LORA public chain is committed to building a scalable, compatible blockchain infrastructure
Secure, efficient, traceable, no data deposition, and can be further developed data trading platform
LORA adopts the Tendermint cross-chain protocol, utilizing a 1+N parallel chain, static ledger, LRB space-time proof, dynamic storage, polymorphic nodes, node transfer, node elimination, and POS consensus mechanism. It provides an open-source IDE development environment based on the needs of commercial application systems, building a true ecosystem for Blockchain 3.0 commercial applications.
Through network forking, data customization, smart contract deployment and upgrades, asset transaction monitoring, and visual features, blockchain applications become simple and user-friendly. It supports multiple languages, from Lua and C++ to JLOR, enabling developers from different platforms to build conveniently.
Based on the excellent open-source Graphene technology and BFT optimization algorithms, transaction confirmation is transformed into algorithm proof confirmation. Advantages include support for over 10,000 TPS transaction throughput, with average transaction confirmation latency reaching seconds.
Introduces Sharding technology to support horizontal scaling, combining network sharding and transaction sharding. It also provides BaaS (Blockchain as a Service) services, offering developers rich BaaS APIs, data transaction APIs, and native APIs for blockchain application development.
Blockchain technology can enhance identity verification, improve data traceability and liquidity, and assist in record management.
The fully encrypted nature of blockchain data ensures that these data will not be touched by unauthorized parties, but still has liquidity (almost no chance of success for middleman attacks).
Unlike WhatsApp and iMessage, LORA uses blockchain to protect user metadata, which is different from end-to-end encryption used by apps like WhatsApp and iMessage.
Transaction history is recorded on the blockchain and permanently verified, allowing both parties to trust the transaction network at low cost. This requires the network to be reliable and private while avoiding issues like data deposition.
Transaction history is recorded on the blockchain and permanently verified, allowing both parties to trust the transaction network at low cost. This requires the network to be reliable and private while avoiding issues like data deposition.
Transaction history is recorded on the blockchain and permanently verified, allowing both parties to trust the transaction network at low cost=st. This requires the network to be reliable and private while avoiding issues like data deposition.
Transaction history is recorded on the blockchain and permanently verified, allowing both parties to trust the transaction network at low cost. This requires the network to be reliable and private while avoiding issues like data deposition.
Supports high-concurrency data exchanges, reaching millions in lab environments and 39,523 TPS in real-world networks, serving as the infrastructure for future large-scale data collection, exchange, and edge computing result exchanges for AI, IoT, and robotics.
Supports high-concurrency data exchanges, reaching millions in lab environments and 39,523 TPS in real-world networks, serving as the infrastructure for future large-scale data collection, exchange, and edge computing result exchanges for AI, IoT, and robotics.
Supports high-concurrency data exchanges, reaching millions in lab environments and 39,523 TPS in real-world networks, serving as the infrastructure for future large-scale data collection, exchange, and edge computing result exchanges for AI, IoT, and robotics.
Supports high-concurrency data exchanges, reaching millions in lab environments and 39,523 TPS in real-world networks, serving as the infrastructure for future large-scale data collection, exchange, and edge computing result exchanges for AI, IoT, and robotics.
Whether you're a developer, seasoned trader, or Web3 newbie, LORA meets your needs