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Glossary of RC Terms
How To Use our Glossary of RC Terms
| Click on Numbers or Letters below to expand the Glossary of RC Terms for that character. |
3
360, 540, etc.Number describing degrees in an arc. A 360 represents one full turn through an axis. A 360 turn, for example, is a flat turn where the aircraft does not roll its wings but rather just 'slides' through 360 degrees turning on rudder only. For helis: A 540 stall turn, for example, describes a one and one half revolution spin at the apex of a vertical stall, which results in the helicopter resuming nose forward flight before recovery. 3DTerm describing a type of flight pattern, which is characterized by the performance of very specialized aerobatic maneuvers below the model's normal stall speed. Examples include torque rolls, 'walk in the park', harriers, hangers, etc. For helicopters combining two or more maneuvers into one maneuver. Examples: rolling circle, inverted backwards loop. 3FSlang abbreviation for flip flop flying. Similar to 3D, but without the finesse. |
A - Adjustable Function Rate, Adjustable Travel Volume ...
Adjustable Function Rate (AFR)Similar to ATV, AFR allows end point adjustment independent of Dual Rate or Exponential settings. Adjustable Travel Volume (ATV)End Point Adjustment, ATV you can independently preset the maximum travel of a servo on either side of neutral. Adverse YawSome airplanes, especially high-wing airplanes with flat-bottom airfoils, have a tendency to yaw in the opposite direction of the bank. This is most common when flying at low speeds with high angles. Adjusting the ailerons can help reduce the yaw. AerodynamicsScience of air in motion. AFR (Adjustable function rate/high rate)Adjusts the total travel in each direction of a particular function, such as ailerons. For example, used to adjust total aileron travel whether ailerons are a single servo in channel 1, or two servos set up as flaperons, elevons, or other programming. AftTowards the rear. Used such as: "...with an aft center of gravity...." Aileron DifferentialCreating larger upward aileron travel than downward aileron travel to help minimize the model "dragging" the drooped aileron which causes a model to yaw with aileron input. Aileron ExtensionThe Aileron Extension (also known as a servo extension) is a cable with connectors on either end which goes between the receiver and a servo. This allows the servo to be placed at a greater distance from the receiver than the cable that comes on the servo will allow. It also permits easier removal of a wing when the servo that controls the aileron is mounted in the wing and the receiver is in the fuselage (which is usually the case). Aileron/Rudder MixingAdds rudder control when aileron is input from the transmitter aileron stick. AileronsEach side of this airplane has a hinged control surface, called an aileron, located on the trailing edge of the wing. Move the left aileron up and the right aileron down, and the airplane will turn or roll to the right. Perform the opposite actions, and the airplane will roll to the left. This is how you control the airplane's direction in flight. AileronsHinged control surfaces located on the trailing edge of the wing, one on each side, which provide control of the airplane about the roll axis. The control direction is often confusing to first time modelers. For a right roll or turn, the right-hand aileron is moved upward and the left-hand aileron downward, and vice versa for a left roll or turn. AilevatorsTwin elevator servos plugged into separate channels used to control elevator with the option to also have the 2 elevator servos act as ailerons in conjunction with the primary ailerons. Air Bleed ScrewScrew for adjusting the amount of air allowed to bleed into the carburettor during idle Airbrake (Air only)Combines elevator, flap, and optionally spoilers to suddenly slow the model for spot landings. May be triggered by throttle position. AirfoilThe Airfoil is the shape of the cross section of the wing. The front of the airfoil is the leading edge and is usually a rounded section. The back of the airfoil is the trailing edge and usually tapers to nearly a point. The distance between the two is the wing chord. The top surface of the airfoil is usually always curved to allow smooth airflow and produce lift. AirfoilThe shape of the wing when looking at its profile. Usually a raindrop type shape. For helis: The rotor disk is the effective wing, and airfoil refers to the shape of the blades. AMAM, or Amplitude Modulation, was the primary means of modulation in R/C until recently. The control information is transmitted by varying the amplitude of the signal. AmphibianAn aircraft that can fly off of water or land. The wheels retract into the hull or floats, depending upon the type of aircraft. An amphibian can land on water and then extend the landing gear to allow it to pull up onto the shore. Many seaplane bases had ramps to allow the airplanes to pull up onto dry land parking areas. Angle of Attack (AOA)The angle between the chord of the wing and the relative wind that strikes the airfoil. The Angle of Attack is independent of the attitude of the sailplane with respect to the horizon. Angle of attackThe angle that the wing penetrates the air. As the angle of attack increases so does lift, up to a point (and drag). AntennaThe telescoping tube that transmits the signal AreaThe number of square inches (or feet) of the wing. It's the wingspan multiplied by the wing's chord. The area of a tapered wing is the wingspan multiplied by the average chord. ARFAlmost Ready to Fly, a model airplane that can be put together with a minimal amount of time. Arming SwitchAn external switch that prevents the electric motor from accidentally turning on. Articulated RotorThis is borrowed from full sized helicopters, and is a rotor head which allows the blades to flap, drag and feather. Aspect RatioThe wingspan divided by the chord. Aspect ratio is important where a wing's efficiency is concerned. A short aspect ratio (short wings) is better for maneuvering, since it allows a high roll rate. Short wings are also stronger than long wings. Gliders use high-aspect ratio wings (long, skinny wings) because they are more efficient for soaring flight. Example: 10 ft. wingspan with a 1 ft. chord has an aspect ratio of 10. ATLLow-side only trim adjustment. Throttle trims on most radio systems are ATL, allowing the trim to affect only the idle and not the high-speed engine's setttings. NOR (normal) is the other option of trim setting wherein trim movement affects the servo across its entire range of motion. ATS, Revolution Mixing, or Anti Torque CompensationThis is " Automatic Tail System". This refers to the radio mixing in a certain amount of tail rotor when the throttle / pitch is increased or decreased. ATV/EPAAdjustable travel volume, or end point adjustment. Adjusts the total travel in each direction of servos 1-8 regardless of their control assignment. For example, ATV adjustment to AIL channel will adjust only the servo plugged into channel 1 regardless of any flaperon, elevon, or other programming set-ups. Auto Shut offSafety feature which shuts off the transmitter after a set period of time of inactivity to avoid draining the transmitter battery. (Not all transmitters have this feature) AutorotationThis is the term for when the engine is either not running or is put into a idle position with the "Hold" switch. AutorotationThe ability of a rotary wing aircraft to land safely without engine power. This maneuver uses the stored energy in the rotor blades to produce lift at the end of decent, allowing the model to land safely. AxisA line passing through a body about which the body revolves. |
B - Backlash, Back plate, Ball bearing ...
BacklashTerm describing the amount of play between gears, or gear mesh. If too loose, the gear can slip, or strip the teeth. Too tight, and excessive wear is caused. Back plateCover over the rear of the crankcase of an engine. Ball BearingServo's output shaft is supported with bearings for increased performance and accuracy. Ball LinkConnection using a ball, and a link which rotates on the ball. Used to connect the servo to a control surface or lever. BallastBallast is extra weight added to a glider to help it penetrate better in windy weather or to increase its speed. Ballast is usually added in tubes in the inner portion of the wings or in the fuselage at the center of gravity. Base Load AntennaA rigid, short antenna mounted to the model. Used to replace the longer receiver antenna. Battery CyclingTo fully charge and discharge a battery to erase battery memory. Battery Fail-safe functionDetermines how to regain throttle control after a receiver low battery warning. Battery MeterThe device used to monitor the strength of the transmitter batteries BEC (Battery Eliminator Circuitry)Allows receiver to draw power from a main battery pack, eliminating the need for (and weight of) a receiver battery. Bell and HillerControl system used in helicopters. Changes pitch of blades in relation to their position via a swashplate. A flybar with paddles is used to gain responsiveness. The two systems are linked with Control Levers. BindingWhat occurs when the friction at a joint is stronger than the linkage. Boring holes in the skyHaving fun flying an R/C airplane, without any pre-determined flight pattern. Brake flap mixingA group of 3 mixes, mixing brake flap-to-elevator (F-E), aileron and speed flaps, all individually adjustable. "Buddy" or Trainer BoxTwo similar transmitters that are wired together with a "trainer cord." This is most useful when learning to fly—it's the same as having dual controls. The instructor can take control by using the "trainer switch" on his transmitter. ButterflyAlso known as crow. A mix which activates up flaperons and down inner-most flaps for gliding speed control without spoilers or airbrakes. Butterfly-to-elevator mixing4- and 5-servo gliders only. A pre-programmed mix to deploy elevator to compensate for ballooning caused by butterfly. Adjusted proportionally with the in-flight adjustment of butterfly. |
C - CA, Camber, Canard....
CAAbbreviation for cyanoacrylate. An instant type glue that is available in various viscosities (Thin, Medium, Thick, and Gel). These glues are ideal for the assembly of wood airplanes and other materials. NOTE: Most CA glues will attack foam. CA (Cyanoacrylate)An instant type glue that is available in various consistencies (Thin, Medium, Thick, and Gel). CamberIf you draw a line through the center of the airfoil that's exactly half-way between the top and bottom surface, you get the mean airfoil line. Depending upon the airfoil, it can be straight or curved. This curve is called the "camber" of the airfoil. If it has a lot of curve, the airfoil is said to be "highly-cambered". CAMPacOptional extended data storage module for certain Futaba transmitters. CanardThe horizontal surface forward of the wing used to control pitch. It's found on very few aircraft. Also the word used to describe aircraft that have a main wing and a horizontal control surface in the nose...also called, "tail first" aircraft. CapacityThe maximum amount of energy a battery can store. CarburettorThe part of the engine which controls the speed or throttle setting and lean/rich mixture via setting of the needle valve. CarburettorBy adjusting the needle valve in the carburettor, you control the engine’s lean/rich fuel mixture and determine the airplane's speed. CCPMCyclic-Collective-Pitch-Mixing. Type of swashplate mixing which requires a radio with CCPM mixing functions. This uses three servos to control the cyclic, while all three work together to raise and lower the swashplate for collective control. Center LineAn imaginary line drawn through the center of the aircraft from the nose through the tail. Center of Gravity (CG)Balancing point of an aircraft. CG (Center of Gravity)For modelling purposes, this is usually considered—the point at which the airplane balances fore to aft. This point is critical in regards to how the airplane reacts in the air. A tail-heavy plane will be very snappy but generally very unstable and susceptible to more frequent stalls. If the airplane is nose heavy, it will tend to track better and be less sensitive to control inputs, but, will generally drop its nose when the throttle is reduced to idle. This makes the plane more difficult to land since it takes more effort to hold the nose up. A nose heavy airplane will have to come in faster to land safely. ChandelleA very steep climbing turn where the airplane makes a 180o change of direction. ChannelThe frequency number used by the transmitter to send signals to the receiver. If radios transmit on the same frequency, or channel, glitching will occur in the active receiver on that channel. This is due to conflicting signals sent by the two radios. Flying sites should have a frequency control system to ensure that only one radio operates on any given channel at one time. This is usually a board with some type of marker for each channel. If the marker is not available, someone else is using that channel. Do not use your radio unless you are sure you are the only one on the frequency. ChannelThe number of functions your radio can control. Ex: an 8 channel radio has 8 available servo slots used for separate control surfaces or switches. These channels can also be mixed on many radios, for such functions as collective, which increases pitch when throttle is increased. Channel delay (Servo Slow/speed)A feature within ATV which slows servo operation any time the radio is in the particular condition which has the delay set. Charge JackThe plug receptacle of the switch harness into which the charger is plugged to charge the airborne battery. An expanded scale voltmeter (ESV) can also be plugged into it to check battery voltage between flights. It is advisable to mount the charge jack in an accessible area of the fuselage so an ESV can be used without removing the wing. Charge JackThe plug receptacle of the switch harness into which the charger is plugged to charge the battery. ChargerDevice used to recharge batteries and usually supplied with the radio if NiCad batteries are included. ChargerThis is the device used to charge/recharge batteries. If NiCad batteries are provided with the radio, a charger is usually provided as well. Chicken StickA hand-held stick used to start a model airplane engine. ChordThe "depth" of the wing, its distance from leading edge to trailing edge. One of the components used to determine wing area. May vary from root to tip. ClevisThe clevis connects the wire end of the pushrod to the control horn of the control surface. A small clip, the clevis has fine threads so that you can adjust the length of the pushrod. ClunkLocated in the fuel tank, a clunk is weighted and ensures that the intake line has a steady supply of fuel. Collective PitchThis is the ability to vary the main blade pitch when the throttle is increased or decreased. Collective pitch (Air only)Used to regulate variable pitch props to slow model and keep engine running in vertical dives and provide maximum torque in model's vertical climbs. Idle trim is used for how high the idle is when in reverse pitch (diving) and the pitch trim finely adjusts the amount of pitch at full throttle to avoid over-propping the engine. Computer RadioBy using the advanced programming functions of the transmitter, you can adjust the airplane without changing any mechanical structures. ConditionSeparate flight model which has nearly 100% adjustability separate from the basic model set-up. Condition holdHolds the actual output to the model in a predefined state, allowing the user to make adjustments to other conditions safely without having the model receive the commands for that condition. For example, condition hold is used by a heli pilot to keep the heli idling safely on the ground while adjustments are made to the throttle hold, idle-up, and inverted conditions. Condition hold is used by an aircraft pilot to keep the aircraft idling safely on the ground while adjustments are made to a condition which requires full throttle, retracts up, smoke on, or other equipment combinations which the modeller wants to adjust but not activate on the ground. Condition NameUsed to name each flight condition to minimize confusion during set up and use. Condition SelectUsed to select and assign a flight condition to the model currently in use. Constant Drive TailThis is a special autorotation clutch that will always drive the tail rotor even when the engine is off or in "Hold". Control HornThis arm connects the control surface to the clevis and pushrod. Control SurfaceAny one of the various moveable portions of the wings, tail surfaces, or canard. Control SurfacesThe moveable part on the wing and tail that causes the aircraft to roll (aileron), pitch (elevator) or yaw (rudder). Conventional GearThe landing gear arrangement where the airplane has a main gear and a tailwheel. Copy conditionUsed to copy one condition into another. Often used to duplicate a working base condition into additional conditions to minimize repeating set up steps. Copy modelUsed to duplicate the settings of one model already in memory into a second model memory. Often used to set up 2 similar models, or make a copy of a working model to experiment with new set-ups. Also used to copy models to/from a CAMPac data storage unit or a 32MB CF Card. Coreless motorIn a conventional servo, the motor has a steel core armature wrapped in wire that spins inside the magnets. In a coreless design, the armature uses a thin wire mesh that forms a cup that spins around the outside of the magnet eliminating the heavy steel core. A coreless motor does not have magnets as standard servo motors do, so they have a smoother, more constant, and stronger action. Regular servo motors have either 3 or 5 magnets (poles) which when the armature is between these, the servo motor is at its weakest. CoveringThe covering of an aircraft is the skin which is applied to the airframe, closing it in. It is commonly a fabric or plastic film which is heat applied with an iron. Plastic covering, once applied, gives a durable, shiny finish and requires no further treatment. Fabric covering usually requires a layer of paint to finish it and make it resistant to the exhaust of the engine. CowlThe large moulded fairing around an engine. It serves two purposes when done right: It helps the airflow go smoothly around the front of the airplane, and also provides a proper path for cooling air around the engine. CrankcaseMain body of the engine Critical Angle of Attack
The angle of attack at which smooth airflow over the top of the wing stops. Cross-trimFunction set-up where the trimmer next to throttle adjusts elevator and the trimmer next to elevator adjusts throttle. Crow MixingPrimarily used in gliders for spoiler action by mixing the flaps and ailerons. It is necessary for the ailerons to be using separate servos, plugged into separate channels and the flap servo to be independent of both aileron channels. Upon applying Crow Mixing, the flaps go down while both ailerons go up. Crucifix TailCrucifix refers to a stabilizer that is mounted part way up the fin. This is a compromise between the conventional tail and the T-tail combining some of the advantages of both. CrystalThe device that sets the radio frequency of the transmission CyclicTerm used for the horizontal controls used to determine the attitude of the helicopter. Also known as elevator and aileron. CylinderThe section of the crankcase where combustion takes place |
D - Dead Stick, Dialed In, Differential...
Dead StickSlang term for a landing without engine power. An example: "I ran out of fuel at 50 feet and had to dead stick". Dead StickWhen the airplane is in flight gliding, without the engine running, it is called “dead stick.” Dialled InSlang term for the condition in which the model is set up to fly smoothly and predictably. This is the state where the mechanics and electronics work together to produce the best performance. DifferentialUneven movement in each direction of a control surface. Usually used when discussing ailerons or when describing an undesired unevenness in movement of other controls. Differential AileronsThis type of mixing is accomplished by having separate servos on each aileron, plugging one into the aileron channel and the other into another unused channel. The two channels can be programmed to both operate from the aileron control stick, however the travel volume for each aileron may be adjusted separately giving more deflection in one direction (usually up) than in the other. DigitalDescribes the way a servo receives and processes information from the receiver. Generally the Digital servos are faster, more powerful and hold their position better. One disadvantage is that they consume more power from the battery. DihedralThe degree of angle (V-shaped bend) at which the wings intersect the plane is called dihedral. More dihedral gives an airplane more aerodynamic stability. trainer planes with large dihedral dispense with ailerons and use only the rudder to control the roll and yaw. DiodeAn electronic component which only allows current to flow one direction. Protects the transmitter against reverse polarity or power surges during charging. Direction of FlightThe relative direction of the wing in relation to still air Dorsal FinAn extension of the vertical fin forward of the main part of the fin, and against the fuselage. On the top, or "dorsal" side of the aircraft. DragThe air resistance to forward motion. Drag can be increased with the use of certain types of devices installed on the aircraft, such as spoilers, airbrakes, or flaps. Old-style aircraft with lots of supporting wires had very large amounts of drag, while modern aircraft such as military jets, have very low drag. DSC = Direct Servo ControlHigh-end convenience feature which allows control/adjustment of servo function without sending signal through receiver. Requires optional DSC cord (FUTM4250) and DSC-compatible receiver such as R149DP and R113IP. Dual Aileron Extension or Y-HarnessThe Y-Harness is a cable which plugs into a single channel in a receiver and two servos. This allows both servos to be operated from the same channel. Dual ConversionA type of receiver that converts the incoming frequency through two intermediate stages. This tends to eliminate the type of interference known as "image". With high-precision components, it also allows the receiver to be much more precise in selecting the incoming channel it accepts. This is what helps the receiver to be very narrow-band. Dual ConversionDual Conversion refers to the method in which the receiver processes the incoming signal. Generally a Dual Conversion receiver is less prone to outside interference and is the preferred type of receiver. Dual RatesA switch that can make controls more or less sensitive. Lower rates are better for beginners, who tend to over control. Dual Rates (D/R)Dual Rate allows the modeller to choose between two different control sensitivities. With the dual rate switch in the "OFF" position, 100% servo throw is available for maximum control response. In some more sophisticated systems this "OFF" position may be adjusted to provide anywhere from 30% to 120% of normal full throw. In the "ON" position, servo throw is reduced and the control response is effectively desensitized. The amount of throw in the Dual Rate "ON" position is usually adjustable from 30% to 100% of total servo movement. The modeller can tailor the sensitivity of his model to his own preferences. |
E -Electric Starter, Electrolyte, Elevator...
Electric StarterThis is the small motor commonly used to start the airplane's engine. Electrolyte
A caustic material found in batteries. ElevatorThe hinged control surface functions as an elevator, which you adjust to control the airplane's pitch axis. Pulling the transmitter's control stick toward the bottom of the transmitter adjusts the elevator upward, and the airplane begins to climb. Push the control stick forward, and the airplane begins to dive. ElevatorHinged control surface located at the trailing edge of the horizontal stabilizer, which provides control of the airplane about the pitch axis and causes the airplane to climb or dive. The correct direction of control is to pull the transmitter elevator control stick back, toward the bottom of the transmitter, to move the elevator upward, which causes the airplane to climb, and vice versa to dive. Elevator/Flap MixingCouples the Elevators and Flaps such that when control is input to the elevators, the flaps will move in the opposite direction. This permits the model to perform tighter manoeuvres in the pitch attitude.
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F - Fail Safe, Fairing, Field Charger....
Fail SafeA safety feature which turns a servo to a preset position if the signal is lost or interrupted. Additionally, battery fail-safe is a safety feature which brings the throttle servo down to idle as a warning that the receiver battery's voltage is getting dangerously low. Fail Safe (FS)An electronically programmed mechanism in most PCM radios which automatically returns a servo or servos to neutral or a preset position in case of radio malfunction or interference. FairingA shaped area used to smooth out, streamline, or "fair", the joint between two members of an airplane. A wing fairing joins the wing and fuselage. A landing gear fairing streamlines the landing gear struts, and wheel fairings (wheel "pants") streamline the bulky shape of the wheels. Field chargerA fast battery charger designed to work from a 12-volt power source, such as a car battery. "Figure 9"Can be an "official" competition manoeuvre, or a badly-done loop. When the model flies over the top of a loop and picks up too much speed, the momentum prevents it from maintaining a loop's round shape. Fin
The Fin, also known as the "vertical stabilizer", is the fixed vertical surface at the rear of an aircraft. It provides yaw stability for the aircraft. Fin, Vertical Fin
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G - Gain, Gimbal, Glide Ratio ...
GainGyro sensitivity. When too low, the tail will not hold position well. When too high, the surface being dampened by the gyro will tend to wag, or hunt for center. Gimbal (or Stick)The device that allows the user to input desired control movements into the transmitter Glide RatioThe glide ratio is defined as the distance travelled in a horizontal direction compared with the vertical distance dropped on a normal glide. A 10 to 1 glide ratio means that the aircraft would loose one foot of altitude for every ten feet of distance travelled. GlitchMomentary radio problem that never happens unless you are over trees or a swamp. Glow PlugThe heat source for igniting the fuel/air mixture in the engine. When starting the engine a battery is used to heat the filament. After the engine is running, the battery can be removed. The wire filament inside the plug is kept hot by the "explosions" in the engine's cylinder. See next heading and "Idle Bar" plug. Glow Plug Clip/Battery
A 1.2-volt battery with a clip which is connected to your engine’s glow plug used to start the engine. You remove it once the engine is running smoothly. Grease-inA very smooth, gentle landing without a hint of a bounce. GyroA gyro is an electro-mechanical, or electronic device which aids in the control of an R/C model. The gyro senses motion in one axis, and directs the servo to counter that motion. The sensor, which can be a mechanical gyroscope, or an electronic piezo crystal, detects unwanted movement. The gyro then instructs the servo to counter for that motion. At all times, the radio commands will override the gyro command. The level of control the gyro had is adjusted by the GAIN setting. Mechanical Gyro: uses a mechanical gyroscope (similar to the child's toy) to sense movement. Piezo Gyro: Uses a piezo crystal to sense movement. Non-Heading-hold vs. heading hold: A standard (nonHH) gyro senses movement and makes an effort to counter that movement as long as it feels it. Therefore, it is NOT going to return the model to the exact heading prior to the movement. Heading Hold (or AVCS) gyros will lock the model into one position, and accurately correct for movement by sensing rate of change and returning at that same rate. SMM technology: utilizes a microchip to sense movement and provide all readings. Experiences minimal effect from temperature change, commonly known as 'temperature drift' which affects piezo and some mechanical gyros. Gyro sensitivityUsed to create stick priority or activate each rate of a dual rate gyro based on stick position. This pre-programmed mix decreases the gain of the gyro directly proportional to the amount of rudder stick given (or steps the gyro down from high to low rate on dual rate gyros.)
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H - Handle, Harness, Head...
HandleThe device for carrying the transmitter HarnessA device consisting of wires, switches, and a fuse that connects a motor to a battery. HeadThe component which forms the end of the compression chamber of the engine Heading HoldThis describes a type of Gyro which senses rotation, and maintains direction. This is accomplished by sensing the rate of motion, and the time of motion, then compensating for the distance. While this sounds complicated, the effect is that if you have the model dialled in, and point the nose north, with a heading hold gyro on the yaw axis the model will continue to face north until you command it to yaw. See also Heading Lock. This is not recommended for aircraft use while in flight due to the requirement to use YAW (rudder) command to turn the model. Often used for ground use only for perfect take off and landing runs. Heading LockSlang term for Heading Hold Gyro.
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I - Idle Up, Immelmann, Inhibit...
Idle UpThis is a setting on the transmitter which limits the throttle minimum. Particularly useful for FFF and 3D stunt flying. ImmelmannA manoeuvre originally used to reverse direction in combat. The airplane noses up and over onto its back. It then rolls upright and continues in the direction opposite to the original direction. It was invented by the World War I German pilot Max Immelmann, whose airplane could perform the manoeuvre, and others couldn't. It got him out of a lot of trouble in combat until the Allied aircraft designs caught-up and allowed their planes to perform the manoeuvre, too. InhibitMakes a feature inactive and unable to be used. When a function is inhibited, it cannot be used even if the assigned switch is moved to the on position. Setting a feature to INH turns off its functionality without losing any settings. Only visible in specific features IntakeAn air inlet on an aircraft. You can have a carburettor intake, cooling intake, air conditioning intake (on full-size aircraft), and so on. Named because it "takes in" air, and because "intake" is a better-sounding word than "takes in". InvertedTo fly a model upside-down. InvertedThis is when the helicopter is inverted and the functions of the Pitch, Elevator, Rudder can be reversed by the use of the "Inver" switch or the pilot can do it him or herself at the sticks. This is referred to as "Switchless" inverted. Inverted Flight ControlActivates inverted flight programming for helis, which reverses the direction of the rudder, pitch and elevator servos, and sets up inverted flight pitch high-side and low-side. Inverted programming is used to allow the radio inputs to be identical to upright flight while the model is inverted. Note: this approach to hovering is seldom used. Instead, idle-ups are used and the modeller learns to understand and respond to the controls' reversal in inverted flight. |
L - Lateral Balance, Leading Edge, ...
L/DLift divided by drag expressed as a ratio. Essentially the same as a glide ratio. Think of L/D as a glide slope, then, for a given amount of distance the sailplane moves forward, it drops a certain amount. Landing GearThe wheel and gear assembly the airplane uses to land. It is attached to the bottom of the fuselage. Landing GearThe assemblies that include the wheels and the wheel struts. The word "gear" is used in the sense of "equipment", as opposed to the "toothed wheel" meaning of "gear". The British call the landing gear the "undercarriage". Lateral BalanceThe left-right or side-to-side balance of an airplane. An airplane that is laterally balanced will track better through loops and other manoeuvres. Leading EdgeThe front edge of a flying surface. Leading Edge (LE)The very front edge of the wing or stabilizer. This is the edge that hits the air first. Linear MixDirectly proportional. LinkInstruction for one mix to obey another. Mixing function which allows multiple mixes to work in conjunction. Lithium batteryThe internal battery in the 9Z which maintains memory when the transmitter battery is removed. Long StrokeThe stroke of an engine refers to the distance the piston travels from top to bottom. In a Long Stroke engine this distance is a bit longer than on the standard engine making the engine a bit stronger in torque and operation lower RPM. Quite often an engine is "Long Stroke" if the stroke distance is greater than the diameter of the piston. LoopA vertical circle in the air. The plane noses up, keeps rotating until it's on its back, and then comes down and around to describe a vertical circle in the air. |
M - MAAA, Milliamp Hour, Main Gear...
MAAAThe Model Aviation Association of Australia. The official national body for model aviation in Australia. The MAAA sanctions model competitions throughout the country each year, and certifies official model flying records on a national and international level. mAh (Milliamp Hour)A measure of a battery's capacity. The larger the number of milliamp’s the longer the battery cell will last. Main GearAlso Main Landing Gear. The large, heavy-duty landing gear struts and wheels that support most of the weight of the airplane. They are usually under the wing or under the fuselage near the center of the aircraft. Any other landing gear struts and wheels are noticeably smaller. Main Landing GearThe wheel and gear assembly the airplane uses to land. It is attached to the bottom of the fuselage. Master Mix ModeMix option which causes slave channel to operate based on master channel's ATV, not AFR or D/R settings. Metal gearsDrive gears within a servo which are made of one or multiple metal types. Metal gears tend to wear more rapidly than nylon gears when in the same installation, and so require more frequent service to maintain optimum accuracy; however, metal gears are more durable in the case of severe vibration, flutter, or physical shock. MHz = MegahertzThe unit of radio frequency. 75 MHz are surface frequencies; 72 MHz are air frequencies; 27 MHz and 50 MHz can be used for either ground or air applications. Note: Use of the 50 MHz (ham radio) band requires an FCC license. Minimum SinkThe speed at which a sailplane loses altitude most slowly. Usually expressed in feet per minute. MixingAllows a single input to control the operation of two or more servos. Simplifies routine flying and allows more involved manoeuvres—great for intermediate-advanced fliers. For example, Flap-to-elevator mixing: Most models will change pitch upon deploying flaps (some will climb; others dive). After test flying the model and determining the direction and amount of elevator throw required to correct for this change, a pilot may set a flap-to-elevator mix to compensate. Once the mix is operating properly, when the modeller gives flap control, the radio automatically also gives the proportional amount of elevator throw, keeping the model flat and straight. Mixing ArmA specialized lever which has three or more pivots. The length between pivots will determine the proportion of the mix between two or more linkages. Mode IThe control stick configuration with the rudder and elevator being controlled by the left stick while the right stick controls the throttle and ailerons. This is the most popular mode in Australia Mode IIThe control stick configuration with the ailerons and elevator being controlled by the right stick while the left stick controls the rudder and throttle. ModuleA removable/replaceable plug in unit used in most complex computer radios, containing all frequency control equipment, including the crystal and all tuned components. Changing channels or bands on a modular radio requires only changing module. Changing crystals WITHIN a module to change the channel of the module itself is against FCC regulation and is not recommended. To use your transmitter on a different channel you simply purchase another module on that other channel and the radio is now fully properly tuned and safe and easy to use on that other channel as well. Mounting LugThe section of the crankcase used to mount the engine to the airplane MPHSpeed in Miles Per Hour. Like RPM, MPH is both singular and plural. MufflerThis device muffles engine noise and increases the back pressure from the engine’s exhaust stack, which can improve the airplane's performance at low speeds. Mufflers are usually required by R/C Clubs. |
N - Narrow-Band, NiCad, Nitro...
Narrow-BandA radio with a 20 kHz band width. EG. All Futaba radios produced 1992 or later and all Futaba FM and PCM radios ever produced are narrow band. Needle ValveThis mechanism within the carburettor adjusts the fuel mixture and throttle. Refer to your engine’s manufacturer instructions for directions on how to adjust the needle valve. NiCadThis abbreviation stands for Nickel Cadmium, the chemical compound used in rechargeable batteries. NitroShort for Nitromethane, a fuel additive that improves an airplane's high-speed performance. Check your engine’s instructions to determine the ideal nitro content for your engine. Noise TrapsA Noise Trap is a small electronic device which is wired into a long servo extension to reduce radio interference and to boost the control signal going to the servo. These are recommended for use where long servo leads are necessary. NORRCANational Organization for Racing Radio Controlled Autos. Nose GearThe part of the landing gear that is attached to the nose of the fuselage. The nose gear is usually connected to the rudder servo to help you steer the airplane on the ground. NiCad (or NiCd) = Nickel Cadmium batteryRechargeable batteries which are typically used as power for radio transmitters and receivers. Nitro = NitromethaneA fuel additive which increases a model engine's ability to idle low and improves high-speed performance. Ideal nitro content varies from engine to engine. Refer to the engine manufacturer's instructions for best results. Nitro content in fuel is indicated by the percent of the fuel. Nose GearThe strut and wheel that's under the nose of some aircraft. NullNot assigned or never changed. For example, a mix which has a null switch assignment is always active no matter what switch is moved. Nylon gearsDrive gears within a servo are made of nylon. Nylon gears show slower wear than metal gears, but are more prone to failure due to severe vibration, flutter, or physical shock to the servo. |
P - PA2, PCM, Peak...
PA2 = Pilot AssistOptional onboard device which uses optical sensors to correct model's orientation to upright.
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R - Receiver, Reflex. Reset...
Receiver (Rx)The radio unit in the airplane which receives the transmitter signal and relays the control to the servos. This is somewhat similar to the radio you may have in your family automobile, except the radio in the airplane perceives commands from the transmitter, while the radio in your car perceives music from the radio station. Receiver (Rx)The receiver unit in the airplane receives your signals from the ground transmitter and passes the instructions along to the airplane’s servos. ReflexIf a wing has an airfoil that curves down from the high point, and then curves back up, it's said to be "reflexed". Reflex is the size of that reverse curve. Relative WindDirection that the air molecules strike the leading edge of the wing. Reset (Return to default)Used to reset timers, also a model submenu used to reset part or all of a specific model's settings. ResonanceThis is the increased vibration (or amplitude of oscillation) of system when acted upon by a force whose frequency is close to or equal to the normal frequency of the system. When the resonance of many parts of a machine are in synch, the whole machine will vibrate at a greater rate and can be damaged. Resonance can cause difficulties in an aircraft, particularly when using a vibration mount with an improperly balanced propeller/spinner. For helis: Keep in mind that a helicopter has many rotating parts, and they all cause resonance. The helicopter will need to be tuned to reduce the amount of vibration. Retract ServoSpecifically used for mechanical retracts. It is a non-proportional servo which only moves 180 degrees. That is to say this servo is either "off" (gear up and fully locked) or "on" (gear down and fully locked). No ATV, EPA, or AST adjustments can be made on these servos because they are not proportional. The linkage must be set up properly to allow this servo to operate at its full range and do its job—securing your model's landing gear in a gear-up or gear-down position. RetractsShort for retractable landing gear. Wheels and struts that fold up into the airplane to get them out of the airstream and present less resistance to the airflow. Revolution MixingThe function of the radio which mixes throttle to rudder, preventing the rotation of the helicopter during throttle increase or decrease. ROARRadio Operated Auto Racing. National body to standardize and sanction R/C car and truck racing. Roll Axis
The horizontal plane on which the airplane’s wings are raised or lowered. By adjusting the ailerons, you can drop a wing tip below the roll axis and cause the airplane to bank or roll. Roll AxisThe airplane axis controlled by the ailerons. Roll is illustrated by holding the airplane by the nose and tail. Dropping either wingtip is the roll movement. This is used to bank or turn the airplane. Many aircraft are not equipped with ailerons and the Roll and Yaw motions are controlled by the rudder. This is one reason why most trainer aircraft have a larger amount of dihedral. Roll (manoeuvre)The airplane keeps the nose pointed in one direction while it rolls over on its back and then upright again. Rotor direction (Heli programming only)Sets rotor's rotational direction for proper mixing. RPMHow fast something turns. It means Revolutions Per Minute. It is both singular and plural. RudderThe hinged control surface on the vertical stabilizer that controls the airplane’s yaw. Moving the rudder to the left causes the airplane to yaw left; moving the rudder to the right causes it to yaw right. RudderHinged control surface located at the trailing edge of the vertical stabilizer, which provides control of the airplane about the Yaw axis and causes the airplane to Yaw left or right. Left rudder movement causes the airplane to Yaw left, and right rudder movement causes it to Yaw right. Rudder OffsetIn radios with idle up functions, this specifies the amount of tail rotor pitch in the different idle up conditions. Rudder-to-AileronMix used to counteract undesirable roll which often happens with rudder input, especially in knife edge, also called roll coupling. Rudder-to-ThrottleThis heli mix adds a small amount of throttle to counter the added load on the main gear from increasing the pitch of the tail blades, helping to maintain a constant headspeed during rudder application. (This is a minor effect and is not a critical mix for most helicopters.) RuddervatorRuddervators are on a v-tail. Both of the ruddervators move up and down for pitch control and both move left or right for yaw control.
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S - Seaplane, Servo, Shotdown...
SeaplaneAn airplane that has floats, or pontoons, attached to allow it to land on water. ServoThe servo transforms your ground commands into physical adjustments of the airplane while it’s in the air. ServoThe electro-mechanical device which moves the control surfaces or throttle of the airplane according to commands from the receiver. The radio device which does the physical work inside the airplane. Servo Control ArmsServo Control Arms are the plastic output horns which are mounted to the output shaft on your servos. These come in various sizes and styles for different control applications. Most servos will come with an assortment of arms so you can customize to your own specific control needs. Servo Output ArmThe removable arm or wheel which bolts to the output shaft of a servo and connects to the pushrod. Servo Output ArmA removable arm or wheel that connects the servo to the pushrod. Also called servo horn. Servo ReversingReverses the rotation of a servo with the flip of a switch. Adds ease and flexibility during installation. Servo ReversingUsed to reverse the direction of a servo to ease installation and set up. Servo Test (Display)Test feature is used to check for proper servo operation, speed and travel by cycling each servo very slowly. Display feature shows a bar graph indicating movement of each servo. Example: use servo display to plan and test complex radio programming prior to installation into a model to experiment with how best to accomplish a certain goal. Shot downA "hit" that results in a crash landing. Sometimes caused by radios miles away. SlatsMoveable surfaces on the leading edge of the wing that helps airflow in low-speed flight. They enable the wing to fly at lower airspeeds than without them by directing the airflow over the wing and preventing separation of the airflow. Basically, they are retractable slots. All modern jetliners have slats, which open when landing flaps are lowered. Some aircraft intended for very short takeoff and landing have slats that open and close automatically, depending upon airspeed and angle of attack. SlipA manoeuvre where the airplane's controls are used to make the fuselage fly at an angle to the line of flight. This causes a tremendous increase in drag, and allows an airplane without landing flaps to increase its angle of descent without picking up a lot of speed. Slipper ClutchThis is another special unit that is attached to the autorotation clutch will let the main blades turn the tail rotor when the engine is off or in "Hold". The difference between this and a "Constant Drive Clutch" is that this one will "Slip" a little so the tail rotor while spinning will not load the main rotors as much while in the "Hold" function doing a "Autorotation". SlopUnwanted, excessive free movement in a control system. Often caused by a hole in a servo arm or control horn that is too big for the pushrod wire or clevis pin. This condition allows the control surface to move without transmitter stick movement. Also, see flutter. SlotA specially-shaped slot in the wing just behind the leading edge. This directs airflow from below to the top of the wing, and helps low-speed flight by delaying the stall. Because they are permanently-mounted, they do add drag. See also "Slats" Slow RollA very slow version of the roll. SMT = Surface Mount TechnologyUltralight, solid-state components which offer greater vibration resistance and reliability. Snap RollA type of rolling manoeuvre that is very quick and violent. It's basically a spin where the flight path is in any direction chosen by the pilot. Improper speed control during a landing approach can also make the model snap over on one wing and enter a spin. Since it's close to the ground, there's not enough room to recover, and a crash results. Snap Roll ButtonThis feature is found on more complex radios and is used to perform a snap roll manoeuvre by simply pressing one button. The function is usually programmable to give a combination of rudder, elevator and aileron control. Snap Roll SwitchCombines rudder, elevator and aileron movement to cause the aircraft to snap or spin on the flip of a switch. SoloYour first totally unassisted flight that results in a controlled landing. SpanThe maximum distance from wingtip to wingtip. Span, also "Wingspan"The widest straight-line distance between the two wingtips. Speed BrakesLarge panels that fold out of the aircraft structure to provide a lot of extra drag to the air. They are not part of the wing structure, but are usually mounted on the fuselage. Military jets most often have speed brakes, which fold out of the fuselage. Some airliners use spoilers as speed brakes when at altitude. Speed ControlAn electronic device that functions as a throttle for an electric motor. A speed control controls the speed or rpm of an electric motor. Speed FlapThe middle control surface on a 6-trailing-edge-surface glider or the inboard control surface on a 4-surface glider. SpinA manoeuvre where at least one wing is stalled and the two wings are operating at very different angles of attack. This causes the airplane to rotate around its middle while it descends at a high rate of speed. When it's done on purpose, it is a precision manoeuvre, with the pilot trying to get the airplane to rotate an exact number of turns from entry to exit. When it's done accidentally, it can easily result in a crash. Many models crash when the pilot enters an accidental spin too close to the ground. This is caused by improper speed control during the landing approach. SpinnerThe bullet-shaped fairing on the nose of the airplane around the propeller. This smooths the airflow around the propeller hub and also makes the airplane looks much better. SpinnerTerm describing the nose cone that covers the propeller hub. Split-SBasically a reverse Immelmann. The airplane rolls onto its back, and then the nose comes down to finish a 1/2-loop. The direction of flight is changed 180o. SpoilerA Spoiler is a control surface more commonly found on gliders and jet aircraft which is used to slow down the aircraft and decrease lift. They are rarely found on conventional aircraft. They may be mounted on either the top or bottom of the center portion of the wings. Spoiler(s)Control surfaces on the wing that destroy lift. They "spoil" it. They are used on sailplanes because they can steepen the very flat glide of the aircraft, which makes landings much easier. On full-size aircraft, spoilers are also used to kill lift on landing to make sure the airplane is firmly on the ground. They also add a lot of drag to help with aerodynamic braking. StabilatorStabilizer+elevator, also called full-flying tail. Stabilizer incidence controlled by pilot in lieu of an elevator. StabilizerThe Stabilizer is the fixed horizontal surface at the rear of an aircraft. It provides pitch stability for the aircraft. StallLoss of lift resulting from exceeding the critical angle of attack. StallWhat happens when the angle of attack is too great to generate lift regardless of airspeed. (Every airfoil has an angle of attack at which it generates maximum lift—the airfoil will stall beyond this angle). Stick settingUsed to assign the specific feature(s) to a particular gimbal's movement. StrutBasically this is a supporting member. A wing strut supports the wing, and goes from the fuselage to the wing. Cabane struts are on biplanes, and support the upper wing over the fuselage. A landing gear strut is the portion that holds the wheel assembly to the airplane, and away from the wing or fuselage. Sub TrimA radio function which allows very precise electronic centering of servos. Sub-TrimThis is a trim function on many computer radios, allowing trim function during set-up, and still allowing the full trim function in flight. Swashplate adjustment (Heli programming only)This feature includes swash-to-throttle mixing, used to add throttle during cyclic commands for constant engine RPM. It also includes swash rotation, used to correct for a model whose set-up has the swash plate shifted a certain angle from the pre-defined swash plate types in the model menu (SWH) or to fine-tune roll or looping manoeuvres due to rotor blade phasing differences. Swashplate type (Heli programming only)Selects specific helicopter swash plate geometry, such as "CCPM," which uses a 4-servo swash plate set-up. Swash plate rotation can then be adjusted in SWP in the condition menu if your helicopter's specific geometry does not match the positioning of the stock swash types. Switch HarnessThis switch is commonly located on the fuselage and governs the on/off mechanism for the flight pace. Tachometer. A device the measures the engine’s RPM (rotations per minute) by counting light impulses that pass through the spinning propeller. Symmetrical WingA Symmetrical Wing airfoil is curved on the bottom to the same degree as it is on the top. If a line was drawn from the center of the leading edge to the center of the trailing edge the upper and lower halves of the airfoil would be symmetrical. This is ideal for aerobatic aircraft and most lift is created by the angle of incidence of the wing to the flight path. Synthesized module/receiverAllows modeller selection of any U.S. aircraft-legal 72MHz or 50MHz frequency. |
T - Tachometer, Taildragger, Taileron...
TachometerA device the measures the engine’s RPM (rotations per minute) by counting light impulses that pass through the spinning propeller. TachometerAn optical sensor designed specifically to count light impulses through a turning propeller and read out the engine RPM. TaildraggerThe nickname of an airplane that sits on its tail with the two main wheels in front and a tailwheel in the rear. TaileronStabilator with collective and differential actuation. Tail skidOn old World War I type aircraft, or pioneer-type aircraft, there was no tailwheel. A wooden skid was used to support the tail of the airplane. While this helps slow the airplane during landing, it is useless as an aid to steering on the ground. The real aircraft with tailskids had to be manoeuvred on the ground by ground crews, who put the tail on a small cart and towed the airplane where they wanted it. For small distances, the tail was picked-up by hand and the airplane pushed into position by the ground crew. TailwheelThe small wheel at the tail of the airplane. This is found on the type of airplane that have the two large wheels in the front, and the small one in the rear. The airplane sits on its tail. ThermalRising body of hot air that can take a sailplane to a great height. Thermal huntingUsing specific programming set-ups to have the model respond noticeably to the lift of a thermal. Thread LockerA liquid that solidifies; used to prevent screws from loosening due to vibration. ThrottleThe control that allows the pilot to change the speed of the engine. In a car, the "gas pedal" is actually the throttle control for the car. Throttle CurveThe programming function of the radio which allows throttle operation to be adjusted to meet the modeller’s specific needs at various points along the throttle movement. Particularly useful with 2-stroke engines in providing linear throttle response at the various points of throttle application. For helis: Aids in setting the hover point, and end points of the throttle in the collective mix. Throttle HoldA radio function which locks the throttle at a fixed point while a switch is activated. This function is used to hold the throttle in an idle. Useful when starting, as well as for auto rotations. Throttle hold (Heli programming only)This is a pre-programmed linear mix with an offset. This mix makes the throttle servo no longer responsive to throttle stick position, and moves the throttle servo to idle. This is used to practice autorotations. NOTE: a helicopter model type pre-assigns a condition specifically to be used for throttle hold or autorotation practice; HOWEVER, it does not assign anything to this condition. Besides activating throttle hold, you will need to create proper pitch curves to allow blade inertia to increase during the drop, and sufficient pitch to bring the helicopter back to a hover and land. Throttle Stop ScrewScrew for setting the lower limit of the throttle movement ThrustThe forward force provided by the airplane's engine. This is the force that drives the airplane forward. TorqueThe force which tends to cause rotation. Torque RodsInserted into ailerons, these rigid wire rods run along the wings’ trailing edge, then bend downward and connect to the pushrods. Tow-hookThe tow-hook is a small metal hook mounted on the bottom of the glider fuselage at approximately the center of gravity and to which the hi-start or winch is connected. Trailing Edge (TE)The rearmost edge of the wing or stabilizer. Trainer AirplaneA model designed to be inherently stable and fly at low speeds, to give first-time modellers time to think and react as they learn to fly. Trainer AirplaneDesigned to fly with high stability at low speeds, a trainer model airplane allows new users some extra reaction time as they learn to control the airplane’s movements. Transmitter (Tx)The hand-held radio controller. This is the unit that sends out the commands that you input. Transmitter (Tx)The device used on the ground to transmit instructions to the airplane. Three transmitter modes are used in model airplanes. The most common is Mode II, where the left stick controls the throttle and rudder and the right stick controls the elevator and aileron. Tricycle GearThe landing gear arrangement where the airplane has main gear and a nose gear. Trim followTrim combine/separate feature of trim menu. Allows trim adjustments in one condition to affect or not affect other conditions. Trim LeverSlides used to adjust control surfaces during flight. Trim menuUsed to memorize current digital trim positions, set trim type, % of trim delay when switching from condition to condition, sound on or off when trimmers used, rate of trim response at 2 different lengths of time held, and having trims affect all conditions or only the current condition. For example, store trim positions to memory once model is perfectly trimmed. Adjust CG and re-fly, re-trim. Amount of trim change caused by adjustment to aircraft is now easily measured. To activate additional features of trim menu, select the specific trimmer and adjust as desired. Trim offsetSets an offset or adjustment of trim when switching between conditions. For example, applying up elevator trim when switching from an upright to an inverted flight condition to keep the aircraft flying straight and level. Tx
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U - Under-camber ...
Under-camberAn Under-camber airfoil has the lower surface of the wing curved inwardly almost parallel to the upper surface. This type of airfoil produces a great deal of lift but is not common in R/C models. UndercamberThis means that the lower surface of the wing has a hollow curve when observed from front to back. A thin wing with a high camber will be undercambered. |
V - Variable Trace Rate, Ventral Fin...
Variable Trace Rate (VTR)This radio function is similar to exponential except it uses two linear responses to determine the servo sensitivity on the first and second half of the control stick movements. Ventral FinA small vertical surface on the bottom of the aft fuselage. Usually a long, slim triangle that is narrow at the front, and widens toward the rear. It usually ends at the rudder hinge line. Vertical FinThe non-moving surface that is perpendicular to the horizontal stabilizer and provides yaw stability. This is the surface to which the rudder attaches. Vertical StabilizerThe vertical surface of the tail gives the airplane stability while in flight. V-TailA V-Tail is a special tail surface configuration where the horizontal stabilizers and elevators are mounted at an angle between 30 and 45 degrees in a V-shape and the vertical fin is eliminated entirely. The stabilizers provide stability in both pitch and yaw while the moveable surfaces provide directional control in both pitch and yaw. V-Tail MixingUsed when there is a V-Tail on the aircraft rather than the conventional elevator and rudder. Each control surface of the V is connected to a separate servo. Operating the elevator control stick will move both surfaces up for back stick or both surfaces down for forward stick. Moving the rudder control stick left will move the left surface of the V down and the right surface up. Moving the rudder control stick to the right will move the left surface of the V up and the right surface down. V-tail model Mixing (Air and all gliders only)Used on a V-tail model to have 2 servos operate 2 control surfaces as both rudder and elevator. |
W - Washout, Wheel Collar, Wheel Pants...
WashoutAn intentional twist in the wing, causing the wing tips to have a lower angle of attack than the wing root. In other words, the trailing edge is higher than the leading edge at the wing tips. Washout helps prevent tip stalls, and helps the "PT" family of trainers recover, hands-off, from unwanted spiral dives. Wheel CollarThe round retaining piece that anchors wheels in place on the axle. Wheel PantsThe large fairings used to streamline the wheels of an aircraft that has non-retracting or "fixed" landing gear (so-called because it's "fixed" in place). WingThe main lifting surface of an airplane. WingBecause wings provide the primary lift force on an airplane, adjustments to the wings affect the airplane’s movements while in flight. Wing AreaThe Wing Area is the total surface area of the wing of the aircraft, usually calculated by the wingspan times 7the wing chord, although more complex calculations are used on unconventional wing plans. Wing ChordThe Wing Chord of an aircraft is distance from the front or "leading edge" of a wing to the back or "trailing edge". WingletA small vertical surface at the tips of the wings. They help direct the turbulent airflow that all wings have at the tips. They make the wings more efficient. Wing LoadingWing loading is the weight of the aircraft divided by the wing area. It is designated ounces per square foot. Wing Seating TapeWing seating tape is mounted on the fuselage wing saddle where the removable wing fits and isolates the wing from vibration as well as to form a seal to keep exhaust gases from entering the structure. Wing SpanThe maximum distance from wingtip to wingtip. Wing TipThe very outer end of a wing. |
Y - Yaw, Yaw Axis...
YawThe nose-left and nose-right movement of the airplane. This is controlled by the rudder. Yaw AxisThe vertical plane through which the airplane’s nose passes as it yaws to the left or to the right. The rudder controls the yaw axis. Yaw AxisThe airplane axis controlled by the rudder. Yaw is illustrated by hanging the airplane level by a wire located at the center of gravity. Left or right movement of the nose is the Yaw movement. |
Z - Z-Bend, Z-Bend Pliers...
Z-BendThe wire ends of pushrods have Z-shaped bends, which attach to the servo. Z-Bend PliersUsed for crimping wire ends into Z bends. |










