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    Specification DNO-6417

    MiniCore Optical Ground Wire

    PO Box 3127

    Spartanburg, SC 29304

    1 800 235 3423

    1 864 433 5560

    Tel:

    Fax:

    Component Details

    Standards

    MC-102/41/626

    #Component OD Area

    CENTER

    Stainless Steel Tube 1 inmm3.60 0.1417 mm2.14 in0.0033

    LAYER 1 - RIGHT HAND LAY

    Aluminum Clad Steel (20.3% IACS) 4 inmm3.60 0.1417 mm40.72 in0.0631

    Aluminum Alloy 6201 2 inmm3.60 0.1417 mm20.36 in0.0316

    LAYER 2 - LEFT HAND LAY

    Aluminum Alloy 6201 16 inmm2.55 0.1004 mm81.71 in0.1267

    Designed and Manufactured in accordance with the followin g:

    Cable IEEE 1138, IEC 60794-4

    Fiber IEC 60793, ITU-T G.65x Series

    Color Code ANSI/EIA 359-A, 598-A, IEC 60304

    Stainless Steel Tubes ASTM A240, ASTM A632

    Aluminum Alloy Wires ASTM B398, IEC 60104

    Aluminum Clad Steel Wires ASTM B415

    DNO-6417 10/18/2006 Version 18.0 Page 1 - 5

    Printed on 8/31/2009

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    Specification DNO-6417

    Mechanical / Electrical Details

    Optical Details

    3.6mm Stainless Steel Tube Design

    Unit Fiber Type

    Fiber

    Count

    ITU-T G.652 Single-modeTube 1 24

    24Total Fiber Count

    Installation and cable preparation procedures are outlined in the AFL Telecommunications documentslisted below. Contact AFL to request copies.

    Installation and Handling Recommendations

    Recommended Installation Procedures for Composite Optical Ground Wire

    Installation Instructions for Installing Optical Ground Wire in an AFL Telecommunications Splice Enclosure

    Fiber Optic Cable Receiving, Handling and Storage. Document ACS-WI-809

    C

    8,152 17,972 lbskg

    15.90 0.626 inmm

    577 2,047 lbs/milekg/kmApproximate Cable Weight9,413 13,388

    1.79E-05 9.97E-06

    kpsi

    1/F

    kg/mm

    1/C

    1-1441

    6,110 13,470Maximum Cable Design Tension kg lbs

    0.2830 0.4555Ohms/km Ohms/mile

    200

    196 (kA)sec

    Short Circuit Duration 1 sec 14.0 kA

    392 F

    14.0 kA

    196 (kA)sec

    1-1441

    40 C F104

    144.92 0.2246mm in

    Calculated Breaking Load

    Approximate Cable Diameter

    Total Cross-Sectional Area

    Modulus of Elasticity

    Coefficient of Linear Expansion

    Sag10 Chart Number

    Calculated DC Resistance (20C)

    Short Circuit Rating

    Short Circuit Ambient Temperature

    Short Circuit Max Cable Temperature

    Attenuation Character istics for ITU-T G.652 Single-mode Fiber

    0.34 dB/km 1310 nm

    0.22 dB/km 1550 nm

    Max Individual

    1 2 3 4 5 6 7 8 9 10 11 12

    Blue Orange Green Brown Slate White Red Black Yellow Violet Rose Aqua

    Standard Fiber Color Code

    Designs with more than 12 fibers per tube will use the standard color code and binders for identification of the fibers.

    Fiber

    Color

    DNO-6417 10/18/2006 Version 18.0 Page 2 - 5

    Printed on 8/31/2009

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    Specification DNO-6417

    Quick Reference Installation Notes

    Shipping Reels

    1,630 3,594 lbskg

    112 44 incm

    64 25 incm

    24 10 incm

    32 13 incm

    3.8 1.5 incm

    16.2 incm

    Stainless Steel Tube

    6.4

    15.90 0.626 inmm

    * -

    ** -

    Approximate Cable Diameter

    Maximum Stringing Tension (at tensioner)*

    Minimum Bull Wheel Diameter

    Stringing Sheave Diameter**

    Minimum Bending RadiusCable

    Fiber

    Static (No load)

    Dynamic (under tension)

    Static (No load)

    Static (No load)

    The stringing tension is always measured at the tensioner side. In general the maximum stringingtension should be approximately half of the maximum sagging tension and should never exceed20% RBS of the OPT-GW.

    The value indicated is for the first and last structures of the pull and is based on 40 times thediameter of the OPT-GW. Smaller diameters can be used at tangent structures. Reference AFL'sinstallation instructions for more details.

    Reference AFL's "Recommended Installation Procedures for Composite Optical Ground Wire" for

    detailed installation instructions.

    FL TR DR

    (meters)(cm) (in) (feet)

    OW FL TR DR OW

    (kgs) (lbs)

    ReelType

    CapacityTareTare

    58Wood 11,380147 3281 2871 3897 3,470200 441

    66Wood 15,280168 3691 3691 42107 4,660260 573

    72Wood 19,320183 3691 3691 42107 5,890300 662

    84Wood 19,320213 3486 3589 41104 5,890385 849

    60Steel 11,280152 3281 3281 3897 3,440345 761

    72Steel 18,170183 3691 40102 42107 5,540540 1,191

    84Steel 19,320213 45114 42107 51130 5,890773 1,704

    Wood: 3-1/4in (7.9cm)

    Steel: 3in (7.6cm)

    FL - Flange Diameter; TR - Inside Traverse Width; DR - Drum Diameter; OW - Outside Overall Width

    Arbor Hole Diameter:

    Maximum lengths shown are the longest lengths that AFL offers. Longer lengths may be possible.

    Ordered lengths should include a distribution of lengths, i.e., all reels cannot be ordered at the maximum.

    A typical reel length distribution is as follows:6000m 7000m ~ 15% of reels4500m 6000m ~ 55% of reels2500m 4500m ~ 25% of reels

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    Specification DNO-6417

    Electrical Characteristics

    (C) (Ohms/mile)(Ohms/km) (Ohms/mile)(Ohms/km)(F)

    0.0203

    0.4728

    0.1082

    feet

    Ohms/mile

    MOhmsmile

    0.2938 Ohms/km

    0.1741 MOhmskm

    0.62 cm

    0.00351

    0.4555 Ohms/mile0.2830 Ohms/km

    0.3940 Ohms/mile0.2448 Ohms/km

    0.1298 MOhmsmile0.2089 MOhmskm

    (1/C)

    Composite DC Resistance [20C]

    Geometric Mean Radius

    Inductive Reactance [60 Hz frequency]

    [one foot (0.3048 meter) spacing]

    [50 Hz frequency]Capacitive Reactance [60 Hz frequency]

    [one foot (0.3048 meter) spacing]

    [50 Hz frequency]

    Composite Coefficient of Thermal Resistance

    Temperature DC Resistance AC Resistance

    20 0.4555 0.46460.2830 0.288768

    25 0.4635 0.47270.2880 0.293877

    30 0.4715 0.48090.2930 0.29888635 0.4795 0.48900.2979 0.303995

    40 0.4874 0.49720.3029 0.3089104

    45 0.4954 0.50530.3079 0.3140113

    50 0.5034 0.51350.3128 0.3191122

    55 0.5114 0.52160.3178 0.3241131

    60 0.5194 0.52980.3227 0.3292140

    65 0.5274 0.53790.3277 0.3343149

    70 0.5354 0.54610.3327 0.3393158

    75 0.5434 0.55420.3376 0.3444167

    80 0.5514 0.56240.3426 0.3495176

    85 0.5594 0.57050.3476 0.3545185

    90 0.5673 0.57870.3525 0.3596194

    95 0.5753 0.58680.3575 0.3646203

    100 0.5833 0.59500.3625 0.3697212

    105 0.5913 0.60310.3674 0.3748221

    110 0.5993 0.61130.3724 0.3798230

    115 0.6073 0.61940.3774 0.3849239

    120 0.6153 0.62760.3823 0.3900248

    125 0.6233 0.63570.3873 0.3950257

    130 0.6313 0.64390.3923 0.4001266

    135 0.6393 0.65200.3972 0.4052275

    140 0.6473 0.66020.4022 0.4102284

    145 0.6552 0.66830.4071 0.4153293

    150 0.6632 0.67650.4121 0.4204302

    DNO-6417 10/18/2006 Version 18.0 Page 4 - 5

    Printed on 8/31/2009

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    Specification DNO-6417

    PLS-CADD Inputs

    Name

    Description

    Cross section area

    Outside diameter

    Temperature at which strand data below obtained

    (in^2)

    (in)

    0.2246

    0.626

    AFL OPGW DNO-6417 MC-102/41/626

    Unit weight

    Ultimate tension

    (lbs/ft)

    (lbs)

    0.388

    17,972

    73(deg F)

    Use simplified elastic cable model (no creep, no coefficient)

    Number of independent wires 1

    (above should be 1 unless cables

    are separated by spacers)

    Outer Strands

    Final Modulus of elasticity

    Thermal expansion coeff.

    (psi/100)

    (/100 deg)

    130000

    0.001000

    Core Strands (if different from outer strands)

    Final Modulus of elasticity

    Thermal expansion coeff.

    (psi/100)

    (/100 deg)

    Polynomial coefficients (all strains in %) Polynomial coefficients (all strains in %)

    117.6Stress-strain

    A0

    44000.5

    A1

    489072

    A2

    -1342969

    A3

    1119215

    A4

    Stress-strain

    631.8Creep 60923.3 63703.5 -171879 119846 Creep

    A0 A1 A2 A3 A4

    Thermal Rating Properties

    Resistance at two different temperatures

    Resistance (Ohm/mile) 0.4635

    Resistance (Ohm/mile) 0.5434

    at 77(deg F)

    167at (deg F)

    Emissivity coefficient

    Solar absorption coefficient

    (Watt-s/ft-deg F)

    Core heat capacity

    0.5

    0.5

    (Watt-s/ft-deg F)

    Outer strands heat capacity

    Generate Coefficients from points on stress-strain OK Cancel

    **

    * These two fields do not need to be entered for OPGW - intentionally left blank.

    DNO-6417 10/18/2006 Version 18.0 Page 5 - 5

    Printed on 8/31/2009