The correlation of deposition parameters with output functions when using a novel rotating cryostat (RC) system to produce magnetic materials has been investigated here. In order to do this, an orthogonal design technique was applied for magnetic material production using a resistively heated furnace. The results of orthogonal analysis indicate that the thickness uniformity across the film was not greatly improved, due to the large standard deviation, but an optimum deposition rate was obtained by appropriate choice of control parameters. Furthermore, the orthogonal design process was applied to systematically optimise the production of low coercivity in iron films. The results indicate that the process can be easily optimised
For different applications like thin film sensors or microactuators soft and hard magnetic films are...
Les travaux présentés dans ce manuscrit traitent de l’optimisation du procédé de dépôt de couches mi...
Thin film permalloy (with compositions around Ni80Fe20 continues to be an important ferromagnetic ma...
The correlation of deposition parameters with output functions when using a novel rotating cryostat ...
This paper presents the optimisation of a Novel Rotating Cryostat (RC) system in producing magnetic ...
Production parameters are important for the production of desirable type of magnetic materials. The...
Production parameters are important for the production of desirable type of magnetic materials. The ...
WOS:000335200600021A newly designed Vacuum Coating System (VCS) system has been used for the first t...
Abstract. Facing targets sputtering system, constructed specially for ferromagnetic cathode sputteri...
Fe thin films have been deposited by thermal evaporation onto glass substrate. The thickness ranges ...
The present thesis deals with the low frequency or quasistatic properties of thin vacuum evaporated ...
The aim of this study is to deposit and then characterize a large quantity of magnetic materials and...
A Novel Rotating Cryostat (RC) vacuum system originally designed to fabricate organic layers has bee...
The aim of this study is to deposit and then characterize a large quantity of magnetic materials and...
The novel VCP system is a mobile physical deposition method to deposit metallic/magnetic films usin...
For different applications like thin film sensors or microactuators soft and hard magnetic films are...
Les travaux présentés dans ce manuscrit traitent de l’optimisation du procédé de dépôt de couches mi...
Thin film permalloy (with compositions around Ni80Fe20 continues to be an important ferromagnetic ma...
The correlation of deposition parameters with output functions when using a novel rotating cryostat ...
This paper presents the optimisation of a Novel Rotating Cryostat (RC) system in producing magnetic ...
Production parameters are important for the production of desirable type of magnetic materials. The...
Production parameters are important for the production of desirable type of magnetic materials. The ...
WOS:000335200600021A newly designed Vacuum Coating System (VCS) system has been used for the first t...
Abstract. Facing targets sputtering system, constructed specially for ferromagnetic cathode sputteri...
Fe thin films have been deposited by thermal evaporation onto glass substrate. The thickness ranges ...
The present thesis deals with the low frequency or quasistatic properties of thin vacuum evaporated ...
The aim of this study is to deposit and then characterize a large quantity of magnetic materials and...
A Novel Rotating Cryostat (RC) vacuum system originally designed to fabricate organic layers has bee...
The aim of this study is to deposit and then characterize a large quantity of magnetic materials and...
The novel VCP system is a mobile physical deposition method to deposit metallic/magnetic films usin...
For different applications like thin film sensors or microactuators soft and hard magnetic films are...
Les travaux présentés dans ce manuscrit traitent de l’optimisation du procédé de dépôt de couches mi...
Thin film permalloy (with compositions around Ni80Fe20 continues to be an important ferromagnetic ma...