Timber SAV · Field Reference

Fiber Field Guide

Written for someone who has never worked with fiber. What it is, what is in the kit, and exactly what to do when a connection stops working.

Rev 4 · 22 Aug 2026

The one thing to remember. Almost every fiber problem is a loose plug, a dirty tip, two cables plugged in backwards, or a dead device at the far end. All four are free to fix. Work the checklist in order and only reach for the expensive tool at the very end.

Why you own a splicer at all

You buy fiber cable with the plugs already attached at the factory, and that is the right way to do it on every job. The splicer is not for building cable. It is there so that when a cable gets damaged at a customer's property, you can fix it that afternoon instead of losing a day waiting on a specialist.

Back to start

How fiber works

Fiber is a hair-thin thread of glass that carries light instead of electricity. That is the whole idea. Everything else follows from it.

It takes two threads, one each direction

Light only travels one way down a thread. So a working connection needs two threads: one to send, one to receive. They are bundled side by side in one cable, which is why the plug on the end is a little double-wide clip.

The sending thread at your end has to reach the receiving hole at the far end. If those get crossed, both ends are shouting into each other's mouth and nothing works. This is the most common confusing failure in fiber and the fix is to swap the two threads at one end only.

CORRECT House TX sends RX hears Guest house RX hears TX sends strand 1 strand 2 CROSSED — NOTHING WORKS House TX sends RX hears Guest house TX sends RX hears both ends shouting nobody listening
Two strands, one job each. On top, the sender at each end lines up with the listener at the other. Underneath, the two strands got swapped, so both ends are transmitting into each other's transmitter and nothing gets through. The fix is always to swap the two strands at one end. Swapping both puts you back where you started.
Sending is called TX. Receiving is called RX. You will see those two letters printed next to the holes on equipment. TX is transmit, RX is receive.

The tip is the whole game

At the end of each thread is a tiny polished glass surface about the width of a red blood cell. When you plug two together, those two glass surfaces press against each other and light crosses over.

That means a speck of dust is bigger than the hole the light goes through. You cannot see the dust. The connection just does not work, or works badly. This is why cleaning and inspecting is not fussiness, it is the main skill.

THE PLUG, SIDE ON body boot latch (squeeze to unplug) ceramic tip the part you clean THE TIP, MAGNIFIED the light goes through here only one dust speck
Drawn to scale. The aqua dot in the middle is the only part that carries light. A single speck of household dust is bigger than it. That is the whole reason cleaning matters, and why a connection can fail completely while looking perfectly clean to your eye.
Never touch the glass tip with your fingers. The oil from your skin is enough to kill the connection, and pressing a fingerprint into the glass when you plug it in can scratch it permanently.
Clean plug it in Dust wipes off Oil needs alcohol Scratched plug is finished
What you see through the 400x scope. The first three are what you will get most of the time and the cleaning pen handles the middle two. Scratches through the middle are permanent, and that plug has to be replaced or spliced. Scratches happen when somebody plugs in a dirty tip and grinds the dust into the glass, which is the real reason to inspect first.

Match the colour of the jacket

The outer jacket colour tells you what kind of fiber it is. Different kinds do not work together, because the glass thread inside is a different size.

Jacket colourWhat it isUse it?
AquaOM3 or OM4, the short-distance kindYes. This is what all your jobs use.
OrangeAn older short-distance kind with a different sized threadNo. Mixing it with aqua loses most of the light.
YellowThe long-distance kind, used by phone and internet companiesNo. Will not work with your equipment.
One more colour trap: a green plug end. Green means the glass tip is polished at a slight angle instead of flat. It physically will not make a good connection with your flat-tipped equipment, and forcing it damages both. If a plug is green, it is the wrong part. Yours are blue, beige, or aqua.

Distance is not your problem

Your kind of fiber is rated to run about 1,800 feet. Your longest job is about 330 feet. You have roughly four times the room you need, which means "the signal is too weak" is essentially never the answer. When a link is down on your jobs, something is broken, dirty, or unplugged.

Watch someone do it

Opens on YouTube

Scoping and Cleaning a Fiber ConnectorShort and practical. Exactly the loop described above: look, clean, look again, then plug in. Why inspection and cleaning mattersShows real scope images of contaminated tips and what plugging in a dirty one does to the glass.

Every term in this guide

Strand
One hair-thin glass thread. Carries light one direction.
Duplex
Two strands side by side in one cable. What you always use.
LC connector
The small plastic plug on the end of your fiber. Squeeze the little lever to unplug it.
Ferrule
The tiny ceramic tip poking out of the plug, about the size of a pencil lead. The glass ends in the middle of it.
End face
The polished glass surface at the very tip of the ferrule. What you inspect and clean.
SFP
A small module that slides into a switch or router and gives it a fiber port.
Media converter
A small box that turns fiber into a normal ethernet jack. You are phasing these out.
Coupler
A short barrel that joins two plugs end to end. No power, no electronics, just a holder.
Patch cord
A short fiber cable with plugs on both ends. Also called a jumper.
Pigtail
A short fiber with a plug on one end and bare glass on the other. You melt the bare end onto a broken cable.
Splice
Melting two bare glass ends together with an electric spark so they become one continuous strand.
Cleave
Cutting the bare glass so the end is perfectly flat and square. A special tool does this. Bad cleave, bad splice.
Splice sleeve
A short heat-shrink tube with a steel rod inside. Slides over a finished splice to armour it.
VFL
A red laser pointer you shine into a fiber. If red comes out the other end, the glass is unbroken.
Power meter
Measures how much light is arriving. Built into your splicer.
dB
The unit for light lost. Small number good. Your splices should read about 0.01 to 0.02.
Back to start

The kit

ToolWhat it does, and when you use it
Fusion splicer
Signal Fire AI-6A+
Melts two bare glass ends together with an electric spark so they become one strand. Takes about a minute.

Also your red laser and light meter, both built in, so it comes out of the case even when you are not melting anything.

Use it when: the glass is actually broken and nothing cheaper will do.
Cleaver
bought separately
Cuts the bare glass so the end is perfectly flat. A flat cut is what makes a good splice.

Do not use the cleaver that came in the splicer box. Buyers of that machine say it is the weak part, and a bad cut ruins an otherwise perfect splice.

Use it when: every single splice.
Inspection scope
400x
A little microscope you hold up to a plug to look at the glass tip.

Use it when: before you plug anything in, and first thing whenever a connection is acting up. Dirt you cannot see is the number one cause of fiber problems.
Cleaning pen Push it onto the tip and it wipes the glass in one click. Two sizes: the small end fits your plugs, the big end fits older equipment.

Use it when: the scope shows anything on the tip, which is most of the time.
Couplers
6-pack
A short barrel that joins two plugs end to end. No electronics.

Use it when: a plug is damaged, or any time you want to connect a buried cable once and never touch that plug again. Cheapest and most useful thing in the kit.
Patch cords
aqua, 2m, 6-pack
Short cables with plugs on both ends.

Use it when: joining a coupler to the equipment. Also your known-good test cable, the fastest way to find out whether the problem is the cable or the port.
Pigtails
12 strands, aqua
Short fibers with a factory plug on one end and bare glass on the other. Each strand is a different colour so you can tell them apart.

Use it when: you splice. You need one strand per thread, so a normal repair uses two of the twelve.
Splice sleeves
100-pack
Little heat-shrink tubes with a steel rod inside that armour a finished splice.

Use it when: every splice. Slide it on before you splice, not after.
Cotton swabs
plus the alcohol
For cleaning the two tiny channels inside the splicer that the glass lies in during a splice. They collect dust.

Use it when: every six months, or any time your splice numbers get worse for no obvious reason. A dirty channel tilts the glass out of line, and you will spend an hour blaming your cutting.
Dust caps
bag of them
The little plastic plugs that cap a fiber end that is not plugged into anything.

Use it when: any time a plug is left hanging. They ship with cables and immediately get lost, and an uncapped tip in a dusty enclosure is the contamination problem you bought the scope to avoid.

Keeping it working

You will open this case about once a year, in a hurry, at somebody else's house. The thing that goes wrong is not the splicer breaking. It is a dead battery, a dull blade, and hands that forgot the steps. None of those can be fixed on the day.

Every three months

tap to tick
  • Charge the splicer to fullA battery left half empty for a year and a half is dead. This is the most likely way the kit lets you down.
  • Turn it on and let it run its self-testConfirms it still boots and the heater still works.
  • Check the alcohol has not evaporated and the wipes are still sealedBoth dry out sitting in a case.

Every six months

tap to tick
  • Make one practice splice on scrap fiberProves the machine, the cleaver, and your hands all still work. Check the loss number is where it used to be.
  • Run the electrode cleaning cycleThe two little spark tips corrode just sitting there, not only from use.
  • Move the cleaver blade to a fresh positionIt has 16 positions and each is good for a few thousand cuts. Bad cuts are the first sign it is time.
  • Restock sleeves, pigtails, wipesCheap to replace at your desk, impossible to find at a job site.
  • Swab out the two channels the glass sits inCotton swab and alcohol, inside the machine where the fiber lies. Dust in there tilts the glass out of alignment and quietly ruins your splices.
Safety, and this one is real. The offcuts of bare glass are invisible splinters that do not show up on an x-ray. Every scrap goes in the collector box, never on the floor and never on your jeans. Wear safety glasses while cutting. Never look into the end of a fiber, because the light is invisible and your eye will not blink to protect itself.
Back to start

Something broke

Work these seven checks in order. They are sorted by how likely and how cheap, not by how interesting.

Check 1 of 7

What to do

The same list, all at once

  1. Is the far end even on?
  2. Is every plug pushed all the way in?
  3. Are the two strands crossed?
  4. Is a glass tip dirty?
  5. Does the red laser make it through?
  6. Is a plug broken? Fix with a coupler.
  7. Is the glass broken? Fix with a splice.
Back to start

The two repairs

Repair one: the coupler fix

A broken plug on a perfectly good cable. This is the most common fiber failure you will see, and it costs about $17 with no splicing.

The idea. Instead of repairing the damaged plug, you plug it into a coupler, screw the coupler down, and run a short patch cord from the coupler to the equipment. From then on, anyone servicing it unplugs the cheap patch cord. Nobody ever touches the plug on the buried cable again, which is what broke it in the first place.
BEFORE — HOW IT BREAKS buried cable, 330 ft equipment every service call pulls on this plug and the whole cable weight hangs off it AFTER — THE COUPLER FIX buried cable, 330 ft coupler bolted down equipment $4 patch cord takes all the abuse buried plug never touched again
Why this works. You are not repairing the damaged plug. You are retiring it into a coupler that gets bolted down once, and putting a cheap replaceable cord between it and the equipment. Every future service call unplugs the cord. Nothing ever tugs on 330 feet of buried cable again.

Steps

tap to tick
  • Look at both glass tips through the scopeThe buried cable's plug and the new patch cord's plug. If either is dirty you are about to build a bad connection and blame the coupler.
  • Clean anything that is not spotless, then look againCleaning pen, small end. Do not skip this because it looks fine to your eye. You cannot see the dirt that matters.
  • Push the buried cable's plugs into the coupler until they clickKeep the two strands in their own channels. Crossing them here is the same as crossing send and receive.
  • Screw the coupler to something solidA panel, a bracket, the inside of an enclosure. The entire point is that this joint stops moving.
  • Zip-tie the cable down within a few inches of the couplerThe weight of the cable must never hang on the plug. That is exactly what caused the damage you are repairing.
  • Run a patch cord from the coupler to the equipmentKeep every loop bigger than your fist. Tight bends leak light and cause problems that are hard to trace.
  • Confirm it works, then confirm it stayed workingCheck the switch port shows 1000M and full duplex with no errors climbing. Then leave it running and check again before you leave.
When a coupler will not save it. Look at the tip of the plug. If there is a small ivory ceramic cylinder there, the plug is fine and a coupler works. If that is missing and thin bare glass is what sticks out, there is nothing to plug in and you have to splice.

Repair two: splicing

Melting a new plug onto broken glass. About a minute per splice once you are practiced, and about forty minutes for a real repair once you count preparation.

Do twenty practice splices at your bench before you ever do one at a customer's house. Learn it where a bad cut costs nothing. Learning it in somebody's driveway with the light going is how a small problem becomes a big one.

Each splice

tap to tick
  • Slide the sleeve on firstPush a splice sleeve well back onto one side. If you forget, you will melt a perfect splice you cannot protect, and you have to cut it off and start over.
  • Strip back to bare glassTake the coating off about an inch and a half. Wipe the bare glass with alcohol on a lint-free wipe. Never touch it with your fingers.
  • Cut it flat with the good cleaverNot the one that came in the box. Seat the glass square and make one clean action. A crooked or ragged cut is the single biggest cause of a bad splice.
  • Lay both ends in the machine and close the lidDo not let a freshly cut end touch anything on the way in, including the machine.
  • Press go and read the loss numberYou want about 0.01 to 0.02. Above 0.1, cut it out and do it again. The machine's estimate is optimistic, so do not argue with a bad number.
  • Look at the joint on the screen before you shrink the sleeveYou want a straight, even join. No bubble, no step where the two halves do not line up, no fat spot.
  • Slide the sleeve over the joint and heat itCentre the bare splice in the sleeve with the steel rod underneath. Let it cool in the tray before moving it, a hot sleeve deforms.
  • Put the finished splice somewhere it cannot flexA splice tray or a small enclosure, in gentle loops. A splice flopping loose is a future failure with a date on it.

Then prove it works

tap to tick
  • Shine the red laser through end to endBuilt into the splicer. Red in one end, look for red at the other. It also glows brightly at any bad splice or tight bend, which shows you where a fault is.
  • Scope and clean both plug endsYou have just been handling them. Assume they are dirty.
  • Bring the connection up and read the switch port1000M, full duplex, no errors climbing. That is a pass.
  • Leave it running and check again before you leaveA marginal splice comes up looking fine and fails later. Do not sign off on something you watched for two minutes.

Watch it done before you try it

Opens on YouTube

How to fusion splice, animatedStart here. Animated rather than filmed, so you can actually see what is happening inside the machine. Step-by-step fusion splicing on real hardwareThe same process on an actual machine, close to the one you are buying.