
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
STATEMENT OF MICHAEL A. NICOLAY In Connection With APPLICATION FOR CERTIFICATION X-TREME CYCLE R/C TRANSMITTER FCC ID: AEK981627 I am an Engineer, an employee in the firm of Carl T. Jones Corporation, with offices located in Springfield, Virginia. My education and experience are a matter of record with the Federal Communications Commission. All of the measurements contained in this test report were performed by me or under my supervision, and I attest to the accuracy of each. I submit that, to the best of my knowledge, the test sample meets the technical standards set forth in the Commission's Part 15 Rules and Regulations. DATED: April 21, 1999 Michael A. Nicolay Carl T. Jones Corporation 7901 Yarnwood Court Springfield, VA 22153 (703) 569-7704 [email protected]
Category not applicable for this application .
April 21, 1999 Federal Communications Commission EQUIPMENT APPROVAL SERVICES P.O. Box 358315 Pittsburgh, PA 15251-3315 Dear Sir or Madam: Enclosed is the application fee for Certification prepared on behalf of Taiyo Kogyo Co.,LTD. for the X-Treme Cycle (FCC ID:AEK981627). Sincerely, Michael A. Nicolay EMC Engineer [email protected]
Expository Statement/Description The X-Treme Cycle Transmitter (FCC ID:AEK981627) is a 27.145 MHz R/C transmitter. The transmitter uses a telescopic antenna approximately 10 ½ inches in length. The RF section contains the RF carrier oscillator section and an amplifier section. The RF carrier frequency is generated using Q1 (N-P-N transistor) in conjunction with a crystal (X1=27.145 MHz) configured in an oscillator circuit. The RF amplifier circuit consists of one transistor (Q2) matched to the antenna via a pi circuit comprised of C6, C7, L3 and C8. The modulation, baseband control signals, are generated within the LSI (Large Scale Integration) IC, IC1 Taiyo_97_T. Except for the control switches (commands for vehicle movement), IC1 conditions all commands and modulates the carrier (RF) by injecting the baseband signal into the input of the RF amplifier. The transmitter operates using one 9.0 VDC battery. The transmitter does not need or use external grounding for operation.
FCC ID:AEK981627 1 MEASUREMENT REPORT I. INTRODUCTION This measurement report is submitted in support of an Application for Certification in accordance with Part 2, Subpart J and Part 15, Subpart C (effective 6/23/89) of the Federal Communications Commission's Rules and Regulations. The equipment under test (EUT) is a low power pulsed RF transmitter. This transmitter operates at a fixed frequency within the band from 26.99 MHz to 27.28 MHz and is powered by one 9 Volt battery. It is identified as the X- Treme Cycle Transmitter (FCC ID: AEK981627). Operation under the transition provisions of Paragraph 15.37 is not requested for this device. The measurements contained in this report demonstrate compliance with the limitations in effect since 6/23/89. II. INFORMATION REQUIRED FOR CERTIFICATION Paragraph(s) 2.1033(a) This Application for Certification is filed on FCC Form 731 with all questions answered. An application fee of $940 was submitted. 2.1033(b)(1) The full name and mailing address of the manufacturer of the device and applicant for certification is: Taiyo Kogyo Co., Ltd. No. 1-23-17, Higashiyotsugi Katsushika-ku, Tokyo 124 Japan (2) The FCC Identifier of the device is AEK981627. (3) A copy of the installation and operating instructions to be furnished to the user is included in the exhibits section of this application. (4) The transmitter is a hand-held unit and is powered by one 9.0 Volt battery. It is designed to operate on one of the following fixed frequencies: 26.995 MHz, 27.045 MHz, 27.095 MHz, 27.145 MHz, and 27.195 MHz. Complete circuit schematics are provided in the exhibits section. (5) A block diagram of the device is included in Exhibits. (6) A report of measurements is included in this report. (7) Photographs of this device showing the FCC label placement (actual label sample included), chassis assembly, and circuit FCC ID:AEK981627 2 layout are included as Exhibits in this application. (8) This equipment is a stand-alone unit. No peripherals or accessories are involved. (9) Certification under the transition provisions of Paragraph 15.37 is not being requested for this device. (10) N/A. III. GENERAL TEST CONDITIONS AND PROCEDURES Measurement procedures were used as outlined in MP-1 as specified in Part 15.31, except as noted herein . The open-field tests were performed on a three- meter range maintained by Carl T. Jones Corporation at the Springfield facility. Complete description and measurement data for the site have been placed on file with the Commission. Carl T. Jones Corporation is listed by the FCC as a facility available to do measurement work for others on a contract basis. Prior to open-field testing, the equipment was placed in a shielded enclosure and scanned at a close distance to determine its emission characteristics. IV. RADIATED EMISSION MEASUREMENTS The transmitter was assembled on a rotatable wooden test stand 0.8 meters in height. The transmitter's antenna was fully extended. The emission spectrum was examined up to 1000 MHz using a Hewlett-Packard 8568B spectrum analyzer and Compliance Design "Roberts" tuned dipole antennas. At each emission frequency, the EUT was rotated 360 degrees, and the antenna was raised and lowered from one to four meters to determine the maximum emission levels. Measurements were taken using both horizontal and vertical antenna polarizations. The spectrum analyzer's 6 dB bandwidth was set to 100 kHz. The analyzer was operated using its peak detection mode for measurements of emissions less than 1000 MHz. No post-detector video filters were used. The EUT was investigated in three orthogonal planes. The highest emission amplitudes relative to the appropriate limit were measured and have been recorded in Table 1. The actual field intensity in decibels above one microvolt per meter (dBuV/m) is determined by algebraically adding the measured level in dBuV, the FCC ID:AEK981627 3 antenna factor (dB), and the cable loss (dB) at the appropriate frequency. FI a (dBuV/m) = FI m (dBuV) + AF (dB) + CL (dB) FI a = Actual Field Intensity FI m = Measured Field Intensity AF = Antenna Factor CL = Cable Loss As a sample calculation, assume a particular device emits a signal with a frequency of 27.145 MHz. The received signal level is measured as 62.9 dBuV. The total attenuation factor (antenna factor plus cable loss) for 27.145 MHz is 0 dB. The actual radiated field is calculated as follows: 62.9 dBμV + (0 dB) = 62.9 dBμV/m @ 3 meters, or 1396.4 μV/m @ 3 meters The field strength of the fundamental did not exceed 10,000 μV /m (80 dBμV/m) at 3 meters, as specified in Paragraph 15.227. As per the requirements defined in 15.209, the radiated emission limit at the band edges is 40.0 dBμV/m at 3 meters. As per the occupied bandwidth spectral plot, the highest emission level below the lower band edge is 50 dB below the modulated carrier. At the upper band edge the highest emission recorded is 46 dB below the modulated carrier. Note: because the EUT complies using peak detection (worst case) quasi-peak detection was not used. Based on the maximized peak radiation measurements of the carrier, these emission levels are: Lower Band Edge 64.1 dBμV/m -50 dB = 14.1 dBμV/m (peak) at 3 meters ( Limit = 40.0 dBμV/m, quasi-peak ) Upper Band Edge 64.1 dBμV/m - 46 dB = 18.1 dBμV/m (peak) at 3 meters (Limit = 40.0 dBμV/m, quasi-peak) Radiated measurements to the EUT's 10th harmonic are included in this report as Table 1. All other emissions were found to be in compliance with the restrictions of Paragraph 15.209(a) of the Commission's Rules. Because the emissions were below the limits using peak detection, average to peak ratio's FCC ID:AEK981627 4 were not calculated. V. OCCUPIED BANDWIDTH MEASUREMENTS In order to demonstrate that the EUT's fundamental frequency is within the 26.96 to 27.28 MHz frequency band an occupied bandwidth spectral plot of the EUT's fundamental frequency is included. Paragraph 15.227(b) specifies that all emissions which fall outsi…
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TABLE 1 FIELD STRENGTH RADIATED EMISSIONS DATA SHEET ANTENNA FACTORFCC EMISSIONANTENNAEMISSIONANDEMISSIONLIMIT FREQUENCY POLARITYLEVELCABLE LOSSLEVEL(3 METERS) (MHZ)(H,V)(dBuV)(dB)(dBuV/m)(dBuV/m) 27.145V64.10.064.180 27.145H60.30.060.380 54.292V23.45.428.840 81.438V&H<22.59.2<31.540 108.584V&H<14.013.2<27.240 135.730V&H<14.015.5<29.540 162.871V&H<15.017.1<32.140 190.022V&H<14.019.0<33.040 217.168V&H<13.019.9<32.946 244.314V&H<15.020.9<35.946 271.460V&H<16.022.0<39.046 All limits are specified in Quasi-Peak, all data reported in Peak. CLIENT:TAIYO KOGYO FCC ID:AEK981627 MODEL:X-TREME CYCLE TEST DATE:04/21/99 TEST ENGINEER:Michael A. Nicolay
TEST EQUIPMENT USED FOR FCC COMPLIANCE TESTING BY CARL T. JONES CORPORATION MANUFACTURERDEVICE MODEL NUMBER QUANTITY Hewlett PackardSpectrum Analyzer8568B1 Hewlett PackardQuasi-Peak Adapter8565OA1 Hewlett PackardSpectrum Analyzer141 T1 Hewlett PackardRF Section8555A1 Hewlett PackardRF Section8553B1 Hewlett PackardIF Section8552A1 TektronixSpectrum Analyzer7L131 Electro-MetricsSpectrum AnalyzerESA-10002 Hewlett PackardFrequency Counter5245L1 Hewlett PackardFrequency Converter5253B1 Hewlett PackardPre-Amplifier8447E2 Hewlett PackardSignal Generator8656B2 Hewlett PackardSignal Generator606B1 Boonton ElectronicsSignal Generator102B1 Boonton ElectronicsPower Meter42B1 TektronixOscilloscope4751 Marconi InstrumentsAM/FM Modulation MeterTF23001 Compliance Design20 MHz-1000 MHz AntennasRoberts tm 1 Set Solar Electronics50 Microhenry LISN8028-50-TS-24-BNC1 Solar Electronics50 Microhenry LISN8012-50-R-24-BNC2
7901 Yarnwood Court · Springfield, Virginia · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 26.96 MHz - 27.28 MHz | - |

REMOTE CONTROL TRANSMITTER
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
BATTLE TANK
Equipment Class
CRR - Superregenerative Receiver
49MHz RECEIVER
Equipment Class
CRR - Superregenerative Receiver
27 MHz TRANSMITTER
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
49MHz TRANSMITTER
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter