systeme", Proceedings

Abstract

For the realization of Industry 4.0, information security and merging of components, in particular, with their information, e.g. a component identification and a maintenance record, are of great importance. Therefore, research for local data storage in the component is an important part of the information infrastructure of I4.0. One solution developed at the IMPT is the local magnetic data storage. It is based on a novel flexible read/write head. In order to increase the stability of the stored data, a storage medium with high coercivity is indispensable. However, a storage medium with high coercivity means that a high magnetic write field, which is normally limited by the design of the write head, is required. If the storage medium is locally heated, the coercivity in the heated region decreases, and as a result it is possible to write a data bit with low magnetic field strength. This method is called heat-assisted magnetic recording (HAMR). In this work, the effect of local heating will be studied regarding the form of the magnetic transition of the data bit.

ASJC Scopus Sachgebiete

Zitieren

Flexibles magnetisches Lese-/Schreibsystem: Einfluss von Wärme auf das Datenbit. / Taptimthong, P.; Wurz, M. C.
MikroSystemTechnik Kongress 2017 "MEMS, Mikroelektronik, Systeme", Proceedings. VDE Verlag GmbH, 2017. S. 586-589 (MikroSystemTechnik Kongress 2017 "MEMS, Mikroelektronik, Systeme", Proceedings).

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

Taptimthong, P & Wurz, MC 2017, Flexibles magnetisches Lese-/Schreibsystem: Einfluss von Wärme auf das Datenbit. in MikroSystemTechnik Kongress 2017 "MEMS, Mikroelektronik, Systeme", Proceedings. MikroSystemTechnik Kongress 2017 "MEMS, Mikroelektronik, Systeme", Proceedings, VDE Verlag GmbH, S. 586-589, MikroSystemTechnik Kongress 2017: MEMS, Mikroelektronik, Systeme, München, Bayern, Deutschland, 23 Okt. 2017.
Taptimthong, P., & Wurz, M. C. (2017). Flexibles magnetisches Lese-/Schreibsystem: Einfluss von Wärme auf das Datenbit. In MikroSystemTechnik Kongress 2017 "MEMS, Mikroelektronik, Systeme", Proceedings (S. 586-589). (MikroSystemTechnik Kongress 2017 "MEMS, Mikroelektronik, Systeme", Proceedings). VDE Verlag GmbH.
Taptimthong P, Wurz MC. Flexibles magnetisches Lese-/Schreibsystem: Einfluss von Wärme auf das Datenbit. in MikroSystemTechnik Kongress 2017 "MEMS, Mikroelektronik, Systeme", Proceedings. VDE Verlag GmbH. 2017. S. 586-589. (MikroSystemTechnik Kongress 2017 "MEMS, Mikroelektronik, Systeme", Proceedings).
Taptimthong, P. ; Wurz, M. C. / Flexibles magnetisches Lese-/Schreibsystem : Einfluss von Wärme auf das Datenbit. MikroSystemTechnik Kongress 2017 "MEMS, Mikroelektronik, Systeme", Proceedings. VDE Verlag GmbH, 2017. S. 586-589 (MikroSystemTechnik Kongress 2017 "MEMS, Mikroelektronik, Systeme", Proceedings).
Download
@inproceedings{a3a6ea0fb90e4a5ca37a71841e0d6b76,
title = "Flexibles magnetisches Lese-/Schreibsystem: Einfluss von W{\"a}rme auf das Datenbit",
abstract = "For the realization of Industry 4.0, information security and merging of components, in particular, with their information, e.g. a component identification and a maintenance record, are of great importance. Therefore, research for local data storage in the component is an important part of the information infrastructure of I4.0. One solution developed at the IMPT is the local magnetic data storage. It is based on a novel flexible read/write head. In order to increase the stability of the stored data, a storage medium with high coercivity is indispensable. However, a storage medium with high coercivity means that a high magnetic write field, which is normally limited by the design of the write head, is required. If the storage medium is locally heated, the coercivity in the heated region decreases, and as a result it is possible to write a data bit with low magnetic field strength. This method is called heat-assisted magnetic recording (HAMR). In this work, the effect of local heating will be studied regarding the form of the magnetic transition of the data bit.",
author = "P. Taptimthong and Wurz, {M. C.}",
year = "2017",
language = "Deutsch",
series = "MikroSystemTechnik Kongress 2017 {"}MEMS, Mikroelektronik, Systeme{"}, Proceedings",
publisher = "VDE Verlag GmbH",
pages = "586--589",
booktitle = "MikroSystemTechnik Kongress 2017 {"}MEMS, Mikroelektronik, Systeme{"}, Proceedings",
address = "Deutschland",
note = "MikroSystemTechnik Kongress 2017: MEMS, Mikroelektronik, Systeme ; Conference date: 23-10-2017 Through 25-10-2017",

}

Download

TY - GEN

T1 - Flexibles magnetisches Lese-/Schreibsystem

T2 - MikroSystemTechnik Kongress 2017: MEMS, Mikroelektronik, Systeme

AU - Taptimthong, P.

AU - Wurz, M. C.

PY - 2017

Y1 - 2017

N2 - For the realization of Industry 4.0, information security and merging of components, in particular, with their information, e.g. a component identification and a maintenance record, are of great importance. Therefore, research for local data storage in the component is an important part of the information infrastructure of I4.0. One solution developed at the IMPT is the local magnetic data storage. It is based on a novel flexible read/write head. In order to increase the stability of the stored data, a storage medium with high coercivity is indispensable. However, a storage medium with high coercivity means that a high magnetic write field, which is normally limited by the design of the write head, is required. If the storage medium is locally heated, the coercivity in the heated region decreases, and as a result it is possible to write a data bit with low magnetic field strength. This method is called heat-assisted magnetic recording (HAMR). In this work, the effect of local heating will be studied regarding the form of the magnetic transition of the data bit.

AB - For the realization of Industry 4.0, information security and merging of components, in particular, with their information, e.g. a component identification and a maintenance record, are of great importance. Therefore, research for local data storage in the component is an important part of the information infrastructure of I4.0. One solution developed at the IMPT is the local magnetic data storage. It is based on a novel flexible read/write head. In order to increase the stability of the stored data, a storage medium with high coercivity is indispensable. However, a storage medium with high coercivity means that a high magnetic write field, which is normally limited by the design of the write head, is required. If the storage medium is locally heated, the coercivity in the heated region decreases, and as a result it is possible to write a data bit with low magnetic field strength. This method is called heat-assisted magnetic recording (HAMR). In this work, the effect of local heating will be studied regarding the form of the magnetic transition of the data bit.

UR - http://www.scopus.com/inward/record.url?scp=85096810983&partnerID=8YFLogxK

M3 - Aufsatz in Konferenzband

AN - SCOPUS:85096810983

T3 - MikroSystemTechnik Kongress 2017 "MEMS, Mikroelektronik, Systeme", Proceedings

SP - 586

EP - 589

BT - MikroSystemTechnik Kongress 2017 "MEMS, Mikroelektronik, Systeme", Proceedings

PB - VDE Verlag GmbH

Y2 - 23 October 2017 through 25 October 2017

ER -

Von denselben Autoren