
RaimaDB, an embedded time series database that can be used for Edge and IoT devices, can run in-memory. It is a lightweight, secure, and extremely powerful RDBMS. It has been field tested by more than 20 000 developers around the world and has been deployed in excess of 25 000 000 times.
RaimaDB is a high-performance, cross-platform embedded database optimized for mission-critical applications in industries such as IoT and edge computing. Its lightweight design makes it ideal for resource-constrained environments, supporting both in-memory and persistent storage options. RaimaDB offers flexible data modeling, including traditional relational models and direct relationships through network model sets. With ACID-compliant transactions and advanced indexing methods like B+Tree, Hash Table, R-Tree, and AVL-Tree, it ensures data reliability and efficiency. Built for real-time processing, it incorporates multi-version concurrency control (MVCC) and snapshot isolation, making it a robust solution for applications demanding speed and reliability.
Learn more
Chainstack's APIs and software are used by thousands of businesses, large and small, to build, scale, and maintain blockchain applications. To ensure your security and control, Chainstack's APIs offer secure node connections and key security best practices. Invite other members to join your network and deploy their infrastructure using simple network management tools. You can build and deploy the blockchain protocol that suits your needs. The protocol will never be updated or modified again. Chainstack's managed services for blockchain make it easy to launch, join, and scale decentralized networks. You can now safely experiment with enterprise-grade tools and services and then run production. Continuously monitor and provision your resources.
Learn more
Filecoin
The Filecoin mainnet has officially launched, inviting users to engage in transactions, store information, and earn FIL tokens. This innovative network achieves remarkable economies of scale by enabling anyone to act as a storage provider, thus monetizing their available hard drive capacity. It is structured to offer rewards across various tiers of participants, ranging from expansive data centers to local entrepreneurs equipped with mining rigs that serve the final stretch. Miners use a combination of disks and hardware to secure storage contracts, store data, and accumulate Filecoin. configurations for mining can vary widely, from ordinary desktops to extensive setups with multiple disks and computational power. Unlike traditional proof-of-work systems, the model focuses on the tangible value of storage, where increasing your file storage directly correlates with earning more block rewards. The more storage you contribute, the greater your potential Filecoin earnings. Furthermore, the Filecoin retrieval market incentivizes miners to quickly deliver data, enhancing overall network efficiency and user satisfaction. This interconnected ecosystem promotes a thriving marketplace for data storage and retrieval, fostering innovation and collaboration.
Learn more
IPFS Cluster
IPFS Cluster enhances data management across a collection of IPFS daemons by managing the allocation, replication, and monitoring of a comprehensive pinset that spans multiple peers. While IPFS empowers users with content-addressed storage capabilities, the concept of a permanent web necessitates a solution for data redundancy and availability that preserves the decentralized essence of the IPFS Network. Serving as a complementary application to IPFS peers, IPFS Cluster maintains a unified cluster pinset and intelligently assigns its components to various IPFS peers. The peers in the Cluster create a distributed network that keeps an organized, replicated, and conflict-free inventory of pins. Users can directly ingest IPFS content to multiple daemons simultaneously, enhancing efficiency. Additionally, each peer in the Cluster offers an IPFS proxy API that executes cluster functions while mimicking the behavior of the IPFS daemon's API seamlessly. Written in Go, the Cluster peers can be launched and managed programmatically, making it easier to integrate into existing workflows. This capability empowers developers to leverage the full potential of decentralized storage solutions effectively.
Learn more