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IYFTTX6002.4 GHz Radio System Transmitter

Hobbico Inc
2.4 GHz Radio System Transmitter - FCC ID IYFTTX600 - Hobbico Inc
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Jan 22, 2011
Application Purpose
Original Equipment
Date of Application
Jan 22, 2011
Equipment Note
2.4 GHz Radio System Transmitter
Frequency Range
2403.00000000 - 2480.00000000
Company
Hobbico 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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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

The Tactic TTX600 airplane radio system uses an advanced 2.4GHz spread spectrum technology to prevent unwanted outside interference from interrupting control of the model, ensuring error-free fl ying and eliminating the need to pull frequency pins before every fl ight. Tactic 2.4GHz transmitters and receivers are not compatible with other brands of 2.4GHz equipment. For safe operation and best results, it’s strongly recommended to read this manual in its entirety before use! Also read and understand the instructions included with the model. Damage resulting from misuse or modifi cation will void your warranty. FEATURES Trainer Switch CH5 Switch CH6 Dial LED Power Indicator Power Switch Reversing Switches Neck Strap Eyelet D/R Switch Trim Lever Charge Jack ● Ball-bearing gimbals ● Built-in failsafe & wireless trainer function ● Dual rates for aileron, elevator and rudder ● Analog & digital trims with servo reversing ● Transmitter binds to multiple Tactic 2.4GHz receivers ● Power status LED & built-in charge jack INSTRUCTION MANUAL 2.4GHz 6-Channel Spread Spectrum Radio ™ TACJ2600 v1.2 2 TTX600 TRANSMITTER ( Tx ) The TTX600 airplane transmitter is available in either a “Mode 2” confi guration with throttle on the left and elevator on the right, or “Mode 1” confi guration with throttle on the right and elevator on the left. Mode 2 radios are most commonly used in the U.S., whereas Mode 1 radios are popular in other countries. Be sure the radio purchased is of the correct mode. Four “AA” batteries are required to power the Tx (not included). Non-rechargeable 1.5V alkaline, or 1.2V rechargeable nickel-cadmium (NiCd) or nickel-metal hydride (NiMH) cells, can be used. Do not mix cell types, or old and new cells, etc. See the SERVOS AND ACCESSORIES section on page 17 for optional batteries available at local hobby retailers. To install the batteries, slide the battery door down. Insert the cells as shown in the diagram, making sure to note proper polarity for each cell. Close the battery door. POWER SWITCH, LED, and LOW BATTERY ALARM The red power LED should light when the power switch is moved upwards to the “ON” position. The 3 Tx should have adequate power for fl ight when the LED is on constantly. Anytime the LED begins to fl ash, accompanied by the sounding of an audible tone, the Tx battery voltage has dropped too low and operation of the model should NOT be attempted! WARNING! Never operate an R/C model with weak Tx batteries! Reduced operational range and/or possible loss of control of the aircraft could result. Replace weak alkaline batteries, or re-charge NiCd or NiMH batteries, before attempting a fl ight! If during a fl ight the Tx LED starts to fl ash, accompanied by the sounding of audible tones, it’s a warning that the Tx batteries have become weak and the aircraft should be landed as soon as possible! AILERON (CH1) Controls the moveable surfaces at the end of both main wings to rotate the airplane about the “roll” axis (an imaginary line which extends from the airplane’s nose to the tail). Since every airplane is different, the aileron reversing switch must be set so that moving the aileron stick to the right will cause the airplane’s right aileron to defl ect up, thus causing the right wing to drop and the airplane to bank right. Moving the aileron stick to the left will cause the airplane’s left wing to drop and the airplane to bank left. This is one important method for turning the aircraft. ELEVATOR (CH2) Controls the moveable horizontal surfaces on the airplane’s tail to rotate the airplane about the “pitch” axis (an imaginary line extending through the center of both main wings, from one wing tip to the other wing tip). Position the elevator reversing switch so that pulling the elevator stick back (towards you) will cause the elevators to defl ect up, thus causing the nose of the airplane to rise. Pushing the elevator stick forwards (away from you) will cause the nose of the airplane to drop. When using the ailerons to bank the airplane’s wings, pulling the elevator stick back will help the aircraft maintain altitude and turn the aircraft more quickly. THROTTLE (CH3) Controls the speed (R.P.M.) at which the engine or electric motor operates. With the throttle reversing switch in the NOR position, pulling the throttle stick back will cause the engine’s speed to decrease. Pushing the throttle stick forward will cause the engine’s speed to increase. RUDDER (CH4) Controls the sideways movement of the airplane’s tail and will rotate the airplane about the “yaw axis” (an imaginary line from the top of the airplane’s fuselage to the bottom of the fuselage, located near the center-point of the fuselage). Position the rudder reversing switch so that moving the rudder stick to the right causes the rudder to defl ect to the right, thus causing the nose of the airplane to point to the right. Moving the rudder stick to the left will cause the nose of the airplane to turn left. When using the rudder in conjunction with the ailerons, the airplane’s nose can point into a turn (instead of pointing up and “skidding” through the turn), allowing the airplane to perform tighter, more coordinated turns. 4 RETRACTABLE LANDING GEAR (CH5) Channel 5 offers non-proportional control of a servo, and is typically used to control retractable landing gear. Servo movement is limited to rotating the servo’s output arm to the end of clockwise movement, and the end of counter-clockwise movement. The switch for channel 5 is located on the top-left of the transmitter. To REVERSE the direction of rotation for the servo connected to channel 5, fi rst turn off the Tx power switch. Then move the ch4 (rudder) trim lever to the LEFT and hold in that position. Next, turn the Tx power switch back to the ON position which should be followed by three audible tones and fl ashes of the Tx power LED. The rotational direction of the ch5 servo should now be reversed. Repeat this process to again reverse the rotational directi…

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Cover Letter(s)

Hobbico, Inc. Add :2904 Research Road Champaign,Illinois,USA Tel:001- 217-398-3630 Fax:001-217-398-0008 - 1 - Product Similarity Declaration We, Hobbico Inc, authorize Bay Area Compliance Laboratories Corp. do test for our 2.4G radio control system: TTX600 mode1 and mode2; and for our business requirement, we declare that for this product we have made some hardware change. the differences between TTX600 mode1 and TTX600 mode2 details as below: 1 Appearance TTX600 mode1 a. Throttle stick and its trim lever is on the right b. Trainer switch on the right (over the throttle stick) c. Elevator stick and its trim lever on the left d. CH6 knob on the right face, above the throttle stick e. D/R switch on the left (over the elevator stick) TTX600 mode2 a. Throttle stick and its trim lever is on the left b. Trainer switch on the left (over the throttle stick) c. Elevator stick and its trim lever on the right d. CH6 knob on the left face, above the throttle stick e. D/R switch on the right (over the elevator stick) 2 PCB The element position corresponding have a little change. Signature: Contact Person: ZHENMIN ZHOU Title: Product Development Company: Hobbico, Inc.

External Photos

EXHIBIT B - EUT EXTERNAL PHOTOGRAPHS TTX600 mode 1: EUT – Top View EUT – Rear View EUT – Up View EUT – Bottom View TTX600 mode 2: EUT – Front View EUT – Rear View EUT – Side View 1 EUT – Side View 2

ID Label/Location Info

EXHIBIT A - FCC ID LABELING AND LOCATION FCC ID Label & Warning Statement FCC ID Location The label shown shall be permanently affixed at a conspicuous location on the device and be readily visible to the user at the time purchase (Labeling requirements per 2.925) Label hereWaring here TTX600 mode 2 Label here Waring here TTX600 mode 1

Internal Photos

EXHIBIT C - EUT INTERNAL PHOTOGRAPHS TTX600 mode 1: EUT – Battery box View EUT – Cover Off View EUT – Main Board shielded Top View EUT – Main Board shielded off Top View EUT –Main Board Bottom View TTX600 mode 2: EUT – Battery box View EUT – Cover Off View EUT – Main Board shielded Top View EUT – Main Board shielded off Top View EUT –Main Board Bottom View

RF Exposure Info

Hobbico, Inc. FCC ID: IYFTTX600 Report No.: RSZ10110515 Page 9 of 34 FCC Part15.247 Test Report FCC §15.247 (i) & §1.1307 (b) (1) & §2.1091- MAXIMUM PERMISSIBLE EXPOSURE (MPE) Standard Applicable According to subpart 15.247 (i) and subpart 1.1307 (b)(1), 2.1091 systems operating under the provisions of this section shall be operated in a manner that ensures the public is not exposed to RF energy level in excess of the communication guidelines. Limits for General Population/Uncontrolled Exposure Limits for General Population/Uncontrolled Exposure Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mw/cm 2 ) Averaging Time (Minutes) 0.3-1.34 614 1.63 *(100) 30 1.34-30 824/f 2.19/f *(180/f 2 ) 30 30-300 27.5 0.073 0.2 30 300-1500 / / f/1500 30 1500-100,000 / / 1.0 30 f = frequency in MHz * = Plane-wave equivalent power density Test Data Predication of MPE limit at a given distance S = PG/4πR² Where: S = power density (in appropriate units, e.g. mW/cm 2 ) P = power input to the antenna (in appropriate units, e.g., mW). G = power gain of the antenna in the direction of interest relative to an isotropic radiator, the power gain factor, is normally numeric gain. R = distance to the center of radiation of the antenna (appropriate units, e.g., cm) Maximum peak output power at antenna input terminal: 16.75 (dBm) Maximum peak output power at antenna input terminal: 47.30(mW) Prediction distance: >20 (cm) Predication frequency: 2403 (MHz) Antenna Gain (typical): 2 (dBi) Maximum Antenna Gain: 1.58 (numeric) The worst case is power density at predication frequency at 20 cm: 0.015 (mW/cm 2 ) MPE limit for general population exposure at prediction frequency: 1.0 (mW/cm 2 ) Result: The predicted power density level at 20 cm is 0.015 mw/cm 2 which is below the uncontrolled exposure limit of 1.0 mw/cm 2 , The EUT is used at least 20 cm away from user’s body. It is determined as mobile equipment and complies with the MPE limit.

Test Report

Note: This test report is prepared for the customer shown above and for the device described herein. It may not be duplicated or used in part without prior written consent from Bay Area Compliance Laboratories Corp. This report must not be used by the customer to claim product certification, approval, or endorsement by NVLAP*, NIST, or any agency of the Federal Government. * This report may contain data that are not covered by the NVLAP accreditation and are marked with an asterisk “*” (Rev.2) FCC PART 15.247 MEASUREMENT AND TEST REPORT For Hobbico, Inc. 2904 Research Road, Champaign, Illinois 61826, USA FCC ID: IYFTTX600 Report Type: Original Report Product Type: 2.4 GHz FHSS TRANSMITTER Test Engineer: Leon Chen Report Number: RSZ10110515 Report Date: 2010-12-23 Reviewed By: Merry Zhao EMC Engineer Prepared By: Bay Area Compliance Laboratories Corp. (Shenzhen) 6/F, the 3rd Phase of WanLi Industrial Building, ShiHua Road, FuTian Free Trade Zone Shenzhen, Guangdong, China Tel: +86-755-33320018 Fax: +86-755-33320008 Hobbico, Inc. FCC ID: IYFTTX600 Report No.: RSZ10110515 Page 2 of 34 FCC Part15.247 Test Report TABLE OF CONTENTS GENERAL INFORMATION.......................................................................................................................................4 PRODUCT DESCRIPTION FOR EQUIPMENT UNDER TEST (EUT) .....................................................................................4 OBJECTIVE...................................................................................................................................................................4 RELATED SUBMITTAL(S)/GRANT(S).............................................................................................................................4 TEST METHODOLOGY..................................................................................................................................................4 TEST FACILITY.............................................................................................................................................................4 SYSTEM TEST CONFIGURATION ..........................................................................................................................6 DESCRIPTION OF TEST CONFIGURATION......................................................................................................................6 EUT EXERCISE SOFTWARE..........................................................................................................................................6 EQUIPMENT MODIFICATIONS.......................................................................................................................................6 LOCAL SUPPORT EQUIPMENT LIST AND DETAILS........................................................................................................6 EXTERNAL I/O CABLE..................................................................................................................................................6 CONFIGURATION OF TEST SETUP.................................................................................................................................6 BLOCK DIAGRAM OF TEST SETUP................................................................................................................................7 SUMMARY OF TEST RESULTS ...............................................................................................................................8 FCC §15.247 (i) & §1.1307 (b) (1) & §2.1091- MAXIMUM PERMISSIBLE EXPOSURE (MPE)..............................9 STANDARD APPLICABLE..............................................................................................................................................9 TEST DATA..................................................................................................................................................................9 FCC §15.203 - ANTENNA REQUIREMENT...........................................................................................................10 APPLICABLE STANDARD............................................................................................................................................10 ANTENNA CONNECTOR CONSTRUCTION....................................................................................................................10 FCC §15.209, §15.205 & §15.247(d) - SPURIOUS EMISSIONS.............................................................................11 APPLICABLE STANDARD............................................................................................................................................11 MEASUREMENT UNCERTAINTY..................................................................................................................................11 EUT SETUP................................................................................................................................................................11 EMI TEST RECEIVER & SPECTRUM ANALYZER SETUP..............................................................................................12 TEST EQUIPMENT LIST AND DETAILS.........................................................................................................................12 TEST PROCEDURE......................................................................................................................................................12 CORRECTED AMPLITUDE & MARGIN CALCULATION.................................................................................................12 TEST RESULTS SUMMARY..........................................................................................................................................13 TEST DATA................................................................................................................................................................13 FCC §15.247(a) (1) - CHANNEL SEP…

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Test Setup Photos

EXHIBIT D - TEST SETUP PHOTOGRAPHS Below 1 GHz: Radiated Emissions - Front View Below 1 GHz: Radiated Emissions - Rear View Above 1 GHz: Radiated Emissions - Front View Above 1 GHz: Radiated Emissions - Rear View

Contact Information

Applicant

Neal Cloud(Senior Product Manager)
[email protected]217-398-3630Fax: 217-398-0008

Test Firm

Bay Area Compliance Laboratory Corp. (Shenzhen)John Chan
[email protected]08675533320018Fax: 08675533320008

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz47.30 mW
Confidentiality
Long Term
Grant Notes
Output power listed is conducted. The antenna used for this transmitter must not be co-located or operating in conjunction with any other antenna or transmitter and must be installed to provide a separation distance of at least 20 cm from all persons. End-Users must be provided with transmitter operation conditions for satisfying RF exposure compliance.

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