The Dobot Atom is a humanoid robot designed for advanced dexterity and precise manipulation. It features 28 degrees of freedom (DOF) and achieves ±0.05mm precision, allowing it to handle delicate tasks with a high level of accuracy. This makes it particularly useful in environments where fine motor skills are essential, such as lab automation, small-part assembly, and human-robot collaboration scenarios.

One of its standout capabilities is its straight-knee walking mechanism, which reduces energy consumption by 42%compared to traditional bipedal walking systems. This optimized movement system enables the robot to traverse different terrains smoothly while maintaining balance and efficiency. Such a feature enhances its usability in dynamic environments, including logistics, research, and personal assistance applications.

The Dobot Atom is powered by edge computing and the Robot Operator Model - 1 (ROM-1), delivering 7.7 times the industry-standard computing power. This allows the robot to autonomously adapt to unstructured environments, making it more versatile in real-world applications. Whether in industrial automation, service robotics, or AI-driven research, the Dobot Atom represents a step forward in humanoid robotics by combining adaptability, precision, and intelligent operation.