Multi-decade voltage dividers with phase regulation

Phase controlled accurate voltage divider creates two coherent AC voltages with calculated magnitude ratio using additional voltages with calculated phase control. Ratio of these voltages is calculated theoretically with high accuracy. Digital-to-analog converters (DAC) are used to create AC addi...

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Main Author: D. Surdu
Format: Article
Language:English
Published: LLC Production and Commercial Company «FAVOR, LTD» 2019-03-01
Series:Метрологія та прилади
Subjects:
Online Access:https://mmi-journal.org/index.php/journal/article/view/84
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spelling doaj-e8e449151513493c9e092b397e4c82d02020-11-25T00:18:33ZengLLC Production and Commercial Company «FAVOR, LTD»Метрологія та прилади2307-21802663-95642019-03-011142010.33955/2307-2180(1)2019.14-2084Multi-decade voltage dividers with phase regulationD. Surdu0Space Research Institute of NASU, KievPhase controlled accurate voltage divider creates two coherent AC voltages with calculated magnitude ratio using additional voltages with calculated phase control. Ratio of these voltages is calculated theoretically with high accuracy. Digital-to-analog converters (DAC) are used to create AC additional voltages. Because of it the discreteness of the phase controlled voltage divider is equal to DACs digit divided on two. Modern DAC, depend on their operation speed, usually have 6-16 digits. Consequently, the discreteness of the relative magnitude phase control lies in the range of 3 × 10–2 –3 × 10–5. Discreteness of the DAC phase control only slightly infl uence on the accuracy of the magnitude phase control, so that only discreteness of DAC infl uences on the accuracy of measurement by phase controlled dividers. Report describes the methods of the discreteness uncertainty reduction in voltage dividers with phase control. Two methods of the discreteness uncertainty reduction are discussed. First one use phase controlled dividers only. Other one use mixed both phase and magnitude control. The discreteness uncertainty of both methods is investigated. Possibility of the crea tion of the phase controlled divider with diff erent control low are discussed and analyzed. Decade calibration in both cases is developed and researched.https://mmi-journal.org/index.php/journal/article/view/84voltage divider, accuracy, phase control, discreteness, calibration.
collection DOAJ
language English
format Article
sources DOAJ
author D. Surdu
spellingShingle D. Surdu
Multi-decade voltage dividers with phase regulation
Метрологія та прилади
voltage divider, accuracy, phase control, discreteness, calibration.
author_facet D. Surdu
author_sort D. Surdu
title Multi-decade voltage dividers with phase regulation
title_short Multi-decade voltage dividers with phase regulation
title_full Multi-decade voltage dividers with phase regulation
title_fullStr Multi-decade voltage dividers with phase regulation
title_full_unstemmed Multi-decade voltage dividers with phase regulation
title_sort multi-decade voltage dividers with phase regulation
publisher LLC Production and Commercial Company «FAVOR, LTD»
series Метрологія та прилади
issn 2307-2180
2663-9564
publishDate 2019-03-01
description Phase controlled accurate voltage divider creates two coherent AC voltages with calculated magnitude ratio using additional voltages with calculated phase control. Ratio of these voltages is calculated theoretically with high accuracy. Digital-to-analog converters (DAC) are used to create AC additional voltages. Because of it the discreteness of the phase controlled voltage divider is equal to DACs digit divided on two. Modern DAC, depend on their operation speed, usually have 6-16 digits. Consequently, the discreteness of the relative magnitude phase control lies in the range of 3 × 10–2 –3 × 10–5. Discreteness of the DAC phase control only slightly infl uence on the accuracy of the magnitude phase control, so that only discreteness of DAC infl uences on the accuracy of measurement by phase controlled dividers. Report describes the methods of the discreteness uncertainty reduction in voltage dividers with phase control. Two methods of the discreteness uncertainty reduction are discussed. First one use phase controlled dividers only. Other one use mixed both phase and magnitude control. The discreteness uncertainty of both methods is investigated. Possibility of the crea tion of the phase controlled divider with diff erent control low are discussed and analyzed. Decade calibration in both cases is developed and researched.
topic voltage divider, accuracy, phase control, discreteness, calibration.
url https://mmi-journal.org/index.php/journal/article/view/84
work_keys_str_mv AT dsurdu multidecadevoltagedividerswithphaseregulation
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