
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
q w 1 Vehicle 2 Transmitter I. CONTENTS/ FEATURES 1 Battery door 2 ON/OFF switch 3 Twin PowerScrews 1 Driving controls 2 Battery Door 3 Antenna SMART CIRCUITRY Your new vehicle is equipped with advanced “Smart Circuitry” designed to protect its electronic components under extreme operating conditions. If your vehicle stalls or gets stuck during use, it will automatically power down. Simply release the transmitter controls for a few seconds, then press the left control to resume normal operation. NOTE: When your vehicle powers up again, you may notice some movement of the vehicle body and the PowerScrews. This may also happen if the vehicle is switched off with the PowerScrews angled, and then turned back on. This is completely normal: it’s an automatic system designed to return the vehicle to normal driving position. Once the movement has stopped, you may simply resume normal operation. CAUTION: Surfaces may become hot and cause burns if electronics get wet. Do not operate vehicle through water or snow. CAUTION: To prevent entanglement, keep all hair away from moving parts. ™™ 2 1 2 1 1 3 3 3 8+ Keep these instructions for future reference as they contain important information. IMPORTANT: Please read all “Consumer Information” before operating your vehicle. CAUTION – ELECTICALLY OPERATED PRODUCT: Not recommended for children under [specify age grade] years of age. As with all electric products, precautions should be observed during handling and use to prevent electric shock. Asst. X2874 X2875/ X2876-0920 ® ©2012 Mattel. All Rights Reserved. Mattel, Inc., 636 Girard Avenue, East Aurora, NY 14052, U.S.A. Consumer Relations 1-888- 557-8926. Mattel U.K. Ltd., Vanwall Business Park, Maidenhead SL6 4UB. Helpline 01628 500303. Mattel Australia Pty., Ltd., Richmond, Victoria. 3121.Consumer Advisory Service - 1300 135 312. Mattel East Asia Ltd., Room 1106, South Tower, World Finance Centre, Harbour City, Tsimshatsui, HK, China. Diimport & Diedarkan Oleh: Mattel SEA Ptd Ltd.(993532-P) Lot 13.5, 13th Floor, Menara Lien Hoe, Persiaran Tropicana Golf Country Resort, 47410 PJ. Tel:03-78803817, Fax:03-78803867. service. mattel.com Questions or problems with your product? DON’T RETURN IT TO THE STORE! Just call us for help. U.S. consumers may also register their products at this number. Protect the environment by not disposing of this product with household waste (2002/96/EC). Check your local authority for recycling advice and facilities. BATTERY CHARGING/CARE CAUTION: Use only the charger supplied with this toy. Do not use any other charging source. Use only HOT WHEELS ® R/C TMH ® FlexPak® ® NiMH battery packs. Other batteries may leak or rupture, causing personal injury and damage. 1. Plug the battery charger into standard wall outlet. 2. Hold the battery pack fully open, with the metal contacts at the top, as shown. The labels marked 1 and 2 in the upper left-hand corner should be facing you. Now slide the battery pack securely into the charger. 3. To disconnect, push the red button on the side of the charger. Hold the red button down while you slide out the battery pack. 4. After charging, the battery pack may feel warm. This is normal for fully charged batteries. 5. New battery packs must be charged for 5 1/2 hours the first two times charged. After that, subsequent charges will require 4 hours. Charging the battery pack for more than 4 hours will not give you a longer running time. 4 hours is all that is required for a fully charged battery pack. 6. Unlike NiCd (Nickel-Cadmium) rechargeable batteries, your TMH ® FlexPak ® battery pack may be recharged at any time irrespective of the level of charge remaining in the battery. You do not have to wait until the battery pack is fully discharged to recharge it. 7. After use, the battery pack will be hot! Wait at least 20 minutes until the battery pack cools down before recharging. Recharging a hot battery will greatly reduce the number of times your battery pack can be recharged. 1 2 1250mAh TMH ® RECHARGEABLE BATTERY INFORMATION: • DO NOT RECHARGE BATTERY PACK IF IT IS HOT. ALLOW IT TO COOL BEFORE RECHARGING. • DO NOT RECHARGE A BATTERY PACK THAT SHOWS LEAKAGE OR CORROSION. • DO NOT DISASSEMBLE THE BATTERY PACK. THE BATTERY PACK IS A SEALED RECHARGEABLE NICKEL-METAL HYDRIDE BATTERY PACK. • EXERCISE CAUTION IN HANDLING A HOT BATTERY PACK. • IF BATTERY PACK AND/OR CHARGER ARE WET, THOROUGHLY DRY BEFORE CHARGING. • DO NOT RECHARGE NON-RECHARGEABLE BATTERIES. • DO NOT DISPOSE OF THE BATTERY PACK IN A FIRE. Note to Adults: • Recharge battery pack only under adult supervision. • Periodically examine this product for damage to the plug, housing, or other parts that may result in the risk of fire, electric shock or injury. If the product is damaged, do not use it . • The transformer is not a toy. • This battery charger is intended to be correctly oriented in a vertical or floor mount position BATTERY DISPOSAL Unlike NiCd (Nickel-Cadmium) rechargeable batteries, your TMH ® FlexPak ® NiMH battery pack requires no special procedures or precautions for disposal. However, as with all products, you should dispose of your battery pack in an environmentally responsible and considerate manner. II. ALL TERRAIN, ALL THE TIME! • Your vehicle is engineered for amazing multi-direction driving...on land, in water and over just about any kind of terrain! Driving and stunt capabilities will vary depending on the driving surface. Keep reading for detailed information. • The left control moves in eight different directions to control your vehicle’s direction of movement. • The right control controls the angle of the PowerScrews. • With practice, you’ll discover that the two transmitter controls work together to give you complete control over your vehicle. These graphics show you how the controls work. 1 BASIC DRIVING The PowerScrews are engineered for great straight- ahead driving performance on many surfaces. However, smooth surfaces – like sidewalks, asphalt, tile, or hard fl…
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11 22 33 44 55 66 77 88 D D C C B B A A 1 Standard Common part for master 3145789 Part Value No: 12 14125Inductor4 Non Standard parts Guide Line (2nd priority) Diode: Transistor Resistor:528106373 Capacitor 1PTC 10 629 History IC information: TEST MODE: REMARKS: 1 Diode: MAPS All rights reserved Using E3 value for resistor, capacitor and inductor Using E6 value for resistor, capacitor and inductor (1st priority) Non Standard parts Guide Line (3rd priority) Project Name : MAPS Engineer : Standard IEC E3 Decade Value = 100, 220 & 470 Standard IEC E6 Decade value =100,150,220,330,470 & 680 Size A3 Revision Number 2012/2/1 Date : File : Sheet of C:\Documents and Settings\chlayoutteam\Local Settin gs\Temporary Internet Files\OLK87\Standard circuit R2 20111114.SchDot Block-DiagramX2876 Transmitter 27.145MHzTX MAIN PCB: PIY2876-12A2T ANTENNA POWER SUPPLY 3V-AA RF CIRCUIT POWER Q2 ON/OFF ENCODER U1 CONTROL KEYS sw1,sw2,sw3,sw4,sw5,sw6 CRYSTAL OSCILLATOR Q6 RF AMPLIFIER MODULATOR Q1,FILFER 27.145MHz
Transmitter Operational Description X2876 is used 1.5V *2 ‘AA’ batteries, it is designed to operate a single fixed frequency in the 27.145MHz band, Please see attached block diagram and schematic. Device has 6 function keys, Remote Control Encoder— AM8EB153X is used on transmitter. AM8EB153X receives key controlling signal, an encoded serial bit-stream is sent out via filter and antenna. Receiver Operational Description Receiver is used 1 x 7.2V rechargeable batteries to supply power, Antenna receive the modulated signal, the signal is demodulated through internal IC, the demodulating signal is amplified and decoded by IC, IC send out driving signal to drive the Motor.
1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 DD CC BB AA 1 Standard Common part for master 3 1 4 5 7 8 9 Part ValueNo: 1 2 1 4 2 5 Inductor 4 Diode: Transistor Resistor: 5 2 8 10 6 3 7 3 Capacitor 1 PTC 10 6 2 9 History : IC information: TEST MODE: REMARKS: 1 MAPS All rights reserved (1st priority) Project Name : Size MAPS Engineer : A3 Number :Revision File : D:\2012\\X2876\SCH\TERRAIN TWISTER TX\X2876 TERRAIN TWISTER TX.SchDoc Date : 2012/1/3 3 4 Sheet of X2876 TERRAIN TWISTER PA0 1 PA1 14 PA2 13 PA3 12 PB1/IR 9 PB0/INT 10 PB4/Xout 6 PB5/Xin/Rin 5 PB7 2 PB6 3 PB3/Reset 7 PB2/RTCC 8 VSS 11 VDD 4 U1 AM8EB153X R1 C10.1uF + C11 10uF R2 1Ω R6 1KΩ SW1 Forward R7 1KΩ SW2 Backward R8 1KΩ SW3 Left R9 1KΩ SW4 Right R10 1KΩ SW5 Steering Motor R11 1KΩ SW6 Steening Motor C2C3C4C5C6C7 R12 47KΩ Y1 27.145MHZ C13 33pF L1 1uH C17 47pF C18 47pF Q1 2SC1815 R13 33KΩ R14 47Ω C19 0.01uF Q6 2SA1015 R16 100Ω C14 47pF BT1 AA*2 /3V + C12 10uF C9 0.1uF C20 0.01uF L2 1uH C15 33pF C16 33pF C21 100pF L3 1.8uH L4 5.6uH ANT1 27.145MHZ C22 15pF C10 R3 1Ω C8 0.01uF VDD Test Freq Output Q2 2SC1015 R4 10KΩ R5 1KΩ R15 1MΩ VDD R1,C2,C3,C4.C5,C6,C7 for backup on layout L5 1uH R17 7B-ZT4444-4 Transmitter schematic diagram 00 P0ANT101 P0BT101 P0BT102 P0C101 P0C102 P0C201 P0C202 P0C301 P0C302 P0C401 P0C402 P0C501 P0C502 P0C601 P0C602 P0C701 P0C702 P0C801 P0C802 P0C901 P0C902 P0C1001 P0C1002 P0C1101 P0C1102 P0C1201 P0C1202 P0C1301 P0C1302 P0C1401 P0C1402 P0C1501 P0C1502 P0C1601 P0C1602 P0C1701 P0C1702 P0C1801 P0C1802 P0C1901 P0C1902 P0C2001 P0C2002 P0C2101 P0C2102 P0C2201 P0C2202 P0L101 P0L102 P0L201 P0L202 P0L301 P0L302 P0L401 P0L402 P0L501 P0L502 P0Q10B P0Q10C P0Q10E P0Q20B P0Q20C P0Q20E P0Q60B P0Q60C P0Q60E P0R101 P0R102 P0R201 P0R202 P0R301 P0R302 P0R401 P0R402 P0R501 P0R502 P0R601 P0R602 P0R701 P0R702 P0R801 P0R802 P0R901 P0R902 P0R1001 P0R1002 P0R1101 P0R1102 P0R1201 P0R1202 P0R1301 P0R1302 P0R1401 P0R1402 P0R1501 P0R1502 P0R1601 P0R1602 P0R1701 P0R1702 P0SW101 P0SW102 P0SW201 P0SW202 P0SW301 P0SW302 P0SW401 P0SW402 P0SW501 P0SW502 P0SW601 P0SW602 P0U101 P0U102 P0U103 P0U104 P0U105 P0U106 P0U107 P0U108 P0U109 P0U1010 P0U1011 P0U1012 P0U1013 P0U1014 P0Y101 P0Y102 P0BT102 P0C102 P0C201 P0C301 P0C401 P0C501 P0C601 P0C701 P0C802 P0C902 P0C1002 P0C1102 P0C1202 P0C1302 P0C1802 P0C1902 P0C2002 P0C2101 P0C2201 P0L102 P0R1202 P0R1402 P0SW101 P0SW201 P0SW301 P0SW401 P0SW501 P0SW601 P0U1011 P0ANT101 P0L401 P0BT101 P0Q20E P0R201 P0R401 P0C202 P0R1102 P0SW602 P0C302 P0R1002 P0SW502 P0C402 P0R902 P0SW402 P0C502 P0R802 P0SW302 P0C602 P0R702 P0SW202 P0C702 P0R602 P0SW102 P0C801 P0C1401 P0Q60E P0R1601 P0C901 P0C1201 P0C1501 P0C2001 P0L201 P0R302 P0R1602 P0C1001 P0R1302 P0R1701 P0C1301 P0C1402 P0C1701 P0L101 P0Q60C P0Y102 P0C1502 P0L202 P0L501 P0Q10C P0C1601 P0L502 P0C1602 P0C2102 P0L302 P0C1702 P0C1801 P0Q10B P0R1301 P0C1901 P0Q10E P0R1401 P0C2202 P0L301 P0L402 P0Q20B P0R402 P0R502 P0Q20C P0R301 P0Q60B P0R1201 P0Y101 P0R101 P0U105 P0R501 P0U101 P0R601 P0U1010 P0R701 P0U109 P0R801 P0U108 P0R901 P0R1501 P0U107 P0R1001 P0U103 P0R1101 P0U102 P0R1702 P0U1014 P0U106 P0U1012 P0U1013 P0C101 P0C1101 P0R102 P0R202 P0R1502 P0U104
TEST REPORT Report No. : AP0010252(0) Date : 28 Feb 2012 For and on behalf of CMA Industrial Development Foundation Limited Authorized Signature : Page 1 of 11 Mr. WONG Lap-pong, Andrew Assistant Manager Electrical Division FCC ID: PIYX2876-12A2T Application No. : LP002120(5) Applicant : Mattel Asia Pacific Sourcing Ltd. 1301, South Tower, World Finance Centre, Harbour City, Tsimshatsui, Hong Kong Sample Description : One(1) item of submitted sample stated to be Terrain Twister of Model No. X2876 Radio Frequency : 27.145MHz Transmitter Rating : 2 x 1.5V AA size batteries No. of submitted sample : Two (2) piece (s) Sample registration no. : RP002441-001 Date Received : 16 Jan 2012. Test Period : 19 Jan 2012 to 30 Jan 2012. Test Requested : FCC Part 15 Certification. Test Method : 47 CFR Part 15 (10-1-10 Edition) ANSI C63.4 – 2009 Test Result : See attached sheet(s) from page 2 to 11. Conclusion : The submitted sample was found to comply with requirement of FCC Part 15 Subpart C. TEST REPORT Report No. : AP0010252(0) Date : 28 Feb 2012 Page 2 of 11 FCC ID: PIYX2876-12A2T Table of Contents 1 General Information ................................................................................................................................... 3 1.1 General Description ............................................................................................................................ 3 1.2 Location of the test site ....................................................................................................................... 4 1.3 List of measuring equipment............................................................................................................... 5 1.4 Measurement Uncertainty ................................................................................................................... 5 2 Description of the radiated emission test ................................................................................................... 6 2.1 Test Procedure .................................................................................................................................... 6 2.2 Test Result .......................................................................................................................................... 6 2.3 Radiated Emission Measurement Data ............................................................................................... 7 3 Description of the Line-conducted Test ..................................................................................................... 8 3.1 Test Procedure .................................................................................................................................... 8 3.2 Test Result .......................................................................................................................................... 8 3.3 Graph and Table of Conducted Emission Measurement Data ............................................................ 8 4 Photograph ................................................................................................................................................. 9 4.1 Photographs of the Test Setup for Radiated Emission and Conducted Emission ............................... 9 4.2 Photographs of the External and Internal Configurations of the EUT................................................ 9 5 Supplementary document ......................................................................................................................... 10 5.1 Bandwidth ......................................................................................................................................... 10 5.2 Duty cycle ......................................................................................................................................... 10 5.3 Transmission time ............................................................................................................................. 10 6 Appendices...............................................................................................................................................11 TEST REPORT Report No. : AP0010252(0) Date : 28 Feb 2012 Page 3 of 11 FCC ID: PIYX2876-12A2T 1 General Information 1.1 General Description The equipment under test (EUT) is a transmitter for Terrain Twister. It operates at 27.145MHz and the oscillation of radio control is generated by a crystal. The EUT is powered by 2 x 1.5V AA size batteries. There are two buttons and one control stick on the EUT. When the control stick is triggered and the buttons are pressed, it will transmit radio control signal to receiver. The antenna is permanently attached in EUT and the radio output power is unable to adjust. The brief circuit description is listed as follows: - Q1 and its associated circuit act as an amplifier. - Y1, Q6 and its associated circuit act as an oscillator. - U1 and its associated circuit act as an encoder. - Q2 and its associated circuit act as a voltage controller. TEST REPORT Report No. : AP0010252(0) Date : 28 Feb 2012 Page 4 of 11 FCC ID: PIYX2876-12A2T 1.2 Location of the test site Radiated emissions measurements are investigated and taken pursuant to the procedures of ANSI C63.4 – 2009. A Semi-Anechoic Chamber Testing Site is set up for investigation and located at: Ground Floor, Yan Hing Centre, 9 – 13 Wong Chuk Yeung Street, Fo Tan, Shatin, New Territories, Hong Kong. Conducted emissions measurements are investigated and also taken pursuant to the procedures of ANSI C63.4 – 2009. A shielded room is located at : Ground Floor, Yan Hing Centre, 9 – 13 Wong Chuk Yeung Street, Fo Tan, Shatin, New Territories, Hong Kong. TEST REPORT Report No. : AP0010252(0) Date : 28 Feb 2012 Page 5 of 11 FCC ID: PIYX2876-12A2T 1.3 List of measuring equipment Equipment Manufacturer Model No. Serial No. Calibration Due Date EMI Test Receiver R&S ESCI 100152 16 Mar 2012 Broadband Antenna …
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Job No.: J Assignment No.: Reference No.: Application No.: Sample No.: R Retest.: File name: Test sheet of photo format for FCC Certification Document Ref No: WF-EL-EMC-15 Issue Date: 21 Feb 2011 Edition: 1 (Amd 3) Page of . Bandwidth Plot Bandwidth 1 Bandwidth 2
Job No.: J Assignment No.: Reference No.: Application No.: Sample No.: R Retest.: File name: Test sheet of photo format for FCC Certification Document Ref No: WF-EL-EMC-15 Issue Date: 21 Feb 2011 Edition: 1 (Amd 3) Page of . Duty Cycle Duty Cycle 1 Duty Cycle 2 Job No.: J Assignment No.: Reference No.: Application No.: Sample No.: R Retest.: File name: Test sheet of photo format for FCC Certification Document Ref No: WF-EL-EMC-15 Issue Date: 21 Feb 2011 Edition: 1 (Amd 3) Page of . Duty Cycle 3 Duty Cycle 4
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 27.145 MHz - 27.145 MHz | - |
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