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AZPR7003SB-24GRadio Control

Futaba Corporation
Radio Control - FCC ID AZPR7003SB-24G - Futaba Corporation
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Nov 07, 2012
Application Purpose
Original Equipment
Date of Application
Nov 07, 2012
Equipment Note
Radio Control
Frequency Range
2405.37600000 - 2472.96000000
Company
Futaba Corporation
Country
Japan

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

Applicable systems: Futaba FASSTest-2.4GHz system- transmitter If R7003SB does not use S.BUS/S.BUS2 system, it can perform only operation of 3 channels. However, if S.BUS/ S.BUS2 system is used, use of the maximum channel of a transmitter can be performed. You have to use S.BUS/ S.BUS2 servo, in order to use S.BUS/S.BUS2 system. R7003SB FASSTest-2.4GHz Bidirectional Communication System S.BUS2 / S.BUS Port and Conventional System Receiver Compliance Information Statement (for U.S.A.) This device, trade name Futaba Corporation of America, model number R7003SB, complies with part15 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. (3) This module meets the requirements for a mobile device that may be used at separation distances of more than 20cm from human body. To meet the RF exposure requirements of the FCC this device shall not be co-located with another transmitting device. The responsible party of this device compliance is: Futaba Service Center 3002 N Apollo Drive Suite 1, Champaign, IL 61822 U.S.A. TEL (217)398-8970 or E-mail: [email protected] (Support) R7003SB Specifications FASSTest-2.4GHz system/S.BUS2 and S.BUS port and conventional system receiver • Dual antenna diversity • Size: 0.89 x 1.47 x 0.37 in. (22.5 x 37.4 x 9.3 mm) • Weight: 0.25 oz. (7.2g) • Power requirement: 3.7V to 7.4V(Voltage range: 3.5 to 8.4V) • Battery F/S Voltage: It sets up with a transmitter • Extra Voltage port (port2)"EXT-VOL cable and CA-RVIN-700" of an option is used: 0 ~ 70V DC * Be sure that when using ESCs regulated output the capacity of the ESC must meet your usage condition. Thank you for purchasing a Futaba R7003SB FASSTest-2.4GHz compatible receiver. The R7003SB receiver features bi-directional communication with a FASSTest Futaba transmitter using the S.BUS2 port. Using the S.BUS2 port an impressive array of telemetry sensors may be utilized. R7003SB has a merit which acquires the information from the model on flight by connecting an optional telemetry sensors. It also includes both standard PWM output ports and S.BUS output ports. 4 ports of R7003SB can choose an output channel from the 11 modes. LED Indication GreenRedStatus OffSolidNo signal reception SolidOffReceiving signals Alternate blinkUnrecoverable error (EEPROM, etc.) FASSTest FASSTest is a bidirectional communication system between the R7003SB receiver and FASSTest capable transmitters. Multiple optional telemetry sensors may be connected to the S.BUS2 on the receiver and that data is in turn displayed on the transmitter. *Please see your transmitters operation manual to configure transmitter to operate with telemetry sensors. (Antenna installation) 90 ̊ Please refer the table below for LED status vs receiver's condition. 1M23N17470 Usage precaution • Analog servos cannot be used with the R7003SB in the FASSTest 12CH mode. • The R7003SB receiver can only be used with FASSTest capable transmitters. WARNING Changes or modification not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. The R7003SB receiver should be protected from vibration by foam rubber, Velcro or similar mounting methods. Protect from moisture. Keep away from conductive materials to avoid short circuits. Don't connect the servo or gyro which do not correspond to S.BUS2 port S.BUS2. • When the servo and gyro which do not correspond to S.BUS2 are connected to S.BUS2 port, there is a danger of falling by malfunction. Turn on the power in transmitter → receiver order. In addition, always check the operation of all the servos before flight. Do not insert or remove the servo connector while the receiver power is ON. •Since the S.BUS servo switches the operation mode automatically according to the type of signal (S.BUS signal/PWM signal) from the receiver, if the connector is inserted or removed while the power is ON, an S.BUS connected servo will be erroneously recognized and may stop. Antenna installation precaution Do not cut or bundle the receiver antenna wire. Do not bend the coaxial cable. It causes damage. The antennas must be mounted in such a way to assure they are strain relieved. Keep the antenna as far away from the motor, ESC and other noise sources as you possibly can. Be sure that the two antennas are placed at 90 degrees to each other. • The R7003SB has two antennas. In order to maximize signal reception and promote safe modeling Futaba has adopted a diversity antenna system. This allows the receiver to obtain RF signals on both antennas and fly problem-free. Antenna installation for carbon fuselage WARNING You must leave 30mm at the tip of the antenna fully exposed. The exposed antenna should be secured so that it cannot move around or back inside of your aircraft. (Typical installation) S.BUS Servo S.BUS2 Servo S.BUS2 Gyro HUB HUB HUB HUB Link/Mode switch Antenna LED Servo forconventional system Battery SW (It is not used for a link.) R7003SB CH output mode A (Default) Example Temperature Sensor RPM Sensor Altitude Sensor S.BUS port 1 S.BUS2 port Battery to 3/B A battery is connectable also with which port. port 2 Mode Port Port1Port23/BS.BUS2 A(Default) S.BUSCH2CH3S.BUS2 WARNING Do not perform the linking procedure while the motor's main wire connected or the engine is operating as it may result in serious injury. When the linking is complete, please cycle the receiver power and ensure the receiver is properly linked to the transmitter. Please power up your system in this order. Transmitter first, followed by the receiver. If the R7003SB receiver was previously linked to another transmitter, make sure that transmitter is not operating while linking the receiver to the new transmitter. WARNING Don't touch wiring. * There is a danger of receiving an electric shock. Don't connect to Extra Voltage …

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Cover Letter(s)

Authority to Act as Agent Date: May 07, 2012 American Certification Body, Inc. 6731 Whittier Avenue Suite C110 McLean, VA 22101 To Whom It May Concern: ____ AUDIX Technology Corporation _____ is authorized to act on our behalf, until otherwise notified, for applications to American Certification Body, Inc. (ACB). We certify that we are not subject to denial of federal benefits, that includes FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 862. Further, no party, as defined in 47 CFR 1.2002 (b), to the application is subject to denial of federal benefits, that includes FCC benefits. Thank you, Agency Agreement Expiration Date: _____May 07, 2013_____ By: __________________________ _____ Kazunori Fujita ___________ (Signature) (Print name) Title: __________________________ On behalf of: ____ Futaba Corporation ________________ (Company Name) Telephone: __+81-475-32-6019__ _______________

External Photos

FUTABA Corporation Radio Control FCC ID. : AZPR7003SB-24G EUT External Photos Figure 1 General Appearance (Front & Side View) Figure 2 General Appearance (Back & Side View)

ID Label/Location Info

FUTABA Corporation Radio Control FCC ID. : AZPR7003SB-24G FCC ID Label Location z Label Placement Location z FCC ID Format FCC ID Label Placement Location

Internal Photos

FUTABA Corporation Radio Control FCC ID. : AZPR7003SB-24G EUT Internal Photos Figure 3 Internal View (Main Board, Front View) Figure 4 Internal View (Main Board, Back View)

RF Exposure Info

Declaration of Compliance FCC ID: AZPR7003SB-24G Product Name: Radio Control Model No: R7003SB Audix Technology (Company Name). declares that the product described above has been evaluated and found to comply with the RF exposure limits for humans, as specified based on ANSI/FCC recommendation. Based on safety distance 20cm, the antenna gain is -5.1dBi, and the power output is 19.95mW, the power density is 0.0012mW/cm^2. RF Exposure Calculations: S = (P * G) / (4* π * r^2) or r = (P * G) / (4 * π * S) Where S = Power Density in mW/cm^2 P = 13dBm = 19.95mW G = -5.1dBi = 0.31 Numerical r = 20cm S = 19.95*0.31 / 4*π* 20^2 =6.18/5026.55= 0.0012mW/cm^2 Limit MPE < 1mW/cm^2 Result: Passed

Test Report

FCC ID. AZPR7003SB-24G Page 1 of 41 AUDIX Technology Corporation Report No. EM-F1010853 APPLICATION FOR CERTIFICATION On Behalf of FUTABA Corporation Radio Control Model No.R7003SB FCC IDAZPR7003SB-24G Brand: Futaba Prepared for : FUTABA Corporation 1080 Yabutsuka Chosei-son Chosei-gun Chiba, 299-4395 Japan. Prepared by : AUDIX Technology Corporation EMC Department No. 53-11, Dingfu, Linkou Dist., New Taipei City 244, Taiwan, R.O.C. Tel : (02) 2609-9301, 2609-2133 Fax: (02) 2609-9303 File Number C1M1210151 Report Number EM-F1010853 Date of Test Oct. 19 ~ 26, 2012 Date of Report Nov. 01, 2012 FCC ID. AZPR7003SB-24G Page 2 of 41 AUDIX Technology Corporation Report No. EM-F1010853 TABLE OF CONTENTS Description Page TEST REPORT CERTIFICATION .......................................................................................................4 1. GENERAL INFORMATION .......................................................................................................5 1.1. Description of Device (EUT).................................................................................................................. 5 1.2. Tested Supporting System Details .......................................................................................................... 5 1.3. Description of Test Facility .................................................................................................................... 6 1.4. Measurement Uncertainty....................................................................................................................... 6 2. CONDUCTED EMISSION MEASUREMET.............................................................................7 3. RADIATED EMISSION MEASUREMENT ..............................................................................8 3.1. Test Equipment ....................................................................................................................................... 8 3.2. Test Setup ............................................................................................................................................... 8 3.3. Radiated Emission Limits (§15.209) .................................................................................................... 10 3.4. Operating Condition of EUT ................................................................................................................ 10 3.5. Test Procedure ...................................................................................................................................... 10 3.6. Radiated Emission Measurement Results............................................................................................. 11 4. DUTY CYCLE CORRECTION FACTOR...............................................................................26 4.1. Test Equipment ..................................................................................................................................... 26 4.2. Block Diagram of Test Setup................................................................................................................ 26 4.3. Test Results........................................................................................................................................... 26 5. 6dB BANDWIDTH MEASUREMENT .....................................................................................28 5.1. Test Equipment ..................................................................................................................................... 28 5.2. Block Diagram of Test Setup................................................................................................................ 28 5.3. Specification Limits (§15.247(a)(2)) .................................................................................................... 28 5.4. Operating Condition of EUT ................................................................................................................ 28 5.5. Test Procedure ...................................................................................................................................... 28 5.6. Test Results........................................................................................................................................... 28 6. MAXIMUM PEAK OUTPUT POWER MEASUREMENT ...................................................31 6.1. Test Equipment ..................................................................................................................................... 31 6.2. Block Diagram of Test Setup................................................................................................................ 31 6.3. Specification Limits (§15.247(b)-(3))................................................................................................... 31 6.4. Operating Condition of EUT ................................................................................................................ 31 6.5. Test Procedure ...................................................................................................................................... 31 6.6. Test Results........................................................................................................................................... 31 7. EMISSION LIMITATIONS MEASUREMENT ......................................................................32 8. BAND EDGES MEASUREMENT.............................................................................................33 8.1. Test Equipment ..................................................................................................................................... 33 8.2. Block Diagram of Test Setup................................................................................................................ 33 8.3. Specification Limits (§15.247(c))...........................................................................................…

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Test Setup Photos

FCC ID. AZPR7003SB-24G Page 40 of 41 AUDIX Technology Corporation Report No. EM-F1010853 11. PHOTOGRAPHS 11.1. Photos of Radiated Measurement at Semi-Anechoic Chamber 11.1.1.Frequency Range 30MHz~1GHz 11.1.2.Frequency Range Above 1GHz FCC ID. AZPR7003SB-24G Page 41 of 41 AUDIX Technology Corporation Report No. EM-F1010853 11.2. Photo of RF Conducted Measurement

Contact Information

Applicant

Toshikazu Hama(Manager)
[email protected]+81-475-30-1061Fax: +81-475-32-6203

Technical Contact

Audix TechnologyBen Cheng
[email protected]88626099301

No. 53-11 Tin-fu, Tsun Lin Kou Hsiang · Taipei County · Taiwan

Test Firm

Audix Technology CorporationLeon Liu
[email protected]886-2-26092133Fax: 886-2-26099303

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.47 GHz19.95 mW
Confidentiality
Long Term
Grant Notes
Power Output listed is conducted. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and not be co-located with any other transmitters except in accordance with FCC multi-transmitter product procedures. End-users and installers must be provided with transmitter operating conditions for satisfying RF exposure compliance.

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