Ipswich to Lausanne: Road Trip Guide & Distance

455.2 miles 732.5 km · straight line
546.2 miles estimated 879 km · driving distance
10h 59min estimated drive time
£83 - £102 estimated fuel cost
~1h 25min flight time
145° SE bearing direction

How far is Ipswich from Lausanne?

The distance from Ipswich to Lausanne is 455.2 miles (732.5 km) as the crow flies. Lausanne is located SE of Ipswich. By car, the driving distance is approximately 546.2 miles, taking about 10h 59min. A direct flight would take roughly 1h 25min. Ipswich is in United Kingdom, while Lausanne is in Switzerland.

This is a solid day of driving. Be sure to take breaks every 2-3 hours to avoid driver fatigue, and plan your meals ahead of time. Heading East means you'll be driving into the sunrise if you start early. Keep your windshield clean for the best visibility. Keep in mind this route crosses international borders. Don't forget your passport, and check current border crossing times and vehicle insurance requirements.

Coordinates come from public place data for Ipswich and Lausanne. The driving distance is estimated from straight-line distance with a road-factor model, so confirm the route in your navigation app. Fuel, flight, bus, and train values are planning estimates and can change by date, provider, road closures, and border rules.

How to Get from Ipswich to Lausanne

Method Time Est. Cost Best For
Drive 10h 59min £83 - £102 Flexible stops
Fly ~1h 25min $80–200* Speed
Bus ~13h 11min $44–$82* Budget
Train ~10h 26min $66–$191* Comfort

Suggested Stops Between Ipswich & Lausanne

Quick Facts

Ipswich
52.06°N, 1.16°E
Europe/London
18m elevation
Lausanne
46.52°N, 6.63°E
Europe/Zurich
495m elevation
Explore more routes from Lausanne

Did You Know?

  • At walking speed (3 mph), it would take about 152 hours of non-stop walking
  • By bicycle at 12 mph, the journey would take roughly 38 hours
  • You could travel this distance about 54.7 times to circle the Earth's equator
Data Sources & Estimate Notes GeoNames · OpenStreetMap · Driving distance estimated using road factor coefficients