Overview of the digital-to-analog converter module based on the MCP4725 chip and the digital-to-analog converter module based on the integrating RC circuit

In technical cybernetic systems, it is impossible to do without exchanging information between devices. Most modern control devices are digital, but it is not uncommon for an analog signal to be required to control executive devices, which can be changed in a certain range. To receive an analog sign...

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Main Authors: Kirill A. Volobuev, Igor V. Trubin, Vitaly G. Trubin
Format: Article
Language:English
Published: Tomsk Polytechnic University 2024-12-01
Series:Известия Томского политехнического университета: Промышленная кибернетика
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Online Access:https://indcyb.ru/journal/article/view/72/58
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author Kirill A. Volobuev
Igor V. Trubin
Vitaly G. Trubin
author_facet Kirill A. Volobuev
Igor V. Trubin
Vitaly G. Trubin
author_sort Kirill A. Volobuev
collection DOAJ
description In technical cybernetic systems, it is impossible to do without exchanging information between devices. Most modern control devices are digital, but it is not uncommon for an analog signal to be required to control executive devices, which can be changed in a certain range. To receive an analog signal from a digital one, a special device is used – digital-to-analog converter. This article provides brief information about the types of signals and their differences. Two widely used digital-to-analog conversion modules are considered. They can be used to convert a digital signal from a microcontroller into an analog control signal of 0–10 V. The modules are controlled using the "Blue Pill" debugging board based on the STM32F103 microcontroller. The digital-to-analog converter module on the MCP4725 chip is controlled via the I2C interface. Another module based on the RC circuit converts the PWM signal from the microcontroller into an analog signal of 0–10 V. The article will be useful for students, engineers, and graduate students who want to study the operation of a PWM-based digital-to-analog converter and RC circuit, as well as connecting devices via the I2C interface.
format Article
id doaj-art-2733e082e66347d5bdbe00fcca0075b4
institution Kabale University
issn 2949-5407
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publishDate 2024-12-01
publisher Tomsk Polytechnic University
record_format Article
series Известия Томского политехнического университета: Промышленная кибернетика
spelling doaj-art-2733e082e66347d5bdbe00fcca0075b42025-08-20T03:27:00ZengTomsk Polytechnic UniversityИзвестия Томского политехнического университета: Промышленная кибернетика2949-54072024-12-012411210.18799/29495407/2024/4/72Overview of the digital-to-analog converter module based on the MCP4725 chip and the digital-to-analog converter module based on the integrating RC circuitKirill A. Volobuev0Igor V. Trubin1 Vitaly G. Trubin2Novosibirsk State Technical University, Novosibirsk, Russian FederationNovosibirsk State Technical University, Novosibirsk, Russian FederationNovosibirsk State Technical University, Novosibirsk, Russian FederationIn technical cybernetic systems, it is impossible to do without exchanging information between devices. Most modern control devices are digital, but it is not uncommon for an analog signal to be required to control executive devices, which can be changed in a certain range. To receive an analog signal from a digital one, a special device is used – digital-to-analog converter. This article provides brief information about the types of signals and their differences. Two widely used digital-to-analog conversion modules are considered. They can be used to convert a digital signal from a microcontroller into an analog control signal of 0–10 V. The modules are controlled using the "Blue Pill" debugging board based on the STM32F103 microcontroller. The digital-to-analog converter module on the MCP4725 chip is controlled via the I2C interface. Another module based on the RC circuit converts the PWM signal from the microcontroller into an analog signal of 0–10 V. The article will be useful for students, engineers, and graduate students who want to study the operation of a PWM-based digital-to-analog converter and RC circuit, as well as connecting devices via the I2C interface.https://indcyb.ru/journal/article/view/72/58digital-to-analog converterpwmanalog signaldiscrete signalquantized signaldigital signalmcp4725rc circuitstm32f103blue pill debug board
spellingShingle Kirill A. Volobuev
Igor V. Trubin
Vitaly G. Trubin
Overview of the digital-to-analog converter module based on the MCP4725 chip and the digital-to-analog converter module based on the integrating RC circuit
Известия Томского политехнического университета: Промышленная кибернетика
digital-to-analog converter
pwm
analog signal
discrete signal
quantized signal
digital signal
mcp4725
rc circuit
stm32f103
blue pill debug board
title Overview of the digital-to-analog converter module based on the MCP4725 chip and the digital-to-analog converter module based on the integrating RC circuit
title_full Overview of the digital-to-analog converter module based on the MCP4725 chip and the digital-to-analog converter module based on the integrating RC circuit
title_fullStr Overview of the digital-to-analog converter module based on the MCP4725 chip and the digital-to-analog converter module based on the integrating RC circuit
title_full_unstemmed Overview of the digital-to-analog converter module based on the MCP4725 chip and the digital-to-analog converter module based on the integrating RC circuit
title_short Overview of the digital-to-analog converter module based on the MCP4725 chip and the digital-to-analog converter module based on the integrating RC circuit
title_sort overview of the digital to analog converter module based on the mcp4725 chip and the digital to analog converter module based on the integrating rc circuit
topic digital-to-analog converter
pwm
analog signal
discrete signal
quantized signal
digital signal
mcp4725
rc circuit
stm32f103
blue pill debug board
url https://indcyb.ru/journal/article/view/72/58
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