Solayer Launches Real-Time Stablecoin Payments on Live InfiniSVM Mainnet

TheNewsCrypto2026-03-13 tarihinde yayınlandı2026-03-13 tarihinde güncellendi

Özet

Solayer Labs has launched the public mainnet of its InfiniSVM network, enabling wallets, explorers, and dApps to connect. This infrastructure supports over 330,000 TPS with ~400ms finality, providing high-speed, real-time execution. One of the first products leveraging this is Solayer Pay, a stablecoin payment layer designed for fast, low-fee transactions. It features an incentive model with referral rewards and cashback, redistributing a portion of the 0.5% deposit fee. The platform also announced a $35 million ecosystem fund to support projects in DeFi, payments, and AI-driven onchain systems built on InfiniSVM.

Solayer Labs has announced a major update: InfiniSVM RPC is now live, the public mainnet on-ramp is open for wallets, explorers, indexers, and dApps to plug in today. As explained by the team, this is not just another RPC drop; it is the green light for real-world applications to start running at true hardware-accelerated SVM speed (330k+ TPS, ~400ms finality).

One of the first products ready to take full advantage? Solayer Pay – the fast, incentive-driven stablecoin payment layer built on this exact infrastructure. With the network now publicly accessible, users and builders can finally experience instant, low-friction transfers powered by Solayer’s DAG-based topology and real-time write paths.

Built by the team behind infiniSVM, Solayer Pay is designed for real-time financial interactions, combining low fees, referral incentives, and fast transaction execution. Here’s a closer look at the platform’s key features and what makes it stand out in the competitive crypto payments landscape.

One of the defining aspects of Solayer Pay is the infrastructure it runs on. As already mentioned, the payment platform is designed to leverage infiniSVM, Solayer’s high-performance blockchain network engineered for real-time execution.

The network has demonstrated over 330,000 transactions per second (TPS) with approximately 400 milliseconds of finality. In practical terms, this means transactions can settle almost instantly, a critical requirement for payments, trading systems, and other financial applications where speed and reliability are essential.

For users, this translates into faster transfers, smoother payment experiences, and the ability to move stablecoins without the delays typically associated with older blockchain networks.

Solayer Pay emphasizes a straightforward and transparent fee structure designed to reduce friction for new users. The platform currently charges $20 annual registration fee and 0.5% deposit fee. Instead of keeping the entire transaction fee, Solayer redistributes a portion of it through referral rewards and cashback incentives. This model encourages organic platform growth while rewarding users who actively participate in the ecosystem.

The deposit fee is divided as follows: 0.125% goes to the referrer; 0.125% is returned to the user as cashback in USDC and 0.25% is retained by the platform. This structure creates a built-in incentive system where users can earn rewards simply by inviting others to the platform.

Solayer Pay is designed to function as a practical payment interface rather than just a wallet. The platform enables users to: transfer stablecoins quickly, manage balances within a unified interface, connect and manage their Solayer Pay Card. The upcoming Solayer Pay app is expected to further streamline the experience by providing a single hub for sending stablecoins and managing payment activity.

Backed by a Growing Ecosystem

Solayer’s ambitions extend beyond payments alone. The company recently announced a $35 million ecosystem fund aimed at supporting projects building on the infiniSVM network. The fund targets applications that benefit from real-time execution and high throughput, with a particular focus on: DeF, consumer applications, payments, AI-driven onchain systems.

By investing directly in developers and infrastructure, Solayer is working to expand the range of applications that can operate on its network, potentially increasing the utility of services like Solayer Pay.

TagsBlockchainCryptocurrencyMainnetSolayer

İlgili Sorular

QWhat is the key feature of Solayer's InfiniSVM mainnet that enables real-time applications?

AThe key feature is its hardware-accelerated SVM speed, achieving over 330,000 transactions per second (TPS) with approximately 400 milliseconds finality.

QWhat is the name of the payment product built to take advantage of the InfiniSVM infrastructure?

AThe payment product is called Solayer Pay, which is a fast, incentive-driven stablecoin payment layer.

QHow does Solayer Pay's fee structure work and what incentives does it offer?

ASolayer Pay charges a $20 annual registration fee and a 0.5% deposit fee. This fee is divided with 0.125% going to the referrer, 0.125% returned to the user as USDC cashback, and 0.25% retained by the platform.

QWhat type of network topology does Solayer use to achieve its high performance?

ASolayer uses a DAG-based topology and real-time write paths to achieve its high throughput and low latency.

QWhat is the purpose of the $35 million ecosystem fund announced by Solayer?

AThe $35 million ecosystem fund is aimed at supporting projects building on the infiniSVM network, particularly those in DeFi, consumer applications, payments, and AI-driven onchain systems that benefit from real-time execution and high throughput.

İlgili Okumalar

Deconstructing the Capital Game of Public Chain Pharos: A $950 Million Valuation Propped Up by Photovoltaic and Other Assets, A Shell Transaction Under Layers of Betting?

The article investigates the recent $247.3 million investment by Hong Kong-listed GCL New Energy into the Layer 1 blockchain project Pharos at a $950 million valuation. It reveals the deal is not a straightforward investment but a complex, multi-stage transaction bound by stringent performance milestones. The core of the agreement is a set of mutual, conditional investments. Pharos must first purchase up to $1.5 billion HKD worth of GCL shares. However, GCL's reciprocal investment in Pharos tokens is contingent upon a series of strict, performance-based vesting conditions. The entire deal is split into five tranches, each unlocking only if the Pharos token lists on an exchange without falling below its issue price and maintains a high fully diluted valuation (FDV) over successive three-month periods. If any condition fails, the entire agreement can be terminated. The article questions the legitimacy of the $950 million valuation, which was calculated based on a purported $250 million in Total Value Locked (TVL). Notably, over half of this TVL is claimed to be from real-world assets (RWA), specifically photovoltaic and power station assets linked to GCL—a highly unconventional method for valuing a Layer 1 blockchain. Furthermore, the mainnet is not yet live, and the TVL figure is unverified by independent data platforms. The author suggests the deal is a "capital game" designed to boost GCL's stock price, which saw suspicious pre-announcement surges, and to create hype for the upcoming Pharos token launch, ultimately passing the risk onto the market and future investors.

marsbit1 saat önce

Deconstructing the Capital Game of Public Chain Pharos: A $950 Million Valuation Propped Up by Photovoltaic and Other Assets, A Shell Transaction Under Layers of Betting?

marsbit1 saat önce

Comprehensive Analysis of Canton Network: Wall Street's Blockchain Ambition

Canton Network is positioned at the convergence of key crypto trends, including real-world asset tokenization, institutional blockchain adoption, privacy infrastructure, and stablecoin settlements. It has attracted major financial institutions like DTCC, Nasdaq, and Broadridge, which are deploying real workflows such as treasury tokenization, repo financing, and collateral management. The network is designed for regulated entities, offering granular transaction privacy and validator-level control while maintaining interoperability. Its architecture separates execution from coordination, using validator nodes operated by participants and synchronizers for atomic settlement. Key adoptions include DTCC tokenizing U.S. Treasuries, Broadridge processing trillions in repo transactions, and Nasdaq integrating its Calypso platform. Tokenomics are usage-driven, with weekly CC burns increasing by 216% since TGE, and the burn-to-mint ratio rising to 0.90, nearing a deflationary state. Despite generating the highest revenue among L1s in February, Canton trades at a discount to peers, possibly due to high emissions and its perception as financial infrastructure. Catalysts include regulatory clarity from the Clarity Act and DTCC’s broader tokenization platform launch in late 2026. Risks include token concentration, with 54% of CC held by a few entities, though these are largely operational holdings. Canton aims to become a core coordination layer for tokenized financial markets.

marsbit1 saat önce

Comprehensive Analysis of Canton Network: Wall Street's Blockchain Ambition

marsbit1 saat önce

Which Areas Still Have Moats in the AI Era?

In the AI era, certain moats remain despite rapid technological advancement. The author, a former hedge fund manager, argues that the true inflection point occurred when AI models like ChatGPT’s o1 began generating functional code—even with imperfections—enabling recursive self-optimization and fundamentally altering software development. Key short-term moats identified include: 1. **Proprietary Data**: Firms with unique, inaccessible data (e.g., multi-strategy hedge funds) can fine-tune models, creating defensible advantages. 2. **Regulatory Friction**: Industries requiring human approval (e.g., traditional finance) face slower disruption due to compliance and legal barriers. 3. **Authority-as-a-Service**: Human trust in institutional authority (e.g., legal or audit services) persists even if AI outperforms humans technically. 4. **Physical World Lag**: Hardware-dependent sectors evolve slower, delaying full AI integration. However, these moats only delay, not prevent, disruption. The author emphasizes acting on signals rather than waiting for certainty: identify directional trends, place asymmetric bets (limited downside, high upside), and iterate through action. As AI accelerates, windows of opportunity close quickly. To remain relevant, humans must excel in long-term strategy, complex system-level thinking, and collaboration—areas where AI still lags. The time to act is now, before markets price in the obvious.

marsbit1 saat önce

Which Areas Still Have Moats in the AI Era?

marsbit1 saat önce

Actually, ETH Scaling is a Major Boon for L2s

Vitalik Buterin's recent comments on Ethereum scaling have been misinterpreted. He did not declare Layer 2s (L2s) a failure but rather signaled a strategic shift: Ethereum is moving from a "rollup-centric" scaling model, where L2s were seen as simple replicas of the base layer, to one where the L1 itself undergoes aggressive scaling. L2s remain crucial, but their primary value proposition has evolved to be customization, not just cheap transactions. Two key developments drove this change. First, Ethereum's base layer is scaling faster than anticipated. After years of cautious progress to preserve decentralization, an ambitious new roadmap aims to drastically increase L1 throughput through a series of upgrades, including a higher gas limit, faster block times, parallel transaction processing, and a fundamental transition to a native zero-knowledge (zkEVM) architecture. This allows Ethereum to scale while maintaining its superior decentralization. Second, L2s have found product-market fit with institutions. Companies like Robinhood, Coinbase, and Kraken are building their own L2s because they need Ethereum's security and access to its liquidity, but also require control for regulatory compliance, custom fee structures, and operational flexibility. This creates a spectrum of L2s, from highly decentralized ones to more controlled, institutionally-focused chains—a reality Vitalik acknowledges is valid as long as marketing is honest. Crucially, scaling the L1 does not compete with L2s; it makes them better. A more powerful L1 means cheaper data availability and settlement costs for L2s, faster withdrawals, and quicker finality. The main unresolved challenge is liquidity fragmentation between L2s, which the Ethereum Foundation is prioritizing with new interoperability solutions for 2026. The narrative that Ethereum is abandoning L2s is incorrect. The ecosystem is maturing into a system with a radically scaling L1 at its core, surrounded by a flourishing ecosystem of specialized L2s.

marsbit3 saat önce

Actually, ETH Scaling is a Major Boon for L2s

marsbit3 saat önce

İşlemler

Spot
Futures
活动图片