Bare Fibre PLC Splitters Price in Kenya
Bare PLC Splitter 1x2 in Kenya
KSh 200.00
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Continue shoppingBare PLC Splitter 1x2 in Kenya
The Bare PLC Splitter 1x2 is a compact passive fibre optic component designed to divide one incoming single-mode optical signal into two output paths. PLC stands for Planar Lightwave Circuit, a splitting technology widely used in FTTH, GPON, EPON and other passive optical networks because it provides consistent optical distribution across a broad wavelength range.
Unlike ABS-box, cassette or connectorized splitters, a bare PLC splitter is supplied in an extremely compact form with unconnectorized fibre leads, making it suitable for integration inside fibre distribution boxes, splice trays, closures, ODFs and other enclosures where space is limited. FS currently lists an exact 1x2 bare PLC splitter with 250 µm single-mode fibre, no connectors and a 4 × 40 × 4 mm steel-tube package.
At Fiber Optics Kenya, the Bare PLC Splitter 1x2 is ideal for ISPs, FTTH contractors, telecommunications companies, fibre installers and network integrators building compact optical distribution systems. Compatible ODFs, FDB/FAT boxes, splice sleeves, SC/APC pigtails, fast connectors, patch cords, fibre cleavers and testing equipment can also be supplied.
Key Product Specifications
| Specification | Details |
|---|---|
| Product Name | Bare PLC Splitter 1x2 |
| Product Type | Passive Optical PLC Splitter |
| Splitter Configuration | 1 × 2 |
| Number of Inputs | 1 |
| Number of Outputs | 2 |
| Splitting Technology | Planar Lightwave Circuit |
| Typical Split Ratio | Approximately 50:50 |
| Fibre Mode | Single Mode |
| Typical Fibre Category | OS2 |
| Common Fibre Type | G.657A1 / G.652D |
| Typical Fibre Diameter | 250 µm bare fibre |
| Connector Type | None on bare-fibre version |
| Operating Wavelength | 1260–1650 nm |
| Typical Fibre Length | Around 1–1.5 m depending on model |
| Typical Insertion Loss | Around ≤3.8–4.0 dB depending on grade |
| Typical Uniformity | ≤0.6 dB |
| Typical PDL | ≤0.2 dB |
| Typical Directivity | ≥55 dB |
| Operating Temperature | Around -40°C to +85°C on representative products |
| Typical Package | Bare fibre / mini steel tube |
| Power Requirement | None |
| Primary Applications | FTTH, GPON, EPON, ODF, FDB, PON |
| Professional Installation | Available |
| Delivery | Available throughout Kenya |
A representative 1x2 PLC splitter specification covers 1260–1650 nm, G.657A1/G.652D 9/125 µm fibre, ≤3.8 dB typical insertion loss, ≤4.0 dB maximum loss, ≤0.6 dB uniformity and ≤0.2 dB PDL.
What Does Bare PLC Splitter 1x2 Mean?

| Term | Meaning |
|---|---|
| PLC | Planar Lightwave Circuit |
| 1x2 | One optical input divided into two outputs |
| Bare | Minimal package with bare/unconnectorized fibre leads |
| Splitter | Passive device dividing optical power |
| Single Mode | Fibre designed for long-distance optical transmission |
| 250 µm | Common coating diameter for bare splitter leads |
| PON | Passive Optical Network |
| FTTH | Fibre to the Home |
The device requires no electrical power because optical splitting is entirely passive.
How a 1x2 PLC Splitter Works
A 1x2 PLC splitter takes optical power entering one fibre and distributes it across two outgoing fibres.
| Stage | Function |
|---|---|
| Input Fibre | Receives optical signal |
| PLC Chip | Divides optical energy |
| Output 1 | Receives approximately half the optical power |
| Output 2 | Receives approximately half the optical power |
| Fibre Leads | Carry signals to downstream components |
The theoretical equal split introduces approximately 3 dB of power division, while real devices have additional insertion loss from the splitter and interfaces; commercial 1x2 products typically specify total insertion loss around 3.8–4.0 dB.
Typical 1x2 Optical Split
| Input | Output | Approximate Distribution |
|---|---|---|
| 1 Optical Input | Output 1 | ~50% |
| 1 Optical Input | Output 2 | ~50% |
The exact balance depends on product uniformity and manufacturing tolerances.
PLC Technology Explained

PLC splitters use a planar optical circuit fabricated to divide light predictably across multiple output channels. They are widely available in configurations such as 1x2, 1x4, 1x8, 1x16 and 1x32, with larger ratios available depending on manufacturer.
| PLC Feature | Benefit |
|---|---|
| Wide Wavelength Range | Suitable for PON wavelengths |
| Good Channel Uniformity | Balanced outputs |
| Low PDL | Stable performance across polarization states |
| Compact Size | Excellent for fibre enclosures |
| Passive Operation | No power supply required |
| Multiple Split Ratios | Scalable network design |
| High Reliability | Suitable for access networks |
Typical Optical Performance
| Optical Parameter | Representative Value |
|---|---|
| Configuration | 1x2 |
| Operating Wavelength | 1260–1650 nm |
| Typical Insertion Loss | ≤3.8 dB |
| Maximum Insertion Loss | ≤4.0 dB |
| Uniformity | ≤0.6 dB |
| Polarization Dependent Loss | ≤0.2 dB |
| Directivity | ≥55 dB |
| Typical Fibre | G.657A1 / G.652D |
| Fibre Mode | Single Mode |
These values are representative rather than universal; exact specifications should be confirmed for the supplied model.
Why the 1260–1650 nm Wavelength Range Matters

The broad operating window allows a PLC splitter to function across wavelengths commonly used in fibre access and telecommunications systems. Professional PLC products frequently specify a 1260–1650 nm operating range.
| Wavelength Region | Typical Network Use |
|---|---|
| 1310 nm | Upstream/data applications |
| 1490 nm | Common downstream PON transmission |
| 1550 nm | Video/overlay and optical applications |
| 1625 nm | Monitoring/testing on some systems |
Bare Fibre Construction
A defining feature of this product is its unconnectorized fibre leads.
| Bare Fibre Feature | Benefit |
|---|---|
| No Factory Connectors | Greater installation flexibility |
| 250 µm Fibre | Compact routing |
| Small Steel Tube | Protects PLC optical chip |
| Low Space Requirement | Ideal for compact FDBs |
| Fusion-Splice Ready | Easy integration with installed fibre |
| Custom Termination | Installer chooses connector type |
FS's bare 1x2 version is supplied with 250 µm fibre and no connector, while another commercial version uses G.657A1 250 µm bare fibre.
Typical Physical Construction
| Component | Function |
|---|---|
| Input Fibre | Carries incoming optical signal |
| PLC Chip | Splits optical power |
| Steel Protection Tube | Protects splitter circuit |
| Output Fibres | Carry split signals |
| 250 µm Coating | Protects optical glass |
| Identification Labels | Identify input/output fibres |
A representative bare 1x2 model uses a steel tube measuring approximately 4 × 40 × 4 mm, making it extremely compact.
Bare PLC Splitter vs Mini Steel Tube PLC Splitter
| Feature | Bare PLC Splitter | Mini Steel Tube |
|---|---|---|
| Package Size | Extremely Compact | Compact |
| Fibre Protection | Minimal | Better |
| Typical Fibre | 250 µm | 900 µm often |
| Connector Options | Normally None | Optional |
| Splice Tray Use | Excellent | Excellent |
| FDB Installation | Excellent | Excellent |
| Mechanical Protection | Lower | Higher |
Mini blockless/steel-tube PLC splitters provide stronger fibre protection than the most minimal bare-fibre designs.
Bare PLC Splitter vs ABS Box Splitter
| Feature | Bare PLC | ABS Box PLC |
|---|---|---|
| Size | Very Small | Larger |
| Protection Level | Minimal | Higher |
| Typical Installation | Inside enclosure | ODF / cabinet |
| Bare Fibre Leads | Common | Less common |
| Connectorized Options | Limited | Very Common |
| Splice Tray Integration | Excellent | Less compact |
| Space Requirement | Minimal | Higher |
1x2 vs 1x4 vs 1x8 PLC Splitter
| Feature | 1x2 | 1x4 | 1x8 |
|---|---|---|---|
| Inputs | 1 | 1 | 1 |
| Outputs | 2 | 4 | 8 |
| Approx. Ideal Split per Port | 50% | 25% | 12.5% |
| Optical Loss | Lowest | Higher | Higher |
| Small FTTH Branch | Excellent | Excellent | Excellent |
| Subscriber Capacity | 2 | 4 | 8 |
| Compact Installation | Excellent | Excellent | Good |
Higher split ratios provide more subscriber outputs but introduce greater optical power loss.
Balanced vs Unbalanced Splitters
| Feature | Balanced 1x2 | Unbalanced Splitter |
|---|---|---|
| Output Power | Approximately equal | Unequal |
| Typical Ratio | 50/50 | e.g. 70/30 or 90/10 |
| PON Distribution | Excellent | Specialized |
| Simple Design | Yes | More application-specific |
| Subscriber Links | Equalized | Different power allocation |
A standard 1x2 PLC splitter is normally intended as an equal/balanced optical splitter.
Key Benefits of Bare PLC Splitter 1x2
Compact Installation
Bare PLC splitters occupy very little space, making them ideal for splice trays and small fibre-distribution boxes.
One Input to Two Outputs
A single optical line can serve two downstream fibre paths.
Wide Operating Wavelength
PLC technology commonly operates across 1260–1650 nm.
Low Polarization Dependence
Representative 1x2 products specify PDL as low as ≤0.2 dB.
Good Output Uniformity
Balanced designs distribute optical power consistently across both output channels.
No Electrical Power Required
The splitter works passively without a power adapter or electrical connection.
Fusion-Splice Friendly
Bare fibre tails can be spliced directly into installed fibre infrastructure.
Watch Bare PLC Splitter 1x2
Watch on YouTube: https://youtu.be/RIibviNJcBo
The Bare PLC Splitter 1x2 provides a highly compact way to divide a single optical fibre into two downstream paths. Current bare 1x2 PLC products are available with 250 µm single-mode fibre, unconnectorized leads and compact steel-tube protection, allowing them to fit easily inside splice trays, FDBs and other fibre-management enclosures.
Its Planar Lightwave Circuit technology provides relatively uniform optical distribution over a wide operating wavelength range. Representative 1x2 PLC splitters support 1260–1650 nm operation, G.657A1 or G.652D fibre, low PDL and approximately 4 dB or less maximum insertion loss, making them particularly useful in FTTH and passive optical distribution networks.
Because the bare version is normally supplied without connectors, installers have flexibility to splice it directly into the required network architecture. Fiber Optics Kenya can supply the Bare PLC Splitter 1x2 together with SC/APC pigtails, splice sleeves, FDB/FAT boxes, ODFs, fibre cleavers, fusion-splicing accessories and optical testing equipment, helping installers build complete passive optical distribution solutions.
Applications of Bare PLC Splitter 1x2
1. FTTH Networks
Split one distribution fibre into two subscriber or branch fibres.
2. GPON Networks
Distribute optical signals passively between downstream network branches.
3. EPON Networks
Provide passive optical splitting within Ethernet PON infrastructure.
4. Fibre Distribution Boxes
Install the compact splitter inside an FDB with minimal space requirements.
5. FAT Boxes
Use the 1x2 split to branch fibres before larger downstream distribution.
6. Optical Distribution Frames
Integrate splitters into ODF splice and termination systems.
7. Fibre Joint Closures
Fusion-splice bare splitter leads directly into installed fibre.
8. Telecommunications Networks
Provide passive signal distribution without electrical equipment.
9. CATV Fibre Infrastructure
Use in appropriate optical distribution architectures.
10. Testing and Laboratory Networks
Create two optical branches from a single fibre source.
Typical FTTH Network Using a 1x2 PLC Splitter
| Network Stage | Typical Component |
|---|---|
| Service Provider Equipment | OLT |
| Feeder Fibre | Single Mode Fibre |
| Optical Distribution | Bare PLC Splitter 1x2 |
| Output Fibre 1 | Subscriber / downstream branch |
| Output Fibre 2 | Subscriber / downstream branch |
| Distribution Box | FDB / FAT |
| Subscriber Drop | FTTH Drop Cable |
| Customer Equipment | ONT / ONU |
Installation Considerations
| Installation Factor | Recommendation |
|---|---|
| Bare Fibre Handling | Handle carefully |
| Minimum Bend Radius | Follow fibre manufacturer's requirements |
| Splice Protection | Use heat-shrink splice sleeves |
| Splitter Protection | Install inside suitable enclosure |
| Connector Cleanliness | Maintain clean downstream interfaces |
| Optical Budget | Include splitter loss |
| Fibre Identification | Clearly identify input and outputs |
| Testing | Measure optical power after installation |
Because bare 250 µm fibres have limited mechanical protection, the splitter should be installed inside a proper enclosure or splice-management system.
Recommended Accessories
| Accessory | Purpose |
|---|---|
| SC/APC Pigtail | Creates APC termination |
| SC/UPC Pigtail | Creates UPC termination |
| Fusion Splice Sleeve | Protects fibre splice |
| Fibre Splice Tray | Organizes splitter fibres |
| FDB / FAT Box | Houses splitter and fibres |
| Optical Distribution Frame | Structured fibre management |
| FTTH Drop Cable | Subscriber fibre connection |
| Fibre Cleaver | Precision fibre preparation |
| Fibre Stripper | Removes fibre coating |
| Fusion Splicer | Joins splitter to installed fibre |
| Optical Power Meter | Measures signal levels |
| PON Power Meter | Tests PON wavelengths |
| Visual Fault Locator | Checks continuity |
| OTDR | Tests completed fibre network |
Why Buy Bare PLC Splitter 1x2 from Fiber Optics Kenya?

| Why Choose Fiber Optics Kenya? | Customer Benefit |
|---|---|
| 1x2 PLC Splitters | Simple optical branching |
| Bare Fibre Options | Compact installation |
| Single-Mode Solutions | Suitable for FTTH and PON networks |
| Pigtails & Adapters | Matching fibre termination accessories |
| FDB & FAT Boxes | Complete distribution solutions |
| ODFs | Professional fibre management |
| Fusion Splicing Accessories | Everything needed for installation |
| Testing Equipment | Verify completed network performance |
| Technical Guidance | Help selecting appropriate split ratios |
| Bulk Supply | Suitable for ISPs and contractors |
| Competitive Pricing | Cost-effective network deployment |
| Nationwide Delivery | Supply throughout Kenya |
Frequently Asked Questions
What is a Bare PLC Splitter 1x2?
It is a passive optical splitter with one fibre input and two fibre outputs, supplied in a compact bare-fibre format without connectors. FS currently lists an exact 1x2 version with 250 µm single-mode fibre and no connectors.
What does PLC mean?
PLC means Planar Lightwave Circuit.
What does 1x2 mean?
It means the splitter has one optical input and two optical outputs.
Does a 1x2 splitter divide the signal equally?
Standard balanced 1x2 PLC splitters are designed to divide optical power approximately equally between both outputs.
What fibre type is commonly used?
Commercial bare PLC splitters commonly use single-mode G.657A1 or G.652D fibre.
What is the typical fibre size?
An exact FS bare 1x2 model uses 250 µm fibre.
Does it come with connectors?
A true bare-fibre version normally comes without connectors.
What is the operating wavelength?
Representative PLC splitters operate from 1260 nm to 1650 nm.
What is the typical insertion loss?
Representative 1x2 PLC splitters specify approximately ≤3.8 dB typical and ≤4.0 dB maximum insertion loss.
What is PDL?
PDL means Polarization Dependent Loss, or the variation in splitter loss caused by different polarization states of the incoming light.
What is the typical PDL?
Representative 1x2 PLC splitters specify ≤0.2 dB PDL.
What is splitter uniformity?
Uniformity measures the difference in insertion loss between the two output channels.
What is the typical uniformity?
A representative 1x2 splitter specifies ≤0.6 dB uniformity.
Does a PLC splitter require electricity?
No. PLC splitters operate passively and require no external power.
Can it be used for FTTH?
Yes. FTTH is one of the primary applications of PLC splitters.
Can it be used in GPON?
Yes. PLC splitters are widely used in GPON and other passive optical networks.
Can it be installed inside an FDB?
Yes. Its compact size makes the bare version particularly suitable for fibre distribution boxes.
Can it be installed inside an ODF?
Yes. It can be fusion-spliced into an ODF or splice tray where adequate fibre protection is provided.
Does it require fusion splicing?
Bare-fibre versions are normally fusion-spliced to the installed fibre or pigtails because they do not have factory connectors.
Is it available with SC/APC connectors?
Connectorized 1x2 PLC splitters are also available with SC/APC and other connector types, although those are no longer strictly bare-unconnectorized versions.
What is the difference between bare and mini PLC splitters?
Bare splitters prioritize minimal size, while mini steel-tube versions provide additional mechanical protection.
Can I use a 1x2 splitter before another splitter?
Yes, PLC splitters can be cascaded in appropriately designed PON networks, but every splitting stage adds optical loss and must be included in the network's optical power budget.
Do you supply higher split ratios?
Yes. PLC technology supports configurations such as 1x4, 1x8, 1x16, 1x32 and larger ratios.
Do you supply fibre distribution boxes?
Yes. Fiber Optics Kenya can supply compatible FDB/FAT boxes and optical enclosures.
Do you supply SC/APC pigtails?
Yes. Compatible SC/APC single-mode pigtails can be supplied for termination.
Do you supply fusion-splicing tools?
Yes. Fibre cleavers, strippers, splicing accessories and testing tools can be supplied.
Do you provide fibre installation and testing?
Yes. Professional fibre splicing, installation, termination and optical testing support is available.
Do you deliver outside Nairobi?
Yes. Fiber Optics Kenya supplies fibre optic products and accessories throughout Kenya.
Contact Fiber Optics Kenya
Fiber Optics Kenya
Lyric House
7th Floor Room S9
Kimathi Street
Nairobi
Phone: +254 704 991 492
Email: info@fibreopticskenya.co.ke
The Bare PLC Splitter 1x2 provides a compact and reliable way to divide one single-mode optical signal into two branches for FTTH, GPON and other passive fibre networks.
Contact Fiber Optics Kenya for competitive pricing, PLC splitters, FDBs, ODFs, fibre termination accessories, bulk orders and nationwide delivery across Kenya.