Cheapest blockchain transaction fee, live across 15 L1 and L2 chains
BlockchainsMantle
Trails$0.000423
- p99
- $0.00133
- rank
- #5
- samples
- 40,317
Solana
Leads$0.000368
- p99
- $0.000375
- rank
- #4
- samples
- 40,317
Mantle leads on 0 of 3 shared benchmarks, Solana on 3. Solana wins on Cheapest blockchain transaction fee, live across 15 L1 and L2 chains ($0.000368 vs $0.000423), Fastest Chainlink CCIP source chain by end-to-end delivery latency (1.3 min vs 23.8 min), Fastest LayerZero source chain by end-to-end message delivery (50.20 s vs 1.2 min).
Modular OP Stack fork using EigenDA for data availability rather than Ethereum calldata, cutting L1 anchoring cost. 2-second sequencer block time, MNT token for gas (ETH-pegged).
Proof-of-History sequencing combined with Tower BFT consensus. Probabilistic finality at 32 confirmed slots. Slot time around 400 milliseconds.
Mantle
Trails$0.000423
Solana
Leads$0.000368
Mantle
No data in window
Solana
Trails17.56 s
Mantle
Trails23.8 min
Solana
Leads1.3 min
Mantle
Trails1.2 min
Solana
Leads50.20 s
Mantle
No data in window
Solana
Trails38.01 s
Mantle and Solana are compared on 5 shared OpenChainBench benchmarks. Solana leads on Cheapest blockchain transaction fee, live across 15 L1 and L2 chains. See the live table on this page for every metric.
On the Cheapest blockchain transaction fee, live across 15 L1 and L2 chains benchmark, Solana leads at $0.000368 versus Mantle at $0.000423. Live measurement is updated continuously by the OpenChainBench harness.
Every benchmark on this page uses the same open methodology, published at https://openchainbench.com/methodology. Data is CC-BY-4.0. Measurement harnesses are MIT-licensed.
A pair is published when all four conditions hold. Both providers run in the same OpenChainBench benchmark for at least seven consecutive days. Each provider has at least 1000 samples in the measurement window. The head to head query has observable third party search demand. Both providers have a public /products/[slug] page on OCB. The full pair ledger is versioned in the public repo so the methodology is externally verifiable.