Dahua 305m UTP CAT6 CPR E/UL CM Cable(DH-PFM920I-6UN-C (Cat6))

Dahua 305m UTP CAT6 CPR E/UL CM Cable(DH-PFM920I-6UN-C (Cat6))

Regular price
₱7,280.00
Sale price
₱7,280.00
Regular price
Sold out
Unit price
per 

  • 305m UTP CAT6; 
  • Support PoE long-distance transmission; 
  • Excellent OFC with 99.99% OFC(oxygen free copper) purity; 
  • Environmentally-friendly outer sheath, meet the CPR E/ UL CM class; 
  • Top-notch quality guarantee for 10 years.

Technical Specification

 

Model
DH-PFM920I-6UN-C
DH-PFM920I-6UN-U
Structure
Conductor
Material
OFC(oxygen free copper)
Structure
4P*0.53±0.01mm
Insulation
Material
HDPE
Min. average thickness
0.21mm
Diameter
0.95mm0.05mm
Color(4 Pairs)
Orange, white/orange; green, white/green;
blue, white/blue; brown, white/brown
Rip cord
Yes
Jacket
Material
PVC, meet the requirement of CPR E class
PVC, meet the requirement of UL CM class
Min. average thickness
0.40mm
Diameter
6.0±0.50mm
surface
Smooth, full and tight
Color
White
General
Length
305m(1000.66ft)
N.W.
11.25kg(24.8lb)
Packaging dimension
412mmx412mmx215mm(16.22”x16.22”x8.46”)
Weight (with packaging)
12.75kg(28.11lb)
Mechanical properties
Insulation
Tensile strength
≥16MPa
Elongation at break
≥300%
Peeling property
No damage to insulation or conductor
Jacket
Tensile strength
Before aging: ≥13.5MPa
After aging: ≥12.5MPa
Before aging: ≥13.5MPa
Retention rate of tensile strength after aging: ≥85%
Elongation at break
Before aging: ≥150%
After aging: ≥125%
Before aging: ≥150%
Retention rate of elongation at break after aging: ≥50%
Aging condition
100℃*24h*7d
Peeling property
No damage to insulation, cold bending (-20C *4h), the outer diameter of the cable is 8 times, without cracking.
No damage to insulation, cold bending (-15C *4h), the outer diameter of the cable is 8 times, without cracking.
Electrical performance (20℃)
Characteristic impedance (1-250MHz)
100±15Ω
DC resistance
≤9.38Ω/100m
Max. unbalance rate of line pairs’ direct current
≤5%
Time delay
≤45ns/100m
Max. mutual capacitance
5.6nF/100m
Min. insulation resistance
5000MΩ·km