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  • 【Serial Bus Connection】The servo features a dual-interface serial bus connection, streamlining the wiring process and enhancing the product's neatness and aesthetic appeal.

  • 【85KG High Torque & High Precision Potentiometer】 Utilizing a high-precision potentiometer for 240° angle feedback and up to 85 kg·cm torque, the servo ensures exceptional accuracy and linearity. This enhances the robot's stability and extends the lifespan of the servo.

  • 【Flexible Application】The servo supports ID-based bus communication for easy identification, and provides real-time monitoring with feedback on angle, temperature, and voltage. Additionally, it offers dual-mode functionality, supporting both servo mode and reduction motor mode.

  • 【Dual-Axis Structure】Featuring a dual-axis stabilization design, the main shaft delivers power while the auxiliary shaft provides support. This dual-axis configuration ensures smooth and stable operation of robotic joints.

  • 【Stainless-Steel Gear & CNC Metal Case】High-strength stainless steel gears combined with a precision CNC metal middle case provide excellent durability, effective heat dissipation, and long-term reliability for demanding robotic tasks.

  • Three ports for connection
  • High accuracy performance and strong torque
  • Support temperature, voltage and position feedback
  • Provide 51, Arduino, STM32, Raspberry Pi source code
  • Single shaft serial bus intelligent servo
  • 20kg Strong Torque with metal gear
  • Equipped with position/temperature/voltage feedback
  • User-friendly connector
  • High accuracy performance
  • Three Ports for Connection
  • Support temperature/voltage/position
  • Provide 51, Arduino, STM32, Raspberry Pi source code
  • Clean Wiring -Three Channels on the top, left and right are easy for wiring.
  • Large Torque - Maximum torque is up to 35kg.cm 7.4V. 240 degree rotation. 360 degree rotation when power-off, perfect for robot joint activities
  • Variable ID -The default number is 1 which is modifiable.
  • Support Feedback- position/temperature/voltage feedback for protecting the servo from burning.
  • Details Tutorial - Provide bus servo communication protocol, 51 Arduino and STM32 source code.
  • Dimensions -2.14 x 0.79 x1.79inch (54.38 x 20.14 x 45.5mm); Weight: 64g (2.22oz) only
  • Metal gear for higher accuracy and stronger torque
  • Support temperature, voltage and position feedback
  • Two working modes: servo mode and gear motor mode
  • Provide 51, Arduino, STM32, Raspberry Pi source code
  • Metal gear for higher accuracy and stronger torque
  • Support temperature, voltage and position feedback
  • Two working modes: servo mode and gear motor mode
  • Provide 51, Arduino, STM32, Raspberry Pi source code
  • Torque: 17kg large torque. 17 kg/cm (236 oz/in) @6V; 20 kg/cm (270 oz/in) @7.4V
  • Metal Gear: Adopts all-metal geard inside, strong, durable and long service time
  • Variable ID: The default number is 1 which is modifiable. And it can be controlled by serial port commands, connected to multiple servos at the same time
  • Details Tutorial: Provide bus servo communication protocol, Provide for 51 and STM32 source code
  • Dimensions:45.22mmx24.72mmx36.3mm(1.78inch*0.97inch*1.38inch);Weight:54g (1.90oz) only
$16.99

Hiwonder

  • User-friendly ports
  • High precision and strong torque
  • Support temperature, voltage and position feedback
  • Support two working modes: servo mode and gear motor mode
  • Provide 51, Arduino, STM32, Raspberry Pi source code
  • Easy to install and long service life
  • Use 12 bit high precision non-contact magnetic encoder
  • Absolute angle control accuracy reaches 360 degrees
  • High torque up to 30kg.cm 11.1V
  • Support temperature, voltage and position feedback
Hiwonder IoT Smart House Kit for Electronic DIY Education Support micro:bit Programming Hiwonder IoT Smart House Kit for Electronic DIY Education Support micro:bit Programming
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  • 【Comprehensiveness】 The IoT system encompasses light sensors, raindrop sensors, ultrasonic sensors, and WiFi modules, providing you with the opportunity to understand the fundamental principles of sensors and wireless communication.
  • 【Interactivity】 The IoT system simulates scenarios and integrates with practical use cases to vividly demonstrate its effectiveness.
  • 【Practicality】 This kit provides a hands-on opportunity to comprehend the operational logic of sensors and data processing. Extensive tutorials are available to help you become proficient in IoT and sensor technology.
  • 【Flexibility】 Utilizing micro:bit, the IoT system can be expanded with diverse functions, enhancing your capacity for technological innovation and problem-solving.
  • 【Driven by Al, powered by Jetson】 JetAcker is a high-performance educational robot developed for ROS learning scenarios. Equipped with Jetson Nano/Orin Nano/Orin NX controllers and compatible with both ROS1 and ROS2, it integrates deep learning frameworks with TensorRT acceleration, making it ideal for advanced Al applications such as SLAM and vision recognition.

  • 【SLAM Development and Diverse Configuration】JetAcker is equipped with a powerful combination of a 3D depth camera and Lidar. It utilizes a wide range of advanced algorithms including gmapping, hector, karto, cartographer and RRT, enabling precise multi-point navigation, TEB path planning, and dynamic obstacle avoidance. Using 3D vision, it can capture point cloud images of the environment to achieve RTAB 3D mapping navigation.

  • 【Empowered by Large Al Model, Human-Robot Interaction Redefined】 JetAcker deploys multimodal models with ChatGPT at its core, integrating 3D vision and a 6-microphone array. This synergy enhances its perception, reasoning, and actuation capabilities, enabling advanced embodied AI applications and delivering natural, context-aware human-robot interaction.

  • 【Classical Ackermann Steering Mechanism】 The Ackermann chassis combines maneuverability and steering precision, facilitating the learning and validation of real-world vehicle steering principles. This design enables realistic simulation of autonomous driving scenarios for enhanced educational experiences.

  • 【Comprehensive Learning Tutorials】 Through JetAcker's structured curriculum, master cutting-edge technologies including ROS development, SLAM mapping and navigation, 3D depth vision, OpenCV, YOLOv8, MediaPipe, Large Al model integration, Movelt and Gazebo simulation, and voice interaction.
    Supported by extensive documentation and video tutorials, our progressive learning system breaks down complex concepts into digestible modules, guiding you from fundamentals to advanced implementations-empowering you to build your own intelligent robotic systems.

  • 【AI-Driven and Jetson-Powered】JetArm Pro is a high-performance 3D vision robot arm developed for ROS education scenarios. It is equipped with the Jetson Nano, Orin Nano, or Orin NX as the main controller, and is fully compatible with both ROS1 and ROS2. With Python and deep learning frameworks integrated, JetArm Pro is ideal for developing sophisticated AI projects.

  • 【High-Performance AI Robotics & 3D Vision】 JetArm Pro features six high-torque smart bus servos, a 3D depth camera, a 7-inch touchscreen, and a microphone array—bringing together powerful hardware to support a wide range of AI-powered capabilities, including 3D spatial grasping, target tracking, object sorting, voice control, and embodied AI.

  • 【Enhanced Human-Robot Interaction Powered by AI】JetArm Pro leverages Multimodal Large AI Models to create an interactive system centered around ChatGPT. Paired with its 3D vision capabilities, JetArm Pro boasts outstanding perception, reasoning, and action abilities, enabling more advanced embodied AI applications and delivering a natural, intuitive human-robot interaction experience.

  • 【Versatile Multimodal Expansion】With support for Mecanum wheel and tank chassis, electric sliding rail, and conveyor belt, JetArm Pro easily adapts to creative AI applications like intelligent transport, line following, and automated workflows—making it ideal for building advanced, scalable AI scenarios.

  • 【Advanced Technologies & Comprehensive Tutorials】With JetArm Pro, you will master a broad range of cutting-edge technologies, including ROS development, 3D depth vision, OpenCV, YOLOv8, MediaPipe, AI models, robotic inverse kinematics, MoveIt, Gazebo simulation, and voice interaction. We provide in-depth learning materials and video tutorials to guide you step by step, ensuring you can confidently develop your own AI-powered robotic arm.

  • 【AI-Driven and Jetson-Powered】 JetArm is a high-performance 3D vision robot arm developed for ROS education scenarios. It is equipped with the Jetson Nano, Orin Nano, or Orin NX as the main controller, and is fully compatible with both ROS1 and ROS2. With Python and deep learning frameworks integrated, JetArm is ideal for developing sophisticated AI projects.

  • 【High-Performance AI Robotics】JetArm features six intelligent serial bus servos with a torque of 35KG. The robot is equipped with a 3D depth camera, a built-in 6-microphone array, and Multimodal Large AI Models, enabling a wide variety of applications, such as 3D spatial grabbing, target tracking, object sorting, scene understanding, and voice control.

  • 【Depth Point Cloud, 3D Scene Flexible Grabbing】 JetArm is equipped with a high-performance 3D depth camera. Based on the RGB data, position coordinates and depth information of the target, combined with RGB+D fusion detection, it can realize free grabbing in 3D scene and other AI projects.

  • 【Enhanced Human-Robot Interaction Powered by AI】 JetArm leverages Multimodal Large AI Models to create an interactive system centered around ChatGPT. Paired with its 3D vision capabilities, JetArm boasts outstanding perception, reasoning, and action abilities, enabling more advanced embodied AI applications and delivering a natural, intuitive human-robot interaction experience.

  • 【Advanced Technologies & Comprehensive Tutorials】 With JetArm, you will master a broad range of cutting-edge technologies, including ROS development, 3D depth vision, OpenCV, YOLOv8, MediaPipe, AI models, robotic inverse kinematics, MoveIt, Gazebo simulation, and voice interaction. We provide in-depth learning materials and video tutorials to guide you step by step, ensuring you can confidently develop your own AI-powered robotic arm.

  • 【Driven by Al, powered by Jetson】 JetAuto is a high-performance educational robot developed for ROS learning scenarios. Equipped with Jetson Nano/Orin Nano/Orin NX controllers and compatible with both ROS1 and ROS2, it integrates deep learning frameworks with TensorRT acceleration, making it ideal for advanced Al applications such as SLAM and vision recognition.

  • 【SLAM Development and Diverse Configuration】JetAuto is equipped with a powerful combination of a 3D depth camera and Lidar. It utilizes a wide range of advanced algorithms including gmapping, hector, karto, cartographer and RRT, enabling precise multi-point navigation, TEB path planning, and dynamic obstacle avoidance. Using 3D vision, it can capture point cloud images of the environment to achieve RTAB 3D mapping navigation.

  • 【Empowered by Large Al Model, Human-Robot Interaction Redefined】 JetAuto deploys multimodal models with ChatGPT at its core, integrating 3D vision and a 6-microphone array. This synergy enhances its perception, reasoning, and actuation capabilities, enabling advanced embodied AI applications and delivering natural, context-aware human-robot interaction.

  • 【Robot Control Across Platforms】 JetAuto provides multiple control methods, like WonderAi app (compatible with iOS and Android system), wireless handle and keyboard, allowing you to control the robot at will. By importing corresponding codes, you can command JetAuto to perform specific actions.

  • 【Comprehensive Learning Tutorials】 Through JetAuto's structured curriculum, master cutting-edge technologies including ROS development, SLAM mapping and navigation, 3D depth vision, OpenCV, YOLOv8, MediaPipe, Large Al model integration, Movelt and Gazebo simulation, and voice interaction.
    Supported by extensive documentation and video tutorials, our progressive learning system breaks down complex concepts into digestible modules, guiding you from fundamentals to advanced implementations-empowering you to build your own intelligent robotic systems.

  • 【Powered by NVIDIA Jetson Nano】JetHexa is a hexapod robot powered by NVIDIA Jetson Nano B01 and supports Robot Operating System (ROS). It leverages mainstream deep learning frameworks, incorporates MediaPipe development, enables YOLO model training, and utilizes TensorRT acceleration.
  • 【SLAM Development and AI Application】Equipped with a 3D depth camera and Lidar, it achieves precise 2D mapping, multi-point navigation, TEB path planning, Lidar tracking, and dynamic obstacle avoidance. Using 3D vision, it can capture point cloud images of the environment to achieve RTAB 3D mapping navigation.
  • 【Inverse Kinematics Algorithm】JetHexa can switch between tripod gait and ripple gait flexibly. It employs an inverse kinematics algorithm, allowing it to perform "moonwalking" with fixed speed and height. Furthermore, JetHexa allows for adjustable pitch angle, roll angle, direction, speed, height, and stride, giving you complete control over its movements. With self-balancing function, JetHexa can conquer complex terrains with ease.
  • 【Robot Control Across Platforms】JetHexa provides multiple control methods, like WonderAi app (compatible with iOS and Android system), wireless handle, Robot Operating System (ROS) and keyboard, allowing you to control the robot at will. By importing corresponding codes, you can command JetHexa to perform specific actions.
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