1×2 Fiber Optic Splitter: Specs, Price & Buying Guide (2026) | BWNFiber
Published: June 7, 2026 | Reading Time: 8 min
Most 1×2 splitter spec sheets look identical â until you test them. In our Shenzhen lab, we receive competitor samples weekly for benchmarking. One batch from a budget supplier claimed â¤4.0 dB insertion loss. We measured 4.8 dB on one port and 3.9 dB on the other. The uniformity was 0.9 dB, not the claimed â¤0.6 dB. In a live GPON network, that 0.9 dB difference means one ONT registers reliably while the other drops out under load.
That 0.9 dB gap is the difference between a network that works and one that doesn’t.
This guide gives you the exact specs, real test data, and buying criteria we use internally â so you don’t need to learn the hard way.
A 1×2 fiber optic splitter is a passive optical device that takes one input optical signal and divides it into two output signals. In a perfectly balanced 50:50 configuration, each output port receives approximately half the input optical power. The theoretical insertion loss is 3.0 dB (10 à logââ(2)). In practice, a quality PLC 1×2 splitter delivers ~3.6 dB with ±0.6 dB uniformity.
The short answer: A quality 1×2 PLC splitter delivers ~3.6 dB insertion loss with ±0.6 dB uniformity. It supports 1260â1650 nm wavelengths, operates from -40°C to +85°C, and comes with SC/APC, SC/UPC, or LC/UPC connectors. BWNFiber manufactures 1×2 splitters in ABS box, bare fiber, and mini blockless form factors for FTTH, GPON (ITU-T G.984), XGS-PON (ITU-T G.9807), and EPON (IEEE 802.3ah) networks.
Here’s what this guide covers: exact specs, available configurations, and when to choose 1×2 over 1×4 or 1×8.
ð© Need a quick quote? Jump to pricing â or request samples directly â
How a 1×2 Splitter Works
What uniformity means: If Port A outputs -3.3 dBm and Port B outputs -3.9 dBm, the uniformity is 0.6 dB. In GPON and XGS-PON networks, both ONTs need to receive enough power to maintain stable communication. A uniformity of â¤0.6 dB ensures neither port is disadvantaged.
PLC Chip Physics
In a BWNFiber PLC (Planar Lightwave Circuit) splitter, light enters a silica chip through an input waveguide, hits a Y-branch junction, and exits through two output waveguides. The branching geometry determines the split ratio â 50:50 means perfectly symmetrical. Nothing electronic happens. No power, no chips, no configuration. Light goes in, gets divided, comes out. The ratio is fixed during manufacturing and never changes.
When to Use a 1×2 Splitter
1×2 splitters are ideal for:
- Small office/home office (SOHO) networks with 2 subscribers
- Redundant fiber paths where one fiber is primary and the other is backup
- Lab and test environments requiring a clean 50:50 power split
- PON network tap points where a single fiber needs to branch to two distribution points
- CATV overlay networks splitting RF video and data onto separate paths
In most FTTH deployments, 1×2 splitters serve as the last-mile splitter before the subscriber drop, or as a redundant path splitter in ring-protected ODN (Optical Distribution Network) architectures.
Common Application Scenarios
SOHO FTTH Drop: In a small office building with two tenants, a 1×2 splitter at the basement distribution point splits one OLT port into two subscriber drops. Each tenant gets a dedicated fiber with ~3.6 dB loss â well within the GPON Class B+ budget of 28 dB. This is the most common 1×2 deployment worldwide.
Network Monitoring Tap: A 1×2 splitter with 70:30 ratio installs inline on a live fiber link. The 70% path carries normal traffic; the 30% path feeds an OTDR or optical power meter for continuous health monitoring without service interruption. BWNFiber’s 70:30 units maintain â¤0.3 dB excess loss on the through path.
Redundant Ring Protection: In a ring-protected ODN, 1×2 splitters at each node split traffic between primary and backup fibers. If the primary path breaks, the switchover happens at the transport layer â the passive splitter itself requires no power and has no failure mode that would block both paths simultaneously.
1×2 Splitter Configurations and Split Ratios
While 50:50 is the standard, BWNFiber also manufactures uneven split ratios for specialized applications:
| Split Ratio | Port 1 Output | Port 2 Output | Typical IL (Port 1) | Typical IL (Port 2) | Application |
|---|---|---|---|---|---|
| 50:50 | 50% | 50% | 3.6 dB | 3.6 dB | Standard FTTH, redundancy |
| 60:40 | 60% | 40% | 2.5 dB | 4.5 dB | Primary + backup path |
| 70:30 | 70% | 30% | 1.8 dB | 5.8 dB | Main line + monitor tap |
| 80:20 | 80% | 20% | 1.2 dB | 7.5 dB | Live monitoring, test ports |
| 90:10 | 90% | 10% | 0.6 dB | 10.5 dB | High-power monitoring |
Note: Uneven ratios are manufactured using FBT technology or custom PLC designs. Standard 50:50 ratios use PLC technology for maximum stability per Telcordia GR-1209-CORE requirements.
Which ratio do you need?
- 50:50: 99% of deployments. Use this unless you have a specific reason not to.
- 70:30 or 80:20: Use when you need to tap a small portion of signal for an OTDR monitor port or network analyzer without affecting the main path.
- 90:10: Use for in-service monitoring where you need to sample the live signal with minimal disruption.
ð Need these specs in PDF? Download the 1×2 splitter datasheet or request samples â
1×2 PLC Splitter Specifications
Standard 50:50 Configuration
| Parameter | Specification |
|---|---|
| Split Ratio | 1×2 (50:50) |
| Typical Insertion Loss | ~3.6 dB |
| Max Insertion Loss | â¤4.0 dB |
| Uniformity | â¤0.6 dB |
| PDL | â¤0.2 dB |
| Return Loss (APC) | â¥60 dB |
| Return Loss (UPC) | â¥50 dB |
| Directivity | â¥55 dB |
| Wavelength Range | 1260â1650 nm |
| Operating Temperature | -40°C to +85°C |
| Storage Temperature | -40°C to +85°C |
| Fiber Type | G.652.D / G.657.A2 |
| Pigtail Length | 1.0 m (standard) / custom lengths |
| Pigtail Diameter | 0.9 mm tight buffer / 2.0 mm / 3.0 mm |
All values measured at 23°C ± 2°C, 1310 nm, per Telcordia GR-1209-CORE test methodology. Data source: BWNFiber QC Lab, Shenzhen, 2025.
Environmental Reliability
BWNFiber 1×2 splitters are tested beyond standard requirements to ensure field reliability:
| Test | Standard | BWNFiber Result | Industry Typical |
|---|---|---|---|
| Temperature cycling | -40°C to +85°C, 10 cycles | ÎIL < 0.3 dB | ÎIL < 0.5 dB |
| Damp heat | 85°C / 85% RH, 168 hours | ÎIL < 0.3 dB | ÎIL < 0.5 dB |
| Mechanical shock | 500G, 1 ms, 3 axes | No damage | No damage |
| Vibration | 10â55 Hz, 1.5 mm, 2h/axis | ÎIL < 0.2 dB | ÎIL < 0.3 dB |
| Fiber pull | 5 N, 1 minute | No fiber break | 3 N standard |
| Aging (85°C) | 2,000 hours | ÎIL < 0.5 dB | Typically untested |
Test data: BWNFiber Reliability Lab, 2023â2025. Methodology: Telcordia GR-1221-CORE, Issue 2.
Available Connectors
| Connector | Polish | Color | Best For |
|---|---|---|---|
| SC/APC | 8° angled | Green | GPON, XGS-PON (mandatory) |
| SC/UPC | Flat | Blue | Legacy EPON, analog CATV |
| LC/UPC | Flat | Blue | High-density panels, data centers |
| FC/APC | 8° angled | Green | Industrial, military, test equipment |
Note: SC/APC is the global standard for FTTH PON networks. The angled polish reduces back reflection to â¥60 dB, preventing interference in the 1490 nm downstream signal.
How BWNFiber Tests Every 1×2 Splitter
At our Shenzhen facility, every 1×2 splitter undergoes six verification steps before it gets a serial number:
- Visual inspection (200x fiber scope) â Check end-face for scratches >5 μm, pits >2 μm, or contamination. Reject rate: ~2%.
- Insertion loss test â Measure at 1310 nm, 1490 nm, and 1550 nm. Reject any unit >4.0 dB. Test equipment: Yokogawa AQ2200 optical power meter.
- Uniformity verification â Compare Port A vs. Port B output power. Reject if difference >0.6 dB.
- PDL test â Rotate input polarization through 0°, 45°, 90°, 135°. Max-min loss variation must be â¤0.2 dB.
- Temperature cycling â -40°C â +85°C, 10 cycles, 2 hours per cycle. Post-test IL shift must be <0.3 dB.
- Final end-face inspection â Re-clean and re-verify after thermal stress.
Units passing all six steps receive a laser-etched serial number and an individual test report. Data source: BWNFiber QC Lab, Shenzhen. Test methodology: Telcordia GR-1209-CORE, Issue 4, Section 4.4.
Form Factors
| Form Factor | Dimensions | Application |
|---|---|---|
| ABS Box | 60Ã7Ã4 mm | Standard FTTH drop, wall mount |
| Bare Fiber | 40Ã3Ã3 mm | Splice tray, inline splice closure |
| Blockless Mini | 45Ã4Ã4 mm | Compact FTTH terminal, high-density |
| Steel Tube | 50Ã3Ã3 mm | FBT splitters, armored cable assemblies |
Power Budget Example: 1×2 Splitter in a GPON Network
Here’s a real-world link budget for a 1×2 splitter in a small office GPON deployment:
| Component | Loss (dB) |
|---|---|
| OLT output power | +3 dBm |
| 1×2 PLC splitter (50:50) | 3.6 |
| 2 km fiber (Ã0.35 dB/km) | 0.7 |
| 2 connector pairs (Ã0.3 dB) | 0.6 |
| 1 fusion splice (Ã0.1 dB) | 0.1 |
| Safety margin | 3.0 |
| Total Link Loss | 8.0 dB |
| ONT Receive Power | -5.0 dBm |
Result: -5.0 dBm at the ONT is well within the GPON Class B+ receiver sensitivity range of -28 dBm. You have 23 dB of headroom â more than enough for this short-distance deployment.
PON Link Budget Calculator (Copy to Excel)
Use this table to calculate your own link budget. Replace the example values with your actual deployment parameters.
| Parameter | Your Value | Unit | Loss (dB) | Notes |
|---|---|---|---|---|
| OLT Output Power | +3 | dBm | â | Typical: +1.5 to +5 dBm |
| 1×2 Splitter Loss | 3.6 | dB | 3.6 | Use actual spec |
| Fiber Length | 2 | km | =B3Ã0.35 | 0.35 dB/km @ 1310 nm |
| Connector Pairs | 2 | pairs | =B4Ã0.3 | 0.3 dB per mated pair |
| Fusion Splices | 1 | splices | =B5Ã0.1 | 0.1 dB per splice |
| Splitter Excess Loss | 0 | dB | 0 | Add if cascading splitters |
| WDM Coupler Loss | 0 | dB | 0 | Add if using WDM overlay |
| Safety Margin | 3 | dB | 3.0 | Industry standard: 3 dB |
| Total Link Loss | â | â | =SUM(D2:D8) | Sum of all losses |
| ONT Receive Power | â | dBm | =B1-D9 | Must be > receiver sensitivity |
Receiver Sensitivity Reference
| PON Standard | Receiver Sensitivity | Max Budget | Max Recommended Loss |
|---|---|---|---|
| GPON Class B+ | -28 dBm | 28 dB | 25 dB (with 3 dB margin) |
| GPON Class C+ | -32 dBm | 32 dB | 29 dB (with 3 dB margin) |
| XGS-PON | -28 dBm | 32 dB | 29 dB (with 3 dB margin) |
| XGS-PON (35 dB) | -32 dBm | 35 dB | 32 dB (with 3 dB margin) |
How to use: 1. Copy the “PON Link Budget Calculator” table into Excel or Google Sheets 2. Enter your OLT output power in cell B1 3. Enter your fiber distance in cell B3 4. Enter connector and splice counts in B4 and B5 5. The “ONT Receive Power” cell shows your result 6. Compare against the Receiver Sensitivity Reference table
Green light: ONT Receive Power > Receiver Sensitivity + 3 dB margin
Yellow light: ONT Receive Power between Receiver Sensitivity + 1-3 dB margin â works but no room for degradation
Red light: ONT Receive Power < Receiver Sensitivity + 1 dB margin â redesign needed (shorter fiber, lower split ratio, or higher-power OLT)
ð Want a pre-built Excel version? Download the PON Link Budget Calculator â (includes multi-splitter cascades and WDM overlay calculations)
Common mistake to avoid: Don’t forget the safety margin. A link budget that uses 100% of the available budget leaves zero room for fiber aging, connector degradation, or temperature effects. Always keep at least 3 dB in reserve.
When to Choose 1×2 vs 1×4 vs 1×8
| Scenario | Recommended Splitter | Why |
|---|---|---|
| 2 subscribers, same building | 1×2 | Lowest loss, simplest design |
| 4 subscribers, small MDU | 1×4 | One device, 4 outputs |
| 8 subscribers, apartment block | 1×8 | Standard FTTH deployment |
| Redundant ring architecture | 1×2 | Primary + backup path |
| OTDR monitor tap | 1×2 (70:30) | Main path + small sample |
| Lab test setup | 1×2 (50:50) | Clean, predictable split |
Don’t cascade 1×2 splitters to make a 1×4. Two 1×2 splitters in series give you 7.2 dB loss (3.6 + 3.6), while a single 1×4 splitter gives you 7.2 dB with better uniformity and fewer failure points. Use the right splitter for the subscriber count.
1×2 Splitter Comparison: BWNFiber vs. Alternatives
| Factor | BWNFiber | Corning | FS.COM | Budget Supplier |
|---|---|---|---|---|
| Price (1×2, 1 unit) | $5â8 | $18â25 | $8â12 | $2â4 |
| Typical IL | ~3.6 dB | ~3.5 dB | ~3.7 dB | ~4.2 dB |
| Uniformity | â¤0.6 dB | â¤0.5 dB | â¤0.8 dB | â¤2.0 dB |
| Test report per unit | â Included | â Included | â ï¸ Batch only | â None |
| Telcordia tested | â GR-1209/1221 | â GR-1209/1221 | â ï¸ Sample only | â No |
| Warranty | 3 years | 5 years | 1 year | None |
| MOQ | 100 units | 1,000+ | 1 unit | 10 units |
| Lead time | 5â15 days | 4â6 weeks | 1â3 days | 3â7 days |
| Key trade-off | Balance of quality + cost | Premium brand + support | Fast delivery + flexibility | Lowest price, variable quality |
When to choose each:
- Corning: Mission-critical infrastructure where brand reputation, longest warranty (5 years), and US-based support matter most. Budget $18â25/unit. The extra cost is justified for Tier-1 operator core networks.
- FS.COM: Urgent small orders, lab/testing environments, or when you need to source multiple fiber SKUs from one cart. Budget $8â12/unit. Strong logistics but batch-tested, not per-unit.
- BWNFiber: Factory-direct pricing with per-unit IL/RL test reports. Best for telecom operators, system integrators, and distributors who buy in volume (100+ units) and need consistent quality documentation for their own QC. Budget $5â8/unit. Trade-off: lower brand recognition than Corning.
- Budget supplier: Cost-sensitive prototyping or non-critical internal testing. Budget $2â4/unit. In our benchmarking, ~15% of units from this tier exceed 4.0 dB IL or show >1.0 dB uniformity. Budget for extra spares.
1×2 Splitter Price: What to Expect
How much does a 1×2 fiber optic splitter cost? It depends on the configuration, but here’s what BWNFiber charges:
| Quantity | 50:50 PLC, SC/APC, ABS Box | Lead Time |
|---|---|---|
| 1â99 units (sample pricing) | $5â8 each | 3â5 days |
| 100â999 units | $4â6 each | 5â10 days |
| 1,000â9,999 units | $3.50â5 each | 10â15 days |
| 10,000+ units | Custom quote | 15â20 days |
Factors that affect price:
- Connector type: SC/APC is standard; LC/APC and FC/APC add 5â10%
- Fiber type: G.657.A2 adds ~5% over G.652.D
- Form factor: Bare fiber is ~30% cheaper than ABS box
- Custom ratio: 60:40, 70:30, and other uneven ratios add 10â20%
- Test report: Per-unit IL/RL report adds ~$0.50/unit
Total cost of ownership tip: A $3 1×2 splitter that fails in the field costs $50+ to replace (truck roll + labor + new part). A $5 quality splitter that lasts 20 years costs $5 total. The “expensive” option is usually cheaper.
ð¬ Ready to order? Get exact pricing for your quantity â | Questions? Talk to Mark Chen directly â
FAQ: 1×2 Fiber Optic Splitter
What is the insertion loss of a 1×2 fiber optic splitter?
A standard 1×2 PLC splitter has a typical insertion loss of ~3.6 dB per output port and a maximum of â¤4.0 dB. The theoretical minimum is 3.0 dB (10 à logââ(2)). The extra ~0.6 dB accounts for manufacturing coupling inefficiencies.
How does a 1×2 fiber splitter work?
See the How Does a 1×2 Splitter Work? section above for the full technical explanation. In short: light enters a silica chip, hits a Y-branch junction, and splits into two outputs. Entirely passive â no power, no electronics.
Can I cascade two 1×2 splitters to make a 1×4 splitter?
No. See the When to Choose 1×2 vs 1×4 vs 1×8 section above. A single 1×4 splitter is always better than two cascaded 1x2s.
What connector type should I use for a 1×2 splitter?
SC/APC (green) for all PON networks. See the Available Connectors table above for the full comparison. Short version: APC prevents back-reflection that kills bidirectional PON signals.
What is the best split ratio for a 1×2 splitter?
50:50 for 99% of deployments. See the Split Ratios section above for when to use uneven ratios.
Can a 1×2 splitter work with both GPON and XGS-PON?
Yes. Standard 1260â1650 nm PLC splitters work for GPON, XGS-PON, and EPON without modification. Same device, all standards.
What is uniformity in a fiber optic splitter?
The difference in loss between the two output ports. For a 1×2 splitter, â¤0.6 dB means both ports are within 0.6 dB of each other. Poor uniformity (>1.0 dB) can starve one ONT while the other works fine.
How do I install a 1×2 fiber splitter?
Mount in an enclosure, connect input to OLT, connect two outputs to ONUs, test both ports with a power meter. Expected: input power minus ~3.6 dB. Full steps: Installation Guide.
What is the difference between a 1×2 splitter and a 1×2 coupler?
A splitter divides signal equally (50:50) for distribution. A coupler (or tap) usually has uneven ratios (90:10) for monitoring. For FTTH, use a splitter. For OTDR monitoring, use a coupler.
Where can I buy a 1×2 fiber optic splitter?
BWNFiber manufactures 1×2 PLC splitters with 50:50 and custom ratios. Samples ship in 1â3 days.
ð© Still have questions? Talk to Mark Chen directly â he personally reviews every technical inquiry within 24 hours.
Looking for a Reliable 1×2 Fiber Optic Splitter Supplier?
BWNFiber â Tested. Trusted. Since 2008.
We don’t just sell splitters. We test every unit, publish the data, and stand behind the product for 3 years. Here’s what you get:
About the Author
Mark Chen is the Technical Director at BWNFiber, with 18 years in fiber optic component manufacturing. He started as a test engineer at a Tier-1 telecom supplier in 2008, spent 8 years designing PLC chips for FTTH splitters, and has personally tested over 50,000 splitter units. Since joining BWNFiber in 2016, he has led optical design for 200+ FTTH deployment projects across Nigeria, Kenya, Malaysia, the Philippines, and the UAE. He holds 6 patents in planar lightwave circuit technology and sits on the ITU-T SG15 (Optical Transport Networks) study group. He still spends one week per quarter on factory floors troubleshooting edge-case failures that don’t show up in simulation.
ð§ [email protected] | ð Ningbo, China
BWNFiber Ordering Information
BWNFiber provides:
â PLC Splitters 1×2 to 1×128 (50:50 and custom ratios) â SC/APC, SC/UPC, LC/UPC, FC/APC connectors â ABS Box, Bare Fiber, Blockless Mini, Steel Tube â G.652.D / G.657.A2 fiber options â 100% IL/RL testing with per-unit test reports â OEM & custom packaging â 3-year warranty
Sample lead time: 1â3 days | Bulk lead time: 5â15 days | Bulk MOQ: 100 units (samples available at 2Ã bulk pricing)
Sample Policy
| Detail | Terms |
|---|---|
| Sample price | 2à bulk unit price (credited against first bulk order â¥1,000 units) |
| Sample quantity | 3â5 units standard; up to 10 for large projects |
| Sample shipping | Customer pays freight (DHL/FedEx, typically $30â60 depending on destination) |
| Sample turnaround | In-stock items ship within 48 hours; custom configs within 5 days |
| Sample test support | Mark Chen provides complimentary test guidance via email/Zoom if needed |
Payment Terms
| Order Type | Payment Terms |
|---|---|
| Samples | 100% prepaid via PayPal, wire transfer (T/T), or Alibaba Trade Assurance |
| First order (<$5,000) | 100% T/T in advance, or 50% deposit + 50% before shipment |
| Repeat order ($5,000â$50,000) | 30% deposit, 70% before shipment; LC at sight available on request |
| Large order (>$50,000) | Negotiable â we accept OA 60/90 days for established customers with trade references |
| Currency | USD (default), EUR, CNY â all accepted |
How to Verify BWNFiber Is a Real Factory
We know buying from overseas suppliers carries risk. Here’s how to verify us:
- Video call factory tour â Schedule a live video walkthrough of our Shenzhen facility. See the production line, test equipment, and warehouse in real time. No pre-recorded videos.
- Third-party audit â We welcome audits by SGS, Bureau Veritas, or your appointed inspector. Our last SGS audit (2024) is available on request.
- Business registration verification â Search “Ningbo Bwinners Optical Tech Co., Ltd.” on the National Enterprise Credit Information Public System (å½å®¶ä¼ä¸ä¿¡ç¨ä¿¡æ¯å ¬ç¤ºç³»ç»). Full registration details available upon request.
- Sample first, bulk later â Order 3â5 samples, test them independently, verify the test reports match your measurements. Only place bulk orders after you’re satisfied.
- Trade Assurance â First-time customers can order through Alibaba Trade Assurance for payment protection.
ð§ [email protected] | ð +86-136-1574-4790 (WhatsApp) | ð Factory visits welcome by appointment
OEM & Bulk Ordering
| Service | Details |
|---|---|
| Standard MOQ | 100 units |
| Custom logo | Free on orders â¥500 units |
| Custom packaging | Free on orders â¥1,000 units |
| Custom ratio | 60:40, 70:30, 80:20, 90:10 (MOQ: 500) |
| Custom pigtail length | 0.5 m to 3.0 m (MOQ: 200) |
| Custom connector mix | e.g., SC/APC input + LC/APC outputs (MOQ: 500) |
OEM process: 1. Submit specifications (ratio, connector, length, packaging) 2. Receive quote and sample offer within 24 hours 3. Evaluate samples (3â5 units, 3â5 days lead time) 4. Place PO with 30% deposit 5. Production + 100% testing (5â15 days) 6. Balance payment + shipment
Returns & Warranty
- 3-year warranty against manufacturing defects
- 30-day return for unused, unopened products in original packaging
- Replacement for defective units (shipping covered by BWNFiber)
- Test data dispute: If your independent test shows a unit out of spec, send us the test report. We verify and replace at no charge.
Shipping & Packaging
| Detail | Specification |
|---|---|
| Standard packaging | Anti-static bag + foam insert + export carton (100 units/carton) |
| OEM packaging | Custom label, barcode, manual (MOQ: 1,000) |
| Shipping methods | DHL/FedEx/UPS (samples), sea freight (bulk), air cargo (urgent bulk) |
| Incoterms | EXW, FOB Shenzhen, CIF, DDP |
| Lead time | Samples: 1â3 days |
ð Download 1×2 Splitter Datasheet (PDF) â Full specifications, dimensions, and ordering codes. Contact us to request â
Contact us for samples, datasheets, and volume pricing.
BWNFiber Quality & Certifications
BWNFiber has been manufacturing fiber optic passive components since 2008. Our Shenzhen facility produces 500,000+ PLC splitter chips and 300,000+ finished splitter units per month.
Certifications: – ISO 9001:2015 Quality Management System (Certificate No. CN12/30789) – Telcordia GR-1209-CORE / GR-1221-CORE Tested – RoHS 2.0 (2011/65/EU) Compliant – REACH (EC 1907/2006) Compliant
Industry Membership: – ITU-T SG15 (Optical Transport Networks) â Contributing Member – China Optical Communications Industry Association (COSEA) – Fiber Broadband Association (FBA) â Associate Member
Company Registration: – Legal Name: Ningbo Bwinners Optical Tech Co., Ltd. – Registered Address: 18F, Block A, Hi-Tech Industrial Park, Nanshan District, Shenzhen, 518057, China – Business Registration No.: Available upon request (verified via National Enterprise Credit Information Public System) – Export License: Valid
What Customers Say
“We tested samples from 4 suppliers. BWNFiber’s 1×2 splitters had the tightest uniformity (0.4 dB measured vs. 0.6 dB spec) and the cleanest end faces under 400x scope. We’ve placed 6 follow-up orders since 2022.” â Engineering Director, Tier-1 FTTH Operator, East Africa (Name withheld per NDA)
“The per-unit test reports saved us weeks of incoming QC. We spot-check 5% of each batch and have never found a unit out of spec.” â Procurement Manager, System Integrator, Southeast Asia
Related Reading: – PLC Splitter vs FBT Splitter: Which One for Your FTTH Network? – Fiber Optic Splitter Loss Chart: Complete Guide (1×2 to 1×64) – 1×4 Fiber Optic Splitter Specifications – 1×8 Fiber Optic Splitter Specifications – GPON Splitter Solutions for FTTH Networks
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