12/24 Core Indoor Breakout Tight Buffer Fiber Optic Cable (GJBFJV)

Product Details
Customization: Available
Application: Telecommunication
Type: PLC Patch Cable
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  • 12/24 Core Indoor Breakout Tight Buffer Fiber Optic Cable (GJBFJV)
  • 12/24 Core Indoor Breakout Tight Buffer Fiber Optic Cable (GJBFJV)
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Basic Info.

Model NO.
GJBFJV
Brand
OEM
Sheath Material
LSZH
Mode
Single Mode
Central Member
Mentallic Strength Member
Operating Temperature
-40 C ~ +70 C
Filling Gel
Water Blocking
Install Style
Outdoor Direct Buried
Armor
Steel Armoring
Core Number
Customized
Number of Conductors
up to 10
Brand Name
Tw-Scie Fiber Optic Cable or as Required
Transport Package
Wooden Drum
Specification
ROHS, CE
Trademark
TW-SCIE or OEM
Origin
Guangdong Dongguan
HS Code
854470000
Production Capacity
200km Per Day

Product Description

24 Core Indoor Breakout Tight Buffer Fiber Optic Cable (GJBFJV)
 
Product Description
These cables are constructed bundling tight buffered simplex optical fiber in an outer jacket. Non metallic FRP 
strength members in the cable give it good
 tensile strength and electro-magnetic protection. It has small diameter, 
light weight and thick wall jacket protection, giving it versatile applications. It can be used in cable assemblies 
and places of high electro-magnetic interferences. 


Flexible and small bent radius ensures good performance against pressure. These simplex cables are individually 
reinforced with Aramid yarn so can be terminated without the need for breakout boxes, patch panel or junction boxes. 


Each fiber is mechanically reinforced with two successive sheaths of 400µm and 900µm which enables direct 
termination of connectors. Excellent strip force stability, fiber geometrical dimension and transmission performance 
meets the customer demand. Available in PVC, LSZH, Plenum outer sheath and tight buffer: 900µm, 600µm. The 
cable is specially designed for  indoor applications like oor
 distribution, interconnection and equipment connection.


12/24 Core Indoor Breakout Tight Buffer Fiber Optic Cable (GJBFJV)


Complied With Or Exceeds Standard
.  ITU-T G652.D                                      .  ITU-T G651.1 OM1 OM2 OM3 OM4 
.  ITU-T G657.A                                      .  IEC60793-2-10  type A1a.1/A1b OM1/OM2
.  IEC60793-2-10  type A1a.2 OM3        .  IEC60793-2-10  type A1a.3 OM4
.  ISO/IEC 11801 , ISO/IEC 24702         .  IEEE 802.3z Gigabit Ethernet
.  ANSI/TIA/EIA 568C.3                          .  ROHS Compliant Directive 2011/65/EU(ROHS2.0)


Mechanical & Environmental Characteristics
ITEM Value
Max. Tensile Load (Short Term) 1500N
Max. Tensile Load (Long Term) 600N
Max. Crush Load (Short Term) 1000N/100mm
Max Crush Load (Long Term) 300N/100mm
UL Fire Rated OFNR
Operating Temperature -20°C to +60°C
Storage Temperature -40°C to +85°C
Sheath Material Standard: PVC    Optional: LSZH, PE or other

Standard Fiber Color Code
Fiber Number    Fiber Color    Fiber Number   Fiber Color
  Fiber 1                 Blue               Fiber 7              Red
  Fiber 2              Orange             Fiber 8             Black
  Fiber 3               Green              Fiber 9            Yellow
  Fiber 4              Brown               Fiber 10          Violet
  Fiber 5               Slate                Fiber 11           Rose
  Fiber 6              White                Fiber 12           Aqua
Fiber 13 and higher The color code is repeated with added black stripe or dash
Note: Fiber Tube color will be followed with same order.


12/24 Core Indoor Breakout Tight Buffer Fiber Optic Cable (GJBFJV)

Optical Characteristics 
Of all the differences between multimode & singlemode fiber, the most fundamental differences are the 
size of the fiber's core and the associated attenuation or loss and bandwidth of the fiber. The smaller the 
core diameter, the higher the fiber's bandwidth and the lower the attenuation (loss in dB per kilometer). 
The fiber's attenuation and bandwidth are also dependent on wavelength. 

 
Singlemode was for high-speed longdistance transmission and multimode (in either the 50 µm or 62.5 µm 
core diameters) was used for lower speed short distance applications. Multimode 50 µm fiber had a lower 
cost and higher modal bandwidth than multimode 62.5 µm core fiber. Bandwidth is a measurement of the 
data carrying capacity of the fiber. A higher bandwidth fiber carries more data. See table below.

 
Fiber Type Max. Attenuation (dB/km) Min.Overfill Launch 
Bandwidth
 (Mhz.km)
Min.Gigabit Ethernet 
Link Distance
 (m)
Gigabit 10Gigabit
850nm 1300nm 1310nm 1550nm 850nm 1300nm 850nm 1300nm 850nnm
OM1 62.5/125µm ≤2.7 ≤0.6 - - 500 ≥600 275 550 -
OM2 50/125µm ≤2.3 ≤0.6 - - 500 ≥500 750 600 150
OM3 50/125µm ≤2.3 ≤0.6 - - ≥1500 ≥500 1000 600 300
OM4 50/125µm ≤2.3 ≤0.6 - - ≥3500 ≥500 1100 600 550
G652D 9/125µm - - ≤0.30 ≤0.18 - - - - -
G657A 9/125µm - - ≤0.35 ≤0.21 - - - - -

Ordering Information
Part NumberOC-XX-ABCDCL
 
Ordering Guide
XX A B C D CL
Cable Type  Jacket  Fiber/Sub  Fiber Count Fiber Type(FXX) Jacket Color(CL)
 GJBFJV 1=PVC
2=LSZH
3=PE
01=01 Fiber/S
02=02 Fiber/S
...
11=11 Fiber/S
12=12 Fiber/S
No. Of Fiber 
004F,048F
OM1=62.5/125 OM1
OM2=50/125 OM2
OM3=50/125 OM3
OM4=50/125 OM4
G652D=9/125 G652D
G657A=9/125 G657A
As noted in 
Color code chart

Ordering Sample
Part Number Description
OC-GJBFJV-2124G652DYE 24 cores Singlemode G652D GJBFJV Fiber Optic Cable, 
1 Fiber/Sub, LSZH jacket, Yellow color.

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