Statseeker
Statseeker stands out as a robust network performance monitoring solution, designed to be both rapid and scalable while also being budget-friendly.
With the capability to set up on a single server or virtual machine in mere minutes, Statseeker can map out your entire network in less than an hour, all without significantly affecting your bandwidth availability.
It supports monitoring for networks of various sizes, polling up to a million interfaces every minute and gathering an array of network data types, including SNMP, ping, NetFlow (along with sFlow and J-Flow), syslog, trap messages, SDN configurations, and health metrics.
What sets Statseeker apart is its approach to performance data, which are never averaged or rolled up, thereby removing uncertainty in tasks such as root cause analysis, capacity planning, and identifying over- or under-utilized infrastructure.
The solution's comprehensive data retention allows its built-in analytical engine to accurately recognize performance anomalies and predict network behaviors well in advance, empowering network administrators to engage in proactive maintenance rather than merely addressing issues as they arise.
Furthermore, Statseeker provides intuitive dashboards and ready-to-use reports, enabling users to identify and resolve network issues before they impact end users, ensuring a smoother and more reliable network experience overall.
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AdRem NetCrunch
NetCrunch is a modern, scalable network monitoring and observability platform designed to simplify infrastructure and traffic management across physical, virtual, and cloud environments. It monitors everything from servers, switches, and firewalls to operating systems, cloud platforms like AWS, Azure, and GCP, including IoT, virtualization (VMware, Hyper-V), applications, logs, and custom data via REST, SNMP, WMI, or scripts-all without agents.
NetCrunch offers over 670 built-in monitoring packs and policies that automatically apply based on device role, enabling fast setup and consistent configuration across thousands of nodes. Its dynamic maps, real-time dashboards, and Layer 2/3 topology views provide instant visibility into the health and performance of the entire infrastructure. Unlike legacy tools like SolarWinds, PRTG, or WhatsUp Gold, NetCrunch uses simple node-based licensing with no hidden costs, eliminating sensor limits and pricing traps.
It includes intelligent alert correlation, alert automation & suppression, and proactive triggers to minimize noise and maximize clarity, along with 40+ built-in alert actions including script execution, email, SMS, webhooks, and seamless integrations with tools like Jira, PagerDuty, Slack, and Microsoft Teams. Out-of-the -box AI-enhanced root cause analysis and recommendation for every alert.
NetCrunch also features full hardware and software inventory, device configuration backup and change tracking, bandwidth analysis, flow monitoring (NetFlow, sFlow, IPFIX), and flexible REST-based data ingestion. Designed for speed, automation, and scale, NetCrunch enables IT teams to monitor thousands of devices from a single server, reducing manual work while delivering actionable insights instantly.
Designed for on-prem (including air-gapped), cloud self-hosted or hybrid networks, it is the ideal future-ready monitoring platform for businesses that demand simplicity, power, and total infrastructure awareness.
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Noction Flow Analyzer (NFA)
Noction Flow Analyzer serves as a comprehensive tool for network monitoring, alerting, and analytics, capable of processing data from NetFlow, IPFIX, and sFlow. Network engineers can leverage this analyzer to enhance both network and application performance, manage bandwidth utilization effectively, strategize for future network capacity, and receive timely alerts. Additionally, it facilitates in-depth analyses of BGP peering and bolsters security measures, ensuring that the network operates efficiently and securely. With its robust features, the tool proves invaluable for maintaining optimal network conditions.
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flannel
Flannel acts as a dedicated virtual networking layer specifically designed for containerized applications. When working within the OpenShift Container Platform, it can serve as an alternative networking solution to the conventional software-defined networking (SDN) components. This method proves especially beneficial for OpenShift deployments in cloud settings that also utilize SDN technologies, such as OpenStack, by eliminating the need for redundant packet encapsulation between the two systems. Each flanneld agent is responsible for sending information to a centralized etcd store, which allows other agents on different hosts to efficiently route packets to various containers within the flannel network. Furthermore, the accompanying diagram illustrates the architecture and data flow that facilitate communication among containers operating over a flannel network. This configuration not only boosts overall network performance but also streamlines the management of containers in intricate environments, ultimately leading to better resource utilization and operational efficiency.
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