Viktor
Viktor is an AI-powered coworker built to live natively inside Slack and handle complex tasks autonomously. Equipped with its own cloud computer, Viktor can write and execute code, build and deploy applications, analyze metrics, and manage workflows across more than 3,000 integrated tools. It proactively monitors systems, flags issues, and suggests actionable next steps instead of simply responding to prompts. Teams can request reports, create tickets, audit marketing campaigns, or retrieve analytics directly within Slack conversations. Viktor maintains persistent context over long-running projects, coordinating tasks and deadlines across multiple weeks. It connects seamlessly to platforms like Linear, PostHog, Google Ads, and other business tools to automate cross-functional operations. The agent drafts artifacts such as documents, issues, and updates for approval before execution. With both free and enterprise plans, Viktor scales to match team workload and automation needs. Security and workspace controls ensure safe collaboration within organizational environments. By combining autonomy, integrations, and persistent context, Viktor acts as a highly capable digital teammate embedded in daily workflows.
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RaimaDB
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.
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Coreum
Coreum is a third-generation blockchain designed as a foundational framework for upcoming decentralized applications. It boasts an impressive capacity to handle as many as 7,000 transactions each second, thanks to a dynamic system involving 16 rotating validators, making it the quickest blockchain available today. Leveraging the tried-and-true Tendermint Consensus Engine in conjunction with the Cosmos SDK, Coreum provides a low-latency proof-of-stake environment. Developers have the flexibility to create applications in numerous programming languages, which can then be transformed into the contemporary Turing-complete Web Assembly (WASM) format prior to execution. In a landscape filled with hundreds of blockchains, Coreum enhances interoperability by incorporating bridge functionality, allowing for seamless interaction with different chains through collateralized wrapping. This innovative approach not only improves connectivity but also fosters a more cohesive ecosystem among various blockchain networks.
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Stargaze
Introducing the first interoperable Layer 1 blockchain specifically designed for NFTs, featuring an NFT launchpad and marketplace that is community-owned and operates with zero gas fees while being carbon neutral through proof-of-stake mechanisms, all secured by a network of over 100 validators. This platform leverages CosmWasm for programmability and supports interoperability through Cosmos IBC, along with Ethereum connectivity via the Gravity Bridge. To initiate your minting project, you can utilize a suite of command-line tools; simply clone an example repository and substitute it with your own project's files. The Stargaze sg721 contract enables the use of off-chain metadata storage, and it is advisable to implement a decentralized storage solution like IPFS for better efficiency. The NFT metadata on Stargaze adheres to OpenSea's standards, allowing for seamless integration. Organize your images and metadata into designated directories, then compile them into a single IPFS CAR (Content Addressable aRchive) file for upload. Once you obtain the CID for your metadata, you can designate it as the base URL within your contract, ensuring that the contract can link each token ID to its unique token URI independently, which streamlines the process significantly. This innovative framework not only enhances the user experience but also promotes sustainable practices in the NFT space.
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