Digitalproportionalradiocontrolsystem FS-iA6B Receiver FS-iA6B FS-iA6B Receiver Specification FS-iA6B B LED B/V CC SERVO i-BUS C H 6 C H 5 C H 4 SENS C H 3 P P C H 2 M /C H 1 A UPDATE 4.0-6.5V/DC 6 CHANNELS RECEI VER FS-IA6B 2.4GHz FS-IA6B Receiver and servo connections 1 290() 3l.5cm 4 In order to make sure maximum distance between the transmitter and receive can be obtained please follow the directions below:
1. The two antennas must be kept as straight as possible. Otherwise, control range will be reduced. 2. The two antennas should be placed at a 90 degree angle to each other, as illustrated in the three pictures below. 3. The antennas must be kept away from conductive materials, such as metal and carbon. A distance of at least 15 cm is required for safe operation. Conductive materials will not affect the coaxial part of the antenna, but it is important that the coaxials are not bent to a severe radius. 4. Keep antennas away from the motor, speed controller and other noise souces as much as possible.
(26mm) 90 Coaxial cable F S
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D C R E C E I V E R A i-BUS SERVO SENS C H 2 C H 3 C H 4 C H 5 C H 6 B
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C H 1 Receiver
( Pic 11.1 ) i-BUS SERVO SENS C H 2 C H 3 C H 4 C H 5 C H 6 B
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C H 1 Receiver
( Pic 11.2 ) Antenna Receiver
( Pic 11.3 ) C C 6 H V C
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-BUS i ENS S 1 H C
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M P P FS-IA6B 2.4GHz 6 CHANNELS RECEI VER 4.0-6.5V/DC A LED UPDATE SENS i-BUS C H 3 C H 4 SERVO C H 5 C H 6 B/VCC A C E V R 6 B A I
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. 2 E T A D P U D E L P P M/C H 1 C H 2 Antenna 2 Digitalproportionalradiocontrolsystem Airplane model installation Battery Switch B/V LED UPDATE A 4.0-6.5V/DC 6 CHANNELS RECEI VER 2.4GHz FS-IA6B S U B
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i O V R E S B/VCC CH6 CH5 CH4 CH3 CH2 PPM/CH1 S N E S Receiver
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Connection method for the receiver and the fix wing, for example:
Structure: Two ailerons+flap+The landing gear Ch1Aileron Ch3Throttle Ch5 The landing gear Ch2Elevator Ch4Rudder Ch6Flap CH5 Helicopter model installation Battery Switch B/V LED UPDATE A 4.0-6.5V/DC 6 CHANNELS RECEI VER 2.4GHz FS-IA6B S U B
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i O V R E S B/VCC CH6 CH5 CH4 CH3 CH2 PPM/CH1 S N E S Receiver 120+
Receiver and helicopter connections, for example:
Structure: variable pitch(120 degrees)+governor Ch1Aileron Ch3Throttle Ch5Gyroscope Ch6Pitch Ch2Elevator Ch4Rudder CH6 CH5 CH4 CH3 CH2 CH1 CH6 CH5 CH4 CH3 CH2 CH1 Aux.2 Aux.1 Rudder servo Throttle servo Elevator servo Alieron servo Pitch Gyroscope Rudder servo Throttle servo Elevator servo Aileron servo 3 Receiver operation instruction Port Setup B/V CC SERVO i-BUS C H 6 C H 5 C H 4 SENS C H 3 P P C H 2 M /C H 1 A UPDATE 4.0-6.5V/DC 6 CHANNELS RECEI VER FS-IA6B 2.4GHz LED
(Pic 12.1) CH1-CH6 Bind,VCC OUTPPMi-BUS IN CH1/PPM: CH1PPM CH1-CH6: represent relevant channel of transmitter. Bind,VCC: represent the channel used for matching and input power respectively. OUT: Represent i-BUS port of outputting PPMS data and be used for connecting the serial bus receiver to expand channels. IN: Represent input ports of all kinds of sensor data, and data acquisition modules can be connected in serial optionally. CH1/PPM: output of channel 1 or PPM output.
(Please see the RX setup) Binding Setup 1. 2. 3. B/VCC 4. 4.0-6.5VDCCH1- CH6LED 5. 6. LED 7. All receivers are bound to their respective transmitter at production time. If you want to bind it with another transmitter, please follow the steps below:
1. Install the battery in the transmitter, and turn on the power. 2. Open the main menu, and select "RX setup" function in the second page, then touch "Bind with a receiver" to enter bind mode. 3. Insert the standard bind cable into the power supply channel. 4. Connect the 6VDC power connector to any channel from CH1 to CH 6 with correct polarity to enter bind mode, The receiver LED will flash at this time. 5. The transmitter will exit the bind mode automatically after having successfully bound with the transmitter. 6. Pull off the bind cable and restart the receiver. Please connect the servos and other telemetry modules to the receiver to check if everything operates normally. 7. If anything is wrong, please repeat the above steps to bind again.
, Notice: The bound transmitter and receiver will work abnormally if the transmitter or the receiver enters the binding state by mistake. In other words, the receiver cannot be controlled by the transmitter. If so, you need to restart the transmitter and the receiver. LED 2.4 GHz O V R E S S N E S B/VCC CH6 CH5 CH4 CH3 CH2 PPM/CH1 SA U B
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i UPDAT E 4.0-6.5V/DC 6 CHANNELS RECEI VER FS-IA6B Bind cable Receiver Battery
(Pic 12.2) 14 4 515 FS-CEV04 i-BUS i-bus Receiver Connection instruction Setup
, 416K1-K4C1-C4, 1. FS-CEV04 i-BUSINOUT 2. FS-CEV04 i-BUSOUTFS-CEV04 3. LED 4. 5. LED 6. LED 7. 8. 4 9. OUT
(Pic 12.3) Function Details The system is able to support many channels. This allows the user of the system to change to a different output channel should signal strength be insufficient i-BUS receiver, can connect 4 modules with 16 channels in serial at most. Button K1 and K4 correspond to C1 and C4 respectively. Operation instruction:
1. FS-CEV04 i-BUS The IN port of FS-CEV04 receiver corresponds to OUT port of receiver. 2. FS-CEV04 i-BUS The OUT port of FS-CEV04 receiver is used to connect post level FS-CEV04 receiver. 3. Insert the bus receiver to receiver, and then switch on the matched transmitter and receiver. The LED will be on. 4. Select main menu of receiver setup to enter the interface of servo setup. 5. Select channel which need to be expanded, meanwhile LED of bus receiver is off. 6. Push relevant channel button by plastic needle of matching line. The setup is successful if LED flashes automatically. 7. Insert servo to check. 8. Set up 4 channels of bus receiver as above steps. 9. Just connect a new bus receiver with OUT port of first stage bus receiver if more channel needed. Set up the new one as above steps.
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Notice: When the load of serial bus receiver is excessive and electric current is higher than usual, please supply power directly to the serial bus receiver or it will break cables. FS-CPD01 RPM telemetry (magnetic) module setup 1. 3 PINOUTIN IN12.4 2. 12.5 3. Motor speed 2:0RPM, Function Details This function allows the user to monitor turning speed via the transmitter. This is a very useful function when determination of turning speed is required
(Pic 12.4) Sensor Operation:
1. Insert one end of standard 3 PIN plug into OUT port of RPM telemetry (magnetic) module, and insert the other end into IN port of receiver or other sensor, as shown in the picture 12.4. 2. As shown in the picture 12.5: Inside hub of the model, the distance between sensor and magnet is less than2mm. The North Pole or the south pole of the magnet has to be paralleled with sensor. 3. Switch on transmitter and receiver. Motor speed 2:0RPM will be shown in receiver window in display screen. Speed value changes as turning wheel, which means installation is successful.
(Pic 12.5) 5 Revolving speed module T U O 1 0 c i t D E L D e n g P a M S 2
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S D E E P S F N I Magnet Gear 15 FCC Statement This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures:
-- Reorient or relocate the receiving antenna.
-- Increase the separation between the equipment and receiver.
-- Connect the equipment into an outlet on a circuit different from that to which the receiver is connected.
-- Consult the dealer or an experienced radio/TV technician for help. This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions:
(1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. Changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-
located or operating in conjunction with any other antenna or transmitter.