Academic literature on the topic 'Atmega328p'

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Journal articles on the topic "Atmega328p"

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Inácio, Pedro M. C., Rui Guerra, and Peter Stallinga. "An Ultra-Low-Cost RCL-Meter." Sensors 22, no. 6 (March 14, 2022): 2227. http://dx.doi.org/10.3390/s22062227.

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An ultra-low-cost RCL meter, aimed at IoT applications, was developed, and was used to measure electrical components based on standard techniques without the need of additional electronics beyond the AVR® micro-controller hardware itself and high-level routines. The models and pseudo-routines required to measure admittance parameters are described, and a benchmark between the ATmega328P and ATmega32U4 AVR® micro-controllers was performed to validate the resistance and capacitance measurements. Both ATmega328P and ATmega32U4 micro-controllers could measure isolated resistances from 0.5 Ω to 80 MΩ and capacitances from 100 fF to 4.7 mF. Inductance measurements are estimated at between 0.2 mH to 1.5 H. The accuracy and range of the measurements of series and parallel RC networks are demonstrated. The relative accuracy (ar) and relative precision (pr) of the measurements were quantified. For the resistance measurements, typically ar, pr < 10% in the interval 100 Ω–100 MΩ. For the capacitance, measured in one of the modes (fast mode), ar < 20% and pr < 5% in the range 100 fF–10 nF, while for the other mode (transient mode), typically ar < 20% in the range 10 nF–10 mF and pr < 5% for 100 pF–10 mF. ar falls below 5% in some sub-ranges. The combination of the two capacitance modes allows for measurements in the range 100 fF–10 mF (11 orders of magnitude) with ar < 20%. Possible applications include the sensing of impedimetric sensor arrays targeted for wearable and in-body bioelectronics, smart agriculture, and smart cities, while complying with small form factor and low cost.
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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 (April 25, 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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S, Madhura, Deepthi G, Chinnitaha B, and Disha D. "IoT Based Monitoring and Control System using Sensors." June 2021 2, no. 2 (June 3, 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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Aldi Masajid Abdil Bar, Trismawati Trismawati, and Mustakim Mustakim. "PEMBUATAN PENYIRAM BAWANG MERAH OTOMATIS MENGGUNAKAN ARDUINO ATMEGA328P." Industri Inovatif : Jurnal Teknik Industri 11, no. 1 (April 18, 2021): 9–13. http://dx.doi.org/10.36040/industri.v11i1.3180.

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Indonesia hanya memiliki 2 musim yaitu musim penghujan dan musim kemarau. Biasanya petani bawang merah bergantung pada musim penghujan untuk bercocok tanam sehingga tidak perlu dilakukan penyiraman karena telah mendapatkan air hujan yang cukup. Sedangkan pada musim kemarau tanaman harus disiram secara manual dengan teratur sesuai dengan kondisi kelembaban tanah. Para petani biasanya tidak menjual hasil pertanian mereka pada musim kemarau karena petani harus mengeluarkan biaya dan tenaga ekstra untuk melakukan penyiraman tanaman bawang merah. Untuk mengatasi kendala musim kemarau dan agar petani bawang merah tetap bisa bercocok tanam pada musim kemarau maka diperlukan suatu produk alat penyiram tanaman otomatis berbasis arduino berdasarkan kelembaban tanah yang dideteksi menggunakan sensor kelembaban tanah. Alat ini akan mendeteksi apakah tanah tempat bercocok tanam dalam kondisi kering ataupun basah sehingga alat dapat mengontrol penyiraman secara otomatis. Jadi petani tidak perlu melakukan penyiraman secara manual. Sehingga petani bisa tetap bercocok tanam pada saat musim kemarau.
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Fauzi, Fauzi. "Designed of Automatic Egg Incubator Based on Atmega328p Microcontroller." Journal of Aceh Physics Society 8, no. 1 (January 3, 2019): 22–24. http://dx.doi.org/10.24815/jacps.v8i1.12213.

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Telah berhasil dilakukan sebuah perancangan ruangan penetas telur otomatis dengan memanfaatkan sensor DHT-11 yang berbasis mikrokontroler ATMega328p. Sistem ini dirancang sehingga suhu dan kelembaban ruangan pentetas tersebut dapat diatur secara otomatis. Otomatisasi pengontrolan sistem ini cukup kompleks dan membutuhkan berbagai komponen terintegrasi dengan kemampuan pembacaan masukan, pemrosesan data dan pengontrolan keluaran secara bersamaan dan terprogram. Sistem ini nantinya akan diaplikasikan untuk keperluan industri peternakan unggas. Penelitian ini berguna bagi peternak untuk melakukan proses pengontrolan penetasan dimana suhu dan kelembaban ruangan penetas secara otomatis akan diatur suhu dan kelembaban dengan sendirinya sehingga memudahkan peternak sebab tidak memerlukan pengamatan khusus terhadap suhu ruang dan kelembabannya. Sistem utama pada mesin penetas telur otomatis ini adalah sensor DHT-11 untuk mendapatkan nilai suhu dan kelembabannya dan data dari sensor tersebut akan diproses oleh sebuah mikrokontroler lalu ditampilkan nilainya pada LCD. Ketika suhu terlalu tinggi, maka kipas akan menyala dan lampu akan mati, sedangkan jika suhu lebih rendah dari set point maka lampu menyala kembali dan kipas akan mati. An automatic egg hatching room has been successfully designed by using the DHT-11 sensor based on the ATMega328p microcontroller. The system is designed so that the temperature and humidity of the plant room can be adjusted automatically. Automation of controlling this system is quite complex and requires various integrated components with the ability to read input, data processing and controlling output simultaneously and programmed. The system will later be applied to the needs of the poultry farming industry. This research is useful for farmers to carry out the hatching control process where the temperature and humidity of the incubator will automatically be regulated by temperature and humidity by itself so as to make it easier for farmers because it does not require special observations on the room temperature and humidity. The main system in this automatic egg incubator is the DHT-11 sensor to get the value of temperature and humidity and the data from the sensor will be processed by a microcontroller and displayed on the LCD. When the temperature is too high, the fan will turn on and the light will turn off, whereas if the temperature is lower than the set point, the light will turn on again and the fan will turn off. Keywords: ATMega328p, Sensor suhu, Adruino Uno, PentetasTelur.
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Patil, Yash, Sumedh Naik, Rashmi Phadnis, and Vijaya Kamble. "Basic Logic Gate Detector Using Atmega328P and Android App." HELIX 9, no. 3 (June 30, 2019): 4937–40. http://dx.doi.org/10.29042/2019-4937-4940.

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Nurjaman, Jajang. "Prototype Sistem Penyiram Sayuran Bayam Otomatis Berbasis Microcontroller Atmega328p." Jurnal Bangkit Indonesia 8, no. 2 (September 30, 2019): 12–15. http://dx.doi.org/10.52771/bangkitindonesia.v8i2.108.

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Perkembangan dan kemajuan teknologi saat ini sangat pesat, dengan adanya kemajuan dibidang ilmu pengetahuan dan teknologi, menghasilkan inovasi baru. Bahkan pada perusahaan industri otomotif, dan industri makanan, banyak menggunakana bantuan robot otomatis. Terutama Pada bidang pertanian penggunaan teknologi otomatis sangat perlu karena dilihat dari segi kesulitan dalam mengolahan lahan maupun perawatan tanaman. Penyiraman adalah hal yang utama dalam mengelola sayuran. Seringkali penyiraman sayuran memakan waktu yang lama, dan membutuhkan pengontrolan pada pomp air agar ketika air pada wadah penampungan sudah tidak tidak lagi tersedia terjadi jim pada pompa air. Perancangan prototype Sistem Penyiram Sayuran Bayam Otomatis Berbasis Mikrokontroler ATMEGA328P, yang bertujuan untuk membantu petani dalam penyiraman sayuran bayam. Karena alat ini dapat memantau penyiraman secara otomatis. dengan menggunakan Soil Moisture Hygrometer yang akan mendeteksi tingkat kelembaban pada tanah, sehingga penyiraman akan dihentikan secara otomatis ketika kandungan air pada tanah sudah basah.Kata kunci
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Kalita, Sanjib, J. N. Borole, and Dr K. P. Rane. "Wireless Earthquake Alarm System using ATmega328p, ADXL335 and XBee S2." International Journal of Engineering Trends and Technology 12, no. 3 (June 25, 2014): 144–48. http://dx.doi.org/10.14445/22315381/ijett-v12p227.

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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 (January 30, 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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Khaery, Miftahul, Anak Agung Ngurah Gunawan, and Ida Bagus Alit Paramarta. "Water flow control system by online based on ATmega328P microcontroller." Contemporary Engineering Sciences 13, no. 1 (2020): 303–14. http://dx.doi.org/10.12988/ces.2020.91603.

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Dissertations / Theses on the topic "Atmega328p"

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Полєвіченко, О. Г. "Система мобільного відеоспостереження важкодоступних та небезпечних для людини місць." Thesis, Чернігів, 2020. http://ir.stu.cn.ua/123456789/23512.

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Полєвіченко, О. Г. Система мобільного відеоспостереження важкодоступних та небезпечних для людини місць : випускна кваліфікаційна робота : 123 "Комп’ютерна інженерія" / О. Г. Полєвіченко ; керівник роботи А. І. Роговенко ; НУ "Чернігівська політехніка", кафедра інформаційних та комп’ютерних систем. – Чернігів, 2020. – 63 с.
Об'єктом розробки була система мобільного відеоспостереження важкодоступних та небезпечних для людини місць. Проект створений на платформі «Arduino» . Управління роботом реалізовано за допомогою пульту . Реалізовано на мікроконтролері Atmega328P програмна частина для якого була реалізована на мові С. Метою роботи було зменшення участі людини при проведенні робіт в небезпечних умовах, використовуючи дистанційно кероване обладнання. У зв'язку з цим досить актуальним є створення робототехнічних комплексів, призначених для проведення робіт з попередження або ліквідації наслідків позаштатних ситуацій.
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Agrawal, Ambuj. "Implementation of Application Layer Protocol for an Active RFID System." Thesis, Virginia Tech, 2011. http://hdl.handle.net/10919/34961.

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The emerging technology of active RFID tags has strong potential in the areas of real time health monitoring, sorting of cargo, and large scale inventory management because of their longer communication range and larger data storage capacity. The market of active RFID is growing very rapidly and therefore there has been an increase in the number of companies engaging in this field. But very often it is found that the products available in the market are not always suited to the application at hand. To overcome this problem, off the shelf active RFID products which were reconfigurable and followed a standard PHY and MAC layer protocol were used for this work. By reprogramming the application layer protocol of the RFID hardware, these devices were made suitable for the desired application. This also allowed the RFID tags to extend their functionality by interfacing extra modules with themselves. The work presented in this thesis describes the way in which the microcontroller on board the active RFID tags and readers can be programmed so that the functionality of the RFID hardware can be changed as per requirements. It also shows that extra modules can be added to the tag by successfully interfacing an accelerometer module with the tag.
Master of Science
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Лисиця, В. О. "Мобільний додаток для дистанційного керування освітленням приміщення на базі платформи Android." Thesis, Чернігів, 2020. http://ir.stu.cn.ua/123456789/23652.

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Лисиця, В. О. Мобільний додаток для дистанційного керування освітленням приміщення на базі платформи Android : випускна кваліфікаційна робота : 123 "Комп’ютерна інженерія" / В. О. Лисиця ; керівник роботи О. В. Красножон ; НУ "Чернігівська політехніка", кафедра інформаційних та комп’ютерних систем. – Чернігів, 2020. – 95 с.
Проект містить аналітичний огляд джерел, опис схеми електричної структурної, опис схеми електричної принципової, розрахунок всіх застосованих елементів схеми пристрою, конструкторську частину, програмну частину, в якій описуються ключові етапи написання та виконання програми.
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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.
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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Pokorný, Rostislav. "Návrh programovatelného útlumového členu." Master's thesis, Vysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologií, 2020. http://www.nusl.cz/ntk/nusl-413091.

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This Master´s thesis focuses on design and implementation of programmable attenuator. The main aim of this thesis is to create an electronical device that provide continuous setting of attenuation value in the range between 0–150 dB. Setting a value from the range can be performed using buttons and set values are shown on display. For this thesis an attenuator with working frequency between 0–6 GHz was chosen and four–layer printed circuit board was designed. As a result the device is fitted with an 8bit microcontroller ATmega328P–PU using five 6bit digital attenuators connected in series with manual and program settings of attenuation from 0–157,5 dB with step of 0,5 dB. Data are shown on a build–in display. The application for remote settings and value reading over integrated USB (Universal Serial Bus) interface, was created in C#. In conclusion of this thesis there is a measurement evaluation of attenuation measurement performed on the device.
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Fize, Florian. "From Theory to Implementation of Embedded Control Applications : A Case Study." Thesis, Linköpings universitet, Institutionen för datavetenskap, 2016. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-131256.

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Control applications are used in almost all scientific domains and are subject to timing constraints. Moreover, different applications can run on the same platform which leads to even more complex timing behaviors. However, some of the timing issues are not always considered in the implementation of such applications, and this can make the system fail. In this thesis, the timing issues are considered, i.e., the problem of non-constant delay in the control of an inverted pendulum with a real-time kernel running on an ATmega328p micro-controller. The study shows that control performance is affected by this problem. In addition, the thesis, reports the adaptation of an existing real-time kernel based on an EDF (Earliest Deadline First) scheduling policy, to the architecture of the ATmega328p. Moreover, the new approach of a server-based kernel is implemented in this thesis, still on the same Atmel micro-controller.
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Lazárek, Zbyněk. "Systém pro monitorování spotřeby vozidel." Master's thesis, Vysoké učení technické v Brně. Fakulta informačních technologií, 2017. http://www.nusl.cz/ntk/nusl-363777.

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The aim of this thesis is to create a system that can detect fuel theft from vehicles. The systemconsists of a hardware device located in the monitored vehicles and information systemthat makes it possible to determine when and where the theft occurred. The thesis describesthe components of the hardware device and individual functionalities of the informationsystem.
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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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Polach, Pavel. "Tréningový systém pro sportovní lezce." Master's thesis, Vysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologií, 2013. http://www.nusl.cz/ntk/nusl-220335.

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The purpose of this diploma thesis was design and realisation of measuring system, enabling measuring forces between climber´s feet and holds on the climbing wall and using this measu-red values during a training of sport climber. In this thesis there are discovered possibilities about constructing this system and determina-ted basic requirements of measuring. There are also stated principles of application the strain gauges for measuring the tension. Descriptions of developping specific sensors, hardware interface and PC application are also part of this thesis. Constructed system was used for mea-suring climbers and values were analysed by using the application.
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Ristic, Dejan. "Upcycling av teckendisplaymodul : En adapter for styrkretsen Hitachi HD44780." Thesis, KTH, Skolan för elektroteknik och datavetenskap (EECS), 2018. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-232104.

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Upcycling can be described as an activity where outdated or discarded products are used as raw-materials in the construction of a new object, for which an increased quality or value is achieved. Some ideas for upcycling of technologically simple products have prooved successful, in the sense that those ideas have become widespread and practically implemented within a certain target audience. This thesis explores how an idea concerning upcycling of an electric product can be developed into a prototype, with the intent to simplify application of the idea within the target audience of electronic hobbyists. This is achieved through the development of a prototype for an adapter, the purpose of which is to extend the functionality of a character based LCD module with the Hitachi HD44780 control circuit. This allows for using such LCD module for displaying text in additional languages, and (for certain applications) using it as a substitute for a monochromatic graphical LCD module. The conclusion of the study is that the adapter prototype is capable of increasing the number of user defined characters that can be displayed simeltanously by a character LCD module, and that the prototype may be of use for certain types of applications within the intended target audience.
"Upcycling" kan beskrivas som en syssla där föråldrade eller kasserade produkter används som material vid tillverkning av ett nytt föremål, vilket har högre kvalitet eller värde. Det finns exempel på idéer för "upcycling" av teknologiskt enkla produkter vilka har visat sig framgångsrika, i bemärkelsen att de har nått spridning och tillämpas praktiskt inom någon målgrupp. I detta arbete undersöks hur en idé för "upcycling" av en elektrisk produkt kan utvecklas till en prototyp, med syftet att underlätta tillämpning av denna idé inom målgruppen elektronikhobbyister. Detta sker genom utveckling av en prototyp till en adapter, som utökar funktionaliteten hos en teckendisplaymodul med styrkretsen Hitachi HD44780. Adapterns funktion är att öka det antal användardefinierade tecken som kan visas på en sådan teckendisplaymodul. Detta möjliggör att teckendisplaymodulen kan användas för att visa text på fler språk, och att den för vissa ändamål kan användas som substitut för en monokrom grafisk displaymodul. Slutsatsen av arbetet är att prototypen av denna adapter kan användas för att öka det antal användardefinierade tecken som samtidigt kan visas på en teckendisplaymodul, samt att prototypen kan vara användbar för vissa syften inom den avsedda målgruppen.
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Books on the topic "Atmega328p"

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Singh, Rajesh. Robotic Platform Control with Atmega328 and NuttyFi Based on the Internet of Things. Nova Science Publishers, Incorporated, 2020.

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Singh, Rajesh. Robotic Platform Control with Atmega328 and NuttyFi Based on the Internet of Things. Nova Science Publishers, Incorporated, 2020.

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Bernstein, Herbert. Mikrocontroller: Grundlagen der Hard- und Software der Mikrocontroller ATtiny2313, ATtiny26 und ATmega32. Springer Vieweg, 2020.

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Book chapters on the topic "Atmega328p"

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Dunbar, Norman. "ATmega328P Configuration and Management." In Arduino Software Internals, 341–416. Berkeley, CA: Apress, 2020. http://dx.doi.org/10.1007/978-1-4842-5790-6_7.

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Dunbar, Norman. "ATmega328P Hardware: Timers and Counters." In Arduino Software Internals, 417–92. Berkeley, CA: Apress, 2020. http://dx.doi.org/10.1007/978-1-4842-5790-6_8.

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Dunbar, Norman. "ATmega328P Hardware: ADC and USART." In Arduino Software Internals, 493–555. Berkeley, CA: Apress, 2020. http://dx.doi.org/10.1007/978-1-4842-5790-6_9.

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Akkalkot, Sulochana I., G. H. Nandini, Y. Krishna, L. Sowmya, and K. G. Ravikumar. "Ultrasonic Blind Stick Using ATmega328P." In Lecture Notes in Electrical Engineering, 1313–19. Singapore: Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-3690-5_126.

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Sinha, Paritosh Kumar, Satyam Saraiyan, Momojit Ghosh, and Vijay Nath. "Design of Earthquake Indicator System Using ATmega328p and ADXL335 for Disaster Management." In Nanoelectronics, Circuits and Communication Systems, 565–72. Singapore: Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-13-0776-8_53.

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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, 639–48. Singapore: Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-5463-6_57.

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Kumar, Dilip S. V., Arthur Beckers, Josep Balasch, Benedikt Gierlichs, and Ingrid Verbauwhede. "An In-Depth and Black-Box Characterization of the Effects of Laser Pulses on ATmega328P." In Smart Card Research and Advanced Applications, 156–70. Cham: Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-15462-2_11.

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Bernstein, Herbert. "Hard- und Software für den ATmega32." In Mikrocontroller, 397–552. Wiesbaden: Springer Fachmedien Wiesbaden, 2020. http://dx.doi.org/10.1007/978-3-658-30067-8_7.

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Bernstein, Herbert. "Hard- und Software für den ATmega32." In Mikrocontroller, 333–475. Wiesbaden: Springer Fachmedien Wiesbaden, 2015. http://dx.doi.org/10.1007/978-3-658-02813-8_7.

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Acharya, Aishwarya S., Pavitra Gandhi, Sushmita Karkera, Nimish Ghagare, and Sanjay Deshmukh. "Posture Monitoring and Back Pain Relief Using ATmega328, Android and Unity." In Lecture Notes in Networks and Systems, 151–58. Singapore: Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-13-3765-9_16.

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Conference papers on the topic "Atmega328p"

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Beckers, Arthur, Josep Balasch, Benedikt Gierlichs, Ingrid Verbauwhede, Saki Osuka, Masahiro Kinugawa, Daisuke Fujimoto, and Yuichi Hayashi. "Characterization of EM faults on ATmega328p." In 2019 Joint International Symposium on Electromagnetic Compatibility, Sapporo and Asia-Pacific International Symposium on Electromagnetic Compatibility (EMC Sapporo/APEMC). IEEE, 2019. http://dx.doi.org/10.23919/emcsapporo/apemc44270.2019.9320849.

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Song, Menghua, Jinlong Cao, and Xuemei Liu. "Design of Intelligent Watering System Based on ATmega328P." In ICIT 2021: IoT and Smart City. New York, NY, USA: ACM, 2021. http://dx.doi.org/10.1145/3512576.3512675.

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Faisal, Fahad, Asif Karim, Md Zahid Hasan, Bharanidharan Shanmugam, Muntasir Mahdi, and Nazmun Nessa Moon. "Low Cost Voltage and Current Measurement Technique using ATmega328p." In 2020 Fourth International Conference on I-SMAC (IoT in Social, Mobile, Analytics and Cloud) (I-SMAC). IEEE, 2020. http://dx.doi.org/10.1109/i-smac49090.2020.9243404.

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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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Elizalde, Dyan Quel R., Rezalina Jessica P. Garcia, Mead Margaret S. Mitra, and Rafael G. Maramba. "Wireless Automated Fire Detection System on Utility Posts Using ATmega328P." In 2018 IEEE 10th International Conference on Humanoid, Nanotechnology, Information Technology,Communication and Control, Environment and Management (HNICEM). IEEE, 2018. http://dx.doi.org/10.1109/hnicem.2018.8666329.

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Bauer, Waldemar. "Implementation of non-integer PIλDμcontroller for the ATmega328P micro-controller." In 2016 21st International Conference on Methods and Models in Automation and Robotics (MMAR). IEEE, 2016. http://dx.doi.org/10.1109/mmar.2016.7575118.

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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). Paris, France: Atlantis Press, 2019. http://dx.doi.org/10.2991/icoma-18.2019.79.

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Costa, Ricardo, Francisco Perola, and Carlos Felgueiras. "μLAB A remote laboratory to teach and learn the ATmega328p μC." In 2020 IEEE Global Engineering Education Conference (EDUCON). IEEE, 2020. http://dx.doi.org/10.1109/educon45650.2020.9125336.

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Sampedro, Gabriel Avelino R., Christian Kyle Floresta, Jocelyn F. Villaverde, Jae-Min Lee, and Dong-Seong Kim. "Smart Device for Ice Fission Determination using Fourier’s Law on ATMega328P." In 2020 International Conference on Information and Communication Technology Convergence (ICTC). IEEE, 2020. http://dx.doi.org/10.1109/ictc49870.2020.9289568.

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Schwartz, F. P., C. Benac, V. R. S. Rocha, and M. G. Bastos. "Microcurrent stimulation device controlled by ATMEGA328P-PU chip and Android app." In 2016 Global Medical Engineering Physics Exchanges/Pan American Health Care Exchanges (GMEPE/PAHCE). IEEE, 2016. http://dx.doi.org/10.1109/gmepe-pahce.2016.7504653.

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