Piaggio Aerospace P.180 Avanti IIPhoto: Anna Zvereva · CC BY-SA 2.0 · resized · representative variant
Indicative 2010 market price$2.27m (€2.1m) to $2.72m (€2.52m)
Estimated annual cost at 80 h$385k (€357k)
Five-year cash outlay$4.4m (€4.07m)

A Piaggio Aerospace P.180 Avanti II costs approximately $2.27m (€2.1m) to $2.72m (€2.52m) to buy at 2010 market values, and about $385k (€357k) a year to own flying 80 hours, roughly $4,815 (€4,458) per flight hour all-in. It seats 8, cruises at 346 kt (398 mph) and has a published range of 1,050 nm (1,945 km), needing about 2,953 ft (900 m) of runway. Figures are indicative planning estimates compiled 2026-07, not a quote for any specific airframe.

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Manufacturer-verified data

Extended technical specifications

First-party reference values for this model. They are shown separately from PlaneFit planning estimates and do not enter Finder or cross-model rankings until each field is normalised across the catalogue.

Maximum takeoff weight5,489 kg
Usable fuel1,583 L
Maximum operating altitude41,000 ft
Engine2 x Pratt & Whitney Canada PT6A-66B, 850 shp each

Key figures

Indicative planning data, compiled 2026-07. Verify against the AFM and records.

Seats8
Reported payload proxy1,190 lb (540 kg)
Reported range1,050 nm (1,945 km)
Practical planning radius (4 people)Not used for mission ranking
Cruise speed346 kt (398 mph)
Runway need~2,953 ft (900 m)
Landing gearRetractable tricycle
PressurisedYes
FuelJet A-1
Fixed annual base$130k (€120k)
Direct cost per flight hour$2,668 (€2,470)

The ownership trade-off

The P.180 Avanti II combines 8-seat turboprop capability with about 1,050 NM reported range and about 346 kt reported cruise, while payload, runway and operating-cost figures remain indicative and should be verified for the specific aircraft before making a decision.

Cost picture at different usage

Indicative cash costs at 2010 market values, before financing, depreciation and tax. The fixed base is the same whether the aircraft flies or not, so the effective hourly cost falls as utilisation rises.

Annual useAnnual cash costEffective cost / hFive-year cash outlay
40 h / year$278k (€258k)$6,961 (€6,445)$3.86m (€3.58m)
80 h / year$385k (€357k)$4,814 (€4,458)$4.4m (€4.07m)
120 h / year$492k (€455k)$4,099 (€3,795)$4.93m (€4.57m)
180 h / year$652k (€604k)$3,622 (€3,353)$5.73m (€5.31m)

What the estimate covers

Every figure above is built from a $130k (€120k) fixed annual base, covering hangarage, insurance, scheduled maintenance reserves and recurring airworthiness costs, plus $2,668 (€2,470) per hour flown for fuel, reserves and consumables. It is a planning model for comparing aircraft and testing utilisation, not a maintenance programme quote, insurance quote or pre-buy assessment.

Older examples add calendar-driven maintenance: a 2011-built airframe is estimated at $378k (€350k) per year at 80 hours. Airframe and engine time, maintenance and damage history, avionics, equipment, geography and tax treatment move a real transaction further than the model year does, so price the aircraft in front of you, not the model. A cheaper example carrying deferred maintenance can be the more expensive aircraft once the first annual inspection is complete.

Piaggio Aerospace P.180 Avanti II cost guide answers the same figures as standalone purchase and ownership questions, and the ownership cost calculator lets you replace these assumptions with your own hours and fixed costs.

Where it fits well

  • 346 kt (398 mph) cruise supports fast regional travel.
  • 1,050 nm (1,945 km) reported range is retained for profile context, but PlaneFit does not use it for mission ranking yet.
  • 1,190 lb (540 kg) reported payload proxy and 8 seats define the cabin context pending source-level normalization.

Limitations to price honestly

  • The P.180 Avanti II combines 8-seat turboprop capability with about 1,050 NM reported range and about 346 kt reported cruise, while payload, runway and operating-cost figures remain indicative and should be verified for the specific aircraft before making a decision.
  • $130k (€120k) fixed annual planning base before flying a single hour.
  • Approximate 2,953 ft (900 m) take-off requirement must be checked against runway, surface, slope, temperature and loading.

Recommended missions

  • Family and small-group touring with a weight-and-balance check for every trip.
  • Longer regional missions, with reserves and payload reducing brochure range.
  • Time-sensitive business travel where dispatch reliability justifies the cost.

What you need to be qualified to fly a Piaggio Aerospace P.180 Avanti II

On top of a pilot certificate, this aircraft obliges the person flying it to hold the following. Each one is time and money before the first trip, and insurers usually attach their own minimums on top.

  • Multi-engine rating. An airplane multi-engine land class rating. Insurers add their own minimum: multi-engine time, time in this make and model, and often a checkout with a named instructor before you fly it solo.
  • Type rating, if it exceeds 12,500 lb. 14 CFR 61.31(a) requires a type rating for any airplane above 12,500 lb maximum takeoff weight. Most owner-flown turboprops sit below it and the cabin-class types sit above, so this is the line that separates a checkout from a formal type course. PlaneFit does not store maximum takeoff weight, so check this type's certificated weight rather than assuming either way.
  • Complex airplane endorsement. Retractable gear puts this aircraft in the complex class of 14 CFR 61.31(e), alongside flaps and a controllable-pitch propeller, which retractable types carry as a matter of course. It is a one-time instructor endorsement in your logbook, but the insurance condition behind it is the part that costs money: underwriters usually want a stated number of hours in retractable-gear aircraft before they will write the risk at standard rates.
  • High-altitude training, if it flies above 25,000 ft. 14 CFR 61.31(g) requires ground and flight training for a pressurised aircraft whose service ceiling or maximum operating altitude is above 25,000 ft. PlaneFit does not store service ceiling, so check this type's certified ceiling rather than assuming either way.

US requirements under 14 CFR 61.31, stated for orientation and not as advice. PlaneFit is not an aviation authority or a training organisation. Other authorities set different rules, and the current regulation and your instructor are what govern.

Common questions about the Piaggio Aerospace P.180 Avanti II

How much does a Piaggio Aerospace P.180 Avanti II cost?

An indicative 2010 market price for a Piaggio Aerospace P.180 Avanti II is $2.27m (€2.1m) to $2.72m (€2.52m). This is a planning estimate normalised across the market, not a quote for a specific airframe. Condition, engine time remaining, avionics and damage history move the real number more than the model year does.

What does a Piaggio Aerospace P.180 Avanti II cost per hour to operate?

Flying 80 hours a year, a Piaggio Aerospace P.180 Avanti II works out at roughly $385k (€357k) annually, which is about $4,815 (€4,458) per flight hour all-in once fixed costs are spread across those hours. The direct cost per hour alone, covering fuel, reserves and consumables, is about $2,668 (€2,470).

How far can a Piaggio Aerospace P.180 Avanti II fly?

Reported range is 1,050 nm (1,945 km). PlaneFit does not yet use this figure for mission ranking on this model.

What do you need to be qualified to fly a Piaggio Aerospace P.180 Avanti II?

Beyond a pilot certificate, a Piaggio Aerospace P.180 Avanti II requires multi-engine rating, type rating, complex airplane endorsement and high-altitude training. An airplane multi-engine land class rating. Insurers add their own minimum: multi-engine time, time in this make and model, and often a checkout with a named instructor before you fly it solo. These are US requirements and are stated for orientation; confirm them against the current regulation and an instructor.

What runway does a Piaggio Aerospace P.180 Avanti II need?

Plan on approximately 2,953 ft (900 m) for take-off. Check this against the actual runway, surface, slope, temperature and loading, all of which extend the requirement.

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