Lite_Arm_robot's profile picture.

Lite_Arm

@Lite_Arm_robot

Let's Try to Make The Robotic Arm Follow A Simple Sinusoidal Trajectory.Let's See What Happens


In This Video,I Will Show You How Stable Our LiteArm_1 Is,So Take a Look of Our Horizontal Straightening Test!


In this video, I will demonstrate a simple grasping process. Through this demo, you will see how basic robotic controls can enable a robot to grasp objects. This process is perfect for beginners in robotics and helps you understand the fundamental concepts of motion control.


Assembling a robotic arm is akin to constructing with Lego blocks.


Overview of six degrees of freedom robotic arm components Modular design, assemble the robotic arm like building with Legos!

Lite_Arm_robot's tweet image. Overview of six degrees of freedom robotic arm components
Modular design, assemble the robotic arm like building with Legos!
Lite_Arm_robot's tweet image. Overview of six degrees of freedom robotic arm components
Modular design, assemble the robotic arm like building with Legos!
Lite_Arm_robot's tweet image. Overview of six degrees of freedom robotic arm components
Modular design, assemble the robotic arm like building with Legos!
Lite_Arm_robot's tweet image. Overview of six degrees of freedom robotic arm components
Modular design, assemble the robotic arm like building with Legos!

The six-axis fully open-source robotic arm solution has a maximum joint torque of 36Nm and can support an end load of up to 3kg. It supports development in Python/C++, and algorithms will be gradually open-sourced. You can create your own robotic arm for less than 10,000 RMB!

Lite_Arm_robot's tweet image. The six-axis fully open-source robotic arm solution has a maximum joint torque of 36Nm and can support an end load of up to 3kg. It supports development in Python/C++, and algorithms will be gradually open-sourced. You can create your own robotic arm for less than 10,000 RMB!
Lite_Arm_robot's tweet image. The six-axis fully open-source robotic arm solution has a maximum joint torque of 36Nm and can support an end load of up to 3kg. It supports development in Python/C++, and algorithms will be gradually open-sourced. You can create your own robotic arm for less than 10,000 RMB!

United States 趨勢

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