Honor Humanoid Robot Shatters 400m Human World Record in 39.45 Seconds
The rapid advancement of robotics has reached a monumental milestone as cutting-edge machines continue to redefine physical performance limits. In a stunning display of engineering excellence, advanced Honor humanoid robot technology has officially outpaced human athletic achievements on the running track, signaling a thrilling new era for artificial intelligence and mechanical agility.
- ✨ The Honor humanoid robot Lightning smashed the 400m sprint record with a staggering time of 39.45 seconds at the World Humanoid Robot Games in Beijing.
- ✨ During preliminary testing, the mechanical sprinter clocked an incredible 100-meter dash in 9.32 seconds, outpacing legendary athlete Usain Bolt.
- ✨ Engineers successfully optimized stability and extended the robot's legs by 10cm to achieve peak running speeds reaching 14.5 meters per second.
- ✨ Tech visionary Elon Musk praised the machine's impressive structural resilience after it survived a full-speed collision with a safety wall unharmed.

Breaking Records at the World Humanoid Robot Games
Honor introduced its first Humanoid Robot, Lightning, in April this year, and it has made a world record in a 400m human sprint in 39.45 seconds at the World Humanoid Robot Games in Beijing. It has outperformed the best time by over three seconds.
During a trial run, the Honor humanoid robot Lightning clocked a 100-meter sprint in just 9.32 seconds. It outran Usain Bolt – a retired Jamaican sprinter, regarded as the greatest sprinter of all time, and reached a peak speed of 14.5 meters per second.
The humanoid robot exceeded the human 100-meter record of 9.58 seconds by Usain Bolt and the fastest peak speed of humans, simultaneously.
After winning the preliminary round, the Honor Robotics D1 (Lightning – nickname) won the 400m finals in 39.45 seconds at the 2nd World Humanoid Robot Games.
Robotics D1 was faster than Wayde van Niekerk, who made the 400m sprint race in 43.03 seconds at the Rio Olympics, and went on to clock 2:30.22 over 1500m.
Details reveal that Honor engineers have extended Robotics D1’s legs by 10cm after its half-marathon win. Perhaps certain enhancements helped it win the race.
Honor says:
“Sustaining speed over 400 meters isn’t just about power – it’s the ultimate test of endurance, thermal design, and stability. The future of HONOR is moving faster than ever.”
Surprised by the Honor Robotics D1’s performance, Elon Musk reposted a clip and mentioned that despite hitting a safety wall at full speed, the robot didn’t fall apart.
The 2nd World Humanoid Robot Games were held at Beijing’s Ice Ribbon stadium. It featured 2056 robots from around 666 teams across 16 countries. All these machines were competing in track, soccer, boxing, weightlifting, and tasks like firefighting.

What is the top speed achieved by the Honor humanoid robot?
The Honor humanoid robot reached a remarkable peak speed of 14.5 meters per second during its high-performance running trials.
How fast did the robot complete the 400m sprint?
The robot completed the 400m sprint finals in an astounding time of 39.45 seconds at the 2nd World Humanoid Robot Games in Beijing.
What modifications were made to improve the robot's running ability?
Honor engineers extended the Robotics D1's legs by 10cm and optimized its thermal design, stability, and endurance capabilities following its previous half-marathon success.
Where were the 2nd World Humanoid Robot Games hosted?
The prestigious robotics competition took place at Beijing’s state-of-the-art Ice Ribbon stadium, featuring thousands of advanced machines from around the globe.
🔎 Ultimately, the staggering athletic capability demonstrated by the Honor humanoid robot marks a transformative paradigm shift in modern robotics and engineering. By seamlessly combining advanced thermal management, structural durability, and high-speed motion planning, machines are rapidly transcending traditional industrial boundaries to enter the realm of dynamic physical sports. As research and development in this sector accelerate, we are undoubtedly witnessing the foundational steps toward an integrated future where humanoid robots perform complex, high-agility tasks side-by-side with humans.

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