Boston Dynamics Humanoid Robot Atlas

Description
Atlas, Boston Dynamics' most dynamic humanoid robot, is designed with a focus on advanced mobility and dexterity. This robot is fully electric and utilizes an intricate hydraulic system, making it capable of complex, agile movements. Atlas is equipped with 28 joints and advanced control algorithms that enable it to execute tasks with high precision and adapt to its environment. The robot’s design allows it to perform physically demanding tasks like running, jumping, and even executing backflips, demonstrating significant advancements in humanoid robotics. Atlas is notable for its construction materials and structural design, which emphasize a high strength-to-weight ratio. The robot incorporates titanium and aluminum, extensively using 3D printing technology to optimize its frame for robustness while maintaining a relatively low weight of 89 kg. This engineering approach grants Atlas the ability to perform dynamic movements and actions, such as somersaults and balancing tasks, which require both strength and lightweight components to maintain high levels of performance and efficiency. The potential applications of Atlas extend beyond demonstrations of agility and power. Boston Dynamics leverages Atlas to explore the practical uses of humanoid robots in real-world scenarios that require a blend of human-like mobility and robotic precision. While Atlas is primarily a platform for research and development, its capabilities hint at future roles in scenarios like disaster response, where navigating hazardous or complex terrains is necessary, or in jobs that require high levels of mobility and manipulation skills. Atlas represents a significant step toward the integration of humanoid robots into everyday tasks and environments.
Description
Atlas, Boston Dynamics' most dynamic humanoid robot, is designed with a focus on advanced mobility and dexterity. This robot is fully electric and utilizes an intricate hydraulic system, making it capable of complex, agile movements. Atlas is equipped with 28 joints and advanced control algorithms that enable it to execute tasks with high precision and adapt to its environment. The robot’s design allows it to perform physically demanding tasks like running, jumping, and even executing backflips, demonstrating significant advancements in humanoid robotics. Atlas is notable for its construction materials and structural design, which emphasize a high strength-to-weight ratio. The robot incorporates titanium and aluminum, extensively using 3D printing technology to optimize its frame for robustness while maintaining a relatively low weight of 89 kg. This engineering approach grants Atlas the ability to perform dynamic movements and actions, such as somersaults and balancing tasks, which require both strength and lightweight components to maintain high levels of performance and efficiency. The potential applications of Atlas extend beyond demonstrations of agility and power. Boston Dynamics leverages Atlas to explore the practical uses of humanoid robots in real-world scenarios that require a blend of human-like mobility and robotic precision. While Atlas is primarily a platform for research and development, its capabilities hint at future roles in scenarios like disaster response, where navigating hazardous or complex terrains is necessary, or in jobs that require high levels of mobility and manipulation skills. Atlas represents a significant step toward the integration of humanoid robots into everyday tasks and environments.

Suppliers

Company
Product
Description
Supplier Links
Humanoid Robot - Atlas - Boston Dynamics
Waltham, MA, United States
Humanoid Robot
Atlas
Humanoid Robot Atlas
Atlas, Boston Dynamics' most dynamic humanoid robot, is designed with a focus on advanced mobility and dexterity. This robot is fully electric and utilizes an intricate hydraulic system, making it capable of complex, agile movements. Atlas is equipped with 28 joints and advanced control algorithms that enable it to execute tasks with high precision and adapt to its environment. The robot’s design allows it to perform physically demanding tasks like running, jumping, and even executing backflips, demonstrating significant advancements in humanoid robotics. Atlas is notable for its construction materials and structural design, which emphasize a high strength-to-weight ratio. The robot incorporates titanium and aluminum, extensively using 3D printing technology to optimize its frame for robustness while maintaining a relatively low weight of 89 kg. This engineering approach grants Atlas the ability to perform dynamic movements and actions, such as somersaults and balancing tasks, which require both strength and lightweight components to maintain high levels of performance and efficiency. The potential applications of Atlas extend beyond demonstrations of agility and power. Boston Dynamics leverages Atlas to explore the practical uses of humanoid robots in real-world scenarios that require a blend of human-like mobility and robotic precision. While Atlas is primarily a platform for research and development, its capabilities hint at future roles in scenarios like disaster response, where navigating hazardous or complex terrains is necessary, or in jobs that require high levels of mobility and manipulation skills. Atlas represents a significant step toward the integration of humanoid robots into everyday tasks and environments.

Atlas, Boston Dynamics' most dynamic humanoid robot, is designed with a focus on advanced mobility and dexterity. This robot is fully electric and utilizes an intricate hydraulic system, making it capable of complex, agile movements. Atlas is equipped with 28 joints and advanced control algorithms that enable it to execute tasks with high precision and adapt to its environment. The robot’s design allows it to perform physically demanding tasks like running, jumping, and even executing backflips, demonstrating significant advancements in humanoid robotics.
Atlas is notable for its construction materials and structural design, which emphasize a high strength-to-weight ratio. The robot incorporates titanium and aluminum, extensively using 3D printing technology to optimize its frame for robustness while maintaining a relatively low weight of 89 kg. This engineering approach grants Atlas the ability to perform dynamic movements and actions, such as somersaults and balancing tasks, which require both strength and lightweight components to maintain high levels of performance and efficiency.
The potential applications of Atlas extend beyond demonstrations of agility and power. Boston Dynamics leverages Atlas to explore the practical uses of humanoid robots in real-world scenarios that require a blend of human-like mobility and robotic precision. While Atlas is primarily a platform for research and development, its capabilities hint at future roles in scenarios like disaster response, where navigating hazardous or complex terrains is necessary, or in jobs that require high levels of mobility and manipulation skills. Atlas represents a significant step toward the integration of humanoid robots into everyday tasks and environments.

Supplier's Site

Technical Specifications

  Boston Dynamics
Product Category Robots
Product Number Atlas
Product Name Humanoid Robot
Robot Type Service Robot
Unlock Full Specs
to access all available technical data

Similar Products

High Load Hexapod, 450 kg Centered Load Capacity, M6 - HXP1000-MECA - Newport MKS
Specs
Robot Type Parallel Robot (Delta/Hexapod)
Drive System Electric
# of Axes 6 #
View Details
X/Y/Z Heavy Duty Cartesian Gantry System - MCS-UC2 - Isotech, Inc.
Specs
Robot Type Gantry
# of Axes 3 #
X-axis Travel 1000 to 5250 mm (39.37 to 207 inch)
View Details
6-Axis Motion Hexapod Mini Robot - H-811.S2 - PI (Physik Instrumente) L.P.
Specs
Robot Type Parallel Robot (Delta/Hexapod)
Drive System Electric
Industry / Application Research and Industry, Test Systems
View Details
Automated Robotic Melt Shop - ARMS® - Inductotherm Group
Specs
Robot Type (Robot System)
Industry / Application Foundry, Melt Shop
Load Capacity 30 to 500 kg (66.15 to 1102 lbs)
View Details