This participation marks a significant step for Nano Labs in advancing its digital asset infrastructure, blockchain technology applications, and institutional-grade financial ecosystem initiatives.Author and source: Nano Labs
Partnering with global financial institutions to build the next-generation institutional digital asset infrastructure
Nasdaq-listed Nano Labs Ltd. (NASDAQ: NA) today announced that it has been officially approved to join the Canton Network as a validator node on this institutional-grade blockchain network.
This participation marks a significant step for Nano Labs in advancing its infrastructure for digital assets, blockchain technology applications, and institutional-grade financial ecosystem development. As one of the world’s leading institutional-grade blockchain networks, the Canton Network brings together global financial institutions and market infrastructure participants—including Goldman Sachs, BNY Mellon, Visa, DTCC, BNP Paribas, and Deutsche Börse Group—to jointly explore next-generation financial infrastructure for the digital asset era.
Join the institutional-grade blockchain network built by global financial institutions.
Canton Network is a next-generation blockchain infrastructure built for financial institutions, designed to enable secure connections between assets, data, and financial applications through privacy protection, interoperability, and a compliant architecture.
As a validation node, Nano Labs will operate dedicated node infrastructure and participate in the network operations and ecosystem development of Canton Network, providing more secure, efficient, and trustworthy technical support for institutional-grade digital asset applications.
To join the Canton Network validator system, you must undergo a multi-dimensional review by the network’s governance mechanism, evaluating technical capability, operational capacity, and compliance standards.
Accelerate the strategic layout of digital asset infrastructure
Nano Labs has long been focused on the next-generation computing infrastructure and trends in digital economic development. Joining the Canton Network is a key strategic move in the company’s exploration of the integration between blockchain infrastructure and financial technology.
By integrating with the Canton Network, Nano Labs will further expand collaboration opportunities with global financial institutions, market infrastructure providers, and innovative enterprises, exploring potential developments in areas such as digital asset settlement, institutional-grade financial applications, and on-chain asset management.
Build infrastructure connecting traditional finance with the digital economy.
As the global financial system continues to evolve toward digitization and intelligence, demand from institutions for secure, compliant, and high-performance blockchain infrastructure is growing.
The Canton Network is dedicated to bridging the gap between traditional financial systems and the digital asset ecosystem by providing an institutional-grade blockchain environment that enables financial assets to flow through a more efficient and transparent network.
Nano Labs' participation in the Canton Network will further enhance the company's engagement in global digital economy infrastructure and explore collaboration with international financial ecosystem partners to drive industry innovation.
Nano Labs Perspective
Nano Labs states:
Joining the Canton Network validator system marks a significant milestone in Nano Labs’ digital infrastructure strategy. We look forward to collaborating with leading global financial institutions and technology partners to explore the future of institutional blockchain applications and advance the development of more open, efficient, and secure digital asset infrastructure.
In the future, Nano Labs will continue to pursue development opportunities in artificial intelligence, computing infrastructure, and the digital economy, driving the construction of next-generation digital infrastructure through technological innovation and ecosystem collaboration.
