SynSense releases a new generation of ultra-low power, high-throughput invasive brain computer interface chip
2026-01-19
SynSense Technology

Achieving significant breakthroughs in the field of neuromorphic and brain computer interfaces

SynSense and the Zurich Institute of Neuroinformatics (INI) have officially released a new generation of ultra-low power, high-throughput invasive brain computer interface chip solution. This solution adopts a globally unique event driven neural morphology architecture, which overcomes the energy efficiency problem of high-density neural signal acquisition and real-time processing. Compared with existing solutions such as Neuralink and Intan, the energy efficiency is improved by 10-100 times, providing a mass-produced and highly reliable hardware foundation for long-term implantable brain computer interface systems. In addition, the chip architecture supports direct connection to Xylo ™、 DynapSE2 and other ultra-low power brain like processor chips provide a complete solution for implantable AI.




1. Technological breakthrough: redefining the energy efficiency boundary of brain computer interfaces
Dual mode parallel pulse coding engine: innovatively integrating pulse frequency modulation and adaptive asynchronous incremental modulation dual-mode, it can synchronously extract signal energy and temporal features, providing multi-dimensional data support for complex decoding tasks such as motion intention recognition and epilepsy prediction.
Event driven and ultra-low power output: Adopting asynchronous pulse event stream output mechanism. This event driven working mechanism only generates power consumption and data when the signal changes, fundamentally achieving ultra-low power operation and high effective data throughput, perfectly meeting the stringent requirements of implantable devices.
Pulse based ultra-low power computing: Brain computer chips with asynchronous brain like communication protocol support direct connection to SynSense Xylo technology ™、 DynapSE2 and other ultra-low power brain like processor chips provide feasible solutions for implantable AI.
2. Value highlighting: strategic positioning+ecological synergy+market potential
Strong policy momentum and improved top-level design: The "15th Five Year Plan" further focuses on identifying six major directions, including brain computer interfaces and embodied intelligence, as core future industries, and concentrates resources on tackling core technologies. At the same time, policy support from government departments and active response from local authorities.
Industrial landing and ecological synergy: SynSense adheres to the dual wheel drive of "technological moat" and "commercial landing".
① Relying on the profound technical expertise of the Zurich Institute of Neuroinformatics
② Promote the development of brain computer chips and pulse neural network algorithm research on platforms such as Zhejiang Postdoctoral Workstation
③ Jointly promote industrialization with industry chain partners such as Ladder Medical and Jixie Machinery Technology
We are a leading global enterprise in brain computer interaction chips and solutions based on brain inspired biomimetic technology, and our technology and commercial value have been recognized by multiple parties.
The release of SynSense's next-generation chips marks a key breakthrough for the company in the field of high-performance, low-power brain computer interface hardware, providing underlying support for global brain computer interface scale applications.