DIN ISO 15632 Microbeam analysis - Selected instrumental performance parameters for the specification and checking of energy-dispersive X-ray spectrometers for use in electron probe microanalysis (ISO 15632:2012)
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- Техэксперт: Машиностроительный комплекс
- Картотека зарубежных и международных стандартов
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- DIN ISO 16592 Microbeam analysis - Electron probe microanalysis - Guidelines for determining the carbon content of steels using a calibration curve method (ISO 16592:2012)
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- DIN ISO 16592 Microbeam analysis - Electron probe microanalysis - Guidelines for determining the carbon content of steels using a calibration curve method (ISO 16592:2012)
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- ASTM D1356 REV B Standard Terminology Relating to Sampling and Analysis of Atmospheres
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- ISO TR 14294 Workplace atmospheres — Measurement of dermal exposure — Principles and methods - First Edition
- ISO ISO/IEC GUIDE 98-3 SUPP 2 Uncertainty of measurement - Part 3: Guide to the expression of uncertainty in measurement (GUM:1995) Supplement 2: Extension to any number of output quantities - First Edition
- ISO TR 14294 Workplace atmospheres — Measurement of dermal exposure — Principles and methods - First Edition
- ISO 18158 Workplace air - Terminology - First Edition
- ASTM D1356 REV B Standard Terminology Relating to Sampling and Analysis of Atmospheres
- ASTM D6196 Standard Practice for Selection of Sorbents, Sampling, and Thermal Desorption Analysis Procedures for Volatile Organic Compounds in Air
- ASTM D7339 Standard Test Method for Determination of Volatile Organic Compounds Emitted from Carpet using a Specific Sorbent Tube and Thermal Desorption / Gas Chromatography
- ASTM D7339 Standard Test Method for Determination of Volatile Organic Compounds Emitted from Carpet using a Specific Sorbent Tube and Thermal Desorption / Gas Chromatography
- ASTM D6196 Standard Practice for Selection of Sorbents, Sampling, and Thermal Desorption Analysis Procedures for Volatile Organic Compounds in Air
- ASTM D1356 REV B Standard Terminology Relating to Sampling and Analysis of Atmospheres
- ISO 18158 Workplace air - Terminology - First Edition
- ISO TR 14294 Workplace atmospheres — Measurement of dermal exposure — Principles and methods - First Edition
- ISO ISO/IEC GUIDE 98-3 SUPP 2 Uncertainty of measurement - Part 3: Guide to the expression of uncertainty in measurement (GUM:1995) Supplement 2: Extension to any number of output quantities - First Edition
- ISO TR 14294 Workplace atmospheres — Measurement of dermal exposure — Principles and methods - First Edition
- ISO 18158 Workplace air - Terminology - First Edition
- ASTM D1356 REV B Standard Terminology Relating to Sampling and Analysis of Atmospheres
- ASTM D6196 Standard Practice for Selection of Sorbents, Sampling, and Thermal Desorption Analysis Procedures for Volatile Organic Compounds in Air
- ASTM D6196 Standard Practice for Selection of Sorbents, Sampling, and Thermal Desorption Analysis Procedures for Volatile Organic Compounds in Air
- ASTM D1356 REV B Standard Terminology Relating to Sampling and Analysis of Atmospheres
- ISO 18158 Workplace air - Terminology - First Edition
- ISO TR 14294 Workplace atmospheres — Measurement of dermal exposure — Principles and methods - First Edition
- ISO ISO/IEC GUIDE 98-3 SUPP 2 Uncertainty of measurement - Part 3: Guide to the expression of uncertainty in measurement (GUM:1995) Supplement 2: Extension to any number of output quantities - First Edition
- ISO TR 14294 Workplace atmospheres — Measurement of dermal exposure — Principles and methods - First Edition
- ISO 18158 Workplace air - Terminology - First Edition
- ASTM D1356 REV B Standard Terminology Relating to Sampling and Analysis of Atmospheres
- ISO 18158 Workplace air - Terminology - First Edition
- ISO TR 14294 Workplace atmospheres — Measurement of dermal exposure — Principles and methods - First Edition
- ISO ISO/IEC GUIDE 98-3 SUPP 2 Uncertainty of measurement - Part 3: Guide to the expression of uncertainty in measurement (GUM:1995) Supplement 2: Extension to any number of output quantities - First Edition
- ISO TR 14294 Workplace atmospheres — Measurement of dermal exposure — Principles and methods - First Edition
- ISO TR 14294 Workplace atmospheres — Measurement of dermal exposure — Principles and methods - First Edition
- ISO ISO/IEC GUIDE 98-3 SUPP 2 Uncertainty of measurement - Part 3: Guide to the expression of uncertainty in measurement (GUM:1995) Supplement 2: Extension to any number of output quantities - First Edition
- DIN ISO 22309 Microbeam analysis - Quantitative analysis using energy-dispersive spectrometry (EDS) for elements with an atomic number of 11 (Na) or above (ISO 22309:2011)
- Картотека зарубежных и международных стандартов
Deutsches Institut fur Normung e. V.
Microbeam analysis - Selected instrumental performance parameters for the specification and checking of energy-dispersive X-ray spectrometers for use in electron probe microanalysis (:2012)
N ISO 15632
Annotation
This International Standard defines the most important quantities that characterize an energy-dispersive X ray spectrometer consisting of a semiconductor detector, a pre-amplifier and a signal-processing unit as the essential parts. This International Standard is only applicable to spectrometers with semiconductor detectors operating on the principle of solid-state ionization. This International Standard specifies minimum requirements and how relevant instrumental performance parameters are to be checked for such spectrometers attached to a scanning electron microscope (SEM) or an electron probe microanalyser (EPMA). The procedure used for the actual analysis is outlined in ISO 22309[2] and ASTM E1508[3]and is outside the scope of this International Standard.
Автоматический перевод:
Анализ микролуча - Отобранные инструментальные эксплуатационные параметры для спецификации и проверки энергетическо-дисперсионных спектрометров Рентгеновских лучей для использования в электронно-зондовом анализе (ISO 15632:2012)
Этот Международный стандарт определяет самые важные количества, которые характеризуют дисперсионный энергией спектрометр X ray, состоящий из полупроводникового детектора, предусилителя и модуля обработки сигналов как основные части. Этот Международный стандарт только применим к спектрометрам с полупроводниковыми детекторами, воздействующими на принцип твердотельной ионизации. Этот Международный стандарт указывает минимальные требования и как соответствующие инструментальные эксплуатационные параметры должны быть проверены на такие спектрометры, присоединенные к сканирующему электронному микроскопу (SEM) или электронному тестовому микроанализатору (EPMA). Процедура, используемая для фактического анализа, обрисована в общих чертах в ISO 22309[2] и ASTM E1508[3] и выходит за рамки этого Международного стандарта.



