
Ngo-Okthoba odlule, i-LFSZ yayibanjelwe eShenzhen World Exhibition & Convention Center. Kulo mbukiso, kwaboniswa imikhiqizo emisha ye-laser kanye nobuchwepheshe obuyishumi nambili. Omunye wabo kwakuyi-laser chiller yokuqala yasekhaya ye-ultrafast evela ku-S&A Teyu Chiller.
Intuthuko eyengeziwe yokukhiqiza kwezimboni kanye nokukhiqiza okusezingeni eliphezulu inezidingo ezengeziwe zokunemba. Njengendlela yokukhiqiza ebalulekile, indlela yokukhiqiza nge-laser manje ishintsha kusukela ezingeni lokuqala le-nanosecond iye ezingeni le-femtosecond kanye nele-picosecond.
Kusukela ngo-2017, i-laser ye-picosecond ye-ultrafast yasekhaya kanye ne-laser ye-femtosecond ibilokhu ithuthuka ngokushesha okukhulu ngokuqina okungcono kanye namandla aphezulu. Ukufakwa kwe-laser ye-ultrafast kuqeda ukubusa kwabahlinzeki bangaphandle futhi okubaluleke kakhulu, kunciphisa izindleko zokuthenga. Esikhathini esidlule, i-laser ye-picosecond engu-20W ibiza ngaphezu kwezigidi ezingu-1.1 zamaRandi. Izindleko eziphakeme kangaka zazingenye yezizathu ezenza ukuthi i-laser micro-machining ingakhuthazwa ngokugcwele ngaleso sikhathi. Kodwa manje, i-laser ye-ultrafast kanye nezingxenye zayo eziyinhloko zinentengo ephansi, okuyizindaba ezinhle zokusetshenziswa okukhulu kwe-laser micro-machining. Ngokuphathelene nedivayisi yokupholisa ehlonyisiwe, i-laser yokuqala ye-ultrafast yasekhaya nayo yazalwa ngonyaka odlule.
Namuhla, amandla e-laser eshesha kakhulu athuthuke kakhulu, kusukela ku-5W kuya ku-20W kuya ku-30W kanye no-50W. Njengoba sazi, i-laser eshesha kakhulu ine-processing engathintani futhi ine-figure ephezulu kakhulu, ngakho-ke yenza umsebenzi omuhle ekucubungulweni kwezingxenye ze-elekthronikhi zabathengi, ukusika ifilimu encane, ukucubungula izinto ezibuthakathaka kanye nomkhakha wamakhemikhali kanye nowezokwelapha. Ukunemba okuphezulu kanye nokuqina kwe-laser eshesha kakhulu kudinga ukusekelwa uhlelo lokulawula izinga lokushisa olunembile. Kodwa njengoba amandla e-laser ekhuphuka, ukuqina kwezinga lokushisa kuba nzima ukuqinisekisa, okwenza umphumela wokucubungula ungagculisi.
Ukuphumelela okuqhubekayo kwe-laser esheshayo kuphumela ezingeni eliphezulu lesistimu yokupholisa. Esikhathini esidlule, i-water chiller enembile kakhulu yayingeniswa kuphela emazweni angaphandle.
Kodwa manje, i-CWUP-20 ultrafast laser chiller ekhiqizwe yi-S&A Teyu inikeza abasebenzisi basekhaya enye indlela. Le nkampani yokufudumeza amanzi ejikelezayo ehlanganisiwe inokuqina kokushisa okungu-±0.1℃, okufinyelela ezingeni labaphakeli baphesheya kwezilwandle. Ngesikhathi esifanayo, le nkampani yokufudumeza iphinde igcwalise igebe lale mboni yezingxenye. I-CWUP-20 iphawuleka ngomklamo ohlangene futhi ifanele izinhlelo zokusebenza eziningi.
Ukusetshenziswa kwe-laser ye-ultrafast kuya ngokuya kuba banzi. Kusukela ku-silicon wafer, i-PCB, i-FPCB, i-ceramics kuya ku-OLED, ibhethri lelanga kanye nokucutshungulwa kwe-HDI, i-laser ye-ultrafast ingaba ithuluzi elinamandla futhi ukusetshenziswa kwayo okukhulu kusanda kuqala.
Ngokusho kwedatha, amandla okukhiqiza ifoni ephathekayo yasekhaya angaphezulu kuka-90% wamandla omhlaba wonke. Abantu abaningi bangase bangazi ukuthi, ukusetshenziswa kwasekuqaleni kwe-laser ye-ultrafast kwakumayelana kakhulu nezingxenye zefoni ephathekayo - ukubhoboza imbobo engaboni yekhamera yocingo, ukusika amaslayidi ekhamera kanye nokusika isikrini esigcwele. Konke lokhu kwabelana ngezinto ezifanayo - ingilazi. Ngakho-ke, i-laser ye-ultrafast yokusika ingilazi isivuthiwe kakhulu kulezi zinsuku.
Uma kuqhathaniswa nemimese yendabuko, i-laser esheshayo inokusebenza kahle okuphezulu kanye nobuchwepheshe obungcono uma kukhulunywa ngokusika ingilazi. Namuhla, isidingo sokusika ingilazi ye-laser kuma-electronics asetshenziswayo siyaqhubeka nokukhula. Eminyakeni emi-2 edlule, inani lokuthengisa lamawashi ahlakaniphile liye laqhubeka nokukhula, okuletha amathuba amaningi enkambisweni yokwenza i-laser micro-machining.
Kulesi simo esihle, i-S&A Teyu izoqhubeka nokufaka isandla ekuthuthukisweni kwasekhaya kwebhizinisi le-laser micromachining elisezingeni eliphezulu.









































































































