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NavIC Atomic Clock Failure on IRNSS-1F Explained

17 March 20261 min read
SCIENCE & TECHNOLOGYNavIC AtomicClock Failure onIRNSS-1FExplained17 March 2026safalsetu.com

Why in the news

ISRO said an onboard atomic clock of IRNSS-1F stopped working. As the satellite belongs to NavIC, India’s regional navigation system, fewer satellites remain fully functional.

Key facts

  • Satellite: IRNSS-1F, part of NavIC (Navigation with Indian Constellation).
  • An atomic clock counts time via atomic vibrations, usually Rubidium or Cesium.
  • Navigation relies on exact timing: a billionth-of-a-second slip can mean a ground error of several metres.

How the clock helps positioning

IdeaMeaning
Atomic resonanceFrequency of radiation emitted or absorbed as electrons change energy level
Stable frequencyAtoms vibrate steadily; quartz or mechanical clocks drift
Time of flightSatellite stamps its signal with sending time
TrilaterationReceiver compares timings to get distance from several satellites; at least four give latitude, longitude and altitude

About NavIC

  • India’s own regional system, formerly IRNSS.
  • IRNSS-1A launched in July 2013; plan was seven satellites by 2016, with replacements later.
  • Coverage: India plus about 1,500 km around.

Exam angle

  • Earlier name: IRNSS.
  • Satellites needed for a 3D fix: four.

Test yourself

1. The atomic clock failure reported by ISRO occurred on which navigation satellite?

The failure was on IRNSS-1F.

2. Signals from at least how many satellites are needed to fix latitude, longitude and altitude?

At least four satellites are used for a full position fix.

3. NavIC provides service over India and about how far beyond its borders?

Coverage extends about 1,500 km beyond India's borders.