I-Laser ingenye into eqanjiwe enkulu yesintu ngemuva kwamandla enuzi, ikhompuyutha kanye ne-semiconductor ekhulwini lama-20. Umgomo we-laser uwuhlobo olukhethekile lokukhanya okukhiqizwa ukuvuswa kwendaba, ukushintsha ukwakheka kwe-resonant cavity ye-laser kungaveza amaza ahlukene e-laser, i-laser inombala omsulwa kakhulu, ukukhanya okuphezulu kakhulu, isiqondiso esihle, izici ezinhle zokuhambisana. , ngakho isetshenziswa emikhakheni ehlukahlukene njengobuchwepheshe besayensi, izimboni, kanye nezokwelapha.
Ukukhanyisa kwekhamera
Izibani zekhamera ezisetshenziswa kakhulu emakethe namuhla ziyi-LED, izibani ze-infrared ezihlungiwe kanye nezinye izisetshenziswa zokukhanyisa ezisizayo, njengokuqapha amaseli, ukuqapha ekhaya, njll. Leli banga le-infrared light irradiation liseduze, amandla aphezulu, ukusebenza kahle okuphansi, isikhathi esifushane sokuphila futhi eminye imikhawulo, kodwa futhi ayihambisani nokuqapha ibanga elide.
I-laser inezinzuzo zokuqondisa okuhle, ikhwalithi ephezulu ye-beam, ukusebenza kahle okuphezulu kokuguqulwa kwe-electro-optical, impilo ende, njll., futhi inezinzuzo zemvelo ezimweni zokufaka isicelo sokukhanyisa ibanga elide.
Ama-optics wokuvula isihlobo esikhulu, ikhamera yokukhanya ephansi edidiyelwe esebenzayo yokuqapha kwe-infrared, ekuqaphelweni kwezokuphepha, ukuphepha komphakathi kanye nezinye izinkambu ziya ngokuya zisetshenziswa. Ngokuvamile sebenzisa i-laser eseduze ne-infrared ukuze uzuze ububanzi obuguquguqukayo bekhamera ye-infrared, izidingo ezicacile zekhwalithi yesithombe.
I-Near-infrared light source semiconductor laser iyinsimbi enhle ye-monochromatic, egxilile, usayizi omncane, isisindo esilula, impilo ende, ukusebenza kahle kokuguqulwa kwesithombe somthombo wokukhanya okuphezulu. Ngokuncishiswa kwezindleko zokukhiqiza i-laser, ukuvuthwa kwenqubo yobuchwepheshe be-fiber coupling, ama-laser aseduze ne-infrared semiconductor njengomthombo wokukhanyisa osebenzayo asetshenziswe kabanzi.
Ukwethulwa koMkhiqizo
I-Lumispot Tech Yethulwe Idivayisi Yokukhanya Okusizwa Ngelaser engu-5,000m
Izinto zokukhanyisa ezisizwa nge-laser zisetshenziswa njengomthombo wokukhanya ongeziwe ukuze ukhanyise ngenkuthalo okuqondiwe futhi usize amakhamera okukhanya abonakalayo ukuze aqaphe ngokucacile okuqondiwe ekukhanyeni okuphansi nezimo zasebusuku.
Imishini yokukhanyisa ye-laser ye-Lumispot Tech isebenzisa i-laser chip ye-semiconductor eqinile ene-wavelength emaphakathi engu-808nm, okuwumthombo wokukhanya we-laser okahle one-monochromaticity enhle, usayizi omncane, isisindo esilula, ukufana okuhle kokuphuma kokukhanya kanye nokuvumelana nezimo kwemvelo okuqinile. evumelana nesakhiwo sesistimu.
Ingxenye yemojuli ye-laser isebenzisa isikimu se-laser esihlanganisiwe seshubhu elilodwa, esihlinzeka ngomthombo wokukhanya wengxenye yelensi ngobuchwepheshe obuzimele be-fiber homogenization. Isifunda sokushayela sisebenzisa izakhi ze-elekthronikhi ezihlangabezana nokucaciswa okujwayelekile kwezempi, futhi silawula i-laser ne-zoom lens ngohlelo lokushayela olukhulile, olukwazi ukuzivumelanisa nezimo kahle kwemvelo nokusebenza okuzinzile. I-zoom lens isebenzisa isikimu se-optical esiklanywe ngokuzimela, esingaqedela ngempumelelo umsebenzi wokukhanyisa ukusondeza.
Ukucaciswa kobuchwepheshe:
Ingxenye No. LS-808-XXX-ADJ | |||
Ipharamitha | Iyunithi | Inani | |
I-Optic | Amandla Okukhiphayo | W | 3-50 |
I-Central Wavelength | nm | 808 (Iyenzeka ngokwezifiso) | |
Ibanga lokuhluka kwamaza amaza @ izinga lokushisa elivamile | nm | ±5 | |
I-Engeli Yokukhanyisa | ° | 0.3-30 (Kuyenzeka ngokwezifiso) | |
Ibanga lokukhanyisa | m | 300-5000 | |
Ugesi | I-Voltage esebenzayo | V | DC24 |
Ukusetshenziswa kwamandla | W | <90 | |
Imodi yokusebenza |
| Okuqhubekayo / Pulse / Standby | |
Isixhumanisi Esibonakalayo |
| RS485/RS232 | |
Okunye | Izinga Lokushisa Lokusebenza | ℃ | - 40-50 |
Ukuvikelwa Kwezinga Lokushisa |
| I-1S eqhubekayo yezinga lokushisa elingaphezulu, amandla e-laser avaliwe, izinga lokushisa libuyele ku-65 degrees noma ngaphansi livulwe ngokuzenzakalelayo | |
Ubukhulu | mm | Yenza ngokwezifiso |
Isikhathi sokuthumela: Jun-08-2023