Colony monitoring

Your bees will tell you
they are in trouble.

A colony holds its brood nest at 35 °C — through frost, through midday sun, without a thermostat. When it can no longer do that, something is already wrong. This kit watches for that moment every minute, without opening the hive.

Animated cross-section of a beehive over 24 hours. The brood cluster glows steadily near 35 degrees while the air outside cycles between 8 and 22 degrees.
One day, one hive. Heat moving through a hive as the outside temperature runs its daily cycle. The nest holds. The colony's metabolic output rises and falls to pay for it.

An inspection is a snapshot.
Failure is a process.

You open a hive every week or two, and for the fortnight in between you are guessing. Opening it is not free either — you break the propolis seal, dump the heat the colony spent days building, and put the queen at risk every time.

By the time trouble is visible on the frames, it has usually been developing for weeks. A failing queen, a colony slipping toward queenless, a nest that has quietly gone broodless: these are slow. They are visible in temperature long before they are visible on a frame — and over winter, when you cannot open the hive at all, they are invisible until spring.

Thermal stability is the vital sign

A queenright colony with healthy brood defends 35 °C hard, because developing brood needs it. A colony that is weakening, broodless, or has lost its queen stops defending it. The nest stops being a regulated system and starts being a box that follows the weather.

Two hive cross-sections side by side across the same day. The healthy colony keeps a bright stable core. The failing colony stays dim and its brood temperature drifts with the ambient curve.
Same weather, same hardware, two colonies. One trace is flat against the ambient curve. The other follows its shape. That correlation is the alarm.

This is why the system watches trends and baselines rather than fixed trip points. A single temperature reading tells you very little. The relationship between the nest and the weather, tracked minute by minute, tells you a great deal.

Line chart over 24 hours. Ambient temperature swings between 8 and 22 degrees. A healthy brood trace stays flat inside a 32 to 36 degree band while a failing brood trace sits lower and mirrors the ambient curve.
The whole argument in one chart. Shaded band is the healthy brood range, 32 – 36 °C.

What the kit measures

Cadence
60 severy channel, continuously
Temperature
3 probesnest edge, upper, ambient
Humidity
2 sensorsin-hive and ambient
Weight
4 cellsplatform scale under the hive

Readings are cheap. Judgement is the product.

Anyone can put a thermometer in a hive and draw you a chart. The work is in deciding which wiggle in that chart is worth your Saturday morning — and the system splits that decision between the device and the server, according to which one is actually better placed to make it.

The device calls what only it can see

Battery state, where an absolute threshold is genuinely correct — 3.3 V means the same thing on every hive. And stuck sensors, caught on raw repeated samples, because once a reading has been smoothed a dead probe looks perfectly plausible.

The server calls what needs history

Every channel is compared against its own rolling baseline, not a number someone picked. A strong colony in an exposed apiary and a nuc in a sheltered garden do not share a threshold, and pretending they do is how you get an alert nobody trusts.

Time of day is part of normal

Thresholds follow a diurnal profile, so an ordinary warm afternoon does not page you. The question is never "is this hot" — it is "is this hot for this hive, at this hour".

Built for an apiary, not a hive

One backend runs as many hives as you have. Each unit publishes under its own identity, and the map shows the whole yard at once, coloured by whichever colony is in the most trouble — so the daily question stops being "how is everything" and becomes "who needs me first".

Adding a unit is a registration, not a rebuild

Register a hive and it hands back that unit's configuration. No editing firmware per device, no keeping a spreadsheet of which board went where.

Every unit knows what it is

Pins, sensors, battery layout and calibration live in a hardware manifest the firmware builds itself from. A different variant of the kit is a different manifest — not a fork of the codebase.

Calibration survives the winter

Each unit stores its own scale calibration and knows which physical probe is which by serial number, so a probe unplugged and put back in the wrong order still reports the right thing.

Learn the judgement before you own the hardware

The kit ships with a training mode: an apiary of several hives, telemetry streaming in, problems developing quietly, and a limited number of inspection visits per day. You decide who to open.

It runs on the same detection code the real deployment uses, so the alerts you learn to read are exactly the ones you will get in the yard — and it is an honest way to find out whether this kind of monitoring suits how you keep bees, before anything is bolted to a hive.

Questions it is built to answer

  1. Is the brood nest thermally stable?
  2. Is the colony ventilating normally?
  3. Is nectar coming in — and are stores being consumed too quickly?
  4. Is there an overheating risk building?
  5. Is there thermal instability suggesting broodlessness, weakening, or a queen problem?
  6. Is a sensor or comms fault hiding a real colony issue?

The hive stays a good hive

Most of the design decisions here were made by asking what is good for the colony, not what is easy for the electronics.

Electronics are guests

The enclosure mounts beside or below the hive, never on top. The top is your inspection access and it stays clear.

Minimal intrusion

A 3 mm probe at the edge of the brood nest, not its centre. Nothing sits where it would disrupt thermoregulation, ventilation, or the queen's laying pattern.

Sensing, not actuation

The system does not heat, cool, or ventilate your hive. It tells you what the colony is doing and leaves the beekeeping to the beekeeper.

This does not replace opening the hive. Sensors cannot see a queen, read a brood pattern, or spot disease. What they can do is tell you which colony to open next, and when — so your inspections land where they matter and the rest of the apiary is left in peace.

Designed, not yet built

Things we have worked out on paper and deliberately have not shipped. They are here because a roadmap you can read is more useful than a feature list you cannot verify — nothing in this section exists yet.

IdeaWhere it has got to
Hive theft and tamper alerts Specified as a separate low-cost unit — tilt and movement sensing, SMS-first so it works where there is no WiFi. Deliberately not a monitoring device: it carries no brood or mass sensors, because the job is a fast alert on a long battery.
Out-of-range apiaries A cellular uplink for yards with no WiFi, with a data budget that does not quietly cost you a fortune. Designed, not built.
Unattended running Solar, so a unit survives without a monthly battery swap. The current firmware runs its radio continuously and needs charging roughly daily — honest, and the reason this one matters.
Listening to the colony Colony sound carries real information about queenlessness and swarm preparation. The sensing approach is written up and the field is reserved in our data format, but there is no microphone, no driver and no analysis yet. We would rather say that than imply otherwise.

Where this actually is

Being straight with you, because you will find out anyway and the whole product is about not hiding things.

ComponentState
Sensor firmware, alert rules, on-device bufferingBuilt · tested
Baseline anomaly detection and adaptive thresholdsBuilt · tested
Backend, live feed, alert history, browser monitorBuilt · tested
Multi-hive registration and device provisioningBuilt · tested
Apiary triage training modeBuilt · tested
Mobile app — hive map and alert statusBuilt · early
Bill of materials and build guideComplete
Field deployment on a live colonyNot yet

Everything above the last line is built and tested in software. The last line is the honest one: no unit has yet run on a real hive. That is the next step, and it is what the pilot programme is for.

We are looking for pilot apiaries

If you keep bees and you would like a colony instrumented, we want to hear from you. You get the hardware and the data. We get the thing we actually need, which is a real hive, in real weather, telling us where the model is wrong.