Chinese robotics company PaXini has completed a new financing round, bringing its cumulative funding to more than 4 billion yuan, equivalent to approximately $596 million. The Shenzhen based company specializes in tactile sensing and robotic hands that give machines the ability to understand physical contact, pressure and force. The announcement comes amid accelerating investment in humanoid robots and embodied artificial intelligence across China, particularly for applications in factories and other real world environments.
Sustained Funding Momentum
PaXini has now completed multiple rounds within a short period, including a Series B financing and the latest Series B++ round. New investors in the B++ round include Guangxin Fund, Sichuan Science and Technology Innovation Group and CITIC Capital, while existing shareholders also increased their participation. The speed and scale of the fundraising indicate growing institutional confidence in robotics companies that can move from research to industrial use.
Tactile Sensing as a Core Capability
Founded in 2021, PaXini develops tactile sensors, dexterous robotic hands and humanoid robots under its Tora series. The technology captures physical contact, pressure and force, providing data that goes beyond what cameras and visual sensors can offer. The company also builds software and training data to help robots learn physical tasks with greater accuracy and reliability.
Industrial Partnerships with BYD and Samsung
PaXini has formed a strategic partnership with Chinese electric vehicle maker BYD, covering robotics, data collection and manufacturing scenarios. BYD provides factory environments where PaXini can test and refine its robots under real production conditions. Samsung has also made a strategic investment in the company, placing PaXini among a select group of robotics and artificial intelligence firms in its global portfolio.
Real World Testing at Manufacturing Sites
The company has already tested its Tora-One humanoid robot at a Geely Auto manufacturing facility. The robot has been used for tasks such as wiring-harness assembly and applying adhesive, which require precise physical manipulation. These factory deployments provide valuable data because machines must handle variable objects, repetitive tasks and hard production conditions.
From Prototypes to Mass Production
PaXini reports that cumulative shipments of its self-developed tactile sensing chips have surpassed one million units. These chips are integrated into different tactile products and used across a range of working conditions, generating engineering data that improves design and calibration. The company says this production experience creates a barrier because reliability at scale cannot be replicated simply through financing or prototypes.
Full-Stack Technology and Data
PaXini operates across tactile chips, sensors, data collection, embodied models and robotic terminals. The full-stack approach allows problems identified in the field to be traced through signals, data and hardware, which speeds up design improvements. It also supports faster cost reduction and more consistent performance when products are manufactured in large volumes.
Market Context and Future Direction
PaXini targets automotive manufacturing, industrial production and healthcare, sectors where robots must perform delicate or repetitive physical work. As robot deployment expands from prototypes to larger fleets, tactile perception is expected to spread from fingertips to palms, joints and other parts of the body. The company believes that its hardware supply, physical interaction data and model integration capabilities position it to benefit from this shift.
PaXini's latest financing reinforces its status as a notable player in China's embodied intelligence sector. With cumulative funding above $596 million and backing from industrial partners such as BYD and Samsung, the company is moving toward broader industrial deployment. As artificial intelligence and robotics converge, tactile sensing is becoming a critical layer for machines that need to interact safely and precisely with the physical world.