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Elegoo Smart Robot Car Kit V1.0: How to Make It Work with Bluetooth and IR Remote


Elegoo Smart Robot Car Kit V1.0: A Fun and Educational DIY Project




If you are looking for a fun and educational DIY project that can teach you about robotics, electronics, and programming, then you should check out the Elegoo Smart Robot Car Kit V1.0. This kit is a complete set of components that allows you to build your own smart robot car that can be controlled by an IR remote, a Bluetooth app, or programmed to perform autonomous tasks such as obstacle avoidance and line tracking. In this article, we will show you how to assemble, program, and play with this amazing kit.




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Introduction




What is the Elegoo Smart Robot Car Kit V1.0?




The Elegoo Smart Robot Car Kit V1.0 is a DIY robot kit that consists of a four-wheel drive chassis, four DC motors, an L298N motor driver, an UNO R3 board, a sensor shield, an ultrasonic sensor, a servo motor, a line tracking module, an IR receiver module, a Bluetooth module, a battery holder, and various wires and accessories. The kit also comes with a DVD that contains assembly instructions, tutorials, and demo projects.


What are the features of the Elegoo Smart Robot Car Kit V1.0?




The Elegoo Smart Robot Car Kit V1.0 boasts a pretty impressive set of features:


  • It has a four-wheel drive design that allows it to move smoothly on different terrains.



  • It can be controlled by an IR remote that has buttons for forward, backward, left, right, and speed adjustment.



  • It can also be controlled by a Bluetooth app that has a virtual joystick and buttons for different modes.



  • It has an ultrasonic sensor that can measure the distance to obstacles and avoid them automatically.



  • It has a line tracking module that can follow a black line on a white background or vice versa.



  • It has a rechargeable LiPo battery that can power the car for about an hour.



  • It does not require any soldering or special tools to assemble.



Why should you buy the Elegoo Smart Robot Car Kit V1.0?




The Elegoo Smart Robot Car Kit V1.0 is not only a fun The Elegoo Smart Robot Car Kit V1.0 is not only a fun toy, but also a great learning tool. By building and programming this kit, you can learn about:


  • The basic principles of robotics, such as how motors, sensors, and controllers work together.



  • The basic concepts of electronics, such as how to connect and use different modules and components.



  • The basic skills of programming, such as how to write and upload code using the Arduino IDE.



  • The basic techniques of debugging, such as how to troubleshoot and fix errors.



The Elegoo Smart Robot Car Kit V1.0 is suitable for beginners, hobbyists, students, and teachers who want to have fun and learn at the same time. It is also compatible with other Arduino kits and sensors, so you can expand and customize it as you wish.


How to assemble the Elegoo Smart Robot Car Kit V1.0




Assembling the Elegoo Smart Robot Car Kit V1.0 is not difficult, but it does require some patience and attention to detail. Here are the steps you need to follow:


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Step 1: Opening the box and checking the components




The first thing you need to do is to open the box and check if all the components are included and in good condition. You can refer to the component list on the DVD or on the Elegoo website. If anything is missing or damaged, you can contact Elegoo customer service for a replacement.


Step 2: Preparing the motors and installing them on the chassis




The next thing you need to do is to prepare the motors and install them on the chassis. You will need four M3*30 screws, four M3 nuts, four M3*12 screws, four M3*8 screws, four M3*6 screws, four M3*10 copper standoffs, four M3*6 copper standoffs, four tires, four DC motors, and a screwdriver.


First, you need to attach a tire to each motor using an M3*30 screw and an M3 nut. Make sure the tire is aligned with the motor shaft and tightened securely.


Next, you need to install the motors on the chassis using an M3*12 screw for each motor. Make sure the motors are facing the same direction and fixed firmly.


Step 3: Installing the L298N motor driver and connecting the motors




The next thing you need to do is to install the L298N motor driver and connect the motors. You will need four male-to-female jumper wires (red, black, yellow, blue), an L298N motor driver module, two M3*6 screws, two M3*10 copper standoffs, two M2.5*6 screws, two M2.5 nuts, and a screwdriver.


First, you need to attach the L298N motor driver module to the chassis using two M3*6 screws and two M3*10 copper standoffs. Make sure the module is oriented correctly and secured tightly.


Next, you need to connect the motors to the L298N motor driver module using four male-to-female jumper wires. The red wire goes from OUT1 on the module to M1+ on the left front motor. The black wire goes from OUT2 on the module to M1- on the left front motor. The yellow wire goes from OUT3 on the module to M2+ on the right front motor. The blue wire goes from OUT4 on the module to M2- on the right front motor. Make sure the wires are connected correctly and not loose.


Step 4: Installing the UNO R3 board and the sensor shield




The next thing you need to do is to install the UNO R3 board and the sensor shield. You will need an UNO R3 board, a sensor shield, four M2.5*6 screws, four M2.5 nuts, and a screwdriver.


First, you need to attach the sensor shield to the UNO R3 board using four M2.5*6 screws and four M2.5 nuts. Make sure the pins are aligned and inserted properly.


Next, you need to install the UNO R3 board and the sensor shield on the chassis using two M3*6 screws and two M3*10 copper standoffs. Make sure the board is oriented correctly and secured tightly.


Step 5: Installing the ultrasonic sensor and the servo motor




The next thing you need to do is to install the ultrasonic sensor and the servo motor. You will need an ultrasonic sensor, a servo motor, a servo bracket, four M1.6*10 screws, four M1.6 nuts, two M2*8 screws, two M2 nuts, a screwdriver, and a pair of pliers.


First, you need to attach the ultrasonic sensor to the servo bracket using four M1.6*10 screws and four M1.6 nuts. Make sure the sensor is facing forward and tightened securely.


Next, you need to attach the servo motor to the chassis using two M2*8 screws and two M2 nuts. Make sure the motor is facing upward and fixed firmly.


Then, you need to connect the servo bracket with the ultrasonic sensor to the servo motor using a pair of pliers. Make sure the bracket is aligned with the motor shaft and snapped into place.


Step 6: Installing the line tracking module and the IR receiver module




The next thing you need to do is to install the line tracking module and the IR receiver module. You will need a line tracking module, an IR receiver module, four M2*8 screws, four M2 nuts, a screwdriver, and some double-sided tape.


First, you need to attach the line tracking module to the chassis using two M2*8 screws and two M2 nuts. Make sure the module is close to the front edge of the chassis and centered horizontally.


Next, you need to attach the IR receiver module to the chassis using some double-sided tape. Make sure the module is close to the rear edge of the chassis and centered horizontally.


Step 7: Installing the Bluetooth module and the battery holder




The next thing you need to d


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