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NLKTMI330844949 MHz Remote Control TX

Toymax Inc
49 MHz Remote Control TX - FCC ID NLKTMI3308449 - Toymax Inc
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Application Details

Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Date of Grant
Jan 02, 2002
Application Purpose
Original Equipment
Date of Application
Jan 02, 2002
Equipment Note
49 MHz Remote Control TX
Frequency Range
49.82000000 - 49.90000000
Company
Toymax Inc
Country
United States

Documents & Files

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Users Manual

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Block Diagram

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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.

Operational Description

CIRCUIT DESCRIPTION In Receiver: The Rf signal is received and amplified in the radio frequency amplifier. This RF signal is changed into base band signal in the demodulation circuit. Aftr the demodulation, this base band signal is being amplified to the IC (Decoding circuit), in decoding circuit, the signal is being decoded the coding in order to control the motor (3 pcs.) in the motor driving circuit. 2 pcs. of motor is control the driving wheel, another one is control the wing up and down. In Transmitter: THe functional keys perform its function, the signal is forming into code from base band in the encoding circuit. This coding with the oscillator to general the RF signal in the modulation circuit. This signal is then amplifed in the radio frequency amplifier and then transmitted out. TOYMAX INC. FCC ID: NLKTMI3308449 EXHIBIT #: 10

Test Report

TABLE OF CONTENTS LIST APPLICANT: TOYMAX INC. FCC ID: NLKTMI3308449 TEST REPORT CONTAINING: PAGE 1......TEST EQUIPMENT LIST PAGE 2......TEST PROCEDURE PAGE 3......RADIATION INTERFERENCE TEST DATA PAGE 4......OCCUPIED BANDWIDTH TEST DATA PAGE 5......OCCUPIED BANDWIDTH PLOT EXHIBITS CONTAINING: EXHIBIT 1............BLOCK DIAGRAM EXHIBIT 2............SCHEMATIC EXHIBIT 3............INSTRUCTION MANUAL EXHIBIT 4............SAMPLE OF FCC ID LABEL EXHIBIT 5............LOCATION OF FCC ID LABEL EXHIBIT 6............EXTERNAL PHOTO - FRONT SIDE EXHIBIT 7............EXTERNAL PHOTO - BACK SIDE EXHIBIT 8............INTERNAL PHOTO - COMPONENT SIDE EXHIBIT 9............INTERNAL PHOTO - COPPER SIDE EXHIBIT 10...........CIRCUIT DESCRIPTION EXHIBIT 11...........TEST SET UP PHOTO APPLICANT: TOYMAX INC. FCC ID: NLKTMI3308449 REPORT #: T\TOYMAX\1171ZU1\1171ZU1RPT.doc PAGE: TABLE OF CONTENTS LIST APPLICANT: TOYMAX INC. FCC ID: NLKTMI3308449 TEST EQUIPMENT LIST 1._X_Spectrum Analyzer: HP 8566B-Opt 462, S/N 3138A07786, w/ preselector HP 85685A, S/N 3221A01400, Quasi-Peak Adapter HP 8565OA, S/N 3303A01690 & Preamplifier HP 8449B-OPT H02, S/N 3008A00372 Cal. 8/31/01 Due 8/31/02 2._X_Biconnical Antenna: Eaton Model 94455-1, S/N 1057, Cal. 10/1/01 Due 10/1/02 3.__ Biconnical Antenna: Electro-Metrics Model BIA-25, S/N 1171 Cal. 4/26/01 Due 4/26/03 4.__ Log-Periodic Antenna: Electro-Metrics Model EM-6950, S/N 632 Char. 3/15/00 Due 3/15/01 5.__ Log-Periodic Antenna: Electro-Metrics Model LPA-30, S/N 409 Char. 3/15/00 Due 3/15/01 6._X_Log-Periodic Antenna: Electro-Metrics Model LPA-25, S/N 1122 Char. 2/10/01 Due 3/10/02 7.__ Double-Ridged Horn Antenna: Electro-Metrics Model RGA-180, 1-18 GHz, S/N 2319 Cal. 4/27/99 Due 4/27/00 8.__ 18-26.3GHz Systron Donner Standard Gain Horn #DBE-520-20 No Cal Required 9.__ Horn 40-60GHz: ATM Part #19-443-6R No Cal Required 10.__ Line Impedance Stabilization Network: Electro-Metrics Model EM-7820, w/NEMA Adapter S/N 2682 Cal. 3/16/01 Due 3/16/02 11.__ Temperature Chamber: Tenney Engineering Model TTRC, S/N 11717-7 Char. 1/27/01 Due 1/27/02 12.__ Frequency Counter: HP Model 5385A, S/N 3242A07460 Char. 11/20/00 Due 11/20/01 13.__ Peak Power Meter: HP Model 8900C, S/N 2131A00545 Char. 1/26/01 Due 1/26/02 14._X_Open Area Test Site #1-3meters Cal. 12/22/99 15.__ Signal Generator: HP 8640B, S/N 2308A21464 Cal. 11/15/01 Due 11/15/02 16.__ Passive Loop Antenna: EMCO Model 6512, 9KHz to 30MHz, S/N 9706-1211 Char. 6/10/00 Due 6/10/01 17.__ Dipole Antenna Kit: Electro-Metrics Model TDA-30/1-4, S/N 153 Char. 11/24/00 Due 11/24/01 18.__ AC Voltmeter: HP Model 400FL, S/N 2213A14499 Cal. 10/9/01 Due 10/09/02 19._X_Digital Multimeter: Fluke Model 77, S/N 43850817 Cal. 11/16/00 Due 11/16/01 20.__ Oscilloscope: Tektronix Model 2230, S/N 300572 Char. 2/1/01 Due 2/1/02 APPLICANT: TOYMAX INC. FCC ID: NLKTMI3308449 REPORT #: T\TOYMAX\1171ZU1\1171ZU1RPT.doc PAGE: 1 TEST PROCEDURE GENERAL: This report shall NOT be reproduced except in full without the written approval of TIMCO ENGINEERING, INC. RADIATION INTERFERENCE: The test procedure used was ANSI STANDARD C63.4-1992 using a HEWLETT PACKARD spectrum analyzer with a prese- lector. The bandwidth of the spectrum analyzer was 100 kHz with an appropriate sweep speed. The analyzer was calibrated in dB above a microvolt at the output of the antenna. The resolution bandwidth was 100KHz and the video bandwidth was 300KHz. The ambient temperature of the UUT was 80°C with a humidity of 40%. FORMULA OF CONVERSION FACTORS: The Field Strength at 3m was estab- lished by adding the meter reading of the spectrum analyzer (which is set to read in units of dBuV) to the antenna correction factor sup- plied by the antenna manufacturer. The antenna correction factors are stated in terms of dB. The gain of the Preselector was accounted for in the Spectrum Analyzer Meter Reading. Example: Freq (MHz) METER READING + ACF = FS 33 20 dBuV + 10.36 dB = 30.36 dBuV/m @ 3m ANSI STANDARD C63.4-1992 10.1.7 MEASUREMENT PROCEDURES: The unit under test was placed on a table 80 cm high and with dimensions of 1m by 1.5m. The table used for radiated measurements is capable of continuous rotation. When an emission was found, the table was rotated to produce the maximum signal strength. At this point, the antenna was raised and lowered from 1m to 4m. The antenna was placed in both the horizontal and vertical planes. APPLICANT: TOYMAX INC. FCC ID: NLKTMI3308449 REPORT #: T\TOYMAX\1171ZU1\1171ZU1RPT.doc PAGE: 2 NAME OF TEST: RADIATION INTERFERENCE RULES PART NO.: 15.235 REQUIREMENTS: CARRIER FREQUENCY WILL NOT EXCEED 80 dBuV/m AT 3M. OUT-OF-BAND EMISSIONS SHALL NOT EXCEED: 30 - 88 MHz 40.0 dBuV/M MEASURED AT 3 METERS 88 - 216 MHz 43.5 dBuV/M 216 - 960 MHz 46.0 dBuV/M ABOVE 960 MHz 54.0 dBuV/M TEST DATA: Emission Frequency MHz Meter Reading dBuv Ant. Polarity Coax Loss dB Correction Factor dB Field Strength dBuv/m Margin dB 49.86 66.3 V 0.80 11.83 78.93 1.07 49.86 58.8 H 0.80 11.83 71.43 8.57 99.70 18.4 H 1.20 11.48 31.08 12.42 99.70 26.4 V 1.20 11.48 39.08 4.42 149.50 11.6 H 1.40 16.45 29.45 14.05 149.50 17.1 V 1.40 16.45 34.95 8.55 199.40 21.4 H 1.80 17.21 40.41 3.09 199.40 18.6 V 1.80 17.21 37.61 5.89 249.30 24.4 H 2.00 12.07 38.47 7.53 249.30 22.2 V 2.00 12.07 36.27 9.73 299.10 14.8 H 2.20 13.68 30.68 15.32 299.10 14.6 V 2.20 13.68 30.48 15.52 349.00 19.3 H 2.49 14.42 36.21 9.79 349.00 20.5 V 2.49 14.42 37.41 8.59 398.80 15.9 H 2.79 15.69 34.38 11.62 398.80 20.2 V 2.79 15.69 38.68 7.32 448.70 17.0 V 2.95 17.00 36.95 9.05 448.70 17.3 H 2.95 17.00 37.25 8.75 498.60 17.0 H 3.10 17.45 37.55 8.45 498.60 12.8 V 3.10 17.45 33.35 12.65 SAMPLE CALCULATION: FSdBuV/m = MR(dBuV) + ACFdB. TEST PROCEDURE: The procedure used was ANSI STANDARD C63.4-1992. The spectrum was scanned from 30 MHz to 1000 MHz. When an emission was found, the table was rotated to produce the maximum signal strength. The antenna was placed in both the horizontal and vertical planes and the worse case emissions were reported. The UUT was t…

Text truncated - open the document above for the full version.

Contact Information

Applicant

Wai Tam
N/A516 391-9898Fax: N/A

Test Firm

Timco Engineering, Inc.S Sanders
[email protected]888-472-2424Fax: 352-472-2030

Technical Specifications

#Rule PartsFrequency RangePower Output
115C49.82 MHz - 49.9 MHz-

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