Product Details
- Overview
- Product Description
- Specification
- Company Profile
- Certifications
- Our Exhibition
- FAQ
Basic Info.
Model NO.
161002
Package
Gift Box
Application
Weeecode
Transport Package
Giift Boxes
Specification
26*19*11cm
Trademark
weeemake
Origin
Guangdong, China
HS Code
90230090
Production Capacity
10000pieces/Years
Packaging & Delivery
Package Size
26.00cm * 19.00cm * 11.00cm
Package Gross Weight
2.000kg
Lead Time
7 days (1 - 20 sets)
To be negotiated ( > 20 sets)
To be negotiated ( > 20 sets)
Product Description


About Us
Weeemake has cooperated with more than 10,000 schools in more than 60 countries around the world, and holds dozens of competitions around the world every year, making outstanding contributions to global STEM education. We integrate R&D, production and sales, providing professional teaching, training resources, and competition solutions.
Product Description

WeeeBot 3-in-1 STEM robot kit
WeeeBot is a 3-in-1 STEM robot kit that consists of powerful mainboard ELF, anodized aluminum mechanics, and smart modular electronics system. 3 forms to assemble: WeeeBot Coding Car, Smart Lamp, Distance measuring robot.
WeeeBot is an entry-level STEAM education robot kit, developed in robot construction platform WeeeMake.
• To embrace the STEAM trend in world-wide education system, we developed WeeeBot to help students get hands-on coding and robotic experience.
• Focusing on teaching, learning, having fun experience for Math, Technology, Computer Science courses.
• Support WeeeBot (Scratch 3.0) and Arduino IDE coding. Support APP control in both IOS and Android platform.
• To embrace the STEAM trend in world-wide education system, we developed WeeeBot to help students get hands-on coding and robotic experience.
• Focusing on teaching, learning, having fun experience for Math, Technology, Computer Science courses.
• Support WeeeBot (Scratch 3.0) and Arduino IDE coding. Support APP control in both IOS and Android platform.



Three-wheel Robot Car
Distance Measure Robot
Smart Lamp
Enhanced Hands-on Ability
With heavy-duty mechanical parts, easy-to-use electronic modules like ELF mainboard, RGB ultrasonic sensor, Line-following sensor, light sensor, sound sensor, buzzer, RGB LED, IR receiver, Bluetooth module, you can get an enhanced hands-on experience on robot car that is programmable in wireless way.

Easy but Powerful WeeeCode, Support Scratch & Arduino Programming
WeeeBot Jeep is fully compatible with WeeeCode which is a graphical programming environment based on Scratch 3.0 Open-Source Code. It makes programming projects and interactive applications easier through simply dragging and dropping function blocks. Learning programming is way more fun when your code controls a robot. Based around an Arduino board, this kit will teach you all about programming a micro-controller board to control physical objects using sensors.
Control and Code by One Touch
WeeeMake APP is a control and program application designed for Weeemake robot. It provides six modes to play with your robot such as manual control, line-following, obstacle avoidance, music, voice control, and coding.
WeeeMake APP is a control and program application designed for Weeemake robot. It provides six modes to play with your robot such as manual control, line-following, obstacle avoidance, music, voice control, and coding.
Easy Wiring
Modules in this kit all equipped with RJ11 ports for easy wiring. Just by connecting the modules together, robots can be built in a quick way. All the wiring is simple and very clean.
Modules in this kit all equipped with RJ11 ports for easy wiring. Just by connecting the modules together, robots can be built in a quick way. All the wiring is simple and very clean.

ELF Mainboard
WEEEMAKE ELF mainboard is designed on the basis of modular design style whose microchip is replaceable. This high-performance mainboard is designed for education.
1. Replaceable microchip: Support ATMEGA-328P, ESP32 chip, etc
2. Same port for motor driver and sensor pin port, easy to use.
3. Random wiring, work with WeeeCode and Arduino.
2. Same port for motor driver and sensor pin port, easy to use.
3. Random wiring, work with WeeeCode and Arduino.
Specification
Operation Voltage: | 6-12V |
Wiring Port: | 1x MCU port (ATmega 328p or ESP32) |
4x RJ11 port | |
2 x DC motor port | |
6 x pin conversion port (4 of which can be stepper/encoder/dc motor port) | |
1 x Wireless Communication port (Bluetooth 2.4G) | |
1x USB port (type B) | |
Onboard Electronics: | 1x Buzzer |
1x Button | |
1x RGB LED | |
Softare: | WeeeCode (Scratch 3.0) |
Arduino IDE |







Company Profile

Certifications


Our Exhibition

FAQ
Q:When l turn on the robot, my robot has no response, why?
A:
1. Low voltage, please recharge all your batteries or replace withnew batteries.
2. Batteries installed in wrong polarity (+/-)
3. 3.incorrect wring on battery holder or motor.
Q:When l controlled the robot to move forward, it moved backwards.
How can l fix this?
A:The wiring of the motor is connected reversed. Please reconnect.
Q:How to program my robot or restore the factory setting of my robot?
A:
Please download WeeeCode software on our website, connectrobot to PC via USB cable, select serial port "COM x" and main-board type in software to start coding your robot.
"Restore Firmware" menu offers different options: "Online Firm-ware" support you make live testing of your program, robot willresponseimmediately; "Factory Firmware" will resume the factoryprogram and settings for your robot; "Mobile Firmware" supportsrobot control and program on WeeeMake APP
Q:l cannot connect robot to computer via USB cable nor wirelessway, how can l fix it?
A:Your computer hasn't installed the driver of the mainboard.Please install driver in WeeeCode software "Help" menu, restartthe robot, and connect to computer again.
Q:Why cannot the robot move with USB power supply?
A:USB power supply can only support chip and sensors in main-board.To drive motors or servos, please connect batteries andswitch on the power button.
Q:Why doesn't the Line-following Sensor work?
A:Please:
1. Make sure the distance between Line-following sensor andline-following map is between 1-2cm, this is the best workingrange.
2. Do not use Line-following mode under strong light. Strong lightwill interfere the function of Line-following Sensor.
3. Make sure to use unrefiecting material to make your ownline-following map.
Q:Why cannot the software read the value ofsensor?
A:Please check your wiring, make sure sensors are connected tothe same port with your program in the WeeeCode software.
Q:Can l get a customization robot for my project? OEM or ODM?
A:We offer customization services to our customer. Please contactus for more detail ingquiry
A:
1. Low voltage, please recharge all your batteries or replace withnew batteries.
2. Batteries installed in wrong polarity (+/-)
3. 3.incorrect wring on battery holder or motor.
Q:When l controlled the robot to move forward, it moved backwards.
How can l fix this?
A:The wiring of the motor is connected reversed. Please reconnect.
Q:How to program my robot or restore the factory setting of my robot?
A:
Please download WeeeCode software on our website, connectrobot to PC via USB cable, select serial port "COM x" and main-board type in software to start coding your robot.
"Restore Firmware" menu offers different options: "Online Firm-ware" support you make live testing of your program, robot willresponseimmediately; "Factory Firmware" will resume the factoryprogram and settings for your robot; "Mobile Firmware" supportsrobot control and program on WeeeMake APP
Q:l cannot connect robot to computer via USB cable nor wirelessway, how can l fix it?
A:Your computer hasn't installed the driver of the mainboard.Please install driver in WeeeCode software "Help" menu, restartthe robot, and connect to computer again.
Q:Why cannot the robot move with USB power supply?
A:USB power supply can only support chip and sensors in main-board.To drive motors or servos, please connect batteries andswitch on the power button.
Q:Why doesn't the Line-following Sensor work?
A:Please:
1. Make sure the distance between Line-following sensor andline-following map is between 1-2cm, this is the best workingrange.
2. Do not use Line-following mode under strong light. Strong lightwill interfere the function of Line-following Sensor.
3. Make sure to use unrefiecting material to make your ownline-following map.
Q:Why cannot the software read the value ofsensor?
A:Please check your wiring, make sure sensors are connected tothe same port with your program in the WeeeCode software.
Q:Can l get a customization robot for my project? OEM or ODM?
A:We offer customization services to our customer. Please contactus for more detail ingquiry

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