Examples of using Bafe in English and their translations into Polish
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Colloquial
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Official
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Medicine
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Ecclesiastic
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Ecclesiastic
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Financial
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Official/political
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Programming
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Computer
One significant barrier was the small size of BaFe particles.
Very quietly, BaFe tape has become a key component of today's information society.
Enhanced write field head that enables the use of much finer BaFe particles.
In 1992, Fujifilm launched its research into BaFe as a next-generation storage tape medium.
Fujifilm broke through this barrier by commercializing an entirely new magnetic material: BaFe.
The uniformly dispersed BaFe particles form a thinner magnetic layer with an extremely smooth surface.
last chance to make BaFe tape a reality.
BaFe particles are extremely small,
Fujifilm will continue to lead the development of large capacity data storage media with its BaFe technology.
BaFe simply had better characteristics, and Fujifilm believed BaFe tape would replace metal particle tape entirely.
dispersion material make it possible to separate each BaFe particle and avoid the agglomeration of fine BaFe particles.
The new BaFe synthesis method decreases the particle volume while maintaining its thermal stability by suppressing the distribution of the particle size
The engineers concluded that conventional tape heads designed for metal tape were unable to read BaFe tape due to the small degree of magnetization exhibited by BaFe particles.
all drive manufacturers currently offer hardware for BaFe tape applications.
In April 2015, Fujifilm in cooperation with IBM demonstrated the potential of achieving a data cartridge with 220 terabytes of uncompressed capacity using an advanced prototype of BaFe magnetic particles.
A future where all magnetic tape is BaFe In 2011, Fujifilm launched the world's first commercial BaFe data storage cartridge.
The most recent FUJIFILM LTO Ultrium 6 Data Cartridge is based on Fujifilm's NANOCUBIC technology and incorporates Barium Ferrite(BaFe) particles, with superior performance
This new technology allows the BaFe particle orientation to be precisely controlled by taking advantage of the magnetocrystalline anisotropy of BaFe to deliver a high quality read signal over a wide frequency.
superior frequency characteristics make BaFe magnetic particles a cutting-edge technology that can help further increase the capacity of magnetic tape.
The enhanced NANOCUBIC technology decreases the BaFe magnetic particle volume, which is essential for high density data recording,