Network diagnostics for Android

Field-grade network testing
on any Android phone.

QuickIP measures signal strength, distance, speed, latency and coverage, then states what each result means and what to do about it. Available in six languages.

No account required No data collection No advertising
Capabilities

Nine diagnostic tools

Each screen states what the measurement means and which action it calls for.

Dashboard

Everything about your connection on one screen, refreshed the moment you open the app.

  • Local IPv4 and IPv6, gateway, subnet
  • Public IP with country, city and ISP
  • Wi-Fi name, BSSID and signal strength
  • Session analysis: internet, gateway and DNS timed on open
  • Time, time zone and location

Live distance tracking

Readings follow the phone as it moves. No refresh required.

  • Distance to the router, derived from signal path loss
  • Distance to the cell tower where the carrier reports it
  • Direction of travel: approaching, moving away, or steady
  • Averaged in the decibel domain to prevent flicker
Updates every 2 seconds

Phone temperature

Heat is a common and invisible cause of slow throughput. Android throttles the modem to shed it.

  • Live temperature in Celsius and Fahrenheit with a plain-language verdict
  • Five bands from Cold through Normal, Warm and Hot to Overheating
  • Warns when thermal throttling will depress a speed test result

Network Doctor

Runs the checks a technician would, in order, and names the failure instead of saying "no internet".

  • Sequential: adapter, gateway, DNS, internet, TLS
  • IP conflict detection
  • Access medium check: fibre, cellular, fixed wireless, DSL
  • Fibre ONT locator with RX power guidance

Quality & speed test

Speed is only half the story. Bufferbloat is why calls stutter while a download runs.

  • Download, upload, latency, jitter, packet loss
  • Bufferbloat: latency measured under load
  • Rated from Excellent to Bad, with the applications each rating supports
  • Wi-Fi and mobile results kept side by side

Bandwidth monitor

Identifies why a connection is slow when this device is idle.

  • Live upload and download for this device
  • Detects when another device is saturating the link
  • Home-screen widget showing live throughput

Three-way scanner

Wi-Fi, Bluetooth and cell towers in a single screen.

  • Wi-Fi: devices on the local network, with names and new-device flags
  • Bluetooth: nearby devices with manufacturer, class and distance
  • Towers: every cell received, with load and full RF detail

Tools

The command-line toolkit, without the command line.

  • Ping, traceroute, DNS resolver, port checker
  • DNS benchmark across major resolvers
  • Website and IP lookup with ownership and location

PDF delivery report

For engineers signing off an installation.

  • Single page: engineer, customer, order number, date
  • Speed results, line health, addresses, location
  • Shared straight from the phone
Continuous measurement

Readings that track movement

Raw Wi-Fi signal varies by several decibels even when a phone is stationary. Converted directly to metres, the reading fluctuates between 4 and 9 metres while nothing is happening.

QuickIP averages in the decibel domain. Path loss is logarithmic, so averaging metres would bias the result toward the more distant readings. A change is reported as movement only once it exceeds normal radio variation. A stationary phone reads steady, and moving to another room registers within seconds.

Battery: sampling stops when the screen is left and resumes on return.
Wi-Fi signal84% · −58 dBm
Distance to router≈ 8 m
Trend↗ Moving away
Tower distanceFar
Phone temperature41.5 °C
ThrottlingSpeed tests will read low
OperatorOoredoo · 422-03
Cells heard14 from 14 sectors
Generations5G 0 · 4G 6 · 3G 0 · 2G 8
Connected cell4G LTE · Band B1
RSRP / RSRQ / SINR−102 / −13 / 3 dB
Cell load≈ 36% airtime in use
Cell towers

Measuring cell load

Subscriber counts per tower are held inside the operator core network. No Android interface exposes them, and any application displaying a user count is fabricating the figure.

QuickIP measures RSRQ instead, which compares the reference signal against total power on the channel. That total includes traffic from every other user, so a cell with strong signal but poor RSRQ is congested rather than distant. The result is expressed as a percentage of airtime in use.

Full signal with slow data: the app identifies this case explicitly. Home broadband (HBB) routers use the same cells, so a loaded cell accounts for a slow HBB line at the same address.
Localisation

Six languages, including right-to-left

Arabic and Urdu mirror the complete interface layout, not the text alone.

EnglishEnglish
العربيةArabic · RTL
اردوUrdu · RTL
हिन्दीHindi
FrançaisFrench
EspañolSpanish
Privacy

No data leaves the device

The published build contains no analytics, advertising or crash reporting.

No account required

Every feature is available on installation. There is no registration, and therefore no account data to expose.

No tracking components

No analytics, advertising or crash reporting libraries are included. Adding any of them would invalidate the statement above.

Location remains on the device

Android requires location permission to read Wi-Fi and cell details. QuickIP uses it locally and transmits it nowhere.

Read the full privacy policy

Support

Technical support

Submit a request from this site or from within the app. A reference number is issued immediately and replies are sent by email.

Contact support