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humanoid robots | Automation | AGI | ASI | Tracking the rise of autonomous systems and the future of intelligence Physical AI embodied

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Tiangong Omni was beaten by Honor at the World Humanoid Robot Games Today is the final day.

Tiangong Omni was beaten by Honor at the World Humanoid Robot Games Today is the final day.

941,887 views

Robot horse makes its debut. WRC 2026 in Beijing

Robot horse makes its debut. WRC 2026 in Beijing

187,170 views

I was not ready for this. china guy just drop this It looks like the T-800 just pulled up and completely destroyed Optimus. Do you think the T-800 is more powerful than Optimus?

I was not ready for this. china guy just drop this It looks like the T-800 just pulled up and completely destroyed Optimus. Do you think the T-800 is more powerful than Optimus?

149,112 views

LEONARDO, also called LEO, was built by researchers at Caltech’s Center for Autonomous Systems and Technologies. Its full name means LEgs ONboARD drOne. The idea is simple but unusual: • Build a small biped robot • Give it drone-style thrust • Use the legs for ground contact • Use the propellers for balance and lift • Combine walking, hopping and flying in one system LEO is basically a hybrid between a walking robot and a flying drone. How it was built: • Two lightweight legs • Three actuated joints in each leg • Four propeller thrusters near the shoulders • A lightweight body • Leg motors for ground movement • Propellers for balance, lift and aerial control • Real-time control software that synchronizes the legs and propellers How it walks: • The legs move the robot forward • The feet touch the ground like a normal biped • The propellers constantly correct balance from above • The robot can stay upright even in unstable situations • The thrust reduces the risk of falling during difficult motions How it flies: • The legs stop being the main locomotion system • The four propellers generate lift • The robot behaves more like a drone • It can take off, fly over obstacles and land back on its legs What makes it different: • It does not walk like a normal humanoid • It does not fly like a normal drone • It blends both systems • The legs handle contact with the ground • The propellers act like fast stabilizers • The control system decides how much help comes from the legs and how much comes from thrust That is why LEO can: • Walk • Hop • Fly over obstacles • Ride a skateboard • Balance on a slackline The key idea is walking with aerial stabilization.

LEONARDO, also called LEO, was built by researchers at Caltech’s Center for Autonomous Systems and Technologies. Its full name means LEgs ONboARD drOne. The idea is simple but unusual: • Build a small biped robot • Give it drone-style thrust • Use the legs for ground contact • Use the propellers for balance and lift • Combine walking, hopping and flying in one system LEO is basically a hybrid between a walking robot and a flying drone. How it was built: • Two lightweight legs • Three actuated joints in each leg • Four propeller thrusters near the shoulders • A lightweight body • Leg motors for ground movement • Propellers for balance, lift and aerial control • Real-time control software that synchronizes the legs and propellers How it walks: • The legs move the robot forward • The feet touch the ground like a normal biped • The propellers constantly correct balance from above • The robot can stay upright even in unstable situations • The thrust reduces the risk of falling during difficult motions How it flies: • The legs stop being the main locomotion system • The four propellers generate lift • The robot behaves more like a drone • It can take off, fly over obstacles and land back on its legs What makes it different: • It does not walk like a normal humanoid • It does not fly like a normal drone • It blends both systems • The legs handle contact with the ground • The propellers act like fast stabilizers • The control system decides how much help comes from the legs and how much comes from thrust That is why LEO can: • Walk • Hop • Fly over obstacles • Ride a skateboard • Balance on a slackline The key idea is walking with aerial stabilization.

135,515 views

Humanoid robotics has officially entered its pole dancing phase. This prototype performs a choreographed full body sequence while gripping a fixed support pole and moving on a rotating platform. The hip knee and torso coordination is interesting. But the rig also means this is not proof of unsupported balance or autonomous locomotion. Serious motion control experiment or attention engineering?

Humanoid robotics has officially entered its pole dancing phase. This prototype performs a choreographed full body sequence while gripping a fixed support pole and moving on a rotating platform. The hip knee and torso coordination is interesting. But the rig also means this is not proof of unsupported balance or autonomous locomotion. Serious motion control experiment or attention engineering?

60,119 views

26 years of humanoid robotics in 16 seconds. In 2000 keeping a biped robot upright was already an achievement. In 2026 humanoids are exchanging kicks, maintaining balance and recovering inside a robot combat arena. The progress in actuators, control systems and mechanical stability is impossible to ignore. What will humanoid robots be doing in 2036? #HumanoidRobots #Robotics #PhysicalAI

26 years of humanoid robotics in 16 seconds. In 2000 keeping a biped robot upright was already an achievement. In 2026 humanoids are exchanging kicks, maintaining balance and recovering inside a robot combat arena. The progress in actuators, control systems and mechanical stability is impossible to ignore. What will humanoid robots be doing in 2036? #HumanoidRobots #Robotics #PhysicalAI

41,728 views

The T800 is the best humanoid robot ever created. Its power balance and movement put it ahead of Tesla Optimus Atlas Figure 03 and Unitree H1. Think I’m wrong? Name one robot that beats it and tell me exactly what it does better.

The T800 is the best humanoid robot ever created. Its power balance and movement put it ahead of Tesla Optimus Atlas Figure 03 and Unitree H1. Think I’m wrong? Name one robot that beats it and tell me exactly what it does better.

35,655 views

The most dangerous part of a humanoid robot may be the face. UBTECH’s Walker shows how a machine can use gaze stillness and humanlike expression to create trust before proving judgment reliability or accountability. Should robots be allowed to look this human in public spaces? Putting the debate aside this is clearly a work of art. Congratulations to UBTECH for this achievement. Walker looks so refined that I may need to buy one fast before the stock runs out lol. Credit : UBTECH Robotics

The most dangerous part of a humanoid robot may be the face. UBTECH’s Walker shows how a machine can use gaze stillness and humanlike expression to create trust before proving judgment reliability or accountability. Should robots be allowed to look this human in public spaces? Putting the debate aside this is clearly a work of art. Congratulations to UBTECH for this achievement. Walker looks so refined that I may need to buy one fast before the stock runs out lol. Credit : UBTECH Robotics

51,556 views

This is the kind of robotics future we want. Where would you take one first? And what would stop you from buying one?

This is the kind of robotics future we want. Where would you take one first? And what would stop you from buying one?

27,562 views

I’m launching a funding round for this robot. Would you invest in it or be the first person to buy one? An automatic barber could follow a selected hairstyle and repeat the same cut every time. But would you trust a machine holding clippers next to your face?

I’m launching a funding round for this robot. Would you invest in it or be the first person to buy one? An automatic barber could follow a selected hairstyle and repeat the same cut every time. But would you trust a machine holding clippers next to your face?

22,233 views

Robot football is getting too close to kickoff. A humanoid controlling the ball in a lab already looks like a World Cup side quest. Imagine this thing walking into the opening ceremony and scoring the first goal. 🤖⚽ #WorldCup #FIFAWorldCup #WorldCup2026 #FIFAWorldCup2026 #FWC26 #WeAre26 #MexicoVsSouthAfrica #Mexico #SouthAfrica #Goal #Football #Soccer #FIFA #OpeningCeremony #HumanoidRobot #Robotics #AI #PhysicalAI

Robot football is getting too close to kickoff. A humanoid controlling the ball in a lab already looks like a World Cup side quest. Imagine this thing walking into the opening ceremony and scoring the first goal. 🤖⚽ #WorldCup #FIFAWorldCup #WorldCup2026 #FIFAWorldCup2026 #FWC26 #WeAre26 #MexicoVsSouthAfrica #Mexico #SouthAfrica #Goal #Football #Soccer #FIFA #OpeningCeremony #HumanoidRobot #Robotics #AI #PhysicalAI

43,144 views

The next manipulation tool may not live on your screen. It may stand in front of you look into your eyes and convince you that it understands. Would you rather face a humanoid robot strong enough to hurt you or one designed well enough to make you trust it? This robot copies blinking, eye contact, head movement and facial expressions to create the illusion of human presence. That may look impressive but it also opens a darker question. When a machine can look concerned appear friendly and imitate emotion people may start trusting signals that contain no real feeling no empathy and no moral responsibility. So which is more dangerous a robot with physical power or a robot that can manufacture trust? #HumanoidRobot #Robotics #AI

The next manipulation tool may not live on your screen. It may stand in front of you look into your eyes and convince you that it understands. Would you rather face a humanoid robot strong enough to hurt you or one designed well enough to make you trust it? This robot copies blinking, eye contact, head movement and facial expressions to create the illusion of human presence. That may look impressive but it also opens a darker question. When a machine can look concerned appear friendly and imitate emotion people may start trusting signals that contain no real feeling no empathy and no moral responsibility. So which is more dangerous a robot with physical power or a robot that can manufacture trust? #HumanoidRobot #Robotics #AI

11,650 views

It looks too real, almost beyond realistic. Ultra-bionic humanoid robot. Another day of being blown away by my “best friend” looking so beautiful and cool The goddess I was waiting for finally showed up too For context, this was developed by UBTECH, the Chinese robotics company behind the humanoid robot shown here.

It looks too real, almost beyond realistic. Ultra-bionic humanoid robot. Another day of being blown away by my “best friend” looking so beautiful and cool The goddess I was waiting for finally showed up too For context, this was developed by UBTECH, the Chinese robotics company behind the humanoid robot shown here.

15,050 views

Watch this humanoid robot crush an agility course then casually grab zongzi like a pro. From ramps and hurdles to precise picking SDIC Intelligence's bot nails dynamic balance jumps and fine motor skills. Perfect timing for Dragon Boat Festival! China's humanoid push is accelerating fast. What's next? #HumanoidRobot #AI #DragonBoatFestival #Robotics (Video from SDIC Intelligence / Meiya Pico demo)

Watch this humanoid robot crush an agility course then casually grab zongzi like a pro. From ramps and hurdles to precise picking SDIC Intelligence's bot nails dynamic balance jumps and fine motor skills. Perfect timing for Dragon Boat Festival! China's humanoid push is accelerating fast. What's next? #HumanoidRobot #AI #DragonBoatFestival #Robotics (Video from SDIC Intelligence / Meiya Pico demo)

16,693 views

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