Expedition A2 Humanoid Robot with AI – A Revolution in Science and Research
Expedition A2 Humanoid Robot with AI – A Revolution in Science and Research
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ROI Kalkulačka
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SKU: 1601379003005
Description
- ✔ Cutting-edge humanoid design with anthropomorphic configuration
- ✔ Advanced interaction options for intuitive operation
- ✔ Ability to dynamically plan and execute complex tasks
- ✔ Two-handed collaborative work in challenging scenarios
- ✔ Autonomous mobility and reliable walking in diverse environments
- ✔ Highly dexterous arm with 19 degrees of freedom and a load capacity of over 5 kg
- ✔ Fusion of tactile (MEMS) and visual sensors for unparalleled precision
- ✔ Integrated battery with up to 2 hours of battery life for uninterrupted operation
Introducing Expedition A2, an impressive humanoid robot that redefines the possibilities of scientific research, development, and advanced automation. At 1.7 meters tall and weighing 70 kilograms, Expedition A2 is designed for dynamic tasks and collaborative work in the most demanding environments. Its innovative design and artificial intelligence open the door to new discoveries and efficiencies.
🤖 Discover the revolutionary capabilities of Expedition A2
- Anthropomorphic Configuration: Design inspired by human anatomy for more natural interaction and movement.
- Dynamic Task Planning: The ability to adapt to a changing environment and effectively solve complex challenges.
- Ambidextrous Collaborative Work: Seamless interplay of both arms for simultaneous or coordinated operations.
- Multi-mode Interaction: Intuitive controls and feedback for easy integration into human workflows.
- Autonomous Mobility: Confident walking and movement in a variety of environments with the support of multiple support points for stability.
- Highly Agile Hands: Each hand has 19 degrees of freedom, 12 of which are actively controlled, with a load capacity of over 5 kg.
- Multi-sensory Fusion: Combination of MEMS tactile and visual sensors for detailed perception and interaction with objects.
🔬 A deeper look at the technology
The Expedition A2 is the result of precision engineering. Its mechanical structure includes multi-degree-of-freedom joints that give it extraordinary flexibility. The arms boast 3 DoF at the shoulder, 1 DoF at the elbow, and 3 DoF at the wrist, while the dexterous hand offers an impressive 19 degrees of freedom, allowing for an unprecedented level of manipulation. The legs feature 3 DoF at the hip, 1 DoF at the knee, and 3 DoF at the ankle, complemented by 2 DoF at the waist for overall stability and range of motion.
Expedition A2's interactive capabilities are built on an anthropomorphic configuration and human-centered design. This ensures multi-functional interaction and an intelligent user experience that facilitates smooth explanation and stable movement in interactive service scenarios. Thanks to its construction, the robot is designed for comfortable operation and minimal maintenance.
❓ Are you facing complex challenges in research and automation?
Modern science and industry require increasingly advanced tools that can solve complex tasks, collaborate with people, and adapt to dynamic environments. Traditional robotics often encounter limitations in handling delicate objects, smooth interaction, and autonomous movement in unstructured spaces. You need a robot that is not only strong, but also agile, intelligent, and reliable.
💡 Enter the era of advanced robotics with Expedition A2!
Expedition A2 is the answer to these challenges. This humanoid robot with artificial intelligence is built to overcome barriers. Its advanced manipulator capabilities, dynamic task planning, and unmatched mobility allow you to conduct experiments, test hypotheses, and automate processes with previously unattainable efficiency and precision. Reclaim your time and focus on innovation while Expedition A2 takes care of the execution.
✅ More than just features: Real benefits
- Dynamic task scheduling: Easily adapts to changing environments -> Maximized flexibility: Save time and resources with a robot that can handle unpredictable scenarios.
- Two-handed collaborative work: Effective collaboration on complex tasks -> Increased productivity: Perform complex manipulations faster and safer, without the need for constant human intervention.
- Dexterous hands with 19 degrees of freedom: Precise object handling and high load capacity -> Unrivaled precision and strength: Opens up new possibilities for handling heavy or fragile objects in delicate operations.
- Multi-sensory fusion (MEMS and visual): Improved interaction with objects and surroundings -> Intuitive and reliable interaction: The robot better "feels" and "sees" its surroundings for flawless and safe operations.
- Autonomous mobility and stable walking: Independent movement in different environments -> Independence and reliability: The robot moves independently and safely, reducing the need for human supervision and expanding the field of operation.
🎯 For whom is Expedition A2 the ideal choice?
- Research and Development Labs: For advanced experiments in robotics, human-robot interaction, and artificial intelligence.
- Educational institutions and universities: As a cutting-edge tool for teaching advanced robotics, engineering, and AI to students.
- Companies experimenting with advanced robotics: For developing and testing new automated solutions and systems.
🤔 Do you have questions? We'll answer them!
- Concern: Is it difficult to control such a complex robot? -> Answer: Expedition A2 was designed with an anthropomorphic configuration and human factors in mind, resulting in intuitive operation and minimal maintenance.
- Concern: How long will the robot last on battery power? -> Answer: With a built-in 700Wh battery, the Expedition A2 robot can operate for approximately 2 hours, which is sufficient for many research and operational tasks.
- Concern: Can the robot manipulate delicate and fragile objects? -> Answer: Thanks to the 19 degrees of freedom of the dexterous hand and the fusion of tactile and visual sensors, the Expedition A2 can precisely manipulate a wide range of objects with high sensitivity.
⚙️ Technical specifications
| Parameter | Value |
|---|---|
| Height | 1.7 meters |
| Weight | 70 kilograms |
| Battery | 700Wh, battery life approx. 2 hours |
| Number of degrees of freedom (DoF) - Arm | 3 DoF |
| Degrees of Freedom (DoF) - Elbow | 1 DoF |
| Degrees of Freedom (DoF) - Wrist | 3 DoF |
| Degrees of Freedom (DoF) - Agile Hand | 19 DoF (of which 12 are actively controlled) |
| Degrees of Freedom (DoF) - Hip Joint | 3 DoF |
| Number of degrees of freedom (DoF) - Knee joint | 1 DoF |
| Degrees of Freedom (DoF) - Ankle Joint | 3 DoF |
| Number of degrees of freedom (DoF) - Passport | 2 DoF |
| Maximum arm load capacity | > 5 kg |
| Dexterous hand sensors | MEMS tactile and visual (multi-sensory fusion) |
❓ Frequently Asked Questions
- How tall is the Expedition A2 robot?
- The Expedition A2 robot stands at a respectable 1.7 meters tall, allowing it to effectively interact with its environment at a human-level.
- What is the battery capacity and life?
- It features a built-in 700Wh battery that provides approximately 2 hours of continuous operation, making it ideal for a variety of tasks.
- Is it able to dynamically plan tasks?
- Yes, Expedition A2 is designed with dynamic task scheduling and comprehensive work execution capabilities, allowing it to adapt to different scenarios.
- How many degrees of freedom does his dexterous hand have?
- The dexterous arm has an impressive 19 degrees of freedom, 12 of which are actively controlled, ensuring extraordinary precision of manipulation.
- Can a robot work collaboratively?
- Absolutely. Expedition A2 excels in two-handed collaborative work, enabling efficient solutions to complex tasks requiring coordination.
- Is its maintenance complicated?
- No, the manufacturer designed the Expedition A2 with an emphasis on convenient operation and minimal maintenance, which simplifies its operation.
- What is the maximum weight that one hand can hold?
- Each dexterous hand is capable of carrying a maximum load exceeding 5 kg, which allows handling even heavier objects.
- What sensors does it use to interact with objects?
- Its dexterous hand utilizes advanced multi-sensor fusion, combining MEMS tactile and visual sensors for detailed and reliable interaction.
- Is it suitable for academic research?
- With its advanced capabilities, humanoid configuration, and intelligent features, Expedition A2 is an ideal tool for academic and scientific research in robotics and AI.