Guarantee maximum optical throughput and zero packet loss with our professional fusion splicing and optical time-domain reflectometer (OTDR) testing services. Using Japanese core-alignment machines, our certified technicians achieve ultra-low splice attenuation (<0.02 dB) for single-mode and multimode backbones across Hyderabad.
From indoor data center LIU terminations to outdoor underground road-cut restorations, our field teams are equipped with industry-leading machinery.
Microscopic 3-axis core-to-core alignment fusion splicing that minimizes back-reflection and guarantees insertion loss under 0.02 dB per joint.
Neat routing and splicing of pigtails into 12, 24, 48, and 96-port Light Interface Units (LIUs) with heat-shrink protection sleeves and numbered identification tags.
Locating exact fault distances, splice insertion loss, bend macro-losses, and connector return loss using calibrated dual-wavelength (1310/1550nm) OTDRs.
Tier-1 end-to-end decibel (dB) attenuation testing to verify that optical links meet strict IEEE 802.3ae 10G/40G link loss budget parameters.
Sealing and mounting IP68 dome or inline underground optical splice closures in manholes, road chambers, and telecommunication towers.
Rapid dispatch teams ready 24/7 to detect road-construction fiber cuts using live OTDRs, pull replacement slack, and re-splice backbones immediately.
We follow Telcordia and TIA-455 international optical testing standards on every single project.
Cable buffer tubes are stripped using thermal strippers and cleaved with diamond-blade precision cleavers to ensure an exact 90-degree flat glass end-face.
The fibers are aligned on X-Y-Z axes using high-magnification cameras and fused together with a controlled high-voltage electric arc.
The machine performs an automatic 200g tensile pull test to verify mechanical weld strength before sealing with a steel-reinforced heat shrink sleeve.
Every core is tested from both ends using an OTDR. We generate official PDF trace reports documenting exact length, splice events, and dB loss.
Clad-alignment machines only align the outer 125-micron glass cladding; if the 9-micron light-carrying core is slightly offset inside the cladding, significant optical loss occurs. Core-alignment machines (which RV Network Solutions uses exclusively) use advanced optics and motors to view and align the actual light-carrying core directly, guaranteeing ultra-low loss (<0.02 dB) and high durability.
An Optical Time-Domain Reflectometer (OTDR) report acts like an ultrasound for fiber cables. It injects laser light pulses and measures back-reflection, accurately identifying: the exact length of the fiber run in meters, the location and loss (in dB) of every fusion splice, connector reflectance, macro-bends causing signal leaks, and the exact distance to any cable break or cut down to the meter.
For enterprise clients and critical data center links, our emergency optical restoration team can mobilize with vehicle-mounted splicers and OTDRs within 60 to 90 minutes anywhere in Hyderabad, HITEC City, Gachibowli, and Medchal districts.
Yes. Our fusion splicers feature automated fiber-type recognition that calibrates arc intensity and alignment parameters for Single-Mode (G.652.D, G.657 bend-insensitive) as well as 50/125μm Multimode (OM2, OM3, OM4, OM5) cables.