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Coil winding machine by Mr. Innovative! - DM for a link to the full video with code and instructions! - - The machine automatically winds and rotates the cord. - - How would you improve the design? Let us know in the comments!! - - - #arduino #arduinobasics #arduinoproject #diyelectronics #diyprojects #youtubetech #circuitdesign #electronicsengineering #innovative #lcd #techy #electroniclovers #soldering #electronica #diyvideo (at Busan, South Korea) https://www.instagram.com/p/CCf8C_YDxn1/?igshid=1qsgs1pkzm2ur
#arduino#arduinobasics#arduinoproject#diyelectronics#diyprojects#youtubetech#circuitdesign#electronicsengineering#innovative#lcd#techy#electroniclovers#soldering#electronica#diyvideo
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Простой логгер температуры #ds18b20 с аккамулятором для облачного сервиса @thinger.io Удобные монтажные коробки для уличного применения или агрессивных сред.🧪 Не дорого и просто. Зарядник #tp4056 + преобразователь 3.3В.🔨 #esp8266 . . . #aelmaker #датчик #arduinobasics #arduinorobot #arduinostarterkit #arduinoide #arduinoindonesia #arduinoproject #датчиктемпературы #arduino #arduinoprojects #arduinoboard #arduinocnc (Kiev, Ukraine) https://www.instagram.com/p/CM3_lhhL0tF/?igshid=1dj4or4214s2m
#ds18b20#tp4056#esp8266#aelmaker#датчик#arduinobasics#arduinorobot#arduinostarterkit#arduinoide#arduinoindonesia#arduinoproject#датчиктемпературы#arduino#arduinoprojects#arduinoboard#arduinocnc
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3 Different ways of using a pushbutton or switch with an Arduino. Read more at 🌐https://diyusthad.com Did you find value here❓ Follow us⬇️ 🔵@diyusthad 🔵@diyusthad 🔵@diyusthad #arduinoprojects #Arduino #pushbutton #Arduinowithswitch #electronics #Arduinocode #arduinonano #arduinolove #arduinobasics #arduinofun #codingtricks #Arduinotricks https://www.instagram.com/p/B_K6iVnja4I/?igshid=uy1y3993yqv7
#arduinoprojects#arduino#pushbutton#arduinowithswitch#electronics#arduinocode#arduinonano#arduinolove#arduinobasics#arduinofun#codingtricks#arduinotricks
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Have you heard about Arduino?
Read our blog to know detail about the Arduino...
Visit: http://bit.ly/2HsMUrr and get interest to learn Arduino.
#embeddedschool#embeddedtraininginstitute#traininginstitute#reskilling#arduino#arduinobasics#advantagesofarduino#learnarduino
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ALAT BANTU TUNA NETRA BERBASIS ARDUINO NANO Designer : @SURFAN_DESIGN3D ====================================== SURFAN DESIGN ~ LAYANAN DESAIN 3D BERKUALITAS DENGAN HARGA KOMPETITIF ====================================== SURFAN DESIGN melayani : ✅ Jasa ️Desain Produk ✅ Jasa Desain mesin ✅ Jasa Desain booth ✅ Jasa Desain furniture ✅ Jasa Render & visualisasi ✅ Jasa Drafter (gambar teknik 2d) ✅ Jasa Animasi desain ✅ Jasa Reverse Engineering ✅ Jasa desain menggunakan software berbasis : ▶️ Jasa desain Autocad ▶️ Jasa desain SolidWorks ▶️ Jasa desain Autodesk Inventor ▶️ Jasa desain Fusion360 ▶ ️Jasa desain SketchUP ▶️ Jasa desain 3dsMAX ▶️ Jasa desain Rhinoceros 3d ====================================== 👉Pemesanan via DM/WA (fast respon) : 📱 0858-7992-7791 ====================================== 📌LINE : [at] ved0052n (use @) 📌Instagram : @surfan_design3d 📌Facebook : [at] SurfanDesign3D 📌Email : [email protected] ====================================== #arduinonano #arduinojogja #arduinolove #arduinomega2560 #arduinos #arduinoprojects #arduinorobot #victoriaarduino #arduino_uno #arduinoday #arduinoshield #arduinocnc #arduinod16 #arduinoindonesia #arduinoleonardo #arduinod17 #arduinolover #arduino #jasaarduino #arduinobasics #arduinomega #arduinoboard #arduinouno #arduinofun #arduinounor3 #arduinoprogramming #jualarduino #arduinotutorial #arduinoproject #arduinomurah https://www.instagram.com/p/BtnwvxLhryK/?utm_source=ig_tumblr_share&igshid=tkq0ji23msiv
#arduinonano#arduinojogja#arduinolove#arduinomega2560#arduinos#arduinoprojects#arduinorobot#victoriaarduino#arduino_uno#arduinoday#arduinoshield#arduinocnc#arduinod16#arduinoindonesia#arduinoleonardo#arduinod17#arduinolover#arduino#jasaarduino#arduinobasics#arduinomega#arduinoboard#arduinouno#arduinofun#arduinounor3#arduinoprogramming#jualarduino#arduinotutorial#arduinoproject#arduinomurah
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LBSFilm | Custom Built Arduinobased Midi DJ Controller
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Play a song using nothing but the sounds of the stepper motor rotating. By changing and setting the specific speed of the motor, you can play a specific note. Introduce a Nextion Enhanced display and an Arduino, and you can play what ever note you want. Your stepper motor just became a musical instrument.
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Escritório improvisado... momento de pausa... trabalho não acaba amém. ☺️👊🏻🏗 #atitudeMaker #maker #movimentoMaker #culturaMaker #arduino #arduinoBrasil #IoT #Robotica #roboticaeducativa #roboticaeducacional #lego #arduinoproject #diy #protoboard #odyssey #internetdascoisas #oquevocevaicriarhoje #mundomaker #vidadeengenheiro #engenhariamecatronica #terere #electronics #robotica #futuro #robotclube #stem #arduinobasic #iniciantesarduino (em Anápolis, Brazil) https://www.instagram.com/p/B66SnLMnZAO/?igshid=1a43i3fsez9eh
#atitudemaker#maker#movimentomaker#culturamaker#arduino#arduinobrasil#iot#robotica#roboticaeducativa#roboticaeducacional#lego#arduinoproject#diy#protoboard#odyssey#internetdascoisas#oquevocevaicriarhoje#mundomaker#vidadeengenheiro#engenhariamecatronica#terere#electronics#futuro#robotclube#stem#arduinobasic#iniciantesarduino
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Learn Plc & Servo & HMI & Drives etc. Programming with us at Udemy ! Keep following us .. Keep learning from us .. Codesys : https://www.udemy.com/course/codesys-fundamentals-course-supported-by-beckhoff-software/?couponCode=BEDOMAY VFD : https://www.udemy.com/course/delta-vfd-real-applications-with-plc-modbus-hmi-vfdsoft/?couponCode=BEDOMAY Eplan : https://www.udemy.com/course/eplan-p8-27-tutorial-basics-with-electrical-board-basics/?couponCode=BEDOMAY Industrial Automation : https://www.udemy.com/course/industrial-automation-and-electrical-board-basics-with-plcs/?couponCode=BEDOMAY Scada : https://www.udemy.com/course/create-your-own-scada-for-plc-with-c-language/?couponCode=BEDOMAY Arduino : https://www.udemy.com/course/learn-arduino-programming-with-applications-all-in-one/?couponCode=BEDOMAY Lenze : https://www.udemy.com/course/lenze-plc-programming-basics-all-in-one/?couponCode=BEDOMAY Siemens : https://www.udemy.com/course/siemens-plc-programming-basics-all-in-one/?couponCode=BEDOMAY Fatek : https://www.udemy.com/course/fatek-plc-programming-basics-with-applications-all-in-one/?couponCode=BEDOMAY Schneider : https://www.udemy.com/course/learn-schneider-plc-programming-with-tm221/?couponCode=BEDOMAY Mitsubishi : https://www.udemy.com/course/mitsubishi-plc-programming-basics-all-in-one/?couponCode=BEDOMAY Omron : https://www.udemy.com/course/omron-plc-programming-basics/?couponCode=BEDOMAY Delta : https://www.udemy.com/course/complete-delta-plc-programming-tips-and-tricks/?couponCode=BEDOMAY
Best Regards , Mustafa
#derstagramakademi #derstagramudemy #udemycourses #plcprogramming #plctutorials #eplantutorial #vfdtutorial #learnindustrialautomation #learncsharp #scada #HMI #learnHMI #HMITutorials #omronplc #deltaplc #siemensplcprogramming #learnsiemens #plcprogrammingbasics #learnlenze #lenze #lenzevfd #lenzeplc #eplanelectrical #learnarduino #arduinoprogramming #programming #coding #automation #robotics #sysmacstudio #cxone #ıspsoft #plcdesigner #tiaportal #wplsoft #visualstudio #iot #arduinobasics #electronictutorials #industrialautomationtutorials #deltaelectronics #omronindustrial #viral #kesfet #electricity #electrical #industrymachines #derstagramplcourses #electronictutorialbasics #learnelectricsandelectronic #mitsubishiplcprogrammmingbasics #mitsubishiplc #plctutorials #gxworks #gtdesigner #mitsubishiplc #mitsubishiplcbasics #learnplcprogrammingbasicstutorials #winproladder #fatekplcprogrammimg #fatekplc #fatekprograms
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Implementation of an Arduino Based Smart Drip Irrigation System
by Yomi Debo-Saiye | Henry. S. Okeke | Peter. O. Mbamaluikem "Implementation of an Arduino-Based Smart Drip Irrigation System"
Published in International Journal of Trend in Scientific Research and Development (ijtsrd), ISSN: 2456-6470, Volume-5 | Issue-1 , December 2020,
URL: https://www.ijtsrd.com/papers/ijtsrd38157.pdf
Paper URL : https://www.ijtsrd.com/engineering/electrical-engineering/38157/implementation-of-an-arduinobased-smart-drip-irrigation-system/yomi-debosaiye
callforpaperarts, artsjournal, peerreviewedjournal
An Arduino based smart irrigation control system has been implemented to facilitate the automatic supply of adequate water from a reservoir to domestic crops at all seasons for effective production. The method employed is to continuously monitor the soil moisture level to determine when water is needed in the soil. A pumping mechanism is used to deliver the needed amount of water to the soil through pipes with vent holes. The work was grouped into power supply unit, sensing unit, control unit and pumping unit. A regulated 12 volts power supply unit was built to power the entire system and soil moisture sensor was used to model the electrical resistance of the soil. The control circuit was implemented using Arduino UNO and the pumping unit consists of a submersible low noise micro water pump using a 12 V small dc operated motor. The System was tested and the results obtained showed that this system was able to achieve total removal of human control from irrigation of domestic crops and also optimize the use of water in the process.
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Building Arduino-Based Projects For The Internet Of Things (IoT)
The IoT: Building Arduino-Based Projects course takes you on a journey to become an expert in the use of IoT by developing a set of projects, and it leads you through securing your IoT environment.
https://copperhilltech.com/blog/building-arduinobased-projects-for-the-internet-of-things-iot-57c9f5/
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Esp8266-01 wifi module @maker.moekoe @esp8266online @esp_8266 @arduino.cc @arduinobasics #electronicsengineering @electronicslovers @electric.ians @electronoobs @engineering_enigma @ (at Bhopal, Madhya Pradesh) https://www.instagram.com/p/BtTsUaGhv8M/?utm_source=ig_tumblr_share&igshid=fibbh3pjikmr
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LAB #07 SOlution
Objective:
To become familiar with the use of timers in computer applications. Specifically, to implement a piano like keyboard program using the ATmega2560 timer1 in Normal mode and an external speaker.
Procedure:
1. Starting with the file Echo1.ino using the Arduino serial port library functions copy/pasted from:
/* Simple Serial ECHO script : Written by ScottC 03/07/2012 */ http://arduinobasic…
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LAB #07 SOlution
Objective:
To become familiar with the use of timers in computer applications. Specifically, to implement a piano like keyboard program using the ATmega2560 timer1 in Normal mode and an external speaker.
Procedure:
1. Starting with the file Echo1.ino using the Arduino serial port library functions copy/pasted from:
/* Simple Serial ECHO script : Written by ScottC 03/07/2012 */ http://arduinobasic…
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Nextion Enhanced Stepper Motor Piano Tutorial http://arduinobasics.blogspot.com.au/2017/08/nextion-enhanced-stepper-motor-piano.html
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So this is a story all ‘bout how
Let me tell you about my day.
I would have posted this some time this morning, but it turns out that my landlord has, for whatever reason, not been paying the electric bill for some time now.
How do I know this? Easy: the AC died and my my ceiling fan kicked off. Luckily I bought a new battery for my ancient Macbook, otherwise the event would have also been heralded by my computer switching off in an instant.
Now how does this relate to Arduino? Power. PECO can calculate the load on the grid (in watts being consumed) at any point based on the amount of current being pulled from their production plants (by Power = Current * Voltage).
For the Arduino, by comparison, we need to know voltages, and last week in particular, the voltage across photoresistors. A photoresistor uses a variable amount of power based on the incoming light. The resistance, however, is always V=I*R, so since voltage drop (since the Arduino always supplies 5 volts from the VDC output pin) holds steady at 5 volts across the circuit, an increase in the value of resistance R will necessarily drop the level of current I and thus the amount of power consumed by the device.
What we did last week was use a two-element photoresistor circuit - one photoresistor tied in series with a fixed carbon-element resistor - and measured the total voltage drop across the photoresistor. Again, as the photoresistor photo resists more electricity, the total current decreases, and since the other element is fixed, the photoresistor’s share of the voltage drop becomes greater as its resistance increases.
Again, since V=IR and all, when R is, say, 100 ohms + 254 from the carbon resistor, we have 5v=I*354 ohms, or I=5/354=14.124 milliamps (more or less), and then for the photoresistor itself (remember: 100 ohms), V=14.124 mA * 100 ohms or V=1.4124 volts.
Now, when the photoresistor resists for a thousand ohms, we can redo everything as 5v=I*1254 ohms, or I=5/1254=3.987 mA (smaller current, what’d I tell you). Now the photoresistor has a voltage drop of V=3.987 mA * 1000 ohms or V = 3.987 volts. That’s almost three times as much. Of course, it can never take all of the voltage drop, no matter how high the resistance, but even without knowing the wattage.
I mean, for example. Listen, I had to take math through Differential Equations, so it’s the least I can do to inflict a little on you, the reader.
The Arduino can thus, by plugging a wire from between the photoresistor and the fixed resistor to any of the input pins, know what the voltage drop is across whichever element is tied to the high voltage (here, the photoresistor), which it translates into a somewhat arcane number that can probably be catalogued somewhere, but for our purposes was more easily accounted for by running the program and having the Arduino communicate the number that it was getting from the input pin back to our computers. So then (since we were building a night light that shut off in light) we were able to use a simple if/else code to get the LED to only light up when the input dropped below a certain threshold (since again, the photoresistor’s ohm value and share of the voltage drop fell as the light level decreased). I used 900, which is nice. 900 is a perfectly nice number, and all.
To (try to) tie this back into my original statement, PECO, unfortunately for them, can’t just tie a wire between every house and building on the grid and sample their voltage like the Arduino can (the Arduino is, after all, a small thing when compared to an entire municipality). Unfortunately for us, they can use electromechanical metering to achieve the same effect. And then they can send people a bill based on how much of that wattage somebody’s property used. And because some people have the maturity of an eight year old, apparently, sometimes that bill doesn’t get paid for a few months, and they disconnect your power, which is comparable to when I ripped the photoresisor out of my board at the end of class last week, and which is why I’ll probably be sleeping in the computer lab tonight.
Yeah it’s a stretch. But I did it, baby!
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