Super High Quality GJYXCH Fiber G652.D Single Core FTTH Drop Cable With
Messenger
Description
The FTTH (Fiber to the Home) cable is specifically engineered to establish direct connections
with residential homes, offering unparalleled bandwidth, versatile wavelengths, and adaptable
transmission technologies. Its construction typically includes:
1.Optical Fiber Unit:This forms the core of the cable and is responsible for transmitting optical
signals to and from the home.
2.Parallel Strength Members:These are positioned around the optical fiber unit to enhance the
cable's durability and resistance to stretching or bending stresses.
3.Steel Wire Reinforcement:Often integrated into the strength members, the steel wire provides
additional protection against external forces, such as impacts or tension.
4.HDPE Sheath:The entire cable assembly is encased in a black High-Density Polyethylene
(HDPE) sheath. This sheath acts as a robust protective layer, shielding the internal components
from environmental factors like moisture, UV radiation, and physical damage. The fibers are
made by YOFC Fiber, Corning Fiber, and FiberHome.
The combination of these elements ensures that the FTTH cable delivers reliable, high-performance
connectivity to residential areas, meeting the demands of modern communication services and
supporting seamless data transmission for various applications within the home environment.
Application
1.Outdoor and Vertical Deployment:The FTTH cable's robust design and protective HDPE sheath
make it well-suited for outdoor use, withstanding harsh weather conditions and providing durability
in vertical routing scenarios. This versatility ensures reliable performance in diverse deployment
settings, whether it's aerial installations, buried underground, or mounted on poles or buildings.
2.Compatibility with Communication Equipment:The cable's construction and design allow for
seamless integration with a wide range of communication equipment, including routers, switches,
optical network terminals (ONTs), and more. This compatibility ensures efficient connectivity and
smooth operation within communication networks, contributing to overall network reliability and
performance.
3.Versatility for Long-Distance and Local Network Communication:The FTTH cable facilitates
communication over extended distances, such as connecting homes to central network hubs or
data centers, as well as supporting local area network (LAN) communication within residential
areas. This adaptability makes it a practical choice for various communication needs, whether
it's for broadband internet access, IPTV, VoIP services, or other data-intensive applications.
Overall, the FTTH cable's versatility, durability, and compatibility with communication equipment
make it a reliable and efficient solution for a wide range of deployment scenarios in residential
and commercial settings alike.
Characteristics
1.Robust Mechanical and Environmental Qualities:Engineered for durability and resilience, the
cable meets industry standards for performance in challenging environments. This ensures
reliability and longevity, even in demanding conditions, making it a dependable choice for various
applications.
2.UV-Resistant Properties:Designed to resist UV exposure, the cable adheres to industry standards
for UV resistance. This feature enhances its lifespan and performance, particularly in outdoor or
exposed installations where UV radiation can degrade materials over time.
3.Flexible and Easy-to-Install Design:With its soft and flexible structure, the cable is easy to handle,
lay, and splice during installation. Despite its flexibility, it maintains high data capacity, allowing for
significant data transmission without compromising performance. This ease of installation contributes
to efficient deployment in various settings.
4.Meeting Market and Client Needs:By addressing diverse market demands and client specifications,
the cable ensures broad applicability and suitability for various requirements. Its adaptability makes
it a practical choice for a range of applications and installations, catering to the needs of different
industries and environments.
Cable construction details
Numberof fiber | 1~4core | |||||||
strength member | Material | Galvanized steel wire/FRP/KFRP | ||||||
diameter | 2*(0.4~0.8)mm | |||||||
Self support Messenger wire | Material | Galvanized steel wire | ||||||
diameter | 1.0mm | |||||||
Outer sheath | material | LSZH | ||||||
diameter | 1.8±0.2mm | |||||||
Cable size (Height * width) | 2.0(±0.1) mm × 5.0(±0.2)mm | |||||||
Cable sheath thickness | Max. 0.8mm/Min. 0.4mm | |||||||
Messenger sheath thickness | 0.5~0.7mm | |||||||
Cable weight | 1~4core | 18.2KG |
Cable Mechanical characteristic
Items | Description | ||||||
Installation Temperature range(℃) | -20+60 | ||||||
Operation and transport temperature(℃) | -40+70 | ||||||
Min Bending Radius(mm) | Long term | 15D | |||||
Min Bending Radius(mm) | Short term | 30D | |||||
Min allowable Tensile Strength(N) | Long term | 300 | |||||
Min allowable Tensile Strength(N) | Short term | 600 | |||||
Crush Load (N/100mm) | Long term | 1000 | |||||
Crush Load (N/100mm) | short term | 2200 |
Fiber characteristic
Fiber style | Unit | SM G652 | SM G652D | MM 50/125 | MM 62.5/125 | MM OM3-300 | |
condition | nm | 1310/1550 | 1310/1550 | 850/1300 | 850/1300 | 850/1300 | |
attenuation | dB/km | ≤ | ≤ | ≤ | ≤3.0/1.0 | ≤3.0/1.0 | |
0.36/0.23 | 0.34/0.22 | 3.0/1.0 | ---- | ---- | |||
Dispresion | 1550nm | Ps/(nm*km) | ---- | ≤18 | ---- | ---- | Dispresion |
1625nm | Ps/(nm*km) | ---- | ≤22 | ---- | ---- | ||
Bandwith | 850nm | MHZ.KM | ---- | ---- | ≧400 | ≧160 | Bandwith |
1300nm | MHZ.KM | ---- | ---- | ≧800 | ≧500 | ||
Zero dispersion wavelength | nm | 1300-1324 | ≧1302, ≤1322 | ---- | ---- | ≧ 1295, ≤1320 | |
Zero dispresion slope | nm | ≤0.092 | ≤0.091 | ---- | ---- | ---- | |
PMD Maximum Individual Fibr | ≤0.2 | ≤0.2 | ---- | ---- | ≤0.11 | ||
PMD Design Link Value | Ps(nm2*k m) | ≤0.12 | ≤0.08 | ---- | ---- | ---- | |
Fibre cutoff wavelength λc | nm | ≧ 1180, ≤1330 | ≧1180, ≤1330 | ---- | ---- | ---- | |
Cable sutoff wavelength λcc | nm | ≤1260 | ≤1260 | ---- | ---- | ---- | |
MFD | 1310nm | um | 9.2+/-0.4 | 9.2+/-0.4 | ---- | ---- | ---- |
1550nm | um | 10.4+/-0.8 | 10.4+/-0.8 | ---- | ---- | ---- | |
Numerical Aperture(NA) | ---- | ---- | 0.200+/ -0.015 | 0.275+/-0. 015 | 0.200+/-0 .015 | ||
Step(mean of bidirectional measurement) | dB | ≤0.05 | ≤0.05 | ≤0.10 | ≤0.10 | ≤0.10 | |
Irregularities over fiber length and point | dB | ≤0.05 | ≤0.05 | ≤0.10 | ≤0.10 | ≤0.10 |
Dicontinuity | |||||||
Difference backscatter coefficient | dB/km | ≤0.05 | ≤0.03 | ≤0.08 | ≤0.10 | ≤0.08 | |
Attenuation uniformity | dB/km | ≤0.01 | ≤0.01 | ||||
Core dimater | um | 50+/-1.0 | 62.5+/-2.5 | 50+/-1.0 | |||
Cladding diameter | um | 125.0+/-0.1 | 125.0+/-0.1 | 125.0+/-0.1 | 125.0+/-0.1 | 125.0+/-0.1 | |
Cladding non-circularity | % | ≤1.0 | ≤1.0 | ≤1.0 | ≤1.0 | ≤1.0 | |
Coating diameter | um | 242+/-7 | 242+/-7 | 242+/-7 | 242+/-7 | 242+/-7 | |
Coating/chaffinch concentrically error | um | ≤12.0 | ≤12.0 | ≤12.0 | ≤12.0 | ≤12.0 | |
Coating non circularity | % | ≤6.0 | ≤6.0 | ≤6.0 | ≤6.0 | ≤6.0 | |
Core/cladding conentricity error | um | ≤0.6 | ≤0.6 | ≤1.5 | ≤1.5 | ≤1.5 | |
Curl(radius) | um | ≤4 | ≤4 | ---- | ---- | ---- |