IEC 60793-1-60 Optical fibres - Part 1-60: Measurement methods and test procedures - Beat length - Edition 1.0
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- Техэксперт: Машиностроительный комплекс
- Картотека зарубежных и международных стандартов
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- 13
- CSA CAN/CSA-C22.2 NO. 60529:05 Degres de protection procures par les enveloppes (Code IP) - First Edition
- IEC 60071-2 Insulation co-ordination - Part 2: Application guide - Edition 3.0
- CENELEC EN 62501 Voltage sourced converter (VSC) valves for high-voltage direct current (HVDC) power transmission - Electrical testing - Incorporates Amendment A1: 2014
- IEC TR 60071-4 Insulation co-ordination Part 4: Computational guide to insulation co-ordination and modelling of electrical networks - Edition 1.0
- CEI CLC/TR 60919-2 Performance of high-voltage direct current (HVDC) systems with linecommutated converters Part 2: Faults and switching
- IEC 60076-6 Power transformers – Part 6: Reactors - Edition 1.0
- BSI BS EN 60143-2 Series capacitors for power systems Part 2: Protective equipment for series capacitor banks
- IEC 60076-6 Power transformers – Part 6: Reactors - Edition 1.0
- CEI CLC/TR 60919-2 Performance of high-voltage direct current (HVDC) systems with linecommutated converters Part 2: Faults and switching
- IEC TR 60071-4 Insulation co-ordination Part 4: Computational guide to insulation co-ordination and modelling of electrical networks - Edition 1.0
- CENELEC EN 62501 Voltage sourced converter (VSC) valves for high-voltage direct current (HVDC) power transmission - Electrical testing - Incorporates Amendment A1: 2014
- IEC 60071-2 Insulation co-ordination - Part 2: Application guide - Edition 3.0
- 13.260
- CSA CAN/CSA-C22.2 NO. 60529:05 Degres de protection procures par les enveloppes (Code IP) - First Edition
- IEC 60071-2 Insulation co-ordination - Part 2: Application guide - Edition 3.0
- CENELEC EN 62501 Voltage sourced converter (VSC) valves for high-voltage direct current (HVDC) power transmission - Electrical testing - Incorporates Amendment A1: 2014
- IEC TR 60071-4 Insulation co-ordination Part 4: Computational guide to insulation co-ordination and modelling of electrical networks - Edition 1.0
- CEI CLC/TR 60919-2 Performance of high-voltage direct current (HVDC) systems with linecommutated converters Part 2: Faults and switching
- IEC 60076-6 Power transformers – Part 6: Reactors - Edition 1.0
- BSI BS EN 60143-2 Series capacitors for power systems Part 2: Protective equipment for series capacitor banks
- IEC 60076-6 Power transformers – Part 6: Reactors - Edition 1.0
- CEI CLC/TR 60919-2 Performance of high-voltage direct current (HVDC) systems with linecommutated converters Part 2: Faults and switching
- IEC TR 60071-4 Insulation co-ordination Part 4: Computational guide to insulation co-ordination and modelling of electrical networks - Edition 1.0
- CENELEC EN 62501 Voltage sourced converter (VSC) valves for high-voltage direct current (HVDC) power transmission - Electrical testing - Incorporates Amendment A1: 2014
- IEC 60071-2 Insulation co-ordination - Part 2: Application guide - Edition 3.0
- CSA CAN/CSA-C22.2 NO. 60529:05 Degres de protection procures par les enveloppes (Code IP) - First Edition
- CSA CAN/CSA-C22.2 NO. 60529:05 Degres de protection procures par les enveloppes (Code IP) - First Edition
- 29
- CSA CAN/CSA-C22.2 NO. 60529:05 Degres de protection procures par les enveloppes (Code IP) - First Edition
- IEC 60071-2 Insulation co-ordination - Part 2: Application guide - Edition 3.0
- CENELEC EN 62501 Voltage sourced converter (VSC) valves for high-voltage direct current (HVDC) power transmission - Electrical testing - Incorporates Amendment A1: 2014
- IEC TR 60071-4 Insulation co-ordination Part 4: Computational guide to insulation co-ordination and modelling of electrical networks - Edition 1.0
- CEI CLC/TR 60919-2 Performance of high-voltage direct current (HVDC) systems with linecommutated converters Part 2: Faults and switching
- IEC 60076-6 Power transformers – Part 6: Reactors - Edition 1.0
- BSI BS EN 60143-2 Series capacitors for power systems Part 2: Protective equipment for series capacitor banks
- IEC 60076-6 Power transformers – Part 6: Reactors - Edition 1.0
- CEI CLC/TR 60919-2 Performance of high-voltage direct current (HVDC) systems with linecommutated converters Part 2: Faults and switching
- IEC TR 60071-4 Insulation co-ordination Part 4: Computational guide to insulation co-ordination and modelling of electrical networks - Edition 1.0
- CENELEC EN 62501 Voltage sourced converter (VSC) valves for high-voltage direct current (HVDC) power transmission - Electrical testing - Incorporates Amendment A1: 2014
- IEC 60071-2 Insulation co-ordination - Part 2: Application guide - Edition 3.0
- CSA CAN/CSA-C22.2 NO. 60529:05 Degres de protection procures par les enveloppes (Code IP) - First Edition
- CENELEC EN 62501 Voltage sourced converter (VSC) valves for high-voltage direct current (HVDC) power transmission - Electrical testing - Incorporates Amendment A1: 2014
- IEC TR 60071-4 Insulation co-ordination Part 4: Computational guide to insulation co-ordination and modelling of electrical networks - Edition 1.0
- CEI CLC/TR 60919-2 Performance of high-voltage direct current (HVDC) systems with linecommutated converters Part 2: Faults and switching
- IEC 60076-6 Power transformers – Part 6: Reactors - Edition 1.0
- BSI BS EN 60143-2 Series capacitors for power systems Part 2: Protective equipment for series capacitor banks
- IEC 60076-6 Power transformers – Part 6: Reactors - Edition 1.0
- CEI CLC/TR 60919-2 Performance of high-voltage direct current (HVDC) systems with linecommutated converters Part 2: Faults and switching
- IEC TR 60071-4 Insulation co-ordination Part 4: Computational guide to insulation co-ordination and modelling of electrical networks - Edition 1.0
- IEC TR 60071-4 Insulation co-ordination Part 4: Computational guide to insulation co-ordination and modelling of electrical networks - Edition 1.0
- CEI CLC/TR 60919-2 Performance of high-voltage direct current (HVDC) systems with linecommutated converters Part 2: Faults and switching
- IEC 60076-6 Power transformers – Part 6: Reactors - Edition 1.0
- BSI BS EN 60143-2 Series capacitors for power systems Part 2: Protective equipment for series capacitor banks
- IEC 60076-6 Power transformers – Part 6: Reactors - Edition 1.0
- CEI CLC/TR 60919-2 Performance of high-voltage direct current (HVDC) systems with linecommutated converters Part 2: Faults and switching
- CEI CLC/TR 60919-2 Performance of high-voltage direct current (HVDC) systems with linecommutated converters Part 2: Faults and switching
- IEC 60076-6 Power transformers – Part 6: Reactors - Edition 1.0
- BSI BS EN 60143-2 Series capacitors for power systems Part 2: Protective equipment for series capacitor banks
- IEC 60076-6 Power transformers – Part 6: Reactors - Edition 1.0
- IEC 60076-6 Power transformers – Part 6: Reactors - Edition 1.0
- BSI BS EN 60143-2 Series capacitors for power systems Part 2: Protective equipment for series capacitor banks
- BSI BS EN 60143-2 Series capacitors for power systems Part 2: Protective equipment for series capacitor banks
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- Картотека зарубежных и международных стандартов
International Electrotechnical Commission
Optical fibres - Part 1-60: Measurement methods and test procedures - Beat length - Edition 1.0
N 60793-1-60
Annotation
This part of IEC 60793 defines test methods for both the phase beat length, and the group beat length. These two parameters are defined differently, and will give different results depending on the type of polarization-maintaining (PM) fibre.
The phase beat length is the relevant parameter for the fibres ability to maintain a high extinction ratio. This is described in more details in Annexes A and B.
Автоматический перевод:
Оптоволокно - Часть 1-60: Измерительные методы и процедуры проверки - длина Удара - Издание 1.0
Эта часть IEC 60793 определяет методы испытаний и для длины удара фазы и для длины удара группы. Эти два параметра определяются по-другому и дадут различные результаты в зависимости от типа волокна поддержания поляризации (PM).
Фаза билась, длина является соответствующим параметром для возможности волокон поддержать высокое отношение исчезновения. Это описано более подробно в Приложениях A и B.
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