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IFHECL7PRO24G2.4GHz RADIO CONTROL SYSTEM

Hitec RCD Inc.
2.4GHz RADIO CONTROL SYSTEM - FCC ID IFHECL7PRO24G - Hitec RCD Inc.
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Jul 18, 2011
Application Purpose
Original Equipment
Date of Application
Jul 18, 2011
Equipment Note
2.4GHz RADIO CONTROL SYSTEM
Frequency Range
2405.60000000 - 2477.60000000
Company
Hitec RCD Inc.
Country
United States

Documents & Files

Select a file to view

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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Operational Description

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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

ECLIPSE 7 PRO 2.4G 2.4GHz Radio Control System USER MANUAL Hitec RCD KOREA INC. Introducing the ECLIPSE 7 PRO 2.4G Congratulations and welcome to the R/C world! You now own a basic, but unusually versatile and powerful, 5-Channel beginner’s RC transmitter. The ECLIPSE 7 PRO 2.4G is all the radio you need to fly the most of 5-Channel fixed-wings aircraft models. Standard features include servo-reversing for all channels, trim adjustments on all control channels, ATV (Adjustable Travel Volume) on Aileron (CH.1) and Elevator (CH.2). The ECLIPSE 7 PRO 2.4G features: Pre-mixed Flight Control Functions: The ECLIPSE 7 PRO 2.4G computer automatically mixes rudder and elevator outputs to control a V- tail or mixes aileron and elevator outputs to create elevons for tail-less flying wings, eliminating the need for on-board mixing systems. Trim Adjustment Function: This computerized radio allows you to easily tune and coordinate the control surfaces (such as keeping a rudder centered or two ailerons-each on their own servo-moving the same amount) without having to physically re-adjust linkages. Buddy-Box Function: For those learning to fly, the transmitter has a "buddy-box" capability so that you can use the optional trainer cord to connect your ECLIPSE 7 PRO 2.4G to another Hitec transmitter (Master)*. This function allows one transmitter to be used by an instructor as the primary flight control while the other is controlled by the student pilot. *Note: ECLIPSE 7 PRO 2.4G only can be used as a Pupil (Slave) transmitter. If you are new to Computerized RC Transmitters If ECLIPSE 7 PRO 2.4G is your first radio control transmitter, you're probably feeling a bit overwhelmd. However, if you take little time to read this manual and follow the programming steps as you watch your model's control surfaces respond, handling the ECLIPSE 7 PRO 2.4G will soon become quite comfortable. So stick with it. Learning the programming basics won't take any longer or require any more brain power than it takes to do the average crossword or Sudoku puzzle. You'll discover that the rewards for mastering this simple radio are well worth the effort. TIP: Throughout the manual you will see our "Tip Sheet" notes. These highlight specific function details we didn't want you to miss within the body of the manual. Check these out; they can make programming the Optic Sport easier. Hitec AFHSS 2.4GHz Technology Most of Hitec’s 2.4GHz product uses AFHSS (Advanced Frequency Hopping Spread Spectrum) technology which gives you highly stable one-way and telemetric signals for ensure safe flight of your model aircrafts. Equipment Mounting When you mount each servo, use the supplied rubber grommets and insert an eyelet up through the bottom. Be sure not to over tighten the screws. If any portion of the servo case directly contacts the fuselage or the servo rails, the rubber grommets will not be able to attenuate vibration, which can lead to mechanical wear and possible servo failure. Servo Throw Once you have installed the servos, operate each one over its full travel and check that the pushrod and output arms do not bind or collide with each other, even at extreme trim settings. Check to see that each control linkage does not require undue force to move (if you hear a servo buzzing when there is no transmitter control motion, most likely there is too much friction in the control or pushrod). Even though the servo will tolerate loads like this, they will drain the battery pack much more rapidly Receiver Installation and Setup Note: Vibration and Water The receiver contains precision electronic parts. Be sure to avoid vibration, shock, and temperature extremes. For protection, wrap the receiver in the provided "Flight Preserver" foam rubber, or use some other vibration-absorbing materials. If you are flying near bodies of water, it's also a good idea to protect the receiver by placing it in a plastic bag and securing the open end of the bag with a rubber band before wrapping it with foam. If you accidentally get moisture inside the receiver, you may experience intermittent operation or a crash. Switch Harness Installation When you are ready to install the receiver's switch harness, remove the switch cover and use it as a template to cut screw holes and a rectangular hole slightly larger than the full stroke of the switch. Choose a switch location on the opposite side of the fuselage from the engine exhaust, and choose a location where it can't be inadvertently turned on or off during handling or storage. Install the switch so that it moves without restriction and "snaps" from ON to OFF and vice versa. Charging the Eclipse 7 Pro Ni-MH Batteries Connect the transmitter charging cord into the charging socket (on the rear of the case, left side) and airborne Ni-MH batteries to the receiver connector on the charger. Connect the receiver battery to the charging cord. Plug the charger into a wall socket. The charger's LEDs should light, indicating charging current is flowing. The batteries should be left on charge for about 15 hours. Try to charge the batteries with the charger supplied with your system exclusively. The use of a fast-charger may damage the batteries by overheating and dramatically reduce their lifetime. NOTE: If you need to remove or replace the transmitter battery, do not pull on its wires to remove it. Instead, gently pull on the connector's plastic housing where it plugs in to the transmitter. The battery must be removed to charge it properly with a "peak" charger. Operating With A Trainer Cord An optional training cord is available from your dealer. The cord may be used to help a beginning pilot learn to f ly easily by allowing a second transmitter, operated by an experienced instructor, to be connected to this system. The instructor may override the beginning pilot at any time to Bring the model back under safe control. For training To use the trainer cord: Set up both the student's and instructor's transmitters to have ident…

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Cover Letter(s)

FCC, Request for non-disclosureDate:09, 2011 Page 1 of 1 Hitec RCD Inc. 12115 Paine Street, Poway California, United States Subject:Request for confidentiality FCC ID: Referencenumber: Dear FCC TCB, Persuant to 47 CFR Section 0.459(a) & (b), <name applicant> hereby requests non-disclosure and confidential treatment of the following materials submitted in support of FCC certification application for FCC ID: ( ) Bill(s) of Material☑ Block Diagrams☑ Operational Description☑ Schematic Diagrams☑ Above materials contain secrets, proprietary and technical information,whichwould customarily be quarded from competitors under 47 CFR, section (d)(2 ). Disclosure or publication or any portion of this company confidential material to otherparties could cause substantial competitive harm and provide unjustified benefits for competitors. <Name applicant> understands that pursuant to 47 CFR section (d)(1) (ii) disclosure of the applicant and all accompanying documentation will not be made before the date of the grant. <Date> 09, 2011 <City> Poway, California <Nameandsignatureofapplicant> Tony Ohm / Service Dept. Manager

Cover Letter(s)

Hitec RCD Inc. 12115 Paine Street, Poway, California, United States , Subject : DoC declaration To Whom it may concern, We, as the grantee of this project FCC ID: IFH , would like to declare that the composite portion categorized as computer peripheral hasbeen authorized under the Declaration of Conformity procedures. Test Laboratory : Korea Standard Quality Laboratories #102, Jangduk Dong, Hwasung City, Kyunggi Do, South Korea Regards, Signature: Name/Title:Tony Ohm / Service Dept. Manager Company Name:Hitec RCD Inc. Address:12115 Paine Street, Poway, California, United States TEL: 858-748-6948 FAX: 858-748-1767 Email: [email protected]

External Photos

Photo 1: Exterior Photographs Top Bottom Side 1 Side 2 Side 3 Side 4 Label

ID Label/Location Info

38 60 Scale 100%

Internal Photos

Interior view of EUT Internal Photos View of Main PCB(Top) View of Main PCB(Bottom) View of Module (Top) View of Sub 1 PCB(Top) s View of Sub 1 PCB(Bottom) View of Sub 2 PCB(Top) View of Sub 2 PCB(Bottom) View of Sub 3 PCB(Top) View of Sub 3 PCB(Bottom) View of Sub 4 PCB(Top) View of Sub 4 PCB(Bottom) View of Sub 5 PCB(Top) View of Sub 5 PCB(Bottom)

Operational Description

CHIEF R&D DESIGN Daesik Hwang Jihyun Kim Hyunjung Kim Date June. 23. 09. SAE HAN ANTENNA CO.,LTD Specification for Approval Part name : WF-24Rx Antenna Part No : HTR24-002 TECHNICAL DATA SHEET Page 2 of 13 DIRECT FEED 1/2 WAVE DIPOLE FOR QUALIFICATION SaeHan Part Name WF-24Rx Series : Antenna NO Description Material 1 Tube PVC / Black 2 Coaxial Cable PVC, Teflon, Cu, Plated Wire 3 Ground Plane BsBM 4 Connector S hell, Contact terminal : Phosphor Bronze, Insulator : PBT Series 5 Bushing PVC / Black SPECIFICATION DRAWING TECHNICAL DATA SHEET Page 3 of 13 DIRECT FEED 1/2 WAVE DIPOLE FOR QUALIFICATION SaeHan Part Name WF-24Rx Series : Antenna Table of Contents ELECTRICAL CHARACTERISTICS MECHANICAL CHARACTERISTICS 1 General 1.1 Product description 1.2 Product Name 1.3 Units and Definitions 1.4 Conditions 2 ELECTRICAL PROPERTIES 2.1 Frequency Band 2.2 Impedance 2.3 VSWR 2.4 Gain 3 MECHANICAL PROPERTIES 3.1 Drop 3.2 Flexure 4 ENVIRONMENTAL RESISTANCE PROPERTIES 4.1 Temperature 4.2 Humidity 4.3 Vibration TECHNICAL DATA SHEET Page 4 of 13 DIRECT FEED 1/2 WAVE DIPOLE FOR QUALIFICATION SaeHan Part Name WF-24Rx Series : Antenna ELECTRICAL CHARACTERISTICS . Center Frequency ................................................................ 2450 MHz . Frequency Range ................................................................. 2400~2500 MHz . Nominal Impedance ............................................................. 50 Ω . VSWR.................................................................................... Less Than 2.0:1 . Type ..................................................................................... 1/2 wave dipole . Gain Peak Gain ........................................................................... 0 dBi . Radiation Pattern ................................................................... Omni Directional -3dB Beam width : . Horizontal Plane .................................................................... 360̊̊̊̊̊̋̊̊̊ ̊ . Vertical Plane ........................................................................ 85±10 ̊ . Polarization :........................................................................... Vertical . Maximum input power ........................................................... 3 W TECHNICAL DATA SHEET Page 5 of 13 DIRECT FEED 1/2 WAVE DIPOLE FOR QUALIFICATION SaeHan Part Name WF-24Rx Series : Antenna MECHANICAL CHARACTERISTICS Sleeve Material .......................................................... Shrinkable Tube / black Weight : ............................................................................... 4 g Connector type : ................................................................ U.FL Male (Micro Connector) Temperature : .................................................................... -40 / +85°C Drop Test ............................................................................. 1m / 10 Times Humidity ............................................................................... +30°C&95% RH 24Hours Vibration .............................................................................. Frequency 3-500-3Hz(1cycle) Sweep rate 5 db / octave Amplitude 1.12G-rms Acceleration 1.5g Overall Length of Antenna .................................................. 233 mm +/- 2mm TECHNICAL DATA SHEET Page 6 of 13 DIRECT FEED 1/2 WAVE DIPOLE FOR QUALIFICATION SaeHan Part Name WF-24Rx Series : Antenna 1. GENERAL 1.1 Product description This antenna is to account for the measurement setup and results of 2.4GHz Type Dipole Antenna. 1.2 Product Number Saehan Antenna Product Name. : WF-24Rx Antenna 1.3 Units and Definitions V.S.W.R ................................ Voltage Standing Wave Ratio dBi ........................................ Antenna gain in dB relative to a isotropic antenna g ........................................... Acceleration of gravity(about 9.8 m/sec 2) RH.......................................... Relative Humidity Dimensions .......................... mm 1.4 Test Conditions Unless otherwise stated all temperature tolerance are ± 3°C and all RH tolerance are ± 5 percentage units Unless otherwise stated all values are valid at +20 °C and 50% RH 2. ELECTRICAL PROPERTIES 2.1 Frequency Band ..................................................... 2400 ~ 2500 MHz 2.2 Impedance ............................................................... Nominal Value : 50Ω 2.3 V S W R 2.3.1 Maximum Values ......................................... Less than 2.0 : 1 2.3.2 Measuring Method A 50ohms coaxial cable is connected to the antenna connector. In the other end the coaxial cable is connected to a network analyzer. The analyzer calibrated so that the reference plane is at the end the coaxial cable connected to the antenna ⁲ TECHNICAL DATA SHEET Page 7 of 13 DIRECT FEED 1/2 WAVE DIPOLE FOR QUALIFICATION SaeHan Part Name WF-24Rx Series : Antenna FrequencyV.S.W.RRemarks 2.40GHz1.34 2.45GHz1.19 2.50GHz1.17 Figure 1. Network Analyzer Measuring V S W R Figure 2. V. S. W. R Testing TECHNICAL DATA SHEET Page 8 of 13 DIRECT FEED 1/2 WAVE DIPOLE FOR QUALIFICATION SaeHan Part Name WF-24Rx Series : Antenna Chamber Size16(L)m X 11(W)m X 9.5(H)m Frequency Range 400MHz – 60GHz (Far Field) Quiet Zon 1.2m X 1.2 m @ 1GHz TypeRectangular 2.4 Gain 2.4.1 Measuring Method The connection is done according to figure. Radiation patters are measured at the lowest. middle and highest frequency for frequency band. The measurement performed so as to minimize Measurement frequency: 2400,2450,2500MHz the influence of the cables. Calibration for absolute measurements is done with a reference antenna. which is in turn calibrated by a certified calibration company Figure 3 Anechoic Chamber Measuring TECHNICAL DATA SHEET Page 9 of 13 DIRECT FEED 1/2 WAVE DIPOLE FOR QUALIFICATION SaeHan Part Name WF-24Rx Series : Antenna FrequencyGain(Max)Remarks 2.40GHz0.37dBi 2.45GHz0.71dBi 2.50GHz0.68dBi ⁲ Gain (H-plane) Figure 4 Anechoic Chamber Measuring (H-plane) TECHNICAL DATA SHEET …

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Test Report

Report Number :KSQ-FCC110715FCC ID : IFHECL7PRO24G, IC : 3420A-ECL7PRO24G Page 2 /39 TABLE OF CONTENTS 1. GENERAL.................................................................................................................................................5 2. TEST SITE.................................................................................................................................................5 2.1 Location................................................................................................................................................5 2.2 Test Date...............................................................................................................................................5 2.3 Test Environment..................................................................................................................................5 3. DESCRIPTION OF THE EQUIPMENT UNDER TEST..........................................................................6 3.1 Rating and Physical Characteristics.......................................................................................................6 3.2 Equipment Modifications......................................................................................................................6 3.3 Submitted Documents...........................................................................................................................6 4. MEASUREMENT CONDITIONS............................................................................................................7 4.1 Description of test configuration...........................................................................................................7 4.2 List of Peripherals.................................................................................................................................7 4.3 Type of Used Cables..............................................................................................................................7 5. TEST AND MEASUREMENT.................................................................................................................8 5.1 ANTENNA REQUIREMENT..............................................................................................................8 5.1.1 Regulation.......................................................................................................................................8 5.1.2 Result..............................................................................................................................................8 5.2. 20dB BANDWIDTH...........................................................................................................................9 5.2.1 Regulation.......................................................................................................................................9 5.2.2 Test Condition................................................................................................................................9 5.2.3 Test result........................................................................................................................................9 Table 1 : Measured values of the 20dB Bandwidth..........................................................................................9 Figure 1 Plot of the 20dB Channel Bandwidth.............................................................................................10 5.3. MAXIMUMPEAKPOWER.............................................................................................................12 5.3.1 Regulation.....................................................................................................................................12 5.3.2 Test Condition...............................................................................................................................12 5.3.3 Test result......................................................................................................................................12 Table 2 : Measured values of the Maximum Peak Output Power(Conducted)......................................................12 Figure 2 : Plot of the Maximum Peak Output Power(Conducted).....................................................................13 5.4. POWERSPECTRALDENSITY.......................................................................................................15 5.4.1 Regulation.....................................................................................................................................15 5.4.2 Test Condition...............................................................................................................................15 Report Number :KSQ-FCC110715FCC ID : IFHECL7PRO24G, IC : 3420A-ECL7PRO24G Page 3 /39 5.4.3 Test result......................................................................................................................................15 Table 3 : Measured values of the Power Spectral Density...............................................................................15 Figure 3 : Plot of the Power Spectral Density...............................................................................................16 5.5. CARRIER FREQUENCY SEPARATION........................................................................................18 5.5.1 Regulation.....................................................................................................................................18 5.5.2 Test Condition...............................................................................................................................18 5.5.3. Test result.....................................................................................................................................18 Table 4 : Measured values of the Carrier Frequency Separation.....................................................................…

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Contact Information

Applicant

Tony Ohm(Service Dept. Manager)
[email protected]858-748-8440Fax: 858-748-1767

Test Firm

Korea Standard Quality LaboratoriesJae-Ju Lee
[email protected]82-31-356-7333Fax: 82-31-356-7303

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.48 GHz72.00 mW
Confidentiality
Long Term
Grant Notes
Power listed is conducted. The antenna(s) used for this transmitter must not transmit simultaneously with any other antenna or transmitter, except in accordance with FCC multi-transmitter product procedures. End-users must be provided with transmitter operating conditions for satisfying RF exposure compliance.

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