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The UACC-OM-SFP28-LR is Ubiquiti’s official 25GBASE-LR SFP28 optical transceiver, engineered for high-throughput single-mode fiber (SMF) enterprise networks. Operating at a 1310nm wavelength, it delivers a 25.78 Gbps data rate over distances up to 10 kilometers. Compliant with IEEE 802.3cc standards, this module is primarily deployed in UniFi Enterprise XG and Pro Aggregation switches to guarantee native controller integration, precise optical monitoring, and zero-packet-loss backbone connectivity.
As enterprise campus networks and high-density data centers transition from 10G to 25G backbones, selecting the correct optical transceiver is critical for maintaining optical budgets and hardware thermal stability. Upgrading a core network is no longer just about plugging in a cable; it requires precise alignment of fiber types, transceiver specifications, and switch compatibility.
While Ubiquiti provides robust switching infrastructure, network architects frequently evaluate whether the official UACC-OM-SFP28-LR justifies its OEM premium compared to Multi-Source Agreement (MSA) compliant alternatives. Understanding the exact physical layer parameters—such as insertion loss thresholds and Tx/Rx power ranges—is essential before deploying these optics in a 10km Long-Range (LR) topology.
Core Technical Overview
For network engineers building a Bill of Materials (BOM), here are the immediate physical and technical parameters of the UACC-OM-SFP28-LR:
This technical documentation provides an in-depth, data-driven analysis of the UACC-OM-SFP28-LR. In the following sections, we will explore its 10km optical performance metrics, critical thermal management strategies under heavy switch loads, native compatibility with UniFi ecosystems, and a comprehensive procurement comparison between OEM and third-party optics to support your IT purchasing decisions.
The UACC-OM-SFP28-LR is Ubiquiti’s proprietary 25 Gbps Long-Range (LR) optical transceiver. Utilizing the SFP28 form factor, its primary purpose is to establish high-capacity, low-latency backbone uplinks between enterprise switches. By leveraging a 1310nm laser over Single-Mode Fiber (SMF), it reliably transmits data up to 10 kilometers without signal degradation, making it the standard choice for UniFi-driven campus networks and distributed data centers.

To understand the operational value of the UACC-OM-SFP28-LR, network architects must look beyond basic connectivity and evaluate its role in high-throughput infrastructure. SFP28 (Small Form-factor Pluggable 28) is a direct physical evolution of the widely used 10G SFP+ interface. However, instead of being capped at 10 Gbps, SFP28 hardware processes a single 25 Gbps electrical lane, delivering 2.5 times the bandwidth with a nearly identical physical footprint and similar power draw.
| Specification | Value |
|---|---|
| Form Factor | SFP28 (Hot-Swappable) |
| Ethernet Standard | 25GBASE-LR |
| Supported Data Rates | 1G / 10G / 25G |
| Maximum Throughput | 25.78 Gbps Line Rate |
| Fiber Type | OS2 Single-Mode Fiber (SMF) |
| Maximum Distance | 10 km (6.2 mi) |
| Connector | Duplex LC UPC |
| Operating Wavelength | 1310 nm |
| Transmitter | DFB (Distributed Feedback) Laser |
| Receiver | PIN Photodetector |
| Power Consumption | 1.3 W Max |
| Operating Temperature | 0°C to 70°C |
| Interface Compatibility | SFP, SFP+, SFP28 |
The target use case for the UACC-OM-SFP28-LR revolves around alleviating network bottlenecks at the distribution and core layers. In a typical enterprise deployment, edge switches (providing 1G or 2.5G PoE to access points and workstations) aggregate back to distribution switches.
When multiple distribution switches—such as the UniFi Enterprise XG 24—need to uplink to a core switch like the UniFi Switch Pro Aggregation, a standard 10G link quickly becomes a choke point. The UACC-OM-SFP28-LR facilitates a massive 25G pipe between these network tiers. Furthermore, its 10km range makes it purpose-built for inter-building connectivity, such as linking a university science building back to the central campus data center.
In modern network architecture, 25G is rapidly replacing 10G as the de facto standard for switch-to-switch and switch-to-server connections. But why choose the LR (Long-Range / Single-Mode) variant over the cheaper SR (Short-Range / Multi-Mode) option?
The decision comes down to future-proofing and modal dispersion. Multi-Mode Fiber (MMF) suffers from modal dispersion at high speeds, strictly limiting 25G SR modules to a maximum distance of 100 meters. By standardizing on a 25G Single-Mode link strategy using the UACC-OM-SFP28-LR and OS2 fiber, IT administrators achieve three critical advantages:
To guarantee a stable 25 Gbps link over 10 kilometers, the UACC-OM-SFP28-LR operates at a 1310nm wavelength with a Transmitter (Tx) power range of -8.4 to +2.4 dBm and a Receiver (Rx) sensitivity of -13.3 dBm. This establishes an optical power budget capable of easily overcoming the standard 0.4 dB/km attenuation inherent to OS2 single-mode fiber, ensuring zero-packet-loss transmission at maximum range.

When deploying optical transceivers for long-haul enterprise uplinks, relying solely on the "10km" marketing specification is insufficient for robust network engineering. Real-world performance is dictated by the optical power budget—the difference between the minimum transmit power and the minimum receiver sensitivity. Network architects must calculate this budget against the physical insertion loss of the fiber plant.
The UACC-OM-SFP28-LR conforms strictly to IEEE 802.3cc 25GBASE-LR standards. Below are the precise optical metrics network engineers must reference when auditing their fiber infrastructure:
| Optical Parameter | Specification | Engineering Implication |
|---|---|---|
| Center Wavelength | 1310 nm | Optimized for zero chromatic dispersion in standard SMF. |
| Tx Output Power | -8.4 to +2.4 dBm | Sufficient launch power to drive the signal without overloading short-distance receivers. |
| Rx Sensitivity (Max) | -13.3 dBm | The minimum signal strength required to maintain link integrity before FEC intervention. |
| Receiver Overload | +2.4 dBm | Prevents photodiode burnout on ultra-short patch runs (under 2 meters). |
To validate the UACC-OM-SFP28-LR for a maximum 10km deployment, we must analyze the physical link loss. Standard OS2 single-mode fiber exhibits an attenuation rate of approximately 0.35 to 0.4 dB per kilometer at the 1310nm wavelength.
Given the UACC-OM-SFP28-LR’s minimum Tx power (-8.4 dBm) and Rx sensitivity (-13.3 dBm), the module provides a minimum guaranteed optical budget of 4.9 dB. However, typical operational Tx power hovers around -2.0 dBm, providing a functional budget closer to 11 dB. This leaves a comfortable margin for aging fiber infrastructure and micro-bends, ensuring the 10km performance metric is consistently achievable in field deployments.
Unlike 10G SFP+ modules, 25G transmission introduces a significantly higher risk of signal degradation over distance. To maintain a Bit Error Rate (BER) of less than 10-12 over a 10km SMF run, the UACC-OM-SFP28-LR relies on RS-FEC (Reed-Solomon Forward Error Correction).
Term Definition: RS-FEC is an advanced error-control coding technique implemented at the switch level. It allows the receiving UniFi switch to detect and mathematically correct bit errors induced by optical noise or dispersion without requesting a packet retransmission.
When deploying the UACC-OM-SFP28-LR in third-party switches or mixed environments, administrators must ensure that RS-FEC is enabled on both host ports. Disabling FEC on a 10km 25G link will result in dropped packets, degraded throughput, and frequent link flapping.
The UACC-OM-SFP28-LR guarantees native, plug-and-play compatibility across Ubiquiti’s 25G-capable switching tier, most notably the UniFi Switch Pro Aggregation and UniFi Enterprise XG 24. As an official OEM module, it integrates seamlessly into the UniFi Network Controller to provide accurate Digital Optical Monitoring (DOM) telemetry. Additionally, it features backward compatibility with legacy 10G SFP+ ports, auto-negotiating to 10 Gbps to bridge legacy distribution layers with next-generation 25G cores.

Hardware compatibility is often the primary friction point in optical deployments. Network engineers must ensure that the transceiver not only establishes a physical link but also communicates operational telemetry back to the switch OS. The UACC-OM-SFP28-LR is engineered to eliminate the firmware mismatches and "unsupported transceiver" errors frequently encountered in mixed-vendor environments.
Deploying official Ubiquiti optics yields significant management advantages within the UniFi OS dashboard. The UACC-OM-SFP28-LR fully supports DOM (Digital Optical Monitoring), also referred to as DDMI (Digital Diagnostics Monitoring Interface).
Term Definition: DOM is an industry-standard feature that allows network administrators to monitor real-time physical layer telemetry—specifically module temperature, operating voltage, laser bias current, and Tx/Rx optical power levels.
When the UACC-OM-SFP28-LR is inserted into a UniFi Pro Aggregation switch, the UniFi Network Controller accurately populates this DOM data. This native integration is critical for remote troubleshooting. If a 10km link begins dropping packets, administrators can instantly view the Rx power levels in the controller to determine if the issue is a degrading fiber patch or a logical software fault, without needing a physical optical power meter.
A common architectural challenge during network upgrades is connecting new 25G core switches to existing 10G infrastructure. The SFP28 form factor is physically identical to the legacy SFP+ interface, allowing for inherent backward compatibility.
Engineering Note: While Auto-Negotiation generally handles this downshift smoothly, field deployments indicate that mixed-speed links (25G switch port to 10G switch port) achieve the highest stability when port speeds are statically assigned to 10 Gbps FDX (Full Duplex) within the UniFi Controller, rather than relying on Auto-Negotiate.
While Ubiquiti designs the UACC-OM-SFP28-LR specifically for the UniFi ecosystem, the module complies strictly with the SFF-8402 MSA (Multi-Source Agreement) standard. This means the transceiver utilizes standard I2C EEPROM coding.
From a technical standpoint, this MSA compliance allows the module to establish Layer 1 links with third-party networking equipment (such as MikroTik, Aruba, or FS switches) that do not enforce strict vendor lock-in. However, IT procurement teams should note that Ubiquiti’s Technical Assistance Center (TAC) typically requires both ends of the fiber link to utilize Ubiquiti hardware for official warranty support and advanced troubleshooting.
To achieve the maximum 10km range with the UACC-OM-SFP28-LR, deployments must utilize OS2 Single-Mode Fiber (SMF) terminated with Duplex LC UPC connectors. OS2 fiber features a microscopic 9µm core that eliminates modal dispersion, allowing 25G signals to travel vast distances with minimal attenuation. Proper physical layer planning—specifically adhering to blue UPC connector standards and rigorous end-face cleaning—is mandatory to prevent insertion loss from degrading the optical budget.

The performance of any 25G optical transceiver is fundamentally limited by the quality of the physical fiber plant. Transmitting data at 25.78 Gbps over 10 kilometers leaves virtually no room for error regarding cable selection, connector geometry, and installation hygiene. Network engineers must align their infrastructure with strict physical layer standards to guarantee stable links.
The UACC-OM-SFP28-LR is engineered exclusively for Single-Mode Fiber (SMF), which features a 9/125µm core-to-cladding ratio. Unlike Multi-Mode Fiber (MMF), which allows multiple light modes to bounce down a wider core (causing modal dispersion over distance), SMF propagates a single, focused beam of laser light.
When planning a 10km deployment, administrators must specify OS2 fiber rather than legacy OS1.
The module interface utilizes a Duplex LC UPC connector format. Understanding this terminology is critical for avoiding catastrophic installation errors.
Term Definition: LC (Lucent Connector) is a small form-factor fiber connector that relies on a push-pull latching mechanism. Duplex simply means two parallel fibers are used—one for Transmit (Tx) and one for Receive (Rx).
The most critical specification is UPC (Ultra Physical Contact). UPC connectors feature a flat, machine-polished end-face designed to maximize surface area contact, yielding a return loss of -50dB or better. They are universally color-coded Blue. Network technicians must ensure they are matching the blue LC connectors of their patch cables to the transceiver.
Crucial Engineering Warning: Never insert an APC (Angled Physical Contact, color-coded Green) connector into the UACC-OM-SFP28-LR. APC connectors are polished at an 8-degree angle. Forcing a green APC connector into a flat UPC transceiver will crush the internal laser diode, permanently destroying the Ubiquiti module.
Because the SMF core is only 9 micrometers wide (roughly one-tenth the width of a human hair), even microscopic contaminants will cause massive signal reflection and insertion loss. To pass 25G traffic reliably, adherence to the IEC 61300-3-35 fiber inspection standard is highly recommended.
From a physical layer perspective, high-quality, MSA-compliant third-party 25GBASE-LR modules deliver identical 10km performance to the OEM UACC-OM-SFP28-LR. Because Ubiquiti does not enforce strict vendor lock-in within UniFi switch firmware, properly coded third-party transceivers seamlessly pass 25 Gbps traffic and report accurate DOM telemetry. The primary difference lies in enterprise support: OEM modules guarantee frictionless troubleshooting with Ubiquiti TAC, while third-party optics offer up to 70% cost savings.

In enterprise IT procurement, optical transceivers often represent a disproportionate percentage of the networking budget. Retailing at approximately $149 per unit, fully populating a 24-port UniFi Enterprise XG or Pro Aggregation switch with official UACC-OM-SFP28-LR modules requires a capital expenditure of over $3,500—often exceeding the cost of the switch itself.
This financial reality forces network architects to evaluate third-party alternatives. By analyzing physical performance metrics, MSA (Multi-Source Agreement) standards, and real-world deployment data, we can objectively compare the OEM module against reputable compatible optics.
Optical communication relies on strict physics, not brand names. Both the Ubiquiti UACC-OM-SFP28-LR and premium third-party alternatives (from vendors specializing in Ubiquiti-coded optics) are built using identical underlying technologies: a 1310nm DFB laser, a PIN photodetector, and an I2C EEPROM chip for switch communication.
| Metric | OEM UACC-OM-SFP28-LR | Premium Third-Party (Ubiquiti Coded) |
|---|---|---|
| Data Rate & Range | 25.78 Gbps / 10 km | 25.78 Gbps / 10 km |
| Laser Type | 1310nm DFB | 1310nm DFB |
| DOM / DDMI Support | Native Integration | Fully Supported (if coded correctly) |
| RS-FEC Compatibility | Yes | Yes |
| Estimated Price (Per Unit) | ~$149.00 | ~$40.00 - $55.00 |
Unlike legacy enterprise vendors (such as Cisco or HPE) that actively disable third-party optics via firmware unless specific bypass commands are executed, Ubiquiti does not enforce strict vendor lock-in at the switch firmware level.
Extensive field data and IT community consensus confirm that as long as a third-party SFP28 module is flashed with standard MSA or specific Ubiquiti EEPROM coding, a UniFi switch will initialize the module, bring the link up, and display the optical Rx/Tx power accurately in the UniFi Network Controller.
Choosing between OEM and third-party optics is ultimately an exercise in risk management versus budget optimization.
Engineering Recommendation: For high-stakes enterprise core links where downtime costs thousands of dollars per minute, the $149 OEM premium is justified. However, for SMB deployments, sprawling university campuses, and homelab environments, reputable third-party optics present an identical performance profile that protects the IT budget.
The UACC-OM-SFP28-LR consumes a maximum of 1.5 Watts per module. Because 25G signaling requires robust Clock and Data Recovery (CDR) circuitry, these transceivers generate significantly more heat than legacy 10G optics. When fully populating high-density switches like the UniFi Pro Aggregation, network administrators must ensure rigorous rack ventilation; exceeding the module's 70°C commercial operating limit will trigger thermal throttling, elevated Bit Error Rates (BER), and premature failure of the DFB laser.

A frequently overlooked aspect of upgrading an enterprise backbone from 10G to 25G is the aggregate thermal load introduced by the optical transceivers. While the SFP28 form factor is physically identical to SFP+, the internal components required to process a 25.78 Gbps electrical lane draw substantially more current.
Under the SFF-8431 and SFF-8402 Multi-Source Agreements, optical transceivers are classified by power tiers. Standard 10GBASE-LR modules typically consume less than 1.0W. In contrast, the UACC-OM-SFP28-LR operates closer to a 1.2W typical and 1.5W maximum power draw.
While 1.5W may seem trivial in isolation, the engineering challenge scales with port density. Consider the UniFi Switch Pro Aggregation, which features 28 SFP28 ports. Fully populating this chassis with 25G LR optics introduces over 40 Watts of concentrated heat directly at the front bezel of the switch—the exact location where intake fans are attempting to pull cool air over the internal switching ASIC.
The DFB (Distributed Feedback) laser inside the UACC-OM-SFP28-LR is highly sensitive to ambient temperature. The transceiver is rated for a commercial case operating temperature of 0°C to 70°C (32°F to 158°F). If rack cooling is insufficient and the module temperature breaches this threshold, several physical layer failures will occur:
To ensure the UACC-OM-SFP28-LR operates at peak performance, IT administrators must implement proactive thermal management strategies:
The UACC-OM-SFP28-LR is the definitive choice for network architects who require strict OEM compliance, guaranteed UniFi ecosystem integration, and zero-friction TAC support for their 25GBASE-LR 10km backbones. However, for enterprise deployments, sprawling campus networks, and high-density data centers looking to optimize their IT procurement budgets, premium MSA-compliant third-party alternatives provide identical physical layer performance and DOM telemetry at a significantly reduced cost.

Transitioning a core network to 25 Gbps is a major architectural milestone. As outlined in this technical documentation, the physical parameters of the UACC-OM-SFP28-LR—specifically its 1310nm DFB laser, robust optical power budget, and RS-FEC compatibility—make it highly capable of driving zero-packet-loss traffic across 10 kilometers of OS2 single-mode fiber.
Ultimately, the decision to specify the OEM Ubiquiti module versus a compatible alternative comes down to your organization's risk tolerance and capital expenditure limits. Network engineers should base their Bill of Materials (BOM) on the following deployment profiles:
When engineering a 25G single-mode backbone, hardware reliability should never be sacrificed for budget. Fortunately, because Ubiquiti switches embrace standard Multi-Source Agreement (MSA) protocols, you do not have to choose between performance and price. You can achieve the exact same 25.78 Gbps throughput, thermal stability, and native UniFi Controller telemetry using premium compatible optics.
If you are ready to upgrade your network backbone and optimize your IT procurement strategy, visit the LINK-PP Official Store for Compatible UACC-OM-SFP28-LR. Secure high-performance, fully tested 25G transceivers engineered for seamless UniFi integration, ensuring your network scales flawlessly while keeping your capital expenditure strictly in check.