Optical fiber communications:
CD-ROM contains: Modeling and simulation program.
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boston [u.a.]
McGraw-Hill
2000
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Ausgabe: | 3. ed. |
Schriftenreihe: | McGraw-Hill series in electrical and computer engineering : Communications and signal processing
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Zusammenfassung: | CD-ROM contains: Modeling and simulation program. |
Beschreibung: | XXI, 602 S. Ill., graph. Darst. CD-ROM (12 cm) |
ISBN: | 0072321016 0072356804 0072360763 |
Internformat
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Datensatz im Suchindex
_version_ | 1804128592009887744 |
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adam_text | OPTICAL FIBER COMMUNICATIONS THIRD EDITION GERD KEISER GTE SYSTEMS AND
TECHNOLOGY CORPORATION BOSTON BURR RIDGE, IL DUBUQUE, IA MADISON, WI NEW
YORK SAN FRANCISCO ST. LOUIS BANGKOK BOGOTA CARACAS LISBON LONDON MADRID
MEXICO CITY MILAN NEW DELHI SEOUL SINGAPORE SYDNEY TAIPEI TORONTO
CONTENTS PREFACE XIX OVERVIEW OF OPTICAL FIBER COMMUNICATIONS 1 1.1
BASIC NETWORK INFORMATION RATES 3 1.2 THE EVOLUTION OF FIBER OPTIC
SYSTEMS 6 1.3 ELEMENTS OF AN OPTICAL FIBER TRANSMISSION LINK 8 1.4
SIMULATION AND MODELING TOOLS 15 1.4.1 CHARACTERISTICS OF SIMULATION AND
MODELING TOOLS / 1.4.2 PROGRAMMING LANGUAGES J 1.4.3 THE PTDS -
SIMULATION AND MODELING TOOL 1.5 USE AND EXTENSION OF THE BOOK 20 7.5.7
REFERENCE MATERIAL / 1.5.2 SIMULATION PROGRAM ON A CD-ROM / 1.5.3
PHOTONICS LABORATORY / 1.5.4 WEB-BASED RESOURCES REFERENCES 21 OPTICAL
FIBERS: STRUCTURES, WAVEGUIDING, AND FABRICATION 25 2.1 THE NATURE OF
LIGHT 26 2.1.1 LINEAR POLARIZATION / 2.1.2 ELLIPTICAL AND CIRCULAR
POLARIZATION J 2.1.3 THE QUANTUM NATURE OF LIGHT 2.2 BASIC OPTICAL LAWS
AND DEFINITIONS 32 2.3 OPTICAL FIBER MODES AND CONFIGURATIONS 35 2.3.1
FIBER TYPES / 2.3.2 RAYS AND MODES / 2.3.3 STEP-INDEX FIBER STRUCTURE /
2.3.4 RAY OPTICS REPRESENTATION / 2.3.5 WAVE REPRESENTATION IN A
DIELECTRIC SLAB WAVEGUIDE 2.4 MODE THEORY FOR CIRCULAR WAVEGUIDES 43
2.4.1 OVERVIEW OF MODES J 2.4.2 SUMMARY OF KEY MODAL CONCEPTS / 2.4.3
MAXWELL S EQUATIONS J 2.4.4 WAVEGUIDE EQUATIONS / 2.4.5 WAVE EQUATIONS
XI XII CONTENTS FOR STEP-INDEX FIBERS / 2.4.6 MODAL EQUATION / 2.4.7
MODES IN STEP-INDEX FIBERS J 2.4.8 LINEARLY POLARIZED MODES / 2.4.9
POWER FLOW IN STEP-INDEX FIBERS 2.5 SINGLE-MODE FIBERS 62 2.5.1
MODE-FIELD DIAMETER J 2.5.2 PROPAGATION MODES IN SINGLE-MODE FIBERS 2.6
GRADED-INDEX FIBER STRUCTURE 65 2.7 FIBER MATERIALS 67 2.7.7 GLASS
FIBERS / 2.7.2 HALIDE GLASS FIBERS J 2.7.3 ACTIVE GLASS FIBERS / ,2.7.4
CHALGENIDE GLASS FIBERS / 2.7.5 PLASTIC OPTICAL FIBERS 2.8 FIBER
FABRICATION 70 2.8.1 OUTSIDE VAPOR-PHASE OXIDATION / 2.8.2 VAPOR-PHASE
AXIAL DEPOSITION / 2.8.3 MODIFIED CHEMICAL VAPOR DEPOSITION / 2.8.4
PLASMA- ACTIVATED CHEMICAL VAPOR DEPOSITION / 2.8.5 DOUBLE-CRUCIBLE
METHOD 2.9 MECHANICAL PROPERTIES OF FIBERS 76 2.10 FIBER OPTIC CABLES 80
PROBLEMS 82 REFERENCES 86 SIGNAL DEGRADATION IN OPTICAL FIBERS 91 3.1
ATTENUATION 92 5.7.7 ATTENUATION UNITS / 3.1.2 ABSORPTION / 3.1.3
SCATTERING LOSSES J 3.1.4 BENDING LOSSES / 3.1.5 CORE AND CLADDING
LOSSES 3.2 SIGNAL DISTORTION IN OPTICAL WAVEGUIDES 103 3.2.1 INFORMATION
CAPACITY DETERMINATION / 3.2.2 GROUP DELAY / 3.2.3 MATERIAL DISPERSION /
3.2.4 WAVEGUIDE DISPERSION / 3.2.5 SIGNAL DISTORTION IN SINGLE-MODE
FIBERS / 3.2.6 POLARIZATION-MODE DISPERSION J 3.2.7 INTERMODAL
DISTORTION 3.3 PULSE BROADENING IN GRADED-INDEX WAVEGUIDES 115 3.4 MODE
COUPLING 121 3.5 DESIGN OPTIMIZATION OF SINGLE-MODE FIBERS 122 5.5.7
REFRACTIVE-INDEX PROFILES / 3.5.2 CUTOFF WAVELENGTH J 3.5.3 DISPERSION
CALCULATIONS / 3.5.4 MODE-FIELD DIAMETER / 3.5.5 BENDING LOSS PROBLEMS
133 REFERENCES 137 OPTICAL SOURCES 141 4.1 TOPICS FROM SEMICONDUCTOR
PHYSICS 142 4.1.1 ENERGY BANDS / 4.1.2 INTRINSIC AND EXTRINSIC MATERIAL
/ 4.1.3 THE PN JUNCTIONS / 4.1.4 DIRECT AND INDIRECT BAND GAPS J 4.1.5
SEMICONDUCTOR DEVICE FABRICATION 4.2 LIGHT-EMITTING DIODES (LEDS) 150
4.2.1 LED STRUCTURES J 4.2.2 LIGHT SOURCE MATERIALS / 4.2.3 QUANTUM
EFFICIENCY AND LED POWER / 4.2.4 MODULATION OF AN LED CONTENTS XIII 4.3
LASER DIODES 161 4.3.1 LASER DIODE MODES AND THRESHOLD CONDITIONS /
4.3.2 LASER DIODE RATE EQUATIONS J 4.3.3 EXTERNAL QUANTUM EFFICIENCY /
4.3.4 RESONANT FREQUENCIES / 4.3.5 LASER DIODE STRUCTURES AND RADIATION
PATTERNS / 4.3.6 SINGLE-MODE LASERS / 4.3.7 MODULATION OF LASER DIODES /
4.3.8 TEMPERATURE EFFECTS 4.4 LIGHT SOURCE LINEARITY 185 4.5 MODAL,
PARTITION, AND REFLECTION NOISE 188 4.6 RELIABILITY CONSIDERATIONS 190
PROBLEMS 193 REFERENCES 199 POWER LAUNCHING AND COUPLING 204 5.1
SOURCE-TO-FIBER POWER LAUNCHING 205 5.7.7 SOURCE OUTPUT PATTERN J 5.1.2
POWER-COUPLING CALCULATION / 5.1.3 POWER LAUNCHING VERSUS WAVELENGTH /
5.1.4 EQUILIBRIUM NUMERICAL APERTURE 5.2 LENSING SCHEMES FOR COUPLING
IMPROVEMENT 212 5.2.7 NONIMAGING MICROSPHERE J 5.2.2 LASER
DIODE-TO-FIBER COUPLING 5.3 FIBER-TO-FIBER JOINTS 215 5J.7 MECHANICAL
MISALIGNMENT / 5.3.2 FIBER-RELATED LOSSES / 5.3.3 FIBER END-FACE
PREPARATION 5.4 LED COUPLING TO SINGLE-MODE FIBERS 226 5.5 FIBER
SPLICING 228 5.5.7 SPLICING TECHNIQUES / 5.5.2 SPLICING SINGLE-MODE
FIBERS 5.6 OPTICAL FIBER CONNECTORS 231 5.6.1 CONNECTOR TYPES / 5.6.2
SINGLE-MODE FIBER CONNECTORS / 5.6.3 CONNECTOR RETURN LOSS PROBLEMS 236
REFERENCES 238 PHOTODETECTORS 243 6.1 PHYSICAL PRINCIPLES OF PHOTODIODES
244 6.7.7 THE PIN PHOTODETECTOR / 6.1.2 AVALANCHE PHOTODIODES 6.2
PHOTODETECTOR NOISE 252 6.2.1 NOISE SOURCES J 6.2.2 SIGNAL-TO-NOISE
RATIO 6.3 DETECTOR RESPONSE TIME 257 6.3.1 DEPLETION LAYER PHOTOCURRENT
/ 6.3.2 RESPONSE TIME 6.4 AVALANCHE MULTIPLICATION NOISE 262 6.5
STRUCTURES FOR INGAAS APDS 264 6.6 TEMPERATURE EFFECT ON AVALANCHE GAIN
266 6.7 COMPARISONS OF PHOTODETECTORS 267 PROBLEMS 268 REFERENCES 271
XIV CONTENTS OPTICAL RECEIVER OPERATION 274 7.1 FUNDAMENTAL RECEIVER
OPERATION 275 7.7.7 DIGITAL SIGNAL TRANSMISSION / 7.1.2 ERROR SOURCES /
7.7 J RECEIVER CONFIGURATION J 7.1.4 FOURIER TRANSFORM REPRESENTATION
7.2 DIGITAL RECEIVER PERFORMANCE 281 7.2.7 PROBABILITY OF ERROR / 7.2.2
THE QUANTUM LIMIT 7.3 DETAILED PERFORMANCE CALCULATIONS 289 7.5.7
RECEIVER NOISES / 7.3.2 SHOT NOISE / 7.3.3 RECEIVER SENSITIVITY
CALCULATION / 7.3.4 PERFORMANCE CURVES / 7.3.5 NONZERO EXTINCTION RATIO
7.4 PREAMPLIFIER TYPES 305 7.4.1 HIGH-IMPEDANCE FET AMPLIFIERS J 7.4.2
HIGH-IMPEDANCE BIPOLAR TRANSISTOR AMPLIFIERS / 7.4.3 TRANSIMPEDANCE
AMPLIFIER / 7.4.4 HIGH-SPEED CIRCUITS 7.5 ANALOG RECEIVERS 312 PROBLEMS
315 REFERENCES 318 DIGITAL TRANSMISSION SYSTEMS 321 8.1 POINT-TO-POINT
LINKS 322 8.1.1 SYSTEM CONSIDERATIONS / 8.1.2 LINK POWER BUDGET / $.7.5
RISE-TIME BUDGET I 8.1.4 FIRST-WINDOW TRANSMISSION DISTANCE / .7.5
TRANSMISSION DISTANCE FOR SINGLE-MODE LINKS 8.2 LINE CODING 335 8.2.1
NRZ CODES J 8.2.2 RZ CODES / 8.2.3 BLOCK CODES 8.3 ERROR CORRECTION 339
8.4 NOISE EFFECTS ON SYSTEM PERFORMANCE 340 8.4.1 MODAL NOISE / 8.4.2
MODE-PARTITION NOISE / 8.4.3 CHIRPING / 8.4.4 REFLECTION NOISE PROBLEMS
351 REFERENCES 354 ANALOG SYSTEMS 358 9.1 OVERVIEW OF ANALOG LINKS 359
9.2 CARRIER-TO-NOISE RATIO 360 9.2.7 CARRIER POWER J 9.2.2 PHOTODETECTOR
AND PREAMPLIFIER NOISES / 9.2.3 RELATIVE INTENSITY NOISE (RIN) / 9.2.4
REFLECTION EFFECTS ON RIN / 9.2.5 LIMITING CONDITIONS 9.3 MULTICHANNEL
TRANSMISSION TECHNIQUES 367 9.5.7 MULTICHANNEL AMPLITUDE MODULATION /
9.3.2 MULTICHANNEL FREQUENCY MODULATION / 9.3.3 SUBCARRIER MULTIPLEXING
PROBLEMS 374 REFERENCES 377 CONTENTS XV 10 WDM CONCEPTS AND COMPONENTS
379 10.1 OPERATIONAL PRINCIPLES OF WDM 380 10.2 PASSIVE COMPONENTS 383
10.2.1 THE 2X2 FIBER COUPLER J 10.2.2 SCATTERING MATRIX REPRESENTATION /
70.2.5 THE 2X2 WAVEGUIDE COUPLER / 70.2.4 STAR COUPLERS / 70.2.5 MACH-
ZEHNDER INTERFEROMETER MULTIPLEXERS / 10.2.6 FIBER GRATING FILTERS /
70.2.7 PHASE-ARRAY-BASED WDM DEVICES 10.3 TUNABLE SOURCES 405 10.4
TUNABLE FILTERS 408 70.4.7 SYSTEM CONSIDERATIONS / 10.4.2 TUNABLE FILTER
TYPES PROBLEMS 414 REFERENCES 419 11 OPTICAL AMPLIFIERS 423 11.1 BASIC
APPLICATIONS AND TYPES OF OPTICAL AMPLIFIERS 424 77.7.7 GENERAL
APPLICATIONS / 11.1.2 AMPLIFIER TYPES 11.2 SEMICONDUCTOR OPTICAL
AMPLIFIERS 426 77.2.7 EXTERNAL PUMPING / 77.2.2 AMPLIFIER GAIN 11.3
ERBIUM-DOPED FIBER AMPLIFIERS 430 77.5.7 AMPLIFICATION MECHANISM J
11.3.2 EDFA ARCHITECTURE J 11.3.3 EDFA POWER-CONVERSION EFFICIENCY AND
GAIN 11.4 AMPLIFIER NOISE 437 11.5 SYSTEM APPLICATIONS 441 77.5.7 POWER
AMPLIFIERS / 77.5.2 IN-LINE AMPLIFIERS J 11.5.3 PREAMPLIFIERS / 11.5.4
MULTICHANNEL OPERATION / 11.5.5 IN-LINE AMPLIFIER GAIN CONTROL 11.6
WAVELENGTH CONVERTERS 447 11.6.1 OPTICAL-GATING WAVELENGTH CONVERTERS J
11.6.2 WAVE-MIXING WAVELENGTH CONVERTERS PROBLEMS 449 REFERENCES 454 12
OPTICAL NETWORKS 457 12.1 BASIC NETWORKS 458 72.7.7 NETWORK TOPOLOGIES /
12.1.2 PERFORMANCE OF PASSIVE LINEAR BUSES / 12.1.3 PERFORMANCE OF STAR
ARCHITECTURES 12.2 SONET/SDH 467 12.2.1 TRANSMISSION FORMATS AND SPEEDS
/ 12.2.2 OPTICAL INTERFACES / 12.2.3 SONET/SDH RINGS / 12.2.4 SONET/SDH
NETWORKS 12.3 BROADCAST-AND-SELECT WDM NETWORKS 477 12.3.1
BROADCAST-AND-SELECT SINGLE-HOP NETWORKS / 12.3.2 BROADCAST-AND- SELECT
MULTIHOP NETWORKS / 72.5.5 THE SHUFFLENET MULTIHOP NETWORK CONTENTS 12.4
WAVELENGTH-ROUTED NETWORKS 482 12.4.1 OPTICAL CROSS-CONNECTS / 12.4.2
PERFORMANCE EVALUATION OF WAVELENGTH CONVERSION 12.5 NONLINEAR EFFECTS
ON NETWORK PERFORMANCE 488 12.5.1 EFFECTIVE LENGTH AND AREA / 12.5.2
STIMULATED RAMAN SCATTERING / 72.5.5 STIMULATED BRILLOUIN SCATTERING /
12.5.4 SELF-PHASE MODULATION AND CROSS-PHASE MODULATION / 12.5.5
FOUR-WAVE MIXING / 12.5.6 DISPERSION MANAGEMENT 12.6 PERFORMANCE OF WDM
+ EDFA SYSTEMS 502 J2.6.1 LINK BANDWIDTH / 12.6.2 OPTICAL POWER
REQUIREMENTS FOR A SPECIFIC BER I 12.6.3 CROSSTALK 12.7 SOLITONS 505
72.7.7 SOLITON PULSES / 72.7.2 SOLITON PARAMETERS / 72.7.5 SOLITON WIDTH
AND SPACING 12.8 OPTICAL CDMA 514 12.9 ULTRAHIGH CAPACITY NETWORKS 516
72.9.7 ULTRAHIGH CAPACITY WDM SYSTEMS / 72.9.2 BIT-INTERLEAVED OPTICAL
TDM I 12.9.3 TIME-SLOTTED OPTICAL TDM PROBLEMS 519 REFERENCES 526 13
MEASUREMENTS 533 13.1 MEASUREMENT STANDARDS AND TEST PROCEDURES 535 13.2
TEST EQUIPMENT 536 75.2.7 OPTICAL POWER METERS / 13.2.2 OPTICAL
ATTENUATORS / 13.2.3 TUNABLE LASER SOURCES / 13.2.4 OPTICAL SPECTRUM
ANALYZERS / 75.2.5 OPTICAL TIME- DOMAIN REFLECTOMETER (OTDR) / 13.2.6
MULTIFUNCTION OPTICAL TEST SYSTEMS 13.3 ATTENUATION MEASUREMENTS 541
13.3.1 THE CUTBACK TECHNIQUE / 13.3.2 INSERTION-LOSS METHOD 13.4
DISPERSION MEASUREMENTS 544 13.4.1 INTERMODAL DISPERSION / 13.4.2
TIME-DOMAIN INTERMODAL DISPERSION MEASUREMENTS / 13.4.3 FREQUENCY-DOMAIN
INTERMODAL DISPERSION MEASUREMENTS / 13.4.4 CHROMATIC DISPERSION /
13.4.5 POLARIZATION-MODE DISPERSION 13.5 OTDR FIELD APPLICATIONS 550
75.5.7 OTDR TRACE / 75.5.2 ATTENUATION MEASUREMENTS / 75.5.5 FIBER FAULT
LOCATION 13.6 EYE PATTERNS 554 13.7 OPTICAL SPECTRUM ANALYZER
APPLICATIONS 558 75.7.7 CHARACTERIZATION OF OPTICAL SOURCES / 75.7.2
EDFA GAIN AND NOISE- FIGURE TESTING PROBLEMS 563 REFERENCES 566
|
any_adam_object | 1 |
author | Keiser, Gerd |
author_facet | Keiser, Gerd |
author_role | aut |
author_sort | Keiser, Gerd |
author_variant | g k gk |
building | Verbundindex |
bvnumber | BV013772325 |
callnumber-first | T - Technology |
callnumber-label | TK5103 |
callnumber-raw | TK5103.59 |
callnumber-search | TK5103.59 |
callnumber-sort | TK 45103.59 |
callnumber-subject | TK - Electrical and Nuclear Engineering |
classification_rvk | ZN 6280 ZN 6285 |
ctrlnum | (OCoLC)41662567 (DE-599)BVBBV013772325 |
dewey-full | 621.382/75 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.382/75 |
dewey-search | 621.382/75 |
dewey-sort | 3621.382 275 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
edition | 3. ed. |
format | Book |
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id | DE-604.BV013772325 |
illustrated | Illustrated |
indexdate | 2024-07-09T18:51:41Z |
institution | BVB |
isbn | 0072321016 0072356804 0072360763 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-009413694 |
oclc_num | 41662567 |
open_access_boolean | |
owner | DE-703 DE-898 DE-BY-UBR |
owner_facet | DE-703 DE-898 DE-BY-UBR |
physical | XXI, 602 S. Ill., graph. Darst. CD-ROM (12 cm) |
publishDate | 2000 |
publishDateSearch | 2000 |
publishDateSort | 2000 |
publisher | McGraw-Hill |
record_format | marc |
series2 | McGraw-Hill series in electrical and computer engineering : Communications and signal processing |
spelling | Keiser, Gerd Verfasser aut Optical fiber communications Gerd Keiser 3. ed. Boston [u.a.] McGraw-Hill 2000 XXI, 602 S. Ill., graph. Darst. CD-ROM (12 cm) txt rdacontent n rdamedia nc rdacarrier McGraw-Hill series in electrical and computer engineering : Communications and signal processing CD-ROM contains: Modeling and simulation program. Optique des fibres Télécommunications optiques Fiber optics Optical communications Optische Nachrichtenübertragung (DE-588)4172668-6 gnd rswk-swf Glasfaserkabel (DE-588)4157425-4 gnd rswk-swf Optische Nachrichtentechnik (DE-588)4035624-3 gnd rswk-swf Lichtwellenleiter (DE-588)4267405-0 gnd rswk-swf Faseroptik (DE-588)4016498-6 gnd rswk-swf Telekommunikationsnetz (DE-588)4133586-7 gnd rswk-swf Optische Nachrichtentechnik (DE-588)4035624-3 s DE-604 Optische Nachrichtenübertragung (DE-588)4172668-6 s Glasfaserkabel (DE-588)4157425-4 s 1\p DE-604 Lichtwellenleiter (DE-588)4267405-0 s 2\p DE-604 Faseroptik (DE-588)4016498-6 s 3\p DE-604 Telekommunikationsnetz (DE-588)4133586-7 s 4\p DE-604 HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009413694&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 3\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 4\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Keiser, Gerd Optical fiber communications Optique des fibres Télécommunications optiques Fiber optics Optical communications Optische Nachrichtenübertragung (DE-588)4172668-6 gnd Glasfaserkabel (DE-588)4157425-4 gnd Optische Nachrichtentechnik (DE-588)4035624-3 gnd Lichtwellenleiter (DE-588)4267405-0 gnd Faseroptik (DE-588)4016498-6 gnd Telekommunikationsnetz (DE-588)4133586-7 gnd |
subject_GND | (DE-588)4172668-6 (DE-588)4157425-4 (DE-588)4035624-3 (DE-588)4267405-0 (DE-588)4016498-6 (DE-588)4133586-7 |
title | Optical fiber communications |
title_auth | Optical fiber communications |
title_exact_search | Optical fiber communications |
title_full | Optical fiber communications Gerd Keiser |
title_fullStr | Optical fiber communications Gerd Keiser |
title_full_unstemmed | Optical fiber communications Gerd Keiser |
title_short | Optical fiber communications |
title_sort | optical fiber communications |
topic | Optique des fibres Télécommunications optiques Fiber optics Optical communications Optische Nachrichtenübertragung (DE-588)4172668-6 gnd Glasfaserkabel (DE-588)4157425-4 gnd Optische Nachrichtentechnik (DE-588)4035624-3 gnd Lichtwellenleiter (DE-588)4267405-0 gnd Faseroptik (DE-588)4016498-6 gnd Telekommunikationsnetz (DE-588)4133586-7 gnd |
topic_facet | Optique des fibres Télécommunications optiques Fiber optics Optical communications Optische Nachrichtenübertragung Glasfaserkabel Optische Nachrichtentechnik Lichtwellenleiter Faseroptik Telekommunikationsnetz |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009413694&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT keisergerd opticalfibercommunications |