Systems · Pillar · Live

Stay connected when
the towers are gone.

Power keeps you alive. Comms keep you reachable — for work, for weather, for help. The move isn't one magic device. It's layers, so when one drops, the next still carries.

Cell coverage becomes fiction the moment you leave the interstate. Depend on a single bar and you're one dead zone from no navigation, no weather, and no way to call for help. Real off-grid comms means redundancy on purpose — independent systems that fail in different ways.

The layered stack

LayerWhat it doesWorks whenPower draw
Satellite internetReal broadband anywhere with sky viewNo cell coverage at allHigh (~30–100W)
Cell + boosterTurns 1 distant bar into usable dataAny tower within reachLow (~5–30W)
GMRS / ham radioLocal-to-regional voice, no infrastructureEverything else is downVery low
LoRa meshEncrypted text, miles of range, no subscriptionNo towers, no internetTiny (battery for days)
Satellite messengerSOS + short texts anywhere on earthThe true emergencyNegligible

Satellite internet (Starlink)

Starlink changed off-grid life more than any other single product — real broadband from a field with no infrastructure. The catch is power. The dish is one of the largest continuous loads in a small system, typically drawing tens of watts around the clock if you leave it on. Standard dishes with motorized positioning draw meaningfully more than the compact Mini.

Cell boosters

A booster doesn't create signal — it amplifies what's already there. If you have one weak bar outside, a good booster can turn that into usable data inside. If you have literally zero signal, a booster gives you zero signal, louder. Know which situation you're in before spending the money.

The single biggest performance factor is the outside antenna and how high it sits. A directional antenna aimed at a known tower dramatically outperforms an omnidirectional one when you're parked — at the cost of needing to aim it. Boosters draw modest power and are worth leaving on.

Radio: GMRS vs ham

Radio is the layer that needs no infrastructure whatsoever — no towers, no satellites, no subscription. Two realistic paths in the US:

Whatever you pick: the antenna matters more than the radio. A modest radio with a good, well-placed antenna beats an expensive radio with the stock rubber duck every single time. Height and clear line of sight are free range.

Meshtastic and LoRa mesh

This is the layer most people have never heard of, and it's the most interesting. LoRa is a low-power, long-range radio protocol; Meshtastic is open-source firmware that turns cheap LoRa boards into an encrypted text-messaging mesh. No towers, no subscription, no monthly anything.

Practical use: convoy coordination, keeping in touch across a property, and a genuinely resilient backup channel when everything else is down. It's also just a great project — the community is active and the hardware is cheap.

Satellite messengers: the emergency layer

If you take one thing from this page: carry a device that can call for help without cell coverage. Satellite messengers (and the satellite SOS features now built into some phones) send an SOS with your position to emergency services from essentially anywhere with sky view. When you are far from help and something goes badly wrong, this is the layer that decides the outcome. Everything else on this page is convenience by comparison.

What to build first

  1. A satellite messenger or equivalent SOS capability. Safety before convenience.
  2. Cell booster if you spend time at the edge of coverage — cheapest real-world gain.
  3. Starlink if you need to work online from genuinely remote places. Budget the power honestly.
  4. GMRS handhelds for local and convoy comms. Cheap, no exam, immediately useful.
  5. Meshtastic nodes when you want infrastructure-free text and a resilient backup.

Running Starlink, a booster, or a mesh node?

Real-world draw, real-world range. Share what your setup actually does.

Send a field report
Keep building

The rest of the system