10G-25G-40G-100G-200G AOC

BWNFiber 100G QSFP28 to 4x SFP28 Breakout AOC

Treat the cable as part of the link design: connector labels, leg mapping, airflow, and service loops all matter. The BWNFiber 100G QSFP28 to 4x SFP28 AOC, also specified as a QSFP28 breakout AOC, is built for a QSFP28 uplink to 4x SFP28 fan-out link for port consolidation, staged speed migration, and high-density server or accelerator attachment. The optical cable body reduces copper bulk and removes susceptibility to electromagnetic interference along the cable run. Standard and custom ordering options should be confirmed against the host port, requested length, and environmental requirements before the BOM is approved.

100G — Aggregate link QSFP28 to 4x SFP28 — Endpoint mapping Up to 50 m listed — Datasheet guidance
Verified Specifications

100G QSFP28 to 4x SFP28 Breakout AOC Specifications

Link roleA QSFP28 uplink to 4x SFP28 fan-out link for port consolidation, staged speed migration, and high-density server or accelerator attachment.
Endpoint form factorQSFP28 to 4x SFP28; lane breakout must be enabled on the host port
Aggregate data rate100G
Lane / channel detailMulti-rate up to 25.78125 Gbps per lane
Length guidanceUp to 50 m listed
Power approachLow power consumption
Standards / managementCompliant to QSFP28 MSA SFF-8636 & SFP28 MSA SFF-8431/SFF-8472
Cable constructionIntegrated multimode optical cable assembly
Operating temperature0°C to +70°C
Configuration statusStandard and custom options must be confirmed in the quotation and approved BOM

Search terminology for this configuration includes 100G to 25G AOC, optical breakout AOC, 100G optical fanout, QSFP28 to SFP28 AOC. These phrases describe the same purchase task only when the endpoint form factor, breakout ratio and lane map, and ordered length match this page.

Standards context: SNIA SFF technology affiliates · Ethernet Alliance technology overview.

Selection

When to Use This 100G AOC

  • Use it for QSFP28 to 4x SFP28 links where up to 50 m listed and an integrated optical assembly fit the route plan.
  • Choose AOC for inter-rack routing, tighter cable-management paths, or environments where copper EMI exposure is undesirable.
  • Validate each optical leg, host breakout mode, and downstream port speed before labeling and installation.
Choose an alternative when: Use passive DAC for shorter in-rack runs where minimum cable power is the priority. Use separate transceivers and fiber when a field-replaceable or patch-panel-based optical channel is required.
Deployment Control

Compatibility and Acceptance Checklist

  1. Confirm the connector at each end: QSFP28 to 4x SFP28.
  2. Confirm the required aggregate rate and host lane mode: Multi-rate up to 25.78125 Gbps per lane.
  3. Measure the routed path, not the straight-line rack distance; the current datasheet states up to 50 m listed.
  4. Send switch/NIC part numbers and firmware versions for coding review; no platform-specific compatibility is assumed without validation.
  5. Provide the lane-to-leg map, leg labels, and branch length before production approval.
  6. Enable and validate host breakout mode before acceptance testing each downstream leg independently.
  7. Specify commercial or industrial temperature requirements and the requested jacket/label/packaging details.
  8. At receipt, verify labels and part numbers, inspect latches and cable jackets, then test the complete link at the intended data rate.

Cable Specifications & Operating Conditions

ParameterValueUnit
Cable Diameter3.0mm
Minimum Bend Radius30mm
Cable ColorOrange (OM2) / Aqua (OM3) / Magenta (OM4)
Length < 1 m Tolerance+5 / –0cm
1–4.5 m Tolerance+15 / –0cm
5–14.5 m Tolerance+30 / –0cm
Length ≥ 15 m Tolerance+2% / –0
BOM Planning

Ordering Options

Part NumberDescriptionCable ColorLength
BWN-AOC-QSFP28-4SFP28-100G-01M100G QSFP28 to 4×SFP28 Breakout AOCOrange (OM2) / Aqua (OM3) / Magenta (OM4)1 m
BWN-AOC-QSFP28-4SFP28-100G-03M100G QSFP28 to 4×SFP28 Breakout AOCOrange (OM2) / Aqua (OM3) / Magenta (OM4)3 m
BWN-AOC-QSFP28-4SFP28-100G-05M100G QSFP28 to 4×SFP28 Breakout AOCOrange (OM2) / Aqua (OM3) / Magenta (OM4)5 m
BWN-AOC-QSFP28-4SFP28-100G-10M100G QSFP28 to 4×SFP28 Breakout AOCOrange (OM2) / Aqua (OM3) / Magenta (OM4)10 m
BWN-AOC-QSFP28-4SFP28-100G-15M100G QSFP28 to 4×SFP28 Breakout AOCOrange (OM2) / Aqua (OM3) / Magenta (OM4)15 m
BWN-AOC-QSFP28-4SFP28-100G-20M100G QSFP28 to 4×SFP28 Breakout AOCOrange (OM2) / Aqua (OM3) / Magenta (OM4)20 m
BWN-AOC-QSFP28-4SFP28-100G-30M100G QSFP28 to 4×SFP28 Breakout AOCOrange (OM2) / Aqua (OM3) / Magenta (OM4)30 m
BWN-AOC-QSFP28-4SFP28-100G-50M100G QSFP28 to 4×SFP28 Breakout AOCOrange (OM2) / Aqua (OM3) / Magenta (OM4)50 m
BWN-AOC-QSFP28-4SFP28-100G-xxM100G QSFP28 to 4×SFP28 Breakout AOCOrange (OM2) / Aqua (OM3) / Magenta (OM4)Custom
Buyer Questions

Common Procurement Objections

Will it work in my switch or NIC?

Form factor and standards alignment are necessary but not sufficient. Send the exact host model, firmware, port mode, length, and coding requirement for a compatibility review.

Which length should I order?

The current datasheet lists up to 50 m listed. Measure the routed path, include a controlled service loop, and avoid ordering unnecessary slack.

Should I use DAC instead?

Use passive DAC for shorter in-rack runs where minimum cable power is the priority. Use separate transceivers and fiber when a field-replaceable or patch-panel-based optical channel is required.

Can BWNFiber customize the assembly?

Datasheet ordering tables include standard and/or custom entries. Submit the endpoint, length, label, jacket, coding, temperature, packaging, and quantity requirements for feasibility confirmation.

Related Choices

Related High-Speed Cable Options

Engineering RFQ

Request a Configuration Review

Send endpoint models, firmware, port mode, length, quantity, temperature, labeling, packaging, and acceptance requirements. BWNFiber can return a proposed cable code and BOM for review.

Send Your Requirements

FAQ

100G QSFP28 to 4x SFP28 Breakout AOC FAQ

What is the BWNFiber 100G QSFP28 to 4x SFP28 Breakout AOC?

BWNFiber 100G QSFP28 to 4×SFP28 Breakout Active Optical Cable is a high-performance, low-power, long-reach interconnection solution that supports 100 Gigabit Ethernet. It consists of one QSFP28 connector on one end and four SFP28 connectors on the other end, providing four independent full-duplex 25G channels with an aggregate bandwidth of 100 Gb/s. This breakout AOC offers superior signal integrity, longer transmission distance, excellent electromagnetic immunity, and improved bit error rate performance compared with passive or active copper cables. It is a cost-effective alternative to discrete optical transceivers plus fiber jumpers for data center and high-speed computing applications. The page uses the supplied datasheet as the claim source; final host compatibility remains configuration-specific.

What link length is available for this AOC?

The current datasheet indicates up to 50 m listed. The usable length for a particular deployment still depends on the ordered part number, host electrical budget, route, and acceptance criteria.

Which interfaces does this cable connect?

This product is defined as QSFP28 to 4x SFP28. Match the complete connector, lane mode, and endpoint role rather than relying on aggregate speed alone.

Does the host need breakout mode enabled?

Yes. The source port must support the specified fan-out mode, and each leg must be mapped and tested at its downstream rate.

How do I check QSFP28 to 4x SFP28 compatibility?

Provide the two host model numbers, firmware versions, port type, port mode, required cable code, and planned length. A standards match does not by itself prove a host will accept every third-party cable code.

When should I choose AOC for this link?

Use it for QSFP28 to 4x SFP28 links where up to 50 m listed and an integrated optical assembly fit the route plan. Choose AOC for inter-rack routing, tighter cable-management paths, or environments where copper EMI exposure is undesirable. Validate each optical leg, host breakout mode, and downstream port speed before labeling and installation.

What should be included in an RFQ?

Include endpoint A and B, host models, firmware, port mode, length and service-loop allowance, quantity, temperature, jacket, label, packaging, destination, and required acceptance tests.

How should the cable be accepted on arrival?

Verify the label and ordered part number, inspect the cable and latches, connect to the intended hosts, confirm link state and lane mode, then run the site-defined traffic or BER acceptance procedure.

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