Bare Fibre PLC Splitters Price in Kenya
Bare PLC Splitter 1x4 in Kenya
KSh 250.00
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Continue shoppingBare PLC Splitter 1x4 in Kenya
The Bare PLC Splitter 1x4 is a passive fibre optic component designed to divide one incoming optical signal into four output fibres. It uses Planar Lightwave Circuit (PLC) technology to distribute optical power evenly and reliably across multiple branches, making it suitable for FTTH, GPON, EPON and other passive optical network applications. Current 1x4 PLC splitter products are available in bare-fibre, ABS-box and rack/cassette configurations depending on installation requirements.
The bare version is particularly useful where installation space is limited. It typically uses thin 250 µm or 900 µm single-mode fibre leads with no factory-installed connectors, allowing technicians to fusion-splice the input and outputs directly into the network. Exact 1x4 products are available with G.657A1 fibre and compact steel protection packages, while other bare versions use 900 µm colour-coded output fibres.
At Fiber Optics Kenya, the Bare PLC Splitter 1x4 is ideal for ISPs, FTTH installers, telecommunications contractors and network integrators looking for compact and cost-effective optical distribution. Compatible ODFs, FDB/FAT boxes, pigtails, splice trays, fusion-splicing accessories, drop cables and testing equipment can also be supplied.
Key Product Specifications
| Specification | Details |
|---|---|
| Product Name | Bare PLC Splitter 1x4 |
| Product Type | Passive Optical PLC Splitter |
| Splitter Configuration | 1 × 4 |
| Number of Inputs | 1 |
| Number of Outputs | 4 |
| Splitting Technology | Planar Lightwave Circuit |
| Typical Split Ratio | Approximately 25% per output |
| Fibre Mode | Single Mode |
| Typical Fibre Category | OS2 |
| Common Fibre Type | G.657A1 / G.652D depending on model |
| Common Bare Fibre Diameter | 250 µm |
| 900 µm Versions | Available |
| Connector Type | None on true bare version |
| Typical Operating Wavelength | 1260–1650 nm |
| Typical Fibre Length | Around 1 m or manufacturer dependent |
| Typical Insertion Loss | Approximately 7–7.4 dB depending on grade |
| Typical PDL | Low, generally ≤0.2–0.3 dB depending on model |
| Output Uniformity | Low channel-to-channel variation |
| Typical Directivity | ≥55 dB on professional PLC families |
| Package Style | Bare fibre / compact steel tube |
| Electrical Power Required | No |
| Applications | FTTH, GPON, EPON, ODF, FDB, PON |
| Professional Installation | Available |
| Delivery | Available throughout Kenya |
A current 1x4 bare PLC splitter is offered with G.657A1 fibre and an operating temperature range from -40°C to +85°C, while another exact 1x4 version uses 250 µm G.657A1 fibre in a compact steel package.
What Does Bare PLC Splitter 1x4 Mean?

| Term | Meaning |
|---|---|
| PLC | Planar Lightwave Circuit |
| 1x4 | One optical input divided into four outputs |
| Bare | Unconnectorized fibre leads in a compact package |
| Splitter | Passive optical power-distribution device |
| Single Mode | Fibre designed for long-distance optical transmission |
| 250 µm | Common coating diameter of bare fibre |
| FTTH | Fibre to the Home |
| PON | Passive Optical Network |
The device is completely passive and therefore does not require mains power, a power adapter or network configuration.
How a 1x4 PLC Splitter Works
A 1x4 PLC splitter receives an optical signal through one input and divides the optical power across four outputs.
| Stage | Function |
|---|---|
| Input Fibre | Receives the original optical signal |
| PLC Optical Circuit | Divides optical power |
| Output 1 | Receives approximately one-quarter |
| Output 2 | Receives approximately one-quarter |
| Output 3 | Receives approximately one-quarter |
| Output 4 | Receives approximately one-quarter |
The theoretical loss from splitting optical power four ways is about 6 dB, while practical splitter insertion loss is higher because of device losses. Commercial 1x4 PLC splitters commonly specify approximately 7 dB or slightly more overall insertion loss.
Typical 1x4 Optical Distribution
| Input | Output | Approximate Optical Share |
|---|---|---|
| Input 1 | Output 1 | ~25% |
| Input 1 | Output 2 | ~25% |
| Input 1 | Output 3 | ~25% |
| Input 1 | Output 4 | ~25% |
This makes the 1x4 splitter suitable where one feeder fibre needs to serve four downstream branches or subscribers.
PLC Technology Explained
PLC technology uses optical waveguides formed on a planar substrate to split optical signals with relatively good uniformity across several outputs.
| PLC Feature | Benefit |
|---|---|
| Wide Operating Band | Works across common PON wavelengths |
| Good Uniformity | Similar power delivered to each output |
| Low PDL | Stable optical performance |
| Compact Construction | Fits inside fibre boxes and trays |
| No Electrical Power | Completely passive |
| Scalable Split Ratios | Available from small to large configurations |
| High Reliability | Suitable for carrier and access networks |
Commercial PLC families include ratios such as 1x2, 1x4, 1x8, 1x16, 1x32 and larger configurations.
Typical Optical Performance
| Optical Parameter | Typical / Representative Description |
|---|---|
| Configuration | 1x4 |
| Fibre Mode | Single Mode |
| Operating Wavelength | 1260–1650 nm commonly |
| Typical Insertion Loss | Around 7–7.4 dB |
| Output Uniformity | Low channel variation |
| PDL | Low |
| Directivity | High |
| Typical Fibre | G.657A1 / G.652D |
| Connector Loss | None when supplied bare, before termination |
Exact specifications vary between manufacturers and splitter grades, so final project design should use the datasheet of the supplied splitter.
Why the 1260–1650 nm Range Matters
PLC splitters are designed to operate across a broad portion of the single-mode wavelength spectrum, which makes them suitable for modern access networks.
| Wavelength | Typical Application |
|---|---|
| 1310 nm | Common upstream optical transmission |
| 1490 nm | Common downstream PON transmission |
| 1550 nm | Optical video / additional services |
| 1577 nm | Used in newer PON technologies |
| 1625 nm | Testing and monitoring applications |
Professional PLC splitter products commonly cover a broad wavelength operating window, helping one splitter work across multiple optical services.
Bare Fibre Construction
The bare design is what distinguishes this splitter from connectorized and ABS-box alternatives.
| Feature | Benefit |
|---|---|
| No Factory Connectors | Installer chooses termination method |
| Thin Fibre Leads | Saves enclosure space |
| 250 µm Options | Extremely compact |
| 900 µm Options | Additional mechanical protection |
| Fusion-Splice Ready | Easy integration into ODF/FDB |
| Small PLC Package | Fits compact splice trays |
| Colour-Coded Outputs | Easier fibre identification |
An exact 1x4 bare splitter is available with 250 µm G.657A1 fibre and approximately 1 m fibre leads, while 900 µm versions with colour-coded outputs are also available.
250 µm vs 900 µm Bare PLC Splitter
| Feature | 250 µm | 900 µm |
|---|---|---|
| Diameter | Smaller | Larger |
| Installation Space | Minimal | Slightly more |
| Mechanical Protection | Lower | Better |
| Splice Tray Use | Excellent | Excellent |
| Compact FDB Use | Excellent | Excellent |
| Handling | Requires greater care | Easier |
| Typical Bare PLC Use | Very Common | Common |
Bare PLC Splitter vs Mini Steel Tube PLC Splitter
| Feature | Bare Fibre PLC | Mini Steel Tube PLC |
|---|---|---|
| Overall Size | Very Small | Small |
| Mechanical Protection | Minimal | Better |
| Fibre Type | 250 µm commonly | 900 µm commonly |
| Connector Options | Usually None | Optional |
| Splice Tray Installation | Excellent | Excellent |
| FDB Installation | Excellent | Excellent |
| Handling Durability | Lower | Higher |
Some products marketed as bare PLC splitters still use a small steel package around the actual PLC optical circuit while leaving the fibre leads unconnectorized.
Bare PLC Splitter vs ABS Box PLC Splitter
| Feature | Bare 1x4 PLC | ABS Box 1x4 PLC |
|---|---|---|
| Package Size | Very Compact | Larger |
| Protection | Lower | Higher |
| Bare Leads | Common | Less common |
| Connector Options | Usually None | Common |
| Splice Tray Use | Excellent | Less convenient |
| Outdoor Enclosure Integration | Requires enclosure | Easier |
| Customization | High | Moderate |
Choose a bare version when enclosure space is limited and fusion splicing is already part of the installation.
1x2 vs 1x4 vs 1x8 PLC Splitter
| Feature | 1x2 | 1x4 | 1x8 |
|---|---|---|---|
| Input Ports | 1 | 1 | 1 |
| Output Ports | 2 | 4 | 8 |
| Ideal Power per Output | ~50% | ~25% | ~12.5% |
| Theoretical Splitting Loss | ~3 dB | ~6 dB | ~9 dB |
| Practical Insertion Loss | Lowest | Moderate | Higher |
| Subscriber Capacity | 2 | 4 | 8 |
| Small Network Branching | Excellent | Excellent | Excellent |
| Optical Budget Requirement | Lowest | Moderate | Higher |
The 1x4 configuration provides a useful balance between subscriber capacity and optical loss.
1x4 vs 1x16 PLC Splitter
| Feature | 1x4 | 1x16 |
|---|---|---|
| Outputs | 4 | 16 |
| Ideal Power Per Output | ~25% | ~6.25% |
| Optical Loss | Lower | Much Higher |
| Small FDB Use | Excellent | Good |
| Subscriber Capacity | 4 | 16 |
| Optical Budget Flexibility | Better | More demanding |
| Rural / Small Cluster Use | Excellent | Application dependent |
Balanced vs Unbalanced Fibre Splitters
| Feature | Balanced 1x4 PLC | Unbalanced Splitter |
|---|---|---|
| Output Distribution | Approximately equal | Unequal |
| Typical Output Share | ~25% each | Different per port |
| FTTH Distribution | Excellent | Specialized |
| Network Planning | Straightforward | More complex |
| Use Case | General distribution | Customized optical budgets |
The normal 1x4 PLC splitter is designed to provide balanced output channels.
Key Benefits of Bare PLC Splitter 1x4
Four Optical Outputs
One incoming fibre can be distributed to four downstream fibre paths.
Compact Design
Bare PLC splitters occupy very little space inside fibre enclosures.
Wide Wavelength Compatibility
PLC technology is designed to function over the broad wavelength ranges required by access networks.
Low Channel Variation
PLC technology provides good consistency between output ports.
G.657A1 Fibre Options
Bend-insensitive G.657A1 versions are commercially available and are useful inside compact fibre enclosures.
No Electrical Power
The splitter operates passively without power supplies or configuration.
Easy Fusion-Splice Integration
Bare leads can be fusion-spliced directly to feeder, distribution or pigtail fibres.
Watch Bare PLC Splitter 1x4
Watch on YouTube: https://youtu.be/xzlkL5go-G8
The Bare PLC Splitter 1x4 provides a compact method of distributing one optical fibre signal into four downstream paths without using powered networking equipment. Current bare 1x4 PLC splitters are available with G.657A1 single-mode fibre, compact packaging and unconnectorized leads that allow technicians to integrate the splitter directly into splice trays, FDBs and ODFs.
A 1x4 configuration gives each output approximately one-quarter of the incoming optical power before real-world component losses are considered. This means the splitter's insertion loss must be incorporated into the PON optical budget when planning OLT-to-ONT links. Its four-output configuration is particularly useful for small residential clusters, office buildings and rural FTTH deployments serving several subscriber endpoints from one feeder fibre.
Because this version is supplied with bare fibre rather than factory connectors, installers retain flexibility over how each output is terminated. Fiber Optics Kenya can supply the Bare PLC Splitter 1x4 together with SC/APC pigtails, fusion splice sleeves, FDB/FAT boxes, ODFs, FTTH drop cables, fibre cleavers, fusion-splicing accessories and optical testing equipment, making it easier to source the components required for a complete passive optical network.
Applications of Bare PLC Splitter 1x4
1. FTTH Networks
Split one feeder fibre into four downstream subscriber or distribution fibres.
2. GPON Networks
Distribute an OLT optical signal to multiple ONTs or downstream network branches.
3. EPON Networks
Provide passive optical distribution without active switching equipment.
4. Fibre Distribution Boxes
Install the compact splitter inside an FDB to serve multiple subscriber drops.
5. FAT Boxes
Create four optical branches from one feeder fibre.
6. Optical Distribution Frames
Integrate the splitter into ODF splice and distribution systems.
7. Fibre Joint Closures
Fusion-splice the splitter directly into outdoor fibre infrastructure.
8. Telecommunications Networks
Provide passive optical branching for access-network designs.
9. CATV Fibre Networks
Use the splitter in compatible passive optical distribution systems.
10. Fibre Testing and Laboratory Networks
Create four optical outputs from a single test source.
Typical FTTH Network Using Bare PLC Splitter 1x4
| Network Stage | Typical Component |
|---|---|
| Central Equipment | OLT |
| Feeder Fibre | Single Mode |
| Splitter Input | 1 Fibre |
| Optical Splitter | Bare PLC Splitter 1x4 |
| Output 1 | Subscriber / branch |
| Output 2 | Subscriber / branch |
| Output 3 | Subscriber / branch |
| Output 4 | Subscriber / branch |
| Distribution Enclosure | FDB / FAT Box |
| Subscriber Cable | FTTH Drop Fibre |
| Customer Equipment | ONT / ONU |
Installation Considerations
| Installation Factor | Recommendation |
|---|---|
| Optical Budget | Include approximately 1x4 splitter loss |
| Bare Fibre Protection | Always install inside an enclosure |
| Bend Radius | Follow fibre manufacturer's limits |
| Fusion Splices | Protect using heat-shrink sleeves |
| Output Identification | Clearly label all four outputs |
| Fibre Management | Route carefully through splice tray |
| Connector Cleaning | Clean all connectorized downstream interfaces |
| Testing | Measure optical power after installation |
| Future Expansion | Leave service slack where appropriate |
Recommended Accessories
| Accessory | Purpose |
|---|---|
| SC/APC Pigtails | Terminate splitter outputs |
| SC/UPC Pigtails | UPC termination where required |
| Fusion Splice Sleeves | Protect fusion joints |
| Fibre Splice Tray | Organize splitter leads |
| FDB / FAT Box | Houses optical splitter |
| ODF | Provides structured fibre management |
| FTTH Drop Cable | Subscriber connection |
| Fibre Cleaver | Precision fibre preparation |
| Fibre Stripper | Removes fibre coating |
| Fusion Splicer | Connects splitter to installed fibre |
| Optical Power Meter | Measures optical signal |
| PON Power Meter | Tests PON wavelengths |
| Visual Fault Locator | Helps trace fibres |
| OTDR | Tests completed optical network |
Why Buy Bare PLC Splitter 1x4 from Fiber Optics Kenya?
| Why Choose Fiber Optics Kenya? | Customer Benefit |
|---|---|
| 1x4 PLC Splitter Options | Efficient four-way fibre distribution |
| Bare Fibre Versions | Ideal for compact installations |
| Single-Mode Options | Suitable for FTTH and PON |
| G.657 Fibre Options | Improved bend performance |
| SC/APC Pigtails | Matching terminations available |
| FDB & FAT Boxes | Complete fibre distribution |
| ODFs & Splice Trays | Professional fibre management |
| FTTH Drop Cables | Complete subscriber connections |
| Splicing Accessories | Everything needed for installation |
| Testing Equipment | Verify optical network performance |
| Technical Guidance | Help with splitter ratios and compatibility |
| Bulk Supply | Suitable for ISPs and contractors |
| Competitive Pricing | Cost-effective deployment |
| Nationwide Delivery | Supply throughout Kenya |
Frequently Asked Questions
What is a Bare PLC Splitter 1x4?
It is a passive optical splitter that takes one fibre input and divides the optical signal across four output fibres. Bare versions are designed for splice-in installations.
What does PLC mean?
PLC means Planar Lightwave Circuit.
What does 1x4 mean?
It means the splitter has one input and four outputs.
Is the optical power divided equally?
A balanced 1x4 PLC splitter is designed to distribute approximately 25% of the incoming optical power to each output, before accounting for real-world splitter loss.
What is the theoretical splitting loss?
An ideal four-way split introduces approximately 6 dB of splitting loss.
What is the actual insertion loss?
Real commercial 1x4 PLC splitters typically have approximately 7 dB or slightly more insertion loss, depending on product grade and design.
What fibre type is used?
Bare 1x4 PLC splitters are available using G.657A1 single-mode fibre.
Is 250 µm fibre available?
Yes. Exact 1x4 bare PLC splitters using 250 µm G.657A1 fibre are commercially available.
Is 900 µm fibre available?
Yes. 1x4 bare PLC splitters with 900 µm fibre leads are also available.
Does it come with connectors?
A true bare PLC splitter normally has unconnectorized fibre leads.
Can I add SC/APC connectors?
Yes. The bare fibres can be fusion-spliced to SC/APC pigtails or otherwise terminated according to the network design.
What wavelengths does a PLC splitter support?
Professional PLC splitter families commonly operate across approximately 1260–1650 nm. (
Does a PLC splitter require power?
No. It is completely passive.
Can it be used for FTTH?
Yes. FTTH is one of the primary applications of 1x4 PLC splitters.
Can it be used in GPON?
Yes. PLC splitters are fundamental components in GPON passive optical distribution networks.
Can it be used with EPON?
Yes. PLC splitters can also be used in EPON and other passive optical architectures.
Can it be installed inside an FDB?
Yes. Its compact size makes it especially suitable for fibre distribution boxes.
Can it be installed inside an ODF?
Yes. It can be fusion-spliced into an ODF or splice tray.
Does it require fusion splicing?
Bare versions normally require fusion splicing because the fibre leads are not connectorized.
Can one 1x4 splitter serve four customers?
Yes, subject to the overall PON architecture and optical power budget, each of the four outputs can feed a separate subscriber or downstream branch.
Can I cascade another PLC splitter after a 1x4?
Yes, but every additional splitter increases optical loss. Cascaded splitter designs must remain within the optical budget of the OLT and ONTs.
What is the difference between a bare and ABS PLC splitter?
A bare splitter is much smaller and designed mainly for integration inside another enclosure, while an ABS splitter has a larger protective housing and is easier to install as a standalone module.
Do you supply 1x2 and 1x8 PLC splitters?
Yes. PLC splitters are available in multiple configurations, including 1x2, 1x4, 1x8, 1x16 and larger split ratios.
Do you supply SC/APC pigtails?
Yes. Fiber Optics Kenya can supply compatible SC/APC single-mode pigtails.
Do you supply FDB and FAT boxes?
Yes. Compatible fibre distribution boxes and access terminals can be supplied.
Do you supply fusion-splicing equipment?
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 1x4 provides a compact and reliable way to divide one single-mode optical signal into four branches for FTTH, GPON and other passive optical networks.
Contact Fiber Optics Kenya for competitive pricing, PLC splitters, FDBs, ODFs, fibre termination accessories, bulk orders and nationwide delivery across Kenya.