arm×テガラ - List of Manufacturers, Suppliers, Companies and Products

arm Product List

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Industrial robot arm 'xArm' with a maximum of 7 degrees of freedom.

This is an industrial robotic arm developed to improve the productivity and quality of products.

The xArm, with a motion range of 700mm and a reproducibility accuracy of 0.1mm, offers high cost-effectiveness and is expected to perform well not only in factory operations but also in robotics research, prototyping in manufacturing, photography, and videography, among other multi-purpose applications. With the dedicated application xArm Studio, it can be easily operated without the need for coding, and an xArm SDK compatible with Python, ROS, and C++ is also provided. Three models of the xArm are available, differentiated by effective load and degrees of freedom.

  • Picking robots (shelf transport robots, arm picking robots)

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Open-source robot arm "Ned Series" with 6-axis control

A collaborative robot with high precision and reproducibility suitable for education and research, featuring robustness and smoothness due to its aluminum structure.

A collaborative robot (Cobot) with 6-axis control based on open-source technology, designed for education, research, and Industry 4.0. It is built on Raspberry, Arduino, and ROS (Robot Operating System), achieving high precision and reproducibility (0.5mm) and smooth movements through an aluminum structure, allowing it to replicate complex movements required in industrial settings. Using ROS, a variety of programs can be devised, ranging from simple to complex. It is suitable for prototyping robot utilization on production lines (Industry 4.0). By changing the end effector parts, it can handle various objects.

  • Picking robots (shelf transport robots, arm picking robots)

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DROID - Multi-fingered robotic arm

Collaborative robot system equipped with AI teaching-compatible five-finger hand "HandEffector".

DROID is a collaborative robot system based on a human model, consisting of a robotic arm and a five-fingered end effector called "HandEffector." The HandEffector is equipped with an RGB camera, depth sensor, AI accelerator, and force sensors, supporting AI-based intuitive teaching. With a wearable force feedback controller, it allows users to teach gripping actions and force adjustments simply by demonstrating tasks, even without programming knowledge. Additionally, it features AI-assisted force control and object recognition capabilities, enabling automatic adaptation of gripping actions to new objects, building an object database, and improving work efficiency. The integrated camera system and onboard AI processing allow for flexible responses to changes in the work area and objects.

  • Material handling systems and equipment

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