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Comparison

Robot vacuum network requirements, compared

Bands, pairing routes and phone permissions differ by maker. This page lines them up and explains each column.

Checked 3 October 2026

Drawing of a robot vacuum beside its base, with a phone and a home router

Comparison

Twelve makers, one table

Each row summarises what the maker’s own material says. Where that material is silent, the cell says so rather than guessing.

Maker2.4 GHz5 GHzOne name, both bandsPairing routePhone side
RoombaYesNewer linesVaries by modelBluetooth where availableBluetooth
SharkRequiredNoMeets the stated conditionIn-app sequenceNot stated
RoborockYesNoNot statedRobot hotspot; QR on Q-seriesLocation; local network on iOS
DEEBOTYesNot on its ownYesQR code, then robot hotspotWi-Fi; local network on iOS
eufy RoboVacYesNot statedNot statedRobot networkLocation, Precise on iPhone
DreameYesNoThe 2.4 GHz name is chosenRobot hotspot; Bluetooth on many newer modelsLocation
Samsung Jet BotRequiredNot statedNot statedQR or catalogue; direct linkSamsung account
Dyson 360 Vis NavYes (retailer Q&A)No (same source)Not statedIn-app promptsNot stated
Narwal FreoYesNoNot statedBluetooth in the app; QR codeBluetooth
XiaomiYesNoNot statedQR code or nearby scanRegion choice
TinecoRecommendedNot statedNot statedIn-app sequenceNot stated
Neato———No longer possible—

Bands

Why 2.4 GHz dominates

A home router usually broadcasts in two bands. 5 GHz moves more data but fades faster through walls and floors; 2.4 GHz is slower and travels further.

A robot vacuum needs little bandwidth and plenty of reach. It exchanges commands, status and map updates while working its way into the corners of the house, so most makers fit a 2.4 GHz radio and several state plainly that 5 GHz is not used.

Exceptions are growing. iRobot’s s9, j-series and Combo 10 Max robots accept 5 GHz as well, and Ecovacs accepts a router that shares one network name across both bands.

Chart-style drawing: the 2.4 GHz signal passes through more walls than the 5 GHz signal before fadingwall 1wall 2wall 32.4 GHz5 GHz
Schematic only: how far each band carries depends on the building.

Pairing

Three ways a phone reaches a robot

Drawing: the robot broadcasts a short-lived network that the phone joins

Robot hotspot

The robot briefly becomes its own access point, with a name such as roborock-vacuum- or dreame-vacuum- followed by a code, or the robot’s model name. Once the phone is on it, the app hands the robot the name and password of the home network, and the robot then moves across to it. A warning that the hotspot has no internet is normal while this happens.

Drawing: phone and robot exchange details over a short-range link

Bluetooth

The app and robot talk over a short-range Bluetooth link and the phone stays on home Wi-Fi throughout. iRobot uses it wherever a model has it, Narwal keeps the whole exchange inside its app, and many newer Dreame robots begin this way.

Drawing: a phone camera aimed at the printed code on a robot

QR code

A code printed on the robot identifies it rather than connecting it. Scanning saves searching a model list; Four of the twelve makers print one on at least some models, and Ecovacs’s code also opens the genuine app listing.

Permissions

What setup apps ask of the phone

Location
Android and iOS treat the names of nearby Wi-Fi networks as location information, so an app without location access cannot see the robot’s hotspot. eufy goes further and asks for Precise Location on iPhones.
Local network
Since iOS 14, an app must hold this permission before it can talk to other devices on the network it shares, a robot’s hotspot among them. Two of the makers’ guides mention it by name.
Bluetooth
Asked for when the first exchange travels over Bluetooth, which is the route in Narwal’s app and on many newer robots from other makers.

All three are granted by the owner, on the owner’s phone, to the maker’s app alone. No website, caller or pop-up has any reason to ask for them.

Limits

Networks a robot cannot join

  • Hotel, dormitory and office networks that demand a browser sign-in before connecting: a robot has no browser to complete it.
  • Business networks that require a username alongside the password.
  • Networks protected only by WEP, which at least one maker rules out explicitly.
  • Networks that broadcast 5 GHz alone, for robots with 2.4 GHz radios.

Dreame adds a practical preference: network names and passwords written only in letters and numbers pair more smoothly than ones with symbols.