96 Core Double HDPE Jackets Aerial ADSS Cable With Long Span 400M
ADSS Fiber Cable is loose tube stranded. The 250um bare fibers are positioned into a loose tube made of high modulus plastics. The tubes are filled with a water-resistant filling compound. The tubes and fillers are stranded around a FRP (Fiber Reinforced Plastic) as a non-metallic central strength member into a compact and circular cable core. After the cable core is filled with filling compound. It is covered with thin PE (polyethylene) inner sheath. After stranded layer of armaid yarns are applied over the inner sheath as strength member, the cable is completed with PE or AT (anti-tracking) outer sheath.
JQ’s ADSS cable has the characteristics of full dielectric, no metal, non-conductivity, small cable diameter, high tensile force, low linear expansion coefficient, and wide temperature adaptation.
Model: JQ Fiber Double Jacket ADSS Fiber Optic Cable;
Fiber Type: ITU G652D, G657A, OM1, OM2, OM3, OM4;
Fiber Count: 2-88 Core Is Available;
Span: 200M, 400M, 600M, Up to 1000M;
Standard: IEC 60794-4、 IEC 60793、TIA/EIA 598 A;
Product Description
Functional Positioning for Long-Span Aerial Installations
This 96 Core Double HDPE Jackets cable is engineered for demanding aerial environments where extended span lengths of up to 400 meters are required. Targeted toward telecommunications contractors and infrastructure developers, the adss fiber optic cable eliminates the need for external messenger wires while providing full dielectric performance. As a premium product from a specialized adss aerial fiber optic cable supplier, this cable is optimized for installations in power grids, rural communications, and broadband backhaul networks requiring robustness and minimal maintenance.
Technical Features and Mechanical Specifications
Constructed with loose tube stranded fibers encased in water-resistant gel, this adss fiber cable incorporates non-metallic FRP central strength members reinforced by aramid yarn, delivering high tensile capacity and environmental resistance. The dual HDPE jackets offer superior protection against UV radiation, moisture infiltration, and temperature variation. Compliant with IEC 60794-4, IEC 60793, and TIA/EIA 598 A standards, the cable supports fiber counts up to 96 cores, a maximum tension load of 6900 N, and features a minimum bending radius optimized for long-span aerial deployment.
Industry Applications and Integration Benefits
Ideal for network expansions in telecommunication operators’ aerial fiber routes, the adss fibre optic cable supports critical communication infrastructures requiring electrical isolation and high mechanical strength. Its full dielectric construction prevents electrical interference, making it suitable for installation near power lines and in high-voltage environments. This cable integrates effectively with advanced aerial network architectures, reducing system downtime and installation complexity, thus maximizing ROI for utility and broadband providers.
Product Advantages
Structural and Design Advantages of Dual Jacket Construction
The robust design of this adss aerial fiber optic cable features a dual HDPE jacket configuration, providing enhanced mechanical protection and environmental resilience. The cable’s full dielectric construction avoids metal components, ensuring electrical isolation critical for installations alongside energized power lines. The use of aramid yarn strength members combined with a fiber reinforced plastic core delivers superior tensile strength, while the loose tube design promotes fiber protection and easy fiber access. Its modular design supports diverse fiber counts, making it adaptable for varying project requirements from a reliable fiber optic cable supplier.
Performance Benefits and Usability for Field Deployments
Engineered for long-term aerial deployment, this adss fiber optic cable manufacturer product offers outstanding strain performance and resistance to mechanical stresses encountered during installation and operation. The dual jacketing guards against environmental threats such as UV exposure and moisture, ensuring stable optical performance over time. Its full dielectric nature enables safe positioning near power infrastructure, minimizing electrical risks. This level of usability promotes lower maintenance costs and faster network upgrades, providing users with dependable, high-performance fiber connectivity solutions in aerial environments.
Structure Design:
Main Features:
1. Two Jacket and stranded loose tube design . Stable performance and compatibility with all common fiber types;
2. Track -Resistant outer jacket available for the high voltage ( ≥35KV)
3. Gel-Filled buffer tubes are S-Z stranded
4. Instead of Aramid yarn or glass yarn,there is no support or messenger wire required. Aramid yarn is used as the strength member to assure the tensile and strain Performance
5. Fiber counts from 6 to 288fibers
6. Span up to 1000meter
Standards:
JQ Fiber’s ADSS Cable complies with IEC 60794-4, IEC 60793, TIA/EIA 598 A standards.
Advantages of JQ ADSS Optical Fiber Cable:
1.Good aramid yarn have excellent tensile performance;
2.Fast delivery, 200km ADSS cable regular production time about 10 days;
3.Can using glass yarn instead of aramid to anti rodent.
Colors -12 Chromatography:
Fiber Optic Characteristics:
| G.652 | G.655 | 50/125μm | 62.5/125μm | ||
| Attenuation (+20℃) |
@850nm | ≤3.0 dB/km | ≤3.0 dB/km | ||
| @1300nm | ≤1.0 dB/km | ≤1.0 dB/km | |||
| @1310nm | ≤0.00 dB/km | ≤0.00dB/km | |||
| @1550nm | ≤0.00 dB/km | ≤0.00dB/km | |||
| Bandwidth(Class A) | @850nm | ≥500 MHz·km | ≥200 MHz·km | ||
| @1300nm | ≥500 MHz·km | ≥500 MHz·km | |||
| Numerical aperture | 0.200±0.015NA | 0.275±0.015NA | |||
| Cable Cutoff Wavelength | ≤1260nm | ≤1480nm | |||
Cable Parameter:
| Part code | ADSS-DJ-400M-96F | |
| Number of Fibers | Unit | 96Core |
| Number of fiber in tube | Nos | 12 |
| Number of loose tube | Nos | 8 |
| Central strength member | Material | FRP |
| Loose tube | Material | PBT |
| peripheral strength member | Material | Aramid yarn |
| Water block | Material | Water swellable tape and water block yarn |
| Inner sheath | Material | PE |
| Outer sheath | Material | HDPE |
| Cable nominal Diameter | MM ±0.2 | 12.6 |
| Cable nominal weight | Kg/Km ±5 | 109 |
| Max allowable tension Load | N | 6900 |
| Span | 400m span | |
| Max. crush resistance | N | 2000 (Short term) / 1000 (Long term) |
| Min. bending radius | At full load 20 x Cable OD (including poles) At no load 15 x Cable OD | |
| Temperature range | Installation -0 -> +50 Operation -10 -> +70 | |
The excellent quality and service of JQ’s ADSS cable have won the praise of a large number of customers at home and abroad, and the products are exported to many countries and regions such as South and North America, Europe, Asia and UEA. We can customize the number of cores of ADSS fiber optic cables according to customer needs. The number of cores of optical fiber ADSS cable is 2, 6, 12, 24, 48 cores, up to 288 cores.
Remarks:
Detail requirements need to be sent to us for cable design and price calculation. Below requirements are a must:
A, Power transmission line voltage level
B, fiber count
C, Span or tensile strength
D, weather conditions
How to Ensure the Quality and Performance of Your Fiber Optic Cable?
All Dielectric Self-Supporting (ADSS) Cable Double Sheath is a type of fiber optic cable designed for aerial installations, typically used for telecommunication and data transmission applications.
The ADSS cable is constructed using a central core made of optical fibers surrounded by layers of protective materials. The cable is designed to be self-supporting, meaning that it does not require an external support structure such as a messenger wire or a metallic cable to hold it in place. Instead, the ADSS cable is supported by the strength of its own structure, which makes it ideal for use in long distance installations.
The double sheath design of the ADSS cable provides an extra layer of protection against environmental factors such as UV radiation, moisture, and temperature variations. The outer sheath is usually made of a high-density polyethylene (HDPE) material, which provides excellent resistance to weathering and mechanical damage. The inner sheath is made of a low-friction material such as nylon, which helps to reduce the friction between the cable and the central core during installation.
JQ Fiber’s double jackets ADSS fiber optic cable complies with standard IEC 60794-4、 IEC 60793、TIA/EIA 598 A.
Fiber Optic Characteristics:
| G.652 | G.655 | 50/125μm | 62.5/125μm | ||
| Attenuation (+20℃) |
@850nm | ≤3.0 dB/km | ≤3.0 dB/km | ||
| @1300nm | ≤1.0 dB/km | ≤1.0 dB/km | |||
| @1310nm | ≤0.00 dB/km | ≤0.00dB/km | |||
| @1550nm | ≤0.00 dB/km | ≤0.00dB/km | |||
| Bandwidth(Class A) | @850nm | ≥500 MHz·km | ≥200 MHz·km | ||
| @1300nm | ≥500 MHz·km | ≥500 MHz·km | |||
| Numerical aperture | 0.200±0.015NA | 0.275±0.015NA | |||
| Cable Cutoff Wavelength | ≤1260nm | ≤1480nm | |||
2-144 Core Double Jackets ADSS Cable Specifications:
|
No. of cable
|
/
|
6~30
|
32~60
|
62~72
|
96
|
144
|
||
|
Design
(Strength Member+Tube&Filler) |
/
|
1+5
|
1+5
|
1+6
|
1+8
|
1+12
|
||
|
Fiber type
|
/
|
G.652D
|
||||||
|
Central Strength Member
|
Material
|
mm
|
FRP
|
|||||
|
Diameter
(±0.05mm) |
1.5
|
1.5
|
2.0
|
2.0
|
2.0
|
|||
|
Loose Tube
|
Material
|
mm
|
PBT
|
|||||
|
Diameter
(±0.05mm) |
1.8
|
2.0
|
2.0
|
2.0
|
201
|
|||
|
Thickness
(±0.03mm) |
0.32
|
0.35
|
0.35
|
0.35
|
0.35
|
|||
|
MAX.NO./per
|
6
|
12
|
12
|
12
|
12
|
|||
|
Water Blocking Layer
|
Material
|
/
|
Flooding Compound
|
|||||
|
Inner Sheath
|
Material
|
mm
|
PE
|
|||||
|
Thickness
|
0.9(nominal)
|
|||||||
|
colour
|
black.
|
|||||||
|
Additional Strength Member
|
Material
|
/
|
Aramid Yarn
|
|||||
|
Outer Sheath
|
Material
|
mm
|
PE
|
|||||
|
Thickness
|
1.8(nominal)
|
|||||||
|
colour
|
black.
|
|||||||
|
Cable Diameter(±0.2mm)
|
mm
|
10.6
|
11.1
|
11.8
|
13.6
|
16.5
|
||
|
Cable Weight(±10.0kg/km)
|
kg/km
|
95
|
105
|
118
|
130
|
155
|
||
|
Attenuation coefficient
|
1310nm
|
dB/km
|
≤0.36
|
|||||
|
1550nm
|
≤0.22
|
|||||||
|
Cable breaking strength(RTS)
|
kn
|
≥5
|
||||||
|
Working Tension (MAT)
|
Kn
|
≥2
|
||||||
|
Wind velocity
|
m/s
|
30
|
||||||
|
Icing
|
mm
|
5
|
||||||
|
Span
|
M
|
100
|
||||||
|
Crush Resistance
|
Short Term
|
N/100mm
|
≥2200
|
|||||
|
Long Term
|
≥1100
|
|||||||
|
Min. bending radius
|
Without Tension
|
mm
|
10.0×Cable-φ
|
|||||
|
Under Maximum Tension
|
20.0×Cable-φ
|
|||||||
|
Temperature range
(℃) |
Installation
|
℃
|
-20~+60
|
|||||
|
Transport&Storage
|
-40~+70
|
|||||||
|
Operation
|
-40~+70
|
|||||||
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