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FCL.115 LAPL – Training course

ANNEX I (Part-FCL) · Regulation (EU) No 1178/2011 · EAR revision 25 Nov 2025

IRImplementing rule

FCL.115LAPL – Training course

(a)Applicants for an LAPL shall complete a training course at a DTO or an ATO. That training course shall include:

(1)theoretical knowledge and flight instruction appropriate to the privileges of the LAPL applied for;

(2)additionally, for the LAPL(H), the mandatory training elements for the relevant helicopter type as defined in the operational suitability data established in accordance with Annex I (Part 21) to Regulation (EU) No 748/2012.

(b)Theoretical knowledge instruction and flight instruction may be completed at a DTO or at an ATO different from the one where applicants have commenced their training.

(c)For the training for the SEP aeroplanes-sea class privilege, the elements of Section B (Specific requirements for the aeroplane category), point 7 (Class ratings — sea), of Appendix 9 shall be considered.

(d)Applicants for an LAPL may receive credits for previous PPL training they have undergone in accordance with Subpart C in the same aircraft category, based on an assessment of the applicant by the ATO or the DTO that is responsible for the LAPL training course. In any case, applicants shall comply with the experience requirements set out in points FCL.110.A(a) or FCL.110.H(a), as applicable.

IR · FCL.115 — Regulation (EU) No 1178/2011 · Regulation (EU) 2024/2076 · Aircrew Easy Access Rules · EAR revision 25 Nov 2025

AMCAcceptable means of compliance

AMC1 FCL.115LAPL – Training course

Show the text

FLIGHT INSTRUCTION FOR THE LAPL (A)

(a)Entry to training Before being accepted for training an applicant should be informed that the appropriate medical certificate must be obtained before solo flying is permitted.

(b)Flight instruction

(1)The LAPL (A) flight instruction syllabus should take into account the principles of threat and error management and also cover:

(i)pre-flight operations, including mass and balance determination, aircraft inspection and servicing;

(ii)aerodrome and traffic pattern operations, collision avoidance precautions and procedures;

(iii)control of the aircraft by external visual reference;

(iv)flight at critically low air speeds, recognition of, and recovery from, incipient and full stalls;

(v)flight at critically high air speeds, recognition of, and recovery from, spiral dive;

(vi)normal and crosswind take-offs and landings;

(vii)maximum performance (short field and obstacle clearance) take-offs, short-field landings;

(viii)cross-country flying using visual reference, dead reckoning and radio navigation aids;

(ix)emergency operations, including simulated aeroplane equipment malfunctions;

(x)operations to, from and transiting controlled aerodromes, compliance with air traffic services procedures and communication procedures.

(2)Before allowing applicants to undertake their first solo flight, the FI should ensure that the applicants can use R/T communication can operate the required systems and equipment.

(c)Syllabus of flight instruction

(1)The numbering of exercises should be used primarily as an exercise reference list and as a broad instructional sequencing guide; therefore the demonstrations and practices need not necessarily be given in the order listed. The actual order and content will depend upon the following interrelated factors:

(i)the applicant’s progress and ability;

(ii)the weather conditions affecting the flight;

(iii)the flight time available;

(iv)instructional technique considerations;

(v)the local operating environment;

(vi)applicability of the exercises to the aeroplane or TMG type.

(2)Each of the exercises involves the need for the applicant to be aware of the needs of good airmanship and look-out, which should be emphasised at all times.

(i)Exercise 1a: Familiarisation with the aeroplane or TMG:

(A)characteristics of the aeroplane or TMG;

(B)cockpit layout;

(C)systems;

(D)checklists, drills and controls.

(ii)Exercise 1b: Emergency drills:

(A)action if fire on the ground and in the air;

(B)engine cabin and electrical system fire;

(C)systems failure;

(D)escape drills, location and use of emergency equipment and exits.

(iii)Exercise 2: Preparation for and action after flight:

(A)flight authorisation and aeroplane or TMG acceptance;

(B)serviceability documents;

(C)equipment required, maps, etc.;

(D)external checks;

(E)internal checks;

(F)harness, seat or rudder panel adjustments;

(G)starting and warm-up checks;

(H)power checks;

(I)running down system checks and switching off the engine;

(J)parking, security and picketing (for example tie down);

(K)completion of authorisation sheet and serviceability documents.

(iv)Exercise 3: Air experience: flight exercise.

(v)Exercise 4: Effects of controls:

(A)primary effects when laterally level and when banked;

(B)further effects of aileron and rudder;

(C)effects of:

(a)air speed;

(b)slipstream;

(c)power;

(d)trimming controls;

(e)flaps;

(f)other controls, as applicable.

(D)operation of:

(a)mixture control;

(b)carburettor heat;

(c)cabin heating or ventilation.

(vi)Exercise 5a: Taxiing:

(A)pre-taxi checks;

(B)starting, control of speed and stopping;

(C)engine handling;

(D)control of direction and turning;

(E)turning in confined spaces;

(F)parking area procedure and precautions;

(G)effects of wind and use of flying controls;

(H)effects of ground surface;

(I)freedom of rudder movement;

(J)marshalling signals;

(K)instrument checks;

(L)air traffic control procedures.

(vii)Exercise 5b: Emergencies: brake and steering failure.

(viii)Exercise 6: Straight and level:

(A)at normal cruising power, attaining and maintaining straight and level flight;

(B)flight at critically high air speeds;

(C)demonstration of inherent stability;

(D)control in pitch, including use of trim;

(E)lateral level, direction and balance, trim;

(F)at selected air speeds (use of power);

(G)during speed and configuration changes;

(H)use of instruments for precision.

(ix)Exercise 7: Climbing:

(A)entry, maintaining the normal and max rate climb, levelling off;

(B)levelling off at selected altitudes;

(C)en-route climb (cruise climb);

(D)climbing with flap down;

(E)recovery to normal climb;

(F)maximum angle of climb;

(G)use of instruments for precision.

(x)Exercise 8: Descending:

(A)entry, maintaining and levelling off;

(B)levelling off at selected altitudes;

(C)glide, powered and cruise descent (including effect of power and air speed);

(D)side slipping (on suitable types);

(E)use of instruments for precision flight.

(xi)Exercise 9: Turning:

(A)entry and maintaining medium level turns;

(B)resuming straight flight;

(C)faults in the turn (in correct pitch, bank and balance);

(D)climbing turns;

(E)descending turns;

(F)slipping turns (for suitable types);

(G)turns onto selected headings, use of gyro heading indicator and compass;

(H)use of instruments for precision.

(xii)Exercise 10a: Slow flight: Note: the objective is to improve the student’s ability to recognise inadvertent flight at critically low speeds and provide practice in maintaining the aeroplane or TMG in balance while returning to normal air speed.

(A)safety checks;

(B)introduction to slow flight;

(C)controlled flight down to critically slow air speed;

(D)application of full power with correct attitude and balance to achieve normal climb speed.

(xiii)Exercise 10b: Stalling:

(A)safety checks;

(B)symptoms;

(C)recognition;

(D)clean stall and recovery without power and with power;

(E)recovery when a wing drops;

(F)approach to stall in the approach and in the landing configurations, with and without power and recovery at the incipient stage.

(xiv)Exercise 11: Spin avoidance: Note: The limitations of the training aircraft as set out in the AFM (manoeuvre limitations, mass and balance calculations) need to be carefully considered.

(A)safety checks;

(B)stalling and approaching the incipient spin stage (stall with asymmetric condition, with non-centred slip indicator);

(C)instructor-induced distractions during the stall.

(xv)Exercise 12: Take-off and climb to downwind position:

(A)pre-take-off checks;

(B)into wind take-off;

(C)safeguarding the nose wheel (if applicable);

(D)crosswind take-off;

(E)drills during and after take-off;

(F)short take-off and soft field procedure or techniques including performance calculations;

(G)noise abatement procedures.

(xvi)Exercise 13: Circuit, approach and landing:

(A)circuit procedures, downwind and base leg;

(B)powered approach and landing;

(C)safeguarding the nose wheel (if applicable);

(D)effect of wind on approach and touchdown speeds and use of flaps;

(E)crosswind approach and landing;

(F)glide approach and landing;

(G)short landing and soft field procedures or techniques;

(H)flapless approach and landing;

(I)wheel landing (tail wheel aeroplanes);

(J)missed approach and go-around;

(K)noise abatement procedures.

(xvii)Exercise 12/13: Emergencies:

(A)abandoned take-off;

(B)simulated engine failure after take-off;

(C)rejected landing and go-around;

(D)missed approach;

(E)simulated engine failure and restart procedures in-flight. Note: In the interests of safety, it will be necessary for pilots trained on nose wheel aeroplanes or TMGs to undergo dual conversion training before flying tail wheel aeroplanes or TMGs, and vice versa. (xviii) Exercise 14: First solo:

(A)instructor’s briefing;

(B)use of required equipment;

(C)observation of flight and debriefing by instructor. Note: During flights immediately following the solo circuit, the consolidation of the following should be revised:

(1)procedures for leaving and rejoining the circuit;

(2)the local area, restrictions, map reading;

(3)use of radio aids for homing;

(4)turns using magnetic compass, compass errors.

(xix)Exercise 15: Advanced turning:

(A)steep turns (45 °), level and descending;

(B)stalling in the turn and recovery;

(C)recoveries from unusual attitudes, including spiral dives.

(xx)Exercise 16: Forced landing without power:

(A)forced landing procedure;

(B)choice of landing area, provision for change of plan;

(C)gliding distance;

(D)descent plan;

(E)key positions;

(F)engine cooling;

(G)engine failure checks;

(H)use of radio;

(I)base leg;

(J)final approach;

(K)landing;

(L)actions after landing.

(xxi)Exercise 17: Precautionary landing:

(A)full procedure away from aerodrome to break-off height;

(B)occasions necessitating a precautionary landing;

(C)in-flight conditions;

(D)landing area selection:

(a)normal aerodrome;

(b)disused aerodrome;

(c)ordinary field.

(E)circuit and approach;

(F)actions after landing.

(xxii)Exercise 18a: Navigation:

(A)flight planning:

(a)weather forecast and actuals;

(b)map selection and preparation:

(1)choice of route;

(2)airspace structure;

(3)safety altitudes.

(c)calculations:

(1)magnetic heading(s) and time(s) en-route;

(2)fuel consumption;

(3)mass and balance;

(4)mass and performance.

(d)flight information:

(1)NOTAMs, etc.;

(2)radio frequencies;

(3)selection of alternate aerodromes.

(e)aeroplane or TMG documentation;

(f)notification of the flight:

(1)pre-flight administrative procedures;

(2)flight plan form.

(B)departure:

(a)organisation of cockpit workload;

(b)departure procedures:

(1)altimeter settings;

(2)ATC liaison in regulated airspace;

(3)setting heading procedure;

(4)noting of ETAs.

(c)maintenance of altitude and heading;

(d)revisions of ETA and heading;

(e)log keeping;

(f)use of radio;

(g)minimum weather conditions for continuation of flight;

(h)in-flight decisions;

(i)transiting controlled or regulated airspace;

(j)diversion procedures;

(k)uncertainty of position procedure;

(l)lost procedure.

(C)arrival and aerodrome joining procedure:

(a)ATC liaison in regulated airspace;

(b)altimeter setting;

(c)entering the traffic pattern;

(d)circuit procedures;

(e)parking;

(f)security of aeroplane or TMG;

(g)refuelling;

(h)closing of flight plan, if appropriate;

(i)post-flight administrative procedures. (xxiii) Exercise 18b: Navigation problems at lower levels and in reduced visibility:

(A)actions before descending;

(B)hazards (for example obstacles, and terrain);

(C)difficulties of map reading;

(D)effects of wind and turbulence;

(E)vertical situational awareness (avoidance of controlled flight into terrain);

(F)avoidance of noise sensitive areas;

(G)joining the circuit;

(H)bad weather circuit and landing.

(xxiv)Exercise 18c: Radio navigation (basics):

(A)use of GNSS or VOR/ADF:

(a)selection of waypoints or stations;

(b)to or from indications and orientation;

(c)error messages.

(B)use of VHF/DF:

(a)availability, AIP and frequencies;

(b)R/T procedures and ATC liaison;

(c)obtaining a QDM and homing.

(C)use of en-route or terminal radar:

(a)availability and AIP;

(b)procedures and ATC liaison;

(c)pilot’s responsibilities;

(d)secondary surveillance radar:

(1)transponders;

(2)code selection;

(3)interrogation and reply.

(xxv)Exercise 19: Stopping and restarting the engine (in the case of TMGs only):

(A)engine cooling;

(B)switching-off procedure;

(C)restarting of the engine.

AMC · AMC1 FCL.115 — Regulation (EU) No 1178/2011 · ED Decision 2025/002/R · Aircrew Easy Access Rules · EAR revision 25 Nov 2025

AMCAcceptable means of compliance

AMC2 FCL.115LAPL — Training course

Show the text

FLIGHT INSTRUCTION FOR THE LAPL(H)

(a)Entry to training Before being accepted for training an applicant should be informed that the appropriate medical certificate must be obtained before solo flying is permitted.

(b)Flight instruction

(1)The LAPL(H) flight instruction syllabus should take into account the principles of threat and error management and also cover:

(i)pre-flight operations, including mass and balance determination, helicopter inspection and servicing;

(ii)aerodrome and traffic pattern operations, collision avoidance precautions and procedures;

(iii)control of the helicopter by external visual reference;

(iv)take-offs, landings, hovering, look-out turns and normal transitions from and to the hover;

(v)emergency procedures, basic autorotations, simulated engine failure and ground resonance recovery if relevant to type;

(vi)sideways and backwards flight and turns on the spot;

(vii)recognition of and recovery from the incipient vortex ring state;

(viii)touchdown autorotations, simulated engine-off landings, practice forced landings. Simulated equipment malfunctions and emergency procedures relating to malfunctions of engines, controls, electrical and hydraulic circuits;

(ix)steep turns;

(x)transitions, quick stops, out of wind manoeuvres, sloping ground landings and take-offs;

(xi)limited power and confined area operations including selection of and operations to and from unprepared sites;

(xii)cross-country flying by using visual reference, dead reckoning and, where available and radio navigation aids;

(xiii)operations to and from aerodromes; compliance with air traffic services procedures and communication procedures.

(2)Before allowing applicants to undertake their first solo flight, the FI should ensure that the applicants can use R/T communication and can operate the required systems and equipment.

(c)Syllabus of flight instruction

(1)The numbering of exercises should be used primarily as an exercise reference list and as a broad instructional sequencing guide; therefore the demonstrations and practices need not necessarily be given in the order listed. The actual order and content will depend upon the following interrelated factors:

(i)the applicant’s progress and ability;

(ii)the weather conditions affecting the flight;

(iii)the flight time available;

(iv)instructional technique considerations;

(v)the local operating environment;

(vi)applicability of the exercises to the helicopter type.

(2)Each of the exercises involves the need for the applicant to be aware of the needs of good airmanship and look-out, which should be emphasised at all times.

(i)Exercise 1a: Familiarisation with the helicopter:

(A)characteristics of the helicopter, external features;

(B)cockpit layout;

(C)systems;

(D)checklists, procedures, controls.

(ii)Exercise 1b: Emergency procedures:

(A)action if fire on the ground and in the air;

(B)engine, cabin and electrical system fire;

(C)systems failures;

(D)escape drills, location and use of emergency equipment and exits.

(iii)Exercise 2: Preparation for and action after flight:

(A)flight authorisation and helicopter acceptance;

(B)serviceability documents;

(C)equipment required, maps, etc.;

(D)external checks;

(E)internal checks;

(F)seat, harness and flight controls adjustments;

(G)starting and warm-up checks clutch engagement and starting rotors;

(H)power checks;

(I)running down system checks and switching off the engine;

(J)parking, security and picketing;

(K)completion of authorisation sheet and serviceability documents.

(iv)Exercise 3: Air experience:

(A)to introduce the student to rotary wing flight;

(B)flight exercise.

(v)Exercise 4: Effects of controls:

(A)function of flight controls, primary and secondary effect;

(B)effect of air speed;

(C)effect of power changes (torque);

(D)effect of yaw (sideslip);

(E)effect of disc loading (bank and flare);

(F)effect on controls of selecting hydraulics on/off;

(G)effect of control friction;

(H)instruments;

(I)use of carburettor heat or anti-icing control.

(vi)Exercise 5: Power and attitude changes:

(A)relationship between cyclic control position, disc attitude, fuselage attitude and air speed;

(B)flapback;

(C)power required diagram in relation to air speed;

(D)power and air speed changes in level flight;

(E)use of instruments for precision;

(F)engine and air speed limitations.

(vii)Exercise 6a: Straight and level:

(A)at normal cruising power, attaining and maintaining straight and level flight;

(B)control in pitch, including use of control friction or trim;

(C)maintaining direction and balance, (ball or yawstring use);

(D)setting power for selected air speeds and speed changes;

(E)use of instruments for precision.

(viii)Exercise 6b: Climbing:

(A)optimum climb speed, best angle or rate of climb from power required diagram;

(B)initiation, maintaining the normal and maximum rate of climb, levelling off;

(C)levelling off at selected altitudes or heights;

(D)use of instruments for precision.

(ix)Exercise 6c: Descending:

(A)optimum descent speed and best angle or rate of descent from power required diagram;

(B)initiation, maintaining and levelling off;

(C)levelling off at selected altitudes or heights;

(D)descent (including effect of power and air speed);

(E)use of instruments for precision.

(x)Exercise 6d: Turning:

(A)initiation and maintaining medium level turns;

(B)resuming straight flight;

(C)altitude, bank and coordination;

(D)climbing and descending turns and effect on rate of climb or descent;

(E)turns onto selected headings, use of gyro heading indicator and compass;

(F)use of instruments for precision.

(xi)Exercise 7: Basic autorotation:

(A)safety checks, verbal warning and look-out;

(B)entry, development and characteristics;

(C)control of air speed and RRPM, rotor and engine limitations;

(D)effect of AUM, IAS, disc loading, G-forces and density altitude

(E)re-engagement and go-around procedures (throttle over-ride or ERPM control);

(F)awareness of increased risk of vortex condition during power recovery;

(G)gentle and medium turns in autorotation;

(H)demonstration of variable flare simulated engine off landing.

(xii)Exercise 8a: Hovering:

(A)demonstrate hover IGE, importance of wind effect and attitude, ground cushion, stability in the hover, effects of over controlling;

(B)student holding cyclic stick only;

(C)student handling collective lever (and throttle) only;

(D)student handling collective lever, (throttle) and pedals;

(E)student handling all controls;

(F)demonstration of ground effect;

(G)demonstration of wind effect;

(H)demonstrate gentle forward running touchdown;

(I)specific hazards, for example snow, dust and litter.

(xiii)Exercise 8b: Hover taxiing and spot turns:

(A)revise hovering;

(B)precise ground speed and height control;

(C)effect of wind direction on helicopter attitude and control margin;

(D)control and coordination during spot turns;

(E)carefully introduce gentle forward running touchdown.

(xiv)Exercise 8c: Hovering and taxiing emergencies:

(A)revise hovering and gentle forward running touchdown, explain (demonstrate where applicable) effect of hydraulics failure in the hover;

(B)demonstrate simulated engine failure in the hover and hover taxi.

(C)demonstrate dangers of mishandling and over-pitching.

(xv)Exercise 9: Take-off and landing

(A)pre-take-off checks or drills;

(B)look-out;

(C)lifting to hover;

(D)after take-off checks;

(E)danger of horizontal movement near ground;

(F)danger of mishandling and overpitching;

(G)landing (without sideways or backwards movement);

(H)after landing checks or drills;

(I)take-off and landing crosswind and downwind.

(xvi)Exercise 10: Transitions from hover to climb and approach to hover:

(A)look-out;

(B)revise take-off and landing;

(C)ground effect, translational lift and its effects;

(D)flapback and its effects;

(E)effect of wind speed and direction during transitions from or to the hover;

(F)the constant angle approach;

(G)demonstration of variable flare simulated engine off landing.

(xvii)Exercise 11a: Circuit, approach and landing:

(A)revise transitions from hover to climb and approach to hover;

(B)circuit procedures, downwind and base leg;

(C)approach and landing with power;

(D)pre-landing checks;

(E)effect of wind on approach and IGE hover

(F)crosswind approach and landing;

(G)go-around;

(H)noise abatement procedures. (xviii) Exercise 11b: Steep and limited power approaches and landings:

(A)revise the constant angle approach;

(B)the steep approach (explain danger of high sink rate and low air speed);

(C)limited power approach (explain danger of high speed at touch down);

(D)use of the ground effect;

(E)variable flare simulated engine off landing.

(xix)Exercise 11c: Emergency procedures:

(A)abandoned take-off;

(B)missed approach and go-around;

(C)hydraulic off landing (if applicable);

(D)tail rotor control or tail rotor drive failure (briefing only);

(E)simulated emergencies in the circuit to include:

(F)hydraulics failure;

(G)simulated engine failure on take-off, crosswind, downwind and base leg;

(H)governor failure.

(xx)Exercise 12: First solo:

(A)instructor’s briefing, observation of flight and debriefing;

(B)warn of change of attitude from reduced and laterally displaced weight;

(C)warn of low tail, low skid or wheel during hover and landing;

(D)warn of dangers of loss of RRPM and overpitching;

(E)pre-take-off checks;

(F)into wind take-off;

(G)procedures during and after take-off;

(H)normal circuit, approaches and landings;

(I)action if an emergency.

(xxi)Exercise 13: Sideways and backwards hover manoeuvring:

(A)manoeuvring sideways flight heading into wind;

(B)manoeuvring backwards flight heading into wind;

(C)combination of sideways and backwards manoeuvring;

(D)manoeuvring sideways and backwards, heading out of wind;

(E)stability and weather cocking;

(F)recovery from backwards manoeuvring, (pitch nose down);

(G)groundspeed limitations for sideways and backwards manoeuvring.

(xxii)Exercise 14: Spot turns:

(A)revise hovering into wind and downwind;

(B)turn on spot through 360°:

(a)around pilots position;

(b)around tail rotor;

(c)around helicopter geometric centre;

(d)square and safe visibility clearing turn.

(C)rotor RPM control, torque effect, cyclic limiting stops due to CG position and wind speed and direction. (xxiii) Exercise 15: Hover OGE – Vortex ring— unanticipated yaw (LTE):

(A)establishing hover OGE;

(B)drift, height or power control;

(C)demonstration of incipient stage of vortex ring, recognition and recovery (from a safe altitude);

(D)Demonstration of unanticipated yaw which could lead to a perceived loss of tail rotor effectiveness (LTE).

(xxiv)Exercise 16: Simulated EOL:

(A)the effect of weight, disc loading, density attitude and RRPM decay;

(B)revise basic autorotation entry;

(C)optimum use of cyclic and collective to control speed or RRPM;

(D)variable flare simulated EOL;

(E)demonstrate constant attitude simulated EOL;

(F)demonstrate simulated EOL from hover or hover taxi;

(G)demonstrate simulated EOL from transition and low level.

(xxv)Exercise 17: Advanced autorotation:

(A)over a selected point at various height and speed;

(B)revise basic autorotation: note ground distance covered;

(C)range autorotation;

(D)low speed autorotation;

(E)constant attitude autorotation (terminate at safe altitude);

(F)‘S’ turns;

(G)turns through 180° and 360°;

(H)effects on angles of descent, IAS, RRPM and effect of AUM.

(xxvi)Exercise 18: Practice forced landings:

(A)procedure and choice of the forced landing area;

(B)forced landing checks and crash action;

(C)re-engagement and go-around procedures. (xxvii) Exercise 19: Steep turns:

(A)steep (level) turns (30° bank);

(B)maximum rate turns (45° bank if possible);

(C)steep autorotative turns;

(D)faults in the turn: balance, attitude, bank and coordination;

(E)RRPM control and disc loading;

(F)vibration and control feedback;

(G)effect of wind at low level. (xxviii)Exercise 20: Transitions:

(A)revise ground effect, translational lift and flapback;

(B)maintaining constant height, (20–30 ft AGL):

(C)transition from hover to minimum 50 knots IAS and back to hover;

(D)demonstrate effect of wind.

(xxix)Exercise 21: Quick stops:

(A)use of power and controls;

(B)effect of wind;

(C)quick stops into wind;

(D)quick stops from crosswind and downwind terminating into wind;

(E)awareness of the danger of vortex ring;

(F)danger of high disc loading.

(xxx)Exercise 22a: Navigation:

(A)Flight planning:

(a)weather forecast and actuals;

(b)map selection and preparation and use:

(1)choice of route;

(2)controlled airspace, danger and prohibited areas;

(3)safety altitudes and noise abatement considerations.

(c)calculations:

(1)magnetic heading(s) and time(s) en-route;

(2)fuel consumption;

(3)mass and balance.

(d)flight information:

(1)NOTAMs, etc.;

(2)radio frequencies;

(3)selection of alternate landing sites.

(e)helicopter documentation;

(f)notification of the flight:

(1)pre-flight administrative procedures;

(2)flight plan form (where appropriate).

(B)Departure:

(a)organisation of cockpit workload;

(b)departure procedures:

(1)altimeter settings;

(2)ATC liaison in regulated airspace;

(3)setting heading procedure;

(4)noting of ETAs.

(c)maintenance of height or altitude and heading;

(d)revisions of ETA and heading:

(1)10° line, double track, track error and closing angle;

(2)1 in 60 rule;

(3)amending an ETA.

(e)log keeping;

(f)use of radio;

(g)minimum weather conditions for continuation of flight;

(h)in-flight decisions;

(i)transiting controlled or regulated airspace;

(j)uncertainty of position procedure;

(k)lost procedure.

(C)Arrival and aerodrome joining procedure:

(a)ATC liaison in regulated airspace;

(b)altimeter setting;

(c)entering the traffic pattern;

(d)circuit procedures;

(e)parking;

(f)security of helicopter;

(g)refuelling;

(h)closing of flight plan, (if appropriate);

(i)post-flight administrative procedures.

(xxxi)Exercise 22b: Navigation problems at low heights and in reduced visibility:

(A)actions before descending;

(B)hazards (for example obstacles and other aircraft);

(C)difficulties in map reading;

(D)effects of wind and turbulence;

(E)avoidance of noise-sensitive areas;

(F)actions in case of DVE;

(G)decision to divert or make a precautionary landing;

(H)bad-weather circuit and landing;

(I)appropriate procedures and choice of landing area;

(J)precautionary landing. (xxxii) Exercise 22c: Radio navigation (basics):

(A)Use of GNNS or VOR/NDB:

(a)selection of waypoints;

(b)to or from indications or orientation;

(c)error messages.

(B)Use of VHF/DF:

(a)availability, AIP and frequencies;

(b)R/T procedures and ATC liaison;

(c)obtaining a QDM and homing.

(C)Use of en-route or terminal radar:

(a)availability and AIP;

(b)procedures and ATC liaison;

(c)pilot’s responsibilities;

(d)secondary surveillance radar:

(1)transponders;

(2)code selection;

(3)interrogation and reply. (xxxiii) Exercise 23: Advanced take-off, landings and transitions:

(A)landing and take-off out of wind (performance reduction);

(B)ground effect, translational lift and directional stability variation when out of wind;

(C)downwind transitions;

(D)vertical take-off over obstacles;

(E)reconnaissance of landing site;

(F)running landing;

(G)zero speed landing;

(H)crosswind and downwind landings;

(I)steep approach;

(J)go-around. (xxxiv) Exercise 24: Sloping ground:

(A)limitations and assessing slope angle;

(B)wind and slope relationship: blade and control stops;

(C)effect of CG when on slope;

(D)ground effect on slope and power required;

(E)right skid up slope;

(F)left skid up slope;

(G)nose up slope;

(H)avoidance of dynamic roll over, dangers soft ground and sideways movement on touchdown;

(I)danger of striking main or tail rotor by harsh control movement near ground.

(xxxv)Exercise 25: Limited power:

(A)take-off power check;

(B)vertical take-off over obstacles;

(C)in-flight power check;

(D)running landing;

(E)zero speed landing;

(F)approach to low hover;

(G)approach to hover;

(H)approach to hover OGE;

(I)steep approach;

(J)go-around. (xxxvi) Exercise 26: Confined areas:

(A)landing capability and performance assessment;

(B)locating landing site and assessing wind speed and direction;

(C)reconnaissance of landing site;

(D)select markers;

(E)select direction and type of approach;

(F)circuit;

(G)approach to committed point and go-around;

(H)approach;

(I)clearing turn;

(J)landing;

(K)power check and performance assessment in and OGE;

(L)normal take-off to best angle of climb speed;

(M)vertical take-off from hover.

AMC · AMC2 FCL.115 — Regulation (EU) No 1178/2011 · ED Decision 2025/002/R · Aircrew Easy Access Rules · EAR revision 25 Nov 2025

AMCAcceptable means of compliance

AMC1 FCL.115(b)LAPL – Training course

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CHANGE OF TRAINING ORGANISATION In cases where the applicant completes the training course (theoretical knowledge instruction or flight instruction) at a different DTO or ATO (‘completing training organisation’) from the one where they have started the training course (‘starting training organisation’), the applicant should request from the starting training organisation a copy of the records kept in accordance with point DTO.GEN.220 or point ORA.ATO.120.

AMC · AMC1 FCL.115(b) — Regulation (EU) No 1178/2011 · ED Decision 2025/002/R · Aircrew Easy Access Rules · EAR revision 25 Nov 2025

AMCAcceptable means of compliance

AMC1 FCL.115; FCL.120 LAPL — Training course and theoretical knowledge examination

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SYLLABUS OF THEORETICAL KNOWLEDGE FOR THE LAPL

(a)The training and examination should cover aspects related to non-technical skills in an integrated manner, taking into account the particular risks associated with the licence and the activity. The DTO or the ATO responsible for the training has to check if all the appropriate elements of the training course of theoretical knowledge instruction have been completed to a satisfactory standard before recommending the applicant for the examination.

(b)The syllabi for the theoretical knowledge instruction and examination for the PPL(A) and the PPL(H) in AMC1 FCL.210; FCL.215 should be used for the LAPL(A) and the LAPL(H) respectively.

AMC · AMC1 FCL.115 — Regulation (EU) No 1178/2011 · ED Decision 2025/002/R · Aircrew Easy Access Rules · EAR revision 25 Nov 2025

All rules in SUBPART B – LIGHT AIRCRAFT PILOT LICENCE – LAPL

Consolidated from the EASA Easy Access Rules (revision 25 Nov 2025, extracted 17 Aug 2026) for convenience. Not the official publication — verify against the Official Journal of the European Union and the EASA publications before operational use.

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