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Danh mục

    JetRacer Pro ROS AI Robot dành cho NVIDIA Jetson Nano

    6,998,000VNDLiên hệ

    Sản phẩm nhập khẩu chính hãng từ Waveshare

    Hỗ trợ kỹ thuật trong quá trình sử dụng

    Xuất hóa đơn cho cá nhân, đơn vị có nhu cầu

    Sản phẩm được bảo hành 06 tháng


    Thông tin sản phẩm

    JetRacer Professional Version ROS AI Kit, Dual Controllers AI Robot, Lidar Mapping, Vision Processing

    JetRacer ROS AI Robot

    JetRacer AI Kit Professional Version

    It meets the needs of scientific research algorithm verification in various fields such as Lidar mapping, autonomous navigation, autonomous driving, intelligent speech, target detection, face recognition, etc. It is not only compatible with software of the N-VIDIA JetRacer open-source project, but also is overall upgraded in hardware with better performance.


      JetRacer Kit JetRacer ROS Kit
    Appearance
    Microcontroller N/A Raspberry Pi RP2040 Chip
    Motor 37-520 DC Gear Motor
    Reduction rate 1:10
    Idle speed 740RPM
    37-520 Metal Encoder Motor
    Reduction Rate 1:30
    Idle Speed 333RPM
    Motor Encoder N/A 11 wire AB phase hall speed sensor, supports wheel odometry
    IMU Sensor N/A ICM20948/MPU9250
    Lidar N/A RPLIDAR A1
    Audio Interface N/A One Speaker, Dual Microphones, Support Intelligent speech
    Mapping Navigation Not Support Support
     

    Intelligent Dual-controller Design

    The host controller adopts Jetson Nano Dev Kit, provides two version options: NVIDIA Jetson Nano Developer Kit (B01) and Waveshare Jetson Nano Dev Kit. Both kits have almost the same performance and appearance, except that the Waveshare Jetson Nano Dev Kit adopts a 16GB eMMC version of the Jetson Nano Module. The Jetson Nano Dev Kit is equipped with 4GB memory and has better performance, responsible for Artificial Intelligence (AI), speech processing, visual processing, mapping and navigation, etc.

    The sub-controller uses the Raspberry Pi RP2040 dual-core microcontroller, which has better real-time performance and higher control accuracy, and is responsible for attitude data collection and motion control.

    Adopting USB communication, Faster Transmission Speed than the UART

     

    Developed Based on ROS

    ROS (Robot Operation System) is an open-source operating system that includes a collection of software libraries and tools for robot design. It provides the services expected of an operating system, including hardware abstraction, bottom layer device control, implementation of common functions, message transfering between processes, and package management. ROS simplifies robot design and is the mainstream robot software framework in the world.

    Support I2C Slave Mode Control

    Completely Compatible with Original JetRacer Demo

    Jetracer ROS AI Kit is an autonomous Al racing car powered by N-VIDIA Jetson Nano. By interactive programming via web browser, it allows high frame rate processing due to torch2trt (PyTorch to TensorRT translator) optimizing, so that faster autonomous line following driving can be easily achieved.

    High School AI Education, Race-Specified Intelligent Car

    DonKeyCar Open Source Project

    Deep Learning  Self Driving Car

    DonKeyCar utilizes deep learning neural network framework Keras/TensorFlow, together with computer vision library OpenCV, to achieve self driving.

     

    SLAM Lidar Mapping

    Mapping with odometer, IMU, lidar, EKF, etc.
    Supports Gmapping, Hector, Karto, and Cartographer mapping algorithms

    Path Planning, Autonomous Navigation,
    Dynamic Obstacle Avoidance

    Adaptive Monte Carlo Localization (AMCL) | Move_base Autonomous Navigation

    Supports single-point navigation, multi-point patrol navigation, and mapping while navigating

    Single-point Navigation
    After publishing the navigation target position, the robot will automatically plan the path to navigate to the target position.


    Multipoint Patrol Navigation
    Add navigation dots, the robot will cruise and navigate between the navigation dots.

    Mapping while navigating
    After publishing the navigation target position, the robot will automatically explore the path to the target point, and publish it while scanning the map.

    OpenCV Vision Processing

    Integrates OpenCV vision library, with extensive algorithm demos

    AR Vision                                                                          Face Detection

    Object Tracking                                                                           Color Recognition

    Motion Detection                                                                           Vision Line Tracking

    Contour Detection                                                                            Image Calibration

    Intelligent speech Processing, Human-robot speech Interaction

    Supports remote Speech intercom, Speech synthesis, Speech detection, Speech recognition, human-computer Speech interaction

    Real-time remote speech transmission, allowing robots to deliver conversations

    Real-time speech transmission between the computer and the robot, enables two-way remote communication

    Speech synthesis playback, let the robot speak

    Convert text to natural, smooth vocals and play
    Send a text topic to the robot, and you can hear it talking

    Speech detection, let the robot know I'm speaking

    Detects the sound of the audio stream and removes the mute part
    Only take the part that the person speaks

    Speech recognition, let the robot understand what I say

    Recognize audio as text

    Block diagram

    High-power Encoder DC Gear Motor

    High-quality carbon brushes, all-metal gear structure, high precision, low running noise, 11-wire AB-phase Hall speed encoder, support PID closed-loop speed control to calculate wheel odometer information

    IMU Sensor

    Built-in high-precision 9-axis motion attitude sensor, using extended Kalman filter to merge wheel odometer and IMU data, can produce higher-precision robot attitude

     

    Adopts Ackerman-like Steering Structure

    JetRacer ROS AI kit adopts an Ackerman-like steering structure with front wheels servo steering combined with rear wheels differential steering. Provides detailed kinematics model analysis, uses polynomial fitting to output steering angle, makes the steering angle more accurate.

    360 Degree Laser Ranging Lidar

    360-degree scanning and ranging of the surrounding environment to obtain a contour map around the robot

    8MP 160 FOV Camera

    IMX219 Sensor, 3280 × 2464Resolution
    Suitable for OpenCV vision development, object recognition, target tracking, automatic driving and other AI functions

    Using USB Audio Chip

    Onboard two high-quality MEMS silicon microphones and speaker for stereo recording and playback. So the robot also has "ears" and "mouths" that can "listen" and "talk". Easily realize intelligent speech interaction

    Safe & Stable Circuit Design

    Onboard battery protection circuit for preventing overcharge, over-discharge, overcurrent, short circuit proof, with reverse proof, and equalizing charge. Makes your operation more stable and safer. Built-in battery detection circuit, onboard OLED to real-time display the battery voltage, current, and remaining battery capacity.

    Product Structure

    Highly integrated expansion board

     

    SAFETY CAUTIONS

    - Li-ion and Li-po batteries are quite unstable. They may cause fire, personal injury, or property damage, if they're not properly recharged or used.

    - Do not reversely connect the polarities when recharging or discharging the battery. Do not use inferior charger/charging panel to recharge the battery.

    - Do not mix use old batteries with new ones, avoid using batteries of different brands.

    - When buying Lithium battery, should always make sure the battery specification is compatible with the expansion board. Choose batteries from formal manufacturer, and ensure the batteries will work stably and safely by aging test.

    - Lithium batteries have limited cycle life, they will also deteriorate as time goes by. Should be replaced with new ones when the batteries reaching their max cycle life, or working over two years, whichever comes first.

    - Should be placed carefully and properly, keep it away from inflammables and explosives articles, away from children, avoid any safety accident caused by careless storage.

    Packaging show

    Dimensions

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