Build a Custom Network Monitoring Dashboard Using AI in Minutes
Describe your Network Monitoring Dashboard in plain English and Emergent delivers a build that's ready to launch. Design, development, and deployment in minutes. No code needed.
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Emergent Key Features for Building a Network Monitoring Dashboard
Utilisation, path quality and error trends, because device up and down says little about whether it works.
Utilisation in Both Directions
Each link is measured inbound and outbound separately, because saturation in one direction is invisible in a combined figure.
Path Quality Between Sites
Latency, jitter and loss are measured along the paths users actually traverse, rather than only checking whether devices respond.
Error Trend on Interfaces
Errors and discards are tracked as rates over time, catching a failing optic or cable while it is degrading rather than after it fails.
Saturation Forecasting
Utilisation trend is projected, so a circuit upgrade is planned before congestion starts affecting users.
Alert Correlation
Related alerts are grouped as one likely cause, which prevents a single failure presenting as thirty separate incidents.
Site Impact Translation
Each problem is expressed as the sites and services affected, so the service desk can respond to users without interpreting network detail.
Network Monitoring Dashboard Use Cases You Can Build in Minutes

See Saturation Coming before Users Do
Utilisation on each critical link in both directions against capacity, links exceeding your threshold, peak utilisation by hour, links trending toward saturation over recent weeks and the top traffic sources on each.
window.awbMockup = { linkUtilisation: "Build a network dashboard showing utilisation on each critical link in both directions against capacity, links exceeding your utilisation threshold, peak utilisation by hour of day, links trending toward saturation over recent weeks, and the top traffic sources contributing to load on each.", pathPerformance: "Build a network path dashboard showing latency, jitter and packet loss between each pair of sites against target, paths currently degraded, latency by hour to reveal congestion patterns, historical comparison for each path, and which paths carry traffic for services sensitive to loss.", deviceHealth: "Build a network device dashboard showing reachability, processor and memory utilisation, interface errors and discards, and uptime per device, devices with errors increasing on any interface, devices approaching resource limits, configuration changes recently applied, and devices not responding to polling.", networkIncident: "Build a network incident dashboard showing current alerts by severity and affected site, the services and user count affected by each, time since detection, correlated alerts likely sharing one root cause, recent configuration changes coinciding with an alert, and a history of incidents on the same link or device."};

Answer the Slowness Complaint in Seconds
Latency, jitter and packet loss between each pair of sites against target, paths currently degraded, latency by hour to reveal congestion patterns, historical comparison per path and which paths carry loss sensitive services.
window.awbMockup = { linkUtilisation: "Build a network dashboard showing utilisation on each critical link in both directions against capacity, links exceeding your utilisation threshold, peak utilisation by hour of day, links trending toward saturation over recent weeks, and the top traffic sources contributing to load on each.", pathPerformance: "Build a network path dashboard showing latency, jitter and packet loss between each pair of sites against target, paths currently degraded, latency by hour to reveal congestion patterns, historical comparison for each path, and which paths carry traffic for services sensitive to loss.", deviceHealth: "Build a network device dashboard showing reachability, processor and memory utilisation, interface errors and discards, and uptime per device, devices with errors increasing on any interface, devices approaching resource limits, configuration changes recently applied, and devices not responding to polling.", networkIncident: "Build a network incident dashboard showing current alerts by severity and affected site, the services and user count affected by each, time since detection, correlated alerts likely sharing one root cause, recent configuration changes coinciding with an alert, and a history of incidents on the same link or device."};

Catch the Failing Optic While It Degrades
Reachability, processor and memory utilisation, interface errors and discards and uptime per device, devices with errors increasing on any interface, devices approaching resource limits and recent configuration changes.
window.awbMockup = { linkUtilisation: "Build a network dashboard showing utilisation on each critical link in both directions against capacity, links exceeding your utilisation threshold, peak utilisation by hour of day, links trending toward saturation over recent weeks, and the top traffic sources contributing to load on each.", pathPerformance: "Build a network path dashboard showing latency, jitter and packet loss between each pair of sites against target, paths currently degraded, latency by hour to reveal congestion patterns, historical comparison for each path, and which paths carry traffic for services sensitive to loss.", deviceHealth: "Build a network device dashboard showing reachability, processor and memory utilisation, interface errors and discards, and uptime per device, devices with errors increasing on any interface, devices approaching resource limits, configuration changes recently applied, and devices not responding to polling.", networkIncident: "Build a network incident dashboard showing current alerts by severity and affected site, the services and user count affected by each, time since detection, correlated alerts likely sharing one root cause, recent configuration changes coinciding with an alert, and a history of incidents on the same link or device."};

One Incident Instead of Thirty Alerts
Current alerts by severity and affected site, the services and user count affected by each, time since detection, correlated alerts likely sharing one root cause, recent configuration changes coinciding and incident history per device.
One Incident Instead of Thirty Alerts
Current alerts by severity and affected site, the services and user count affected by each, time since detection, correlated alerts likely sharing one root cause, recent configuration changes coinciding and incident history per device.
Build a custom network monitoring dashboard in 4 simple steps
Track link utilisation, latency between sites, packet loss and interface errors in one view, so network problems are located rather than reported as slowness.
Start with your critical links and circuits, the sites and paths between them, acceptable latency and loss, interface error thresholds and the devices whose failure would matter. Emergent builds around your topology rather than a device inventory.
Link device polling, interface counters, flow data and path measurements between sites. Emergent turns counters into utilisation and error rates and evaluates paths continuously, so degradation is visible before it becomes an outage.
Ask to include a new site, add a monitored path, change a utilisation threshold or alter alert correlation rules, and the topology and path views rebuild.
Publish one link where the network team sees links and devices and the service desk sees which sites are affected. Reports of slowness get checked against measured path performance immediately.
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