"Car dancing" and "jumping in place" look cool; what role do these technologies play in actual driving scenarios?
Functions such as "car dancing" and "jumping in place" are all enabled by Xiaomi Auto's Full Active Suspension. This is one of the most advanced suspension technologies available today, with each wheel end equipped with an independent power source that actively exerts force against the road surface. This is the core difference between it and semi-active suspensions. When dealing with complex road conditions, it offers superior adaptability and response speed, even achieving "zero bumps, zero roll, and zero pitch," making daily rides more comfortable and extreme handling more stable.
The underlying capability for "car dancing" requires the suspension to quickly adjust the vehicle's height and precisely coordinate the movement of each wheel-end suspension. Xiaomi's Full Active Suspension has a height adjustment range of 140mm, allowing the vehicle to pass over large speed bumps and enabling a welcoming suspension function that adds a sense of ritual. Its adjustment speed is 100 times faster than that of air springs, allowing it to precisely filter out very fine road vibrations.
"Jumping in place" requires the suspension to have extremely strong lifting force. Each wheel end of Xiaomi's Full Active Suspension is equipped with a power source rated at up to 4.6kW, which draws power from the ultra-high-voltage platform to rapidly generate ultra-high hydraulic pressure in the shock absorbers. The system's maximum lifting force exceeds 44,400N, equivalent to the weight of two Xiaomi SU7 Max vehicles, which is key to achieving fast jumps in place. In daily life, this also allows the vehicle to handle extreme scenarios such as severe roll, pitch, and bumps with greater composure.
In addition, Xiaomi Auto's Full Active Suspension can enable many other functions. For example, by combining real-time monitoring of complex road conditions and using cloud data to predict road situations in advance, it can pre-adjust the suspension's operating state. It can also integrate with the vehicle's hardware and software to create smooth and safe intelligent driving, preparing for future fully autonomous driving.