Maker 101
How to Use EMG Muscle Sensor to Control Anything (MyoWare)
updated
Source Code & Circuit File - pcbway.com/project/shareproject/DIY_ESP32_Bluetooth_GamePad_for_Android_PlayStation_and_PC_6757e6d6.html
On the circuit side, I preferred the low-cost ESP32 development board, which offers wireless communication options such as WiFi, Bluetooth, and ESP-NOW. Besides ESP32, a joystick module, button, resistor, capacitor, and some wires are required for the gamepad circuit.
📌 Set up the ESP32 to use it with the Arduino IDE. First, enter the shared Additional Boards Manager URL link for ESP32, then search and install the ESP32 board.
raw.githubusercontent.com/espressif/arduino-esp32/gh-pages/package_esp32_index.json
📌 The source code includes a popular library called "BLE GamePad". If you go to the GitHub page of the library, you can find detailed explanations and examples. Go to “Add Library” search for the “BLE GamePad” library and install it. This library also needs the library named “NIM BLE”.
github.com/lemmingDev/ESP32-BLE-Gamepad
📌 instructables.com/One-and-Multiple-Servo-Motor-Control-With-ESP32-De
📌 pcbway.com/project/shareproject/Multiple_Servo_Motor_Controller_Board_DOIT_ESP32_DEVKIT_V1_c9c8165e.html
Additional Boards Manager URL:
raw.githubusercontent.com/espressif/arduino-esp32/gh-pages/package_esp32_index.json
ServoESP32 Library:
github.com/RoboticsBrno/ServoESP32
Web Server Source Code - pcbway.com/project/shareproject/Dual_DC_Motor_and_Servo_Motor_control_via_Web_Server_ESP8266_DRV8848_Motor_Dri_c7110a50.html
Instructables - instructables.com/DC-Motor-and-Servo-Motor-Control-Via-Web-Server-ES
If you need an ESP8266 WiFi Development Board that can drive Dual DC motors, you can order this PCB from PCBWay with high-quality and low-price. You can reach the features of this board, all stages such as soldering and assembly from the shared links.
YouTube - youtu.be/51zCCg9-pcI
PCBWay Project Page - pcbway.com/project/shareproject/ESP_12F_DRV88xx_Motor_Driver_Development_Board_bc4e7391.html
Instructables - instructables.com/Line-Following-Obstacle-Avoiding-Drawing-Robot-ESP
Instructables - instructables.com/Line-Following-Obstacle-Avoiding-Drawing-Robot-ESP
Hi everyone! In this project, I designed a board that includes the ESP8266 WiFi module, allowing you to control sensors such as HC-SR04 ultrasonic and infrared (IR), a servo and dual DC motors. To test the development board, we're going to build a small but fun 3D robot and control it, let's get started!
Video chapters:
00:00 Intro - ESP8266 DRV8848 Board
00:20 About the Robot Chassis
00:41 Unboxing - 3D Parts and PCB
01:28 Let's Paint the 3D Parts
01:52 Printed Circuit Board
02:24 Applying Solder Paste Using a Stencil
02:51 Placement of Components on PCB
03:00 Soldering Process
03:25 A Few DIP Components
03:50 Assembly of 3D Parts
05:31 First Programming "Blink"
06:05 Dual Motor Drive Test - DRV8848
06:53 Obstacle Avoiding Robot Test
08:10 Line Following Robot Test
09:07 Drawing Robot Test
All files and source codes - pcbway.com/project/shareproject/I_made_an_open_source_educational_programming_board_and_coded_by_ChatGPT_0ee7bf64.html
Printed circuit boards are preferred for long-term use, stable and more durable electronic circuit prototypes. I prefer PCBWay to turn my circuit designs into durable prototypes. If you want to have these PCBs with low-price and high-quality, you can visit the shared link. You can also access all project files via the same link.
Video chapters
00:00 Intro - Educational Programming Board
00:46 Printed Circuit Board - PCBWay
00:58 Using Stencil
01:37 SMD Components - Soldering
02:19 DIP Components - Soldering
02:36 Motherboard is ready
02:43 Modules - Soldering
03:30 Programming with ChatGPT
03:40 LED and Buzzer Blink
04:38 Potentiometer Servo Motor Control
05:13 DHT Humidity and Temperature
05:44 DC Motor Control PWM
📌 All necessary links and PCB files are here:
▪️pcbway.com/project/shareproject/P10_Display_WiFi_Controller_Board_ESP8266_MQTT_8e5f32c5.html
▪️instructables.com/P10-LED-Display-WiFi-Controller-Board-ESP8266-MQTT
Please don't forget to subscribe and hit the like button for more content! Thanks for watching!
📌 PCB Gerber File, Bill of Materials, Reference designator - pcbway.com/project/shareproject/How_to_make_a_simple_wooden_wall_light_with_LED_strip_ac3340a7.html
📌 Detailed instructions - instructables.com/DIY-Simple-Wooden-Ambient-Light-ESP8266-WLED-WS281
📌 How It Works?
As you can see, a few meters of WS2812 RGB LED strip was taped around a wooden panel and the panel was fixed to the wall (aluminum profiles were used to fix it.). LED Strip can be controlled by smartphone, tablet and computer via ESP8266 Wi-Fi board. Also, there is no need to coding for all of this, just install WLED application and run it! With these instructions, you can make a simple LED lighting home decor in different sizes, according to your imagination.
📌 Required Hardware and Tools
First of all, the following hardware dimensions may vary completely depending on you. What is important here is the selection of LED strip and aluminum profiles compared to the wooden panel size.
▪️ 1000 x 200 x 18 mm wood panel, timber or plywood (pine shelf was used in the project)
▪️ 20 x 20 x 1.5 mm aluminum strips to mount the back of the timber
▪️ A few hook -shaped screw (for hang the wood through aluminum strip holes to on the wall)
▪️ WS2812B 5V RGB addressable LED Strip (Used about 2.5 meters). There are 30 LEDs in 1 meter of the LED strip used in the project, but there are 60 LEDs in 1 meter of some LED strips.
Any ESP8266 programming board. Just like a Wemos or NodeMcu board. Wemos D1 Mini was used in the project.
▪️ 330 ohm resistor to be used for LED's connection to the board.
▪️ A 1000F capacitor to be connected between the power adapter and the LED to provide the correct current.
▪️ 5V power adapter about 2-3 amp ( The current is proportional to the length of the LED strip. More LED means more current... In the project, about 1.5 amps for 2.5 meters LED (65 LEDs) was required.
▪️ Mini breadboard for build to circuit.
▪️ Jumper wires for use to breadboard circuit.
Some tools are needed for assembly, these tools may be preferred depending on your project:
▪️ Drill- Used for drill some holes in the timber and aluminium.
▪️ Drill bits- For drilling through the timber and aluminium.
▪️ Ruler-Used for measuring everything up of course.
▪️ Screws - A few wooden screws (for fix the aluminum strips to timber)
▪️ Cable cutter, solder iron, soldering wire...
I also designed a printed circuit board for those who want a more professional circuit prototype. A few extra components are needed for the printed circuit board prototype, mentioned these components in the PCB step.
Source Code and 3D stl files - pcbway.com/project/shareproject/Quadruped_Spider_Robot_3D_Printed_Parts_SG90_Servo_Motor_Arduino_Nano_10107fe3.html
Required Components:
12x SG90 Servo Motor - amzn.to/3TYPrgj
1x Arduino Nano V3 - amzn.to/3FBhApv
3x Capacitor 100uF 16V - amzn.to/3DNbcJt
1x LDO Voltage Regulator 5V/3A (Similar: MIC29310-5.0WT, LM1085IT-5.0, LM323T)
12x Header Male 2.54 1x3 - amzn.to/3fybH1A
1x 6 Pin Self-Locking Switch 8x8mm - amzn.to/3SWbQcU
1x Screw Terminal Block Connector 5mm - amzn.to/3FC8EQB
1x LED 3mm - amzn.to/3FBj6rH
1x Resistor min. 220 Ohm - amzn.to/3TZdR9J
2x 18650 Li-ion Battery - amzn.to/3zYvKO3
1x 18650 Battery Case 2 Slots - amzn.to/3fu5sMr
Required Tools:
Soldering Station - amzn.to/3TVvZkQ
Soldering Wire - amzn.to/3ST5ElX
Wire Cutter - amzn.to/3h2APy6
Silicone Soldering Mat - amzn.to/3SXpDA5
Isopropyl Electronics Cleaner - amzn.to/3frlG93
ESP32 Servo Motor Controller Board (Up to 16 Servo Motors):
In this project we will look at the assembly and use of ESP32 based printed circuit board that allows you to control up to 16 servo motors. The ESP32 board provides various communication options and methods this allows you to communicate wirelessly with other hardware.
Let's take a look at what is required for the ESP32 servo motor controller board. The preferred components are those that are mostly used in basic electronics and that can be easily assembled.
100uF 25V~6V Capacitor
470uF 25V~6V Capacitor
SB560 Diode
7805CV Voltage Regulator
3mm LED
330Ohm Resistor
2 Pin 5mm Screw Terminal
ESP32 Devkit V1
Male and Female Headers
Get the PCB Gerber File - pcbway.com/project/shareproject/Robot_Sumo_Board_067fe5fc.html
All details will be added as soon as possible, enjoy.
All the details are here as soon as possible:
Instructables -- instructables.com/ESP32-Joystick-Hand-Controller-ESP-NOW
Hackster -- hackster.io/mertarduino/esp32-joystick-hand-controller-esp-now-277b69
I designed an ESP32 hand controller to wirelessly control the ESP32 Mecanum Wheels robot without using an app. This hand controller is bat-themed and features two thumb joysticks and 4 push-buttons.
ESP32 Bat Hand Controller (ESP32 to ESP32 Communication with ESP-NOW) -- youtu.be/m-wKc02TF-E
In this project we will see how to make an ESP32 Mecanum Wheels Robot which is capable of moving in any direction. This unique mobility of the robot is achieved by using special type of wheels, called Mecanum Wheels. The robot can be controlled via bluetooth with an application that you can use on both iOS and Android smartphones. Also, this project shows a simple breadboard circuit for beginner readers, and a printed circuit board for those who want a more useful prototype. Check out the video to see how it works...
Instructables: instructables.com/ESP32-Mecanum-Wheels-Robot-and-Bluetooth-Gamepad-C
Hackster: hackster.io/mertarduino/esp32-mecanum-wheels-robot-and-bluetooth-gamepad-controller-aa08dd
How It Works?
As seen in the video, I can easily connect to the robot via bluetooth with my smartphone, and I can move the robot in any direction with the gamepad feature. An ESP32 development board was used to control the robot wirelessly over both bluetooth and WiFi. L293D driver was used to provide motor movements. Of course, special Mecanum wheels were preferred to enable the robot to move in all directions. All the hardware is fitted into a simple robot car chassis kit containing four DC motors.
Mecanum Wheel Set 80mm - amzn.to/3tET9AD
4WD Robot Car Chassis Kit - amzn.to/3mSGIxC
Mecanum Wheel Chassis Car Kit - amzn.to/3aXyZLP
Minimum requirements for the breadboard circuit:
A breadboard was used to build the circuit - amzn.to/3Qq16mZ
L7805 voltage regulator was used as 5V is required for the microcontroller - amzn.to/3twf50S
A few 100uF capacitors are needed for the voltage regulator - amzn.to/3ObRACk
L293D IC driver was used to movement the DC motors - amzn.to/3N1GXRf or if you want to install the circuit more easily you can use L293D expansion board module - amzn.to/3zGekGh
ESP-32S WiFi BLE Development Board - amzn.to/3NWFixW
Several jumper wires were used to provide the pin connections: amzn.to/3tveigJ
18650 Li-ion 3.7V Rechargeable Battery
A few extra components are needed for the printed circuit board prototype:
SR560 (SB560) Diode - amzn.to/3xtmOy4
3mm LED - amzn.to/3b662gQ
330ohm Resistor - amzn.to/3tBAXIo
2pin 3.50mm Screw Terminal - amzn.to/3MR4CUJ
1x4 2.54mm Female Header - amzn.to/3zHfvFv
Bluetooth Controller App (Gamepad): Dabble App transforms your Smartphone into a virtual I/O device to easily make various DIY projects and IoT applications.
ESP32 Bat Hand Controller
First of all, thank you for reading. I wanted to share the content of the next project with you already. I designed an ESP32 hand controller to wirelessly control the ESP32 Mecanum Wheels robot without using an app. This hand controller is bat-themed and features two thumb joysticks and four push-buttons. You can have this PCB from the link below.
pcbway.com/project/shareproject/Bat_Hand_Controller_ESP32_and_Joystick_97e8ad4b.html
If you have any ideas, please let them know in the comment section. Follow to be informed about the next projects.
pcbway.com/project/shareproject/Motorized_WiFi_Roller_Blind_ESP8266_ffa727fa.html
For all instructions:
instructables.com/DIY-Motorized-WiFi-Roller-Blind-ESP8266-Blynk
hackster.io/mertarduino/diy-motorized-wifi-roller-blind-esp8266-blynk-3c915e
In this project we will see how to control a roller blind via a smartphone application. The reason why I realized the project was to use a roller blind to change the background in the video footage and to be able to easily control the roller blind via my smartphone. In this project, a breadboard circuit is shown for basic readers and a printed circuit board circuit for users who want a more useful prototype. Check out the video to see how it works...
As can be seen in the video showing the step-by-step construction of the project, I can easily open and close the roller blind on my wall using my smartphone. Of course, you can use this project to wirelessly control the roller blinds on your windows. A WiFi microcontroller was used to provide wireless communication, a stepper motor to provide move, and an application called Blynk was used.
First of all, we need some 3D parts to be used like providing roller blind movement. We talked about 3D parts in the next step. In this section, we listed what we should use as hardware for electronic components and mechanisms:
Wemos D1 Mini WiFi board was used to provide motor movements wirelessly and programming: amzn.to/3mF4xZv
Hobby stepper motor 28BJY-48 and driver ULN2003 was used to movement the roller blind up and down: amzn.to/3xKkGTY
A 608zz bearing was used to ensure the smooth movement of the gear required for the roller blind: amzn.to/3QsmdW2
A mini breadboard was used to build the circuit: amzn.to/3NJ5FY7
Several jumper wires were used to provide the pin connections: amzn.to/3tveigJ
A 9V adapter was used to power the circuit: amzn.to/3QciTOJ
L7805 voltage regulator was used as 5V is required for the microcontroller: amzn.to/3twf50S
A few capacitors are needed for the voltage regulator: amzn.to/3ObRACk
Finally a few screws are needed for assembly: amzn.to/3tyciUV
A few extra components are needed for the printed circuit board prototype, mentioned these components in the PCB step.
This project shows how to make a pet feeder controlled via WiFi. You can wirelessly control the pet feeder at any time with an app. As you can see, a 3D design was used for the pet feeder. ESP8266-based Wemos D1 Mini board was preferred to connect to the internet and control it via WiFi, and an application was created to control the pet feeder by entering the IP address wirelessly.
Source code, Circuit diagram, PCB Gerber file, 3D STL file and App Inventor AIA file:
▪️ pcbway.com/project/shareproject/WiFi_Controlled_Pet_Feeder_ESP8266_5adf4883.html
▪️ instructables.com/Pet-Feeder-Controlled-Via-WiFi
▪️ hackster.io/mertarduino/pet-feeder-controlled-via-wifi-1e950c
Install ESP8266 Add-on in Arduino IDE:
Enter http://arduino.esp8266.com/stable/package_esp8266com_index.json into the “Additional Boards Manager URLs”. Then, click the “OK” button.
MIT App Inventor:
Import the shared .aia extension resource file after logging in to https://appinventor.mit.edu/ . In this way, you can customize the application according to you.
Thanks for watching... Don't forget to subscribe for support!
Generally, robot cars are built on a chassis with 2 DC motor wheels and a bovine wheel. While surfing the internet, I saw a 3D car design with a different structure, and I wanted to experience it by making it. As you can see the biggest difference compared to other robot cars is that it is built on 2 wheels. Of course, it is possible to make a slight wobble forward and backward from the balance point of view, but this did not hinder the robot's movements.
Also, a NodeMCU board with ESP8266 chip was used instead of an Arduino microcontroller. Thus, the robot was controlled via the internet. Hobby stepper motors were used instead of DC motors. Robot movements have become more balanced with use of stepper motors.
Since we are using ESP8266, it was necessary to move the robot wirelessly over WiFi, and a simple application was made for this.
Source code, Circuit diagram, PCB Gerber file, 3D STL file and App Inventor file:
▪️ pcbway.com/project/shareproject/Two_Wheel_Robot_ESP8266_WiFi_d878b6ab.html
▪️ instructables.com/ESP8266-Two-Wheel-Robot-NodeMCU-and-Stepper-Motor
▪️ hackster.io/mertarduino/esp8266-two-wheel-robot-nodemcu-and-stepper-motor-bdbee5
Install ESP8266 Add-on in Arduino IDE:
Enter http://arduino.esp8266.com/stable/package_esp8266com_index.json into the “Additional Boards Manager URLs”. Then, click the “OK” button.
MIT App Inventor:
Import the shared .aia extension resource file after logging in to https://appinventor.mit.edu/ . In this way, you can customize the application according to you.
Thanks for watching... Don't forget to subscribe for support!
This project shows how to make a 3D printed Rotating Table using Arduino and a hobby stepper motor. Take a look at the video and see what a simple project can do! This is a low budget and simple set up Rotating Table for product shots. The 3D models were designed by BasementCreations and shared on Thingiverse. 28BYJ-48 Stepper Motor and ULN2003 motor driver were used in the project. On the microcontroller side, an Arduino Nano V3 version was preferred. Besides the breadboard circuit, a printed circuit board (PCB) was designed for a more useful prototype.
Source code, Circuit diagram, PCB Gerber file, 3D STL file:
▪️ pcbway.com/project/shareproject/3D_Printed_Rotating_Table_Board_with_Arduino_Nano_and_28BYJ_48_Stepper_Motor_ca5b53c9.html
▪️ instructables.com/3D-Printed-Arduino-Rotating-Table-With-28BYJ-48-St
▪️ hackster.io/mertarduino/3d-printed-arduino-rotating-table-with-28byj-48-stepper-0a5cfe
▪️ Rotating Table 3D Parts - thingiverse.com/thing:4817279
Thanks for watching... Don't forget to subscribe for support!
This project showed how to make a 3D printed decorative clock using Arduino and a hobby stepper motor. The design is known as 'Hollow Clock'. The 3D models were designed by Shiura and shared on Thingiverse. A 28BYJ-48 Stepper Motor and ULN2003 motor driver were used in the project. Of course, we have programmed the Arduino microcontroller board, which is indispensable in all our projects.
All project details will be shared on the Instructables and PCBWay project sharing page.
Source code, Circuit diagram, PCB Gerber file, 3D STL file:
▪️ pcbway.com/project/shareproject/Arduino_based_3D_printed_clock_9e10a549.html
▪️ instructables.com/3D-Printed-Arduino-Clock-With-28BYJ-48-Stepper-Mot
▪️ Hollow Clock 3D Parts - thingiverse.com/thing:4761858
Thanks for watching... Don't forget to subscribe for support!
I designed an Arduino Nano wireless dual motor driver board, the board has one nRF24L01 transceiver module, dual L293D motor driver and an Arduino Nano microcontroller. On the transmitter side, I built a Joystick controller with the nRF24L01 module. Breadboard circuits for both receiver and transmitter are also shown in the project video. In addition, the receiver and transmitter source codes created for the Arduino microcontroller are explained.
Source Code, PCB Files and Circuit Diagrams:
pcbway.com/project/shareproject/Wireless_Dual_Motor_Driver_Board_880183f3.html
instructables.com/Wireless-Arduino-Motor-Driver-and-Joystick-Control
hackster.io/mertarduino/wireless-arduino-motor-driver-and-joystick-controller-5e4a55
2x Arduino Nano V3 - amzn.to/3fpEhhZ
2x L293D IC - amzn.to/3GyzVRE
2x nRF24L01 Transceiver - amzn.to/3fwYZMU
2x 10uF Capacitor - amzn.to/3zZnhbS
1x Joystick Module - amzn.to/3GwlHRx
1x Male Female Header - amzn.to/3IocwmL
1x Breadboard - amzn.to/3nvO3DI
The wireless flexible sensor hand controller makes it possible to control projects using finger movement values. Also in this project, we controlled the dual L293D motor drivers wirelessly with finger movements. "How does it work?" Let's take a look at the video.
Code & PCB Files - pcbway.com/project/shareproject/The_wireless_flexible_sensor_hand_controller_1cd33aa2.html
Instructables - instructables.com/The-Flexible-Sensor-Hand-Controller
Hackster - hackster.io/mertarduino/the-flexible-sensor-hand-controller-9da596
5x Flex Sensor:
amzn.to/3mAgQXh
1x Arduino Nano V3:
amzn.to/3FuNvVV
1x NRF24L01 Transceiver:
amzn.to/3sAPOTB
1x 10uF Capacitor:
amzn.to/3JlM3aE
1x Header Male:
amzn.to/3JdFgzL
1x Header Female:
amzn.to/3Eo7BzC
1x Power Jack 5.5MM:
amzn.to/3FqLlq6
5x 10K Resistor:
amzn.to/3ptPVhZ
1x On/Off Switch:
amzn.to/3ewq1U9
1x Soldering Iron Kit:
amzn.to/3emwl0J
Tank Robot Platform:
amzn.to/3enKvP0
Halloween is close and I wanted to make a related cool project. Of course, it will involve a pumpkin. Also I wanted to add some electronics, of course. For that, inside we have an Arduino connected to a few other parts. For light effects, I’m using an addressable controlled LED strip. For sound we have a mp3 module and to detect movement a PIR sensor. The scary pumpkin will stay powered off till it detects movement. Once it detects that somebody is close, it will run a few random loops such and play scary sounds. Also changing lights colors and blinking.
Get the PCB Prototype (Schematic & Gerber):
You can easily build the circuit on a breadboard, I also converted the breadboard circuit into a professional prototype. If you want to avoid a complicated circuit, you can get 10 PCBs for just $5 from the link below. All components used are easy to find and solderable. This prototype allows you to control up to 3 pcs LED strips with 3 different sensors (such as IR, PIR and HC-SR04).
pcbway.com/project/shareproject/Halloween_Pumpkin_with_Sound_and_Light_Effects.html
Get the Source Code:
github.com/MertArduino/Halloween-Pumpkin-with-Sound-and-Light-Effects
Parts for Breadboard Circuit & PCB Prototype:
LED Strip:
bit.ly/2DkYdmQ - amzn.to/3dCSBTl
MP3 Player:
bit.ly/2BVgNAU - amzn.to/3weAzPy
Microcontroller:
bit.ly/2QO5m2g - amzn.to/39sAs9g
Adapter:
bit.ly/3bkEwrS - amzn.to/39y3Ivl
Voltage Regulator:
bit.ly/37ptKi4 - amzn.to/3dpxFia
Speaker:
bit.ly/2YwSJMe - amzn.to/3wg1CKs
Capacitor:
bit.ly/30BaNYr - amzn.to/39qPEDS
Resistor:
bit.ly/2MUegJC - amzn.to/3sEsQbv
Toggle Switch:
bit.ly/2B4ADcs - amzn.to/3fyZnMe
Soldering Tools:
http://bit.ly/2Kbr9hQ - amzn.to/3dgwCRO
instructables.com/DIY-Automatic-Plant-Watering-System
When you hear the term ‘smart garden’, one of the things that comes to your mind is a system that measures soil moisture and irrigates your plants automatically. With this type of system, you can water your plants only when needed and avoid over-watering or under-watering. This project shows how to make an Arduino based automatic plant watering system. In fact, the idea of making an automatic plant watering system came up with the thought that my plants would be waterless before I went on summer vacation. The soil moisture sensor, water pump motor and some pipe in my workshop came to mind and I wanted to make project.
🧰 The list of components and hardware that we will mainly need is as follows:
Your Plants
Soil Moisture Sensor
Microcontroller
Motor Driver
Water Pump Motor:
Pipe
Some Jumper Wires for Connections
Water Bucket
Power Supply
📌 Which Microcontroller and Motor Driver?
You can use any model of Arduino microcontroller (such as UNO, Nano, Mega). As long as the connections are made correctly, the shared source code will run smoothly.
However, if I was going to use an Arduino microcontroller, I would also need a motor driver or maybe even a relay. If we used a model like an Arduino UNO in the project, we would have to create a circuit using the following motor drivers together:
L293D Motor Driver Shield (It makes it difficult to connect extra sensors)
L293D Motor Driver IC Chip (It needs a breadboard and needs complex wiring)
L298N Motor Driver Module (It needs extra wiring)
If you are going to use an Arduino model, the circuit can be a bit complicated. To avoid this complexity, I created a prototype and got PCB printing service from PCBWay. On my design board I used an ATmega328P, an L293D motor driver, a CH341 chip to program it easily via USB.
In addition, you can use this board in your different projects another from the plant watering system. For example, this board allows you to control Servo motor, 2 DC motors and many sensors. I used this board again for the 5 in 1 robot project and I created a robot tank that works in 5 different modes with 1 board. If you want to browse, the project link is below:
5 in 1 Robot - youtu.be/663y37vYbRM
You can get high quality and low budget PCB service from PCBWay: pcbway.com/project/shareproject/Automatic_plant_watering_system_using_Microcontroller_with_built_in_motor_driver.html
📌 2 in 1 Microcontroller (built-in Motor Driver)
While designing the PCB prototype, I took care to choose components that are easy to find and solderable. On my design board I used an ATmega328P, an L293D motor driver, a CH341 chip to program it easily via USB. You can get the necessary components from the links below. You can use the designator table I shared for the positions of the components on the PCB.
🧰 Required Components
ATmega328P with Bootloader: bit.ly/2U9iwJw - amzn.to/39sAs9g
L293D Motor Driver IC: bit.ly/33BV2ju - amzn.to/2ZqRob1
Type B USB Socket: bit.ly/2WBSQqw - amzn.to/3drUYIl
DIP Socket 28/16 Pins: bit.ly/2UahQDK - amzn.to/3dqOPMF
12/16 MHz Crystal: bit.ly/33FNTyL - amzn.to/31yAYhB
L7805 TO-220: http://bit.ly/2N5WnYG - amzn.to/3rFGY2A
100uF Capacitor: bit.ly/2U98JTU - amzn.to/3sFBDcX
Resistor 10K / 1K: bit.ly/2WFsNPl - amzn.to/3bj2HY9
470nF Capacitor: bit.ly/2UwQ2bw - amzn.to/3fBj9a4
Power Jack Socket: http://bit.ly/2QAzFdp - amzn.to/31G7Mp3
2 Pin Terminal Block: http://bit.ly/2lEgy58 - amzn.to/31ETYei
Male Pin Header: bit.ly/3ab5h0w - amzn.to/3dmwTT9
10nF / 22pF Ceramic: bit.ly/2WCuQ6Y - amzn.to/31DVAVF
🧰 Required Tools
Soldering Station: bit.ly/3yjXCsu - amzn.to/3jH1ZKf
Soldering Iron Wire: bit.ly/3xOs7X0 - amzn.to/3xQXAaK
▪️ pcbway.com/project/shareproject/The_Joystick_Hand_Controller_and_DIY_Camera_Slider.html
▪️ instructables.com/The-Joystick-Hand-Controller-and-DIY-Camera-Slider
The Joystick Hand Controller makes it possible to control the projects using two-axis values (directions of movement of joystick knob). The analog values measured on the X and Y axes are compared with the threshold values determined in the source code and the functions are run. The joystick hand controller acts as a transmitter, it uses the nRF24L01 transceiver module and enables communication wirelessly.
Also, in this project we made a DIY camera slider and controlled it wirelessly with the Arduino joystick hand controller.
🧰 Required Components for Joystick Transmitter Circuit
▪️ Arduino ProMini bit.ly/3wmSLFK - amzn.to/3jUwufV
▪️ nRF2L01 Module bit.ly/3yl5Y2X - amzn.to/3ArlY5C
▪️ Joystick Module bit.ly/3xiAvyf - amzn.to/3wbbRyt
▪️ Capacitor Kit bit.ly/3yjhhZC - amzn.to/3jHS8Uc
▪️ Resistor Kit bit.ly/369DD3G - amzn.to/3ypp6Nd
▪️ Switch 8x8mm bit.ly/3xiIhIH - amzn.to/3AkiYYu
▪️ LED Kit bit.ly/3hCGCXN - amzn.to/3AroZCY
▪️ 18650 Holder bit.ly/3qPlce3 - amzn.to/2TyowOA
▪️ 18650 Li-ion Battery
🧰 Required Components for Receiver Circuit
▪️ Nema17 Stepper bit.ly/2SOyQBK - amzn.to/3hBc4W7
▪️ A4988 Driver bit.ly/3qSNZi4 - amzn.to/3hsfb2M
▪️ Arduino Nano bit.ly/3wiBxsK - amzn.to/3AsUnkb
▪️ nRF2L01 Module bit.ly/3yl5Y2X - amzn.to/3ArlY5C
▪️ nRF24L Adapter bit.ly/3jGF5SZ - amzn.to/3dJvZRT
▪️ Breadboard bit.ly/3qJckqi - amzn.to/3hxX5MN
▪️ Power Jack bit.ly/3dHkLNy - amzn.to/3jMOokF
▪️ Jumper Wires bit.ly/36bYH9L - amzn.to/3Ap5lHv
🧰 Required Hardware for DIY Camera Slider
▪️ Linear Rail bit.ly/2TyrToI - amzn.to/369v7Sp
▪️ Rail Shaft bit.ly/3xl3Zf1 - amzn.to/3AvsmZE
▪️ Linear Block bit.ly/3dJHyID - amzn.to/3whrhkK
▪️ Wooden Plate bit.ly/3hdxwSk - amzn.to/3dJaaBP
▪️ Screws Nuts bit.ly/3hdxQk0 - amzn.to/3dK2fEu
▪️ Screw DSLR bit.ly/3dJ7Qux - amzn.to/3dJ7LXL
🧰 Required Tools
▪️ Soldering Station bit.ly/3yjXCsu - amzn.to/3jH1ZKf
▪️ Cordless Drill bit.ly/2UXxftW - amzn.to/3xjBq1o
By the way, thanks to PCBWay for supporting many Maker and Robotics projects with free product support. Take a look at PCBWay and contribute to their support:
pcbway.com/setinvite.aspx?inviteid=258713
Check out this article for all the details: instructables.com/Hand-Gesture-Controller-for-Robotic
Get the PCB Gerber file and Schematic: pcbway.com/project/shareproject/Hand_Gesture_Controller_for_Robotic.html
📋 How It Works?
The Hand Gesture Controller includes an accelerometer and it detects the motion by comparing the acceleration on any axis with set thresholds.The accelerometer can measure the static acceleration of gravity in tilt-sensing projects. The hand gesture controller acts as a transmitter, so a receiver circuit is required.
The program works as follows,
The X, Y and Z values provided by the ADXL335 sensor are read by the program and transmitted to the Receiver via the nRF24L01 module. The receiver compares these values with the min and max threshold values defined in the program. If the values satisfy the condition specified in the program, the function is executed.
📋 The hand gesture controller contains three main hardware:
1) nRF24L01 Transceiver Module (bit.ly/2Te7Awg - amzn.to/2REa4n8)
The nRF24L01 + transceiver module allows two or more Arduino boards to communicate with each other wirelessly and remotely. A transmitter and a receiver circuit are required to provide communication. An address (array of bytes) is created for two nRF24L01 modules to communicate. It communicates over this address and transfers data. A popular library called RF24 is used to interface with the nRF24L01 transceiver module. RF24 Arduino Library for nRF24L01+ Module - github.com/nRF24/RF24
2) ADXL335 Accelerometer (bit.ly/2EC4jQq - amzn.to/3gbToNa)
At the heart of the Hand Gesture Controller is a low-power three-axis accelerometer ADXL335. It can measure the static acceleration due to gravity in tilt-sensing applications. For more detail about ADXL335 - analog.com/media/en/technical-documentation/data-sheets/ADXL335.pdf
3) Arduino Pro Mini 3.3V 8 MHz (bit.ly/2GawAy6 - amzn.to/3xh7QcN)
Arduino Pro Mini was developed for applications and installations where space is premium and projects are made as permanent set ups. The Pro Mini does not have a built-in USB input, so a serial converter (FTDI) is used to upload the source code. It is an easy process.
📋 Prototype (Printed Circuit Board):
A printed circuit board was designed to turn the project into a useful prototype. Printed circuit boards are plates with conductive paths on the surface for mounting electronic circuit components. To get the PCBs, simply upload the shared "Gerber file" to pcbway.com and create an order. High-quality PCBs will arrive in a few days depending on the shipping address.
If you are interested in this project, you can order the PCB I designed from here (Get 10 PCBs for Only $5): pcbway.com/project/shareproject/Use_your_muscle_to_control_your_projects.html
In this project we will see how to control a servo motor with muscle power. We will use MyoWare Muscle Sensor from Advancer Technologies to monitor muscle activities and convert muscle movements into values. If you don't already have a muscle sensor, I recommend you check it out at this link:
MyoWare Muscle Sensor - amzn.to/3gQRPW1
MyoWare Electrodes - amzn.to/2S1GPui
MyoWare Muscle Sensor Dev Kit - amzn.to/3dWI1rm
We will move the 3D design claws by flexing and relaxing the forearm muscle. This video content; It can gain ideas and experience to those interested in craft, costumes, cosplay, robotic and design.
Gerber file & Schematic: pcbway.com/project/shareproject/Use_your_muscle_to_control_your_projects.html
---------------------------------------------------------------
📋 About the 3D Bionic Claws Design:
I had to make some updates in 3D design. The claws were stuck in the sleds and did not move, I widened the sleds by 1 millimeter on each side and made the claws 1 millimeter thinner each. I also created space for 18650 Li-ion battery, Arduino Nano and PCB.
Updated design link: (As soon as possible)
Link for those who want to use the original design: github.com/AdvancerTechnologies/MyoWare_BionicClaws
---------------------------------------------------------------
📋 All details of the Project: (I will share it on the Instructables platform as soon as possible)
📋 Source Codes:
ServoSweep_Mert_Arduino:
create.arduino.cc/editor/mertarduinotech/fab2fbfa-029f-44af-b187-da1a199a4569/preview
Servo_Muscle_Sensor_Mert_Arduino:
create.arduino.cc/editor/mertarduinotech/a1d5de59-f963-4297-a6f9-c249052b8109/preview
---------------------------------------------------------------
Get 10 PCBs for Only $5 pcbway.com/setinvite.aspx?inviteid=258713
📋 All details of the project:
instructables.com/Turn-Any-Decorative-Thing-Into-a-Smart-Device
📋 PCB & Gerber Files:
pcbway.com/project/shareproject/Turn_Any_Decorative_Thing_Into_a_Smart_Device.html
📋 Source Code: http://bit.ly/3eFjiZl
I chose a plant pot to make it smart and I'll turn it into a device that sends motion notifications. We will use an ESP-01 WiFi module for wireless communication and a few components for the circuit. We will also be using a free service for notifications.
🧰 Used tools:
Potted Plant:
amzn.to/30IzMb7
Mini PIR Motion Sensor:
http://bit.ly/2Lr42AN?
amzn.to/3u71oDu
ESP8266 ESP01 Module:
http://bit.ly/2XgAkWn
amzn.to/3fqySbT
FTDI USB To TTL:
http://bit.ly/2RL89st
amzn.to/3m5H8iR
LD1117 Voltage Regulator:
amzn.to/2NgrYJB
1000uF Electrolytic Capacitor:
http://bit.ly/2XaOQtT
amzn.to/3sFBDcX
100nF Ceramic Capacitor:
http://bit.ly/2KLB7rF
amzn.to/39qPEDS
LED:
http://bit.ly/2IWyzos
amzn.to/3qxSs8O
Slide Switch:
http://bit.ly/2wwntPZ
amzn.to/2QSXRdI
Battery Connector:
http://bit.ly/2M8PZCC
amzn.to/3u8ZRwD
Jumper Wire :
http://bit.ly/2pBD9BQ
amzn.to/3doetmT
Soldering Tool Kit:
http://bit.ly/2D6YbuC
amzn.to/3dgwCRO
Solder Wire:
http://bit.ly/36escZ0
amzn.to/3dt1jU6
Tweezer:
http://bit.ly/3og8suc
amzn.to/3dmw7FN
amzn.to/39xFW2u
Plier:
http://bit.ly/2Gbl6aq
amzn.to/3syMdm9
Recommended Items:
Use Your Muscles in Project - amzn.to/3fXtMnL
37 Sensor & Module Packages - amzn.to/3m66WeQ
Try this Robot Arm - amzn.to/3fq8DCl
Best Resin 3D Printer - amzn.to/39tY8KB
Arduino Compatible Kits - http://bit.ly/2J2AFF7
Banggood Spring Sale - bit.ly/3slMbOn
As you can see in the video, I made a very simple LED light face mask that is not complicated. Of course, you can easily change these animations because we used a programmable LED strip in the mask. The design and animations of the face mask depend on your imagination. I just tried to show "how to do it". Let's make a Face Mask with LEDs! This DIY LED lights face mask displays some animations and responds to your voice with effects.
🧰 Used tools:
LCD Digital Microscope :
http://bit.ly/3iKHpWO
amzn.to/3u4lEW8
300W Hot Air Tool:
http://bit.ly/2QFd1z0
amzn.to/3cAmJ2i
Soldering Tool Kit:
http://bit.ly/2D6YbuC
amzn.to/3dgwCRO
Solder Wire:
http://bit.ly/36escZ0
amzn.to/3dt1jU6
Tweezer :
http://bit.ly/3og8suc
amzn.to/39xFW2u
Plier:
http://bit.ly/2Gbl6aq
amzn.to/3syMdm9
🧰 For Prototype:
WS2812 5V LED Strip:
http://bit.ly/2YoWKmh
amzn.to/3rF1Qr1
ATtiny85:
http://bit.ly/2YhUX2p
amzn.to/39ujlUt
Sound Sensor:
bit.ly/3fuZoP7
amzn.to/3ateYKr
Battery Connector:
http://bit.ly/2M8PZCC
amzn.to/3u8ZRwD
Wire Cable:
http://bit.ly/3qRI3of
amzn.to/3rA2C8t
Jumper Wire:
http://bit.ly/2pBD9BQ
amzn.to/3doetmT
Copper Tape:
http://bit.ly/36cDb5h
amzn.to/3w9eB0i
Face Mask:
http://bit.ly/3oktBDi
amzn.to/3rCkL5O
🧰 For PCB:
FTDI USB To TTL :
http://bit.ly/2RL89st
amzn.to/3m5H8iR
SMD LED:
http://bit.ly/2MqP3JT
amzn.to/3fspG6T
SMD Capacitor:
http://bit.ly/39jqpDL
amzn.to/31CJeNL
SMD Resistor:
http://bit.ly/3pm5YeW
amzn.to/3ufYYmd
JST Connector :
bit.ly/2yXfJeI
amzn.to/3rDHdeK
3.7v Lipo Battery:
http://bit.ly/2ECTdL7
amzn.to/39vbKFe
⚡ Recommended Items:
Use Your Muscles in Project - amzn.to/3wdL45C
37 Sensor & Module Packages - amzn.to/3m66WeQ
Try this Robot Arm - amzn.to/3fq8DCl
Best Resin 3D Printer - amzn.to/39tY8KB
Arduino Compatible Kits - http://bit.ly/2J2AFF7
Banggood Spring Sale - bit.ly/3slMbOn
▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️
📋 All details of the project:
instructables.com/Make-a-Face-Mask-With-Animations
📋 PCB Files:
pcbway.com/project/shareproject/Make_a_Face_Mask_With_Animations.html
📋 Source Codes:
github.com/MertArduino/Making-a-Face-Mask-with-Animations
📋 How to program an ATtiny:
If you get stuck, try following the steps shown in this video - youtu.be/vPRpT_7rQNo
▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️▫️
💻 My Social Networks:
Subscribe to the channel - bit.ly/MertArduino
Instagram - instagram.com/mertarduino
Twitter - twitter.com/mert_arduino
Instructables - instructables.com/member/MertArduino
Hackster - hackster.io/mertarduino
Reddit - reddit.com/user/makerway
TikTok - tiktok.com/@mertarduino
Github - github.com/MertArduino
Facebook - facebook.com/mertkilic.arduino
📧 mertarduinotech@gmail.com
📽 My Equipment:
Sony ZV-1 4K HD Vlogger Camera:
amzn.to/3otnWeA
BOYA M1 Microphone:
amzn.to/36i9789
It's possible that some links in the description are affiliate links, it does not change anything for you, you just help support my channel and I thank you :)
Also, for the first time, I will explain this project by speaking. I don't speak English very well, so you can turn on the subtitle for this video. I will be better in the next projects. Your support is very important for me. Let's get started on the project.
👉🏻 Get the Gerber File & Circuit: pcbway.com/project/shareproject/Flame_by_Snapping_Finger.html
👉🏻 ATtiny Bootloader Shield: youtu.be/PbrSABWPlBg
👉🏻 Connections and full details: instructables.com/Flame-the-Candle-by-Snapping-Your-Finger
👉🏻 Parts Required for Prototype:
1x Arduino Nano V3:
http://bit.ly/2MHVDYi
amzn.to/3w9D45T
1x Sound Sensor Module:
bit.ly/3fuZoP7
amzn.to/3ateYKr
1x IRFZ44N Mosfet:
bit.ly/3fthnFF
amzn.to/3fqYOUD
2x 3.7v Battery 18650:
bit.ly/2ECGb01
amzn.to/2PoUPgH
1x Battery Holder 18650:
bit.ly/30cqwMJ
amzn.to/3m9myhl
1x Breadboard:
http://bit.ly/30ckFoc
amzn.to/3qxLxwm
Resistor Pack:
http://bit.ly/2lJhi8Z
amzn.to/3sEsQbv
Jumper Wires :
http://bit.ly/2MtyZCX
amzn.to/3doetmT
Matches and Candles
Recommended Items:
Use Your Muscles in Project - amzn.to/3wdL45C
37 Sensor & Module Packages - amzn.to/3m66WeQ
Try this Robot Arm - amzn.to/3fq8DCl
Best Resin 3D Printer - amzn.to/39tY8KB
Arduino Compatible Kits - http://bit.ly/2J2AFF7
Banggood Spring Sale - bit.ly/3slMbOn
👨💻 Source Code: github.com/MertArduino/Flame-by-Snapping-Finger
In this video, I showed you how to make your own hovercraft / hoverboat from materials available at home and cheapest electronic components available online. We used two cheap brushless motors in this Arduino based project. We used the nRF24L01 module for wireless remote communication. I designed a PCB controller myself for the hovercraft controller. The controller has a minimalist design, it fits in the palm of your hand and you can easily control the joystick with the thumb. As always, I chose PCBWay for PCB printing service. If you want to have this controller, you can easily order from the link below. If you are not interested in PCB, you can easily build a controller yourself.
👉🏻 Get the Gerber File & Circuit:
pcbway.com/project/shareproject/How_To_Make_DIY_Remote_Control_Hoverboat_at_Home.html
👉🏻 Parts Required for Receiver:
2x Brushless Motor :
bit.ly/2HekdSh
amzn.to/3dllp2k
2x Propeller :
bit.ly/355KMRE
amzn.to/2PJ877R
1x Arduino Nano V3:
http://bit.ly/2MHVDYi
amzn.to/3w9D45T
1x Motor Driver L298N:
bit.ly/369zBJJ
amzn.to/3diatT1
1x RF Module nRF24L01:
bit.ly/3je3v3u
amzn.to/3dkvUmp
1x RF Module Power Adapter :
bit.ly/30cFJgw
amzn.to/3dh7FWk
2x 3.7v Battery 18650:
bit.ly/2ECGb01
amzn.to/2PoUPgH
1x Battery Holder 18650:
bit.ly/30cqwMJ
amzn.to/3m9myhl
1x Mini Breadboard:
http://bit.ly/35cBGRm
amzn.to/2M15Wea
1x Hot Glue Gun:
http://bit.ly/2XM5YXc
amzn.to/3fE5PBV
Jumper Wires:
http://bit.ly/2MtyZCX
amzn.to/3doetmT
2x Bottle
1x Water Proof Box
1x Acrylic Sheet
Recommended Items:
Use Your Muscles in Project - amzn.to/3wdL45C
37 Sensor & Module Packages - amzn.to/3m66WeQ
Try this Robot Arm - amzn.to/3fq8DCl
Best Resin 3D Printer - amzn.to/39tY8KB
Arduino Compatible Kits - http://bit.ly/2J2AFF7
Banggood Spring Sale - bit.ly/3slMbOn
👉🏻 Parts Required for Transmitter:
(If you want to buy the same PCB which one I used in this project. Just download the Gerber file and upload it to pcbway.com to order the PCB board.)
Get the PCB Board
bit.ly/3kbfwae
RF Module nRF24L01
bit.ly/3je3v3u
amzn.to/3dkvUmp
Arduino Pro Mini 3.3v 8MHz
bit.ly/2GawAy6
amzn.to/3rZEXi2
Joystick
bit.ly/3ka28TD
amzn.to/3u5097N
Programmer FTDI
http://bit.ly/2RL89st
amzn.to/3m5H8iR
Self-locking On / Off Switch
bit.ly/3cyEtJL
amzn.to/3dE6Kzl
LED Kit
http://bit.ly/37OajhS
amzn.to/3qxSs8O
Capacitor
http://bit.ly/2s6Sonz
amzn.to/39qPEDS
Resistor
http://bit.ly/2lJhi8Z
amzn.to/3bj2HY9
Female Header Pin
http://bit.ly/2MJtnVm
amzn.to/3aAERbr
Soldering Tool Kit
http://bit.ly/2D6YbuC
amzn.to/3dgwCRO
👨💻 Source Code:
github.com/MertArduino/How-To-Make-DIY-Gesture-Control-Hovercraft-at-Home
😊 Contact Me:
instagram.com/mertarduino
🎵 Track Info:
Free Range by Mona Wonderlick soundcloud.com/monawonderlick
Creative Commons — Attribution 3.0 Unported — CC BY 3.0
Free Download / Stream: http://bit.ly/-free-range
Music promoted by Audio Library youtu.be/XcqtbhIc1ZQ
👉🏻 Parts Required for Receiver:
1) Robot Tank Chassis:
amzn.to/31DriT0
2) Arduino Nano V3:
http://bit.ly/2MHVDYi
amzn.to/3w9D45T
3) L298N Motor Driver:
bit.ly/369zBJJ
amzn.to/3diatT1
4) nRF24L01 Module:
bit.ly/2Te7Awg
amzn.to/2REa4n8
5) Adapter For NRF24L01:
bit.ly/30cFJgw
amzn.to/3dh7FWk
6) 3.7v 18650 Li-ion Battery(x2):
bit.ly/2ECGb01
amzn.to/2QPpfJr
7) 18650 Battery Holder :
bit.ly/30cqwMJ
amzn.to/3m9myhl
8) Breadboard:
http://bit.ly/30ckFoc
amzn.to/3qxLxwm
Recommended Items:
Use Your Muscles in Project - amzn.to/3wdL45C
37 Sensor & Module Packages - amzn.to/3m66WeQ
Try this Robot Arm - amzn.to/3fq8DCl
Best Resin 3D Printer - amzn.to/39tY8KB
Arduino Compatible Kits - http://bit.ly/2J2AFF7
Banggood Spring Sale - bit.ly/3slMbOn
👉🏻 Parts Required for Transmitter:
(If you want to buy the same PCB which one I used in this project. Just download the Gerber file and upload it to pcbway.com to order the PCB board.)
1) Get the PCB Board - bit.ly/3i80Gzt
2) Arduino Pro Mini 3.3v 8MHz - bit.ly/2GawAy6
3) NRF24L01+ RF Module - bit.ly/3je3v3u
4) GY-61 ADXL335 Accelerometer - bit.ly/2EC4jQq
5) FT232RL FTDI USB To TTL - http://bit.ly/2RL89st
6) 3.7v 750mah Lipo Battery - bit.ly/2ECTdL7
7) Self-locking On / Off Switch - bit.ly/3cyEtJL
8) LED Kit - http://bit.ly/37OajhS
9) Lipo Connector Pin - bit.ly/2S3dIUi
10) 100uF / 10uF Capacitor - http://bit.ly/2s6Sonz
11) Resistor - http://bit.ly/2lJhi8Z
12) Female Header Pin - http://bit.ly/2MJtnVm
13) Soldering Tool Kit - http://bit.ly/2D6YbuC
👉🏻 Get the Gerber File & Circuit:
pcbway.com/project/shareproject/How_to_Make_DIY_Arduino_Gesture_Control_Robot_at_Home.html
👨💻 Source Code & Schematic:
github.com/MertArduino/How-To-Make-DIY-Arduino-Gesture-Control-Robot-At-Home
😊 Contact Me:
instagram.com/mertarduino
🎵 Track Info:
Time Out - Atch soundcloud.com/atch-music
Creative Commons — Attribution 3.0 Unported — CC BY 3.0
Free Download / Stream: http://bit.ly/l-time-out
Music promoted by Audio Library youtu.be/NPnLxESfv50
Summer Madness by Roa soundcloud.com/roa_music1031
Creative Commons — Attribution 3.0 Unported — CC BY 3.0
Free Download / Stream: http://bit.ly/l-summer-madness
Music promoted by Audio Library youtu.be/onA7Si-1Py4
The idea here is to use thumbtack and paperclips as your wire.
👉🏻 Get the Board:
pcbway.com/project/shareproject/DIY_Circuit_Activty_Board_with_Paperclips___MAKER___STEM.html
Please subscribe! ❤️ For all lovers of #arduino #diy #electronics #engineering #technology #electronics #raspberrypi #pcb #iot
👉🏻 Required Hardware:
Buzzer :
http://bit.ly/33koZn5
amzn.to/3ud2PkF
LED:
http://bit.ly/37OajhS
amzn.to/3qxSs8O
LDR:
http://bit.ly/2MPatwo
amzn.to/3unEzwm
3 Volt Button Cell Battery
Resistor :
http://bit.ly/2lJhi8Z
amzn.to/3bj2HY9
Capacitor:
http://bit.ly/2s6Sonz
amzn.to/39qPEDS
Transistor:
amzn.to/3wjfoMu
http://bit.ly/2D9rmgJ
Paperclips :
bit.ly/3m9kMfQ
amzn.to/2QMGyuE
Soldering Tools:
http://bit.ly/2Kbr9hQ
amzn.to/3dgwCRO
Thumbtack
Recommended Items:
Use Your Muscles in Project - amzn.to/3wdL45C
37 Sensor & Module Packages - amzn.to/3m66WeQ
Try this Robot Arm - amzn.to/3fq8DCl
Best Resin 3D Printer - amzn.to/39tY8KB
Arduino Compatible Kits - http://bit.ly/2J2AFF7
Banggood Spring Sale - bit.ly/3slMbOn
😊 Contact Me:
instagram.com/mertarduino
🎵 Track Info:
Track: Moment — Amine Maxwell [Audio Library Release]
Music provided by Audio Library Plus
Watch: youtu.be/VsRtJMPwkRE
Free Download / Stream: alplus.io/moment
Please subscribe! ❤️ For all lovers of #arduino #diy #electronics #engineering #technology #electronics #raspberrypi #pcb #iot
👉🏻 Required Hardware:
LM393 Tilt Angle Sensor:
bit.ly/3m3FgGX
amzn.to/3ueA1qX
Arduino Nano V3:
http://bit.ly/2RTa3rp
amzn.to/3w9D45T
LED Kit:
http://bit.ly/37OajhS
amzn.to/3qxSs8O
5V Buzzer:
http://bit.ly/33koZn5
amzn.to/3ud2PkF
Breadboard:
http://bit.ly/30ckFoc
amzn.to/3qxLxwm
Jumper Wires:
http://bit.ly/2MtyZCX
amzn.to/3doetmT
👉🏻 Check out the recommended products:
Use Your Muscles in Project - amzn.to/3wdL45C
37 Sensor & Module Packages - amzn.to/3m66WeQ
Try this Robot Arm - amzn.to/3fq8DCl
Best Resin 3D Printer - amzn.to/39tY8KB
Arduino Compatible Kits - http://bit.ly/2J2AFF7
Banggood Spring Sale - bit.ly/3slMbOn
👨💻 Source Code:
github.com/MertArduino/How-to-use-TILT-sensor-with-LED-BUZZER-and-ARDUINO
😊 Contact Me:
instagram.com/mertarduino
🎵 Track Info:
Title: Winding Road by Pyrosion
Genre and Mood: R&B & Soul + Calm
Winding Road by Pyrosion soundcloud.com/pyrosion
Creative Commons — Attribution 3.0 Unported — CC BY 3.0
Free Download / Stream: bit.ly/al-winding-road
Music promoted by Audio Library youtu.be/kV07PqSZeDY
👉🏻 Get the Board:
pcbway.com/project/shareproject/Amazing_inventive_art_project_idea.html
👨💻 Source Code:
github.com/MertArduino/Art-Project-LED-Strip-DFPlayer-Arduino
Please subscribe! ❤️ For all lovers of #arduino #diy #electronics #engineering #technology #electronics #raspberrypi #pcb #iot
👉🏻 Required Hardware:
LED Strip:
bit.ly/2DkYdmQ
amzn.to/3dCSBTl
MP3 Player:
bit.ly/2BVgNAU
amzn.to/3weAzPy
Infrared Sensor:
bit.ly/3gSVzlW
amzn.to/31xMABy
Microcontroller:
bit.ly/2QO5m2g
amzn.to/39sAs9g
Connector:
bit.ly/2QOXQnU
amzn.to/3rDHdeK
Adapter:
bit.ly/3bkEwrS
amzn.to/39y3Ivl
Voltage Regulator:
bit.ly/37ptKi4
amzn.to/3dpxFia
Speaker:
bit.ly/2YwSJMe
amzn.to/3wg1CKs
Micro SD:
bit.ly/3hmXq45
Capacitor:
bit.ly/30BaNYr
amzn.to/39qPEDS
Resistor:
bit.ly/2MUegJC
amzn.to/3sEsQbv
Toggle Switch:
bit.ly/2B4ADcs
amzn.to/3fyZnMe
Soldering Tools:
http://bit.ly/2Kbr9hQ
amzn.to/3dgwCRO
18V 900W Electric Jig Saw Power Tool :
bit.ly/2DzoMEZ
amzn.to/3sJ1ukg
👉🏻 Check out the recommended products:
Use Your Muscles in Project
amzn.to/3wdL45C
37 Sensor & Module Packages
amzn.to/3m66WeQ
Try this Robot Arm
amzn.to/3fq8DCl
Best Resin 3D Printer
amzn.to/39tY8KB
Banggood Spring Sale
bit.ly/3slMbOn
😊 Contact Me:
instagram.com/mertarduino
🎵 Track Info:
Nightfall by Roa soundcloud.com/roa_music1031
Creative Commons — Attribution 3.0 Unported — CC BY 3.0
Free Download / Stream: bit.ly/al-nightfall
Music promoted by Audio Library youtu.be/WAD2veumgYc
How to make the wearable activity tracking watch? This is a wearable amazing gadget designed to vibrate when it detects stagnation. Do you spend most of your time on the computer like me? Are you sitting for hours without realizing it? This is what inspired the DIY Vibrating Watch, a simple activity tracker that will notify you when you are inactive for a pre-set period of time. In this project, we'll build a wearable gadget designed to vibrate when it detects stagnation. This device is low-cost and can help keep you on the move.
Please subscribe ❤️ ...and turn on notifications! 🔔
➤ About the Schematic:
The heart of this project is the ATtiny85. This microcontoller can be programmed with the Arduino IDE and is easy to fit into projects to keep cost and size down. With three analog inputs and two PWM outputs, the ATtiny85 has just enough I/O for this project. For our activity sensing needs, I am using the MMA7341LC 3-axis accelerometer which outputs each axis on a different analog line. This accelerometer also has a sleep mode that can be activated by the microcontroller to improve battery life. Our activity reminder will come through a vibration motor which, despite its small size is powerful enough.
Download Gerber Files or Order PCB from PCBWay (10 pcs PCB order US $5.00):
pcbway.com/project/shareproject/ATtiny85_Wearable_Activity_Tracking_Watch.html
ATtiny85 IC:
bit.ly/3g7yVXJ
amzn.to/39taKSg
Vibration Motor:
bit.ly/3f9h5C4
amzn.to/39wpW0I
3-Axis Accelerometer:
bit.ly/309kbSB
amzn.to/3m9vnaX
Battery Holder:
bit.ly/2BBnmZC
amzn.to/3m9myhl
8 Pin Socket:
bit.ly/339tQtY
Slide Switch:
bit.ly/30SPrnP
amzn.to/2QSXRdI
Resistor:
bit.ly/2WFsNPl
amzn.to/3ufYYmd
Strap:
bit.ly/3g8GhKj
amzn.to/3wjqJMf
CR2032 Battery
Soldering Tools:
http://bit.ly/2Kbr9hQ
amzn.to/3dgwCRO
-----------------------------------------------------------------------------
➤ Programming an ATtiny85 with an Arduino UNO:
Arduino Uno R3:
http://bit.ly/2AXpHuw
amzn.to/2LZr6t4
10uF Capacitors:
http://bit.ly/2s6Sonz
amzn.to/39qPEDS
Jumper Wires:
http://bit.ly/2J6de9E
amzn.to/3doetmT
Breadboard:
http://bit.ly/2H9YSUa
amzn.to/3qxLxwm
1) Configuring Arduino Uno as a ISP (In-System Programming):
To program the ATtiny85 we need to first set Arduino Uno in ISP mode. Connect your Arduino Uno to the PC. Open Arduino IDE and open the ArduinoISP example file (File - Examples - ArduinoISP) and upload it.
2) Adding ATtiny85 Support to Arduino IDE:
By default Arduino IDE doesn't support ATtiny85 so we should add ATtiny boards to Arduino IDE. Open File - Preferences and in the Additional Boards Manager URLs give this URL:
raw.githubusercontent.com/damellis/attiny/ide-1.6.x-boards-manager/package_damellis_attiny_index.json
Open Tools - Board - Board Manager. Scroll down the list where it says "ATtiny by Davis A. Mellis". Click on that and install it. Now you would be able to see a new entry in the Board menu
3) Connecting ATtiny85 with Arduino Uno:
Now with all the above things ready we will start programming the ATtiny85. Connect the ATtiny85 to Arduino Uno using breadboard.
Add a 10uF capacitor between RESET and GND in the Arduino Uno. This is to avoid the Arduino Uno from being auto reset when we upload the program to the ATtiny85.
-----------------------------------------------------------------------------
➤ Burn Bootloader and Uploading Source Code to the ATtiny85:
1) Select ATtiny under Tools - Board.
2) Then select ATtiny85 under Tools - Processor.
3) Select 8 MHz (internal) under Tools - Clock.
4) Then make sure Arduino as ISP is selected under Tools - Programmer
By default the ATtiny85 runs at 1MHz.
5) To make it to run at 8MHz select Tools - Burn Bootloader.
6) You will get the above message if burning bootloader was successful.
7) Now open the source code and upload it.
Get the Source Code from GitHub:
github.com/MertArduino/ATtiny85-Wearable-Activity-Tracking-Watch
-----------------------------------------------------------------------------
Track: Broke — Soyb [Audio Library Release]
Music provided by Audio Library Plus
Watch: youtu.be/CuT6NlEgdQA
Free Download / Stream: alplus.io/broke
Track: I Am OK — Vishmak [Audio Library Release]
Music provided by Audio Library Plus
Watch: youtu.be/KZVS1ag3itA
Free Download / Stream: alplus.io/i-am-ok
Track: Besomorph & Coopex - Redemption (ft. Riell) [NCS Release]
Music provided by NoCopyrightSounds.
Watch: youtu.be/ZGrWry_4Q8s
Free Download / Stream: ncs.io/RedemptionYO
Music-reactive multi-color LED lights project. In this project, a simple 5050 RGB LED strip (not the Addressable LED WS2812), Arduino sound detection sensor and 12V adapter were used.
So how does it work? If you take a closer look at the Arduino IDE source code of the project, an analog value comes from the Arduino sound sensor (this varies according to the intensity of the music), after that a threshold value is defined (just like 0 to 1023), if the value from the sound sensor does not match the threshold value, Arduino random () function is activated. 6 different color groups have been created in the random function, different color combinations can be created by changing the values in these color groups. If there is no analog value from the sound sensor, the function is stopped.
This project can also be done with Arduino UNO R3 and some (IRFZ44N Transistor and similar) components, but I prepared this project on a single board. Easy solderable components were used (Just like DIP case Atmega348P). Of course, as always, I ordered the circuit board via PCBWay. You can order from the web address below and get this board.
PCBWay Mid Year Big Sale and 6th Anniversary Celebration 2020
pcbway.com/activity/anniversary6sales.html?page=2#video-div
Get the Schematic and Gerber File (Also order):
pcbway.com/project/shareproject/Music_Reactive_Multicolor_LED_Lights_Board.html
Get the Arduino IDE Source Code (GitHub):
github.com/MertArduino/Music-Reactive-Multicolor-LED-Lights
Instructable: instructables.com/id/Music-Reactive-Multicolor-LED-Lights-Arduino-Sound
hackster.io: hackster.io/mertarduino/music-reactive-multicolor-led-lights-arduino-sound-sensor-6bf5a2
Required Components:
Sound Detection Sensor :
bit.ly/2UBEm8z
amzn.to/3ateYKr
LED Strip Light 5050:
bit.ly/2AumaXt
amzn.to/3dCSBTl
AC DC 12V Adapter:
bit.ly/37wrVjC
amzn.to/39y3Ivl
DIP28 ATmega328P-PU:
bit.ly/30CJFII
amzn.to/3fzKoSf
IRFZ44N Transistor:
bit.ly/3hlgOOQ
amzn.to/3wjfoMu
L7805CV TO220:
bit.ly/37ptKi4
Ceramic Capacitor :
bit.ly/30zXuaz
amzn.to/39qPEDS
Electrolytic Capacitor:
bit.ly/30BaNYr
amzn.to/3sFBDcX
DIP IC Socket:
bit.ly/30ASdj7
amzn.to/3w9qAei
Type B USB Socket :
bit.ly/2zwCYwE
2.1mm Jack Socket:
bit.ly/2UDhoxT
Toggle Switch:
bit.ly/2B4ADcs
amzn.to/3fyZnMe
LED:
bit.ly/2UFqnhR
amzn.to/3rF1Qr1
Resistor:
bit.ly/2MUegJC
amzn.to/3sEsQbv
12MHz Crystal:
bit.ly/30NFWIr
16MHz Crystal:
bit.ly/2AmnaNv
amzn.to/31yAYhB
Jumper Wire:
http://bit.ly/2J6de9E
amzn.to/3doetmT
Soldering Tools:
http://bit.ly/2PEiyVx
amzn.to/3dgwCRO
Recommended Items:
Use Your Muscles in Project - amzn.to/3wdL45C
37 Sensor & Module Packages - amzn.to/3m66WeQ
Try this Robot Arm - amzn.to/3fq8DCl
Best Resin 3D Printer - amzn.to/39tY8KB
Arduino Compatible Kits - http://bit.ly/2J2AFF7
Banggood Spring Sale - bit.ly/3slMbOn
🎧 Background Music
Leaf by KV soundcloud.com/kvmusicprod
Creative Commons — Attribution 4.0 International — CC BY 4.0
www.creativecommons.org/licenses/by/4.0
Music promoted by Audio Library youtu.be/GlM3s880xfY
Track: Warriyo - Mortals (feat. Laura Brehm) [NCS Release]
Music provided by NoCopyrightSounds.
Watch: youtu.be/yJg-Y5byMMw
Free Download / Stream: http://ncs.io/mortals
#MusicReactiveRGBLedStrip #ArduinoMusicReactiveLedStrip
This project we have made a Talking / Voice Notification and Warning System. At least two sensors can be used in this project. In this project, PIR sensor (The PIR Motion sensor module is an automatic control module based on infrared technology) and IR sensor (IR Infrared Obstacle Avoidance Sensor Module has a pair of infrared transmitting and receiving tubes). The DFPlayer Mini module was used to play audio files. (The DFPlayer Mini MP3 Player For Arduino is a small and low price MP3 module with an simplified output directly to the speaker) We used one 9V battery for power consumption and one mini speaker for audio files. We chose DIP components for the PCB, so it became an easily solderable board. Of course, this project includes one Atmega328P microcontroller and the minimum required component.
Required Components:
DFPlayer Mini MP3 :
bit.ly/2BVgNAU
amzn.to/3weAzPy
HC-SR505 Mini PIR:
bit.ly/2PfD674
amzn.to/2Oc1URq
ATmega328P-PU IC:
bit.ly/30CJFII
amzn.to/39taKSg
L7805 TO220:
bit.ly/37ptKi4
Mini Speaker:
bit.ly/2YwSJMe
amzn.to/3wg1CKs
Micro SD Card 8GB:
bit.ly/3hmXq45
9V Battery Connector:
bit.ly/2AZ6BqO
amzn.to/2QHL3qi
Ceramic Capacitor :
bit.ly/30zXuaz
amzn.to/39qPEDS
Electrolytic Capacitor :
bit.ly/30BaNYr
amzn.to/3sFBDcX
DIP IC Sockets:
bit.ly/30ASdj7
Type B USB Socket:
bit.ly/2zwCYwE
amzn.to/3drUYIl
12MHz Crystal:
bit.ly/30NFWIr
16MHz Crystal:
bit.ly/2AmnaNv
amzn.to/31yAYhB
Resistor:
bit.ly/2MUegJC
amzn.to/3sEsQbv
Switch:
bit.ly/2B4ADcs
amzn.to/2QSXRdI
LED:
bit.ly/2UFqnhR
amzn.to/3qxSs8O
Recommended Items:
Use Your Muscles in Project - amzn.to/3wdL45C
37 Sensor & Module Packages - amzn.to/3m66WeQ
Try this Robot Arm - amzn.to/3fq8DCl
Best Resin 3D Printer - amzn.to/39tY8KB
Arduino Compatible Kits - http://bit.ly/2J2AFF7
Banggood Spring Sale - bit.ly/3slMbOn
Source Code:
github.com/MertArduino/Make-the-Talking-Voice-Notification-Warning-System
Gerber - Schematic - BOM List:
pcbway.com/project/shareproject/Make_the_Talking___Voice_Notification_Warning_System.html
Other Platforms:
instructables.com/id/Make-the-Talking-Voice-Notification-Warning-System
hackster.io/mertarduino/make-the-talking-voice-notification-warning-system-441460
create.arduino.cc/projecthub/mertarduino/make-the-talking-voice-notification-warning-system-c2b7cc
hackaday.io/project/173745-make-the-talking-voice-notification-warning-syst
My goal was to design the mXY board to make low budget the XY plotter drawing machine. So I designed a board that makes it easier for those who want to make this project. In the previous project, while using 2 pcs Nema17 stepper motors, this board uses 2 pcs 28YBJ-48 DC 5V 4 Phase 5 Wire Stepper Motors. Also in the previous project, Arduino Uno R3 was used as microcontroller and Adafruit Motor Shield as motor driver. This board uses Atmega328P and ULN2003 stepper driver. So you will be able to make this project with a single board. A 5V 1A adapter or powerbank is sufficient for this project to power consumption. The maximum current was observed as 0.4A when both motors were running.
The board shown in the video is the test version, the updated and upgraded version of the board is at the link below.
Get the PCB & Schematic:
pcbway.com/project/shareproject/mXY_Board___Low_Budget_XY_Plotter_Drawing_Robot_Board.html
In this project we gonna make XY Plotter Drawing machine with mXY Board. With Drawing Robot you can draw images on wall, panel or A4 paper. You can print pictures or print text. The machine is a simple device, that draws picture using a normal pen, some motors and some string. All required hardware for this project are listed below. We will learn how to install and use the Polargraph program for drawing control.
Required Components for PCB:
1x ATmega328P-PU with Bootloader:
bit.ly/2U9iwJw
amzn.to/39sAs9g
2x ULN2003 DIP16:
bit.ly/3dtexif
amzn.to/31AALKV
2x 28YBJ-48 5V 5 Wire Stepper Motor:
bit.ly/3gHHxVs
amzn.to/3m7Uf2Z
1x CH340G SOP16:
bit.ly/2TZXNaC
Type B USB Socket:
bit.ly/2WBSQqw
amzn.to/3fwVojk
DIP Socket 28/16 Pins
bit.ly/2UahQDK
amzn.to/3uepiwG
12/16 MHz Crystal:
bit.ly/33FNTyL
amzn.to/31yAYhB
L7805 TO-220:
http://bit.ly/2N5WnYG
amzn.to/3rFGY2A
10uF Capacitor
bit.ly/2U98JTU
amzn.to/39qPEDS
22pF/0.1uF/10nF Ceramic:
bit.ly/2WCuQ6Y
LED:
http://bit.ly/37OajhS
amzn.to/3dCSBTl
Resistor 10K/ 1K:
bit.ly/2WFsNPl
amzn.to/3bj2HY9
Power Jack Socket:
http://bit.ly/2QAzFdp
2 Pin Terminal Block:
http://bit.ly/2lEgy58
Male Pin Header:
bit.ly/3ab5h0w
amzn.to/3dmwTT9
2x JST B5B-XH Connector:
bit.ly/2yXfJeI
amzn.to/3rDHdeK
1x MG90S Servo Motor:
bit.ly/2XWWytT
amzn.to/39o8tHF
GT2 Pulley 16 Teeth Set:
bit.ly/36Wfayk
amzn.to/3m8qX4g
GT2 Rubber Belt (5M):
bit.ly/2XTgbTT
amzn.to/3cE7TYm
3 in 1 Jumper Wire:
http://bit.ly/2J6de9E
amzn.to/3doetmT
Soldering Tools:
http://bit.ly/2PEiyVx
amzn.to/3dgwCRO
5M Extension Wire Cable:
bit.ly/3gMZMJa
amzn.to/3ft0vkw
Recommended Items:
Use Your Muscles in Project - amzn.to/3wdL45C
37 Sensor & Module Packages - amzn.to/3m66WeQ
Try this Robot Arm - amzn.to/3fq8DCl
Best Resin 3D Printer - amzn.to/39tY8KB
Arduino Compatible Kits - http://bit.ly/2J2AFF7
Banggood Spring Sale - bit.ly/3slMbOn
Gondola & Bracket:
You can find gondola and stepper motor mounting bracket 3D models in the ZIP file 'Gondola_Bracket_Models' : github.com/MertArduino/mXY-board-xy-plotter-drawing-machine
SOURCE CODE:
github.com/MertArduino/mXY-board-xy-plotter-drawing-machine
It works fine in Arduino IDE v1.8.5 & Processing v2.2.1
Download and install the Arduino IDE v.1.8.5:
arduino.cc/en/Main/OldSoftwareReleases#previous
Download and install the Processing v2.2.1:
processing.org/download/?processing
Stepper Motor Specifications:
Define the value for MM PER REV as 64
Define the value for STEPS PER REV as 4076
Define the value for MOTOR MAX SPEED as 1000
Define the value for MOTOR ACCELERATION as 200
For more information about 28BYJ-48 Stepper Motor:
lastminuteengineers.com/28byj48-stepper-motor-arduino-tutorial
Check out these platforms for more:
Polargraph controller Copyright Sandy Noble 2018.
http://www.polargraph.co.uk
github.com/euphy/polargraphcontroller


