Academic literature on the topic 'ATmega328p microcontroller'

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Journal articles on the topic "ATmega328p microcontroller"

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Sulaksono, Santiko Tri, Putu Sukmabuana, and Nanda Nagara. "MICROCONTROLLER ATMEGA328P TIMER/COUNTER FOR SINGLE CHANNEL GAMMA SPECTROSCOPY." JURNAL TEKNOLOGI REAKTOR NUKLIR TRI DASA MEGA 24, no. 3 (2022): 125. http://dx.doi.org/10.17146/tdm.2022.24.3.6699.

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Soil contamination may occur in the upcoming decommissioning activities of the TRIGA2000 Reactor. Measurement of contaminant radioactivity, which can be performed using single-channel spectroscopy, is required in soil decontamination processes. This research develops a timer/counter system for single-channel spectroscopy using a microcontroller. The performance of the ATMega328P microcontroller Timer/Counter on Arduino has been tested for single-channel spectroscopy. Microcontroller's Timer/Counter 1 is used as a counter while Timer/Counter 2 is used as a timer. Tests include the linearity test, comparative test, and chi-square test. The test results show that the ATMega328P microcontroller Timer/Counter works well and can be used as the end of a single-channel spectroscopic system.
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S, Madhura, Deepthi G, Chinnitaha B, and Disha D. "IoT Based Monitoring and Control System using Sensors." June 2021 2, no. 2 (2021): 111–20. http://dx.doi.org/10.36548/jismac.2021.2.004.

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Various physical parameters like humidity, temperature, raindrop, GSM, atmospheric pressure and LDR can be monitored effectively and can be made more interactive with the help of different sensors that are interfaced with microcontrollers like ATmega328P. All the sensors can be connected to this microcontroller ATmega328P as the center preparing unit for the whole framework and plans can be associated with the microcontroller. The real-time monitoring of the various systems becomes possible with this IoT based system. The Paper displays different application based on IoT and proves that the monitoring and control of the system becomes flexible, robust and effective for any real-time implementation .
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Gawade, Prof N. R. "Review on Forest Monitoring Rover." International Journal for Research in Applied Science and Engineering Technology 12, no. 12 (2024): 602–4. https://doi.org/10.22214/ijraset.2024.65660.

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Automation is the process to reduce the man power and the idea of automation is to provide a test run in an Atmega328p microcontroller-based system to monitor and control the production operation. The main objective of this project is to control the electric power wastage and take data logs from a motor and also to check the performance of an employee in industries. This system works on Atmega328p microcontroller so it requires low cost and gives efficient performance in unnecessary electric power wastage in power loom motors. All the system is designed on basis of Atmega328p microcontroller, proximity sensor and RFID. The system includes IoT design to observe worker performance online from anywhere in the world.
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Sawalwade, Ms Eshita R., Ms Prachi S. Wagare, Ms Saniya S. Patel, Ms Madhura S. Sutar, and Prof Mrs P. B. Bhopale. "A Review on IOT based Power Loom Automation." International Journal for Research in Applied Science and Engineering Technology 12, no. 11 (2024): 1649–52. http://dx.doi.org/10.22214/ijraset.2024.65434.

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Abstract: Automation is the process to reduce the man power and the idea of automation is to provide a test run in an Atmega328p microcontroller-based system to monitor and control the production operation. The main objective of this project is to control the electric power wastage and take data logs from a motor and also to check the performance of an employee in industries. This system works on Atmega328p microcontroller so it requires low cost and gives efficient performance in unnecessary electric power wastage in power loom motors. All the system is designed on basis of Atmega328p microcontroller, proximity sensor and RFID. The system includes IoT design to observe worker performance online from anywhere in the world.
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Putra, Randi Rian, Hamdani Hamdani, Soly Aryza, and Nelly Astri Manik. "Sistem Penjadwalan Bel Sekolah Otomatis Berbasis RTC Menggunakan Mikrokontroler." JURNAL MEDIA INFORMATIKA BUDIDARMA 4, no. 2 (2020): 386. http://dx.doi.org/10.30865/mib.v4i2.1957.

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Today's school bell technology has been transformed into an electricity-based school bell. An electric school bell is a technology that replaces school bells by hitting them to become a button based school bell to ring it. The purpose of this study is to build an automatic school bell scheduling system that is integrated with the ATMega328P microcontroller as a data processor, RTC (Real Time Clock) as a timer, Bluetooth as a liaison to smartphones to change subject schedules, and PAM8403 as a sound amplifier applicator that is connected to DFPlayer and Speaker. The system circuit is built using the microcontroller module ATMega328P, RTC DS3231 (Real Time Clock), Bluetooth HC05, DFPlayer, PAM8403. This research resulted in an automatic school bell scheduling system based on RTC using a microcontroller ATMega328P
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M., Karthik, Mohan Raj E., Bhuvaneshwaran M., and Mani T. "PC Unlock System Using RFID." Recent Trends in Analog Design and Digital Devices 3, no. 1 (2020): 1–4. https://doi.org/10.5281/zenodo.3706645.

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<em>The design and implementation of security system that is unlocking a PC is done by using Radio Frequency Identification RFID tag. This proposed methodology is used to activate and authenticate for the PC users. The system is developed with microcontroller (Atmega328P) and RFID tag. RFID tag which have unique Id is scanned in RFID reader. Atmega328P act as keyboard to provide password during the time of scan. Initially Atmega328P stored the password for different Id&rsquo;s and it reveals the password to unlock the PC. The main objective of the program is to unlock the PC by using an effective microcontroller.</em>
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Owoeye, Samuel, Folasade Durodola, Adekunle Oyelami, et al. "Implementation of a Smart Home Intruder Detection System using a Vibrometer and ESP 32 CAM." ABUAD Journal of Engineering Research and Development (AJERD) 8, no. 1 (2025): 14–20. https://doi.org/10.53982/ajerd.2025.0801.02-j.

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Nigeria today is rife with occurrences of intruders breaking into homes at every slight opportunity. The topic of security is quite important; hence this paper presents the development and implementation of a Smart Intruder Detection System utilizing the ESP32-CAM board, the Vibrometer and the ATMega328P microcontroller to enhance lighting, security, and surveillance functionalities. The ESP32-CAM serves as the central control unit, leveraging its built-in Wi-Fi and camera capabilities, while communicating with the ATMega328P microcontroller responsible for managing lighting, security, and surveillance components. The Vibrometer adds a vital layer of security by detecting vibrations associated with forced entry attempts. Upon sensing significant vibrations, the Vibrometer triggers the ESP32-CAM to start an immediate recording of potential intrusions. In the realm of lighting control, the ATMega328P regulates diverse light sources such as LEDs and smart bulbs. The ESP32-CAM facilitates a user-friendly experience, enabling seamless control and automation of the lighting system through a dedicated mobile application or voice commands. For surveillance purposes, the ESP32-CAM captures real-time video, streaming it to the user's mobile device or a centralized monitoring station. The ATMega328P contributes to the system's intelligence by supporting motion detection algorithms, which, in turn, trigger automated alerts and activate lighting or alarm systems in response to detected movement. The precision performance of the components was carried out and the average precision for all the components was 95%. The synergistic integration of the ESP32-CAM board and ATMega328P microcontroller results in a cohesive and intelligent smart home automation solution.
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Baklanov, Alexander, Svetlana Grigoryeva, Aslim Alimkhanova, and Alexander Dmitriev. "An indoor temperature control system based on visible light communications technology." Science Bulletin of the Novosibirsk State Technical University, no. 2-3 (November 13, 2020): 7–24. http://dx.doi.org/10.17212/1814-1196-2020-2-3-7-24.

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The article proposes a new approach to temperature control in a building based on the Visible Light Communications technology. This approach is based on using LED lamps as temperature data transmitters as well as for lighting. Light modulation based on the UART standard was used for data transfer. A photodiode with the capability to distinguish relatively weak signals was used for receiving data. All data processing was performed by microcontrollers. UART-based modulation was also performed on a microcontrolle. The article describes in detail schematic circuits of transmitting and receiving devices. Based on developeed schematic circuits, a new experimental setup consisting of two units was created. The transmission unit includes a temperature sensor, a microcontroller, a driver and an LED. The receiving unit includes a photodiode, an amplifier and a microcontroller. An ATmega328P chip was used for both microcontrollers. Experimental setup consists of experimental models of both units. For signal transmission control, measurements of the pulse level and shape were conducted in the receiving device with an oscillograph. The signal level was anaylsed after all electronic components but before entering the microcontroller. Experimental results have shown that data transmission with the use of white LEDs was relatively stable. This allows the possibility of organising wireless control of temperature conditions on premises without Wi-Fi. Perspective uses of temperature control with white LEDs approach include the creation of “Smart house» control system without using wirelines and with cheap microcontrollers, which signficiantly decreases costs of the system.
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FATHIMA, SYEDA ARFAIN. "LOW-COST DIGITAL FREQUENCY METER." International Scientific Journal of Engineering and Management 04, no. 05 (2025): 1–9. https://doi.org/10.55041/isjem03748.

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ABSTRACT: This paper presents the design and implementation of a low-cost digital frequency meter capable of measuring the frequency of periodic signals ranging from a few hertz to hundreds of kilohertz. It is designed using basic electronic components such as a microcontroller (e.g., ATmega328P), a crystal oscillator for time reference, and a digital display unit. The proposed system uses the time period method to count signal pulses over a known time window, thus enabling accurate frequency computation. This cost-effective and compact design can be used in laboratories, workshops, and educational environments where budget constraints exist. Keywords: Frequency Meter, ATmega328P, Microcontroller, Digital Measurement, Timer, Oscillator.
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Asad, Muhammad Ridwan, Oky Dwi Nurhayati, and Eko Didik Widianto. "Sistem Pengamanan Pintu Rumah Otomatis via SMS Berbasis Mikrokontroller ATMega328P." Jurnal Teknologi dan Sistem Komputer 3, no. 1 (2015): 1–7. http://dx.doi.org/10.14710/jtsiskom.3.1.2015.1-7.

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In this article, an automatic door security was designed used SMS, which serves as security for a microcontroller based door. This system was designed to facilitate the home user to lock the door and notice the condition of the house when the doors were left empty. The medium used is a phone by using SMS facility. This device consists of a sensor that is a “push button” that serves as input to inform the condition of the door to the microcontroller, microcontroller used is ATmega328P. Then Wavecom GSM Modem M1306B which serves as the sender and recipient SMS, using a solenoid to lock the door, and use the buzzer for alarm. The security system has been built with the working principles if there are people who want to try to enter and then numbers uninitialized on the microcontroller, the system will give a warning SMS notification to the user that "THERE ARE TRYING SIGN", and when the system is forcibly opened, the system will activate alarm as a warning sign and send SMS alert notification text of "alarm" to the phone number programmed into microcontroller.
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Dissertations / Theses on the topic "ATmega328p microcontroller"

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Henriksson, David, and Eliaz Sundberg. "Evaluation of the NESizer2 method as a means of wrapping embedded legacy systems." Thesis, KTH, Skolan för elektroteknik och datavetenskap (EECS), 2019. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-247909.

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Legacy computer systems are systems where several of the main hardware and software components date back several decades. Modernizing these systems is often considered a large monetary and temporal investment with high risk, and to keep maintaining them usually becomes more and more difficult over time, which is why these legacy systems are still being used to this day in many industry sectors. A solution is therefore to try and integrate the legacy system components into modern systems, and there are several ways of achieving this. This bachelor thesis project work aims to analyze one approach known as “wrapping”. More specifically it analyzes NESizer2 Method, a method which utilizes relatively simple hardware and software interfaces to control the Ricoh RP2A03 processor found in the Nintendo Entertainment System, using an Atmega328 microprocessor. During the design and development phases of the project work a literature study was conducted, and experimental research method was utilized. The testing and experimental phases of the project work was focused on examining how identified key variables behaved when modifying certain parameters in the system. While we were able to produce some valid data, the results proved to be somewhat inconclusive, as certain operations such as memory operations did not work, leading to the conclusion that our circuit contained a faulty component.<br>Legacydatorsystem är system där många av de huvudsakliga hårdvaruoch mjukvarukomponenterna är flera decennier gamla. Att modernisera dessa system ses ofta som en stor monetär och tidsmässig investering, och att fortsätta att underhålla dem blir vanligtvis svårare och svårare med tiden. En lösning är därför att försöka att integrera legacy-systemets komponenter i moderna system, och det finns ett flertal tillvägagångssätt att uppnå detta. Detta kandidatexamensarbete ämnar att analysera ett tillvägagångssätt känt som “wrapping”. Mer specifikt analyseras NESizer2-metoden, en metod som utnyttjar relativt enkla hårdvaruoch mjukvarugränssnitt till att kontrollera Ricoh 2A03-processorn som finns i Nintendo Entertainment System, med hjälp av en Atmega328 mikroprocessor. Under designoch utvecklingsfaserna av projektarbetet utfördes en litteraturstudie, och experimentiell forskningsmetod användes. Testoch experimentfaserna av projektarbetet fokuserade på att undersöka hur identifierade nyckelvariabled betedde säg då man modifierade vissa parametrar i systemet. Även om vi lyckades producera en del riktig data visade sig resultaten vara ofullständiga, då vissa operationer såsom minnesoperationer inte fungerade, vilket ledde till slutsatsen att vår krets innehöll en defekt komponent.
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Frecer, Petr. "Radiokomunikační monitor pro ISM pásmo 868 MHz." Master's thesis, Vysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologií, 2012. http://www.nusl.cz/ntk/nusl-219885.

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This thesis deals with the design and the realization of the radiocommunication monitor for the 868 MHz band. In the thesis, a description of licence-free radio bands complying ITU recommendations and ETSI standards is given. A special attention is paid to the 863 MHz - 870 MHz band. The transceiver CC1020 that forms the base for the monitor is described in detail. The circuit design, the monitor assembly and the firmware creation are presented step by step. The radiocommunication monitor is portable and battery powered. The monitor is able to display RF signals in the 868 MHz band, to indicate the frequency error of the transmitter and to receive FSK modulated signal. Demodulated data can be transferred to the personal computer via the USB.
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Elksnys, Vaidas. "Spausdinimo įrenginio “CITIZEN-MD910” patikros stendas." Bachelor's thesis, Lithuanian Academic Libraries Network (LABT), 2011. http://vddb.laba.lt/obj/LT-eLABa-0001:E.02~2011~D_20110804_091858-44674.

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Spausdinimo įrenginys „CITIZEN MD-910“ naudojamas kasos aparatuose, kaip kliento ir kontrolinės juostų spausdintuvas. Šis spausdintuvas plačiai naudojamas šiuose kasos aparatuose: ELCOM EURO-2000M, CASIO FE-800, DATECS MP-500, KONIC SR508F. Šiuos spausdintuvus remontuojant kasos aparatuose, iškyla pavojus, panaikinti kasos aparato atmintį, kurioje saugomi programiniai ir apyvartų duomenys. Spausdinimo įrenginio „CITIZEN MD-910“ patikros stendas kuriamas, tam, kad palengvinti kasos aparatų remonto darbus, taip sumažinant tikimybę panaikinti remontuojamo kasos aparato atmintį. Darbo tikslas – išnagrinėti spausdinimo įrenginio „CITIZEN MD-910“ veikimo principą, elektrines bei mechanines charakteristikas. Taip pat, išsiaiškinti spausdintuvo dvigubos galvos adatų išsidėstymą, sukurti spausdinimo algoritmą, simbolių biblioteką ir valdymo programą. Spausdintuvas „CITIZEN MD-910“ bus dedamas į stendą ir pasiuntus į jį iš valdymo programos tekstą, tikrinamas jo veikimas. Stendas atitiks spausdintuvo realų darbinį režimą. Iš to, kaip vyks spausdinimas, ir iš atspausdinto teksto ant popieriaus juostos, bus sprendžiama apie spausdintuvo mechaninius ir elektronikos gedimus, adatų veikimą ir jų mušimo jėgą į popierių, bei tinkamumą tolesnei eksploatacijai. Spausdinimo įrenginio „CITIZEN MD-910“ patikros stendo pagrindinė kūrimo priežastis yra ta, jog nėra sukurtų panašių analogų, kurie palengvintų šių kasos aparatų spausdinimo įrenginių remonto darbus.<br>Dot impact printer mechanism “CITIZEN MD-910” is used in cash registers as a printer for customer receipts and journal paper ribbons. This printer is widely used in the cash registers such as ELCOM EURO-2000M, CASIO FE-800, DATECS MP-500, KONIC SR508F. Repairing these printers inside the cash registers there is a risk to delete the cash register’s memory in which programs and data of a turnover is stored. The dot impact printer mechanism “CITIZEN MD-910” test stand is being worked out to make the cash registers repairing easier and in this way to reduce the risk of deleting cash registers memory. The printer “CITIZEN MD-910” will be placed in the test stand and its work will be tested by sending text from the operating program into it. The stand will simulate real working conditions of the printer. Analyzing the printing process and the printed text on the paper ribbon it will be possible to decide on printer’s mechanical and electrical damage, work of wires and force they dot the paper, also, further usability. There are no similar analogues which could make the repairing of the cash registers dot impact printer mechanism “CITIZEN MD-910” easier and this is the main reason to work out the dot impact printer mechanism “CITIZEN MD-910” test stand.
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Левченко, Віталій Михайлович. "Пристрій активної безпеки автомобіля". Master's thesis, Київ, 2018. https://ela.kpi.ua/handle/123456789/25876.

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Метою магістерської дисертації є покращення параметрів та характеристик активної безпеки автомобіля та розширення її застосування. Задачами дослідження є: аналітичний огляд існуючих систем безпеки автомобіля; розробка пристрою автомобільної безпеки та виконання його моделювання; дослідження та аналіз характеристик спроектованого пристрою. – об’єкт дослідження — пристрій для зменшення вірогідності дорожньо-транспортної пригоди та забезпечення безпеки пасажирам автомобіля. – предмет дослідження — параметри та характеристики пристрою та систем активної безпеки автомобіля на його основі. – методи дослідження: теоретичний розрахунок та експериментальне дослідження параметрів макету пристрою. – наукова новизна одержаних результатів: запропоновано та досліджено використання пристрою автомобільної безпеки з представленим алгоритмом роботи. – апробація результатів дисертації. міжнародна наукова інтернет–конференція «Інформаційне суспільство: технологічні, економічні та технічні аспекти становлення» (Випуск 32, 16 жовтня 2018р).<br>The purpose of the master's thesis is to improve the parameters and characteristics of active safety of the car and extend its application. The objectives of the study are: an analytical review of existing car security systems; development of the automobile safety device and its simulation; research and analysis of characteristics of the designed device.  the object of research - a device for reducing the probability of road traffic accidents and ensuring the safety of passengers of the car.  subject of research - parameters and characteristics of the device and active safety systems of the car on its basis.  research methods: theoretical calculation and experimental study of parameters of the device layout.  scientific novelty of the obtained results: the use of the device of automobile safety with the presented algorithm of work is offered and researched.  approbation of the results of the dissertation. International Scientific Internet Conference "Information Society: Technological, Economic and Technical Aspects of Formation" (Issue 32, October 16, 2018).
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Jones, Omar. "DESIGN AND DEVELOPMENT OF AN EMBEDDED DC MOTOR CONTROLLER USING A PID ALGORITHM." Thesis, Linköping University, Electronics System, 2010. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-58947.

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<p>This project was held at London South Bank University in the UK, with corporation with staff from Linköping University in Sweden as Bachelor thesis.</p><p>This report will guide you through the used techniques in order to achieve a successful cooler/Fan project with a minimum budget and good energy saving methods.</p><p>The steps of setting the used software and components are supported with figures and diagrams. You will find full explanation of the used components and mathematics, in additional to a complete working code.</p>
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Bartošík, Vladislav. "Řízení grafického OLED displeje mikrokontrolérem Atmel." Master's thesis, Vysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologií, 2010. http://www.nusl.cz/ntk/nusl-218559.

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This Master's thesis deals with design and a realisation of a device controlling an OLED display, Densitron DD-25664-1A. This display has a resolution of 256 x 64 pixels and allows displaying of 4-bit grayscale. The proposed utility software implements the initialization and termination functions, two sets of fonts { Latin and Greek letters and functions for rendering graphics and text. The result of the project is a device with the controlling software.
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Svozil, Marek. "Racionalizace konceptu připojení fotovoltaické elektrárny." Master's thesis, Vysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologií, 2015. http://www.nusl.cz/ntk/nusl-221277.

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This masters thesis addresses the racionalization of the concept of photovoltaic power station connection. A way of compensation valuable components involvement standar- tizovaným inverter controlled by a microcontroller. Also includes the measurement of voltage and current using a microcontroller. The output voltage of the DC/DC con- verter is controlled by the variable duty cycle of the PWM signal generated by the microcontroller ATmega32.
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Kuiry, Chandra Mohan. "Low Cost Programmable DC Power Supply With Keypad Entry using ATmega328 Microcontroller." Thesis, 2017. http://ethesis.nitrkl.ac.in/8927/1/2017_MT_CMKuiry.pdf.

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The main function of the programmable DC power supply unit is to provide a regulated power without any distortion & ripples. All input output data are shown in the display board with keypad entry. This is fully microcontroller programmable based power supply. The power supply unit is a closed loop control system which is designed using a buck converter, ATMEGA328 microcontroller is used which gives control signal to the unit to accomplish the programmable voltage at output terminal. Control board with keypad and alphanumeric character, Liquid crystal device(LCD) is a component of controller which gives user interface to feed the control signal(I/P) and to show the output values. The proposed model has double O/P DC power supply with voltage ranges from 0V to + 30V and current 3A. Short circuit current limiter, temperature protection circuit, over voltage/over current protection circuit and alarm circuit is used in this model. The model has been effectively developed and hardware confirmation utilizing ATMEGA328 micro controller has appeared that the Model is functioning as expected and successfully with attractive results.
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Chen, Yan-Fu, and 陳炎甫. "Radiation-Emission Analysis of ATmega32M1 Microcontroller using an IC-EMC Simulation Tool." Thesis, 2014. http://ndltd.ncl.edu.tw/handle/87179448877895272007.

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碩士<br>國立雲林科技大學<br>電機工程系<br>102<br>In recent years, semiconductor technology has been evolving very quickly. The channel lengths of semiconductor devices have been in the nanometer scale for a long time. The miniaturization of the semiconductor devices can indeed enhance the efficiency of an integrated circuit (IC). However, accompanying with the advances in IC technology are some important issues that remain to be coped with,such as signal integrity (SI) and electromagnetic compatibility (EMC). During this study, I requested Huang-Chin Technology Inc. to fabricate Atmel 8-bit microcontroller test circuit boards for me and asked ATM Electronic Technology Inc. to write the relevant drivers for the microcontrollers in order to carry out EMC measurement. The clock signals generated by the test circuit board can be adjusted by changing the relevant parameters needed by the drivers. The signals radiated from the circuit board were measured using a transverse electromagnetic cell (TEM cell) and a near-field probe, and were simulated using an IC-EMC software tool developed by Institute National des Sciences Appliquees (INSA) in France. Since the fabricated hardware only functioned partially and since this is the last year (four years in total) allowed for my master program, measured and simulated results, which although had the same trend but seemingly did not agree with each other well enough, were separately presented without comparison.
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Patra, Amruta. "Development of real time digital controller for a liquid level system using ATMEGA32 microcontroller." Thesis, 2011. http://ethesis.nitrkl.ac.in/2257/1/Thesis(B.Tech).pdf.

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This project describes how to implement a digital controller algorithm like PI controller in real time using a simple yet effective digital control device-ATMEGA32 microcontroller for controlling a prototype model of a liquid level control system. A liquid level sensor(rotary potentiometer) detects the present level of the liquid in the tank in terms of the voltage across the potentiometer and feeds it to the microcontroller and the control action generated by the microcontroller is amplified through a suitable amplifier that actuates the actuator(the pump) and finally controls the flow output of the pump. The operator has to set the desired level in the microcontroller and accordingly the feedback control in the real time will get operated for achieving the desired level. In the present project work , a dicretized model of the liquid level system is developed using PI controller and is simulated in MATLAB Simulink so as to observe the nature of the PI controlled system output. It is also compared with the uncontrolled liquid level system model simulation output so as to see the advantage of using a PI controller. Also, an attempt has been made for developing a dummy representation of the actual prototype model for automatic controlling the liquid level so as to know the proper functioning of the algorithm. The hardware is set up and the devices like the microcontroller, D/A, power amplifier are interfaced with each other .The devices are also tested for their proper functioning. The PI controller is developed in discrete domain and its parameters are determined using the open loop Ziegler Nichols tuning method. The dicretized control algorithm is then implemented in the microcontroller using C language for coding. The nature of the controller is observed and results are shown . Also the experimental results are compared with the simulated results to show the similarity and accuracy of the controller. This liquid level study will be useful for several industrial and household applications like boiler level control , household supplies and many more.
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Book chapters on the topic "ATmega328p microcontroller"

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Tsybriy, Irina, and Nikolay Koval. "Device for Non-destructive Testing Based on the ATmega328p Microcontroller." In Lecture Notes in Networks and Systems. Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-031-11058-0_160.

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Khalid, Sufia, Mohammad Sarfraz, Vishal Singh, Aafreen, and Ali Allahloh. "A Novel Model for IoT-Based Meter Using ATmega328P Microcontroller and Google Cloud Store." In Lecture Notes in Mechanical Engineering. Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-5463-6_57.

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Montiel, Valentina Bastida, and Marco Gustavo S. Estrada. "Design of a Development Board Based on the Microcontroller ATmega328P, Including a Symmetric Low-Noise Voltage Source." In Proceedings of Trends in Electronics and Health Informatics. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-1916-1_33.

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Karam, Zeyad A., Hamzah M. Marhoon, and Abdullah Fadhil Mohammed. "Design, Interface, and Control of Smart Two-Axis Table for Plotting and Drilling Operations Based on Atmega328P Microcontroller." In Innovative Computing and Communications. Springer Nature Singapore, 2024. http://dx.doi.org/10.1007/978-981-97-3588-4_9.

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Utemesov, Ravil, and Elena Shimko. "Digital Device for the Computer Stabilometry Based on the Microcontroller ATmega328." In Communications in Computer and Information Science. Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-030-94141-3_5.

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Sharma, Prerna, Piyush Jain, and Latika Kharb. "Internet of Things-Based Water Quality Control and Monitoring System for Urban Society." In Integration and Implementation of the Internet of Things Through Cloud Computing. IGI Global, 2021. http://dx.doi.org/10.4018/978-1-7998-6981-8.ch009.

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In this chapter, an attempt has been made to develop a hardware-based remote water quality monitoring system using a single-chip microcontroller, Atmega328P, in synchrony with some sensor technology and GSM/GPRS module for long-distance data transmission. The proposed system is able to perform a qualitative test on the water, taking into consideration both the chemical behavior as well as physical properties exhibited by the latter. The fluid will be analyzed in terms of its ph value (i.e., the molar concentration of hydrogen ions, the haziness caused by the major suspension of minute particles). The device aims to transmit all the deliberated parameters of the wastewater along with the longitude and latitude information to the concerned authorities for real-time monitoring of that data. The subject aims to devise a robust solution that can be used to analyze the quality of large water bodies and send the analysis report to the authorities of pollution control for further implication.
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Febriandirza, Arafat, and Abdiel Alpriyan Gempa Alamsyah Sahuri. "Design and Construction of an Automatic Dispenser for the Visually Impaired Using Microcontroller Technology." In Advances in Transdisciplinary Engineering. IOS Press, 2024. https://doi.org/10.3233/atde241220.

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Water is a fundamental need for humans, comprising 70% of the human body. Dispensers are commonly used due to their convenience and hygienic nature for storing drinking water. Visually impaired individuals often face challenges in using conventional dispensers, which can lead to injuries when retrieving water. This study aims to design an automatic dispenser to assist the visually impaired, reducing the risk of injury when using dispensers. The dispenser is designed with two microcontrollers: Atmega32 and ESP8266. The ESP8266 microcontroller has a Wi-Fi feature, enabling it to connect to the internet. The dispenser uses two ultrasonic sensors to detect objects obstructing the sensor’s beam, helping control the flow of water. The system communicates between the two microcontrollers and connects to the Telegram app via Wi-Fi, allowing for remote monitoring and control. The Arduino Uno microcontroller serves as the system’s control center.
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Paraskar, Swati Amod, and Rucha Anil Jichkar. "A9G-Based Women's Safety Device." In Wearable Devices, Surveillance Systems, and AI for Women's Wellbeing. IGI Global, 2024. http://dx.doi.org/10.4018/979-8-3693-3406-5.ch001.

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Ensuring women's safety is not just a women's issue, it's a matter of human rights and social justice Women safety device is helpful and practical instrument for safeguarding the safety and well-being of women.The A9G module-based women's safety device will be used in the ladies safety gadget. This device will Send notifications, alarms or location updates to the parent's mobile or register mobile number . The A9G is a cellular IoT (Internet of Things) module It is designed for GPS tracking, remote monitoring, and communication. A notable feature of the A9G module is its built-in GPS (Global Positioning System) functionality.The A9G module provides cellular connectivity, allowing it to connect to the internet. This enables IoT devices to send and receive data remotely. GPS Functionality allows devices to determine their precise location, making it suitable for tracking applications. The system includes Arduino ATMEGA328 microcontroller, Switch button, Vibration sensor, Force sensor, ESP32 Wi-Fi module, and Mobile application. This safety device is a tool for women's security.
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Abinaya.B, Abirami.A.P, Divya.J, and Rajalakshmi.R. "Wireless Charger for Artificial Pacemaker." In Advances in Parallel Computing. IOS Press, 2021. http://dx.doi.org/10.3233/apc210096.

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The vast majority of the modernized implantable devices and Bio-sensors are set inside a patient’s body. To overcome this constraint, in this paper we have designed a rechargeable battery with wireless power transfer technique. The transdermal power transfer for the Pacemaker which is placed inside the heart should be possible by the concept of mutual inductance. The receiver loop ought to be situated inside the body and the transmitter curl ought to be situated outside of the body. The voltage controller will give or manage the necessary yield (output) voltage. The experiments were conducted on wireless charging through pork tissues reveal that from a 3.919-mw power source, 3.072-mw power can be received at 300kHz, reaching a high wireless power transfer efficiency of 78.4%, showing that the charging is very fast. We have also connected a Bluetooth Module to the Atmega328 microcontroller. This Bluetooth technology is used in the Android mobile application to notice the charging levels of the pacemaker. This Inductive power transfer technique takes out the danger of contamination which is brought about by the medical procedure.
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Aderemi Bello, Kazeem, Abdulrahman Adama, Olasunkanmi Adekunle Odunaiya, and Cordelia Ochuole Omoyi. "Experimental Design and Modelling of Automated 4-Cylinder Engine Injector." In Principles of Automation and Control. BENTHAM SCIENCE PUBLISHERS, 2023. http://dx.doi.org/10.2174/9789815080926123010018.

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The global emission regulations and fossil fuel pollution control have necessitated the need to study the effect of injector fuel splitting time and flow rate on engine performance. To achieve this, an automated prototyped 4-cylinder injector engine was developed to replicate the real-time activities of the injector system in the internal combustion (IC) engine. Arduino Nano open-source platform was used to integrate the various component parts such as the fuel injector, fuel tank, submersible fuel pump injector rail, transparent plastic chamber, flexible hose, Engine Control Unit (ECU), connecting wires, frame, Liquid Crystal Display (LCD), switch button, relay module, current sensor, potentiometer, Arduino nano, and pressure sensor that were used for the design experiment. Programmable circuit board microcontroller, Arduino (Integrated Development Environment) IDE, and C++ coding language were used to achieve the smart regulations of the injector operation system to replicate the real-time situation when the engine is running. This was achieved by incorporating Arduino microcontroller ATMEGA328, C++, and Arduino IDE software. The Arduino programming initiates the injection system and measures the injection output parameters. The system was designed to vary the splitting time delay between the four injectors and to measure the flow rate of the fuel injected. The experimental study showed that at a very high splitting time delay, the amount of fuel injected is more than the fuel injected at a relatively low splitting time delay with an average flow rate of 4.36 l/min at 50 microseconds and 0.02 l/min at 500 microseconds for high and low splitting time, respectively. This study will help the stakeholders in the automotive industry to virtualize the invisible situation of the fuel injector in real-time performance in the engine.
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Conference papers on the topic "ATmega328p microcontroller"

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Yellapu, Sumith, Bharath Kumar Peela, A. Durga Bhavani, Praveena Amuluru, Vanajakshi Bammidi, and Renuka Pappu. "Multilevel Inverter with H-Bridge Using an ATMega328p Microcontroller." In 2024 International Conference on Sustainable Power & Energy (ICSPE). IEEE, 2024. https://doi.org/10.1109/icspe62629.2024.10924367.

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Pokydko, Maksym, Ostap Oliinyk, and Vadym Tymchenko. "MEMS Gyroscope Based on MPU-6050 Sensor and ATmega328 Microcontroller." In 2024 IEEE 7th International Conference on Smart Technologies in Power Engineering and Electronics (STEE). IEEE, 2024. http://dx.doi.org/10.1109/stee63556.2024.10748180.

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Manjusha, Muthuluru, Pullagura Sriram, and N. Prabakaran. "Automatic Fish Feeder System using ATMEGA328p Microcontroller." In 2023 Second International Conference on Electronics and Renewable Systems (ICEARS). IEEE, 2023. http://dx.doi.org/10.1109/icears56392.2023.10085291.

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Gupta, Shubham, Divanshu Jain, and Milind Thomas Themalil. "Electronic Voting Mechanism using Microcontroller ATmega328P with Face Recognition." In 2021 5th International Conference on Computing Methodologies and Communication (ICCMC). IEEE, 2021. http://dx.doi.org/10.1109/iccmc51019.2021.9418372.

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M. E., P. Ramakrishnan, Hari Prasath S, Harish L, and KrishnaKumar E. "IoT based Industrial Automation for Various Load using ATmega328p Microcontroller." In 2022 6th International Conference on Intelligent Computing and Control Systems (ICICCS). IEEE, 2022. http://dx.doi.org/10.1109/iciccs53718.2022.9788258.

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Nugroho, Dedi, Priyono Priyono, and Jatmiko Endro Suseno. "An Automatic PH Equipment for Hydroponic System Using ATMEGA328P Microcontroller." In Proceedings of the International Conference on Maritime and Archipelago (ICoMA 2018). Atlantis Press, 2019. http://dx.doi.org/10.2991/icoma-18.2019.79.

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Zakaria, Mohamad Fauzi, Tan Jiah Soon, and Munzilah Md Rohani. "Bus driving assistance system for town area by using ATmega328P microcontroller." In ADVANCES IN ELECTRICAL AND ELECTRONIC ENGINEERING: FROM THEORY TO APPLICATIONS: Proceedings of the International Conference on Electrical and Electronic Engineering (IC3E 2017). Author(s), 2017. http://dx.doi.org/10.1063/1.5002059.

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Duggal, Angel Swastik, Anita Gehlot, Praveen Kumar Malik, Nitasha Bisht, and Rajesh Singh. "A Signal Generation System for Galvanic Taste Modulation using ATmega328p Microcontroller." In 2023 4th International Conference on Electronics and Sustainable Communication Systems (ICESC). IEEE, 2023. http://dx.doi.org/10.1109/icesc57686.2023.10192933.

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Nurbuwat, Adzin Kondo, Kholid Yusuf Eryandi, Yuyun Estriyanto, Indah Widiastuti, and Nugroho Agung Pambudi. "Timing performance of a self-cancelling turn-signal mechanism in motorcycles based on the ATMega328P microcontroller." In THE 1ST INTERNATIONAL CONFERENCE AND EXHIBITION ON POWDER TECHNOLOGY INDONESIA (ICePTi) 2017. Author(s), 2018. http://dx.doi.org/10.1063/1.5024111.

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Sam, Rosidah, Mohd Nor Md Tan, and Mohamad Safari Ismail. "Quad-copter using ATmega328 microcontroller." In 2013 International Conference on Electrical Machines and Systems (ICEMS). IEEE, 2013. http://dx.doi.org/10.1109/icems.2013.6754500.

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