Funding · October 11, 2026

Also published in Italiano, Español

Kunwei Technology Raises 400 Million Yuan in Funding, Aims to Become the 'NVIDIA' of Brain Science

photo of outer space
NASA / Unsplash

Kunwei Technology, a Shenzhen-based company, has successfully completed a new round of funding totaling 400 million yuan. The new round of financing includes new investors such as XVC and Sequoia China, as well as additional investments from existing shareholders Shialba and Tencent. GeekPark reported the story. The company's breakthrough technology allows for real-time, high-resolution imaging of the human brain through the skull, a significant advancement over traditional ultrasound devices. Kunwei's technology uses low-frequency ultrasound waves combined with advanced algorithms and computing power to achieve this level of detail. This technology has applications in clinical medicine, brain science, and general artificial intelligence. Kunwei's portable devices can quickly and accurately distinguish between stroke types, such as brain clots or brain hemorrhages, during emergency medical situations. In the field of brain-computer interfaces, Kunwei provides a non-invasive method for real-time data acquisition of the entire brain's functions.

Kunwei has already secured thousands of orders and is on the verge of commercialization. However, the company's ambitions extend beyond just being a leader in skull-brain ultrasound devices. Kunwei aims to become an infrastructure company that empowers brain science and artificial general intelligence (AGI) by providing hardware devices and a basic software platform called kOS. The company's founder, Liu Jia Jia, envisions Kunwei's technology as the equivalent of NVIDIA's graphics cards and CUDA platform in the AI field. Kunwei's technology is based on a fundamental rethinking of the industry's conventional wisdom. Traditional ultrasound technology has long been constrained by the trade-off between penetration power and resolution. Kunwei's approach involves using low-frequency ultrasound waves and leveraging advanced algorithms and computing power to achieve both high penetration and high resolution. This approach was initially met with skepticism by industry peers, but the success of AlphaGo in 2016 inspired Liu to explore the potential of intelligent systems.

Kunwei's technology is inspired by the way bats use low-frequency sound waves to navigate and hunt. By incorporating deep learning models and AI algorithms, Kunwei has developed a system that can reconstruct three-dimensional spatial structures from ultrasound signals. Kunwei's technology has significant implications for various fields, including emergency medical care and brain-computer interfaces. The company's long-term vision is to become a foundational infrastructure provider for brain science and AGI, enabling researchers and developers to explore the frontiers of these fields. Kunwei's technology represents a significant advancement in the field of ultrasound imaging and has the potential to revolutionize the way we understand and interact with the human brain.