GJFJH(GJYFJH/GJYFJCH) non-metallic strength member, LSZH sheath, non-self-supporting round optical drop cable (or self-supporting round optical drop cable), the optical cable is directly covered with high bonding strength outside the single-mode or multi-mode fiber The tight sleeve material is made of tight sleeve fiber, which uses high-strength aramid as the strengthening element, and is made by extruding a layer of LSZH on the outside. The structure of the self-supporting circular optical drop cable is to increase the metal steel strand suspension wire.
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Faamatalaga
GJFJH(GJYFJH/GJYFJCH) non-metallic strength member, LSZH sheath, non-self-supporting round optical drop cable (or self-supporting round optical drop cable), the optical cable is directly covered with high bonding strength outside the single-mode or multi-mode fiber The tight sleeve material is made of tight sleeve fiber, which uses high-strength aramid as the strengthening element, and is made by extruding a layer of LSZH on the outside. The structure of the self-supporting circular optical drop cable is to increase the metal steel strand suspension wire.
Faʻamatalaga faʻatekinolosi
Leai o uaea | 12 | |||
Fiber Faataʻitaʻiga | OM3 | |||
Mani laina | Meafaitino | LSZH | ||
Mafiafia (± 0.03) mm | 0.32 | |||
Lapoa (± 0.06) mm | 0.9 | |||
Malosi Sui | Meafaitino | Aramid Yarn | ||
Ose ofuvae | Meafaitino | LSZH | ||
Mafiafia (± 0.2) mm | 1.0 | |||
Valivali | Vaioleti | |||
Lapoa Cable (± 0.2) mm | 6.2 | |||
Cable Wetght(±5)kg/km | 40 | |||
Attenuation | 1310nm | dB / km | 0.4 | |
1550nm | 0.3 | |||
Faatagaina Tensile Malosiaga | Taimi puʻupuʻu | N | 660 | |
Taimi umi | 200 | |||
Faatagaina Crush tetee | Taimi puʻupuʻu | N / 100mm | 1000 | |
Taimi umi | 200 | |||
Min. punou faataamilomilo | Aunoa ma le Feteʻena | 10.0 × Uaea-φ | ||
I lalo ole Maximum Tension | 20.0 × Uaea-φ | |||
Vevela tele (℃) |
Faapipiiina | -20 ~ + 60 | ||
Felauaiga & Teuina | -40 ~ + 70 | |||
Taotoga | -40 ~ + 70 |
Mau lelei laina Vali
LEAI. | 1 | 2 | 3 | 4 | 5 | 6 |
Valivali | Lanu moaga | lanu moli | lanu meamata | lanu enaena | lanu efuefu | lanu paʻepaʻe |
7 | 8 | 9 | 10 | 11 | 12 | |
lanu mumu | lanu uliuli | Lanu samasama | Vaioleti | Lanu piniki | Aqua | |
Suʻega autu masini & siosiomaga faatinoga
Uiga | Uiga | Uiga | Uiga |
Opitika meatotino | |||
Attenuation | 1310nm 1550nm 1625nm |
FA'0.35 ' ≤0.2 1 0.23 |
dB / km dB / km dB / km |
Attenuation taua | 1310 ~ 16250nm | ≤0.0 35 | dB / km |
Eseesega le aoga ile va | 1285 ~ 1310nm 1310nm 1525~1575nm 1550nm 1480~1580nm 1550nm |
≤ 0.03 ≤ 0.02 ≤ 0,04 |
dB / km dB / km dB / km |
Makro punoua gofie | @ 1550nm @1625nm @1550nm @1625nm |
≤ 0.25 ≤ 1.0 ≤ 0.75 ≤ 1.5 |
Radius 15mm, 10 liʻo Radius 15mm, 10 circle Radius 10mm, 1 circle Radius 10mm, 1circle |
Zero faataapeapeina umi | 1300 ~ + 1324 | nm | |
O le zero-dispersion malifa | ≤ 0.092 | ps / (nm 2 .km) | |
dispersion fua | @ 1285-1340nm @1550nm @1625nm |
-3.4-3.4 ≤18.0 ≤22.0 |
ps / (nm 2 .km) |
Cable vavaeeseina-ese le umi( L λcc) | ≤ 1260 | nm | |
Faiga lapoa (MFD) | 1310nm 1550nm |
8.4 -9.2 9.3-10.3 |
μm μm |
Attenuation discontinuities | 1310nm 1550nm |
≤ 0,05 ≤ 0,05 |
oTTP oTTP |
Geometric uiga | |||
Lautele lapoa | 0.7 | μm | |
Cladding lapoa | 125± 0.7 | ||
Fatu faʻamalosi | ≤ 0.7 | % | |
Lapoa Coating | 245± 7 | μm | |
-O / packag a e sese concentricity | ≤ 12.0 |
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