@1x.technologies just unveiled its next-generation robotic hand for NEO, the company’s humanoid home robot.
The new hand features 24 degrees of freedom, tactile sensing, human-like dexterity, and enough strength to perform practical everyday tasks. NEO can pick up coins, operate tools, zip a jacket, pour tea, connect a USB-C charger, clean surfaces, and even wash its own hands.
The robotic hand is a highly integrated mechatronic system, combining mechanical engineering, electrical engineering, electronics, computer engineering, and artificial intelligence into a single platform.
Each finger contains multiple precision joints driven by compact electric motors, gear trains, and actuators that closely replicate the movement of a human hand.
Embedded sensors continuously measure joint position, applied force, pressure, and contact, while onboard electronics process this information in real time to maintain smooth, stable, and accurate motion.
The hand’s 24 degrees of freedom allow each finger and joint to move independently, enabling complex gripping patterns that are difficult for traditional industrial robots.
From an electrical and control systems perspective, the robotic hand relies on a network of microcontrollers, power electronics, motor drivers, communication buses, and software algorithms working together.
Tactile sensors provide feedback that allows the robot to adjust grip strength dynamically, preventing fragile objects from being crushed while maintaining enough force to securely hold heavier items.
Advanced control software continuously interprets sensor data and coordinates the motors, allowing the robot to adapt to changing conditions, interact safely with people, and perform practical household tasks with greater precision and reliability.
This integration of mechanics, electronics, sensing, and intelligent control is what defines modern mechatronic engineering.
What makes this technology significant is not simply that the hand looks human.
It can sense physical contact, adjust its grip, adapt to different objects, and safely interact with the environment around it.
Neo represents an important step toward humanoid robots becoming useful for all types of projects.
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