Telecom Infrastructure & OTDR Testing

Fiber Optic Splicing & Installation in Suceava

Professional engineering solutions for building, splicing, and maintaining urban, interurban, and industrial fiber optic communication networks.

Fiber Optic Fusion Splicing

Complete Fiber Optic Services

Precision calibration hardware for robust, ultra-fast B2B data transmission links.

Fusion Splicing

We perform single-mode (SM) and multi-mode (MM) fiber splicing using high-end Fujikura machines with core alignment, guaranteeing an insertion loss below 0.02 dB.

Splicing units: Fujikura FSM-70S / FSM-80S

OTDR Reflectometric Testing

Testing optical fiber quality at standard wavelengths (1310/1550 nm). We pinpoint stress areas, macrobends, bad connectors, or line cuts with high accuracy.

Detailed attenuation reports and optical loss budgets generated

Structured Cabling & FTTH

We construct underground or aerial transport networks, install joint closures, optical cabinets, patch panels, and active media converters for telecom operators.

Indoor LAN/WAN layout designs on fiber backbones

Technical Support & Emergency Repair

Rapid technician deployment for locating and repairing accidental optical fiber cuts. Equipped with portable OTDR systems for on-site diagnosis.

Response times guaranteed via service level agreement (SLA)

All optical tests include physical measurement logs generated using calibrated reflectometer modules.

REQUEST ROUTING BUDGET

Project Milestones

We ensure structured project management to minimize data transmission downtime:

Step 1
Feasibility & Layout Design

We map out the optimal fiber route (aerial/underground) and identify pole or duct access availability.

Step 2
Cabling & Physical Deployment

We pull the optical cables following strict bending radius guidelines and mechanical tension tolerances.

Step 3
Splicing & Patch Panel Setup

We fuse fibers inside joint closures or inside main indoor ODF patch panels.

Step 4
Reflectometric Testing (OTDR)

We perform bi-directional testing, compile logs, and hand over the official technical files.

Frequently Asked Questions

Why is OTDR testing necessary?
OTDR sends light pulses down the fiber and measures the backscattered light. It charts the exact fiber length, total signal loss, individual splice/splitter insertion loss, and accurately maps the distance of any cuts or cable damage.
What is the difference between Single-Mode and Multi-Mode fiber?
Single-Mode (SM) fiber has a narrow core (9 microns) and is optimal for long distances (over 10 km) because it runs a single light path. Multi-Mode (MM) fiber has a wider core (50/62.5 microns) and is used in local LAN architectures or data centers over short distances, using cheaper optical transceiver units.
What is the recovery time for a cut optical cable?
With an SLA support contract, our team responds within 2-4 hours. Pinpointing the fault with OTDR takes minutes, and splicing typically takes 1-3 hours depending on the fiber count of the damaged trunk.

Request Fiber Optic Quote

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