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SUBJECT 034 – FLIGHT PERFORMANCE AND PLANNING – PERFORMANCE – HELICOPTERS

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

IRImplementing rule

SUBJECT 034 – FLIGHT PERFORMANCE AND PLANNING – PERFORMANCE – HELICOPTERS

Note that the term ‘mass’ is used to describe a quantity of matter, and ‘weight’ when describing the force. However, the term ‘weight’ is normally used in aviation to colloquially describe mass. The professional pilot should always note the units to determine whether the term ‘weight’ is being used to describe a force (e.g. unit newton) or quantity of matter (e.g. unit kilogram).

Syllabus referenceBKSyllabus details and associated Learning ObjectivesAeroplaneHelicopterIRCB-IR(A)BIR ExamBIR BKRemarks
ATPLCPLATPL/IRATPLCPL
030 00 00 00FLIGHT PERFORMANCE AND PLANNING
034 00 00 00PERFORMANCE — HELICOPTERS
034 01 00 00GENERAL
034 01 01 00Performance legislation
034 01 01 01Airworthiness requirements
(01)Interpret the airworthiness requirements of CS-27 and CS-29.XXX
(02)Name the general differences between helicopters certified according to CS-27 and CS-29.XXX
034 01 01 02Operational regulations
(01)State that the person responsible for complying with operational procedures is the commander.XXX
(02)Use and interpret diagrams and tables associated with CAT A and CAT B procedures in order to select and develop Class 1, 2 and 3 performance profiles according to available heliport size and location (surface or elevated).XX
(03)Interpret the charts showing minimum clearances associated with CAT A and CAT B procedures.XX
034 01 02 00General performance theory
034 01 02 01Phases of flight
(01)Explain the following phases of flight: take-off; climb; level flight; descent; approach and landing.XXX
(02)Describe the necessity for different take-off and landing procedures.XXX
034 01 02 02Definitions and terms
(01)Define the following terms: CAT A; CAT B; Performance Class 1, 2 and 3; congested area; elevated heliport; helideck; heliport; hostile environment; maximum operational passenger seating configuration (MOPSC); non-hostile environment; obstacle; rotor radius (R); take-off mass; touchdown and lift-off area (TLOF); safe forced landing; speed for best rate of climb (Vy); never exceed speed (VNE); velocity landing gear extended (VLE); velocity landing gear operation (VLO); cruising speed and maximum cruising speed.XXX
(02)Define the following terms: reported headwind component; take-off decision point (TDP); defined point after take-off (DPATO); take-off distance required helicopter (TODRH); take-off distance available helicopter (TODAH); distance required (DR); rejected take-off distance required helicopter (RTODRH); rotation point (RP); committal point (CP); defined point before landing (DPBL); landing decision point (LDP); landing distance available helicopter (LDAH); landing distance required helicopter (LDRH); ditching (see operations).XX
(03)Understand the meaning and significance of the acronyms AEO and OEI.XX
(04)Define the terms ‘climb angle’ and ‘climb gradient’.XX
(05)Define the terms ‘flight-path angle’ and ‘flight-path gradient’.XX
(06)Define ‘VmaxRange’ (speed for maximum range) and VmaxEnd (speed for maximum endurance).XXX
(07)Define and calculate the gradient by using power, wind, and helicopter mass.XX
(08)Explain the terms ‘operational ceiling’ and ‘absolute ceiling’.XXX
(09)Explain the term ‘service ceiling OEI’.XXX
(10)Explain the difference between hovering in ground effect (HIGE) and hovering out of ground effect (HOGE).XXX
034 01 02 03Power required/power available curves
(01)Understand and interpret the power required/power available versus TAS graphs.XXX
034 01 02 04Height–velocity graphs
(01)Understand and interpret height–velocity graphs.XXX
034 01 02 05Influencing variables on performance
(01)Explain how the following factors affect helicopter performance: pressure altitude; humidity; temperature; wind; helicopter mass; helicopter configuration; helicopter centre of gravity (CG).XXX
034 02 00 00PERFORMANCE CLASS 3 — SINGLE-ENGINE HELICOPTERS
034 02 01 00Effect of variables on single-engine (SE) helicopter performance
034 02 01 01Effect of variables on SE helicopter performance
(01)Determine the wind component, altitude and temperature for hovering, take-off and landing.XXX
(02)Explain that operations are to be conducted only from/to heliports and over such routes, areas and diversions contained in a non-hostile environment where a safe forced landing can be carried out (point CAT.OP.MPA.137 of the EU Regulation on air operations, except when the helicopter is approved to operate in accordance with point CAT.POL.H.420). (Consider the exception: Operations may be conducted in a hostile environment. Ground level exposure — and exposure for elevated final approach and take-off areas (FATOs) or helidecks in non-hostile environments — is allowed for operations approved under CAT.POL.H.305, during the take-off and landing phases.)XXX
(03)Explain the effect of temperature, wind and altitude on climb, cruise and descent performance.XXX
034 02 02 00Take-off and landing
034 02 02 01Take-off and landing (including hover)
(01)Explain the take-off and landing requirements.XXX
(02)Explain the maximum allowed take-off and landing mass.XXX
(03)Explain that mass has to be restricted to HIGE.XXX
(04)Explain that if HIGE is unlikely to be achieved (for example, blocked by an obstruction), then mass must be restricted to HOGE.XXX
034 02 03 00Climb, cruise and descent
034 02 03 01Climb, cruise and descent (capabilities)
(01)State that the helicopter must be capable of flying its intended track without flying below the appropriate minimum flight altitude and be able to perform a safe forced landing.XXX
(02)Explain the effect of altitude on the maximum endurance speed.XXX
034 02 04 00Use of helicopter performance data
034 02 04 01Take-off (including hover)
(01)Find the maximum wind component.XXX
(02)Find the maximum allowed take-off mass for certain conditions.XXX
(03)Find the height–velocity parameters.XXX
034 02 04 02Climb
(01)Find the time, distance and fuel required to climb for certain conditions.XXX
(02)Find the rate of climb under given conditions and the best rate-of-climb speed VY.XXX
034 02 04 03Cruise
(01)Find the cruising speed and fuel consumption for certain conditions.XXX
(02)Calculate the range and endurance under given conditions.XXX
034 02 04 04Landing (including hover)
(01)Find the maximum wind component.XXX
(02)Find the maximum allowed landing mass for certain conditions.XXX
(03)Find the height–velocity parameters.XXX
034 03 00 00PERFORMANCE CLASS 2
General remark: The Learning Objectives for Performance Class 2 are principally identical with those for Performance Class 1. (See 034 04 00 00) Additional Learning Objectives are shown below.
034 03 01 00Operations without an assured safe forced landing capability
034 03 01 01Responsibility for operations without an assured safe forced landing capability
(01)State the responsibility of the operator for assuring safe forced landings (point CAT.POL.H.305 of the EU Regulation on air operations).XX
034 03 02 00Take-off
034 03 02 01Take-off requirements
(01)State the climb and other requirements for takeoff.XX
034 03 03 00Take-off flight path
034 03 03 01Take-off flight path requirements
(01)State the height above the take-off surface at which at least the requirements for the take-off flight path for Performance Class 1 are to be met.XX
034 03 04 00Landing
034 03 04 01Landing requirements
(01)State the requirements for the climb capability when OEI.XX
(02)State the options for a Performance Class 2 operation in the case of a critical power-unit failure at any point in the approach path.XX
(03)State the limitations for operations to/from a helideck.XX
034 04 00 00PERFORMANCE CLASS 1 — HELICOPTERS CERTIFIED ACCORDING TO CS-29 ONLY
034 04 01 00Take-off
034 04 01 01Take-off distances
(01)Explain the effects of the following variables on the flight-path and take-off distances: take-off with HIGE or HOGE; take-off procedure; obstacle clearances both laterally and vertically; take-off from non-elevated heliports; take-off from elevated heliports or helidecks; take-off from a TLOF.XX
(02)Explain the effects of the following variables on take-off distances: mass; take-off configuration; bleed-air configurations.XX
(03)Explain the effects of the following meteorological conditions on take-off distances: wind; temperature; pressure altitude.XX
(04)Explain the take-off distances for specified conditions and configuration for AEO and OEI.XX
(05)Explain the effect of obstacles on the take-off distance required.XX
(06)State the assumed reaction time between engine failure and recognition.XX
(07)Explain that the flight must be carried out visually up to TDP.XX
034 04 01 02Rejected take-off distance required (helicopter) (RTODR(H))
(01)Explain RTODR(H) for specified conditions and configuration for AEO and OEI.XX
(02)Explain the time-to-decide allowance (decision time) and deceleration procedure.XX
034 04 01 03Intentionally left blank
034 04 01 04Take-off climb
(01)Define the segments of the take-off flight path.XX
(02)Explain the effect of changes in the configuration on power and speed in the segments.XX
(03)Explain the climb-gradient requirements for OEI.XX
(04)State the minimum altitude over the take-off path when flying at the take-off safety speed in a Category A helicopter (VTOSS).XX
(05)Describe the influence of airspeed selection, acceleration and turns on the climb gradient and best rate-of-climb speed.XX
034 04 01 05Obstacle-limited take-off
(01)Describe the operational regulations for obstacle clearance of the take-off flight path in the departure sector with OEI.XX
034 04 01 06Use of helicopter performance data
(01)Determine from helicopter performance data sheets the maximum mass that satisfies the operational regulations for take-off in terms of regulated take-off mass, TODRH and minimum gradients for climb and obstacle clearance.XX
034 04 02 00Climb
034 04 02 01Climb techniques
(01)Explain the effect of climbing with best rate-of-climb speed (VY).XX
(02)Explain the influence of altitude on VY.XX
034 04 02 02Use of helicopter flight data
(01)Find the rate of climb and calculate the time to climb to a given altitude.XX
034 04 03 00Cruise
034 04 03 01Cruise techniques
(01)Explain the cruise procedures for ‘maximum endurance’ and ‘maximum range’.XX
034 04 03 02Maximum endurance
(01)Explain fuel flow in relation to true airspeed (TAS).XX
(02)Explain the speed for maximum endurance.XX
034 04 03 03Maximum range
(01)Explain the speed for maximum range.XX
034 04 03 04Maximum cruise
(01)Explain the speed for maximum cruise.XX
034 04 03 05Cruise altitudes
(01)Explain the factors which might affect or limit the operating altitude.XX
(02)Understand the relation between power setting, fuel consumption, cruising speed and altitude.XX
034 04 03 06Use of helicopter performance data
(01)Determine the fuel consumption from the helicopter performance data sheets in accordance with altitude and helicopter mass.XX
034 04 04 00En-route one-engine-inoperative (OEI)
034 04 04 01Requirements for en-route flights with OEI
(01)State the flight-path clearance requirements.XX
(02)Explain drift-down techniques.XX
(03)State the reduction in the flight-path width when navigational accuracy can be achieved.XX
034 04 04 02Use of helicopter flight data
(01)Find the single-engine service ceiling, range and endurance from given engine-inoperative charts.XX
(02)Find OEI operating data from suitable charts.XX
(03)Find the amount of fuel to be jettisoned in order to reduce helicopter mass.XX
(04)Calculate the relevant parameters for drift-down procedures.XX
034 04 05 00Descent
034 04 05 01Use of helicopter flight data
(01)Find the rate of descent and calculate the time to descend to a given altitude.XX
034 04 06 00Landing
034 04 06 01Landing requirements
(01)State the requirements for landing.XX
034 04 06 02Landing procedures
(01)Explain the procedure for critical power-unit failure before and after the landing decision point.XX
(02)Explain that the portion of flight after the landing decision point must be carried out visually.XX
(03)Explain the procedures and required obstacle clearances for landings on different heliports/helidecks.XX
034 04 06 03Use of helicopter performance data
(01)Determine from helicopter performance data sheets the maximum mass that satisfies the operational regulations for landing in terms of regulated landing mass, LDRH and minimum gradients for climb and obstacle clearance.XX

IR — Regulation (EU) No 1178/2011 · ED Decision 2020/018/R · Aircrew Easy Access Rules · EAR revision 25 Nov 2025

All rules in SUBPART D – COMMERCIAL PILOT LICENCE – CPL

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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