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PIYW6459-12A4RRC HW 6V BMW WHITE

Mattel Asia Pacific Sourcing Ltd.
RC HW 6V BMW WHITE - FCC ID PIYW6459-12A4R - Mattel Asia Pacific Sourcing Ltd.
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Application Details

Equipment Class
CRR - Superregenerative Receiver
Date of Grant
Dec 27, 2011
Application Purpose
Original Equipment
Date of Application
Dec 27, 2011
Equipment Note
RC HW 6V BMW WHITE
Frequency Range
49.86000000 - 49.86000000
Company
Mattel Asia Pacific Sourcing Ltd.
Country
Hong Kong

Documents & Files

Select a file to view

Users Manual

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Block Diagram

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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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Schematics

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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

Keep these instructions for future reference as they contain important information. IMPORTANT: Please read all “Consumer Information” before operating your vehicle. 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 the wheels. I. CONTENTS/ FEATURES Forward / Reverse Left / Right Battery cover ON(I) / OFF(0) Steering adjuster - Adjust, if necessary, to keep vehicle running straight 1 2 3 4 This set includes: 1 vehicle, 1 transmitter, 1 antenna tube. 3 ® a. Insert flexible antenna wire through antenna tube, then insert end of tube firmly into transmitter hole. b. Tie a knot at the end of the flexible antenna wire to keep the tube in place. Antenna tube Asst. W6456 W6458/X7725-0920 5+ ® 2 1 5 5 3 4 II. BATTERY INSTALLATION (Transmitter & Vehicle) Requires 4 AA alkaline batteries for the vehicle and 2 AA alkaline batteries for the transmitter. Batteries not included. Vehicle 1. Unscrew the battery cover with a Phillips head screwdriver (not included). 2. Your vehicle requires 4 AA alkaline batteries. Install with polarity (+/-) as shown inside the battery compartment. 3. Replace battery cover and tighten screw. Transmitter 1. Remove the battery cover. 2. Transmitter requires 2 AA alkaline batteries. Install with polarity (+/-) as shown inside the battery compartment. 3. Replace battery cover and push shut. NOTE: Once the batteries are installed the transmitter will always be “ON” and will work automatically the moment you use it. III. OPERATION FORWARD LEFT OR RIGHT FORWARDREVERSE REVERSE LEFT OR RIGHT OR OR 4 x AA 2 x AA IV. QUICK TIPS 1 When your vehicle starts to lose power, it may lose functionality or performance. It’s time for fresh batteries. Your vehicle’s running time may change depending on your driving style. 2 Radio interference can affect your vehicle's performance. Interference can be caused by other R/C vehicles running on the same frequency, electrical wires, large buildings or CB radios. Try to stay away from these! 3 Point your transmitter up - not down toward your vehicle. If your vehicle gets too far away, it won’t work properly. 4 Don't drive your vehicle in sand or through water or snow. If your vehicle does get wet, wipe it with a towel and allow to dry completely overnight. 5 Don’t store your vehicle near heat or in direct sunlight. Always turn switches OFF and remove all batteries for storage. 6 If the vehicle malfunctions, please turn the vehicle and transmitter's power OFF and ON again. This should reset your vehicle and let you resume normal operation. V. BATTERY SAFETY INFORMATION In exceptional circumstances batteries may leak fluids that can cause a chemical burn injury or ruin your product. To avoid battery leakage: • Non-rechargeable batteries are not to be recharged. • Rechargeable batteries are to be removed from the product before being charged. • Rechargeable batteries are only to be charged under adult supervision. • Do not mix alkaline, standard (carbon-zinc), or rechargeable (nickel-cadmium) batteries. • Do not mix old and new batteries. • Only batteries of the same or equivalent type as recommended are to be used. • Batteries are to be inserted with the correct polarity. • Exhausted batteries are to be removed from the product. • The supply terminals are not to be short-circuited. • Dispose of battery(ies) safely. • Do not dispose of this product in a fire. The batteries inside may explode or leak. Battery Performance Note: For best performance use regular or high-performance alkaline batteries (where disposable batteries are called for). If your vehicle is supplied with standard (carbon- zinc) batteries for initial use and/or demonstration purposes, we recommend replacing them with alkaline batteries when necessary. Battery life may vary depending on battery brand. VI. CONSUMER INFORMATION Note to Adults: To ensure that the child’s play is both safe and fun, please review all operating instructions and safety rules with your child. Safety Tips • NEVER drive your vehicle on streets! They’re for real cars! • DO NOT pick up the vehicle while in motion. • Keep fingers, hair and loose clothing away from the tires and the wheel hubs while the vehicle is switched ON. • Adult supervision is recommended when this vehicle is being operated. • To avoid accidental operation, remove all batteries when not in use. Protect the environment by not disposing of this product with household waste (2002/96/EC). Check your local authority for recycling advice and facilities. 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. • This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: • Reorient or relocate the receiving antenna. • Increase the separation between the equipment and receiver. • Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. • Consult the dealer or an experienced radio/TV technician for help. NOTE: Changes or modifications not expressly appr…

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Block Diagram

1 1 2 2 3 3 4 4 DD CC BB AA Power ControlW55RFS27R1B Driving Circuit ANT AA Battery 6V GND RC HW 6V BMW WHITE W6459 49.860MHz Driving Circuit M M 4PCS Forw ard BackwardLeftRight 6V 3V3 Company name: Product description: Model number: Date: Revision sheet of MATTEL 12/12/2011 R0

Operational Description

Transmitter Operational Description W6459 is used 1.5V *2 ‘AA’ batteries, it is designed to operate a single fixed frequency in the 49.860MHz band, Please see attached block diagram and schematic. Device has 4 function keys, they control receiver forward, backward, turn left and right. 4 keys Remote Control Encoder—W55RFS27T1B is used on transmitter. W55RFS27T1B receives key controlling signal, a encode serial bit-stream is sent out via filter and antenna. Receiver Operational Description Receiver is used 1.5V *4 ‘AA’ 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.

Schematics

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 0.1uF chip 50V +80-20% Y5V, 50V SMD0603 3 110 ohm +/-5% 0603 4 100 ohm +/-5% 0603 5 1K ohm +/-5% 0603 7 8 10k ohm +/-5% 0603 9 100kohm +/-5% 0603 Part ValueNo: 1IN4001PKG: DO-41 50V 2IN4148 PKG: DO-35 50V 1 S8050DNPN ( 1.5A )SOT-23.V: 40; W: 0.3; 4 B772 PNP A: 3; V: 40; Max. W: 1.25; PKG: TO-126; 2 S9014D NPN (1.5A )SOT-23.V: 40; W: 0.3; 5 D882 NPN A: 3; V: 40; Max. W: 1.25; PKG: TO-126; Inductor 4 Non Standard parts Guide Line (2nd priority) 1M ohm +/-5% 0603 Diode: Transistor Resistor: 5 2 8 10uF 25V +/-20% AL EL PKG:5x11mm 10 100uF 25V +/-20% AL EL PKG:5x11mm 220uF 25V +/-20% AL ELPKG:5x11mm 1000pF chip 50v +80-20% SMD 0603 10PF chip 50v +80-20% SMD 0603 25pF chip 50v +80-20% SMD 0603 4.7Kohm +/-5% 0603 6 2.2M ohm +/-5% 0603 3 Choke Coil DESC: 5.6uH 10% 1/2W 7 0.033uF 25V,Y5V ,PKG: dia 4mm x 3.5 3 S8550D PNP(1.5A )SOT-23.V: 40; W: 0.3; Capacitor 1 PTC MF-R400-0-99 47k ohm +/-5% 0603 10 6 2 20pF chip 50v +80-20% SMD 0603 9 47uF 25V +/-20% AL EL PKG:5x11mm 0.1uF 25V +80-20% Y5V, PKG: Ceramic dia 6mm x 3.5 220k ohm +/-5% 0603 History IC information:TEST MODE: REMARKS: 1 1N5817: DO-41 50V 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 12/12/2011Date : File : Sheet of D:\model\RC\model\by model\W6456\W6459\W6459 Sch 49MHz RX.SchDoc 3 4 BAT54 SOT23 30V Benjalin RC HW 6V BMW WHITE S1 VCC ANTENNA RSAW 4 RBIAS 3 CMFB 2 GND 1 VDDA 5 OSCin 7 OSCout 8 GNDA 9 RESET 10 MODE0 11 MODE1 12 TEST 13 F2 14 F1 15 R 16 L 17 B 18 F 19 RXD 20 VSPLY 21 VDDA 6 U1 W55RFS27R1B VCC J1 CON1 MOTOR_L/R RX 1.Operating Voltage: 2.1V-5.5V 2.Operating frequency:27MHz,40MHz,49MHz VCC W6459 R0 C1 27MHz 40MHz 49MHz L2C4C5 15pF2.2uH27pF27pF 10pF22pF27pF 7pF20pF22pF 1uH 1uH 2 xAA 3.0V Battery1 2 xAA 3.0V Battery DO-35 DIP 1N4148 D1 0402 180ohm R12 0402 0.01uF C21 0402 0.1uF C6 0402 16K R4 0402 36K R1 0402 0.047uF C15 0402 7pF C1 0402 22pF C5 0402 20pF C4 0402 0.1uF C13 0402 1K R8 0402 4.7K R21 1206 47ohm R20 1.5A SOT-23 SMD S9014D Q14 1.5A SOT-23 SMD S8550D Q9 1.5A SOT-23 SMD S8550D Q11 1.5A SOT-23 SMD S8050D Q10 1.5A SOT-23 SMD S8050D Q12 1.5A SOT-23 SMD S9014D Q13 1206 47ohm R22 0402 1K R18 0402 4.7K R19 Ceramic DIP 0.1uF C9 Ceramic DIP 0.1uF C10 Ceramic DIP 0.1uF C11 N-DV Metal brush FN130-AA-12240-38 M M2 VCC MOTOR_F/B 0402 1K R6 0402 4.7K R5 1206 47ohm R10 1.5A SOT-23 SMD S9014D Q3 3A SOT89 B772 Q5 3A SOT89 D882 Q7 1.5A SOT-23 SMD S9014D Q8 1206 47ohm R23 0402 1K R11 0805 4.7K R2 N-DV Metal brush FP130-AA-2270-38 M M1 3A SOT89 B772 Q4 0603 0.1uF C2 0603 0.1uF C3 0603 0.1uF C7 3A SOT89 D882 Q6 PTC 3.3V DO-35 DIP Z1 25V SMD 100uF C20 DIP 7KB-9.5T 1uH 5p L2 0805 10uF C8

Test Report

TEST REPORT Report No. : AN0071137(8) Date : 22 Dec 2011 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: PIYW6459-12A4R Application No. : LN032470(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 Assortment Assortment no. HOT WHEELS® RC 6V Cars Vehicle W6456 Sample Description Model no. RC HW 6V BMW WHITE W6459 RC HW 6V TEAM HOT WHEELS X7725 Radio Frequency : 49.860MHz Receiver Rating : 4 x 1.5V AA size batteries No. of submitted sample : One (1) piece (s) Date Received : 17 Oct 2011. Test Period : 17 Oct 2011 to 18 Oct 2011. 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 B. Remark : All two models are the same in circuitry, components and construction. Therefore, model W6459 was chosen to be the representative of the test sample. The differences between the testing / tested model and the declared models are package, color and model number. TEST REPORT Report No. : AN0071137(8) Date : 22 Dec 2011 Page 2 of 11 FCC ID: PIYW6459-12A4R 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. : AN0071137(8) Date : 22 Dec 2011 Page 3 of 11 FCC ID: PIYW6459-12A4R 1 General Information 1.1 General Description The equipment under test (EUT) is a receiver for RC HW 6V BMW WHITE. It operates at 49.860MHz and the oscillation of radio control is generated by a LRC circuit. The EUT is powered by 4 x 1.5V AA szie batteries. When it switched on and received radio control signal, it will take the corresonding action. The brief circuit description is listed as follows: - Z1, D1 and its associated circuit act as a voltage regulator. - U1 and its associated circuit act as a decoder. - Q3 - Q8 and its associated circuit act as motor M1 driver. - Q9 - Q14 and its associated circuit act as motor M2 driver. TEST REPORT Report No. : AN0071137(8) Date : 22 Dec 2011 Page 4 of 11 FCC ID: PIYW6459-12A4R 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. : AN0071137(8) Date : 22 Dec 2011 Page 5 …

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Contact Information

Applicant

Joule Mak(Director, Electronic Engineering)
[email protected]31855000Fax: 27353758

Test Firm

CMA Industrial Development Foundations LimitedAndrew Wong
[email protected]852-2698-8198Fax: 852-2695-4177

Technical Specifications

#Rule PartsFrequency RangePower Output
115B49.86 MHz - 49.86 MHz-

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