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Qualified Partner Program Fiber Optic Cables basics - GOF, HCS and POF
Qualified Partner Program Fiber Optic Cables basics - GOF, HCS and POF
Cable structure
Cable structure
Cable structure
Cable structure
F.O. cable construction generalities
F.O. cable construction generalities
F.O. cable construction generalities
F.O. cable construction generalities
F.O. cable construction generalities
F.O. cable construction generalities
F.O. cable construction generalities
F.O. cable construction generalities
F.O. cable construction generalities
F.O. cable construction generalities
The optical fibers we are considering
The optical fibers we are considering
Outer jacket material fire and environmental properties (FRNC, LSOH,
Outer jacket material fire and environmental properties (FRNC, LSOH,
Fiber primary coating and color coding
Fiber primary coating and color coding
Fiber primary coating and color coding
Fiber primary coating and color coding
Fiber primary coating and color coding
Fiber primary coating and color coding
Mini-Breakout cable
Mini-Breakout cable
Full-breakout cable
Full-breakout cable
Full-breakout cable
Full-breakout cable
Full-breakout cable
Full-breakout cable
Loose tube cable
Loose tube cable
Loose tube cable
Loose tube cable
Stranded loose tube cable
Stranded loose tube cable
Aerial cables (figure 8 design)
Aerial cables (figure 8 design)
Aerial cables (all dielectric, self supporting - ADSS-design)
Aerial cables (all dielectric, self supporting - ADSS-design)
Metallic cables
Metallic cables
Index profiles
Index profiles
Overview - POF (PMMA and perfluorinated)
Overview - POF (PMMA and perfluorinated)
Step Index polymer optical fiber (SI-POF)
Step Index polymer optical fiber (SI-POF)
Attenuation spectra of PMMA fiber
Attenuation spectra of PMMA fiber
Multistep Index Plastic Optical Fiber (GI-POF)
Multistep Index Plastic Optical Fiber (GI-POF)
Graded Index Plastic Optical Fiber (GI-POF)
Graded Index Plastic Optical Fiber (GI-POF)
Graded Index Plastic Optical Fiber (GI-POF)
Graded Index Plastic Optical Fiber (GI-POF)
Attenuation spectra of perfluorinated POF
Attenuation spectra of perfluorinated POF
Simplex and Duplex cables (PMMA fiber)
Simplex and Duplex cables (PMMA fiber)
Duplex cables (perfluorinated fiber)
Duplex cables (perfluorinated fiber)
Duplex cables (perfluorinated fiber)
Duplex cables (perfluorinated fiber)
Cable for harsh environment (PMMA fibers)
Cable for harsh environment (PMMA fibers)
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Qualified Partner Program Fiber Optic Cables basics - GOF, HCS and POF

содержание презентации «Qualified Partner Program Fiber Optic Cables basics - GOF, HCS and POF.ppt»
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1Qualified Partner Program Fiber Optic 19Outer sheath. Fiber Optic Cables / Page
Cables basics - GOF, HCS and POF. Felice 19.
Guarna, Training Program Manager Wetzikon, 20Stranded loose tube cable. Tube with
January 2006. up to 24 fibers (250µm). Several layers of
2Agenda. Cable structure Primary tubs for 432 fibers. Central strength
coating and buffers Armouring Outer jacket member. Strength members. Outer sheath.
GOF cables HCS cables PMMA cables. Fiber Fiber Optic Cables / Page 20.
Optic Cables / Page 2. 21Aerial cables (figure 8 design). Steel
3Cable structure. Fiber is mechanically suspension wire. Tubes with fibers
weak Cable adds protection and prevents (250µm). Central strength member. Outer
physical damage during installation and sheath. Installation load should be
use. Combination and quantity of calculated. Wind, ice and snow load as
protections and material as well as well as possible electrical fields should
construction are strictly dependent on be considered during planning. Fiber Optic
cable environment. Indoor - Ducts - Trays Cables / Page 21.
- Building raiser - Plastic pipes - Raised 22Aerial cables (all dielectric, self
floors - Plenum (US). Outdoor - Empty supporting - ADSS-design). Tubes with
pipes - Ducts - Trays - Direct burial - fibers (250µm). Central strength member.
Aerial. Fiber Optic Cables / Page 3. Strength member. Outer sheath.
4F.O. cable construction generalities. Installation load should be calculated.
Fiber. Secondary Coating (Buffer). Outer Wind, ice and snow load as well as
jacket. Armouring. Fiber Optic Cables / possible electrical fields should be
Page 4. considered during planning. Fiber Optic
5The optical fibers we are considering. Cables / Page 22.
PMMA Polimetilmetalcrilate. HCSF Hard Clad 23Metallic cables. Aerial cable Aerial
Silica Fiber. GOF Glass Optical Fiber. ground wire. Stainless steel loose tube.
Fiber Optic Cables / Page 5. Fibers. Aldrey, steel or ACS wires.
6Seconday coating (buffer types). Tight Installation load should be calculated.
Buffer A thermoplastic material is Wind, ice and snow load as well as
extruded tight on one fiber or around possible electrical fields should be
several fibers. They are called ribbons. considered during planning. Fiber Optic
Semi-Tight Buffer Loosely buffered with a Cables / Page 23.
few µm of interspaces. Optical Fiber. 24PCF cables. Polymer clad fiber.
Tight Sheath. Gel-like Compound or dry. 25POF (Plastic Optical Fiber)
Optical Fiber. Loose Sheath. Fiber Optic terminology. Core Acrylic Acrylic Glass
Cables / Page 6. Cladding Fluorinated Polyperfluoro
7Buffer types. Single Loose Tube Tube Fluorinated butenylvinylether. PMMA PCF
with one fiber. Loose sheath with some traditional perfluorinated. PROCESS Plasma
hundreds of millimeters of inner space. OVD draw extrusion extrusion. Fiber Optic
Loose tube (2 – 4 mm) Loose sheath/tube Cables / Page 25.
with 2 - 24 optical fibers. The hollow 26Cables. Basically similar or same
space is filled with a gel. Gel-like construction as GOF Larger core Simplex
Compound or dry. Optical Fiber. Loose and Duplex figure 8 or round cable Loose
Sheath. Gel-like Filling Compound. Optical tube Applications Medical
Fiber. Loose Sheath. Fiber Optic Cables / Industrial/Scientific. Laser surgery
Page 7. Angioplasty Lithotripsy Urology
8Buffer characteristics. ? ? ? ? ? ? 0 Dermatology Photodynamic therapy.
– 50 cm. ? ? ? ? ? ? ? ? ? ? Tight. Semi Spectroscopy Remote illumination Sensors
tight. Single loose tube. Multi loose Thomson scattering. Fiber Optic Cables /
tube. Direct connector mounting. n/a. Page 26.
stripping. 0 – 2 cm. n/a. n/a. GOF. 27PMMA plastic optical fiber. Plastic
PMMA-POF. n/a. n/a. Perfluorinated POF. optical fiber.
n/a. n/a. HCS. n/a. n/a. Fiber Optic 28Index profiles. PMMA Step Index core =
Cables / Page 8. Constant refractive index. PMMA Graded
9Armoring. Depending on the environment Index Core = several layer of material
(in or outdoor) the armouring can vary: with different refractive indexes.
Aramid yarn for pulling and crushing Perfluorinated Polymer Graded index Core =
strength Glass yarn for pulling strength parabolic index. Fiber Optic Cables / Page
and crush rodent protection Water blocking 28.
tape/gel resists longitudinal water 29Overview - POF (PMMA and
intrusion Corrugated steel tape rodent perfluorinated). Index profile. Type of
protection chemical resistant. Fiber Optic fiber. Core ? NA. Attenuation. Bandwidth.
Cables / Page 9. SI-POF (PMMA) SI-POF low NA. 980µm 980µm.
10Outer jacket protections. The armoring 0.5 0.3. 180dB/km. ~ 50 MHz . 100m ~ 100
and sheath material are designed to MHz . 100m. DSI-POF. 980µm. 0.3. 180dB/km.
protect the fiber from the following ~ 100 MHz . 100m. GI-POF (PMMA). 980µm
effects. The material also influences easy 500µm. 0.2. 200dB/km. ~1.5 GHz . 100m.
handling and flexibility for specific GI-POF (PF). 62.5/245 120/450 200/490.
application such as bending, torsion, 0.3. 50dB/km. ~ 3 GHz . 100m. Fiber Optic
flexing, kink, repeated bending. Cables / Page 29.
Mechanical IEC60794-1. Thermal IEC60794-1. 30Step Index polymer optical fiber
Chemical. Tensile force. Heat. Water. (SI-POF). Core ? 980 ?m Cladding ? 1000 ?m
Abrasion. Cold. Gas. Impact. Shock. Fuels. Attenuation 180 dB/km Bandwidth 10 MHz .
Acids. Fiber Optic Cables / Page 10. 100m (100 MHz . 100m) Wavelength 650nm
11Outer jacket material properties. ? ? N.A. 0.5 (Low N.A. 0.3) Ader tight buffer
? ?? ??? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? Advantage easy, fast and inexpensive
? ? ? ? ? ? ? ?? ? ? ? ? ? ? ? ? ? ? ? ? ? connection technology commercially
? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? available (Mitsubishi, Toray, Fuji,
Material properties. PE. PA. PVC. FRNC. Optimedia) Disadvantage high attenuation,
PUR. Halogen free. Flame retardant. Low low bandwidth. Fiber Optic Cables / Page
smoke, corrosive gases. Abrasion 30.
resistance. Elasticity. Water absorption. 31Attenuation spectra of PMMA fiber.
Fuels. Petroleum. Alcohol. Oxidants. „Light“. Wavelength nm. Attenuation dB/km.
acids. Please note: depending on the red. 650. 180. amber. 570. 66. green. 520.
recipe of the material the properties may 73. Fiber Optic Cables / Page 31.
change. Fiber Optic Cables / Page 11. 32Multistep Index Plastic Optical Fiber
12Outer jacket material fire and (GI-POF). Core ? 900 ?m Cladding ? 1000 ?m
environmental properties (FRNC, LSOH, Attenuation 180 dB/km Bandwidth 100 MHz .
LSZH). In case of a fire the material km Wavelength 650nm Cable tight buffer
should not spread fire and should not emit Advantage easy, fast and inexpensive
toxic and corrosive gas to protect first connection technology commercially
people and then equipment. Flame available (Mitsubishi, Fuji, Optimedia)
retardant. Self extinguishing when source Disadvantage high attenuation. Fiber Optic
of fire is removed. IEC 60332-1 (Single Cables / Page 32.
cable) IEC 60332-3 (Bundle). Smoke 33Graded Index Plastic Optical Fiber
density. Smoke density as a function of (GI-POF). Core ? 120 ?m Cladding ? 500 ?m
light density Visibility. IEC61034. Attenuation 50 dB/km Bandwidth 1000 MHz*km
Halogen gas formation. Halogen free - no Wavelength 1330nm Cable loose buffer
toxicity or acid gas. IEC 60754-1. Circuit (extra strength members) Advantage low
integrity under fire. Data transmission attenuation, high bandwidth Disadvantage
during a period of time under fire termination, expensive, similar to GOF
conditions. IEC60331-25. Fiber Optic commercially not available (Asahi, Nexans,
Cables / Page 12. Chromis). Fiber Optic Cables / Page 33.
13GOF cables. Glass optical fiber. 34Attenuation spectra of perfluorinated
14Fiber primary coating and color POF. „Light“. Wavelength nm. Attenuation
coding. Primary Coating ? 250?m. Cladding dB/km. infrared. 850. 20. 1300. 50. Fiber
? 125?m. Fiber Core ? x ?m (x = 9, 50, Optic Cables / Page 34.
62.5). Color codes for fiber and buffer 35Plastic optical fiber. IEC 60793-2-4 –
Each fiber in a cable is individually Specification for category A4 multimode
marked. Country or manufacturer specific fiber. A4a. A4b. A4c. A4d. A4e. A4f. A4g.
color coding order. Fiber Optic Cables / A4h. Core ? (µm). Cladd ? (µm). NA.
Page 14. Buffered. cabled. Operating wavelength
15DIN coding for fiber optic indoor (nm). *. *. *. *. 500. 200. 120. 62.5.
Cables. Fiber Optic Cables / Page 15. 1000. 750. 500. 1000. 750. 490. 490. 245.
16DIN coding for fiber optic outdoor 0.50. 0.50. 0.50. 0.30. 0.25. 0.19. 0.19.
cables. Position. Code. Notes. Position. 0.19. yes. yes. yes. yes. no. no. no. no.
Code. Notes. Outdoor cable metallic yes. yes. yes. yes. yes. yes. yes. yes.
strength member in the center air tube 650. 650. 650. 650. 650. 650, 850, 1300.
Loose tube metallic twisting element 650, 850, 1300. 850, 1300. * Typically 15
filling compound in the void PE-jacket to 35 µm smaller than the cladding
Composite layer sheath of Al-tape and PE diameter. * Typically 15 to 35 µm smaller
PE-jacket with nonmetallic strain relief than the cladding diameter. * Typically 15
elements Aluminum tape and PE with to 35 µm smaller than the cladding
nonmetallic strain relief elements Amour diameter. * Typically 15 to 35 µm smaller
Amour with PVC-jacket Amour with than the cladding diameter. * Typically 15
PE-jacket. 1 2 3 4 5 6 7. A- (ZS) W D S F to 35 µm smaller than the cladding
2Y (L)2Y (ZN)2Y (L)(ZN)2Y B BY B2Y. 8 9 10 diameter. * Typically 15 to 35 µm smaller
11 12 13 14 15. n or nxm E G n n n B F F H than the cladding diameter. * Typically 15
n LG BD u. Number of fiber or number of to 35 µm smaller than the cladding
loose tubes x no. of fiber per tube (e.g. diameter. * Typically 15 to 35 µm smaller
6x4... ) Single-mode fiber pure silica than the cladding diameter. Fiber Optic
Multi-mode fiber pure silica Field Cables / Page 35.
diameter (µm) at SM Core diameter (µm) at 36Simplex and Duplex cables (PMMA
MM cladding diameter (µm) attenuation fiber). Tight buffer. Core. Cladding.
(dB/km) wavelength 850 nm at MM 1300 nm at Tight Buffer Tightly buffered with a
MM 1310 nm at SM 1550 nm at SM Dispersion thermoplastic material. PMMA POF - Step
(ps/nm x km) at single-mode fiber; Index, Multistep, Graded Index. Tight
Bandwidth (MHz/km) at multi-mode fibers buffer. Core. Cladding. Fiber Optic Cables
Layer-stranding Unit stranding Non / Page 36.
stranding. Fiber Optic Cables / Page 16. 37Duplex cables (perfluorinated fiber).
17Mini-Breakout cable. Distribution Single loose tube Loose sheath with air
cable Easy direct connector mounting Small cap (µm up to mm). Dry – no gel
dimension flexible. Outer sheath. Perfluorinated POF Graded Index. Outer
Armoring/strength members. Tight or sheath. lose buffer. Core. Cladding.
semi-tight buffer (up to 900µm). Fiber. Strength member. Fiber Optic Cables / Page
Fiber Optic Cables / Page 17. 37.
18Full-breakout cable. Patch Cord 38Cable for harsh environment (PMMA
Distribution cable Direct connector fibers). Outer sheath. Tight Buffer
mounting Strain relieve for individual Tightly buffered with a thermoplastic
fiber. Outer sheath. Armoring/strength material. PMMA POF - Step Index,
members. Tight or semi-tight buffer (up to Multistep, Graded Index Outer sheath and
900µm). Fiber. Zipcord. Figure-0. Fiber strength members e.g. PUR outer sheath and
Optic Cables / Page 18. aramid yarns for drag chain and harsh
19Loose tube cable. Tube with up to 24 industrial environments. Filling element.
fibers (250µm). Strength members. Outer Tight buffer. Core. Cladding. Strength
sheath. Corrugated steel tape. Tube with member. Fiber Optic Cables / Page 38.
up to 24 fibers (250µm). Strength members.
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