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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Ditto
Ditto is the only mobile database with built-in edge device connectivity and resiliency, enabling apps to synchronize without relying on a central server or constant cloud connectivity. With billions of edge devices and deskless workers driving operations and revenue, businesses are hitting the limits of what traditional cloud architectures can offer. Trusted by Chick-fil-A, Delta, Lufthansa, Japan Airlines, and more, Ditto is pioneering the edge-native revolution, transforming how businesses connect, sync, and operate at the edge. By eliminating hardware dependencies, Ditto’s software-driven networking is enabling businesses to build faster, more resilient systems that thrive at the edge – no Wi-Fi, servers, or cloud required.
Through the use of CRDTs and P2P mesh replication, Ditto's technology enables you to build collaborative, resilient applications where data is always available and up-to-date for every user, and can even be synced in completely offline situations. This allows you to keep mission-critical systems online when it matters most.
Ditto uses an edge-native architecture. Edge-native solutions are built specifically to thrive on mobile and edge devices, without relying solely on cloud-based services. Devices running Ditto apps can discover and communicate with each other directly, forming an ad-hoc mesh network rather than routing everything through a cloud server. The platform automatically handles the complexity of discovery and connectivity using both online and offline channels – Bluetooth, peer-to-peer Wi-Fi, local LAN, WiFi, Cellular – to find nearby devices and sync data changes in real-time.
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7SIGNAL
For businesses that depend on reliable Wi-Fi for their operations, 7SIGNAL offers a cloud-based Wireless Network Monitoring (WNM) platform that persistently evaluates the wireless network for performance challenges, thereby enhancing network uptime, device connectivity, and overall network return on investment. In contrast to other service providers who inspect the network from the infrastructure viewpoint, 7SIGNAL focuses on the network's edge, assessing the "air" and recording the user experience directly from client devices.
The Sapphire Eye is an advanced Wi-Fi sensor that has been developed and patented by 7SIGNAL. These hardware sensors are installed on the premises and are specifically engineered to remotely assess the quality of wireless network services through cloud-based software.
Additionally, Mobile Eye is a Software as a Service (SaaS) solution also created and patented by 7SIGNAL. This application is deployed on the end user’s wireless device, allowing organizations to maintain continuous oversight of the wireless network right from the endpoint, ensuring a comprehensive view of network performance and user experiences. Together, these tools provide organizations with critical insights to improve their Wi-Fi services.
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Acrylic WiFi Heatmaps
The system operates by identifying specific locations, including buildings, floors, and both inner and outer perimeters, to which it links plans or designated geographic regions. Through the collection of WiFi measurements, it captures traffic data and logs information about devices, their signal strength, and other pertinent details, enabling the creation of comprehensive maps displaying coverage for each access point, while automatically generating editable reports that assess the network's condition and offer recommendations for enhancements. This capability extends to indoor layouts, allowing georeferencing in areas lacking GPS coverage. Additionally, for those needing to conduct outdoor site surveys, Acrylic WiFi Heatmaps is equipped to handle WiFi measurements over expansive regions like smart cities, ensuring a thorough analysis of connectivity in both indoor and outdoor environments. Furthermore, this versatility makes it an invaluable tool for optimizing WiFi performance across varied landscapes.
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