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NO. 20191014-01
1
Indoor Communication Cable(GJFJH)
Cable Design
Technical Date
No. of cable 4 6 8 12 24
Fiber Model G652D
Tight lines
Material PVC
Thickness£¨¡À
0.03£©mm 0.32
Diameter£¨¡À
0.05£©mm 0.9
Strength Member(Material) Aramid Yarn
Outer Sheath
Material LSZH
Thickness£¨¡À
0.05£©mm 0.55 0.65 0.9 0.9 1.0
Colour Black
Cable Diameter£¨¡À
0.2£©mm 5.0 5.5 5.8 6.2 8.5
Cable Wetght£¨¡À
3.0£©kg/km 17 23 31 37 61
Allowable
Tensile Strength
Short Term
N
660
Long Term 200
Allowable Crush Short Term N/100mm 1000
NO. 20191014-01
2
Resistance Long Term 300
Min. bending
radius
Without Tension 10.0¡Á
Cable-¦Õ
Under Maximum Tension 20.0¡Á
Cable-¦Õ
Temperature
range
£¨¡æ£©
Installation -20~+60
Transport&Storage -20~+60
Operation -20~+60
Tight lines Colours
No. 1 2 3 4 5 6
Color Blue Orange Green Brown Gray White
No. 7 8 9 10 11 12
Color Red Black Yellow Violet Pink Aqua
No. 13 14 15 16 17 18
Color Blue+P Orange+P Green+P Brown+P Gray+P White+P
No. 19 20 21 22 23 24
Color Red+P Natural+P Yellow+P Violet+P Pink+P Aqua+P
* ¡°P¡± means Point mark
The properties of single mode optical fiber (ITU-T Rec. G.652.D)
Item Specification
Fiber type Single mode
Fiber material Doped silica
Attenuation coefficient
@ 1310 nm
@ 1383 nm
@ 1550 nm
@ 1625 nm
? 0.36 dB/km
? 0.35 dB/km
? 0.22 dB/km
? 0.25 dB/km
Point discontinuity ? 0.05 dB
Cable cut-off wavelength ? 1260 nm
Zero-dispersion wavelength 1300 ~ 1324 nm
Zero-dispersion slope ? 0.092 ps/(nm2
.km)
PMDQ (Quadrature average*) ?0.2 ps/km1/2
Mode field diameter @ 1310 nm 9.2¡À
0.4 um
Core / Clad concentricity error ? 0.6um
Cladding diameter 125.0 ? 1 um
Cladding non-circularity ?1.0%
Primary coating diameter 245 ? 10 um
Proof test level 100 kpsi (=0.69 Gpa), 1%
Temperature dependence ? 0.1 dB/km
NO. 20191014-01
3
0oC~ +70oC @ 1310 & 1550nm
Main mechanical & environmental performance test
Item Test Method Acceptance Condition
Tensile Strength
IEC 794-1-2-E1
- Load: Short term tension
- Length of cable: about 50m
- Fiber strain ? 0.33%
- Loss change ? 0.1 dB @1550 nm
- No fiber break and no sheath damage.
Crush Test
IEC 60794-1-2-E3
- Load: Short term crush
- Load time: 1min
- Loss change ? 0.05dB@1550nm
- No fiber break and no sheath damage.
Impact Test
IEC 60794-1-2-E4
- Points of impact: 3
- Times of per point: 1
- Impact energy: 5J
- Loss change ? 0.1dB@1550nm
- No fiber break and no sheath damage.
Temperature Cycling
Test
YD/T901-2001-4.4.4.
1
- Temperature step:
+20o
C¡ú-40o
C¡ú+70o
C
¡ú+20o
C
- Time per each step: 12 hrs
- Number of cycle: 2
- Loss change ? 0.05 dB/km@1550 nm
- No fiber break and no sheath damage.
Sheath marking
The optical fiber drop cable shall have sequentially numbered length marking at intervals of
approximately 1 meter. The starting number of ordering length for any coil shall begin whit zero
meter. The accuracy of the measurement of length marking shall be held within the limits of ¡À
1%.
a) Manufacturer¡¯s name
b) Type of wire
c) Year and month of manufacture
d) Length marking each meter along the wire
£¨a£© £¨b£© £¨c£© £¨d£©
HEADWAY GJFJH-¡Á¡ÁB1 2019 =0001m=
¡Á

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  • 1. NO. 20191014-01 1 Indoor Communication Cable(GJFJH) Cable Design Technical Date No. of cable 4 6 8 12 24 Fiber Model G652D Tight lines Material PVC Thickness£¨¡À 0.03£©mm 0.32 Diameter£¨¡À 0.05£©mm 0.9 Strength Member(Material) Aramid Yarn Outer Sheath Material LSZH Thickness£¨¡À 0.05£©mm 0.55 0.65 0.9 0.9 1.0 Colour Black Cable Diameter£¨¡À 0.2£©mm 5.0 5.5 5.8 6.2 8.5 Cable Wetght£¨¡À 3.0£©kg/km 17 23 31 37 61 Allowable Tensile Strength Short Term N 660 Long Term 200 Allowable Crush Short Term N/100mm 1000
  • 2. NO. 20191014-01 2 Resistance Long Term 300 Min. bending radius Without Tension 10.0¡Á Cable-¦Õ Under Maximum Tension 20.0¡Á Cable-¦Õ Temperature range £¨¡æ£© Installation -20~+60 Transport&Storage -20~+60 Operation -20~+60 Tight lines Colours No. 1 2 3 4 5 6 Color Blue Orange Green Brown Gray White No. 7 8 9 10 11 12 Color Red Black Yellow Violet Pink Aqua No. 13 14 15 16 17 18 Color Blue+P Orange+P Green+P Brown+P Gray+P White+P No. 19 20 21 22 23 24 Color Red+P Natural+P Yellow+P Violet+P Pink+P Aqua+P * ¡°P¡± means Point mark The properties of single mode optical fiber (ITU-T Rec. G.652.D) Item Specification Fiber type Single mode Fiber material Doped silica Attenuation coefficient @ 1310 nm @ 1383 nm @ 1550 nm @ 1625 nm ? 0.36 dB/km ? 0.35 dB/km ? 0.22 dB/km ? 0.25 dB/km Point discontinuity ? 0.05 dB Cable cut-off wavelength ? 1260 nm Zero-dispersion wavelength 1300 ~ 1324 nm Zero-dispersion slope ? 0.092 ps/(nm2 .km) PMDQ (Quadrature average*) ?0.2 ps/km1/2 Mode field diameter @ 1310 nm 9.2¡À 0.4 um Core / Clad concentricity error ? 0.6um Cladding diameter 125.0 ? 1 um Cladding non-circularity ?1.0% Primary coating diameter 245 ? 10 um Proof test level 100 kpsi (=0.69 Gpa), 1% Temperature dependence ? 0.1 dB/km
  • 3. NO. 20191014-01 3 0oC~ +70oC @ 1310 & 1550nm Main mechanical & environmental performance test Item Test Method Acceptance Condition Tensile Strength IEC 794-1-2-E1 - Load: Short term tension - Length of cable: about 50m - Fiber strain ? 0.33% - Loss change ? 0.1 dB @1550 nm - No fiber break and no sheath damage. Crush Test IEC 60794-1-2-E3 - Load: Short term crush - Load time: 1min - Loss change ? 0.05dB@1550nm - No fiber break and no sheath damage. Impact Test IEC 60794-1-2-E4 - Points of impact: 3 - Times of per point: 1 - Impact energy: 5J - Loss change ? 0.1dB@1550nm - No fiber break and no sheath damage. Temperature Cycling Test YD/T901-2001-4.4.4. 1 - Temperature step: +20o C¡ú-40o C¡ú+70o C ¡ú+20o C - Time per each step: 12 hrs - Number of cycle: 2 - Loss change ? 0.05 dB/km@1550 nm - No fiber break and no sheath damage. Sheath marking The optical fiber drop cable shall have sequentially numbered length marking at intervals of approximately 1 meter. The starting number of ordering length for any coil shall begin whit zero meter. The accuracy of the measurement of length marking shall be held within the limits of ¡À 1%. a) Manufacturer¡¯s name b) Type of wire c) Year and month of manufacture d) Length marking each meter along the wire £¨a£© £¨b£© £¨c£© £¨d£© HEADWAY GJFJH-¡Á¡ÁB1 2019 =0001m= ¡Á