fms Avanti V3 User guide

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70mm Avanti V3
POWERFUL
80A power system
Smooth flying performance
RIGID
Strong durable EPO material
Instruction Manual
Bedienungsanleitung
Manuel d’utilisation
操作手册
FMSMODEL.COM
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WARNING
WARNING: Read the ENTIRE instruction manual to become familiar with the features of the product before operating. Failure to operate the product correctly can result in damage to the product,personal property and cause serious injury. This is a sophisticated hobby product and NOT a toy. It must be operated with caution and common sense and failure to do so
could result in injury or damage to the product or other property. This product is not intended for use by children without direct adult supervision.
This manual contains instructions for safety operation and maintenance. It is essential to read and follow all the instructions and warnings in the manual prior to assembly, setup or use, in order to operate and avoid damage or serious injury.
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As the user of this product, you are solely responsible for operating in a manner that does not endanger yourself and others or result in damage to the product or the property of others. This model is controlled by a radio signal subject to interference from many sources outside your control. This interference can cause momentary loss of control so it is advisable to always keep a safe distance in all directions around your model, as this margin will help avoid collisions or injury. Age Recommendation: Not for children under 14 years. This is not a toy.
·Never operate your model with low transmitter batteries.
·Always operate your model in an open area away from cars, traffic or people.
·Avoid operating your model in the street where injury or damage can occur.
·Never operate the model in populated areas for any reason.
·Carefully follow the directions and warnings for this and any optional support equipment you use (chargers,rechargeable battery packs, etc.)
·Keep all chemicals, small parts and anything electrical out of the reach of children.
·Moisture causes damage to electronics. Avoid water exposure to all equipment not specifically designed and protected for this purpose.
·Never lick or any place of any your model in your mouth as it could cause serious injury or even death.
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Lithium Polymer (Li-Po) Battery Warning CAUTION: Always follow the manufacturer’s instructions for safe use and disposal of batteries. Fire, property damage, or serious injury can result from the mishandling of Li-Po batteries.
By handling, charging or using a Li-Po Battery you assume all risks associated with lithium batteries. If at any time the batteries begin to swell or balloon, discontinue use immediately! Always store the batteries at room temperature in a dry area to extend the life of the battery. Always transport or temporarily store the battery in a temperature range of 40-120F. Do not store the battery or model in a car or in direct sunlight. If stored in a hot car, the battery can be damaged or even catch fire. Never use a Ni-Mh Charger to charge Li-Po Batteries. Failure to charge the battery with a Li-Po compatible charger may cause fire resulting in personal injury and property damage. Never discharge Li-Po Cells below 3V. Never leave charging batteries unattended. Never charge damaged batteries. Charging the Flight Battery Warning Use a battery charger that is designed to safely charge the Li-Po Battery. Read the charger instructions care fully before use. When charging the battery, make certain the battery is on a heat resistant surface. It is also highly recommended to place the Li-Po Battery inside a fire resistant charging bag readily available at hobby shops or online.
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Introduction
The classic FMS Avanti, reimagined!
Developed by a Sino-Italian team of pilots and engineers, the FMS Avanti is at the pinnacle of model aviation. The sleek and attractive design from the Sebart team, combined with FMS’ innovative and advanced production methods promises excel­lent performance from a true head-turning aircraft.
True to the FMS spirit, the 70mm Avanti V3 was evaluated from nose to tail with no detail overlooked. Retaining the plug-type wiring harness, screw-together assembly, all-terrain tires, plastic and carbon fiber components for added airframe rigidity and an oversized battery compartment to suit most battery sizes.
Simultaneously, FMS has upgraded 8 major features:
1. Improved EDF structure for added efficiency
2. An updated 3060 KV1900 motor for added thrust to weight ratio.
3. Upgraded ESC: Hobbywing OEM 80A ESC with 5A BEC for improved reliability and performance
4. Improved wing connector: banana plug improved to a soft connector type- for added reliability.
5. Improved landing gear: redesigned kneel-type shock absorb­ing landing gear strut.
6. Attractive golden trim scheme
7. Added navigation lights
8. Durable EPO material
If you are searching for a truly heart pounding experience, the 70mm Avanti V3 is the pinnacle of FMS EDF design.
Features:
• Power system: 70mm 12 bladed EDF, 3060 KV1900 motor, Hobbywing OEM 80A ESC, 9g metal servo
• Electronic retracts with stall-protection
• CNC kneel-type shock absorbing landing gear
• Oversized battery compartment
• Screw-together assembly
• Soft electronic wing connector
• Latch type cockpit
• Preinstalled ball link connector for increased throw and precision
• Large tires for all terrain operations
Table of contents
Introduction Kit contents Model assembly Battery installation Receiver diagram Get your model ready to fly Clevis installation Control horn and servo arm settings Center of gravity(CG) Before flying the model Flying course Troubleshooting Spare parts list content
User Manual of Brushless Speed Controller
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Kit contents
Before assembly, please inspect the contents of the kit. The photo below details the contents of the kit with labels. If any parts are missing or defective, please identify the name or part number (refer to the spare parts list near the end of the
manual) then contact your local shop or email us: support
@fmsmodel.com.
Specifications
Wingspan: 900mm (35.4in)
Overall Length:1050mm (41.3in)
Flying Weight: Around 1850g
Motor Size:3060-KV1900
Wing Load:107.6g/dm² (0.22oz/in²)
Wing Area:17.2dm² (266.6sq.in)
ESC:80A
Servo:9g metal digital Servo x 8
Recommended Battery:Li-Po 22.2V 3300mAh 35C
B.
C.
D.
E. F. G.
A:Fuselage C:Vertical
stabilizer
B:Wing halves D:Wing spar F:Wing fence
E:Horizontal stabilizer
G:crew set (HKM3.0X16*7)
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Model assembly
Main wing installation
1.Install the wing spar through the fuselage pass-through as shown.
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2. Slide the wing halves onto the wing spar.
3. Use the included screws to secure the wing halves to the fuselage.
HKM3.0*16mm
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Model assembly
Wing fence installation
1.Install the wing fences onto the wings as shown. Secure with foam-safe CA.
Required Adhesives:
Foam Safe Medium CA
Horizontal and vertical stabilizer installation
1. Install the horizontal stabilizer onto the fuselage and connect the elevator servo leads as shown.
HKM3.0*16mm
2. Secure the horizontal stabilizer using the included screws.
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Model assembly
3. Install the vertical stabilizer into the fuselage slot and connect the rudder servo lead.
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4. Secure the vertical stabilizer using the included screws.
HKM3.0*16mm
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Battery installation
1.Pull back on the latch and remove the battery hatch.
2.Apply the hook tape to the cable end of the battery.
3.Slide the full charged battery into the battery compartment with the power supply cable toward the rear end of the plane.
Note: The center of gravity can be adjusted by moving the battery forward or aft.Having the correct center of gravity is critical to achieving proper flight characteristics.
Receiver diagram
The cables from the servo connector board should be connected to your receiver in the order shown. Note that the LEDs can be powered by any spare channel on the receiver. Tuck the wire leads into the recessed cavity towards the rear of the battery hatch.
Aileron
EIevator
Throttle
Rudder
Gear
Flap
1
2
3
4
5
6
Channel-1
Aile
Channel-2
Elev
Channel-3
Thro
Channel-4
Rudd
Channel-5
Gear
Channel-6
Flap
Get your model ready to fly
Important ESC and model information
The ESC included with the model has a safe start. If the motor battery is connected to the ESC and the throttle stick is not in
1. the low throttle or off position, the motor will not start until the throttle stick is moved to the low throttle or off position. Once the throttle stick is moved to the low throttle or off position, the motor will emit a series of beeps. Several beeps with the same tune means the ESC has detected the cells of the battery. The count of the beeps equals the cells of the battery. The motor is now armed and will start when the throttle is moved. The motor and ESC come pre-connected and the motor rotation should be correct. If for any reason the motor is rotating in the
2. wrong direction, simply reverse two of the three motor wires to change the direction of rotation. The motor has an optional brake setting. The ESC comes with brake switched off and we recommend that the model be flown
3. with the brake off. However, the brake could be accidentally switched on if the motor battery is connected to the ESC while the throttle stick is set at full throttle. To switch the brake off, move the throttle stick to full throttle and plug in the motor battery. The motor will beep one time. Move the throttle stick to low throttle or the off position. The motor is ready to run and the brake will be switched off. Battery Selection and Installation. We recommend the 22.2V 3300mAh 35C Li-Po battery. If using another battery, the battery
4. must be at least a 22.2V 3300mAh 35C battery. Your battery should be approximately the same capacity, dimension and weight as the 22.2V 3300mAh 35C Li-Po battery to fit the fuselage without changing the center of gravity significantly.
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Transmitter and model setup
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Before getting started, bind your receiver with your transmitter. Please refer to your transmitter manual for proper operation. CAUTION: To prevent personal injury, DO NOT install the propel­ler assembly onto the motor shaft while testing the control surfac­es. DO NOT arm the ESC and do not turn on the transmitter until the Transmitter Manual instructs you to do so. Tips: Make sure all control sticks on your radio are in the neutral position (rudder, elevator, ailerons) and the throttle is in the OFF position. Make sure both ailerons move up and down (travel) the same amount. This model tracks well when the left and right ailerons travel the same amount in response to the control stick. Move the controls on the transmitter to make sure the aircraft control surface moves correctly. See diagrams right.
Bank left
Aileron
Bank right
Climb
Elevator
Descend
Steer left
Steering Rudder
Steer right
Control throws
The suggested control throw setting for the Avanti are as follows (dual rate setting):
Tips: On the first flight, fly the model in low rate. The first time you use high rates,be sure to fly at low to medium speeds. High rate, as listed, is only for EXTREME maneuvering.
17mm up / dowm 12mm up / dowm
15mm up / dowm
30mm left / right
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10mm up / dowm
20mm left / right
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Clevis installation
1.Pull the tube from the clevis to the linkage.
2.Carefully spread the clevis, then insert the clevis pin into the desired hole in the control horn.
3.Move the tube to hold the clevis on the control horn.
Control horn and servo arm settings
The table shows the factory settings for the control horns and servo arms. Fly the aircraft at the factory settings before making changes. After flying,you may choose to adjust the linkage positions for the desired control response.
a.
b.
c.
ElevatorRudderAilerons
Horns Arms
d.
e.
f.
More control throw
Less control throw
Check the C.G. (Center of gravity)
When balancing your model, adjust the battery as necessary so the model is level or slightly nose down. This is the correct balance point for your model. After the first flight, the CG position can be adjusted for your personal preference.
1. The recommended Center of Gravity (CG) location for your model is(100-105mm) from the leading edge of the main wing (as shown) with the battery pack installed. Mark the location of the CG on top of the wing.
2. When balancing your model, support the plane at the marks made on the bottom of the main wing with your fingers or a commercially available balancing stand. This is the correct balance point for your model. Make sure the model is assembled and ready for flight before balancing.
100-105mm
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Before flying the model
Find a suitable flying site
Find a flying site clear of buildings, trees, power lines and other obstructions. Until you know how much area will be required and have mastered flying your plane in confined spaces, choose a site which is at least the size of two to three football fields - a flying field specifically for R/C planes is best. Never fly near people - especially children, who can wander unpredictably.
Perform the range check for your plane
As a precaution, an operational ground range test should be performed before the first flight each time you go out. Performing a range test is a good way to detect problems that could cause loss of control such as low batteries, defective or damaged radio components, or radio interference. This usually requires an assistant and should be done at the actual flying site you will be using.
First turn on the transmitter, then install a fully-charged battery into the fuselage. Connect the battery and install the hatch.
Flying course
Take off
While applying power, slowly steer to keep the model straight. The model should accelerate quickly. As the model gains flight speed you will want to climb at a steady and even rate. It will climb out at a nice angle of attack (AOA).
Flying
Always choose a wide-open space for flying your plane. It is ideal for you to fly at a sanctioned flying field. If you are not flying at an approved site always avoid flying near houses, trees, wires and buildings. You should also be careful to avoid flying in areas where there are many people, such as busy parks, schoolyards, or soccer fields. Consult laws and ordinances before choosing a location to fly your aircraft. After takeoff, gain some altitude. Climb to a safe height before trying technical manoeuvres, including high speed passes, inverted flight, loops, and point rolls.
Remember, use care not to bump the throttle stick. Otherwise, the propeller/fan will turn and possibly cause damage or injury.
Note: Please refer to your Transmitter Manual that came with your radio control system to perform a ground range check. If the controls are not working correctly or if anything seems wrong, do not fly the model until you correct the problem. Make certain all the servo wires are securely connected to the receiver and the transmitter batteries have a good connection.
Monitor your flight time
Monitor and limit your flight time using a timer (such as on a wristwatch or in your transmitter if available). When the batteries are getting low you will usually notice a performance drop before the ESC cuts off motor power, so when the plane starts flying slower you should land. Often (but not always) power can be briefly restored after the motor cuts off by holding the throttle stick all the way down for a few seconds. To avoid an unexpected dead-stick landing on your first flight, set your timer to a conservative 4 minutes. When your alarm sounds you should land right away.
Landing
Land the model when you hear the motor pulsing (LVC) or if you notice a reduction in power. If using a transmitter with a timer, set the timer so you have enough flight time to make several landing approaches. The model’s three point landing gear allows the model to land on hard surfaces. Align model directly into the wind and fly down to the ground. Fly the airplane down to the ground using 1/4-1/3 throttle to keep enough energy for proper flare. Before the model touches down, always fully decrease the throttle to avoid damaging the propeller or other components. The key to a great landing is to manage the power and elevator all the way to the ground and set down lightly on the main landing gear. After a few flights you will find the model can be set down lightlyon the mains and you can hold the nose wheel off balancing themodel on the mains until it slows and gently settles the nose.
Maintenance
Repairs to the foam should be made with foam safe adhesives such as hot glue, foam safe CA, and 5min epoxy. When parts are not repairable, see the Spare Parts List for ordering by item number. Always check to make sure all screws on the aircraft are tightened. Pay special attention to make sure the spinner is firmly in place before every flight.
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Trouble shooting
Problem Possible Cause Solution
Aircraft will not respond to the throttlebut responds to other controls.
Extra propeller noise or extra vibration.
Reduced flight time or aircraft underpowered.
Control surface does not move, or is slow to respond to control inputs.
Controls reversed.
-Motor loses power
-Motor power pulses then motor loses power.
-ESC is not armed.
-Throttle channel is reversed.
-Damaged spinner, propeller, motor or motor mount.
-Loose propeller and spinner parts.
-Propellor installed backwards.
-Flight battery charge is low.
-propeller installed backward.
-Flight battery damaged.
-Control surface, control horn, linkage or servo damage.
-Wire damaged or connections loose.
Channels are reversed in the transmitter.
-Damage to motor, or battery.
-Loss of power to aircraft.
-ESC uses default soft Low Voltage Cutoff(LVC).
-Lower throttle stick and throttle trim to lowest settings.
-Reverse throttle channel on transmitter.
-Replace damaged parts.
-Tighten parts for propeller adapter, propeller and spinner.
-Remove and install propeller correctly.
-Completely recharge flight battery.
-Replace flight battery and follow flight battery instructions.
-Replace or repair damaged parts and adjust controls.
-Do a check of connections for loose wiring.
Do the control direction test and adjust controls for aircraft and transmitter.
-Do a check of batteries, transmitter, receiver, ESC,motor and wiring for damage(replace as needed).
-Land aircraft immediately and recharge flight battery.
LED on receiver flashes slowly.
Power loss to receiver.
-Check connection from ESC to receiver.
-Check servos for damage.
-Check linkages for binding.
Spare parts list content
FMSEA101 FMSEA102 FMSEA103 FMSEA104 FMSEA105 FMSEA106 FMSEA107 FMSEA107 FMSEA108 FMSEA109 FMSEA110 FMSEA111 FMSEA112 FMSEA113 FMSEA114
Visit our website: www.fmsmodel.com to see photo of this product. Enter the key word "ESC" in the search bar for the stock ESC instruction manual.
Fuselage Main Wing Set Vertical Stabilizer Horizontal Stabilizer Cockpit Linkage Rod Screw Set Front Landing Gear Door Main Landing Gear Door LED set Lamp cover Wheel set Pipe Front Landing Gear Set Main Landing Gear Set
FMSEA115 FMSEA116 FMSEA117 FMSRE055 FMSRE015 FMSCON004 FMSDF12B70-1 PRKV1900A PRESC023 FMS9MGDP FMS9MGDR
Front Landing Gear System Main Landing Gear System Decal Sheet Electronic Retract Electronic Retract Multi Connector System 70mm Ducted fan (12-blade) 3060-KV1900 inner runner motor 80A ESC 9g digital metal gear servo positive 9g digital metal gear servo reverse
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User Manual of Brushless Speed Controller
Thanks for purchasing our Electronic Speed Controller (ESC). High power system for RC model is very dangerous, please read this manual carefully. In that we have no control over the correct use, installation, application, or maintenance of our products,no liability shall be assumed nor accepted for any damages, losses or costs resulting from the use of the product. Any claims arising from the operating, failure or malfunctioning etc. will be denied. We assume no liability for personal injury, property damage or consequential damages resulting from our product or our workmanship. As far as is legally permitted, the obligation to compensation is limited to the invoice amount of the affected product.
Specifications
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Weight L*W*H
(mm)
32*12*4.5
38*18*6
38*18*7
48*22.5*6
42*25*8
68*25*8
68*25*8
65*25*12
65*29*10
77*35*14
86*38*12
86*38*12
86*38*12
Model
6A
12A
12AE
15A
20A
30A
40A
40A-UBEC
50A-UBEC
60A-UBEC
60A-UBEC
80A-UBEC
80A-UBEC
Cont
Current
6A
12A
12A
15A
20A
30A
40A
40A
50A
60A
60A
80A
80A
Burst
Current
(≤10)
8A
15A
15A
20A
25A
40A
55A
55A
65A
80A
80A
100A
100A
BEC
Mode
Linear
Linear
Linear
Linear
Linear
Linear
Linear
Switch
Switch
Switch
N/A
Switch
N/A
BEC
Output
5V/0.8A
5V/1A
5V/2A
5V/2A
5V/2A
5V/2A
5V/3A
5V/3A
5V/5A
5V/5A
N/A
5V/5A
N/A
BEC Output Capability Battery Cell
2S Lipo 3S Lipo 4S Lipo 6S Lipo Lipo NiMH
3servos
3servos
5servos
5servos
5servos
5servos
5servos
5servos
8servos
8servos
8servos
2servos
4servos
4servos
4servos
4servos
4servos
5servos
8servos
8servos
8servos
5servos
6servos
6servos
6servos
6servos
6servos
6servos
2S
2-3S
2-3S
2-3S
2-3S
2-3S
2-3S
2-4S
2-4S
2-6S
2-6S
2-6S
2-6S
5-6 cells
5-9 cells
5-9 cells
5-9 cells
5-9 cells
5-9 cells
5-9 cells
5-12 cells
5-12 cells
5-18 cells
5-18 cells
5-18 cells
5-18 cells
Weight
5.5
9g
10g
16.5g
19g
37g
39g
43g
41g
63g
60g
82g
79g
Programmable Items (The option written in bold font is the default setting)
1. Brake Setting:Enabled / Disabled
2. Battery Type:Lipo / NiMH
3. Low Voltage Protection Mode(Cut-Off Mode): Soft Cut-Off (Gradually reduce the output power) /Cut-Off
(Immediately stop the output power).
4. Low Voltage Protection Threshold(Cut-Off Threshold):Low / Medium / High
1) For lithium battery, the battery cell number is calculated automatically. Low / medium / high cutoff voltage for each cell is 2.85V/3.15V/3.3V. For example: For a 3S Lipo, when "Medium" cutoff threshold is set, the cut-off voltage will be:3.15*3=9.45V.
2) For NiMH battery, low / medium / high cutoff voltages are 0%/50%/65% of the startup voltage (i.e. the initial voltage of battery pack), and 0% means the low voltage cut-off function is disabled. For example: For a 6 cells NiMH battery, fully charged voltage is 1.44*6=8.64V, when "Medium"cut-off threshold is set, the cut-off voltage
will be: 8.64*50%=4.32V.
5. Startup Mode:Normal /Soft /Super-Soft (300ms / 1.5s / 3s)
a) Normal mode is suitable for fixed-wing aircraft. Soft or Super-soft modes are suitable for helicopters. The initial acceleration of the Soft and Super-Soft modes are slower, it takes 1.5 second for Soft startup or 3 seconds for Super-Soft startup from initial throttle advance to full throttle. If the throttle is completely closed (throttle stick moved to bottom position) and opened again (throttle stick moved to top position) within 3 seconds after the first startup, the re-startup will be temporarily changed to normal mode to get rid of the chance of a crash caused by slow throttle response. This special design is suitable for aerobatic flight when quick throttle response is needed.
6. Timing:Low / Medium / High,( 3.75°/15°/26.25°) Usually, low timing is suitable for most motors. To get higher
speed, High timing value can be chosen.
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User Manual of Brushless Speed Controller
Begin To Use Your New ESC
IMPORTANT! Because different transmitter has different throttle range, please calibrate throttle range before flying.
Throttle range setting (Throttle range should be reset whenever a new transmitter is being used)
1.Switch on the transmi t ter, move throttle stick to the top position.
2.Connect battery pack to the ESC, and wait for about 2 seconds.
3.The "Beep-Beep-" tone should be emitted, means the top point of throttle range has been confirmed.
4.Move throttle stick to the bottom position, several "beep-" tones should be emitted to present the amount of battery cells.
5.A long "Beep-" tone should be emitted, means the lowest point of throttle range has been correctly confirmed.
Normal startup procedure
1.Move throttle stick to bottom position and then switch on transmitter.
2Connect battery pack to ESC, special tone like "♪ 123" means power supply is OK.
3.Several "beep-" tones should be emitted to present the amount of lithium battery cells.
4.When self-test is finished, a long"beep-----" tone should be emitted.
5.Move throttle stick upwards to go flying.
Protection Function
1. Start up failure protection: If the motor fails to start within 2 seconds of throttle application, the ESC will cut-off the output power. In this case, the throttle stick MUST be moved to the bottom again to restart the motor. (Such a situation happens in the following cases: The connection between ESC and motor is not reliable, the propeller or the motor is blocked, the gearbox is damaged, etc.)
2. Over-heat protection: When the temperature of the ESC is over about 110 Celsius degrees, the ESC will reduce the output power.
3.Throttle signal loss protection: The ESC will reduce the output power if throttle signal is lost for 1 second, further loss for 2 seconds will cause the output to be cut-off completely.
Trouble Shooting
Trouble
After power on, motor does not work, no sound is emitted
After power on, motor does not work, such an alert tone is emitted: "beep-beep-, beep-beep-,beep-beep-" (Every "beep-beep-" has a time interval of about 1 second)
After power on, motor does not work, such an alert tone is emitted: "beep-, beep-, beep- "(Every "beep-" has a time interval of about 2 seconds)
After power on, motor does not work,no sound is emitted
Input voltage is abnormal, too high or too low
Throttle signal is irregular
Possible Reason Action
Check the power connection. Replace the connector.
Check the voltage of battery pack
Check the receiver and transmitter Check the cable of throttle channel
After power on, motor does not work, such an alert tone is emitted: "beep-, beep-, beep-" (Every "beep-" has a time interval of about 0.25 second)
After power on, motor does not work, a
special tone " ♪56712" is emitted after 2
beep tone (beep-beep-)
The motor runs in the opposite direction
The throttle stick is not in the bottom (lowest) position
Direction of the throttle channel is reversed, so the ESC has entered the program mode
The connection between ESC and the motor need to be changed
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Move the throttle stick to bottom position
Set the direction of throttle channel correctly
Swap any two wire connections between ESC and motor
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Program the ESC with your transmitter (4 Steps)
Note: Please make sure the throttle curve is set to 0 when the throttle stick is at bottom position and 100% for the top position.
NO.1 Enter program mode
1.Switch on transmitter, move throttle stick to top position, connect the battery pack to ESC
2.Wait for 2 seconds, the motor should emit special tone like "beep-beep-"
3.Wait for another 5 seconds, special tone like "♪56712" should be emitted, which means program mode is
entered.
NO.2 Select programmable items
After entering program mode, you will hear 8 tones in a loop with the following sequence. If you move the throttle stick to bottom within 3 seconds after one kind of tones, this item will be selected.
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Prompt tone
"beep"(1 short tone)
"beep-beep-"(2 short tone)
"beep-beep-beep-"(3 short tone)
"beep-beep-beep-beep-"(4 short tone)
"beep——"(1 long tone)
"beep——beep-"(1 long 1 short)
"beep——beep-beep-"(1 long 2 short)
"beep——beep——"(2 long tone))
Note: 1 long "beep-----" = 5 short "beep-"
Selected item
brake
battery type
cutoff mode
cutoff threshold
startup mode
timing
set all to default
exit
NO.3 Set item value (Programmable value)
You will hear several tones in loop. Set the value matching to a tone by moving throttle stick to top when you hear
the tone, then a special tone "♪1515" emits, means the value is set and saved. (Keeping the throttle stick at top,
you will go back to Step 2 and you can select other items; or moving the stick to bottom within 2 seconds will exit program mode directly) .
Items
Tones "beep-"
1 short tone
"beep-beep-" 2 short tones
"beep-beep-beep"
3 short tones
Brake
Battery type
Cutoff mode
Cutoff threshold
Start mode
Timing
Off
Lipo
Soft-Cut
Low
Normal
Low
On
NiMH
Cut-Off
Medium
Soft
Medium
High
Super soft
High
NO.4 Exit program mode
There are 2 ways to exit program mode:
1. In step 3, after special tone " ", please move throttle stick to the bottom position within 2 seconds.
2. In step 2, after tone "beep-----beep-----"(that is: The item #8),move throttle stick to bottom within 3 seconds.
15
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