10G SFP+ 30/80/100m RJ-45 Transceiver Modulee(rj45 connector)
10G SFP+ to RJ-45 Copper Transceivers — 30m / 80m / 100m Variants (Hot-pluggable)
Turn an SFP+ cage into a 10GbE RJ-45 port. Choose from short-reach (≈30 m, reduced power), mid-reach (≈80 m) or full-reach (≈100 m) variants. Ideal for mixed-media racks, lab testing and last-mile copper handoffs. Verify host compatibility before bulk purchase.
- Add a hot-swappable 10G RJ-45 copper interface to any SFP+ slot.
- Three reach profiles to match cabling and thermal budgets: 30 m (reduced power), 80 m (balanced), 100 m (full reach).
- Plug-and-play installation with standard twisted-pair cabling (use certified Cat6A for longest links).
- Lower-power SKU available for dense racks and edge devices to reduce heat and energy usage.
- Recommended for mixed fiber/copper environments, test benches, and customer edge equipment.
10G SFP+ to RJ-45 Copper Module — 30m / 80m / 100m Variants (Hot-pluggable)
Add high-speed copper ports without replacing chassis or re-wiring racks. These SFP+ copper transceivers deliver 10 Gbps over RJ-45 in a compact, hot-swappable form factor. Pick the variant that suits your cabling and cooling constraints — the reduced-power 30 m module minimizes energy use in dense deployments; the 80 m SKU balances reach and thermal load; the 100 m model pushes copper to its maximum 10G envelope where Cat6A cabling exists. All variants are practical for rapid upgrades, temporary links, and lab use where flexibility and speed matter.
Key benefits
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Cost-effective: upgrade port capability without new switches.
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Fast deployment: hot-swap installation reduces downtime.
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Flexible: choose reach vs. power profile to match your environment.
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Tested interoperability: broadly compatible with mainstream hosts (sample testing recommended).
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Reduced operational cost option: RP (reduced-power) SKU lowers energy draw in dense racks.
Quality Certifications
| Specification | 30 m — Reduced Power (RP) | 80 m — Mid Power | 100 m — Full Reach |
|---|---|---|---|
| Form factor | SFP+ (hot-pluggable) | SFP+ (hot-pluggable) | SFP+ (hot-pluggable) |
| Host interface | SFP+ electrical (10G) | SFP+ electrical (10G) | SFP+ electrical (10G) |
| Network interface | RJ-45 (8P8C) copper | RJ-45 (8P8C) copper | RJ-45 (8P8C) copper |
| Standard | 10GBASE-T (IEEE 802.3an) | 10GBASE-T (IEEE 802.3an) | 10GBASE-T (IEEE 802.3an) |
| Data rate | 10 Gbps full-duplex | 10 Gbps full-duplex | 10 Gbps full-duplex |
| Typical maximum reach | ≈ 30 m | ≈ 80 m | Up to 100 m |
| Recommended cabling | Cat6 (short runs) / Cat6A | Cat6A recommended; Cat6 possible | Certified Cat6A (or better) |
| Typical power (approx.) | 1.3 – 1.8 W | 2.0 – 2.8 W | 2.5 – 4.0 W |
| Operating temperature (typical) | 0°C to 70°C (check SKU) | 0°C to 70°C (check SKU) | 0°C to 70°C (check SKU) |
| Extended/industrial option | Available for some SKUs | Available for some SKUs | Available for some SKUs |
| Compliance & protections | SFP+ MSA form factor; RoHS; EMI/ESD protections (model dependent) | SFP+ MSA form factor; RoHS; EMI/ESD protections (model dependent) | SFP+ MSA form factor; RoHS; EMI/ESD protections (model dependent) |
| Typical uses | Intra-rack short links, dense racks, lab/test benches | Cross-rack/short building spans, balanced power vs reach | Longest copper handoffs, legacy copper runs where fiber not used |
| Notes / procurement tip | Best for tight thermal budgets — test sample on host | Good compromise between reach and heat — verify cabling | Requires certified Cat6A and good terminations for reliable 100 m 10G |
Typical applications
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Mixed-media racks: provide copper handoffs where fiber ports exist but RJ-45 terminations are needed.
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Rack-to-rack short links: quick 10G copper runs inside the same room or adjacent rooms.
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Lab & QA: hot-swappable convenience for testing multiple link types without re-cabling.
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Customer premises & last-mile: convert SFP+ ports to copper at customer edge devices or gateways.
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Temporary or emergency ports: keep as spares for quick field replacement.
Flexible Local Area Network Deployment
It is possible to create a flexible and low-cost local area network using pre-installed Ethernet cables over short distances.


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