Author: Three Sigma
Compiled by: Felix, PANews
In the evolving blockchain space, instant transactions are becoming a necessity, not a luxury. As decentralized financial applications, payments, gaming, and high-frequency trading push the limits of traditional blockchain capabilities, the need for real-time performance has never been greater. In the race to redefine transaction speed and scalability are MegaETH, Monad, and Hyperliquid.
As mentioned in past articles, MegaETH is an emerging L2 solution designed to prioritize real-time performance, which has attracted market attention with its promise of near-instant block times and high transaction throughput.
However, Hyperliquid and Monad are making the competition more intense with their unique approaches to optimizing blockchain performance. This article will dive into the benefits, architectures, and trade-offs of these solutions to sort out who might be ahead in the race for instant blockchain transactions.
MegaETH is a L2 scaling solution designed specifically for Ethereum. MegaETH is unique in that it focuses on real-time blockchain performance, providing ultra-low latency and scalability for applications that require instant responses.
Key Takeaways
Advantages
MegaETH’s architecture is designed for speed and efficiency, making it stand out in the competitive L2 space:
While MegaETH is focused on real-time performance, it faces stiff competition from Hyperliquid and Monad, two platforms that take different approaches to optimizing blockchain transactions.
Hyperliquid is a fully on-chain perpetual trading protocol built on its own L1 blockchain, optimized for low latency and high throughput. By integrating spot, derivatives, and pre-release markets into its platform, Hyperliquid introduces the high-performance consensus mechanism HyperBFT and HyperEVM plans, aiming to expand its ecosystem through efficient liquidity aggregation.
Hyperliquid's stack includes a wider range of financial primitives such as lending, governance, and native stablecoins. Built on its HyperBFT consensus, Hyperliquid achieves a 0.2 second block time while maintaining a unified state across all components, ensuring performance, liquidity, and programmability. With over 262,000 users and processing 200,000 transactions per second, Hyperliquid positions itself as a leader in decentralized market infrastructure.
To further expand its influence, Hyperliquid provides Builder Codes, a feature that allows other dApps and CEXs to seamlessly integrate its liquidity by paying fees on a per-transaction basis. Builder Codes not only expands Hyperliquid’s reach, but also incentivizes external platforms to leverage its high-performance trading infrastructure, enhance liquidity, and expand its network effect.
Monad redesigns the EVM architecture to achieve high throughput through parallel execution. By addressing the limitations of Ethereum's sequential transaction processing, Monad unlocks new levels of efficiency and scalability.
Monad introduces pipelining to optimize transaction execution, consensus processes, and state synchronization to maximize hardware efficiency and minimize latency. Using the custom MonadBFT consensus mechanism derived from HotStuff, the protocol supports a strong and decentralized validator set while achieving fast block finality.
Key innovations include MonadDB, a purpose-built database tailored for Ethereum state access, and Optimistic parallel execution, which ensures high throughput with minimal overhead. Monad further enhances scalability by separating the consensus and execution layers, enabling developers to build applications that require both exceptional performance and low latency.
Monad’s groundbreaking advancements make it a powerful platform for enterprise-grade applications, providing developers with the tools to create high-throughput dApps while maintaining Ethereum compatibility and embracing the future of blockchain innovation.
By evaluating the key metrics of MegaETH, Hyperliquid, and Monad, we can fully understand the unique advantages and trade-offs of each. This comparison focuses on latency, throughput (TPS), EVM compatibility, use cases, finality time (TTF), and decentralization trade-offs. These attributes highlight the fundamental requirements for scaling blockchain infrastructure while ensuring practical utility and performance.

Latency:
Throughput ( TPS ):
EVM Compatibility:
Use Cases:
Time to Finalization (TTF) :
Decentralization trade-offs:
MegaETH, Hyperliquid, and Monad each bring unique innovations to the blockchain ecosystem and meet different needs:
Which of the three leads? Depends on the use case:
Key observations:
The competition between MegaETH, Hyperliquid, and Monad highlights a key aspect of blockchain development: no single solution currently dominates all use cases. Each platform excels in its field, offering a unique value proposition that meets different needs. For developers and enterprises, the decision often comes down to specific application requirements, whether it is speed, market liquidity, or decentralized scalability.
These projects also highlight the importance of continued innovation in blockchain infrastructure. As adoption grows, the industry must reconcile the scalability trilemma with user expectations for low fees, high performance, and strong security. Collaborative advances, such as integrating solutions from different ecosystems, may drive the next wave of blockchain breakthroughs. As blockchain technology evolves, these platforms push the boundaries of what is possible, paving the way for faster, scalable, and efficient decentralized systems.
Which one is ultimately chosen depends on the priorities of developers and users: speed, decentralization, or specialization.
Related reading: The battle for high-performance public chains: Comparison and future prospects of MegaETH and Monad

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