IEC 61280-2-10:2005
Fibre optic communication subsystem test procedures - Part 2-10: Digital systems - Time-resolved chirp and alpha-factor measurement of laser transmitters
Fibre optic communication subsystem test procedures - Part 2-10: Digital systems - Time-resolved chirp and alpha-factor measurement of laser transmitters
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 47
- Дата публикации:
- 21 июля 2005 г.
- Издание:
- IEC IS 61280 edition 1 version 1
- ICS:
- 33.180.01
This part of IEC 61280 sets forth standard procedures for measuring time-resolved chirp (TRC) on laser transmitters. The calculation of alpha-factor, a measure of transient chirp, is derived from the measured TRC data. Also covered is a means to verify the TRC set-ups and calculations (Annex A) and a review of laser modulation methods and the relationship of TRC to performance in a transmission system.
Abstract
Overview
IEC 61280-2-10:2005 is an international standard published by the International Electrotechnical Commission (IEC) focusing on fiber optic communication subsystems. Specifically, it defines test procedures for time-resolved chirp (TRC) and the alpha-factor measurement of laser transmitters within digital systems. This standard plays a critical role in ensuring precision and consistency in evaluating the transient wavelength fluctuations and chirp effects that impact fiber optic communication performance.
The document establishes methodology to measure the time-resolved chirp, a critical parameter characterizing the transient frequency variations of laser diodes during modulation. Furthermore, it outlines how to derive the alpha-factor, a key metric quantifying the relationship between amplitude and phase modulation in laser transmitters. The alpha-factor is directly linked to the transient chirp and is essential in assessing the impact on system performance such as signal integrity and dispersion in fiber optic networks.
IEC 61280-2-10:2005 also provides test verification procedures (Annex A) to ensure measurement accuracy and explains the relationship between laser modulation methods and TRC effects (Annex B), adding practical context for system designers and test engineers.
Key Topics
-
Time-Resolved Chirp Measurement: Defines the concepts, apparatus, and procedures for measuring laser transmitter chirp on a time-resolved scale. Accurate TRC measurement is essential to characterize the dynamic spectral behavior of lasers under modulation.
-
Alpha-Factor Calculation: Provides methods to calculate the alpha-factor from the measured TRC data. This includes time-dependent alpha-factor α(t), average alpha-factor α_avg, and power-dependent alpha-factor α(P), which have strong implications for predicting transient laser behavior.
-
Measurement Methods:
- Frequency Discriminator Method: Uses interferometric setups to extract chirp data by monitoring frequency changes at specific points in the signal path.
- Monochromator Method: Employs spectral filtering to measure instantaneous wavelength shifts and chirp characteristics.
-
Verification and Validation Procedures: Guidelines and setups to validate TRC experimental configurations and calculation accuracy to ensure reproducibility and consistency of test results.
-
Laser Modulation Techniques Overview: Insightful review of different laser modulation methods-such as direct modulation, electro-absorption modulation, and Mach-Zehnder modulators-and their effects on chirp and alpha-factor.
Applications
IEC 61280-2-10:2005 is essential for professionals and organizations involved in the design, testing, and deployment of fiber optic digital communication systems. Its applications include:
-
Laser Transmitter Characterization: Accurate characterization of transient chirp and alpha-factor enables the development of stable laser sources that minimize signal distortion during high-speed data transmission.
-
Fiber Optic System Performance Optimization: Understanding and controlling chirp effects help reduce dispersion-induced degradation and enhance overall link quality in optical networks.
-
Quality Assurance and Compliance Testing: Manufacturers and test labs use the standard to guarantee that laser transmitters meet performance criteria and industry benchmarks.
-
Research and Development: The standard supports ongoing R&D efforts aimed at advancing laser modulation technology while addressing transient chirp challenges.
Related Standards
Professionals applying IEC 61280-2-10:2005 may also benefit from complementary standards in the fiber optic communications domain, including:
-
IEC 61280-1 series for optical subsystem test procedures focusing on power, return loss, and other fundamental parameters.
-
ITU-T G.695 and G.959.1 related to optical interfaces and performance criteria for digital systems.
-
IEC 60793 and IEC 60794 series covering optical fiber and cable specifications supporting subsystem performance evaluations.
-
IEC 61300 standards on fiber optic interconnection and component test procedures.
Summary
IEC 61280-2-10:2005 sets a comprehensive international benchmark for the measurement of time-resolved chirp and alpha-factor in laser transmitters used in digital fiber optic communication systems. Adopting these standardized procedures ensures consistent, reproducible assessment of transient chirp characteristics, enabling better design and optimization of fiber optic systems. This standard is indispensable for engineers, researchers, and manufacturers aiming to improve laser transmitter performance and ensure reliability in high-speed optical networks.
Технические детали
- Технический комитет
- SC 86C - Fibre optic systems, sensing and active devices
- SKU
- IEC 61280-2-10:2005
Похожие стандарты
Стандарты, упомянутые в описании
IEC 61280-1-3:2021
ДействующийFibre optic communication subsystem test procedures - Part 1-3: General communication subsystems - Measuremen…
Overview IEC 61280-1-3:2021 is part of the IEC 61280 series of fibre optic communication subsystem test procedures. This international standard defines terms and measurement procedures for central wa…
IEC 60793-1-48:2017
ДействующийOptical fibres - Part 1-48: Measurement methods and test procedures - Polarization mode dispersion
Overview IEC 60793-1-48:2017 is an international standard developed by the International Electrotechnical Commission (IEC) as part of the IEC 60793 series. This standard specifies measurement methods…
SIST EN IEC 60794-1-126:2026
ДействующийOptical fibre cables - Part 1-126: Generic specification - Basic optical cable test procedures - Mechanical t…
Overview SIST EN IEC 60794-1-126:2026 is an international standard that details the basic mechanical test procedures - specifically pertaining to the galloping phenomenon - for optical fibre cables.…
IEC 61300-2-33:2026
ДействующийFibre optic interconnecting devices and passive components - Basic test and measurement procedures - Part 2-3…
Overview IEC 61300-2-33:2026 is an international standard developed by the International Electrotechnical Commission (IEC). It specifies basic test and measurement procedures for fibre optic intercon…