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    Rajant 5G mesh solutions: design and deployment notes for autonomous mines

    December 19, 2025|

    Reviewed by Tom Sullivan

    First reported on International Mining – News

    30 Second Briefing

    Rajant Corporation has launched the SLP-1025 Slipstream gateway and Hawk FE1-2450G triple-radio BreadCrumb®, integrating 5G directly into its industrial wireless mesh architecture. The Hawk FE1-2450G combines three radios with embedded 5G to support low-latency links for autonomous haul trucks, high-definition video and real-time fleet telemetry across large open pits and underground drifts. The SLP-1025 acts as a high-throughput edge gateway, allowing mines to design distributed computing networks with 5G backhaul from initial deployment rather than retrofitting later.

    Technical Brief

    • SLP-1025 Slipstream is positioned as a high-performance gateway for industrial wireless backhaul and edge aggregation.
    • Hawk FE1-2450G is described as a “next-generation” triple-radio BreadCrumb® node within Rajant’s mesh portfolio.
    • Design intent is to support distributed computing architectures, pushing processing closer to equipment and sensors.

    Our Take

    Rajant Corporation is one of only a few pure-play networking vendors appearing in our 399 Mining stories, signalling that industrial connectivity is still largely treated as an enabling layer rather than a core mining competency in most project write-ups.

    Within the 796 tag-matched ‘Projects’ and ‘Product’ pieces, most digital infrastructure items focus on Wi-Fi or LTE; explicit 5G-integrated mesh solutions like Rajant’s are still relatively rare, suggesting early-mover advantage for brownfield retrofits and autonomous haulage corridors.

    Because this article is not tied to a specific country or commodity, Rajant’s mesh offering is positioned as a cross-commodity tool, which in practice tends to see fastest uptake at large open-pit operations where mobile equipment density makes deterministic, low-latency links commercially critical.

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    Prepared by collating external sources, AI-assisted tools, and Geomechanics.io’s proprietary mining database, then reviewed for technical accuracy & edited by our geotechnical team.

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