Armored Fiber Patch Cable
Armored Fiber Patch Cable

Armored Fiber Patch Cable

Stainless steel protective sleeve - The armored jumper adds a layer of small diameter spiral stainless steel protective sleeve outside the optical fiber, enhancing compression resistance while also ensuring the same flexibility as standard optical fiber jumpers and the various superior optical properties of the optical fiber itself.
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Structure of Armored Fiber Patch Cable

 

1.Stainless steel protective sleeve - The Armored Fiber Patch Cable adds a layer of small diameter spiral stainless steel protective sleeve outside the optical fiber, enhancing compression resistance while also ensuring the same flexibility as standard optical fiber jumpers and the various superior optical properties of the optical fiber itself.

 

2.Aramid - High strength aramid reinforcement is used between the outer sheath and the armored sleeve to ensure that the fiber optic cable has no tensile strain and the outer diameter is standard. It is suitable for various connector loose parts applications.

 

3.PVC/LSZH/OFNP - ① As a surface material, PVC can be flame retardant, chemically resistant, and tear resistant, while also increasing the flexibility and elasticity of armored fiber optic jumpers; ② LSZH, as a surface material, has excellent flame retardancy and safety; ③ OFNP, as a surface material, has high heat resistance and low-carbon production, and a high fire resistance rating.

 

4.Optional connectors - commonly used connectors include SC, LC, FC, ST (UPC/APC optional).

 

Specification

 

Mode of Armored

Fiber Patch Cable

Single mode

Multimode

Polish

UPC

APC

PC

Insertion Loss

≤0.30dB

≤0.20dB

≤0.20dB

Return Loss

≥50dB

≥60dB

≥30dB

Test Wavelength

1310/1550nm

850/1310nm

Durability (500 Matings)

≤0.2dB

Operating Temperature

-40℃~+60℃

Storage Temperature

-45℃~+85℃

Fire Resistant

IEC 60794-2-30

Standards-Compliant

ROHS, IEC and GR-326

Fiber type

Single mode:

(1)9/125-G652D

(2)9/125-G655

(3)9/125-G657A, G657A2

(4)9/125-G657B3

Multimode:

(5)50/125-OM2

(6)62.5/125-OM1

(7)50/125-OM3

(8)50/125-OM4

(9)50/125-OM5

Fiber Brand

YOFC, Corning, Sumitomo, Fujikura

Connector

SC/PC, SC/APC, LC/PC, LC/APC, FC/PC, FC/APC, ST/PC, E2000/PC, E2000/APC, MU/PC, MTRJ/Female, MTRJ/Male, MPO/MTP, DIN/PC, SMA/PC, D4/PC

Cord type

Simplex, Duplex

Cable diameter

0.9mm , 1.2mm, 1.6mm, 1.8mm, 2.0mm, 2.8mm, 3.0mmm, 4.1mm

Cable jacket

PVC, OFNR, LSZH, OFNP

Length (M)

0.5m, 1m, 2m, 5m, 10m, 25m, 50m, 100m…Customized

 

Characteristics

 

  • The small caliber stainless steel hose serves as the protective layer closest to the optical fiber, with high tensile strength and anti mouse bite.

Imported Kevlar fiber has the characteristics of heat resistance, flame retardancy, anti-static, acid and alkali resistance, high strength, and high wear resistance.

  • Armored Fiber Patch Cable can be directly laid outdoors and in various harsh environments without the use of protective sleeves. The bending and diameter limitations of optical cables are relatively small, greatly saving space and reducing construction costs.
  • The working temperature of 45-85 ° C can be used in most parts of the world.
  • Durable and sturdy, it can reduce maintenance costs in the later stage.

 

Application

 

  • Armored Fiber Patch Cable are widely used in data centers, computer rooms, communication rooms, and other situations that require high-speed, stable, and reliable data transmission. Mainly applied in the following aspects:
  • Internal or external fiber optic interconnection in the computer room
  • Interconnection between optical terminal equipment (ONT) and optical fiber distribution box (ODF)
  • Enterprise and metropolitan optical network access
  • Digital broadcasting/television transmission
  • Switch interconnection, router interconnection, server interconnection, and other fields.

 

Steps for peeling Armored Fiber Patch Cable

 

1. Prepare tools such as armored optical cable stripping knives, stripping pliers, pliers, etc.

2. Determine the position to be peeled: Note that the armored optical cable should be placed on a flat workbench when peeling, and the position to be peeled should be determined based on the required length.

3. Peel off the metal sleeve: Use peeling pliers or pliers to cut the metal sleeve, taking care not to cut the inner tube and intermediate layer. If the feel is not good, tweezers can be used for assistance. Place the blade of the scissors on the armored optical cable and cut the metal sleeve with appropriate force.

4. Peel off the shell: Use a peeling pliers or knife to peel off the shell, taking care not to touch the inner tube and intermediate layer to avoid damage to the optical cable. Before peeling, the metal seeds on the outer shell can be cut off with tweezers or scissors, which helps to peel the armored optical cable.

5. Peel off the middle layer: Use peeling pliers or scissors to peel off the middle layer, taking care not to touch the inner tube, otherwise it may cause damage to the inner tube. Be very careful during the peeling process to avoid cutting off the exposed parts of the inner tube.

6. Peel off the inner tube: Use peeling pliers or scissors to peel off the inner tube, taking care not to cause damage to the optical fiber. When peeling off the inner tube, you can use a sharp pair of scissors to gently cut off the outer sheath, then use the scissors to push the outer sheath towards the end face of the armored optical cable, and then peel off the sheath around the inner tube.

 

Precautions for peeling Armored Fiber Patch Cable

 

1. During the peeling process, be very careful to avoid damaging the inner tube and intermediate layer, which may cause adverse effects on the optical cable.

2. When peeling, special tools should be used, and sharp tools should not be used to peel, otherwise it may damage the outer shell of the armored optical cable.

Before peeling, the Armored Fiber Patch Cable should be cleaned to avoid dust or other debris on the surface, otherwise it may affect the peeling process.

When peeling, the inner tube and intermediate layer should be protected as much as possible to avoid damage to them.

Through the above steps and precautions, we can easily peel off the armored optical cable and expose it, making it convenient for subsequent testing and maintenance. Before peeling, we should understand the structure and material characteristics of the optical cable, and master the corresponding peeling techniques and precautions to ensure that the armored optical cable will not be damaged during peeling.

 

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