Model | Landasan | Ketik | Diameter (mm) | Kekandelan (MM) | Lapisan | Rega Unit | ||
---|---|---|---|---|---|---|---|---|
Liyane +Kurang- | CH9015A00000 | Silikon | Lensa aspheric inframerah | 12∽450mm | Panjaluk Quote | | ||
Liyane +Kurang- | Ch9015b00000 | Silikon | Lensa aspheric inframerah | 12∽450mm | Panjaluk Quote | | ||
Liyane +Kurang- | Ch9016A00000 | Zinc Selenide | Lensa aspheric inframerah | 12∽450mm | Panjaluk Quote | | ||
Liyane +Kurang- | Ch9016b00000 | Zinc Selenide | Lensa aspheric inframerah | 12∽450mm | Panjaluk Quote | | ||
Liyane +Kurang- | Ch9017A00000 | Zinc Sulfide | Lensa aspheric inframerah | 12∽450mm | Panjaluk Quote | | ||
Liyane +Kurang- | Ch9017b00000 | Zinc Sulfide | Lensa aspheric inframerah | 12∽450mm | Panjaluk Quote | | ||
Liyane +Kurang- | Ch9018A00000 | Chalcogeniides | Lensa aspheric inframerah | 12∽450mm | Panjaluk Quote | | ||
Liyane +Kurang- | Ch9018A00000 | Chalcogeniides | Lensa aspheric inframerah | 12∽450mm | Panjaluk Quote | | ||
Liyane +Kurang- | Ch9010A00000 | Silikon | Lensa spherik inframerah | 12∽450mm | Panjaluk Quote | | ||
Liyane +Kurang- | Ch9010b00000 | Silikon | Lensa spherik inframerah | 12∽450mm | Panjaluk Quote | | ||
Liyane +Kurang- | CH9011A00000 | Zinc Selenide | Lensa spherik inframerah | 12∽450mm | Panjaluk Quote | | ||
Liyane +Kurang- | Ch9011b00000 | Zinc Selenide | Lensa spherik inframerah | 12∽450mm | Panjaluk Quote | | ||
Liyane +Kurang- | CH9012A00000 | Zinc Sulfide | Lensa spherik inframerah | 12∽450mm | Panjaluk Quote | | ||
Liyane +Kurang- | CH9012B00000 | Zinc Sulfide | Lensa spherik inframerah | 12∽450mm | Panjaluk Quote | | ||
Liyane +Kurang- | Ch9013A00000 | Chalcogeniides | Lensa spherik inframerah | 12∽450mm | Panjaluk Quote | | ||
Liyane +Kurang- | CH9013B00000 | Chalcogeniides | Lensa spherik inframerah | 12∽450mm | Panjaluk Quote | |
Optik inframerah minangka cabang optik sing ngrembug babagan lampu lan manipulasi cahya inframerah (IR), yaiku radiasi elektromagnetik kanthi gelombang sing luwih dawa tinimbang cahya sing katon luwih dawa tinimbang sing katon entheng. Spektrum inframerah inframerah nyebar saka udakara 700 nanometer nganti 1 milimeter, lan dipérang dadi pirang-pirang subritik: ), lan adoh banget (fir).
Optik inframerah duwe pirang-pirang aplikasi ing macem-macem lapangan, kalebu:
Optik inframerah kalebu desain, fabrikasi, lan nggunakake komponen lan sistem optik sing bisa ngapusi cahya inframerah. Komponen kasebut kalebu lensa, mirrors, filter, prisma, beamspliter, lan detektor, kabeh dioptimalake kanggo gelombang gelombang inframerah tartamtu. Bahan sing cocog kanggo optik inframerah asring beda karo sing digunakake ing optik sing katon, amarga ora kabeh bahan wis transparan kanggo cahya inframerah. Bahan umum kalebu gilium, silikon, seng selenida, lan macem-macem kacamata sing ngirim.
Ringkesan, Optik Infrared minangka kolom multidisipliner kanthi macem-macem aplikasi praktis, supaya bisa ndeleng kemampuan kanggo ndeleng ing struktur molekul sing kompleks lan maju ilmiah.