Solution Overview

Shielded Cabling Solution

Standards: compliant with the GB50311/50312 national standards, ISO11801 and TIA568; Cat5e bandwidth 100MHz, Cat6 250MHz.

Product lineup: FTP single-foil and SFTP double-shielded cables, with shielded modules, patch panels and patch cords.

Solution: end-to-end shielding + reliable equipotential grounding; Cat5e for gigabit and Cat6 for short-reach 10G networking.

Applications: industrial control workshops, medical equipment rooms, government classified buildings, high-density data centers, broadcasting studios and other venues with strong interference or where information leakage must be prevented.

Free Consultation Hotline 400-087-8778

Solution Architecture

Solution Implementation Standards

Compliance Basis and Specifications

The entire shielded cabling system strictly follows national structured cabling standards GB50311 and GB50312, matching ISO 11801 and TIA 568 international cabling standards as well. All cable performance, construction techniques, and grounding requirements meet professional ELV engineering acceptance specifications, suitable for submission and review in high-standard classified and industrial projects.

Link Transmission Bandwidth

The system provides two link specifications: Cat5e shielded links with a rated bandwidth of 100MHz that stably carry Gigabit network transmission, and Cat6 shielded links with bandwidth up to 250MHz that, besides Gigabit office use, also support short-distance 10G data exchange, balancing current usage with short-term network upgrade needs.

Complete Hardware Product Set

Shielded Cable Categories

Cables come in two models: FTP with single-layer aluminum foil shielding and SFTP with double-layer composite shielding. Selection can be flexibly based on on-site electromagnetic interference levels; the double-layer structure offers stronger rejection of stray signals, suited to extremely high interference environments.

Full Set of Supporting Components

Matched with information modules of the same shielding rating, rack-mount shielded patch panels, and fully shielded patch cords at both ends, an end-to-end complete shielding loop is achieved, preventing signal leakage and electromagnetic crosstalk vulnerabilities caused by unshielded individual outlets.

System Construction Plan

Full-Link Shielding Loop

Shielded components are used throughout, from equipment room patch panels and cable tray trunks to terminal faceplates, with no unshielded parts mixed in, completely blocking external electromagnetic wave intrusion while preventing internal network signals from radiating outward and leaking.

Standardized Grounding Technique

The entire shielded architecture is equipped with a reliable equipotential grounding system, uniformly bonded to the equipment room grounding busbar, eliminating potential differences across shielding layers and avoiding network lag and packet loss faults caused by static buildup and circulating-current noise.

Applicable Scenario Scope

High-Interference and Classified Sites

Designed for complex electromagnetic and information-security-sensitive environments, it is widely applied in projects with strict anti-interference and anti-signal-leakage requirements, such as industrial control workshops, hospital medical equipment rooms, government classified office buildings, high-density data centers, and broadcast studio equipment rooms.

Solution Advantages

01 Superior Resistance to Electromagnetic Interference
02 Information Leak-Proof Security
03 Flexible Specification Options
04 Stable Long-Term Operation
The double-shielded structure blocks electromagnetic noise from frequency converters, high-power equipment, and high-voltage lines, ensuring no packet loss and stable transmission even under harsh conditions.
The complete shielding loop suppresses outward radiation of network signals, meeting the information confidentiality requirements of classified units and eliminating the risk of network signal eavesdropping.
FTP and SFTP cables provide tiered adaptation: FTP controls costs in light-interference scenarios, while SFTP ensures performance in strong-interference environments, suiting projects with different budgets.
Standardized grounding eliminates static electricity and current noise, reducing the probability of line faults and significantly cutting the frequency of network downtime and maintenance in industrial and classified scenarios.