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Unified Observability Platform for Modern IT Operations

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Network Observability

End-to-End Network Path Visibility

Follow network traffic through each segment, hop, and cloud boundary. Pinpoint where performance degrades or connectivity fails.

Key Highlights

Path Assurance

Motadata ObserveOps delivers complete path visibility spanning WAN, SD-WAN, MPLS, and cloud networks, tracing each hop for latency and loss, with historical replay so postmortems start with evidence.

Full Route Visualization

Trace paths from source to destination through all topology segments.

  • End-to-end path tracing spanning WAN, MPLS, SD-WAN, and internet segments.

  • Complete route visualization showing each hop from source to destination endpoint.

  • Path comparison between primary and failover routes for redundancy validation.

  • Live path rendering reflecting current routing conditions, not static documentation.

Hop-by-Hop Health Monitoring

Identify the specific segment or device behind path performance problems.

  • Per-hop latency measurement isolating where delay enters each path.

  • Per-segment packet loss measurement identifying the link causing loss events.

  • Jitter measurement for paths carrying latency-sensitive voice and video traffic.

  • Hop availability tracking detecting intermittent failure at specific segments.

Correlated Path & Performance Intelligence

Connect path data with device and interface signals for full diagnostic context.

  • Correlation of hop latency increases with device CPU and interface utilization spikes.

  • Path performance trend analysis linking route-level conditions with device-level metrics.

  • Traffic volume correlation between hop congestion and path performance.

  • Historical path performance data for recurring bottlenecks and chronic path issues.

SD-WAN & Cloud Path Monitoring

Extend path visibility to modern hybrid connectivity architectures.

  • SD-WAN underlay and overlay monitoring with per-path performance measurement.

  • Cloud path visibility for AWS Direct Connect, Azure ExpressRoute, and internet breakout paths.

  • Application path selection validation confirming SD-WAN policies route traffic as configured.

  • Cloud provider path quality monitoring for latency and availability to major regions.

Path Quality SLA Tracking

Measure path performance against the quality commitments applications require.

  • Path quality SLO definition with latency, loss, and jitter thresholds per application class.

  • Continuous SLA adherence tracking for voice, video, and business-critical traffic.

  • SLA breach prediction alerting when path quality trends indicate commitment risk.

  • Path quality compliance reporting for WAN provider SLA management and contract review.

Historical Path Replay for RCA

Reconstruct path conditions during past incidents for accurate postmortems.

  • Historical path state playback of routing and performance evolution through an incident.

  • Pre-incident path baseline comparison revealing changes that preceded the event.

  • Routing change detection identifying rerouting events that correlated with degradation.

  • Evidence packaging combining path replay with correlated device and interface data.

Intelligence

From Network Hop to Complete Path Clarity

Network performance problems between two endpoints are rarely at either endpoint. The problem lives along the path, at a hop where a device is congested, a link is degraded, or a routing change has steered traffic through a suboptimal segment. Absent path visibility, finding that hop means manual traceroute commands, device-by-device investigation, and correlating data from multiple tools: a slow, impractical process under active incident pressure.

End-to-End Path Visibility compresses this into one correlated path view. The route renders live from source to destination. Each hop is measured, and performance across all segments is correlated with device data, identifying the failing hop directly rather than inferring it from device-level alerts that miss where the problem sits.

How It Works

Network Path Visibility Architecture

01

Trace

Run path discovery using ICMP traceroute, SNMP route table queries, and protocol topology data.

02

Measure

Measure hop-by-hop latency, packet loss, and jitter per segment.

03

Probe

Source these from synthetic probes and flow data correlation.

04

Correlate

Correlate per-hop measurements with device and interface performance metrics from Motastore.

05

Evaluate

Apply path quality SLO evaluation against defined latency, loss, and jitter thresholds.

06

Record

Record historical path state and performance data for replay and postmortem analysis.

07

Visualize

Display path visualization and hop-level diagnostics through path investigation dashboards.

Each hop measured. All segments analyzed. Any path fully visible, live and historically.

Role-Based Value

Precision for Every Role

For CIOs / CTOs

  • Show WAN providers and cloud partners that path quality commitments are monitored continuously.

  • Show WAN providers and cloud partners that path quality commitments are monitored continuously.

For IT Directors / Managers

  • Close the accountability gap in WAN and cloud connectivity performance.

  • Close the accountability gap in WAN and cloud connectivity performance.

For NOC Engineers / SREs

  • Replace manual traceroute analysis with continuous, automated path monitoring that identifies the degraded hop before investigation begins.

  • Replace manual traceroute analysis with continuous, automated path monitoring that identifies the degraded hop before investigation begins.

For Network Engineers

  • Use path quality SLA tracking to confirm SD-WAN policies route traffic through the expected paths.

  • Use path quality SLA tracking to confirm SD-WAN policies route traffic through the expected paths.

From Visibility to Control

From Endpoint Complaints to Hop-Level Diagnosis

Hop-Level Precision

Faster incident resolution through direct hop-level identification of path degradation.

Beyond-Boundary Visibility

SD-WAN and cloud path monitoring extending visibility beyond the enterprise boundary.

Postmortem Path Evidence

Historical path replay enabling accurate postmortem analysis, no data reconstruction needed.

WAN Provider Accountability

Path quality SLA tracking providing evidence-based WAN provider performance management.

Full Diagnostic Context

Hop-level latency and loss correlation with device data for full diagnostic context.

Explore More

Continue Exploring Network Observability Capabilities

Uptime Assurance

Device and link availability monitoring that path visibility extends with hop-level health tracking.

Performance Insight

Device performance data that path visibility correlates with per-hop measurements for full diagnosis.

Dynamic Topology Mapping

Live network topology that gives the routing context path visibility traces through.

See the Full Path Between Any Two Endpoints

Motadata ObserveOps traces the forwarding path hop by hop, identifies bottlenecks at each step, and proves end-to-end delivery.

Motadata ObserveOps Network Observability. Path intelligence you can trust.