Super Cost Effective High Quality Fiber G652.D Single Core FTTH Drop Cable
With Messenger
Description
The FTTH (Fiber to the Home) cable is designed to connect homes directly, providing unrestricted ban-
dwidth, wavelengths, and transmission technologies. It typically consists of an optical fiber unit at its core,
surrounded by parallel strength members for added durability. These strength members are often reinfo-
rced with a steel wire to provide additional protection against external forces. The entire assembly is then
encased in a black HDPE (High-Density Polyethylene) sheath, which serves as a protective layer against
environmental factors, moisture, and physical damage. This construction ensures reliable and high-perfo-
rmance connectivity for residential applications.
Application
The FTTH cable you're describing seems quite versatile and well-suited for various deployment scenarios:
1. Outdoor and Vertical Deployment: Its design caters to robust outdoor use and vertical distribution, ensu-
ring durability and adaptability in diverse settings. This makes it suitable for installations where exposure to
harsh weather conditions or vertical routing is required.
2. Compatibility with Communication Equipment: The cable's construction allows for seamless integration
with a range of communication devices and systems. This compatibility ensures efficient connectivity and
smooth operation within communication networks.
3. Versatility for Long-Distance and Local Network Communication: Whether it's facilitating communication
over extended distances or within local area networks, this cable is versatile enough to handle both scenarios
effectively. This versatility adds to its usability and makes it a practical choice for different communication needs.
Characteristics
The fiber optic cable you've described seems to excel in several key areas:
1. Robust Mechanical and Environmental Qualities: It's built to be durable and resilient, capable of withs-
tanding challenging conditions while meeting relevant industry standards. This ensures reliability and long-
evity in demanding environments.
2. UV-Resistant Properties: The cable is designed to resist UV exposure, adhering to industry standards.
This feature enhances its lifespan and performance, particularly in outdoor or exposed installations where
UV radiation is a concern.
3. Flexible and Easy-to-Install Design: Its soft and flexible structure makes it easy to handle, lay, and splice
during installation. Despite this flexibility, it offers high data capacity, allowing for significant data transmission
capabilities without compromising on performance.
4. Meeting Market and Client Needs: By addressing diverse market demands and client specifications, the
cable ensures broad applicability and suitability for various requirements. This adaptability makes it a practical
choice for a range of applications and installations.
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 | ---- | ---- | ---- |