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1.1.8. Fibra Optica

Fibra Optica

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Manuel Antón
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0% found this document useful (0 votes)
17 views2 pages

1.1.8. Fibra Optica

Fibra Optica

Uploaded by

Manuel Antón
Copyright
© © All Rights Reserved
We take content rights seriously. If you suspect this is your content, claim it here.
Available Formats
Download as PDF, TXT or read online on Scribd
You are on page 1/ 2

S_XGlO_LS_LooseTube_INT_G.

qxp_G 5/18/17 3:50 PM Page 1

XGLO & LightSystem Indoor/Outdoor® ®

LooseTube - International
SS_XGlO_LS_LooseTube_INT_G.qxp_G 5/18/17 3:50 PM Page 1

XGLO & LightSystem Indoor/Outdoor


®

Siemon LSOH (IEC 60332-3) indoor/outdoor loose tube fiber cables are ideal for campus and building
®

LooseTube
backbones. Siemon fiber optic - cables
International
are offered in XGLO and LightSystem configurations supporting high-
speed, applications such as Gigabit Ethernet, 10 Gigabit Ethernet and Fiber Channel.
XGLO
Siemon LSOH (IEC&60332-3)
LightSystem
indoor/outdoor loose tubeIndoor/Outdoor
®
fiber cables are ideal for campus and building
®

LooseTube
backbones. Siemon fiber optic-cables
Ordering Information:
International
are offered in XGLO and LightSystem configurations supporting high-
9GG(X)H(XXXX)-(XXXX)M . . . . . . . . . . . . . . . . LightSystem Multimode 62.5/125 OM1, XGLO Multimode
speed, applications such as Gigabit Ethernet,
. . . . . . . . . .10
. . . .Gigabit
. . . . . . . . .Ethernet
. . . . . . . . . . .and
. . . . . Fiber Channel.
50/125 OM3 and OM4, Singlemode 0S1/OS2
Siemon LSOH (IEC 60332-3)
Fiber Type indoor/outdoor loose tube fiber cablesLength are ideal for campus and building
backbones.
Ordering Siemon fiber6 =optic
Information: cables9GG(X)H(XXXX)-(XXXX)M
62.5/125µm are offered in XGLO . . . . and
. . . . . .LightSystem M = Meters configurations
. . . . . . LightSystem Multimode 62.5/125 supporting high-
OM1, XGLO Multimode
5 = 50/125µm . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 50/125 OM3 and OM4, Singlemode 0S1/OS2
speed, applications such8 =as Gigabit
OS1/OS2 Singlemode
Ethernet, 10 Gigabit Ethernet and Fiber Channel.
Fiber Type Performance Length
Cable Rating 6 = 62.5/125µm G101 = OM1 62.5/125µm M = Meters
H = LSOH - 3C T301 . .=. OM3
Ordering Information: 5 = 50/125µm 9GG(X)H(XXXX)-(XXXX)M
8 = OS1/OS2 Singlemode . . . . . . . . . . . . . . . . . . . . T501
. . . 50/125µm
. . . . =. OM4
. . . . . . .Laser
. . . .50/125um
. . .Optimised
. . . . . . Laser
LightSystem Multimode 62.5/125 OM1, XGLO Multimode
. . . Optimised
. 50/125 OM3 and OM4, Singlemode 0S1/OS2
Fiber Count (Subunit) Performance
E201 = OS1/OS2 Singlemode
002B = 2 (1 Tube with 2 Fibers)Cable Rating Fiber024D
Type= 24 (4 Tubes with 6 Fibers) G101 = OM1 62.5/125µm Length
004C = 4 (1 Tube with 4 Fibers)H = LSOH - 3C 036G = 36 (6 Tubes with 6 Fibers)
6 = 62.5/125µm T301 = OM3 50/125µm Laser Optimised M = Meters
006D = 6 (1 Tube with 6 Fibers) 048G = 48 (4 Tubes with 12 Fibers)
5 = 50/125µm T501 = OM4 50/125um Laser Optimised
Fiber
008E Count
= 8 (1 (Subunit)
Tube with 8 Fibers) 072G = Singlemode
8 = OS1/OS2 72 (6 Tubes with 12 Fibers) E201 = OS1/OS2 Singlemode
002B 2 (1(1Tube
012G = 12 Tubewith
with212Fibers)
Fibers) 024D
096G = 2496 (4
(8 Tubes with 612Fibers)
Fibers) Performance
004C
016D = 16
4 (1(2Tube
Tubeswith FibersCable
with4 6Fibers) and 1Rating 036G = 144
Tube of 4 Fibers) 144G 36 (6(12
Tubes withwith
Tubes 6 Fibers)
12 Fibers) G101 = OM1 62.5/125µm
006D = 6 (1 Tube with 6 Fibers)H = LSOH - 3C 048G = 48 (4 Tubes with 12 Fibers) T301 = OM3 50/125µm Laser Optimised
Jacket (Black) Jacket (Black)
008E = 8 (1 Tube with 8 Fibers)Jacket (Black) 072G = 72 (6 Tubes with 12 Fibers) T501 = OM4 50/125um Laser Optimised
• Material: LSOH - LSOH Compound • Material: LSOH - LSOH Compound
Fiber Count (Subunit)
012G = 12 (1 Tube with 12 Fibers) 096G = 96 (8 Tubes with 12 Fibers) E201 = OS1/OS2 Singlemode
• Material: LSOH - LSOH Compound
002B= 16
= 2(2(1Tubes
Tubewith
with62Fibers
Fibers)and 1 Tube of 4 Fibers) 144G024D= =144
24(12
(4 Tubes Water Blocking Swellable Tape Water Blocking Swellable Tape
016D Tubes with
with 612Fibers)
Fibers)
004C = 4 (1 Tube with 4 Fibers) Aramid Yarn 036G = 36 (6 Tubes with 6 Fibers)
Gel
JacketFilled Buffer Tubes
(Black) Gel Filled
Jacket Buffer Tubes
(Black)
• Water blocking swellable yarn
006D = 6 (1 Tube with 6 Fibers) 048G = 48 (4 Tubes with 12 Fibers)
Jacket (Black) • Material: LSOH - LSOH Compound • Material: LSOH - LSOH Compound
008E = 8 (1 Tube with 8 Fibers) Identification 072G = 72 (6 Tubes with 12 Fibers) Aramid Yarn Aramid Yarn
• Material: LSOH - LSOH Compound
012G = 12 (1 Tube with 12 Fibers)
• Colour-coded fibers and tubes096G = 96 (8 Tubes with 12 Fibers) Water Blocking
• Water blocking Swellable
swellable yarn Tape •Water Blocking
Water blocking Swellable
swellable yarn Tape
A ramid Yarn Central Strength Member Central Strength Member
016D = 16 (2 Tubes with 6 FibersRip and
Cord1 Tube of 4 Fibers) 144G = 144 (12 Tubes with 12 Fibers) Gel Filled Buffer Tubes Gel Filled Buffer Tubes
•• Water • Light-weight solid dielectric • Light-weight solid dielectric
Appliedblocking swellable
longitudinally yarncable jacket
under
RipJacket
Cord (Black) Rip Cord (Black)
Jacket
Identification
Gel Filled Central Tubes Aramid Yarn Aramid Yarn
Jacket (Black) • Material:
• Applied LSOH - LSOH
longitudinally underCompound
cable jacket • Applied longitudinally
• Material: under
LSOH - LSOH cable jacket
Compound
• Colour-coded fibers and tubes • Water blocking swellable yarn • Water blocking swellable yarn
2 - 12 Strands • Material: LSOH - LSOH Compound 16 - 36 Strands Identification
Central
WaterStrength
BlockingMember
Swellable Tape
48 - 144 Strands Identification
Central
WaterStrength
BlockingMember
Swellable Tape
Rip Cord • Colour-coded fibers and tubes • Colour-coded fibers and tubes
Aramid
• Applied Yarn under cable jacket
longitudinally
• Light-weight solid dielectric • Light-weight solid dielectric
RipGel Filled Buffer Tubes
Cord RipGel Filled Buffer Tubes
Cord
• Water blocking swellable yarn
Note: The 2-12 strand rodent resistant
Gel Filled cables
Central feature a glass yarn design with a high tensile
Tubes
• Applied
strength and
longitudinally
degree of rodent protection which is effective
under cable jacket
in many cases. The func-
• Applied longitudinally under cable jacket
Aramid Yarn
tion of
2 -glass
12 Strands
Identification
yarns differs from the other rodent protection materials such
16 - 36 as a 100% metallic
Strands armour
Identification protection. The glass yarns
48 - provide
144 ofAramid
a degreeIdentification
Strands
Yarn
protection because it is dis-
• Water blocking swellable yarn • Water blocking swellable yarn
agreeable and unpleasant for• Colour-coded fibers to
most rodents andgnaw
tubes the glass yarns.
• Colour-coded fibers and tubes • Colour-coded fibers and tubes
Central Strength Member Central Strength Member
Rip Cord
• Light-weight solid dielectric • Light-weight solid dielectric
Note: The 2-12 strand rodent resistant
• Applied cablesunder
longitudinally feature
cableajacket
glass yarn design with a high tensile strength and degree of rodent protection which is effective
Rip Cord Rip in
Cordmany cases. The func-
tionLIGHTSYSTEM
of glass yarnsMultimode
differs from
Gel the
Filled
62.5/125, other
OM1rodentXGLO
Central protection materials such as a 100% metallic
Tubes armour protection. The glass yarns provide a degree of• Applied
protection because underit cable
is dis-
300 Multimode 50/125, OM3 XGLO
• Applied 550 Multimode
longitudinally 50/125,
under cable jacket OM4 XGLO Singlemode, OS1/OS2
longitudinally jacket
agreeable andStrands
2 - 12 unpleasant for most rodents to gnaw the glass yarns. 16 - 36 Strands Identification 48 - 144 Strands Identification
STANDARDS COMPLIANCE STANDARDS COMPLIANCE STANDARDS COMPLIANCE STANDARDS COMPLIANCE
• Colour-coded fibers and tubes • Colour-coded fibers and tubes
• ISO/IEC 11801:2002 OM1 (62.5/125) • ISO/IEC 11801:2002 OM3 • ISO/IEC 11801:2002 OM3 • ISO/IEC 11801:Ed 2.0 Amendment:1:2008
Note: The 2-12 strand rodent resistant cables•feature
• ANSI/TIA-568.3-D a glass yarn design with a high tensile
ANSI/TIA-568.3-D strength
• ISO/IEC and degree
11801:2002 of rodent
Ammendment • ANSI/TIA-568.3-D
2 OM4 protection which is effective in many cases. The func-
LIGHTSYSTEM Multimode 62.5/125, OM1 XGLO 300 Multimode 50/125, OM3 XGLO 550 Multimode 50/125, OM4 XGLO Singlemode, OS1/OS2
tion of glass yarns differs from the other rodent
• ANSI/TIA-598-D protection materials such as a 100% metallic
• ANSI/TIA-598-D armour protection. The glass yarns provide
• ANSI/TIA-568.3-D a degree of protection because it is dis-
• ANSI/TIA-598-D
STANDARDS COMPLIANCE
• ANSI/TIA-492 unpleasant for most rodents to•STANDARDS
STANDARDS COMPLIANCE
agreeable andAAAB gnaw theCOMPLIANCE
glass
ANSI/TIA-492 AAAC yarns.
STANDARDS COMPLIANCE
• ANSI/TIA-598-D • Telcordia GR-409-CORE
• ISO/IEC 11801:2002 OM1 (62.5/125) • ISO/IEC 11801:2002 OM3 • ISO/IEC 11801:2002 OM3 • ISO/IEC 11801:Ed 2.0 Amendment:1:2008
• Telcordia GR-409-CORE • Telcordia GR-409-CORE • ANSI/TIA-492 AAAD • ITU-T G.652 C/D
• ANSI/TIA-568.3-D • ANSI/TIA-568.3-D • ISO/IEC 11801:2002 Ammendment 2 OM4 • ANSI/TIA-568.3-D
• IEC 60332-3 • IEC 60332-3 • IEC 60793-2-10 Fiber Type A1a.3 • IEC 60332-3
• ANSI/TIA-598-D
LIGHTSYSTEM Multimode 62.5/125, OM1 • ANSI/TIA-598-D • ANSI/TIA-568.3-D • ANSI/TIA-598-D
IEC 60332-1-2 (Single strand) XGLO
IEC 300 Multimode
60332-1-2 (Single strand)50/125, OM3 XGLO 550
• Telcordia Multimode 50/125, OM4
GR-409-CORE XGLO
IEC Singlemode,
60332-1-2 OS1/OS2
(Single strand)
• ANSI/TIA-492 AAAB • ANSI/TIA-492 AAAC • ANSI/TIA-598-D • Telcordia GR-409-CORE
STANDARDS
IEC 60754-2 COMPLIANCE
(Acid gas) STANDARDS
IEC 60754-2 COMPLIANCE
(Acid gas) STANDARDS
• IEC 60332-3 COMPLIANCE STANDARDS
IEC 60754-2 COMPLIANCE
(Acid gas)
• Telcordia GR-409-CORE • Telcordia GR-409-CORE • ANSI/TIA-492 AAAD • ITU-T G.652 C/D
• ISO/IEC
IEC 61034-211801:2002 OM1 (62.5/125)
(Smoke density) • ISO/IEC
IEC 61034-211801:2002 OM3
(Smoke density) • ISO/IEC
IEC 60332-1-211801:2002 OM3
(Single strand) • ISO/IEC
IEC 61034-211801:Ed 2.0 Amendment:1:2008
(Smoke density)
• IEC 60332-3 • IEC 60332-3 • IEC 60793-2-10 Fiber Type A1a.3 • IEC 60332-3
• ANSI/TIA-568.3-D • ANSI/TIA-568.3-D • ISO/IEC
IEC 60754-211801:2002
(Acid gas) Ammendment 2 OM4 • ANSI/TIA-568.3-D
IEC 60332-1-2 (Single strand) IEC 60332-1-2 (Single strand) • Telcordia GR-409-CORE IEC 60332-1-2 (Single strand)
• ANSI/TIA-598-D • ANSI/TIA-598-D • ANSI/TIA-568.3-D
IEC 61034-2 (Smoke density) • ANSI/TIA-598-D
IEC 60754-2 (Acid gas) IEC 60754-2 (Acid gas) • IEC 60332-3 IEC 60754-2 (Acid gas)
• ANSI/TIA-492 AAAB • ANSI/TIA-492 AAAC • ANSI/TIA-598-D • Telcordia GR-409-CORE
IEC 61034-2 (Smoke
APPLICATIONS density)
SUPPORT IEC 61034-2 (Smoke
APPLICATIONS density)
SUPPORT IEC 60332-1-2 (Single
APPLICATIONS strand) IEC 61034-2 (Smoke density)
• Telcordia GR-409-CORE • Telcordia GR-409-CORE • ANSI/TIA-492 SUPPORT
AAAD APPLICATIONS
• ITU-T G.652 C/DSUPPORT
APPLICATION DISTANCE (m) APPLICATION DISTANCE (m) IEC 60754-2 (Acid gas)
APPLICATION DISTANCE (m) APPLICATION
• IEC 60332-3 DISTANCE (m)
• IEC 60332-3 • IEC 60332-3 • IEC 60793-2-10 Fiber Type A1a.3
10GBASE-S (850 nm) IEC 61034-2 (Smoke
nm) density) 550
IEC 60332-1-2 (Single strand) N/A 10GBASE-S (850 nm)
IEC 60332-1-2 (Single strand)300 10GBASE-S
• Telcordia(850
GR-409-CORE 10GBASE - L (1310 nm)
IEC 60332-1-2 (Single strand) 8,000
62.5/125µm 26 10GBASE-LX4 (1300
IEC 60754-2 (Acid
APPLICATIONS gas)
SUPPORT IEC 60754-2 (Acidnm)
APPLICATIONS SUPPORT gas) 300 10GBASE-LX4
• IEC 60332-3 (1300 nm)
APPLICATIONS SUPPORT
300 10GBASE- E (1550(Acid
IEC 60754-2 nm) gas)
APPLICATIONS SUPPORT
30,000
1000BASE-S (850 nm) N/A 1000BASE-S (850(Smoke
nm) density) 1000 1000BASE-S (850 nm) 1100 10G IEC
Fiber61034-2
Channel (Smoke
(Serial-1310 nm) 10,000
IEC 61034-2 (Smoke density) DISTANCE (m) IEC 61034-2 IEC 60332-1-2 (Single strand)DISTANCE density)
APPLICATION
62.5/125µm 275 APPLICATION DISTANCE (m) APPLICATION (m) APPLICATION DISTANCE (m)
1000BASE-LX (1300 nm) 600 1000BASE-LX
IEC (1300
60754-2 nm)
(Acid gas) 600 10G Fiber Channel (WDM -1310 nm) 10,000
10GBASE-S
Fiber Channel(850
266nm)
(1300 nm) N/A
1,500 10GBASE-S (850 nm) 300 10GBASE-S (850 nm) 550 10GBASE - L (1310 nm) 8,000
Fiber Channel 266 (1300 nm) 1,500 FiberIEC
Channel 266
61034-2 (1300
(Smoke nm) 1,500 1000BASE-LX (1300 nm) 5,000
62.5/125µm
ATM 622 (1300 nm) 26
500 10GBASE-LX4 (1300 nm) 300 10GBASE-LX4 (1300 nm) density)300 10GBASE- E (1550 nm) 30,000
ATM 622 (1300 nm) 500 ATM 622 (1300 nm) 500 Fiber Channel 266/1062 (1300 nm) 10,000
1000BASE-S
ATMAPPLICATIONS(850 nm)
155 (1300 nm) SUPPORT 2,000 N/A 1000BASE-S (850 nm) 1000 1000BASE-S (850 nm) 1100 10G Fiber Channel (Serial-1310 nm) 10,000
ATMAPPLICATIONS
155 (1300 nm) SUPPORT 2,000 ATMAPPLICATIONS
155 (1300 nm) SUPPORT 2,000 ATMAPPLICATIONS
52/I55/622 (1300 SUPPORT
nm) 15,000
62.5/125µm
ATMAPPLICATION
52 (1300 nm) 275
3,000 1000BASE-LX (1300 nm) 600 1000BASE-LX (1300 nm) 600 10G Fiber Channel (WDM -1310 nm) 10,000
DISTANCE (m) ATMAPPLICATION
52 (1300 nm) DISTANCE (m)
3,000 ATMAPPLICATION
52 (1300 nm) DISTANCE (m)
3,000 APPLICATION DISTANCE (m)
Fiber (Original-1300
FDDI Channel 266 (1300nm) nm) 1,500
2,000 Fiber Channel 266 (1300 nm) 1,500 Fiber Channel 266 (1300 nm) 1,500 1000BASE-LX (1300 nm) 5,000
10GBASE-S (850 nm) N/A 10GBASE-S (850 nm)
FDD1 (Original-1300 nm) 300
2,000 10GBASE-S (850 nm)
FDD1 (Original-1300 nm) 550
2,000 10GBASE - L (1310 nm) 8,000
ATM 622
100BASE-FX (1300 nm)
(1300 nm) 500
2,000 ATM 622 (1300 nm) 500 ATM 622 (1300 nm) 500 Fiber Channel 266/1062 (1300 nm) 10,000
62.5/125µm 26 10GBASE-LX4
100BASE (1300
-FX (1300 nm)nm) 300
2,000 10GBASE-LX4
100BASE-FX (1300
(1300 nm)nm) 300
2,000 10GBASE- E (1550 nm) 30,000
ATM 155 (1300 nm) 2,000
1000BASE-S (850 nm) N/A ATM 155 (1300 nm) 2,000 ATM 155 (1300 nm) 2,000 ATM 52/I55/622 (1300 nm) 15,000
ATM 52 (1300 nm) 3,000 1000BASE-S (850 nm) 1000 1000BASE-S (850 nm) 1100 10G Fiber Channel (Serial-1310 nm) 10,000
62.5/125µm 275 ATM 52 (1300 nm) 3,000 ATM 52 (1300 nm) 3,000
FDDI (Original-1300 nm) 2,000 1000BASE-LX (1300 nm) 600 1000BASE-LX (1300 nm) 600 10G Fiber Channel (WDM -1310 nm) 10,000
Fiber Channel 266 (1300 nm) 1,500 FDD1 (Original-1300 nm) 2,000 FDD1 (Original-1300 nm) 2,000
100BASE-FX (1300 nm) 2,000 Fiber Channel 266 (1300 nm) 1,500 Fiber Channel 266 (1300 nm) 1,500 1000BASE-LX (1300 nm) 5,000
ATM 622 (1300 nm) 500 100BASE -FX (1300 nm) 2,000 100BASE-FX (1300 nm) 2,000
ATM 622 (1300 nm) 500 ATM 622 (1300 nm) 500 Fiber Channel 266/1062 (1300 nm) 10,000
ATM 155 (1300 nm) 2,000
ATM 155 (1300 nm) 2,000 ATM 155 (1300 nm) 2,000 ATM 52/I55/622 (1300 nm) 15,000
XGLO & LightSystem Indoor/Outdoor
® ®

LooseTube - International
LightSystem Gigabit Ethernet Fiber Optic Cable
Minimum Performance Parameters for LightSystem 62.5/125μm Multimode Fiber
Maximum Minimum Modal Guaranteed Gigabit
Fiber Wavelength
Attenuation Bandwidth Transmission Distance Index of Refraction
Type nm (dB/km) (MHz•km) Meters (Feet)
62.5/125 850 3.5 200 275 (902) 1.495
(OM1) 1300 1.0 500 550 (1804) 1.490

*The protocol pertinent to the transmission distance as noted is Gigabit Ethernet per IEEE 802.3:2005.

Minimum Performance Parameters for XGLO 50/125μm Multimode Fiber


Guaranteed Gigabit Guaranteed 10 Gigabit
Fiber Minimum Bandwidth Maximum Attenuation Group Index
Transmission Transmission
Type Distance (m) Distance (m) (MHz•km) (dB/km) of Refraction

850 nm 1300 nm 850 nm† 1300 nm†† 850 nm 1300 nm 850 nm 1300 nm 850 nm 1300 nm
50/125 RML - 2000
(OM3) 1000 600 300 300 OFL - 1500 OFL - 500 3.0 1.0 1.483 1.479

50/125 RML - 4700


(OM4) 1100 600 550 300 OFL - 3500 OFL - 500 3.0 1.0 1.483 1.479

† 10GBASE-S †† 10GBASE-LX4
Minimum Performance Parameters for XGLO Singlemode Fiber

Fiber Wavelength Maximum Zero Dispersion Zero Dispersion Index of


Attenuation
Type (nm) (dB/km) Wavelength (nm) Slope (nm2-km) Refraction

Singlemode 1310 0.40 1312 ± 10 ≤0.089 1.468


(OS1/OS2) 1550 0.30 1312 ± 10 ≤0.089 1.468
1310 - 1625 <0.40 1312 ± 10 ≤0.089 1.468

XGLO and LightSystem Indoor/Outdoor LooseTube Physical Specifications


PHYSICAL SPECIFICATIONS (All Values Are Nominal)
Maximum Pulling Tension Nominal
Nominal
Fiber Cable Diameter Newtons Net Weight
Count mm kg/k
Installation Long Term
2 7.7 1000 500 67 m
4 7.7 1000 500 67
6 7.7 1000 500 67
8 7.7 1000 500 67

SS_XGLO_LS_In_Out_LoosTube_INT Rev.H 2/18


12 7.7 1000 500 67
16 10.1 1800 1200 103
24 10.1 1800 1200 103
36 10.1 1800 1200 103
48 10.8 1800 1200 115
SS_XGLO_LS_In_Out_LoosTube_INT RevI 7/22

72 10.8 1800 1200 115


96 12.0 1800 1200 139
144 12.0 1800 1200 139

Fiber Maximum Crush Operating Storage Minimum Bend Radius


Count Resistance Temperature °C Temperature °C
(N/mm) Installation Long Term
2-12 10 -40 to 60 (-40 to 140) -40 to 60 (-40 to 140) 20 x DIA. 10 x DIA.
16-144 22 -40 to 60 (-40 to 140) -40 to 60 (-40 to 140) 20 x DIA. 10 x DIA.

Custom lengths and jacket colours are available upon request. Contact our Customer Service Department for more information.
© 2018 Siemon

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