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1

S, Vijayshaarathi. "Microcontroller based Automatic Solar Tracking System." Journal of Advanced Research in Dynamical and Control Systems 12, SP7 (July 25, 2020): 597–600. http://dx.doi.org/10.5373/jardcs/v12sp7/20202146.

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S. Saidu, Akanji, and Abdussamad U. Jibia. "A Microcontroller-Based Egg Candling System." International Journal of Information and Electronics Engineering 5, no. 6 (2015): 433–36. http://dx.doi.org/10.7763/ijiee.2015.v5.573.

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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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Jovanović, Borisav, Milunka Damnjanović, Predrag Petković, and Vančo Litovski. "Standard Cell-Based Low Power Embedded Controller Design." Journal of Circuits, Systems and Computers 24, no. 06 (May 26, 2015): 1550077. http://dx.doi.org/10.1142/s0218126615500772.

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Microcontrollers represent unavoidable parts of state-of-the-art system-on-chips (SoCs) and they are widely embedded as IP blocks. This paper describes design steps and the application of available low-power techniques, to the design of a microcontroller IP core with 8051 instruction set, based on a prescribed standard cell libraries. Choice of the technology node and the cell library supplier is a design challenge that was considered and conclusions reached. The necessary steps of microcontroller design flow are presented which enable power reduction at several abstraction levels. An optimal microcontroller was designed to be embedded in various SoCs. The goal was to get energy-efficient microcontroller operation in applications which don't require intensive data processing. The impact of technology scaling on microcontroller energy efficiency is considered by comparison of the results obtained from implementations in three standard cell technologies. Moreover, power dissipation models are created which allow for microcontroller's power estimation in low throughput sensors networks applications.
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Myint, Cho Cho. "Microcontroller-Based Temperature and pH Measuring System." International Journal of Trend in Scientific Research and Development Volume-2, Issue-5 (August 31, 2018): 694–98. http://dx.doi.org/10.31142/ijtsrd15926.

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Salah, Wael A., and Basem Abu Zneid. "Evolution of Microcontroller-based Remote Monitoring System Applications." International Journal of Electrical and Computer Engineering (IJECE) 9, no. 4 (August 1, 2019): 2354. http://dx.doi.org/10.11591/ijece.v9i4.pp2354-2364.

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<p>This study reviews the evolution of smart applications of microcontroller-based wireless/wired remote monitoring systems. Rapid developments in science and technology offer the advantages of using integrated embedded chips, microprocessors, and microcontrollers. The use of microcontrollers in industrial processes, such as automobiles, aeronautics, space, robotics, electronics, defense applications, mobile communications, rail transport, and medical applications, is rapidly increasing. This study aims to review the progress of microcomputers in smart remote monitoring and controlling applications for the control and management of different systems using wireless/wired techniques</p>
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Oyedeji, Ajibola Oluwafemi, Abiola P. Oni, Frank Onaifo, and Peter O. Alao. "Development of an Arduino Based Electric Cooker Timer System." JITCE (Journal of Information Technology and Computer Engineering) 4, no. 01 (March 30, 2020): 28–31. http://dx.doi.org/10.25077/jitce.4.01.28-31.2020.

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The emerging trend in the world of semiconductor integration has brought about so many opportunities in the area of microcontrollers. This paper deals with the design and implementation of a microcontroller-based timer for home appliances using an Arduino microcontroller. This system is developed for the users to predetermine the time of operation of any home appliances using the electric cooker for implementation. The system is majorly comprised of the power supply unit, microcontroller unit, timer circuits and LCD display. The user can set any of the time given in the timer switch using keypad. The settings are stored in the microcontroller and the details are displayed in the LCD display. The appliance is controlled to run for the particular period set by the timer switch. The timer switch automatically makes the appliance off once the period is over. This system has been designed to be efficient, reliable and reduce energy wastage.
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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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9

Voronov, K. E., K. I. Sukhachev, and D. S. Vorobev. "Development of Control Module Based on a Computing IP-Core." Rocket-space device engineering and information systems 8, no. 1 (2021): 24–38. http://dx.doi.org/10.30894/issn2409-0239.2021.8.1.24.38.

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The article presents the result of the implementation of a synthesized microcontroller in integrated circuits of small FPGAs and a variant of building a control system for an onboard control module based on the developed solution. The possibility of creating a full-fledged microcontroller based on a type 5578TC034 FPGA and more capacious microcontrollers is shown. The description of the structure of the microcontroller, processor core and periphery is given. The processor instruction system is presented. Ip-modules of peripheral devices and some interfaces have been developed. A variant of creating a control system using the developed microcontroller is proposed. In the future, it is planned to increase the functionality of the synthesized microcontroller by optimizing ip-modules and adding new ones. When developing the control system, a domestic component base was used.
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10

Edmondson, Michael C., L. Tang, and A. Kern. "Software Development Modules for Microcontroller-Based System." Advances in Science and Technology 56 (September 2008): 45–51. http://dx.doi.org/10.4028/www.scientific.net/ast.56.45.

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Microcontrollers are small devices commonly used for control purposes over a wide range of applications. As the control strategies and the selection of hardware differ from one application to another, it is a common practice for engineers to develop the application programs based-on the selected hardware and the control methodologies. Such development process requires time for programming and testing, especially for large projects which need to interface and integrate with a number of different hardware and software. This paper presents an approach using the concept of soft development modules to shorten the application program development time for control systems using microcontrollers. A set of soft modules has been developed for a widely used microcontroller. The testing conducted on the serial communication and fuzzy logic control modules successfully produced application programs within a much shorter time, and reduced human programming errors. The application of soft development modules will allow system developers to focus on the system design level without the need to spend large amount of time on generic programming details. Such an approach provides a useful programming development platform for future applications using microcontrollers.
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11

Jose, Angel Joshna. "Microcontroller Based Accident Detection System." International Journal for Research in Applied Science and Engineering Technology 7, no. 5 (May 31, 2019): 2548–53. http://dx.doi.org/10.22214/ijraset.2019.5422.

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12

JANG, J. K., T. S. KUO, and M. J. SHIEH. "MICROCONTROLLER-BASED EGG RECORDING SYSTEM." Biomedical Engineering: Applications, Basis and Communications 13, no. 05 (October 25, 2001): 226–30. http://dx.doi.org/10.4015/s1016237201000285.

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An Electrogastrography (EGG) recorder is proposed in this paper. This recorder consists of a microcontroller, an interfacing circuit for the RS-232, amplifiers and filters for signal conditioning, and a control program for EGG acquisition. An EGG signal, filtered between 0.015 and 0.5 Hz, was used to evaluate the performance of this system. The results suggest that this system is useful both in the hardware circuits and in the analyzing software. The complete system is versatile and cheap. Thus, it will be helpful for other laboratories with limited financial budget. Furthermore, circuits are described in detail for this purpose.
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singh, Akshat. "Microcontroller Based Bank Security System." International Journal for Research in Applied Science and Engineering Technology 7, no. 4 (April 30, 2019): 1361–65. http://dx.doi.org/10.22214/ijraset.2019.4245.

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14

Unabor, Philip O., and Michael S. Okundamiya. "Implementation of an Embedded Microcontroller-Based Intrusion Detection System." Journal of Advances in Science and Engineering 1, no. 1 (April 30, 2018): 27–32. http://dx.doi.org/10.37121/jase.v1i1.3.

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This paper highlights the implementation of an embedded microcontroller-based intrusion detection system. The PIC16F84A microcontroller embedded in the system was programmed using the MikroC Language for the microcontrollers, to pick up an intrusion signal from the motion sensor, (which interprets the signal to be an electrical signal e.g. voltage), process it and then give a command to the display or output units. The output includes a 16x2 ALPHA liquid crystal display (LCD) and a buzzer (alarm unit), which in turn implement the command thereby notifying the environment of the presence of an intruder by displaying “Intruder Detected!” on the LCD and by a beeping sound with an interval of 0.5s delay by the alarm unit. The system was tested and was found to be efficient and suitable for solving myriad of security issues that confront us in modern times.
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15

Pawaskar, Mahesh, Manisha Samant, and Adesh Hardas. "Microcontroller Based Anti-theft Vehicle system." International Journal of Computer Sciences and Engineering 7, no. 5 (May 31, 2019): 765–68. http://dx.doi.org/10.26438/ijcse/v7i5.765768.

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16

Zuhair, Ahmed, Mansoor Ali, and Ali Al-Humairi. "Intelligent Car Security System Microcontroller based." International Journal of Applied Information Systems 8, no. 3 (February 5, 2015): 7–12. http://dx.doi.org/10.5120/ijais15-451293.

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17

Casanova, Eduardo Zalama, Salvador Dominguez Quijada, Jaime Gómez García-Bermejo, and José Ramón Perán González. "Microcontroller based system for 2D localisation." Mechatronics 15, no. 9 (November 2005): 1109–26. http://dx.doi.org/10.1016/j.mechatronics.2005.05.001.

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18

Emmanuel, Shomefun Tobi, Awosope Claudius O. A., and Ebenezer O. Diagi. "Microcontroller-based Vertical Farming Automation System." International Journal of Electrical and Computer Engineering (IJECE) 8, no. 4 (August 1, 2018): 2046. http://dx.doi.org/10.11591/ijece.v8i4.pp2046-2053.

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Food is a basic necessity of life. It is the means by which man is nourished and strengthened to carry out his daily activities. The need for food for the upkeep of man has placed agriculture at the helm of man’s affairs on earth. With a rapidly increasing population on earth, man has invented newer and innovative ways to cultivate crops. This cultivation is mainly concentrated in rural areas of countries around the world; but with the massive urbanization happening in the world today; it is becoming increasingly difficult to have enough agricultural produce that will cater for the massive population. Taking Nigeria as a case study, the increased urbanization has placed a massive demand on land, energy and water resources within urban areas of the country. Majority of the food consumed in the urban areas is cultivated in the rural areas. This system however requires longer transportation times from rural areas to urban areas which lead to contamination and spoilage in many instances. This research paper provides a solution in which food crops can be cultivated easily in urban areas by planting in vertically stacked layers in order to save space and use minimal energy and water for irrigation.
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19

Shein, Phyu Phyu, Tin Tin Nwet, and Kyi Kyi Khaing. "Microcontroller Based Servo Motor Control System." International Journal of Computer Trends and Technology 67, no. 6 (June 25, 2019): 54–56. http://dx.doi.org/10.14445/22312803/ijctt-v67i6p108.

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20

Abdullah, Hadeel Nasrat, and Wajid Dawood Alwan. "ECG MONITORING SYSTEM BASED ON MICROCONTROLLER." Diyala Journal of Engineering Sciences 9, no. 2 (June 1, 2016): 62–72. http://dx.doi.org/10.24237/djes.2016.09209.

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21

Bowen, L., R. Zarr, and S. Denton. "A microcontroller-based intelligent battery system." IEEE Aerospace and Electronic Systems Magazine 9, no. 5 (May 1994): 16–19. http://dx.doi.org/10.1109/62.282511.

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22

Jimmoh, Onawola Hazzan, Sobowale Adedayo, Obaje Samuel Enemakwu, and Iromini Nurudeen Ajibola. "Microcontroller-Based Remote Temperature Monitoring System." IOSR Journal of Computer Engineering 18, no. 04 (April 2016): 68–72. http://dx.doi.org/10.9790/0661-1804056872.

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23

Putra, Anggi Septiawan, Nusyirwan Nusyirwan, and Maimuzar Maimuzar. "Pengaplikasian Mikrokontroler Arduino Uno Pada Simulasi Sistem Pengapian Mesin Bensin 4 Langkah (4 Silinder)." Jurnal Teknik Mesin 10, no. 2 (July 11, 2019): 1–5. http://dx.doi.org/10.30630/jtm.10.2.178.

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The 4 stroke (4 cylinder) gasoline engine ignition system simulation based on the Arduino Uno microcontroller was designed as one of the modeling of conventional ignition system modification into an electronic ignition system based on the Arduino Uno microcontroller. Conventional ignition systems are modified by removing distributor components and replaced with microcontrollers as ignition system controllers. Spark plug and coil cables are replaced with Igniton coil that uses Igniter. Arduino Uno microcontroller is used as a controller that receives signals from the optocoupler sensor and activates the module relay so that the electric current enters the Ignition Trigger, the voltage needed by Igniton Trigger is 2 V by using a step down transformer to reduce the voltage. So that the Ignition Coil is active and produces a high voltage so that it can produce sparks on each spark plug. This Arduino Uno microcontroller processes data received from an optocoupler sensor
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Cortez, Crystalynne D., Jaswinder S. Badwal, Jocelyn R. Hipolito, Ditche Jane C. Astillero, Melvie S. Dela Cruz, and Jaira C. Inalao. "Development of Microcontroller-Based Biometric Locker System with Short Message Service." Lecture Notes on Software Engineering 4, no. 2 (May 2016): 103–6. http://dx.doi.org/10.7763/lnse.2016.v4.233.

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Mamun, Munzur-ul, A. H. M. Zadidul Karim, and Md Istiaq Mahbub. "Low Power Microcontroller Based Intelligent Token Number Speaker and Display System." International Journal of Engineering and Technology 3, no. 2 (2011): 199–202. http://dx.doi.org/10.7763/ijet.2011.v3.224.

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Baans, Omar Salem, and Asral Bahari Jambek. "Implementation of an ARM-based system using a Xilinx ZYNQ SoC." Indonesian Journal of Electrical Engineering and Computer Science 13, no. 2 (February 1, 2019): 485. http://dx.doi.org/10.11591/ijeecs.v13.i2.pp485-491.

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<span>ARM processors are widely used in embedded systems. They are often implemented as microcontrollers, field-programmable gate arrays (FPGAs) or systems-on-chip. In this paper, a variety of ARM processor platform implementations are reviewed, such as implementation into a microcontroller, a system-on-chip and a hybrid ARM-FPGA platform. Furthermore, the implementation of a specific ARM processor, the Cortex-A9 processor, into a system-on-chip (SoC) on an FPGA is discussed using Xilinx’s Vivado and SDK software system and execution on a Xilinx Zynq Board.</span>
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UDDIN, MOHAMMED RAFIQ, GAZI MAEEN -UR- RASHID, and MD SHAHIDUL ISLAM. "MICROCONTROLLER BASED LIGHT CONTROL." International Journal of Software Engineering and Knowledge Engineering 15, no. 02 (April 2005): 319–24. http://dx.doi.org/10.1142/s021819400500235x.

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A microcontroller-based control system is a direct outgrowth of the extensive advances in the Integrated Circuit design and microelectronic device processing technology. This has led to the development of new forms of technologies. This paper presents a technique of microcontroller based control system for controlling the lights of a room. Using the technique, according to the intensity of the sunlight in a room, the states of light of that room will change. Therefore we need to collect data or information from the environment using light sensors to control lights. The microcontroller collects the information from the atmosphere and changes the state of different lights. The analog data collected by the sensors are converted to digital form by an Analog to Digital Converter (ADC) and then fed to the microcontroller. The output data stream of the microcontroller is in digital form by which analog device lights will be controlled.
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Chitransh, Apar, and Birinderjit Singh Kalyan. "ARM Microcontroller Based Wireless Industrial Automation System." Indian Journal of Microprocessors and Microcontroller 1, no. 2 (September 10, 2021): 8–11. http://dx.doi.org/10.35940/ijmm.b1705.091221.

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In modern era most of the work being completed by the new and advanced various technology. Most of the industries are being run on the robotics technologies. But in INDIA most of the company are running in various technologies as like embedded system, plc, Arduino for sensing the alcohol detection and gas detection system and most important thing microcontroller. In this paper we discuss the ARM microcontroller based wireless industrial automation system. This automation consists the coordinator module and sensor module. In which one module is connected with the monitoring computer that is called the coordinator module and for connecting with the monitor of the computer it is also called the centralized unit. And the sensor module is an ARM microcontroller for a monitoring and controlling the whole plant. The coordinator unit main work is to collects the all type of data from the sensor module and provide that information to the IP network. For better communication between these two modules, we use the best technology is ZIGBEE technology. Its main work to preset the changing and control the plant various parameter. ARM microcontroller using the embedded c language coding. This paper we do the deeply study about the ARM microcontroller and about the wireless industrial automation system and the term of ZIGBEE technology.
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Kuang, Xing Hong, Zhe Yi Yao, and Shi Ming Wang. "A Design of Position Terminal Based on BDS." Applied Mechanics and Materials 635-637 (September 2014): 1128–31. http://dx.doi.org/10.4028/www.scientific.net/amm.635-637.1128.

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With the development of economy, the global satellite navigation system with its high speed, high efficiency, high precision measurement and positioning a series of significant advantages, favored by various industry data collection and monitoring of personnel resources , the advent of satellite navigation systems to solve a large-scale, rapid and high-precision global positioning problem. Its scope of application has penetrated to the various departments of the national economic and social development in various fields and industries. To be able to monitor the progressive realization of automated data collection and transmission, the urgent need to adopt advanced positioning technology to build real-time location monitoring system PC Based Development Background navigation receiver , an overview of the inter Beidou BD-126 systems and microcontrollers can be serially the basic principle of mouth communication describes the communication protocol Compass BD-126 positioning module and the next crew between the microcontroller to control development in the use of PC positioning system for a detailed description , including the BDS Beidou satellite navigation module and microcontroller serial data communications, microprocessor controlled real-time data display , and so on
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K, Jeevan Reddy. "Microcontroller based Assistant System for Dumb People." International Journal for Research in Applied Science and Engineering Technology 7, no. 4 (April 30, 2019): 3569–74. http://dx.doi.org/10.22214/ijraset.2019.4598.

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Samuel, Diarah Reuben, and Ojongbede H.A. "Microcontroller Based Security System with Intruder Position." IOSR Journal of Electrical and Electronics Engineering 9, no. 1 (2014): 01–08. http://dx.doi.org/10.9790/1676-09120108.

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Samuel, Diarah Reuben, OsuekeChristian O, and Egbune Dickson. "Microcontroller Based Code Locking System with Alarm." IOSR Journal of Electrical and Electronics Engineering 9, no. 1 (2014): 09–17. http://dx.doi.org/10.9790/1676-09120917.

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Cho Myint, Cho, and Maung Maung Soe. "MICROCONTROLLER-BASED pH AND TURBIDITY MEASURING SYSTEM." MATTER: International Journal of Science and Technology 4, no. 2 (November 3, 2018): 266–74. http://dx.doi.org/10.20319/mijst.2018.42.266274.

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Cao, Rui. "High-Precision Timing System Based on Microcontroller." Advanced Materials Research 546-547 (July 2012): 131–36. http://dx.doi.org/10.4028/www.scientific.net/amr.546-547.131.

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The task of timing system is countdown on a set date and showing the time from current date to the setting date to enhance people’s attention and sense of urgency. A kind of high-precision timing system is introduced. The system is controlled by single-chip microcontroller. High integration clock chip is used as clock module. System hardware design and software design are introduced. System hardware design includes design of clock module, its connection with single-chip microcomputer, and the design of display module. System software design includes the settings of single-chip serial port, its initialization, the reading and writing of the clock module, the countdown program and the display program. Compared with other timing system which consists of frequency demultiplication by multivibrator, this system is more stable and reliable. The accumulative error is zero when long-time running continuously. Because the system control module is simple, it is convenient to be developed and utilized. Practice shows that this high-precision timing system can meet practical needs well.
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Ji, Ling. "Control System Design Based on MSP430 Microcontroller." Advanced Materials Research 1030-1032 (September 2014): 1438–41. http://dx.doi.org/10.4028/www.scientific.net/amr.1030-1032.1438.

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Single-chip microcomputer MSP430F44 is the core control chip of the multifunction TIG welding controller, MCU is produced by TI and 16-bit flash type, the chip control system uses C430 language to modular software programming, coordination with other subroutines by the main program module , through a simple interface conditioning circuitry on a TIG welder can achieve a variety of welding processes, the welding flexible demand is satisfied. One of the most important module of the welding current waveform generator module, the welding waveform parameters are automatically generated by two way, one is the welding methods, the other is the welding parameters, then judge the input signal of the welding gun, when the gun is pressed, the corresponding waveform output; the welding current waveform output can be achieved using this software, is displayed on the welding current waveform generator.
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Aung, Dr Thida, and Dr Kyaw Wuna. "Microcontroller-based 9 Digits Code Lock System." International Journal of Science and Engineering Applications 8, no. 7 (July 15, 2019): 253–57. http://dx.doi.org/10.7753/ijsea0807.1015.

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Wellem, Theophilus, and Bhudi Setiawan. "A Microcontroller-based Room Temperature Monitoring System." International Journal of Computer Applications 53, no. 1 (September 25, 2012): 7–10. http://dx.doi.org/10.5120/8383-1984.

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Vohra, Siddharth, Sagar Khattar, and Arvind Kumar. "Microcontroller based Automatic Face Recognition Attendance System." International Journal of Applied Information Systems 4, no. 8 (December 15, 2012): 32–37. http://dx.doi.org/10.5120/ijais12-450826.

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Hamada, Hameed, and Malathi B. N. "Microcontroller based LADAR System for Speed Detection." International Journal of Applied Information Systems 6, no. 7 (January 8, 2014): 33–35. http://dx.doi.org/10.5120/ijais14-451084.

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Murpratama, Efrat, Unang Sunarya, and Atik Novianti. "ANGKLUNG ROBOT CONTROL SYSTEM BASED ON MICROCONTROLLER." Jurnal Elektro dan Telekomunikasi Terapan 6, no. 1 (January 20, 2020): 734. http://dx.doi.org/10.25124/jett.v6i1.1876.

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Angklung merupakan alat kesenian terbuat dari bambu yang berasal dari Jawa Barat. Walaupun angklung sudah dikenal secara mendunia, bahkan UNESCO (United Nations of Educational, Scientific, and Cultural Organization) menetapkan alat musik tersebut sebagai bagian dari kesenian asli Indonesia, namun sayangnya alat musik tradisional ini sudah hampir punah. Di sisi lain, perkembangan teknologi membantu dan mempermudah manusia dalam melakukan apapun. Salah satu bentuk perkembangan teknologi adalah robot. Oleh karena itu maka pada artikel ini akan dibahas tentang perancangan sistem kendali robot angklung. Perancangan terdiri dari dua bagian yaitu perancangan robot angklung dan perancangan aplikasi kendali robot angklung. Beberapa komponen yang digunakan pada robot angklung meliputi Bluetooth HC-06, Arduino Uno, dan module relay, sedangkan untuk aplikasi kendali berbasis Android. Proses pengiriman data dari aplikasi ke robot angklung menggunakan komunikasi Bluetooth. Hasil pengujian menunjukkan bahwa sistem kendali robot angklung dapat melakukan pengiriman data pada jarak kurang dari 10 meter dan dengan delay rata-rata sebesar 0.303 detik. Untuk fungsionalitas aplikasi kendali robot angklung 100% dapat bekerja sesuai dengan perancangan awal.
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Istepanian, R. S. H., and B. Woodward. "Microcontroller-based underwater acoustic ECG telemetry system." IEEE Transactions on Information Technology in Biomedicine 1, no. 2 (June 1997): 150–54. http://dx.doi.org/10.1109/4233.640657.

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42

Krismadinata, Asnil, Irma Husnaini, and Hendri. "Microcontroller Based Multilevel Inverter for Photovoltaic System." Advanced Science Letters 23, no. 5 (May 1, 2017): 3859–63. http://dx.doi.org/10.1166/asl.2017.8336.

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43

Loko, A. Z., A. I. Bugaje, and Usman Abdullahi. "Microcontroller Based Smart Card Car Security System." International Journal of Engineering Trends and Technology 29, no. 3 (November 25, 2015): 150–53. http://dx.doi.org/10.14445/22315381/ijett-v29p228.

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Ladino, L. A., and S. H. Rondón. "Building a propeller based-microcontroller timer system." Physics Education 54, no. 2 (January 28, 2019): 025013. http://dx.doi.org/10.1088/1361-6552/aaf6bb.

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Shamsul Arifin, Md, Sheikh Alimur Razi, Akramul Haque, and Nur Mohammad. "A Microcontroller Based Intelligent Traffic Control System." American Journal of Embedded Systems and Applications 7, no. 1 (2019): 21. http://dx.doi.org/10.11648/j.ajesa.20190701.13.

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Nurus Sabah, Amrin, and Bahendwar Yogesh. "Microcontroller Based Automation of Conveyor Belt System." i-manager’s Journal on Instrumentation and Control Engineering 5, no. 1 (2017): 11. http://dx.doi.org/10.26634/jic.5.1.10348.

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Dutta, Kailash Pati, Dr Pankaj Rai, and Rakesh Kumar Pandey. "Microcontroller Based Automatic Multichannel Temperature Monitoring System." International Journal of Advanced Research in Electrical, Electronics and Instrumentation Engineering 03, no. 09 (September 20, 2014): 11771–77. http://dx.doi.org/10.15662/ijareeie.2014.0309011.

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Wang, Shu Shi, and Yu Chuan Zhu. "A New Monitoring System Based on Microcontroller." Applied Mechanics and Materials 389 (August 2013): 404–8. http://dx.doi.org/10.4028/www.scientific.net/amm.389.404.

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Abstract:
This paper introduces the design of a warehouse temperature and humidity monitoring system based on a STC89C51 microcontroller. Compared with the traditional method, this system has the advantages of accuracy, sensitivity, short time and intuitiveness, and reduces the workload of the technicians and the cost of warehouse supervision. The greenhouse control system based on a microcontroller and digital temperature and humidity sensors can realize the automatic measurement and adjustment of temperature and humidity inside the greenhouse, which greatly reduces the labor intensity of operators, makes the greenhouse reach a more advanced management level, and is a low-cost, easy-to-use and accurate temperature and humidity measuring instrument, therefore it has a broad application prospect.
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Fagin, B., and O. Beillard. "A microcontroller-based system for intelligent telephony." IEEE Transactions on Consumer Electronics 38, no. 4 (1992): 900–905. http://dx.doi.org/10.1109/30.179982.

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Mohammed Sheet, Sinan Salim, and Mohammed Sabah Jarjees. "Microcontroller based in vitro hematocrit measurement system." Indonesian Journal of Electrical Engineering and Computer Science 18, no. 2 (May 1, 2020): 717. http://dx.doi.org/10.11591/ijeecs.v18.i2.pp717-723.

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<span>The hematocrit (HCT) is the most important measurement in the blood profile. It has been used for early diagnose of the specific blood diseases such as anaemia, leukaemia and malaria. The microhematocrit is the conventional method of measurement of HCT manually which is time-consuming and uncertain due to human error. An automated system for measuring hematocrit will minimize the human-error and the time which will give the ability for medical staff to serve more patients. This paper aims to demonstrate an automated system for measuring the HCT based on microcontroller. The designed system based on Arduino Atmega 2560 microcontroller and combination array of lighting emitting diode and photodetectors. The transmission and the absorption characteristics of the red light (660nm) through the centrifuged blood sample in a capillary tube are calculated and used to determine the HCT. The outputs are analyzed to determine the haemoglobin (HB) and packed cell volume (PCV). The significant correlation (r=0.9856, p=3.106*10-4) between the PCV readings of the proposed system and the conventional method has been observed. The most important finding is the precise of PCV and HB readings for the proposed system compared with previous automated methods as well as the conventional method have been obtained.</span>
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