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The Ubi.cloud solution by Ubiscale is a groundbreaking software innovation designed for IoT tracking devices. This solution significantly reduces the power consumption and costs associated with typical GPS and Wi-Fi processing in IoT trackers by shifting these processes to the cloud. As a result, it supports the seamless implementation of geolocation services across diverse environments. The Ubi.cloud platform is versatile, offering high precision and low power options that make it ideal for tracking applications in both indoor and outdoor settings. This solution's architecture enables significant savings by reducing the time and power needed for GPS cold-starts and native Wi-Fi sniffing. Another advantage of the Ubi.cloud solution is its compatibility with a range of low-power wide-area networks (LPWANs) like Sigfox, LoRa, and NB-IoT. This allows for a wide application across different IoT ecosystems. It efficiently handles real-time geolocation data with minimal energy use, which is essential for devices that require prolonged battery life, such as asset trackers and wearables. Moreover, Ubi.cloud offers flexible business models, including pay-as-you-go and lifetime licenses, ensuring that it meets varied market needs. Its API services work seamlessly with the embedded technologies of UbiGNSS and UbiWIFI, providing robust solutions that cater to specific tracking requirements with programmable accuracy and compact data payloads.
Ubiscale's Cobalt GNSS Receiver is an ultra low-power IP designed to scale the potential of IoT system-on-chip solutions. This GNSS receiver IP is engineered for short power consumption and optimized embedded processing, complementing its cloud-assisted capabilities. It offers enhanced market reach, allowing easy integration into narrowband IoT (NB-IoT) SoC environments and ensuring cost-efficient GNSS functionalities. The Cobalt GNSS Receiver supports multiple GNSS constellations, including Galileo, GPS, and Beidou, facilitating both standalone and cloud-assisted operations. By efficiently managing MIPS and memory for processing, it helps reduce the overall footprint, making it especially suitable for applications where space and power are at a premium. The receiver utilizes state-of-the-art sensitivity optimization techniques to deliver reliable performance in a compact size. Developed in collaboration with CEVA DSP and the European Space Agency, the Cobalt offers robust processing capabilities for precise positioning. This collaboration ensures modulators with high accuracy, improved resistance to multipath interference, and compatibility with existing SoC infrastructures. Such features make it an excellent choice for mass-market tracking scenarios that are sensitive to size and cost, including logistics, agriculture, and animal tracking applications.
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