Interactive Topology Diagram

Connecting the dots: Exploring the pathways of digital connectivity with network topology

TCPWAVE

TCPWave offers a comprehensive network discovery feature that enables network engineers to get a bird's-eye view of their network infrastructure. TCPWave discovery results are not just presented in structured tables with tabs, but they are also visually represented through a network topology. The network topology gives a graphical representation of the network layout, showing the interconnections between different devices. This representation allows network engineers to quickly identify network elements that are misconfigured or not working correctly. The topology view also helps them to take necessary actions for the tasks at hand.

TCPWave provides a scalable solution for network discovery, which is capable of handling the requirements of even the largest enterprise network sizes. Administrators and engineers can configure multiple agents and execute them concurrently, ensuring fast and efficient network discovery processes, even in complex network environments. This solution enables organizations to gain a better understanding of their network infrastructures, identify areas for improvement, and optimize network performance.

TCPWave's network discovery feature provides a powerful tool for network administrators and engineers to monitor and troubleshoot network issues quickly and efficiently. By leveraging the visual representation of network topology, engineers can easily identify where problems are occurring in the network. They can then take the necessary actions to fix these issues before they cause further disruptions. TCPWave's network discovery is an essential component of network management, ensuring that organizations can maintain a stable and secure network infrastructure.

TCPWave Discovery Topology Diagram
discovery

PLAN

  • Identify discovery methods, devices to poll.
  • Obtain credentials.
  • Optimized Resource Allocation.

DISCOVER

  • The discovery engine automatically collects network.
  • It discovers subnets and switch ports.

ANALYZE

  • Data is analyzed before it is added.
  • A diff engine performs a delta and awaits the logic of the rules engine to trigger.

INTEGRITY CHECK

  • Rules embedded into the TCPWave IPAM determine the order of the conflict resolution in a network discovery.

DATA RECONCILATION

  • Remediated data.
  • Filtered out by the integrity checks.
  • Automatically added to the TCPWave IPAM.

Featured Resources


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