
NetCrunch is commercial, self-hosted, agentless network and IT infrastructure monitoring software for Windows Server. It monitors network devices, servers, virtualization platforms, cloud services, applications, websites, logs, telemetry, and network traffic across distributed environments.
NetCrunch supports 680+ monitoring targets and provides 270+ ready-to-use Monitoring Packs for devices, applications, and operating systems. Policy-based monitoring automatically applies monitoring settings, Monitoring Packs, thresholds, and alerts to matching devices and systems. Licensing is based on monitored nodes and network interfaces rather than individual sensors, checks, or metrics.
NetCrunch provides real-time dashboards and automatic Layer 2 and routing topology maps for visibility into network status and performance. Network traffic analysis supports NetFlow, sFlow, IPFIX, and other flow technologies. Its alerting system supports event correlation, dependency-aware suppression, predictive thresholds, escalation, and 40+ automated response actions, including scripts, notifications, API calls, and integrations with external systems.
Distributed Monitoring Probes extend monitoring to remote and isolated locations. NetCrunch also provides a REST API for integration and automation with external IT management, service management, and operational systems.
NetCrunch is self-hosted on Windows Server and can monitor on-premises, air-gapped, cloud, and hybrid IT environments.
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Linxup is an ideal GPS tracking and dash cam solution for small and medium-sized businesses with fleets that want a powerful, easy-to-use system without overpaying for technology they don't need. Linxup's live, U.S.-based support and coaching team is dedicated to ensuring customers get maximum value to help improve safety, reduce risk and costs, and get the most out of their teams in the field.
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WebODM
This intuitive, professional-grade software is designed for processing images captured by drones, allowing users to create georeferenced maps, point clouds, elevation models, and detailed 3D models from aerial photography. It features support for various processing engines, including ODM and MicMac, ensuring versatile capabilities. Users can generate orthorectified maps and obtain georeferenced, filtered, and classified dense point clouds efficiently. The software simplifies volume and area calculations, making stockpile tracking straightforward. Additionally, it enables users to calculate various indices such as NDVI, VARI, and GNDVI, further enhancing data analysis. The platform accommodates both aerial and ground images, whether they are captured in nadir or oblique perspectives. Users can personalize their experience by selecting a logo and color scheme that aligns with their brand identity, ensuring a cohesive look. Moreover, the software allows for the simultaneous execution of multiple jobs, along with the option to distribute single jobs across various machines, significantly improving workflow efficiency. This makes it an invaluable tool for professionals in the field of drone imagery and mapping.
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PIX4Dcatch
By simply traversing around open trenches, you can create geolocalized models that allow for precise documentation and volume calculations essential for invoicing purposes. This process enables the swift and accurate collection, processing, and visualization of as-built measurements and 3D models, even under challenging conditions. In just a matter of minutes, you can complete an entire survey, resulting in a 3D point cloud, a digital surface model, and a true orthomosaic of the surveyed area. Additionally, it allows for the construction of detailed 3D collision scenes, incorporation of specific measurements, and sharing of insights seamlessly with leading forensic software platforms. To produce georeferenced 3D models, the captured images can be conveniently uploaded to PIX4Dcloud or exported to PIX4Dmatic, ensuring versatility in handling the data. This streamlined approach not only enhances productivity but also improves the accuracy of the results.
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