
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
- 1 - 2 FrSky V8 2.4GHz Radio Control System Instruction Manual for V8 series Thank you for purchasing the FrSky 2.4GHz RF radio control system. In order to fully enjoy benefits of this system, please, carefully read the instruction manual and set up the devices as described below. 1. Brief Introduction FrSky V8 2.4GHz radio control system is a new generation of radio control product developed by FrSky RC Technology Co., Ltd. that incorporates the most advanced 2.4GHz digital communication technology. Thanks to the high precision, minimum latency and interference resistant, the system makes the simultaneous use of multiple devices without the risk of interference. Combining our software with FHSS we have developed a system presenting the highest performance available. We are glad to introduce the FrSky 2.4GHz Radio System. ACCST (Advanced Continuous Channel Shifting Technology) is our advanced technology. The ACCST 2.4GHz system shifts the frequency hundreds of times per second. It means there are no signal conflicts and interruptions. 2. Main features ◆ ◆◆ ◆ Advanced Continuous Channel Shifting Technology ( ACCST SYSTEM) ◆ ◆◆ ◆ Universal transmitter and receiver for all 4ch-8ch controllers. ◆ ◆◆ ◆ Quick and precise channels. ◆ ◆◆ ◆ Error-free Digital link. ◆ ◆◆ ◆ Low power consumption. ◆ ◆◆ ◆ Supports the multiple controls by a single controller. ◆ ◆◆ ◆ Extended operating range (1.2km). 3. FrSky V8 2.4GHz radio control system If you are into FUTABA OR JR and want to update your radio system to the 2.4GHz technology, the FrSky V8 system is the right choice. 3.1 FrSky V8 2.4GHz radio control system consists of: :: : 1× transmitter module (Model: V8FT or V8JT) 1× receiver module(Model: V8FR) 1× transmitter antenna (Model: V8JTA) 3.2 Transmitter Module is compatible with the following transmitters: Futaba module: Futaba: 3PM, 3PK, 7U, 8U, 8J, 9C , 9Z and FN series. Hitec: Optic 6, Eclipse 7. WFLY: WFT09, WFT 08. JR module: JR:347/388/783/U8/PCM10/PCM10S/PCM10SX/ PCM10IIS/8103/J9303/MX-22/MX-24S/PX/9XII - 2 - 3.3 Receiver specifications: Operating Voltage Range: 4.8V-6V Operating Current: 30mA Specified Range: 1.2km Resolution: 10bit Latency: 22ms Number of Channels: 8CH Dimensions: 60×37×21 mm 3.4 Transmitter module specifications: Operating Voltage Range: 6.0V-13.0V Operating Current: 50mA Output Power: 18.5mW Resolution: 10bit Dimensions: 63.9X48.5X36.5mm (V8JT); 58.5x37.5x22mm (V8FT) Important! The effective range of control refers to the distance between the transmitter and the receiver clear of obstruction. All data was tested and verified by FrSky. However this is not guaranteed due to many factors such as the flying environment and the weather, which can greatly affect the effective range of control. It is extremely important to range check your models prior to each flying session! 4. Setup and Operation process 4.1 Installation of the transmitting module: a) Remove the original transmitting module. b) Put the FrSky 2.4GHz transmitter module into the module port of your RC transmitter and screw on the transmitting antenna. c) Turn the transmitter power on and check the RF power indicators on the module and transmitter are working. 4.2 Installation of receivers: The V8FR receiver incorporates two separate antennas into its design which enables it to receive the radio frequency transmission at two different locations. The tip of the antenna cable is the receiving portion (the thinner part). If possible, please make sure that the two antennas are placed at 90 degrees to each other. Please note: This is not a critical figure, however, the most important thing is to keep the antennas away from each other as much as possible. If possible place the antennas away from metal, wires or carbon parts of the airframe to avoid signal lost. Tape or glue them in place so they cannot move around. As the wave length of 2.4GHz is shorter than older RC systems, its ability to go around solid obstacles is weaker than those with frequencies that are below the 100MHz. Therefore, when you locate the antennas you must avoid objects as much as practical with high conductivity, such as; metal parts, servos, ESC’s, battery packs, wires, and carbon fiber structures. If possible put the tip of the antennas outside of the fuselage for maximum reception. - 3 - 4.3 Receiver and Transmitter Setup Instructions Follow the steps below to properly set up your system. a) Turn your FUTABA OR JR transmitter on and switch it to PPM mode, power off the TX. b) Turn the transmitter on while holding the programming button. Release it a few seconds later. The RED LED on the transmitter module will flash indicating the transmitter is ready to bind the receivers. c) Connect the battery to the receiver while holding the receiver’s button. The LED on the receiver will flash indicating the binding process is complete. Turn off the receiver. d) Turn off the transmitter finish the binding procedure. e) Turn on the transmitter. Connect the battery to the receiver when GREEN LED on TX is on. The LED on the receiver will indicate the receiver is receiving commands from the transmitter. In a few seconds system is ready to work (communication is established). After the steps above are completed, both the transmitter and receiver are ready to be used. Binding is required only to set up a new link (like new or additional receiver or transmitter module). Otherwise, just go to step e. To control multi-receivers, every receiver should be programmed with the transmitter in binding state (step b). After all receivers are binded, turn off the transmitter. 4.4 Range check: For safe operation, it is necessary to perform pre-flight range check. Caution must be paid when flying the unit in the neighborhood of metal fences, concrete buildings, or rows of trees. If doing so, you may experience unexpected interferences. Perform a range check as follows (Note: this is done with the receiver installed in the model): a) Place the model at least two feet (60cm…
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Block Diagram RC model Controller MCU Board RF Module Board Crystal Frequency: 26MHz
FrSky Electronic Co.,Ltd. SCS-F18: Project and Product Certification Representative Authorization Letter Page 1 of 2 Rev 2.0 2206 Ringwood Avenue San Jose, CA 95131 Tel: 408-526-1188 Fax: 408-526-1088 Email: [email protected] Project and Product Certification Representative Authorization Letter Revision History Reason for Amendment (current / obsolete) From To Approved Date Initial Release (current) 1.0 1.0 Nov-14-2006 Revised wording (current) 1.0 2.0 Sept–25-2007 FrSky Electronic Co.,Ltd. SCS-F18: Project and Product Certification Representative Authorization Letter Page 2 of 2 Rev 2.0 (2009-08-03) To: SIEMIC, INC. 2206 Ringwood Avenue, San Jose, CA 95131 USA Dear Sir/Madam, Re: Project and Product Certification Representative Authorization Letter We, ____FrSky Electronic Co.,Ltd.___hereby authorize SIEMIC, INC. to act as a Certification Body for certifying for the following project(s): (Radio Control System,Model: V8FT or V8JT) We affirm that between SIEMIC and __FrSky Electronic Co.,Ltd.__, any difference in understanding, including test plan, measurement methods, applicable standards and relevant procedures and processes have been resolved prior to commencement of testing activities. Signature Bryan Shao /Manager Title: Manager Telephone: +86-0510-82606377 Email: [email protected] Date: 2009-12-01
ID Label FCC ID: XYFV8FTR 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. Label Location
The module receives signal from R/C controller, and then form a data packet ready to send. The module gets power from R/C controller, converts voltage input to 3.3V as main power line. The module sends data packet, then changes to a new frequecy point, ready to send next packet. When sending, data streams are regulated by FSK modulation. The modulated signal transimitted as 2.4G wave delivered to antenna.
System Description Transimtter Block Diagram: Working description: 1, PPM signal is received by Micro Controller, and is formatted into digital bits; 2, System power is derived by a DC/DC convertor. 3, Digital bits is modulated by FSK Modulator CC2500 to digital waveforms at 2.4G ISM band; 4, Modulated digital signal is amplified by RF PA, presented at antenna. 5, The signal carrier is hopping 200 times/second. 6, The 2.4G band is divided into 250 channels. 7, Every product uses 50 channels among the 250 points, the 50 channels are selected by equal spacing. 8, The hopping carrier use one of the 50 channels, and the next channel is selected by random numbers. Voltage Regulator Micro Controller FSK Modulator RF PA SocketHost controller RF module Receiver Block Diagram: Working description: 1, RF signal is amplified by LNA. 2, Amplified signal is demodulated by CC2500. 3, Demodulated bits is received by Micro Controller. 4, Micro Controller get PPM signal from the packets. 5, PPM signal is presented at each pin. 6, Demodulator is frequency hopping, using the same machenism as the modulator. L N A Dual Antenna Diversity RF Demod Micro Controller Voltage Regulator PPM Connector Remote Controller RF Module
File: E:\work\model-rc\manual-docs\认认\host-board-part-list.txt 2010-2-1, 9 9:18:51 Comment Pattern Quantity Components ---------------------------------------------------------------------------- -- Capacitors: 0.01uF 0402 3 C9 Capacitor 0.1uF 0402 5 C1, C2, C8, C13, C15, C17 Capacitor 1000pF 0402 1 C3, C10 Capacitor 100pF 0402 1 C4 Capacitor 100uF/6.3V 3528 2 C14, C16 Capacitor 47pF 0402 1 C11 Capacitor 47uF/25V 6032 1 C12 Capacitor Resistors: 100K 0402 1 R1 Resistor 10K 0402 1 R2 Resistor 29k4 0402 1 R7 Resistor 2k4(1%) 0402 1 R9 Resistor 330 0402 2 R3, R4 Resistor 332k(no pop) 0402 1 R5 Resistor 68k(no pop) 0402 1 R6 Resistor 7k5(1%) 0402 1 R8 Resistor Diodes: SS14 1812 1 D2 Schottky Diode LED-CK SIP3 1 D1 Sockets: Header 10 SIP10N 3 P1, P3, P4 Header, 10-Pin Header 5 header5 1 P2 Header, 5-Pin SW-PB BUTTON6X6 1 S1 Switch Inductors GSD62LCB POWER_L 2 L1, L2 coil 1206_4 1 T1 Chips: MSP430F223X QFN40 1 U1 TPS54331 SO-8 1 U2 Crystals: XT XTAL3 1 Y2 Crystal Page: 1 File: E:\work\model-rc\manual-docs\认认\remote-board-part-list.txt 2010-2-1, , 9:21:00 Comment Pattern Quantity Components ---------------------------------------------------------------------------- -- Capacitors: 0.01uF 0402 2 C1, C17 Capacitor 0.1uF 0402 4 C2, C13, C14, C16 Capacitor 1000pF 0402 9 C3, C4, C5, C6, C7, C8, C9 Capacitor C10, C11 22uF/10Volts 3528 1 C19 Capacitor 47uF/10Volts 3528 1 C12 Capacitor 47uF/6.3Volts C1206 1 C15 Capacitor Resistors: 100K 0402 1 R1 Resistor 330 0402 2 R10, R11 Resistor 50 0402 8 R2, R3, R4, R5, R6, R7, R8 Resistor R9 Diodes: LED(Green) 0805AK 1 D1 LED(Red) 0805AK 1 D2 BAT54(C) SOT23 1 D3 Chips: MSP430F223X QFN40 1 U1 TPS73033 sot23-5 1 U2 Inductors: Trans Cupl EMC_1206 1 T1 Sockets: 3X8 PIN3X8 1 J2 Header 10 SIP10N 3 P1, P3, P4 Header, 10-Pin SW-PB BUTTON4X3 1 S1 Switch Crystals: XT XTAL3 1 Y2 Crystal Page: 1 File: E:\work\model-rc\manual-docs\认认\rf_module_part_list.txt 2010-2-1, 9: :16:07 Comment Pattern Quantity Components ---------------------------------------------------------------------------- -- capacitors: 0.1uF 0402 4 C9, C12, C14, C13 Capacitor 220pF 0402 3 C2, C16, C15 Capacitor 100pF 0402 2 C3, C11 Capacitor 1pF(+-0.25) 0402 2 C4, C6 Capacitor 15pF(5%) 0402 2 C17, C18 Capacitor 1000pF 0402 9 C23, C25, C27, C31, C32, C33 Capacitor C34, C35, C36 47uF/6V C0805 3 C1, C19, C21 39pF 0402 3 C26, C28, C29 Capacitor 680pF 0402 1 C22 Capacitor 820pF 0402 1 C24 Capacitor Crystals: 26M XTAL4 1 Y1 Crystal Resistors 0R 0402 1 R2 Resistor 56K(1%) 0402 1 R3 Resistor Inductors: 1uH 0603a 1 L0 Inductor 4n9H 0402 2 L1, L2 Inductor Sockets: SIPEX SMBB 2 E1, E2 Generic Antenna Header 10 SIP10N 2 P1, P2 Header, 10-Pin Chips: CC2500 QLP20 1 U1 RDAES02 ES02 2 U3, U4 RDAT212 QFN16 1 U2 Page: 1
MPE CALCULATION ForFrSky ElectronicCo.,Ltd. Model:V8FT FCC ID:XYFV8FT RF Exposure Requirements:47 CFR § 1.1307(b) RF Radiation Exposure Limits:47 CFR § 1.1310 RF Radiation Exposure Guidelines:FCC OST/OET Bulletin Number 65 / 47 CFR § 2.1091 EUT Frequency Band:2403.962 MHz-2477.484MHz Limits for General Population/Uncontrolled Exposure in the band of:1500– 100,000 MHz Power Density Limit:1.0mW/ cm2; Equation:S = PG/ 4πR2 or R =√PG / 4πSWhere, S = Power Density P = Power Input to Antenna G = Antenna Gain R = distance to the center of radiated antenna MiddleChannel (2403.962MHz): Power =12.67dBm, Antenna Gain =2dBi, Prediction distance 20 cm S = 0.0058306mW/cm2 Result The Above Result had shown that Device complied with 1.0 mW/cm2 Power density requirement for distance of 20 cm. Completed By :Alex Wang Date :December29, 2009
1 2 3 4 ABCD 4 3 2 1 D CBA Title Number Revision Size A4 Date: 16-Nov-2009 Sheet of File: E:\work\model-rc\protel99_sch_pcb\host_Futaba_ 2232.ddb Drawn By: VCC VCC C2=Value0.1uF C1=Value0.01uF C3=Value0.1uF VCC Y2XT 12M SPI_MOSI SPI_MISO SPI_CLK TEST NRESET R1=Value100K VCC NRESET SPI_NCS 12345678910 P3Header 10 GDO2SPI_MISOSPI_CLKSPI_MOSIGDO0SPI_NCS INTER-CONNECTION 12345678910 P1Header 10 VCC CTXCRXLNACPAC PACLNAC CTX CRX CH0CH1 CH2 CH3 CH4 CH5 CH6 CH7 GDO0GDO2 PPM_IN 12345 P2Header 5 PPM_IN AGND C130.1uF C15 0.01uF + C14 100uF 6.3Volts AGND AGND AGND VCC AGND VCC_5V VCC_5V RXDTXD RXD TXD R2=Value10K C4=Value1000pF S1SW-PB 12345678910 P4Header 10 TESTnRESET VCC A 1 A 3 2 D1LED-CK R3=Value330 R4=Value330 VCC BOOT 1 Vin 2 EN 3 SS 4 Vsence 5 Comp 6 GND 7 PH 8 U2TPS54331 + C12 47uF 25Volts R5=Value 332k(no population) R6=Value68k(no population) C9 0.01uF AGND C80.1uF C1147pF C101000pF R7=Value29k4 AGND D2FR107 AGND L1INDUCTOR2 R8=Value7k5(1%)R9=Value2k4(1%) AGND T1Trans Cupl DVss 1 Xout/P2.7 2 Xin/P2.6 3 DVss 4 /RST/NMI 5 P2.0/Aclk/A0 6 P2.1/Smclk/A1 7 P2.2/TA0/A2 8 P3.0/UCB0ste/A5 9 P3.1/UCB0simo 10 P3.2/UCB0somi 11 P3.3/UCB0clk 12 AVSS 13 AVCC 14 P4.0/TB0 15 P4.1/TB1 16 P4.2/TB2 17 P4.3/TB0/A12 18 P4.4/TB1/A13 19 P4.5/TB2/A14 20 P4.65/TBOUTH/A15 21 P4.7/TBCLK 22 P3.4/UCA0txd 23 P3.5/UCA0rxd 24 P3.6/A6 25 P3.7/A7 26 P2.3/TA1/A3/VREF- 27 P2.4/TA2/A4/Vref+ 28 P1.0/TACLK 29 P1.1/TA0 30 P1.2/TA1 31 P1.3/TA2 32 P1.4/SMCLK 33 P1.5/TA0 34 P1.6/TA1 35 P1.7/TA2 36 TEST 37 DVCC 38 DVCC 39 P2.5/Rosc 40 TP 41 42 42 43 43 44 44 0 0 U1 TXDRXD + C16 100uF 6.3Volts BUTTON BUTTON L2INDUCTOR2 C170.1uF Huijie Zhang CPU Segment CPU Segment 1 2 3 4 ABCD 4 3 2 1 D CBA Title Number Revision Size A4 Date: 16-Nov-2009 Sheet of File: E:\work\model-rc\protel99_sch_pcb\cc2500.ddb Drawn By: SCLK 1 SO (GDO1) 2 GDO2 3 DVDD 4 DCOUPL 5 GDO0 (ATEST) 6 CSn 7 XOSC_Q1 8 AVDD 9 XOSC_Q2 10 AVDD 11 RF_P 12 RF_N 13 AVDD 14 AVDD 15 GND 16 RBIAS 17 DGUARD 18 GND 19 SI 20 Therm_Pad 21 U1CC2500 Y1 26M SPI_CLKSPI_MISOGDO0SPI_NCSSPI_MOSI C1815pF(5%) C1715pF(5%) C120.1uF C9 0.1uF VCC_HF VCC_HF VCC_HF C16 =Value0.1uF C14220pF C13220pF C150.1uF C2 220pF R3 56K(1%) GDO2 C3 100pF C11 100pF C4 1pF(+-0.25) C61pF(+-0.25) L2 4n9H L14n9H SPI_MOSI SPI_CLKSPI_MISO SPI_NCSGDO0 GDO2 12345678910 P2Header 10 12345678910 P1Header 10 GDO2SPI_MISOSPI_CLKSPI_MOSIGDO0SPI_NCS VCC VCC_HF CTXCRX PAIN- 1 PAIN+ 2 PD 3 LNAO 4 swPA 5 swLNA 6 swRX 7 swTX 8 ANT 9 NC 10 NC 11 NC 12 LNAVcc 13 PAVcc 14 VCB 15 PAVcc 16 U2 RDAT212 RX 1 GND 2 TX 3 CTX 4 ANT 5 CRX 6 U3 ES02 RX 1 GND 2 TX 3 CTX 4 ANT 5 CRX 6 U4ES02 CC2500-RF CC2500-RF PAC_LLNAC LNACPAC PAC_L PACLNAC C32=Value1000pFC27=Value1000pF C36=Value1000pF C35=Value1000pF C33=Value1000pF PAC C25=Value1000pFC31=Value1000pF C29=Value39pF CRX CTX R2=Value0R C34=Value1000pF C22=Value680pF C23=Value820pF C24=Value1000pF C21=Value10uF/6V VCC_HF VCC_HF VCC C19=Value10uF/6V L0=Value1uH C1 =Value10uF/6V C26 =Value39pF C28 =Value 39pF E1Antenna E2 Antenna VCC_HF RF segments Huijie Zhang RF segments
FrSkyElectronicCo.,Ltd. FrskyV82.4GRadioControlSystem Model:V8FT 29December2009 ReportNo.:902534 (This report supersedesNONE) Modifications made to the product : None This Test Report is Issued Under the Authority of: AlexWang ComplianceEngineer JacksonChen Technical Manager This test report may be reproduced in full only. Test result presented in this test report is applicable to the representative sample only. Title: RF Test Report forFrskyV82.4GRadioControlSystem Model:V8FT To:FCC15.247:2009 Serial#:902534 Issue Date:29December2009 Page2of61 www.siemic.com.cn Laboratory Introduction ATION SIEMIC,headquartered in the heart of Silicon Valley, with superior facilities in US andAsia, is one of the leading independent testing and certification facilities providingcustomers withone-stop shop servicesfor Compliance Testing and Global Certifications. In addition totestingandcertification, SIEMIC provides initial design reviews andcompliance managementthrough out a project. Our extensive experience withChina,Asia Pacific,North America, European, and internationalcompliance requirements, assures the fastest, most cost effective way to attain regulatory compliance for theglobal markets. Accreditations for Conformity Assessment Country/RegionAccreditation BodyScope USAFCC, A2LAEMC , RF/Wireless, Telecom CanadaIC, A2LA, NISTEMC,RF/Wireless, Telecom TaiwanBSMI , NCC , NISTEMC, RF, Telecom , Safety Hong KongOFTA , NISTRF/Wireless,Telecom AustraliaNATA, NISTEMC, RF, Telecom , Safety KoreaKCC/RRA, NISTEMI, EMS, RF , Telecom, Safety JapanVCCI, JATE, TELEC,RFTEMI,RF/Wireless, Telecom MexicoNOM, COFETEL,CanietySafety,EMC , RF/Wireless, Telecom EuropeA2LA, NISTEMC, RF, Telecom , Safety Accreditations for Product Certifications CountryAccreditation BodyScope USAFCCTCB, NISTEMC , RF , Telecom CanadaICFCB, NISTEMC , RF , Telecom SingaporeiDA, NISTEMC , RF , Telecom Title: RF Test Report forFrskyV82.4GRadioControlSystem Model:V8FT To:FCC15.247:2009 Serial#:902534 Issue Date:29December2009 Page3of61 www.siemic.com.cn This page has been left blank intentionally. Title: RF Test Report forFrskyV82.4GRadioControlSystem Model:V8FT To:FCC15.247:2009 Serial#:902534 Issue Date:29December2009 Page4of61 www.siemic.com.cn CONTENTS 1EXECUTIVE SUMMARY &EUT INFORMATION.............................................................................................................5 2TECHNICAL DETAILS..................................................................................................................................................6 3MODIFICATION............................................................................................................................................................7 4TEST SUMMARY..........................................................................................................................................................8 5MEASUREMENTS, EXAMINATION AND DERIVED RESULTS........................................................................................9 ANNEX A. TEST INSTRUMENT & METHOD.........................................................................................................................40 ANNEX B.EUT AND TEST SETUP PHOTOGRAPHS...........................................................................................................44 ANNEX C.TEST SETUP AND SUPPORTING EQUIPMENT...................................................................................................49 ANNEXD.USER MANUAL / BLOCKDIAGRAM / SCHEMATICS/ PART LIST.......................................................................52 ANNEXE.SIEMIC ACCREDITATIONCERTIFICATES..........................................................................................................53 Title: RF Test Report forFrskyV82.4GRadioControlSystem Model:V8FT To:FCC15.247:2009 Serial#:902534 Issue Date:29December2009 Page5of61 www.siemic.com.cn 1Executive Summary & EUT information The purpose of this test programme was to demonstrate compliance of theFrSkyElectronicCo.,Ltd., FrskyV82.4GRadioControlSystem, andmodel:V8FTagainst the current Stipulated Standards. The FrskyV82.4GRadioControlSystemhave demonstrated compliance with theFCC15.247:2009. EUT Information EUT Description Remote control model Model No V8FT Input Power 6-13VDC Classification Per Stipulated Test Standard SpreadSpectrumSystem/Device Title: RF Test Report forFrskyV82.4GRadioControlSystem Model:V8FT To:FCC15.247:2009 Serial#:902534 Issue Date:29December2009 Page6of61 www.siemic.com.cn 2TECHNICAL DETAILS Purpose Compliance testing of Radio FHSS Module with stipulated standard Applicant / ClientFrSkyElectronicCo.,Ltd. Manufacturer FrSkyElectronicCo.,Ltd. No.100JinxiRoad,Wuxi,Jiangsu,China Laboratory performing the tests SIEMIC Nanjing(China)Laboratories NO.2-1,Longcang Dadao, Yuhua Economic Development Zone, Nanjing, China Tel:+86(25)86730128/86730129 Fax:+86(25)86730127 Email:[email protected] Test report reference number 902534 Date EUT received 04December2009 Standard appliedFCC15.247:2009 Dates of test (from–to) 05~29December2009 No of Units: 4 Equipment Category: FHSS RFOperating Frequency (ies) 2403.962 MHz-2477.484MHz Number of Channels : 49 Modulation : FSK FCC ID: XYFV8FT Title: RF Test Report forFrskyV82.4GRadioControlSystem Model:V8FT To:FCC15.247:2009 Serial#:902534 Issue Date:29December2009 Page7of61 www.siemic.com.cn 3MODIFICATION NONE Title: RF Test Report forFrskyV82.4GRadioControlSystem Model:V8FT To:FCC15.247:2009 Serial#:902534 Issue Date:29December2009 Page8of61 www.siemic.com.cn 4TEST SUMMARY The product was tested in accordance with the following specifications.AllTesting has been performed according to below product classification: SpreadSpectrumSystem/Device Test Results Summary Test StandardDescriptionPass / Fail CFR 47 Part 15.247: 2008 15.203Antenna RequirementPass 15.205Restricted Band of OperationPass 15.207(a)Conducted Emissions VoltageN/A 15.247(a)(1)Channel SeparationPass 15.247(a)(1)Occupied BandwidthPas…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 18.50 mW |
Twin digital radio system
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Wireless digital signal module
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Radio System
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Digital Telemetry Radio System
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
2.4G Radio System
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter