CENELEC EN 62343-1-3 Dynamic modules - Part 1-3: Performance standards - Dynamic gain tilt equalizer (non-connectorized)
Данный раздел/документ содержится в продуктах:
- Техэксперт: Машиностроительный комплекс
- Картотека зарубежных и международных стандартов
- CENELEC EN 61907 Communication network dependability engineering
- IEC 60300-3-3 Dependability management – Part 3-3: Application guide – Life cycle costing - Edition 2.0
- IEC TR 62721 Reliability of devices used in fibre optic systems – General and guidance - Edition 1.0
- IEC TR 61292-3 Optical amplifiers Part 3: Classification, characteristics and applications - Edition 1.0
- IEC TR 61282-4 Fibre optic communication system design guides Part 4: Accommodation and utilization of non-linear effects - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-3 Fibre optic communication system design guides – Part 3: Calculation of link polarization mode dispersion - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-4 Fibre optic communication system design guides Part 4: Accommodation and utilization of non-linear effects - Edition 2.0
- IEC TR 61292-3 Optical amplifiers Part 3: Classification, characteristics and applications - Edition 1.0
- IEC TR 62721 Reliability of devices used in fibre optic systems – General and guidance - Edition 1.0
- IEC 60300-3-3 Dependability management – Part 3-3: Application guide – Life cycle costing - Edition 2.0
- 21
- CENELEC EN 61907 Communication network dependability engineering
- IEC 60300-3-3 Dependability management – Part 3-3: Application guide – Life cycle costing - Edition 2.0
- IEC TR 62721 Reliability of devices used in fibre optic systems – General and guidance - Edition 1.0
- IEC TR 61292-3 Optical amplifiers Part 3: Classification, characteristics and applications - Edition 1.0
- IEC TR 61282-4 Fibre optic communication system design guides Part 4: Accommodation and utilization of non-linear effects - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-3 Fibre optic communication system design guides – Part 3: Calculation of link polarization mode dispersion - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-4 Fibre optic communication system design guides Part 4: Accommodation and utilization of non-linear effects - Edition 2.0
- IEC TR 61292-3 Optical amplifiers Part 3: Classification, characteristics and applications - Edition 1.0
- IEC TR 62721 Reliability of devices used in fibre optic systems – General and guidance - Edition 1.0
- IEC 60300-3-3 Dependability management – Part 3-3: Application guide – Life cycle costing - Edition 2.0
- 21.020
- CENELEC EN 61907 Communication network dependability engineering
- IEC 60300-3-3 Dependability management – Part 3-3: Application guide – Life cycle costing - Edition 2.0
- IEC TR 62721 Reliability of devices used in fibre optic systems – General and guidance - Edition 1.0
- IEC TR 61292-3 Optical amplifiers Part 3: Classification, characteristics and applications - Edition 1.0
- IEC TR 61282-4 Fibre optic communication system design guides Part 4: Accommodation and utilization of non-linear effects - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-3 Fibre optic communication system design guides – Part 3: Calculation of link polarization mode dispersion - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-4 Fibre optic communication system design guides Part 4: Accommodation and utilization of non-linear effects - Edition 2.0
- IEC TR 61292-3 Optical amplifiers Part 3: Classification, characteristics and applications - Edition 1.0
- IEC TR 62721 Reliability of devices used in fibre optic systems – General and guidance - Edition 1.0
- IEC 60300-3-3 Dependability management – Part 3-3: Application guide – Life cycle costing - Edition 2.0
- CENELEC EN 61907 Communication network dependability engineering
- CENELEC EN 61907 Communication network dependability engineering
- 33
- CENELEC EN 61907 Communication network dependability engineering
- IEC 60300-3-3 Dependability management – Part 3-3: Application guide – Life cycle costing - Edition 2.0
- IEC TR 62721 Reliability of devices used in fibre optic systems – General and guidance - Edition 1.0
- IEC TR 61292-3 Optical amplifiers Part 3: Classification, characteristics and applications - Edition 1.0
- IEC TR 61282-4 Fibre optic communication system design guides Part 4: Accommodation and utilization of non-linear effects - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-3 Fibre optic communication system design guides – Part 3: Calculation of link polarization mode dispersion - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-4 Fibre optic communication system design guides Part 4: Accommodation and utilization of non-linear effects - Edition 2.0
- IEC TR 61292-3 Optical amplifiers Part 3: Classification, characteristics and applications - Edition 1.0
- IEC TR 62721 Reliability of devices used in fibre optic systems – General and guidance - Edition 1.0
- IEC 60300-3-3 Dependability management – Part 3-3: Application guide – Life cycle costing - Edition 2.0
- CENELEC EN 61907 Communication network dependability engineering
- IEC 60300-3-3 Dependability management – Part 3-3: Application guide – Life cycle costing - Edition 2.0
- IEC TR 62721 Reliability of devices used in fibre optic systems – General and guidance - Edition 1.0
- IEC TR 61292-3 Optical amplifiers Part 3: Classification, characteristics and applications - Edition 1.0
- IEC TR 61282-4 Fibre optic communication system design guides Part 4: Accommodation and utilization of non-linear effects - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-3 Fibre optic communication system design guides – Part 3: Calculation of link polarization mode dispersion - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-4 Fibre optic communication system design guides Part 4: Accommodation and utilization of non-linear effects - Edition 2.0
- IEC TR 61292-3 Optical amplifiers Part 3: Classification, characteristics and applications - Edition 1.0
- IEC TR 62721 Reliability of devices used in fibre optic systems – General and guidance - Edition 1.0
- IEC TR 62721 Reliability of devices used in fibre optic systems – General and guidance - Edition 1.0
- IEC TR 61292-3 Optical amplifiers Part 3: Classification, characteristics and applications - Edition 1.0
- IEC TR 61282-4 Fibre optic communication system design guides Part 4: Accommodation and utilization of non-linear effects - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-3 Fibre optic communication system design guides – Part 3: Calculation of link polarization mode dispersion - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-4 Fibre optic communication system design guides Part 4: Accommodation and utilization of non-linear effects - Edition 2.0
- IEC TR 61292-3 Optical amplifiers Part 3: Classification, characteristics and applications - Edition 1.0
- IEC TR 61292-3 Optical amplifiers Part 3: Classification, characteristics and applications - Edition 1.0
- IEC TR 61282-4 Fibre optic communication system design guides Part 4: Accommodation and utilization of non-linear effects - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-3 Fibre optic communication system design guides – Part 3: Calculation of link polarization mode dispersion - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-4 Fibre optic communication system design guides Part 4: Accommodation and utilization of non-linear effects - Edition 2.0
- IEC TR 61282-4 Fibre optic communication system design guides Part 4: Accommodation and utilization of non-linear effects - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-3 Fibre optic communication system design guides – Part 3: Calculation of link polarization mode dispersion - Edition 2.0
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- BSI PD IEC/TR 62000 Guideline for combining different single-mode fibres types
- IEC TR 61282-3 Fibre optic communication system design guides – Part 3: Calculation of link polarization mode dispersion - Edition 2.0
- IEC TR 61282-3 Fibre optic communication system design guides – Part 3: Calculation of link polarization mode dispersion - Edition 2.0
- JSA JIS C 6842 Measurement methods and test procedures - Polarization mode dispersion of optical fibers
- IEC TR 61292-5 Optical amplifiers Part 5: Polarization mode dispersion parameter General information - Edition 1.0
- CEI EN 62343 Dynamic modules and devices - General and guidance
- IEC 62343-1-3 Dynamic modules – Part 1-3: Performance standards – Dynamic gain tilt equalizer (nonconnectorized) - Edition 2.0
- BSI BS EN 62343-5-1 Dynamic modules Part 5-1: Test methods — Dynamic gain tilt equalizer — Gain tilt settling time measurement
- CENELEC EN 61907 Communication network dependability engineering
- Картотека зарубежных и международных стандартов
European Committee for Electrotechnical Standardization
Dynamic modules - Part 1-3: Performance standards - Dynamic gain tilt equalizer (non-connectorized)
N EN 62343-1-3
Annotation
This part of IEC 62343 contains the guideline minimum initialization test and measurement requirements and severities, for a dynamic gain tilt equalizer (DGTE).
A DGTE is used in an optical amplifier, which operates in C-band and/or L-band, to control the output power of the amplifier to be nominally flat. The operating wavelength range of a DGTE is wider than or equal to 35 nm.
Автоматический перевод:
Динамические модули - Часть 1-3: стандарты Производительности - Динамическое усиление наклоняет эквалайзер (non-connectorized)
Эта часть IEC 62343 содержит тест инициализации минимума инструкции и измерительные требования и строгое обращение для динамического эквалайзера наклона усиления (DGTE).
DGTE используется в оптическом усилителе, который работает в C-полосе и/или L-полосе, для управления выходной мощностью усилителя быть номинально плоским. Операционный диапазон длины волны DGTE более широк, чем или равен 35 нм.



