Top 10 Arduino Projects for Students 2019-2020

Here are some of the best Arduino Projects for beginners for School, college or just for learning purposes. 

If you are worried about making a science project for school in which you want secure an A grade, or you are trying to prepare a very good project for your college seminar, in the world of DIY (Do it yourself) Arduino is the thing for you. Using Arduino, you can engineer really cool projects, doing so you will not only learn more about Applied Electronics but also you will make sure that everyone will be impressed by the project of yours.

Why to consider Arduino Projects?

  • If you are an engineering student then Arduino is a very good platform for you to experiment with new-new projects, using which you can have a better understanding of the theories you learn.

  • Also, there are many people who have a hobby and passion to make new electronics projects just for brain-teasing and fun.

  • If you do not possess any passion or addiction thinking of the negative impacts on your life, then Arduino is the perfect solution for you as you will stay tuned with the latest technology, also you will stay keen about every problem and their electronic solutions around you. As learning is best bad-habit one should possess.
  • One more reason to choose Arduino over other development boards and DIY projects because it is cheap and the Arduino IDE tool (programming tool) is an open-source project which is available for free.
  • Also, if you are a newbie then you can check out the Arduino library where loads of readymade codes are there just ready to upload and use. Using those free readymade programs, you will also be learning the Arduino even better, also it will be clearing your programming concepts and algorithmic concepts.

What can you learn from this our Arduino Blog?

  • In this article, we will be providing you with a list for top 10 Arduino project ideas, which will be surely helpful for you school project, as well as a college project, seminar, pastime project and experiments as well.
  • We will be talking about the project contents in brief and I will be giving you the basic details of the project along with the list of equipment and components one needs for these projects.

  • If you want to learn more about any of those projects or need help with assembling the components or equipment or the Arduino IDE coding then you can search about those projects in this website. We’ll be doing a series of How to make Arduino projects in these blogs.

Also Know: What is Arduino? Arduino vs. Raspberry Pi.

So, stay tuned with the detailed articles for each kind of Arduino projects and have fun while building Arduino projects.

Controlling High Voltage Devices Using Arduino

Arduino based High voltage device controller

Project Objective

At the stop of the task, you will be able to manipulate your house appliances like led, fan, bulb etc. directly from the command written in Arduino IDE application. You can alter the ON and OFF time of those home equipment. One of the most famous electronic modules, which is a 2-channel relay module is used on this assignment; which is used widely in industries to control high voltage gadgets by using low voltage signals. So, in this Arduino project, you will come to know how to use a 2-channel relay module with Arduino and its circuit fundamentals for applicative usages.

Components needed

  • An A.C. Appliances like a Bulb or Table fan 
  • Arduino Uno or Arduino Nano 
  • Connecting Wires and Jumpers 
  • 1 piece 2-Channel Relay Board 
  • One Breadboard 
  • One 9V Battery

Wall Following Robot

Arduino Based Wall following rover

Project Objective

As the call implies a Wall Following Robot is designed in a way so that it usually moves alongside a wall or an alongside an obstruction, without hitting it or leaving its course. This task will also train you about Motor driving force (used to drive motorized movement by use of Logic) and Ultrasonic Sensor. Minimum two Ultrasonic Sensors are necessary to make a Wall Following Robot.

Components needed

  • A Breadboard 
  • One Ultrasonic Sensor Module
  • 1 Battery pack 9V
  • Four 6V D.C Motors  
  • Arduino Uno or Nano
  • Connecting Wires, jumpers, sockets
  • L293D or L298N (Motor H-Bridge) also known as Motor Driver

SERVO MOTOR Control with Joystick

Arduino based Joystick controller for Rover/robot / Crawler

Project Objective

By the finish line of this assignment, you may be capable of make numerous manage mechanism by implementing Servo Motor and Joystick. Servo Motor is one of the most typically used DC motor in any project packages like RC planes, elevators, crawlers, grippers etc. This makes it vital for novices to realize and learn the use of a Servo Motor. Vast applications of Servo Motor can be discovered here and any of your future projects.

Components needed

  • 12v Servo Motor (no depends upon the model)
  • Two Joystick modules with connectors
  • Breadboard for assembling the components
  • The battery pack of 12v or 9v
  • Arduino Uno only, not Nano
  • Connecting Wires, jumpers, etc.

Arduino Temperature Sensor

Arduino based room Thermometer / Temperature Detector

Project Objective

To the degree the temperature value of surroundings or room or if any specific system and then display it on an LCD screen to show the usage of Arduino and a Thermistor. A thermistor is a form of variable resistor which changes its resistance in accordance with the temperature of environment hence it is used as a temperature-sensitive module. So, for sure, you can say it’s kind of works like an LDR (Light Dependent Resistor) with one difference in the properties. Whereas LDR varies its resistance in keeping with the depth of light, a Thermistor’s resistance be subject to the temperature of environs.

Components needed

  • Thermistor or Thermistors depending upon the model
  • Arduino Uno or UNO
  • Connecting Wires, jumpers, etc.
  • LCD Display module
  • Breadboard
  • One Potentiometer
  • A couple of Resistors (specifications depend upon the modules you are using)
  • 12V or 9V battery pack

Line Follower Robot

Arduino based Path following Rover

Project Objective

To make a Self-directed Robot the usage of Arduino, L298N and IR sensor which shadows a black line over the white floor, you need to have some very basic components. You have to be acquainted with this Robot or have to have visible it someplace. This task is taken into a reflection of a stepping stone in the construction of excellent know-how of Arduino. You will get to understand about IR Sensors that are quite famous and beneficial and how to use it to make a Line following Robot. A-Line Follower Robot is quite famous amid novices in addition to experts. Elementary Line follower amongst novices and quickest line follower among specialists.

Components needed

  • Geared Motors two pieces
  • Readymade or DIY Robot Chassis
  • Pack of 12 Volt Battery
  • Connecting jumpers and Wires
  • A module of L293D Motor Driver IC
  • Arduino Uno
  • 2 pieces of IR Sensor Module

Alarm Clock

Arduino based alarm clock

Project Objective

To make an Arduino based Alarm Clock the usage of DS3231 RTC Module and LCD display. In this project, you will be the use of a DS3231 RTC (Real Time Clock) Module with Arduino. A DS3231 Module works through I2C verbal exchange, for that reason making it easier to apply with Arduino. A buzzer is used in this task to signify Alarm time but you can use a speaker additionally.

Components needed

  • Arduino UNO or Arduino Nano
  • DS3231 RTC Module
  • 16 X 2 LCD display module
  • Buzzer module
  • One 220-ohm Resistor
  • 10k potentiometer
  • Connecting jumpers, wires
  • Breadboard for assembling components

Dice using LED’S

Arduino based LED Dice

Project Objective

To make an electronic cube the use of 6 LED’S, some resistors, and Arduino. Foundation for this undertaking is entirely it’s Coding Part whereas Circuit Connections and hardware part is easy. Dice wide variety is indicated by using the wide variety of LED’s that glow out of six when the button is pressed.

Components needed

  • Arduino UNO
  • 6 LED’s small
  • One Button
  • Couple of 1k and 10k Resistors
  • Breadboard for connections
  • Connecting jumpers and Wires

Arduino Based Smart Blind Stick

Smart Blind Stick based on Arduino

Project Objective

To make a circuit using the Ultrasonic sensor and Arduino which shows the item in front through generating a beep sound. This circuit can act as a clever blind stick if fitted onto a stick. The frequency of beep sound increases as the stick goes nearer and towards the impediment. Also, Circuit has an LDR to feel the light depth and an RF far off to locate Stick remotely. Ultrasonic Sensor is the coronary heart of this Arduino primarily based Alarm stick. It senses the gap of impediment and sends this information to Arduino. Arduino similarly processes this information and as a result, determine the frequency with which buzzer produces sound.

Components needed

  • Arduino UNO Board
  • One Ultrasonic Sensor HC-SR04
  • One Buzzer module
  • 2 LED one green one red
  • One Voltage Regulator L7805
  • One LDR module
  • 433 MHz transmitter and receiver RF components
  • PCB Board or Ferro board or Pref board
  • One Push button one switch
  • Battery 9 Volt pack
  • Mobile Phone controlled manual Robot
  • Arduino Based Mobile controlled Rover

Project Objective

To make a robotic which may be controlled the usage of a Mobile phone by way of simply dialling a number after which the use of the mobile keypad to move the robotic. One can manage this robotic from any part of the sector. To attain this, you’re going to use a DTMF (Dual Tone Multiple Frequency) Module which is used to definitely decode the keypad tones of Mobile phone. You need mobile-telephone for this challenge. One to dial the quantity and control the Robot and some other one to get hold of the call which remains on to the robotic. You can software Arduino to apply any keypad keys you need to manipulate the Robot.

Definition DTMF Module

DTMF module stands for twin tone a couple of frequencies. Each range in our cellular smartphone dial pad is an aggregate of -tone frequencies (better and lower) and DTMF gets this tone frequency as input and decodes it into an equivalent binary shape. DTMF has its huge software in domestic automation. When a dial pad button is pressed, DTMF gets a specific tone frequency after which decodes it into a binary quantity which is in addition processed with the aid of Arduino to perform a particular assignment.

The tone of each key contains two dissimilar frequency and is used collectively:

Decimal Value

Binary Value

Keypad Symbol

0

0000

D

1

0001

1

2

0010

2

3

0011

3

4

0100

4

5

0101

5

6

0110

6

7

0111

7

8

1000

8

9

1001

9

10

1010

0

11

1011

*

12

1100

#

13

1101

A

14

1110

B

15

1111

C

Binary correspondent of decoded tone frequency on 4 output pins of DTMF Module;

Digit

D3

D2

D1

D0

1

0

0

0

1

2

0

0

1

0

3

0

0

1

1

4

0

1

0

0

5

0

1

0

1

6

0

1

1

0

7

0

1

1

1

8

1

0

0

0

9

1

0

0

1

0

1

0

1

0

*

1

0

1

1

#

1

1

0

0

Components needed

  • Arduino UNO only not Nano 
  • Manual robot frame or cabinet
  • 4 6V or 12VDC motors
  • One DTMF MODULE
  • One L298N Motor driver
  • One 12 Volt Battery pack
  • A couple of Switches
  • Headphone Jack 3.5mm universal
  • Two Cell Phones
  • Connecting jumpers, wires
  • PCB board or Breadboard depending upon the design

Arduino Based LED Cube of 4x4x4

Arduino LED Cube

Project Objective

This is one of the coolest projects you could make the use of the Arduino. It may also appear complicated at first but agree with me, this mission is quite simple. You just should make all connections well and ensure that each and each LED paintings. Then just burn the given code for your board and you’re accurate to go.

Components needed

  • 64 pieces of Blue LED
  • Arduino Board Nano or Uno
  • 100-ohm Resistor 4 pieces
  • Connecting jumpers, Wires
  • PCB Board

Wrapping Up

Keep reading other articles on the same topic for more detailed info about each of the topics, keep building keep innovating, keep learning… and have fun with the projects.


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