Fiber optic cables
Huawei FTTR Optical cable SC/APC 40m, hot melt type
The indoor pre-connected transparent bow type cable (pre-adhesive cable) with hot melt adhesive is suitable for indoor cabling scenarios. It can be rapidly deployed on applicable surfaces. After routing the optical cable, use adhesive
Huawei FTTR Optical cable SC/APC 50m, hot melt type
The indoor pre-connected transparent bow type cable (pre-adhesive cable) with hot melt adhesive is suitable for indoor cabling scenarios. It can be rapidly deployed on applicable surfaces. After routing the optical cable, use adhesive
Huawei FTTR Optical cable SC/APC 25m, hot melt type
The indoor pre-connected transparent bow type cable (pre-adhesive cable) with hot melt adhesive is suitable for indoor cabling scenarios. It can be rapidly deployed on applicable surfaces. After routing the optical cable, use adhesive
Huawei Indoor FTTH / FTTR transparent optical cable SC/APC, 10m, self-bonding
Self-bonding transparent fibers are applicable to indoor FTTH or FTTR networking scenarios. They are delivered with adhesive and can be quickly attached to suitable wall surfaces after the release film is removed After routing the optical
Huawei Indoor FTTH / FTTR transparent optical cable SC/APC, 20m, self-bonding
Self-bonding transparent fibers are applicable to indoor FTTH or FTTR networking scenarios. They are delivered with adhesive and can be quickly attached to suitable wall surfaces after the release film is removed After routing the optical
Huawei Indoor FTTH / FTTR transparent optical cable SC/APC, 30m, self-bonding
Self-bonding transparent fibers are applicable to indoor FTTH or FTTR networking scenarios. They are delivered with adhesive and can be quickly attached to suitable wall surfaces after the release film is removed After routing the optical
Huawei Indoor FTTH / FTTR transparent optical cable SC/APC, 100m, self-bonding
Self-bonding transparent fibers are applicable to indoor FTTH or FTTR networking scenarios. They are delivered with adhesive and can be quickly attached to suitable wall surfaces after the release film is removed After routing the optical
Huawei FTTR transparent self-adhesive optical patch cord, ,XC/UPC,SC/UPC,SM, 0,5m
The indoor pre-connected transparent bow type cable (pre-adhesive cable) with hot melt adhesive is suitable for indoor cabling scenarios. It can be routed in exposed manner or through a pipe. It can be rapidly deployed on applicable surfa
Huawei FTTR transparent self-adhesive optical patch cord, ,XC/UPC,SC/UPC,SM, 10m
The indoor pre-connected transparent bow type cable (pre-adhesive cable) with hot melt adhesive is suitable for indoor cabling scenarios. It can be routed in exposed manner or through a pipe. It can be rapidly deployed on applicable surfa
Huawei FTTR transparent self-adhesive optical patch cord, ,XC/UPC,SC/UPC,SM, 15m
The indoor pre-connected transparent bow type cable (pre-adhesive cable) with hot melt adhesive is suitable for indoor cabling scenarios. It can be routed in exposed manner or through a pipe. It can be rapidly deployed on applicable surfa
Huawei FTTR Active Distribution Unit (ADU) , PoF
The ATB3120-S-8 ADU (Active Distribution Unit) is an active optical device used to connect the main FTTR and the sub FTTR. It provides optical signals and power input for the sub FTTR. The products can be installed in an indoor information box or on a
Masterlan DROPX universal fiber optic drop cable - 24F 9/125, SM, LSZH, black, G657A2, 1000m
Masterlan DROPX is fiber optic drop cable suitable for both indoor and outdoor use. Used fibers are high quality Corning (G.657.A2) with perfect flexibility. Aramid yarn serves as strength and protective member. The Cable is completed with LSZH and UV
Fiber optic cables
Optický kabel tvoří optická vlákna, která jsou přenosovým médiem. Úkolem optického vlákna je přenést paprsek od zdroje k cíli, s co nejnižší ztrátou. Optická vlákna jsou velmi jemná a choulostivá na mechanické namáhání a ohyby, takže jsou sdružována do optických kabelů.
Optický kabel využívá světlovodný kabel, který je umístěn uvnitř. Díky fyzikálním vlastnostem přenosu dat pomocí modulované světelné vlny (místo elektrického proudu) není přenos rušen žádnými vnějšími vlivy. V současnosti se takové řešení používá nejčastěji pro přenos digitálního zvukového signálu a obrazu a také jiných dat.

