206Stationair

cessnaEffective Sep 28, 2026Timetable 1995–2026

What mechanics have reported to the FAA on the Cessna 206 Stationair, the airworthiness directives in force, and the NTSB accident record, on one sheet. U206, P206 and TU206/TP206 (1964–86), and the 206H and T206H (1998 on).

What gets written up1995–2026
85Reciprocating Engine Cylinder Section17113%2974Magneto/​Distributor796.1%1285Reciprocating Engine Power Section695.3%861Propeller Hub Section382.9%057Ailerons312.4%085Reciprocating Engine Oil System302.3%2

Top six of ten systems. Counts reflect who reports, not how reliable the airplane is.

Registered
2,588 in the U.S., FAA registry Sep 28, 2026
Reports on file
1,301 since 1995
2016–2025
118, about 4.6 a year per 1,000 registered
ADs in force
60 (26 airframe, 34 engine)
Accidents
483 since 1995, 94 fatal

Airworthiness directives

60 in force · 15 superseded not shown

From Federal Register final rules since 1995. Whether an AD applies to a particular airplane depends on its serial number, engine and installed equipment; confirm against the FAA’s Dynamic Regulatory System.

For the airframe26 in force
AD2020-18-01Effective Nov 12, 2020Textron Aviation Inc. AirplanesRepetitive

Cracks have been found in the lower area of the forward cabin doorpost bulkhead on certain Textron Aviation airplanes. This AD requires repetitive inspections of the lower cabin doorposts at the strut attach fitting for cracks and repair of any cracks found.

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AD2020-16-08Effective Aug 17, 2020Aspen Avionics, Inc.One-time

Aspen EFD1000 flight display systems with software version 2.10 or 2.10.1 and no independent backup instruments may lose attitude, altitude, and airspeed information. This AD requires installing a software update to address the display failure condition.

Read the AD in the Federal Register
AD2019-01-02Effective Feb 7, 2019Aspen Avionics, Inc., Evolution Flight Display UnitsOne-time

Certain Aspen Avionics Evolution Flight Display units repetitively reset when equipped with specific software and options, creating a potential flight safety hazard. The AD requires disabling the ADS-B In function and revising the Airplane Flight Manual Supplement.

Read the AD in the Federal Register
AD2013-11-11Effective Aug 1, 2013Cessna Aircraft Company AirplanesRepetitive

Internal failure of the engine oil pressure switch can cause complete loss of engine oil, leading to partial or complete loss of engine power or fire. This AD sets a 3,000-hour life limit on the engine oil pressure switch and requires replacement when the limit is reached.

Read the AD in the Federal Register
AD2012-10-52Effective Jun 26, 2012Hartzell Engine Technologies TurbochargersEmergency AD

Hartzell Engine Technologies turbochargers with certain serial numbers or manufacture dates may experience bearing seizure and component failure, causing engine power loss in flight. This AD requires immediate removal of affected turbochargers from service before further flight.

Read the AD in the Federal Register
AD2011-10-09Effective Jun 17, 2011Cessna Aircraft Company Models 150, 152, 170, 172, 175, 177, 180, 182, 185, 188, 190, 195, 206, 207, 210, T303, 336, and 337 AirplanesRepetitive

Seat slippage or departure of the seat roller housing from the seat rail may prevent pilots from reaching flight controls. This AD requires repetitive inspections of seat rails, pins, rollers, and related components, with replacement of parts as necessary.

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AD2008-26-10Effective Jan 5, 2009Cessna Aircraft Company 172, 175, 177, 180, 182, 185, 188, 206, 207, 208, 210, 303, 336, and 337 Series AirplanesOne-time

Certain Cessna aircraft may have an alternate static air source selector valve port obstructed by an improperly installed part number identification placard, causing erroneous altimeter, airspeed, and vertical speed indications. This AD requires inspection of the placard and port, removal of the placard if it obstructs the port, and reporting to the FAA if obstruction is found.

Read the AD in the Federal Register
AD2008-10-02Effective May 12, 2008Cessna Aircraft Company 172, 175, 180, 182, 185, 206, 207, 208, 210, and 303 Series AirplanesOne-time

The part number identification placard on the alternate static air source selector valve may obstruct the port, causing erroneous altimeter, airspeed, and vertical speed indications. This AD requires inspection of the valve and removal of any obstructing placard.

Read the AD in the Federal Register
Show 18 older
AD2008-05-09Effective Apr 8, 2008Cessna Aircraft Company 172, 182, and 206 Series AirplanesOne-time

The seat base/back attach brackets on certain Cessna 172, 182, and 206 series airplanes can fail at the weld, risking seat collapse during flight. This AD requires removal and modification of the crew seat base/back attach brackets, then reinstallation of the seats.

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AD2007-08-03Effective May 2, 2007Cessna Aircraft Company Models 172R, 172S, 182T, T182T, 206H, and T206H AirplanesRepetitive

Loose fuel line fittings on flexible hoses in the engine compartment can cause partial or complete loss of engine power and uncontrolled fire. This AD requires physically establishing and verifying the correct torque values on fuel hose end fittings, not visual inspection alone.

Read the AD in the Federal Register
AD2007-05-10Effective Apr 11, 2007Cessna Aircraft Company Models 172R, 172S, 182S, 182T, T182T, 206H, and T206H AirplanesOne-time

Crew seat back cylinder lock assemblies may fail, crack, or bend, allowing uncontrolled seat movement or backward collapse during flight. Install Modification Kit MK172-25-10C or a steel lock rod/bar on both crew seat back cylinder lock assemblies, or inspect and correct any discrepancies if earlier modification kits were installed.

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AD2005-13-10Effective Aug 9, 2005Cessna Aircraft Company Models 172R, 172S, 182T, T182T, 206H, and T206H AirplanesOne-time

Some MC01-3A main electrical power junction boxes have incorrect circuit breakers installed that may trip prematurely, potentially causing loss of all electrical power and navigation/communication equipment. You must inspect the main electrical power junction box and replace any incorrect circuit breakers with the correct 40-amp breaker.

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AD2004-19-01Effective Nov 1, 2004Cessna Aircraft Company 120, 140, 140A, 150, F150, 170, 172, F172, FR172, P172D, 175, 177, 180, 182, 185, A185E, 190, 195, 206, P206, U206, TP206, TU206, 207, T207, 210, T210, 336, 337, and T337 Series AirplanesOne-time

This is a correction to AD 2004-19-01 that fixes an incorrect serial number reference for Model T337B airplanes (337-0570 instead of 37-0570). The original AD addresses a previously identified safety issue requiring inspection or modification.

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AD2004-19-04Effective Nov 1, 2004Cessna Aircraft Company 120, 140, 140A, 150, F150, 170, 172, F172, FR172, P172D, 175, 177, 180, 182, 185, A185E, 190, 195, 206, P206, U206, TP206, TU206, 207, T207, 210, T210, 336, 337, and T337 Series AirplanesRepetitive

Slippage of pilot and co-pilot upper shoulder harness adjusters can prevent proper belt length adjustment and tension, risking pilot injury. Inspect and modify affected shoulder harness adjusters per revised service information.

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AD2004-15-18Effective Sep 12, 2004Cessna Aircraft Company Models 172R, 172S, 182S, 182T, T182T, 206H, and T206H AirplanesOne-time

This AD addresses certain Cessna aircraft equipped with Honeywell KAP 140 autopilot systems that may have outdated software. Operators must install a software update, change the unit's part number, and update the software modification identification tab.

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AD2002-26-03Effective Feb 18, 2003Brackett Aircraft Company, Brackett Single Screen Air FilterOne-time

Several reports identified incorrect installation of Brackett single screen air filters, which could lead to engine or turbocharger damage if the foam element is ingested. This AD requires checking for correct installation and either installing an additional screen, replacing with a double screen filter, or installing another approved filter design.

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AD2002-07-01Effective May 13, 2002Cessna Aircraft Company P206, TP206, TU206, U206, 207, T207, 210, P210, and T210 Series AirplanesRepetitive

Certain Cessna aircraft may have horizontal stabilizer attachment reinforcement brackets manufactured without seam welds, creating a structural deficiency. This AD requires visual inspection of these brackets and replacement of any found without seam welds.

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AD2001-23-17Effective Dec 28, 2001GARMIN International GNS 430 UnitsOne-time

External electrical noise can cause inaccurate course deviation displays on GNS 430 units, potentially leading pilots to make unsafe flight decisions. This AD requires modification of affected GNS 430 units to incorporate circuitry changes that prevent external noise from degrading course deviation and flag outputs.

Read the AD in the Federal Register
AD2001-09-06Effective May 18, 2001Cessna Aircraft Company Models 206H and T206H AirplanesOne-time

Certain Cessna 206H and T206H airplanes have horizontal stabilizer attachment reinforcement brackets that may have been manufactured without seam welds, creating a structural deficiency. The AD requires visual inspection of these brackets and replacement of any found without seam welds.

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AD2000-06-01Effective May 5, 2000Cessna Aircraft Company 150, 152, 172, 177, 180, 182, 185, 188, 206, 207, 210, and 337 Series AirplanesOne-time

Fuel strainer assemblies on these airplanes were found to have fuel standpipes incorrectly installed, which could allow foreign material to enter the fuel system and engine. The AD requires measuring the standpipe length and replacing any fuel strainer assembly that does not meet the correct specification.

Read the AD in the Federal Register
AD99-13-04Effective Jul 13, 1999Cessna Aircraft Company Models 206H and T206H AirplanesRepetitive

Aileron control bellcrank stop bolts may back out of their threaded bosses, potentially restricting aileron movement or causing loss of control. Operators must inspect both wing aileron control bellcrank stop bolts and lock nuts for proper contact and tightness, and perform corrective actions as needed.

Read the AD in the Federal Register
AD98-25-02Effective Dec 22, 1998BFGoodrich Avionics Systems, Inc. SKYWATCH SKY497 Installations with a Top-Mounted AntennaRepetitive

BFGoodrich SKYWATCH SKY497 installations with top-mounted antennas can experience internal component failure that changes the antenna configuration, causing target indicators to display on the wrong side of the aircraft. This AD requires verifying correct antenna configuration at power-up and removing from service any installations with incorrect antenna configuration.

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AD98-21-21Effective Oct 30, 1998Bob Fields Aerocessories Inflatable Door SealsOne-time

Overheated components in electric door seal inflation systems can cause smoke and cockpit fires on aircraft equipped with Bob Fields Aerocessories inflatable door seals. The AD requires either deactivating the system and installing a placard with AFM documentation, or removing the inflatable door seals and installing original equipment manufacturer seals or FAA-approved alternatives.

Read the AD in the Federal Register
AD98-14-03Effective Aug 16, 1998AlliedSignal Inc. KT 76A Air Traffic Control (ATC) TranspondersOne-time

AlliedSignal KT 76A ATC transponders with certain serial numbers are transmitting misleading altitude information to ATC radar and TCAS-equipped aircraft. This AD requires replacing two resistor network modules with glass-coated modules on affected transponders.

Read the AD in the Federal Register
AD97-01-13Effective Feb 3, 1997Cessna Aircraft Company 100, 200, 300, and 400 Series AirplanesOne-time

Certain Cessna fuel, oil, and hydraulic hoses with part number S51-10 installed between March 1995 and February 3, 1997 may have defective reinforcement wrapping that can cause hose collapse and system failure. This AD requires checking maintenance records for these hoses, inspecting them for diagonal or spiral external reinforcement, and immediately replacing any nonconforming hoses with ones having criss-cross reinforcement.

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AD96-19-01Effective Sep 26, 1996Allison 250 Series Turbine EnginesRepetitive

Allison 250 series turbine engines with Superior Air Parts PMA bearings may experience bearing separator instability leading to bearing failure and subsequent turbine and engine damage. The AD requires initial and repetitive visual inspections of engine filters for metal particles and replacement of the affected bearings with improved units.

Read the AD in the Federal Register
For engines in the fleet34 in force
AD2026-17-10Effective Sep 14, 2026Lycoming EnginesRepetitive

Certain Lycoming engines contain piston pins that have failed, causing metal contamination in engine oil and engine failure. This AD requires replacement of the affected piston pin, oil changes, and visual inspection of oil system components for metal particulates, and prohibits installation of the affected piston pin.

Engine models named IO-540-A1A5, IO-540-AA1A5, IO-540-AA1B5, IO-540-AB1A5, IO-540-AC1A5, IO-540-AE1A5, IO-540-AF1A5, IO-540-AG1A5, IO-540-B1A5, IO-540-B1B5, IO-540-B1C5, IO-540-C1B5

Read the AD in the Federal Register
AD2026-04-11Effective Apr 8, 2026Lycoming EnginesRepetitive

Certain connecting rod assemblies and bushings installed in Lycoming engines may fail due to inadequate design, potentially causing engine failure. This AD requires repetitive oil inspections for bronze particulates and replacement of affected connecting rod bushings with eligible parts.

Engine models named IO-540 series, TIO-540 series

Read the AD in the Federal Register
AD2023-17-04Effective Oct 26, 2023Continental Aerospace Technologies, Inc. EnginesOne-time

Certain Continental engines with specific oil filter adapters installed may experience power loss due to oil starvation from fiber gasket failure. This AD requires replacing the fiber gasket with a copper gasket or stainless steel PTFE gasket.

Engine models named IO-520, TSIO-520

Read the AD in the Federal Register
AD2023-05-16Effective Mar 15, 2023Continental Aerospace Technologies, Inc., Reciprocating EnginesRepetitive

Certain Continental reciprocating engines may have counterweight retaining rings improperly installed in the crankshaft counterweight groove during manufacturing, which could lead to engine failure. This AD requires inspection of the crankshaft assembly for proper installation of the counterweight retaining rings and corrective actions if improper installation is found.

Engine models named IO-520-A, IO-520-B, IO-520-BA, IO-520-BB, IO-520-C, IO-520-CB, IO-520-D, IO-520-E, IO-520-F, IO-520-J, IO-520-K, IO-520-L

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AD2023-02-12Effective Feb 17, 2023Continental Aerospace Technologies, Inc. Reciprocating Engines With a Certain Superior Air Parts, Inc. Intake Valve InstalledOne-time

Three intake valve failures on reciprocal engines with certain Superior Air Parts cylinders or intake valves have caused engine damage and emergency situations. This AD requires replacement of the affected engine intake valve.

Engine models named IO-520, TSIO-520

Read the AD in the Federal Register
Show 29 older
AD2022-16-03Effective Aug 15, 2022Continental Aerospace Technologies, Inc., Lycoming Engines, and Textron Lycoming/Subsidiary of Textron, Inc. Reciprocating EnginesOne-time

Improperly lubricated roller bearings in certain S-1200 series magnetos may cause overheating and magneto seizure. This AD requires replacement of affected magnetos or inspection and component replacement if no white grease is detected.

Engine models named IO-520, IO-540, TIO-540, TSIO-520

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AD2020-16-11Effective Sep 21, 2020Continental Aerospace Technologies, Inc. (Type Certificate Previously Held by Continental Motors, Inc.) Reciprocating EnginesOne-time

Some Continental Aerospace Technologies reciprocating engines have cross-flow cylinder assemblies that can fracture, causing in-flight engine failures. This AD requires visual inspection of the cross-flow cylinder assembly and modification or replacement if defects are found.

Engine models named TSIO-520-BE

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AD2017-11-10Effective Jun 28, 2017Lycoming Engines Reciprocating EnginesRepetitive

Engine exhaust system weld joints have been cracking and leaking on these engines. This AD requires initial and repetitive inspections of the exhaust system welds and torque checks of the exhaust pipe flange mounting nuts.

Engine models named TIO-540-AJ1A

Read the AD in the Federal Register
AD2015-19-07Effective Nov 3, 2015Lycoming Engines Fuel Injected Reciprocating EnginesRepetitive

Externally mounted fuel injector fuel lines on certain Lycoming fuel injected engines can fail, potentially causing uncontrolled engine fires and damage. This AD requires inspection and replacement if necessary of fuel injector fuel lines with proper clamping.

Engine models named IO-540-A1A5, IO-540-AA1A5, IO-540-AA1B5, IO-540-AB1A5, IO-540-AC1A5, IO-540-AE1A5, IO-540-B1A5, IO-540-B1C5, IO-540-C1B5, IO-540-C1C5, IO-540-C4B5, IO-540-C4D5D

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AD2015-10-06Effective Jul 2, 2015Lycoming Engines Reciprocating Engines (Type Certificate Previously Held by Textron Lycoming Division, AVCO Corporation)One-time

Cracked engine exhaust pipes have been reported on certain Lycoming TIO-540-AJ1A engines, which could lead to engine fire or harmful exhaust gases entering the cabin. This AD requires inspection of exhaust pipes for cracks and replacement of the turbocharger mounting bracket.

Engine models named TIO-540-AJ1A

Read the AD in the Federal Register
AD2015-02-07Effective Mar 11, 2015Lycoming Engines Reciprocating Engines (Type Certificate previously held by Textron Lycoming Division, AVCO Corporation)One-time

Propeller governor shaft set screws can come loose due to improper installation, potentially causing engine and airframe damage. This AD requires inspection and corrective action on affected Lycoming wide deck aerobatic engines equipped with front-mounted propeller governors.

Engine models named IO-540-K1K5

Read the AD in the Federal Register
AD2014-05-29Effective Apr 25, 2014Continental Motors, Inc. Reciprocating Engines With Superior Air Parts, Inc. (SAP) Cylinder Assemblies InstalledRepetitive

Certain Continental Motors reciprocal engines with Superior Air Parts investment cast cylinder assemblies are at risk of cylinder head separation and engine damage. The AD requires initial and repetitive inspections and compression tests to detect cracks in affected cylinders.

Engine models named IO-520, TSIO-520

Read the AD in the Federal Register
AD2013-21-02Effective Nov 13, 2013Lycoming Engines and Continental Motors, Inc. Reciprocating EnginesOne-time

Certain Hartzell Engine Technologies turbochargers with specific serial numbers can experience turbine wheel failure, causing loss of engine power, oil loss, or oil fires. This AD requires removing affected turbochargers from service before further flight.

Engine models named TIO-540-AK1A

Read the AD in the Federal Register
AD2012-19-01Effective Oct 24, 2012Lycoming Engines Reciprocating EnginesOne-time

Certain Lycoming reciprocating engine crankshafts can fail, causing total engine power loss and in-flight engine failure. This AD requires replacement of affected crankshafts as listed in Lycoming Mandatory Service Bulletin 569A.

Engine models named IO-540

Read the AD in the Federal Register
AD2012-10-13Effective Jun 8, 2012Continental Motors, Inc. (CMI) Reciprocating EnginesOne-time

Certain Continental Motors starter adapters may have gear shafts that fracture, which could cause oil scavenge pump failure and engine in-flight shutdown. Affected engines must have their starter adapters replaced with eligible units.

Engine models named TSIO-520-B, TSIO-520-BB, TSIO-520-D, TSIO-520-DB, TSIO-520-E, TSIO-520-EB, TSIO-520-J, TSIO-520-JB, TSIO-520-K, TSIO-520-KB, TSIO-520-N, TSIO-520-NB

Read the AD in the Federal Register
AD71-13-01Effective Mar 8, 2012Lycoming Engines Reciprocating EnginesOne-time

This AD rescinds previous requirements for Lycoming TIO-540-A series engines due to outdated service bulletin references. The requirements have been superseded by AD 2008-14-07, which incorporates the current mandatory service bulletin.

Engine models named TIO-540-A series

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AD2009-19-06Effective Oct 7, 2009Teledyne Continental Motors O-470, IO-470, TSIO-470, IO-520, TSIO-520, IO-550, and IOF-550 Series Reciprocating EnginesRepetitive

TCM EQ3 cylinders have been found cracking, which can cause loss of engine power and engine fires. The AD requires visual inspections of EQ3 cylinders for cracks, with removal of all EQ3 cylinders as the terminating action.

Engine models named IO-520, TSIO-520

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AD2007-16-10Effective Aug 23, 2007Teledyne Continental Motors Reciprocating (TCM) Engine Models IO-550-N, TSIO-520-BE, TSIO-550-A, TSIO-550-B, TSIO-550-C, TSIO-550-E, and TSIO-550-GOne-time

A machining defect in certain Kelly Aerospace Power Systems turbochargers can cause the turbine rotor to separate from the shaft, potentially resulting in engine power loss or oil loss. This AD requires removing affected turbochargers before further flight.

Engine models named TSIO-520-BE

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AD2007-08-04Effective May 17, 2007McCauley Propeller Systems Models 3A32C406/82NDB-X and D3A32C409/82NDB-X PropellersRepetitive

Testing identified stress conditions affecting fatigue life and damage tolerance of certain McCauley propellers installed on specific TCM engines, risking blade separation and loss of control. The AD requires RPM restrictions, installation of a placard, 10,000-hour total time-in-service life limits, removal of propellers exceeding this limit, and initial and repetitive blade inspections.

Engine models named IO-520, TSIO-520

Read the AD in the Federal Register
AD2005-19-11Effective Oct 21, 2005Lycoming Engines (Formerly Textron Lycoming) AEIO-360, IO-360, O-360, LIO-360, LO-360, AEIO-540, IO-540, O-540, and TIO-540 Series Reciprocating EnginesOne-time

Certain Lycoming 360 and 540 series engines have experienced crankshaft failures that could cause total engine power loss and in-flight engine failure. This AD requires replacement of affected crankshafts.

Engine models named IO-540, TIO-540

Read the AD in the Federal Register
AD2005-12-06Effective Jul 19, 2005Teledyne Continental Motors (Formerly Bendix) S-20, S-1200, D-2000, and D-3000 Series MagnetosRepetitive

Magneto impulse coupling assemblies on certain Lycoming engines can fail, potentially causing engine failure. This AD reduces the inspection interval for riveted-impulse coupling assemblies installed on specified Lycoming engine models.

Engine models named IO-540, TIO-540

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AD2004-10-14Effective Jun 25, 2004Lycoming Engines (Formerly Textron Lycoming), Direct-Drive Reciprocating EnginesRepetitive

Crankshaft gear retaining bolts may loosen or fail on certain Lycoming direct-drive reciprocating engines, potentially causing sudden engine failure. The AD requires removal of existing gear retaining bolts and lockplates from service, installation of new hardware, and inspection of crankshaft gear installation after propeller strikes, sudden stoppages, or overhaul.

Engine models named TIO-540

Read the AD in the Federal Register
AD2004-05-24Effective Mar 30, 2004Lycoming Engines (Formerly Textron Lycoming) AEIO-540, IO-540, LTIO-540, O-540, and TIO-540 Series Reciprocating EnginesEmergency AD

Certain crankshaft gear retaining bolts may fail, causing loss of engine power and a forced landing. This AD requires replacing the affected bolts with improved versions using approved kits.

Engine models named IO-540, TIO-540

Read the AD in the Federal Register
AD2003-14-03Effective Aug 14, 2003Textron Lycoming Fuel Injected Reciprocating EnginesRepetitive

Certain Textron Lycoming fuel-injected engines equipped with Crane/Lear Romec rotary fuel pumps are prone to fuel leakage from the pump relief valve, which could cause engine failure or fire. Owners must inspect pump relief valve attaching screws for proper torque and replace the affected fuel pump at or before engine overhaul with a new design pump having enhanced leak resistance.

Engine models named IO-540, TIO-540

Read the AD in the Federal Register
AD2002-19-03Effective Sep 20, 2002Textron Lycoming IO-540, LTIO-540 and TIO-540 Series Reciprocating EnginesEmergency AD

Textron Lycoming reciprocating engines have experienced crankshaft failures that can result in total engine power loss and in-flight engine failure. This AD requires replacement of suspect crankshafts that were hammer forged with press-forged crankshafts before further flight.

Engine models named IO-540, TIO-540

Read the AD in the Federal Register
AD2002-12-07Effective Jul 3, 2002Textron Lycoming Reciprocating EnginesEmergency AD

Oil can leak between the converter plate and accessory housing on certain Lycoming engines, potentially causing complete engine oil loss, engine seizure, and fire. This AD requires replacement of the oil filter converter plate gasket or kit, inspection of the oil filter base for leakage, and eventually installation of an improved gasket or kit to eliminate the need for repetitive replacements.

Engine models named IO-540-C4D5D, IO-540-K1A5D, IO-540-K1B5D, IO-540-K1E5D, IO-540-K1F5D, IO-540-K1G5D, IO-540-K1J5D, IO-540-L1A5D, IO-540-L1B5D, IO-540-M1A5D, IO-540-M1B5D, IO-540-M2A5D

Read the AD in the Federal Register
AD2000-23-21Effective Dec 12, 2000Teledyne Continental Motors IO-360, TSIO-360, LTSIO-360, O-470, IO-470, TSIO-470, IO-520, TSIO-520, LTSIO-520, IO-550, TSIO-550, and TSIOL-550 Series Reciprocating EnginesEmergency AD

Certain Teledyne Continental Motors engines have experienced crankshaft failures due to defects in the propeller mounting flange. Owners must remove a core sample from the propeller mounting flange and send it to TCM for evaluation.

Engine models named IO-520, TSIO-520

Read the AD in the Federal Register
AD99-09-17Effective Sep 30, 1999Teledyne Continental Motors O-470, IO- 470, TSIO-470, IO-520, TSIO-520, LTSIO-520, GTSIO-520, IO-550, TSIO- 550, and TSIOL-550 Series Reciprocating EnginesOne-time

Teledyne Continental Motors crankshafts are susceptible to cheek cracks that can cause engine failure and forced landing. Operators must inspect crankshaft cheeks for cracks per TCM service bulletins and replace any cracked crankshafts before further flight.

Engine models named IO-520, TSIO-520

Read the AD in the Federal Register
AD99-04-04Effective Feb 25, 1999Textron Lycoming Reciprocating Engines IO-540 and O-540 Engines Equipped With Slick Aircraft Products MagnetosOne-time

Slick Aircraft Products magnetos on certain Textron Lycoming O-540 and IO-540 engines can experience severely worn and failed impulse couplings, which may seize the engine. Operators must remove the affected magneto and inspect the impulse coupling pawl for wear.

Engine models named IO-540-K1A5, IO-540-K1B5, IO-540-K1G5

Read the AD in the Federal Register
AD97-15-11Effective Aug 12, 1997Avco Lycoming and Textron Lycoming Reciprocating EnginesOne-time

Certain Lycoming reciprocal engines may have defective piston pins that could fail and cause engine failure. Affected engines must be removed from service and replaced with serviceable parts according to the referenced service bulletin.

Engine models named IO-540, TIO-540

Read the AD in the Federal Register
AD97-01-04Effective Apr 22, 1997Textron Lycoming and Superior Air Parts, Inc.Repetitive

Affected cylinder assemblies can develop cracks that lead to cylinder head separation and engine failure. This AD requires removal of higher-time cylinder assemblies and replacement with serviceable parts, or dye penetrant inspections of mid-time assemblies initially and repetitively.

Engine models named IO-540-M1B5D, TIO-540-A2C, TIO-540-F2BD, TIO-540-J2B, TIO-540-J2BD, TIO-540-N2BD, TIO-540-R2AD, TIO-540-S1AD

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ADADEffective Jul 31, 1996Cessna Aircraft Company Engine Oil Filter Adapter Assemblies Installed on AircraftRepetitive

Loose or separated engine oil filter adapters can cause loss of engine oil and engine stoppage in flight. This AD requires inspecting the oil filter adapter for security and oil leakage, applying torque putty to seal the assembly, and performing repetitive inspections of the torque putty and adapter threads.

Engine models named IO-520, TSIO-520

Read the AD in the Federal Register
AD91-21-01Effective Jun 27, 1996Textron Lycoming Model TIO-540-S1AD Reciprocating EnginesRepetitive

Cracking or distortion of engine exhaust system flanges, V-band coupling, and pipes can cause engine compartment fires and smoke in the cabin. The AD requires upgrading the exhaust system to a new design configuration and establishes inspection intervals based on which exhaust system design is installed.

Engine models named TIO-540-S1AD

Read the AD in the Federal Register
AD95-07-01Effective Apr 12, 1995Textron Lycoming O-360, LO-360, HO-360, HIO-360, TIO-360, LIO-360, AEIO-360, O-540, IO-540, TIO-540, LTIO-540, IVO-540, AEIO-540, TIO-541, and IO-720 Series Reciprocating EnginesOne-time

Unapproved connecting rod bolts sourced from Superior Air Parts, Inc., have failed in certain Textron Lycoming engines, potentially causing engine failure. The AD requires removing all suspect connecting rod bolts prior to further flight and replacing them with serviceable bolts.

Engine models named IO-540-A1A5, IO-540-AA1A5, IO-540-B1A5, IO-540-B1C5, IO-540-C1B5, IO-540-C4B5, IO-540-C4C5, IO-540-C4D5D, IO-540-D4A5, IO-540-E1A5, IO-540-E1B5, IO-540-G1A5

Read the AD in the Federal Register

Engine ADs name an engine model family used on some Cessna 206s; check the exact model and serial. 4 more apply by part number only and are not listed.

Accident history

483 U.S. accidents involving the Cessna 206 since 1995, 94 of them fatal, with 193 fatalities. Homebuilt aircraft excluded. Counts, not rates: they follow fleet size, hours flown and how the airplane is used.

By phase of flight1995–2026
  • Ground270
  • Takeoff and climb11019
  • Cruise10834
  • Maneuvering2616
  • Approach and descent5714
  • Landing15110
  • Other or unknown41

Phase of the event the NTSB recorded as defining the accident.

By five-year periodAccidents
  • 1995–199910323
  • 2000–20048522
  • 2005–20099818
  • 2010–20147111
  • 2015–2019629
  • 2020–20244511
  • 2025–2026190

2026 is year to date. Investigations can take a year or more to reach the data.

NTSB cause findings, 2008–2026 · share of 223 accidents with findings

  • 56% Personnel issues
  • 32% Aircraft performance and control
  • 23% Aircraft systems, powerplant and structure
  • 14% Environmental issues
  • 5.4% Not determined

Most frequent cause findings

  1. Aircraft controlPersonnel issues54
  2. Decision making/judgmentPersonnel issues26
  3. Directional control: not attained/maintainedAircraft performance and control17
  4. Airspeed: not attained/maintainedAircraft performance and control11
  5. Altitude: not attained/maintainedAircraft performance and control10
  6. Use of equip/systemPersonnel issues8
  7. Fuel: fluid managementAircraft systems, powerplant and structure7
  8. Descent/approach/glide path: not attained/maintainedAircraft performance and control6
  9. Incorrect action performancePersonnel issues5
  10. Monitoring environmentPersonnel issues5

Findings about systems and powerplant

  1. Fuel: fluid managementFluids7
  2. Recip engine power section: failureEngine (reciprocating)5
  3. Fuel: fluid levelFluids4
  4. Recip eng cyl section: fatigue/wear/corrosionEngine (reciprocating)2
  5. Recip eng cyl section: incorrect service/maintenanceEngine (reciprocating)2
  6. Main landing gear: incorrect use/operationLanding gear system1
  7. Passenger/crew doors: inadequate inspectionDoors1
  8. Landing gear brakes system: failureLanding gear system1

Wording is the NTSB’s. An accident can carry findings in several categories. Read individual investigations in the NTSB’s CAROL database.

What gets written up

1,301 reports · 1995–2026

The ten systems with the most service difficulty reports, by FAA system code (JASC). Fewer than 200 reports were filed on the Cessna 206 in 2016–2025, so read these as long-run patterns.

85Reciprocating Engine Cylinder SectionJASC 8530 · Engine (Reciprocating)17113%29

Parts most often named Cylinder (76) · Cylinder Head (22) · Exhaust Valve (12) · Lifter (9)

ON ENGINE 100 HOUR IT WAS FOUND THAT 4 OF THE 6 CYLINDERS WERE CRACKED. ALL WERE EMANATING FROM THE UPPER SPARK PLUG HOLE TO THE FUEL NOZZLE HOLE

Reported condition, as filed2020 · SDR 2020F00131

AFTER CLEANING ENGINE WITH FOAMING DEGREASER ( VERY EFFECTIVE ), NOTED SLIGHT OIL STAIN ON CYLINDER CASTING. BETWEEN 5-6 & 6-7TH FIN- CLEANED MULTIPLE TIMES, MORE EXPANDING OILY SEEPS- VERY SLIGHT- PRESSURE CHECKED CYLINDER, NO AIR LEAKAGE- WAS NEVER ABLE TO VISUALLY IDENTIFY ACTUAL CRACK DUE TO DEPTH OF ARE AND REDUCED ACCESS, BUT SEEP WAS NEW. MY DETERMINATION WAS EITHER SEPARATION IN PROCESS, FATIGUE CRACKS, OR POROSITY OPENING UP. REMOVED CYLINDER FROM [S/N removed]-

Reported condition, as filed2020 · SDR 2020FA0000372

ACFT STARTED AND RUNNING FOR A TRAINING FLIGHT, PILOTS NOTICED A VIBRATION OF THE ENGINE AND NO CYLINDER HEAD TEMP OR EXHAUST TEMP ON NR 6 CYLINDER IAW THE ENGINE MONITOR. PILOTS SHUT ENGINE DOWN AND NOTIFIED MAINTENANCE. AFTER INSPECTION OF CYLINDER NR 6, BY USE OF A BORSCOPE FOUND EXHAUST VALVE WAS MISSING A PORTION OF THE VALVE. REMOVED THE CYLINDER AND FOUND IT CRACKED FROM THE LOWER SPARK PLUG BOSS TO THE EXHAUST PORT, DAMAGE TO INNER CYLINDER HEAD MISSING MATERIAL AND MISSING PORTION OF EXHAUST VALVE.

Reported condition, as filed2018 · SDR M2LA201806221001
74Magneto/​DistributorJASC 7414 · Ignition System796.1%12

Parts most often named Magneto (31) · Impulse Coupling (10) · Distributor (5) · Distributor Blk (4)

FOUND FACTORY DEFECT WHILE PERFORMING FIRST 500-HOUR INSPECTION MAGNETO WITH TT 477.6 IN ACCORDANCE WITH [S/N removed] SUPPORT MANUAL X42001. COIL TAB HAD NOT BEEN INSTALLED PARALLEL WITH HOUSING TO COVER MATING SURFACE, AS SPECIFIED IN 6-2.4 5.C. THIS HAD RESULTED IN EXCESSIVE WEAR ON BOTH THE COIL TAB AND THE CARBON BRUSH.

Reported condition, as filed2024 · SDR 2024FA0000071

(CAN) DURING GROUND RUN FOR INSPECTION MAG DROP WAS EXCESSIVE. BENDIX MAGNETOS PN 10-500556-1, 1264.8 TSOH & PN BL-500556-1, 325.8. TSOH R & R WITH NEW PN 6310 & 14090532 SLICK MAGNETOS & NEW PN 10-423604-1 HARNESS ASSEMBLY. GND RUN CARRIED OUT WITH NO FURTHER FAULTS FOUND.

Reported condition, as filed2015 · SDR CA150703012

RIGHT MAGNETO OF A NEWLY INSTALLED FACTORY REBUILT ENGINE, FAILED ON PRE-TAKEOFF MAG CHECK, FLIGHT ABORTED. 5.8 TT ON NEW ENGINE. MAGNETO WAS FACTORY REMANUFACTURED AND CAME PREINSTALLED ON THE NEW ENGINE.

Reported condition, as filed2014 · SDR R01A2014F00146
85Reciprocating Engine Power SectionJASC 8520 · Engine (Reciprocating)695.3%8

Parts most often named Crankshaft (20) · Crankcase (12) · Lifter (5) · Camshaft (4)

PILOT REPORTED LOW OIL PRESSURE AT IDLE, REMOVED OIL PRESSURE REGULATOR AND FOUND SHARP METAL CHIP IN BOTTOM OF REGULATOR WHERE IT HAD ARRIVED AFTER FALLING OUT OF REGULATOR SEAT. PREVIOUS EXPERIENCE LED US TO BELIEVE THAT THE METAL WAS FROM A LIFTER, WE INSPECTED ALL 12 LIFTERS AND DISCOVERED A SEVERELY SPALLED EXHAUST LIFTER ON CYLINDER #4. INSPECTED CAM IN ACCORDANCE WITH CONTINENTAL [S/N removed] BULLETIN SID05-1B, INSTALLED NEW LIFTER AND WILL INSPECT CAM AND LIFTER AGAIN IN 100 HOURS (AS PER THE SID).

Reported condition, as filed2020 · SDR 2020FA0000080

FOUND EXCESSIVE AMOUNT OF FERROUS METAL IN OIL FILTER DURING NORMAL MAINTENANCE. UPON INSPECTION FOUND 5/6 CAM LOB SPALLED. THIS IS THE SECOND WORN CAM IN THIS ENGINE IN THREE YEARS.

Reported condition, as filed2019 · SDR 2019FA0000266

ENGINE LOST POWER IN FLIGHT, RESULTING IN AN EMERGENCY LANDING. INSPECTION REVEALED THAT THE NUMBER 1 CYLINDER INTAKE VALVE FAILED, DAMAGING THE PISTON.

Reported condition, as filed2018 · SDR 2018FA0000345
61Propeller Hub SectionJASC 6114 · Propeller System382.9%0

Parts most often named Hub (33) · Actuating Pin (1) · Cylinder (1) · Snap Ring (1)

CRACK DISCOVERED ON ENGINE SIDE OF PROPELLER HUB. DISCOVERED WHEN PILOT EXPERIENCED A GREASE LEAK AND REMOVED SPINNER TO INVESTIGATE.

Reported condition, as filed2012 · SDR 2012FA0000563

(CAN) DURING PROPELLER OVERHAUL PROCESS, EDDY CURRENT INSPECTION CARRIES OUT ON HUB UNIT THREADED BLADE SOCKET AREA`S AS PER. MANUFACTURER INSTRUCTIONS, WHERE THE INDICATIONS WERE FOUND. HUB REPLACED. (TC 20091026002)

Reported condition, as filed2009 · SDR CA091026002

(CAN) DURING AN ROUTINE INSPECTION, THE PROPELLER WAS FOUND LEAKING. PART OF THE INSPECTION CALLS OUT TO ENSURE THERE IS NO RED DYE LEAKING FROM THE PROP HUB ASSEMBLY. THE PROP HAS BEEN REMOVED FROM THE AIRCRAFT AND SENT TO THE OVERHAUL FACILITY. THIS IS THE SECOND TIME THE PROPELLER HAS LEAKED. HAVE ASKED FOR THE HUB ASSEMBLY TO BE NDT TO ENSURE THERE IS NO CRACKS. INSTALLED A LOANED PROP AND THE AIRCRAFT RETURNED TO THE FLIGHT LINE.

Reported condition, as filed2005 · SDR CA051007008
57AileronsJASC 5751 · Wing Structure312.4%0

Parts most often named Bracket (10) · Hinge (7) · Hinge Bracket (6) · Hinge Assy (2)

(CAN) DURING CPCP INSPECTION OF ACFT. SUPPLEMENTAL INSPECTION NR 57-51-01, AILERON SUPPORT STRUCTURE INSPECTION. RT WING INBD AILERON BRACKET ASSY WAS FOUND TO HAVE MULTIPLE CRACKS IN BEND RADIUS WHERE IT ATTACHES TO REAR SPAR. PART WAS REPLACED WITH NEW ASSY.

Reported condition, as filed2014 · SDR CA140212006

LOWER SUPPORTING ANGLE CRACKED FROM MANY YEARS AND HOURS OF FATIGUE. THIS ACFT HAS BEEN OPERATED ON UNIMPROVED BACK COUNTRY DIRT LANDING STRIPS WHICH POUND AND SHAKE THESE ACFT EXTREMLY. THIS TYPE OF PART FAILURE IS TO BE EXPECTED UNDER THE CONDITIONS THIS ACFT HAS BEEN SUBJECTED TO. THIS IS NOT A FAILURE WHICH WOULD CAUSE A CONTROL LOSS OR AIRWORTHINESS. THIS IS THE REASON ACFT WITH THIS MANY HOURS SHOULD BE CONSIDERED WORN OUT AND REPLACED. (K)

Reported condition, as filed2009 · SDR 2009FA0000327

(CAN) HINGE DOUBLERS CRACKED AT LWR ANGLE BEND, UPON REMOVAL OF HINGE, FOUND MORE CRACKS NEAR TOP OF HINGE, NOT VISIBLE UNLESS THE SKIN IS PEELED BACK OR THE USE OF A BORESCOPE.

Reported condition, as filed2009 · SDR CA090707007
85Reciprocating Engine Oil SystemJASC 8550 · Engine (Reciprocating)302.3%2

Parts most often named Pump (4) · Gasket (3) · Oil Filter (3) · Oil Cooler (2)

PILOT REPORTED MINOR ENGINE SURGING DURING FLIGHT. AFTER TROUBLESHOOTING AND REPAIRS, FOUND TO BE THE ENGINE DRIVEN FUEL PUMP INTERMITTENTLY DROPPING FUEL PRESSURE. ON INVESTIGATION THE OIL SEAL IN THE DIAPHRAGM PUMP WAS FOUND TO BE LEAKING AND OIL WAS IN THE AIRSPACE ABOVE THE DIAPHRAGM AND ALMOST COMPLETELY FILLING ONE SIDE UNDER THE LOWER DIAPHRAGM.

Reported condition, as filed2017 · SDR 2017FA0000080

DURING A ROUTINE 100 HOUR INSPECTION, THE OIL COOLER FORWARD DIAGONAL SUPPORT BAR WAS FOUND BROKEN IN TWO, WITH THE LOWER HALF LYING ON THE ENGINE BAFFLING. UPON REMOVAL OF THE COOLER, 2 OTHER CRACKS WERE FOUND NEAR THE MOUNTING BOLT HOLES. THE COOLER WAS REPLACED WITH NEW.

Reported condition, as filed2017 · SDR P9KA2017032801

DURING EXTENDED FLIGHT, LOSS OF OIL PRESSURE OCCURED AND LEAD TO TOTAL ENGINE FAILURE. GASKET FOR OIL FILTER ADAPTER TO ENGINE FAILED. ON REMOVAL, NOTED THE GASKET HAD SPLIT AND WAS OFF TO ONE SIDE OF THE ADAPTER.

Reported condition, as filed2013 · SDR 2013FA0000448
32Wheel/​Ski/​FloatJASC 3246 · Landing Gear System272.1%0

Parts most often named Wheel (8) · Bushing (2) · Bulkhead (2) · Control Cable (2)

AIRCRAFT CAME INTO THE MX SHOP FOR AN ANNUAL INSPECTION. THE ACFT IS ON A SET OF AMPHIBIOUS FLOATS, MODEL 3450. AFTER REMOVING THE RIGHT FLOAT BUMPER, 2 CRACKS WERE DISCOVERED ON THE BULKHEAD NOSE ASSY. PN 30A01000-329. THE CRACK STARTED FROM EACH OF THE BOTTOM NUT PLATES AND WERE 1" IN LENGTH.

Reported condition, as filed2013 · SDR 2013FA0000231

DURING ANNUAL INSPECTION. AFTER REMOVING FLOAT BUMPERS OFF OF BOTH FLOATS, TWO LARGE CRACKS WERE FOUND ON EACH BULKHEAD NOSE ASSY . THE CRACKS STARTED FROM THE BOTTOM NUT PLATES AND WERE ABOUT THREE INCHES IN LENGTH.

Reported condition, as filed2013 · SDR 2013FA0000232

(CAN) UPON LANDING FRONT SPREADER BAR DETACHED FROM LT FLOAT. UPON SUBSEQUENT INSPECTION FRONT SPREADER BAR SPAR EXHIBITS EVIDENCE OF PREVIOUS CRACKING TO WATER LANDING.

Reported condition, as filed2013 · SDR CA130611007
24AC Generator-AlternatorJASC 2421 · Electrical Power System262.0%4

Parts most often named Alternator (15) · Thru Bolt (2) · Bolt (2) · Case (2)

OIL LEAKING ONTO RIGHT SIDE OF AIRCRAFT UNDERBELLY OBSERVED IN POSTFLIGHT. INSPECTED ENGINE FOR OIL LEAK. INSPECTED NR 2 ALTERNATOR. FOUND MOUNTING BASE OF ALTERNATOR IS CRACKED AND SOME OIL LEAKING OUT OF ALTERNATOR.

Reported condition, as filed2016 · SDR 2016FA0000325

(CAN) ON RUN UP PILOT DISCOVERED THE ALTERNATOR WAS NOT CHARGING. REMOVED ALTERNATOR PN DOFF10300JR, 123.9 TSOH. INSTALLED [S/N removed] ALTERNATOR PN DOFF10300JR. RUN UP CARRIED OUT ALTERNATOR FUNCTION CHECKED OK.

Reported condition, as filed2015 · SDR CA150704002

(CAN) ALTERNATOR ARMATURE REAR SUPPORT BEARING DISINTEGRATED IN 2.7 HOURS SINCE INSTALL. UNIT TO BE RETURNED TO OVERHAUL SHOP FOR WARRANTY INSPECTION.

Reported condition, as filed2014 · SDR CA140715011
73Engine Fuel PumpJASC 7314 · Engine Fuel And Control231.8%2

Parts most often named Pump (17) · Gasket (2) · Seal (1) · Fuel Pump (1)

REMOVED DEFECTIVE ENGINE DRIVEN FUEL PUMP RG9080J9A/M, [S/N removed] AND INSTALLED "DEFECTIVE" NEWLY O/H FUEL PUMP, PN RG9080J8A/M, [S/N removed] THE FUEL PUMP WOULD NOT MAINTAIN PROPER FUEL PUMP AT IDLE RPM. WE OBTAINED ANOTHER NEWLY O/H FUEL PUMP RG9080J8A/M, [S/N removed] AND ALSO WAS DEFECTIVE RIGHT OUT OF BOX.

Reported condition, as filed2015 · SDR 2015FA0000145

FUEL PUMP FAILED DURING FLIGHT UNDER NORMAL OPERATING CONDITIONS. PUMP REMOVED FROM THE ENGINE AND WAS FOUND TO BE SEIZED. PUMP SENT FOR EVALUATION.

Reported condition, as filed2014 · SDR 2014FA0000174

ENGINE WILL NOT PERFORM PROPERLY DURING ENGINE START AND IDLE OPERATION. INSTALLED (4 DEFECTIVE NEW ENGINE DRIVEN FUEL PUMPS (PN 200F-5006) BY THE DIRECTION OF FIELD TECH. FINALLY RECEIVED MFG APPROVAL TO INSTALL A DIFFERENT MFR ENGINE DRIVEN FUEL PUMP O/H PN RG9080J8A/M WHICH FIXED ENGINE HARD STARTING AND ROUGH IDLE OPERATION.

Reported condition, as filed2013 · SDR 2013FA0000183
80Engine StarterJASC 8011 · Engine Starting System221.7%0

Parts most often named Contactor (4) · Spring (4) · Housing (2) · Adapter (2)

(CAN) DURING A MAINTENANCE EVENT, CHANGING THE ENGINE DRIVEN FUEL PUMP, IT WAS DISCOVERED THAT THE ENGINE STARTER DRIVE WAS CRACKED, ONCE REMOVED IT WAS DISCOVERED THE STARTER DRIVE WAS MUCH WORN. THE STARTER DRIVE WAS REPLACED WITH NEW AND THE SYS FUNCTION CHECKED [S/N removed]. THIS ENGINE ONLY HAS 972.9 HRS TTSO.

Reported condition, as filed2013 · SDR CA130722011

(CAN) AFTER A WARM UP ENGINE SHUTDOWN. ON THE WARM START ATTEMPT,THE ENGINE "KICKED BACK", BREAKING THE SPRING INSIDE THE STARER DRIVE ASSY. STARTER DRIVE ASSY REPLACED WITH A [S/N removed] UNIT AND ACFT RETURNED TO [S/N removed].

Reported condition, as filed2011 · SDR CA110919005

HAD FAILURES OF THE HOUSING THAT CONTAINS THE STARTER DRIVE GEAR WITHIN A PERIOD OF 4 DAYS ON 2 SEPARATE ACFT. THE HOUSING THAT SURROUNDS THE DRIVE GEAR CRACKED AND CAUSED THE DRIVE GEAR TO SHIFT AWAY FROM THE RING GEAR ON THE PROP TO WHERE THE GEARS WHERE UNABLE TO MESH. CONTACTED THE MFG AND THEY SAID IMPROVEMENT HAVE BEEN MADE ON NEWER STARTERS TO BEEF THEM UP.

Reported condition, as filed2010 · SDR 2010FA0000587

Open a row to read what mechanics wrote. Tail and serial numbers are removed.

Where on the airframe

Where Cessna 206 service difficulty reports cluster, by airframe zone12345
  1. 1Engine, ignition & fuel control394
  2. 2Propeller38
  3. 3Wing structure & flaps31
  4. 4Landing gear & brakes27
  5. 5Electrical & instruments26

Reports in the ten systems above, by zone. Schematic, not to scale.

Reports filed by year

1995: 40 reports19951996: 110 reports1101997: 61 reports1998: 60 reports1999: 72 reports2000: 110 reports20002001: 78 reports2002: 65 reports2003: 59 reports2004: 65 reports2005: 72 reports20052006: 47 reports2007: 39 reports2008: 31 reports2009: 53 reports2010: 39 reports20102011: 34 reports2012: 49 reports2013: 43 reports2014: 20 reports2015: 33 reports20152016: 19 reports2017: 31 reports2018: 8 reports2019: 17 reports2020: 12 reports20202021: 7 reports2022: 2 reports2023: 5 reports2024: 14 reports2025: 3 reports2026: 3 reports (year to date)’26

Peak 1996 (110). Hatched bar is 2026 to date.

At the pre-buy

My pre-buy card · Cessna 206

0 of 7 looked at

The components written up most often since 2011. Take this to the pre-buy and ask your inspector about each one; tap a mark to record what they found. Saved on this device only.

  1. Reciprocating Engine Cylinder SectionJASC 8530 · 54 reports · Not yet looked at
  2. Magneto/​DistributorJASC 7414 · 32 reports · Not yet looked at
  3. Reciprocating Engine Power SectionJASC 8520 · 17 reports · Not yet looked at
  4. AC Generator-AlternatorJASC 2421 · 15 reports · Not yet looked at
  5. Engine Collector/​Tailpipe/​NozzleJASC 7810 · 10 reports · Not yet looked at
  6. Engine Fuel PumpJASC 7314 · 9 reports · Not yet looked at
  7. Reciprocating Engine Oil SystemJASC 8550 · 9 reports · Not yet looked at
open OK found something

A starting point for the conversation with your inspector, not maintenance advice.

What buyers get caught by

The expensive surprises on any used airplane are missing logbooks, corrosion under paint, outstanding ADs, an engine near overhaul, and the same squawk written up again and again. The card lists where the Cessna 206 gets written up; the AD timetable below lists what the FAA requires.

Ask for the logbook entries that match each item. A repeated entry is a pattern, not a coincidence.

Alerts for the Cessna 206

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