Over the past year, copper prices have remained at historic highs. Driven by supply disruptions at major mines, copper prices rose by more than 40% in 2025 and have stayed near peak levels this year. Higher copper prices boost resale profits for scrap cables, and organised criminal gangs have targeted communication and power lines.
The statistics are striking. Canadian telecom giant Bell reported that copper cable theft incidents on its network have surged more than sixfold since 2022. As of 2026, 918 cases have occurred, roughly five per day, costing the company “millions of dollars annually”. A single incident can disrupt services for tens of thousands of customers.
Since July this year, seven cable theft cases have been recorded in the Neipu Township area of Pingtung County. Farms, orchards and construction sites have all been targeted. Seven victims suffered combined losses of approximately 900,000 RMB. Reports show thieves earn over 4,000 RMB by reselling just 15 metres of stolen cable, yet the theft halts production lines, causing direct and indirect economic losses exceeding 100,000 RMB.
For legacy industrial parks still running traditional copper networks, this creates a harsh reality: copper cables strung between buildings are no longer merely communications infrastructure — they are exposed, monetisable assets. Thieves cut a cable segment for a few hundred yuan in resale value, while the park faces business outages, potential data loss and emergency repairs lasting hours or even days.
Many facility managers assume copper theft losses only cover the cable material itself. The true impact is much broader.
The fundamental solution to recurring copper theft repair costs is not increased patrols or additional cameras. These measures only raise thieves’ risks without eliminating their profit motive. The real fix is to retire copper cables from the park network.
Optical fibre is mainly composed of silica and contains no copper. If a fibre cable is cut, thieves only obtain worthless glass filaments with almost no resale value. When copper disappears from the park network, theft loses its economic incentive. This is not just “securing cables against thieves”; it removes the motive for theft entirely.
AINOPOL’s enterprise park all-optical network solution follows exactly this logic. Built on a PON passive optical network foundation, it replaces copper cables with fibre extending from the core machine room to offices, production zones, warehouses and security camera points. Fibre delivers long transmission distances, massive bandwidth and immunity to electromagnetic interference. A single fibre supports up to 10 Gbps, and one-time deployment can accommodate bandwidth evolution for 20 to 30 years.
After renovation, the network no longer contains assets worth stealing. The largest cost component of emergency repairs — copper materials and construction labour — is permanently eliminated from the cost structure.
For IT managers, all-optical renovation transforms the network from a high-failure asset into low-maintenance infrastructure. Emergency tickets decline, and O&M teams shift from fire-fighting to network development.
For business decision-makers, hidden losses from copper theft — service disruption, data risks and reputational damage — are systematically eliminated under the all-optical architecture. Reduced repair expenses are only visible book savings; the greater value lies in guaranteed business continuity.
For system integrators, legacy parks suffering frequent copper theft are ideal opportunities to pitch all-optical upgrades. AINOPOL supports phased renovation: parks can deploy OLT in the core machine room first, gradually switching floors from copper to fibre while keeping old and new networks running in parallel without disrupting daily business. Integrators can evolve from emergency repair vendors to full network upgrade solution providers, shifting project value from one-off repairs to long-term managed services.
Q: Where are all-optical network repair costs lower than copper?
A: Copper repairs involve cable materials, conduit routing and connector termination, costing hundreds of US dollars per service call. Fibre repairs mainly require fusion splicing and link replacement with simpler workflows. Since fibre contains no stealable metal, there is no repeated loss from “repair only to be stolen again”.
Q: What does integrated communication-security mean in optical renovation?
A: Integrated communication-security embeds security functions directly into the all-optical network gateway. While building the fibre infrastructure, the park obtains native capabilities including real-name authentication, 180-day log retention, IPS intrusion prevention, AV antivirus and traffic control. There is no need to deploy standalone security devices after network construction.
Q: What service life can all-optical networks achieve?
A: Fibre far outlasts copper physically. Industry experience shows fibre can remain in service for 30 years without cable replacement. Bandwidth upgrades are achieved by swapping end-side devices rather than re-cabling. Copper is constrained by bandwidth limits and ageing, often requiring large-scale replacement within just a few years.
Q: Which parks fit this solution?
A: Legacy enterprise parks, industrial parks and chain campuses still using copper networks, suffering cable theft or frequent breakdowns. It is especially suitable for sites with cluttered weak-current rooms, limited O&M staff and high requirements for network reliability.