Strand-Level Fiber GIS Mapping & ODN Splitter Topology Software
Design, build, and operate your optical distribution network with micro-precision. Visualize individual fiber strands, splice trays, ODN splitters, and live optical power telemetry (dBm) seamlessly integrated with OSS/BSS subscriber billing.
End-to-End ODN Path & Telemetry Visualization
From central office ODF down to last-mile customer optical drop cables.
Central Office ODF
High-density optical distribution frames connected to Huawei, Nokia, or ZTE OLT chassis.
Feeder & Splice Closures
Strand-level buffer tube tracing (12-288 core) with fusion splice loss calculations.
ODN Splitter Trees
Layered 1:4, 1:8, 1:16, 1:32, and 1:64 balanced and asymmetric PLC splitters.
Drop & Subscriber ONT
Last-mile drop cable path connected to CRM customer profile and live Rx optical telemetry.
Enterprise Fiber GIS Capabilities for FTTH Operators
Replace static CAD files with living, telemetry-driven geospatial intelligence.
Strand-Level Fiber Core Tracking
Manage color-coded 12-core buffer tubes, ribbon cables, pigtails, and connector loss budgets across all outdoor closures.
Live Optical Loss Overlay (dBm)
Correlate real-time OLT and ONT optical power readings directly onto the GIS map to flag degrading splices before customers drop.
OTDR Fault Triangulation
Input OTDR reflection distance measurements to pinpoint exact road and pole coordinates of fiber cuts for field splicing crews.
CRM Feasibility & Splitter Port Capacity
Sales teams check available splitter capacity and auto-generate installation work orders right from subscriber lead addresses.
KML / Shapefile Vector Import
Import utility poles, underground ducts, right-of-way boundaries, and legacy fiber drawings with full attribute mapping.
Integrated Mobile Splicer App
Field engineers view closure splice diagrams, update port assignments, and upload optical power test proofs directly from mobile.
Frequently Asked Questions
How does strand-level fiber GIS mapping work from central office to customer ONT?
Kashtrix models the entire optical distribution network (ODN) at individual fiber strand precision. You can visualize color-coded buffer tubes (TIA/EIA-598 standards), fusion splices inside underground closures, 1:4/1:8 primary splitters, 1:32/1:64 secondary distribution boxes, and drop wires connecting directly to subscriber ONTs.
How is live network telemetry and optical loss mapped onto GIS paths?
Kashtrix continuously polls SFP optical transmit power and subscriber ONT receive power (dBm) via SNMP/OMCI. If optical attenuation spikes on a particular feeder cable or splitter cluster, Kashtrix color-codes the GIS path (Green = > -22dBm, Yellow = -23 to -26dBm, Red = < -27dBm), immediately pinpointing micro-bends or degraded splices.
Can we import Shapefiles, KMZ/KML, and export CAD drawings?
Yes. Kashtrix supports bidirectional GIS vector syncing with KML, KMZ, GeoJSON, and ESRI Shapefiles. Outdoor plant assets, poles, manholes, splice closures, and customer drop boundaries can be imported with automatic attribute mapping.
How does GIS mapping integrate with CRM subscriber billing and feasibility checks?
When sales teams enter a lead address in the CRM, Kashtrix runs an instant GIS feasibility check: calculating the distance to the nearest available optical splitter port, estimating drop cable length, and verifying port availability before generating an automated quote and work order.
Transform Your Physical Fiber Network Visibility
Request a live demo of Kashtrix Strand-Level Fiber GIS and ODN Splitter Topology Mapping.
Request GIS Demo