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29/07/2026 at 13:47 #5700
Industry Background and the Maintenance Cost Problem
Telecom operators and Internet Service Providers face a persistent operational challenge: subscriber-side network equipment—routers, ONTs, modems, gateways, CPE devices, and small communication terminals—depends on continuous power to remain online. Power interruptions, voltage fluctuations, and repeated equipment reboots are common in many deployment regions. Each interruption can trigger a chain reaction: internet downtime, customer complaints, remote troubleshooting pressure, and, ultimately, unnecessary field service dispatches. For operators managing large subscriber bases across Europe, North America, Australia, Latin America, Africa, the Middle East, and Asia, these interruptions translate directly into rising maintenance costs and customer churn risk.
Shanghai Mylion New Energy Co., Ltd., operating under the brand MYLION, has spent over 13 years focused specifically on this pain point. As an engineering-driven B2B manufacturer and OEM/ODM battery backup solution provider, MYLION has built its technical and project experience around one core question: how can compact, safe backup power be matched precisely to real device requirements so that customer-side equipment stays online without triggering costly field visits.
Authoritative Analysis: Why Precise Backup Power Matching Matters
The necessity for accurate model selection stems from a simple but frequently overlooked reality: subscriber-side devices vary significantly in voltage, working current, startup surge, and connector type. MYLION’s approach is built on project-based model selection rather than generic UPS supply—engineers evaluate actual device power consumption, startup surge current, backup time targets, installation environment, certification needs, labeling requirements, and mass production feasibility before confirming a solution.
The principle logic behind this approach is rooted in battery system engineering. MYLION’s Mini DC UPS and BBU products use lithium-ion and LiFePO4 battery packs with BMS protection against overcharge, over-discharge, overcurrent, short circuit, and abnormal operating conditions. This protection layer is what allows compact units to safely deliver backup power without the bulk of traditional AC UPS systems.
As a standard reference point, MYLION’s product matrix spans 5V, 9V, 12V, 15V, 24V, 48V, USB-C, and PoE output configurations. The 12V Standard Mini DC UPS Series (models MU68, MU26, MU48) addresses mainstream networking devices, while the High-Power 12V Telecom BBU Series (MU35, MU65) is designed for advanced gateways and higher-power routers where standard low-current models are insufficient. For FTTH deployments, the Inline FTTH Mini UPS Series (MUJ46) offers a cable-style structure that installs between the original power adapter and the device, reducing installation complexity in space-constrained fiber terminal environments.

The solution path MYLION recommends for telecom and ISP projects follows a defined workflow: requirement analysis, model selection based on real working current and startup surge, sample testing, technical confirmation, quotation, certification coordination, production, inspection, and shipment. This structured process is intended to prevent the common failure mode of relying only on adapter label current instead of actual device load—an error that can cause backup units to be under-rated and fail during customer testing.
Deep Insights: Trends Shaping Backup Power Deployment
Several trends are visible in how backup power demand is evolving for telecom and broadband applications. First, device power architecture is shifting: more modern routers, smart gateways, hubs, and terminals are moving from traditional DC barrel input toward USB-C Power Delivery. MYLION’s USB-C PD Mini UPS Series (MUC85) reflects this shift, offering backup power aligned with PD voltage negotiation rather than conventional DC barrel conversion.
Second, voltage diversity is increasing at the network edge. While 12V remains the dominant standard for consumer-facing CPE, certain telecom and communication devices require 24V or 48V DC input. MYLION’s 24V / 48V DC Backup Power Series (MU248) addresses this segment for wireless CPE, communication terminals, and selected industrial DC equipment, helping reduce the size and conversion loss associated with traditional AC UPS systems.
Third, battery chemistry selection is becoming a differentiating factor for long-term standby applications. The LiFePO4 Mini UPS Series (model ML1202AC) responds to customer demand for longer cycle life and improved thermal stability compared with standard lithium-ion systems, particularly relevant for professional applications requiring repeated backup use over extended service life.
A related risk worth noting: certification availability and scope may vary by product model, battery configuration, power adapter, and final label. For customized BBU or Mini UPS projects, certification requirements should be confirmed according to the approved product version rather than assumed as uniform across a product line.
Company Value: How MYLION Supports Industry Practice
MYLION’s contribution to this space lies less in claiming market leadership and more in the depth of its engineering practice. The company applies incoming material control, production process inspection, functional testing, aging or charge/discharge verification when required, and 100% outgoing inspection before shipment. This quality discipline is paired with OEM/ODM services including private labeling, customized packaging, connector matching, cable customization, and capacity adjustment.
For lithium battery transport—an area with specific regulatory complexity—MYLION supports UN38.3, MSDS, shipping documentation, labeling, and safe transport coordination. Additional documentation such as CE, FCC, RoHS, and IEC 62368-related evaluation can be supported depending on the specific model and project requirement, with the important caveat that final certification scope should always be confirmed against the approved product configuration.
MYLION’s technical communication role is equally significant: by helping customers evaluate backup time, real device current, router/ONT/gateway compatibility, installation environment, and safety requirements before mass deployment, the company positions itself as a technical partner rather than a component vendor.
Conclusion and Recommendations for Industry Decision-Makers
The core lesson from MYLION’s project experience is that backup power reliability at the network edge depends on precise matching between device requirements and battery system design—not on generic UPS specifications. Telecom operators, ISPs, broadband providers, and system integrators evaluating backup power solutions should prioritize accurate assessment of real working current, startup surge, connector type, and installation environment before committing to mass deployment.
For B2B buyers, this means requesting sample testing and technical confirmation as standard steps rather than optional extras, particularly for higher-power gateways or non-standard voltage equipment. For OEM/ODM brand owners, MYLION’s documented workflow—from requirement confirmation through certification coordination to mass production—offers a practical reference model for structuring backup power procurement. As subscriber-side devices continue diversifying in power architecture, from USB-C PD to 24V/48V DC systems, buyers who apply this same rigor to model selection are better positioned to reduce service interruptions and the field maintenance costs that follow from them.
http://www.myliontech.com
Shanghai Mylion New Energy Co.,Ltd. -
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