
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
VA M P Instruction Manual Item# 44008 Congratulations on the purchase of the iFLY VAMP iFLY VAMP is the world’s smallest radio controlled flying insect in the form of ornithopter (flapping wings). iFLY VAMP also has patented state of the art technology that allows it to fully resembles the true flying behavior of an insect or bird whereby the halteres rotates to achieve stable flight and directional controls. The iFLY VAMP offers digital proportional speed and directional control just like a radio controlled micro airplane except that it propels itself via flapping its wings. The body of the iFLY VAMP is made out of an ultra-light weight and flexible foam which provides structural strength.. The iFLY VAMP measures only 12 inch wing span and 10 inch body (head to tail) and need only one set of wings to propel itself. Opening package and check content 1x iFLY VAMP Flying Insect 1x Transmitter 2x Pair of Spare Wings 1x Detachable Antenna(it has a unique connector) Batteries The iFLY VAMP flying insect itself has a built-in rechargeable battery and the transmitter requires 6x AA alkaline batteries (sold separately). Install the batteries as follows. Attention: Important battery information. Do not mix old and new batteries, different types of batteries, standard carbon zinc, alkaline or rechargeable of different capacities. Rechargeable batteries are only to be charged under adult supervision Please respect the correct polarity (-) or (+) Do not try to recharge non-rechargeable batteries Do no throw batteries into the fire Replace all batteries of the same type/brand at the same time The supply terminals are not the be short-circuited Remove exhausted batteries from the toy Batteries should be replaced by adults Remove batteries if the toy is not going to be played with for some time The packaging should be kep since it contains important information Rechargeable batteries are to be removed from the transmitter before being charged 1. The antenna for the transmitter will need to be attached to the the transmitter. (Note: always operate the transmitter with an antenna extended) 2. Open the battery compartment on the transmitter using a Phillips screwdriver (not included) to remove the screw on the battery compartment door. 3. Insert the batteries according to the picture (as shown). Ensure that the positive and negative polarities match the illustrations inside the battery compartment. 4. Replace the battery compartment door and replace the screw using the screwdriver. Do not overtighten. Charging the iFLY VAMP Before flying the iFLY VAMP for the first time (or if you have depleted a charge on the iFLY VAMP) you will need to recharge it. A typical charge takes about 20 minutes and allows around 7 minutes of flying time. Note: if the charge time begins to exceed 25 minutes, you should replace all the batteries in the controller with fresh batteries. To charge the iFLY VAMP 1. On the transmitter, please lift up the charging adapter on your transmitter (as shown) 2. Ensure the charging adapter is standing upright. fom the compartment (as shown) 3. Hold the iFLY VAMP firmly by its body, and then insert the cord into the socket at the bottom of the VAMP (as shown). Pay close attention to where the adapter should be inserted into the socket of the VAMP 4. Once inserted, you can enabling charging mode by switching on the TX. When charging the VAMP, the LED indicator light (green) should be ON and when the VAMP has been charged, this LED indicator light will be switched off. . Note: Make sure the iFLY VAMP is turned off before you recharge it. Choosing your flying location You can operate the iFLY VAMP on a calm day outdoor and indoor with a 50x50 feet area with a ceiling height of about 20 ft.. For optimal indoor flying performance, we recommend a minimum area of 16 feet x 16 feet (5 meters x 5 meters). For outdoor flying, try to avoid windy areas and keep the VAMP away from rain or other harsh conditions. To operate the iFLY VAMP: 1. Turn the transmitter on by pressing the POWER button. 2. Extend the antenna on the transmitter to ensure there is 3. Turn the VAMP on by setting the switch on the VAMP to ON. Note: if the controller is off, the iFLY VAMP’s eyes will blink 4. On the transmitter, push the left stick upwards to increase the speed or frequency of the wing-flapping. The left stick(throttle) controls how high and fast the VAMP will fly. 5. Launch the VAMP from your hand with a gentle horizontal toss while pushing the left stick forward slowly. As the VAMP starts to flap its wing, it will have generate some motion to thrust and to lift. 6. On the transmitter, push the right stick (directional) to the left, or push the stick to the right to turn right. The patented technology on VAMP allows the body (alteres) of the insect to roll (left and right) on inputs received from the right control stick. Apply the stick control liberally and turning left and right whilst flying also means it will need space and time to correct its flight path. Tips and Tricks 1. The most stable flight one can obtain is to be easy on the throttle input. Sometimes flying the VAMP requires the user to be only applying small input on the throttle (left stick) and let go of it sometimes. 2. To gain altitude in a confined area, it is easier to start climbing in a circle then in straight line. By pushing the throttle (left stick) and applying right stick to either left or right in order for the VAMP to gain altitude in a small confined area 3. The VAMP can also perform gliding once it is in motion and it is good to sometime let go of the throttle (left stick) in order for it to regain its natural flight composure. Even real birds and insects need stops flapping sometimes and keep gliding and save their energy. 4. Always fly the VAMP in a near calm condition if you want to fly outdoor to avoid any wind that may overpower the VAMP itself. Replacing Wings You can replace the original wings on your VAMP if they become damaged. Tw…
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27.145MHz RF CW OSC Transmit Antenna Circuit DC Source &Indicator CircuitIndicator Circuit 44008 I-FLY Tx Block Diagram MCU RF AMP CHG SWITCH CIRCUIT Function Control
EUT - Front View EUT - Back View
FCC ID Label Sample for Model: 44008 FCC ID: QE844008TX27 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.
FCC ID Label 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. The Label must not be a stick-on paper. The Label on these products must be permanently affixed to the product and readily visible at the time of purchase and must last the expected lifetime of the equipment not be readily detachable. Proposed Label Location on EUT EUT Bottom View/proposed FCC Mark Location FCC ID: QE844008TX27 This device complies with Part
PCB- Front View PCB- Back View
Circuit Description Circuit Description In transmit mode When the control key is pressed,A encode signal is transmitted. Q1 and crystal for osilator,Q3 is rf amp then signal through filter send by antenna。The Q4 is modulation encode signal for rf. In receive mode Q1 is rf super-regenesis receiver and output encoded signal to q2 for amplifier,Signal to U1 DECODE then output motor driver signal。 U5 is motor driver ic. Antenna and grond circuitry This unit make use an extenal antenna,This antenna is inductively coupled. This unit relies on the ground trace of the printed circuit board.No external ground is provided. energry is supplied by 6pcs aa alkaline battery. Background The device described herein a wirless(RF)TOY AEROPLANE CONTROLLER TRANSMITTER For use with the toy aeroplane controlled receiver.It has only one channel of Operation which the usermay choose only.And is used to send button-status dataform The controller to a wireless receiver connected with motors. Typical opeartion Typical opeartion would innolve the user turning on the unit to the toy game when turned on,The unit comes up on the default channel and transmits a continuously steam data.The user can not,At will .Change to any other of the predefined channel. Configuration The transmitted rf circutiry consists of a crystal controlled oscillator, Follow by rf amplifier & filter and antenna.Tha main characteristics Of this configuration are shown as below: Frequency ranges 27.145MHZ Occupied bandwidth(-26db) <100KHZ MAX Frequency stability +/- 20PPM Modulation method AM Output power 80DBuv/m Reference oscillator A 27.145MHZ crystal oscillator is used to generate ths reference frequency It has a stability of +/-20ppm Amplifier Ths Oscillator is followed by amplifiers.These final output is 80dbuv/m max Microcontroller The tx system iscontrolled by a small microcontroller running with 4mhz +/-5% Oscillator The rx system is controlled by a small microcontroller running with internal 16mhz Oscillator +/-5%.
27.145MHZ KWOK'S WINTY MANUFACTURING LTD. REV: VER00SHEET:1 OF 1 DATE:DATE: ITEM NAME: 44008 TX CIRCUIT (27M)ITEM NO.:APP. BY:CHECKED:DRAWN: HUANGHUI DATE: 23/JUL/07 LED1 1 P2.2 2 P2.1 3 P2.0 4 VDD 5 P1.3 6 P1.2 7 P1.1 8 P5.4 9 P1.0 10 P0.0 11 VSS 12 P2.5 13 P2.4 14 P2.3 U1 SOP-SN8P2501 R11K C2 22P U2 HE7550 1 2 Y1 4MHZ C3 22P BATT 9V 2 31 S1-A R6 1K R8 680R C1 224 D16.2V R9 1K Q1 9014 R10 10K R11 10K Q2 2714 Q3 2714 C4 18P C5 100P C6 47P R12 47R R13 100R C7 103 R14 22K 1 2 Y2 27.145MHZ L1 3.3UH R15 47K L2 2.2UH T1 1.85UH C8 47P C9 100P C10 18P L4 3.3UH ANT C12 103 R17 10k +/-1% R23 1K R24 1K R25 1K R26 1K R27 1K R28 1K E B C Q9 2SC9015 E B C Q102SC8550 R36 6.8R D4 1N4001 1 A 2 K B1 CHARGEHEAD R38 1k E B C Q52SC8550 R31 3.3K R32 100R R33 6.8R C15 104 C16 47UF/16V KA D2 LED R7 1K Q6 2412 K6B K5B K4B K3B K2B K7B K1B R3 1K R4 1K R2 1K R5 1K R20 1K R19 1K K6A K5A K4A K3A K2A K7A K1A R30 3.3R R29 1K R34 10K Q4 2714 R16 100R R18 1K C13 103 GND GND GND GND GND +9V GND GND GND GND GND GND GND GND GND +5V
FCC TEST REPORT Page 1 of 24 FCC ID : QE844008TX27 Applicant : Interactive Toy Concepts(HK) Ltd. 7/F.,Eu Yan San Tower, 11-15 Chatham Road South, TST, Kowloon, Hong Kong Equipment Under Test (EUT) : Product description : i-FLY Model No. : 44008 Standards : FCC 15 Subpart C Paragraph 15.227 Date of Test : August 15, 2007 Test Engineer : Tiger Su Reviewed By : PERPARED BY: Waltek Services (Shenzhen) Co., Ltd. 8C,West Tower, Aidi Building, No.5003 Binhe Rd, Futian District, Shenzhen518045, Guangdong, China. Tel: 86-755-83551033 Fax: 86-755-83552400 Interactive Toy Concepts(HK) Ltd. FCC ID: QE844008TX27 Page 2 of 24 2 Contents Page 1 COVER PAGE..........................................................................................................................................................1 2 CONTENTS ..............................................................................................................................................................2 3 TEST SUMMARY....................................................................................................................................................5 4 GENERAL INFORMATION..................................................................................................................................6 4.1 CLIENT INFORMATION............................................................................................................................................6 4.2 GENERAL DESCRIPTION OF E.U.T...........................................................................................................................6 4.3 DETAILS OF E.U.T. .................................................................................................................................................6 4.4 DESCRIPTION OF SUPPORT UNITS...........................................................................................................................6 4.5 STANDARDS APPLICABLE FOR TESTING..................................................................................................................6 4.6 TEST FACILITY........................................................................................................................................................7 4.7 TEST LOCATION......................................................................................................................................................7 5 EQUIPMENT USED DURING TEST ...................................................................................................................8 6 CONDUCTED EMISSION TEST ........................................................................................................................10 6.1 TEST EQUIPMENT..................................................................................................................................................10 6.2 TEST PROCEDURE.................................................................................................................................................10 6.3 CONDUCTED TEST SETUP.....................................................................................................................................11 6.4 EUT OPERATING CONDITION...............................................................................................................................11 6.5 CONDUCTED EMISSION LIMITS.............................................................................................................................12 6.6 CONDUCTED EMISSION TEST RESULT...................................................................................................................12 7 RADIATION EMISSION TEST...........................................................................................................................13 7.1 TEST EQUIPMENT..................................................................................................................................................13 7.2 MEASUREMENT UNCERTAINTY.............................................................................................................................13 7.3 TEST PROCEDURE.................................................................................................................................................13 7.4 RADIATED TEST SETUP.........................................................................................................................................14 7.5 SPECTRUM ANALYZER SETUP...............................................................................................................................15 7.6 CORRECTED AMPLITUDE & MARGIN CALCULATION............................................................................................15 7.7 SUMMARY OF TEST RESULTS................................................................................................................................15 7.8 EUT OPERATING CONDITION...............................................................................................................................16 7.9 RADIATED EMISSIONS LIMIT.................................................................................................................................16 7.10 RADIATED EMISSIONS TEST RESULT................................................................................................................17 7.11 RADIATED EMISSION TEST DATA.....................................................................................................................17 8 OCCUPIED BANDWIDTH ..................................................................................................................................19 8.1 TEST PROCEDURE.................................................................................................................................................19 9 PHOTOGRAPHS OF TESTING................................................................................................…
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Radiation Emission Test View
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 27.145 MHz - 27.145 MHz | - |

2.4G R/C Vehicle
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Wi-Spi Helicopter
Equipment Class
DTS - Digital Transmission System
RC CAR
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
RC PLANE
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
RC PLANE
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter