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kejuruteraan akustik

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Inglese

kejuruteraan

Malese

the performance of semiconductor devices depends strongly upon the materials microstructure. therefore the microstructural control to reduce the density of lattice defects is intrinsically important for fabrication of high performance devices. in this research, the microstructures have been analysed in detail and the mechanisms of microstructural changes in aln thin films have been clarified for the establishment of the growth method of aln on sapphire substrate. aln templates for overgrowth of aln thin layer were made by growing an aln buffer layer grown on a (0001) sapphire substrate by the metal organic vapor phase epitaxy (movpe) growth process in a rather conventional way, but annealing treatments were added before and after the deposition of aln buffer layer. the surface roughness of aln was observed with an atomic force microscope (afm) and xrc .the cross section of aln template was observed by using conventional transmission electron microscopy (ctem) at 200kv. high-angle annular dark-field (haadf) scanning-tem images were also observed with a scanning transmission electron microscope (stem) at 300 kv. thin foil specimens for tem observation were made using a focused ion beam (fib) mill with accelerating voltage of 15kv~3 kv. prior to the deposition of a mt-aln layer, the sapphire substrate was annealed at a high temperature tan under the atmosphere of h2. for tan<1250°c, the crystallinity improved but twisting domains appear above the temperature. threading disloactions type c, type (a + c) and twisting domains with 200 - 500 nm in diameter along [2-1-10], with 108 cm-2 dislocation density was observed. however when the temperature was increased to 1350°c the threading dislocations were reduced and enhanced the adhesion between sapphire and aln buffer layer. on the other hand, post deposition annealing at a high temperature between 1500oc to 1700oc for 2 hours under the atmosphere of n2+co was carried out. cross sectional tem has revealed that after annealing at 1500oc, cone-shaped domains and threading dislocations remained. the morphology and the diffraction condition for the image contrast strongly suggest that the domains were inversion domains. threading dislocations type-a and type-a+c dislocations were visible for g =01-10 under the two beam condition. however, after annealing at 1550oc, the inversion domains coalesced with each other to leave a single inversion domain boundary running in a zigzag laterally at the center of aln buffer layer. the upper layer has al- polarity where else the lower layer has n-polarity according to the haadf and cbed images. the inversion domain boundary become smooth and flatter with the rising annealing temperature. it can be considered that domain boundaries can be eliminated by the lateral growth and mutual coalescence of domains even if boundaries penetrate vertically up to the top surface. the surface of mt-aln buffer was finely rugged before the annealing, but became coarser and smoother with annealing. the changes in the surface morphology indicates the occurrence of grain coalescence. the density of tds was reduced to 5×108 cm-2 after annealing at 1650oc roughly. in conclusion from this present research, it has been confirmed that pre deposition and post deposition annealing has been an effective treatment to control the microstructure and reduce dislocation density for advancement in the high quality fabrication of semiconductor devices.

Ultimo aggiornamento 2016-07-24
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Inglese

kamus kejuruteraan

Malese

deep foundation

Ultimo aggiornamento 2020-09-17
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Inglese

saya syazana binti ahmad nizar, berumur 29 tahun dan memegang ijazah sarjana muda dengan kepujian dalam jurusan kejuruteraan awam

Malese

sebelum itu saya ingin mengucapkan terima kasih diatas kesudian tuan puan memanggil saya dan memberi peluang kepada saya untuk diinterview pada hari ini

Ultimo aggiornamento 2022-01-09
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Inglese

kejuruteraan mekanikal mempunyai salah satu subjek bengkel yang berkaitan foundri. tujuan utama belajar foundri ialah melatih pelajar untuk menghasilkan kasting logam. pelajar akan mempelajari proses-proses utama foundri iaitu membuat corak, menyediakan acuan kasting, melebur dan menuang logam ke dalam acuan, mengeluarkan kasting dan membuat kerja penyudahan kasting. dalam bengkel foundri perlulah mempunyai satu relau yang mana relau tersebut digunakan sebagai bahan mencairkan besi atau timah. timah tersebut digunakan untuk membuat acuan dalam pelbagai bentuk.

Malese

Ultimo aggiornamento 2021-04-22
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