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Type | RC Helicopter |
---|---|
Brand | Esky |
Model | Belt CP |
Rotor Type | Collective Pitch |
Channels | 6 |
Power Source | Electric |
Skill Level | Intermediate |
Main Rotor Diameter | 680 mm |
Length | 650 mm |
Battery | 11.1V 1800mAh LiPo |
Gyro | Heading Hold Gyro |
Motor | Brushless |
Charger | LiPo Balance Charger |
Transmitter | 2.4GHz |
Kit Type | RTF (Ready to Fly) |
Technical specifications for the helicopter.
Technical specifications for the motor.
Technical specifications for the micro servo.
Technical specifications for the gyro.
Technical specifications for the 6-channel receiver.
Technical specifications for the transmitter.
Technical specifications for the plug-in power supply unit.
Technical specifications for the charge adapter/balancer.
List of items included in the package.
General safety precautions and warnings for product use.
Safety instructions specific to the remote control transmitter.
Instructions and checks to perform before starting operation.
Safety precautions to observe during flight operation.
Importance of visual contact and prohibited flying conditions.
Safety warnings and precautions for handling batteries and rechargeable batteries.
Charger usage, unattended operation, and cooling requirements.
Guidelines for optimal charging, including fire/explosion risks.
Explanation of the balancer's function in equalizing cell voltages.
Recommendation for using high-quality alkaline batteries in the transmitter.
Warning against attempting to charge non-rechargeable batteries.
Instructions for inserting batteries or rechargeable batteries into the transmitter.
Instructions and warnings for charging batteries within the transmitter.
Critical warning about the charger's unsuitability for transmitter batteries.
Instructions for charging the LiPo flight battery.
Identification and function of the transmitter's controls and switches.
Procedures for turning the transmitter on and off.
Detailed steps and safety for charging the flight battery.
How to connect the charger and balancer to the power supply.
How to connect the power supply to the charger for operation.
Details of the battery charging process, including LED indicators.
Crucial instruction to cool the battery before charging.
Steps for connecting the flight battery to the charging system.
Step-by-step procedure for charging the LiPo battery.
Explanation of how an equalizer balances cell voltages.
Warning about the permanent damage caused by deep discharging LiPo batteries.
General safety guidelines for handling LiPo rechargeable battery packs.
Instructions for installing the charged flight battery into the model.
Instructions for installing and routing the receiver antenna.
Procedure for correctly balancing the helicopter's center of gravity.
Critical warning about the importance of correct model balancing.
Instructions for installing and routing the receiver antenna.
Procedure for correctly balancing the helicopter's center of gravity.
Critical warning about the importance of correct model balancing.
Instructions for performing lateral balancing of the helicopter.
Explanation of the CCPM control system and its servo functions.
How the throttle/pitch control affects helicopter flight height.
How the tail rotor function controls helicopter rotation.
How the aileron function causes the helicopter to tilt.
How the Nick function controls helicopter pitch and forward/backward flight.
Detailed operation of the throttle/pitch control for ascent and descent.
Detailed operation of the tail rotor control for rotation.
Detailed operation of the aileron control for lateral flight.
Detailed operation of the elevator control for forward/backward flight.
Defines conventions for directional references used throughout the manual.
Instructions to verify and set basic transmitter configurations.
How to set the reverse switches for correct control function direction.
Correct position for the 3D mode switch before operation.
Correct initial positions for control levers and trims before flight.
How receiver channels are assigned to control functions.
Guidelines for choosing a suitable and safe flying area.
Steps for connecting the flight battery to the helicopter.
Procedure to check the radio system's range before flying.
Verifying the proper function of the electric speed controller.
How to trim the helicopter for stable flight.
Adjusting elevator trim to correct front/back tilting.
Technique and tips for hovering the helicopter.
Explanation of the ground effect and its impact on low-altitude flight.
Exercises to practice controlling the helicopter's movements.
Warning about decreasing motor power and subsequent actions.
How to use the trainer/pupil mode for learning to fly.
Adjusting pitch for precise control and stable flight behavior.
Detailed steps for adjusting blade angle of attack for pitch correction.
How to adjust the gyro for stable rotation and control.
Adjusting the gyro's sensitivity for optimal response.
How to reverse the gyro's effect direction.
Correcting mechanical tail rotor controls for stability.
Main rotor pitch and throttle values for normal and 3D flight.
How to change transmitter and receiver crystals to avoid channel conflicts.
Steps to install the correct crystal into the receiver.
How to change the assignment of control functions to transmitter sticks.
Requirement for experience and technical skills for control lever changes.
How to use DIP switches to change control lever assignments.
Steps for mechanical modification when swapping throttle/elevator functions.
Warning to perform a final functional check after modifications.
General inspection and maintenance schedule for safe operation.
General checks for all components, battery, and balance.
Maintenance checks for the fuselage and chassis components.
Maintenance and checks for the main rotor blades and components.
Maintenance checks for control horns, ball ends, and linkages.
Maintenance checks for the tail rotor and its components.
How to clean the model and transmitter safely.
Instructions for proper disposal of the product at its end of life.
General guidelines for product disposal according to regulations.
Legal obligations and methods for returning used batteries and accumulators.
Manufacturer's declaration of compliance with EU directives.
Common causes and solutions when the RC system fails to operate.
Issues related to insufficient transmitter range and potential causes.
Troubleshooting steps when servos do not respond as expected.
Common faults and troubleshooting for the overall RC system.
Reasons why the model might not respond to control inputs.
Diagnosing and fixing issues causing the model to fly unevenly or not ascend.
Identifying and resolving causes for model shaking or unstable flight.
Troubleshooting steps when the rotor does not spin despite servo response.
Optional parts and upgrades for the helicopter model.