FCC CFR47 PART 15 SUBPART C INDUSTRY CANADA RSS-210 ISSUE 8 CERTIFICATION TEST REPORT FOR FOB ASSY BIDIRECTIONAL R/C MODEL NUMBER: GHW-H001

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FCC CFR47 PART 15 SUBPART C INDUSTRY CANADA RSS-210 ISSUE 8 CERTIFICATION TEST REPORT FOR FOB ASSY BIDIRECTIONAL R/C MODEL NUMBER: GHW-H001 REPORT NUMBER: 32AE0249-SH-B-R1 ISSUE DATE: September 28, 2011 Prepared for OMRON CORPORATION 6368 NENJOZAKA, OKUSA KOMAKI, AICHI, 485-0802, JAPAN Prepared by 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken 259-1220 JAPAN Telephone number : +81 463 50 6400 Facsimile number : +81 463 50 6401 JAB Accreditation No. : RTL02610 RTL2610 13-EM-F0429

Revision History Rev. Issue Date Revisions Revised By - 09/26/11 Initial Issue M. Hosaka 1 09/28/11 Correct the description on the table in Section 5 * This report is a revised version of 32AE0249-SH-B. 32AE0249-SH-B is replaced with this report. M. Hosaka Page 2 of 21

TABLE OF CONTENTS 1. ATTESTATION OF TEST RESULTS... 4 2. TEST METHODOLOGY... 5 3. FACILITIES AND ACCREDITATION... 5 4. CALIBRATION AND UNCERTAINTY... 5 MEASURING INSTRUMENT CALIBRATION... 5 SAMPLE CALCULATION... 5 MEASUREMENT UNCERTAINTY... 5 5. EQUIPMENT UNDER TEST... 6 DESCRIPTION OF EUT... 6 DESCRIPTION OF AVAILABLE ANTENNAS... 6 SOFTWARE AND FIRMWARE... 6 WORST-CASE CONFIGURATION AND MODE... 6 DESCRIPTION OF TEST SETUP... 7 6. TEST AND MEASUREMENT EQUIPMENT... 9 7. ANTENNA PORT TEST RESULTS... 10 20 db AND 99% BANDWIDTH... 10 8. RADIATED TEST RESULTS... 13 8.1 LIMITS AND PROCEDURE... 13 8.2 TRANSMITTER BELOW 1 GHz (carrier)... 14 TRANSMITTER BELOW 1 GHz (Spurious)... 15 8.3 TRANSMITTER ABOVE 1 GHz... 16 8.4 RECEIVER BELOW 1 GHz... 17 8.5 RECEIVER ABOVE 1 GHz... 18 9. SETUP PHOTOS... 19 Page 3 of 21

1. ATTESTATION OF TEST RESULTS COMPANY NAME: EUT DESCRIPTION: MODEL: OMRON CORPORATION 6368 NENJOZAKA, OKUSA KOMAKI, AICHI, 485-0802, JAPAN FOB ASSY BIDIRECTIONAL R/C GHW-H001 SERIAL NUMBER: 2 DATE TESTED: September 12 to 21, 2011 APPLICABLE STANDARDS STANDARD CFR 47 Part 15 Subpart C INDUSTRY CANADA RSS-210 Issue 8 Annex 2.9 INDUSTRY CANADA RSS-GEN Issue 3 TEST RESULTS Pass Pass Pass UL Japan, Inc. tested the above equipment in accordance with the requirements set forth in the above standards. All indications of Pass/Fail in this report are opinions expressed by UL Japan, Inc based on interpretations and/or observations of test results. The test results show that the equipment tested is capable of demonstrating compliance with the requirements as documented in this report. Note: The results documented in this report apply only to the tested sample, under the conditions and modes of operation as described herein. This document may not be altered or revised in any way unless done so by UL Japan, Inc. and all revisions are duly noted in the revisions section. Any alteration of this document not carried out by UL Japan, Inc. will constitute fraud and shall nullify the document. No part of this report may be used to claim product certification, approval, or endorsement by any government agency. Approved & Released For UL Japan, Inc. By: Tested By: Go Ishiwata Manager of WiSE Japan, UL Verification Service Makoto Hosaka Engineer of WiSE Japan, UL Verification Service Page 4 of 21

2. TEST METHODOLOGY The tests documented in this report were performed in accordance with ANSI C63.4-2003, FCC CFR 47 Part 2, FCC CFR 47 Part 15, RSS-GEN Issue 3, and RSS-210 Issue 8. 3. FACILITIES AND ACCREDITATION The test sites and measurement facilities used to collect data are located at 1-22-3 Megumigaoka, Hiratsuka-shi, Kanagawa-ken, 259-1220 JAPAN. UL Japan is accredited by JAB, Laboratory Code RTL02610. The full scope of accreditation can be viewed at http://www.jab.or.jp/cgi-bin/jab_exam_proof_j.cgi?page=2&authorization_number=rtl02610 4. CALIBRATION AND UNCERTAINTY MEASURING INSTRUMENT CALIBRATION The measuring equipment utilized to perform the tests documented in this report has been calibrated in accordance with the manufacturer's recommendations, and is traceable to recognized national standards. SAMPLE CALCULATION Where relevant, the following sample calculation is provided: Field Strength (dbuv/m) = Measured Voltage (dbuv) + Antenna Factor (db/m) + Cable Loss (db) Preamp Gain (db) 36.5 dbuv + 18.7 db/m + 0.6 db 26.9 db = 28.9 dbuv/m MEASUREMENT UNCERTAINTY Where relevant, the following measurement uncertainty levels have been estimated for tests performed on the apparatus: Radiated Emission PARAMETER 30MHz-300MHz(3m) 300MHz-1000MHz(3m) 1000MHz-13GHz(3m) UNCERTAINTY +/- 4.9 db +/- 5.0 db +/- 4.9 db Uncertainty figures are valid to a confidence level of 95% using a coverage factor k=2.. Page 5 of 21

5. EQUIPMENT UNDER TEST DESCRIPTION OF EUT The EUT is a FOB ASSY BIDIRECTIONAL R/C operating at 926.85MHz. DESCRIPTION OF AVAILABLE ANTENNAS The radio utilizes an Internal loading antenna with maximum peak gains of -10.44dBi gain. SOFTWARE AND FIRMWARE The test utility software used during testing was EVRemote-Stick_H Ver. 1.0 WORST-CASE CONFIGURATION AND MODE The carrier and spurious was measured in three different orientations X, Y and Z to find worstcase orientation, and final testing for radiated emissions was performed with EUT in following orientation. Horizontal Vertical Carrier Z X Spurious (below 1GHz) Z X Spurious (above 1GHz) Y X Page 6 of 21

DESCRIPTION OF TEST SETUP SUPPORT EQUIPMENT none I/O CABLES none Page 7 of 21

SETUP DIAGRAM FOR RADIATED TESTS EUT Page 8 of 21

6. TEST AND MEASUREMENT EQUIPMENT The following test and measurement equipment was utilized for the tests documented in this report: Control No. Instrument Manufacturer Model No Serial No Test Item Calibration Date * Interval(month) SAF-01 Pre Amplifier SONOMA 310N 290211 RE 2011/02/17 * 12 SAT6-01 Attenuator JFW 50HF-006N - RE 2011/02/17 * 12 SAT3-04 Attenuator JFW 50HF-003N - RE 2011/02/17 * 12 SBA-01 Biconical Antenna Schwarzbeck BBA9106 91032664 RE 2011/08/17 * 12 A1/A3/A5/A7/A8/A13/ SRSE-01 SCC- SCC- A2/A4/A6/A7/A8/A13/ SRSE-01 Coaxial Cable&RF Selector Coaxial Cable&RF Selector Fujikura/Fujikura/Suhner/Suhn 8D2W/12DSFA/141PE/1 -/0901-269(RF er/suhner/suhner/toyo 41PE/141PE/141PE/NS Selector) 4906 Fujikura/Fujikura/Suhner/Suhn 8D2W/12DSFA/141PE/1 -/0901-269(RF er/suhner/suhner/toyo 41PE/141PE/141PE/NS Selector) 4906 RE 2011/04/28 * 12 RE 2011/04/28 * 12 SLA-01 Logperiodic Antenna Schwarzbeck UHALP9108A UHALP 9108-A 0888 RE 2011/08/17 * 12 SOS-01 Humidity Indicator A&D AD-5681 4062555 RE 2011/02/23 * 12 STR-01 Test Receiver Rohde & Schwarz ESU40 100093 RE 2010/10/29 * 12 SJM-12 Measure PROMART SEN1935 - RE - SAEC-01(NSA) Semi-Anechoic Chamber TDK SAEC-01(NSA) 1 RE 2010/09/11 * 12 DV(RE,CE,RFI,MF) - RE - SAF-03 Pre Amplifier SONOMA 310N 290213 RE 2011/02/17 * 12 SAT6-03 Attenuator JFW 50HF-006N - RE 2011/02/17 * 12 SBA-03 Biconical Antenna Schwarzbeck BBA9106 91032666 RE 2010/10/15 * 12 COTS-SEMI-1 EMI Software TSJ TEPTO- SCC- C1/C2/C3/C4/C5/C10 /SRSE-03 Coaxial Cable&RF Selector Fujikura/Fujikura/Suhner/Suhn 8D2W/12DSFA/141PE/1 -/0901-271(RF er/suhner/suhner/toyo 41PE/141PE/141PE/NS Selector) 4906 RE 2011/04/28 * 12 SLA-03 Logperiodic Antenna Schwarzbeck UHALP9108A UHALP 9108-A 0901 RE 2010/10/15 * 12 SOS-05 Humidity Indicator A&D AD-5681 4062518 RE 2011/02/23 * 12 STR-03 Test Receiver Rohde & Schwarz ESI40 100054/040 RE 2011/07/28 * 12 SJM-10 Measure PROMART SEN1935 - RE - SAEC-03(NSA) Semi-Anechoic Chamber TDK SAEC-03(NSA) 3 RE 2010/09/13 * 12 SAF-06 Pre Amplifier TOYO Corporation TPA0118-36 1440491 RE 2011/07/19 * 12 SCC-G03 Coaxial Cable Suhner SUCOFLEX 104A 46499/4A RE 2011/04/28 * 12 SCC-G23 Coaxial Cable Suhner SUCOFLEX 104 297342/4 RE 2011/05/27 * 12 SHA-03 Horn Antenna Schwarzbeck BBHA9120D 9120D-739 RE 2011/08/28 * 12 SSA-02 Spectrum Analyzer Agilent E4448A MY48250106 RE 2011/03/07 * 12 SFL-01 Highpass Filter MICRO-TRONICS HPM50115 001 RE 2010/12/15 * 12 SFL-02 Highpass Filter MICRO-TRONICS HPM50111 051 RE 2010/12/15 * 12 SAT10-04 Attenuator(above1GHz) Agilent 8493C-010 74863 RE 2010/12/15 * 12 The expiration date of the calibration is the end of the expired month. As for some calibrations performed after the tested dates, those test equipment have been controlled by means of an unbroken chains of calibrations. All equipment is calibrated with valid calibrations. Each measurement data is traceable to the national or international standards. Test Item: RE: Radiated emission Page 9 of 21

7. ANTENNA PORT TEST RESULTS 20 db AND 99% BANDWIDTH LIMIT None; for reporting purposes only. TEST PROCEDURE The EUT is placed on a non-conducting table 80 cm above the ground plane. The antenna to EUT distance is 3 meters. The EUT is configured in accordance with ANSI C63.4. The EUT is set to transmit in a continuous mode. The RBW is set to 1% of the 20 db bandwidth. The VBW is set to 3 times the RBW. RESULTS Frequency 20 db Bandwidth 99% Bandwidth (MHz) (khz) (khz) 926.85 125.0000 116.4771 Page 10 of 21

20 db BANDWIDTH Page 11 of 21

99% BANDWIDTH Page 12 of 21

8. RADIATED TEST RESULTS LIMITS 8.1 LIMITS AND PROCEDURE The field strengths measured at 3meters shall not exceed the following: Frequency Range Field Strength (mv/m) (MHz) Fundamental Harmonics 902-928 50 0.5 FCC 15.209 IC RSS-210 Clause 2.6 (Transmitter) & IC RSS-GEN Clause 6 (Receiver) Frequency Range Field Strength Limit Field Strength Limit (MHz) (uv/m) at 3 m (dbuv/m) at 3 m 30-88 100 40 88-216 150 43.5 216-960 200 46 Above 960 500 54 TEST PROCEDURE The EUT is placed on a non-conducting table 80 cm above the ground plane. The antenna to EUT distance is 3 meters. The EUT is configured in accordance with ANSI C63.4. The EUT is set to transmit in a continuous mode. For measurements below 1 GHz the resolution bandwidth is set to 100 khz for peak detection measurements or 120 khz for quasi-peak detection measurements. Peak detection is used unless otherwise noted as quasi-peak. For measurements above 1 GHz the resolution bandwidth is set to 1 MHz, then the video bandwidth is set to 3 MHz for peak measurements and 10 Hz for average measurements. The frequency range of interest is monitored at a fixed antenna height and EUT azimuth. The EUT is rotated through 360 degrees to maximize emissions received. The antenna is scanned from 1 to 4 meters above the ground plane to further maximize the emission. Measurements are made with the antenna polarized in both the vertical and the horizontal positions. Page 13 of 21

8.2 TRANSMITTER BELOW 1 GHz (carrier) Page 14 of 21

TRANSMITTER BELOW 1 GHz (Spurious) Page 15 of 21

8.3 TRANSMITTER ABOVE 1 GHz Page 16 of 21

8.4 RECEIVER BELOW 1 GHz Page 17 of 21

8.5 RECEIVER ABOVE 1 GHz Page 18 of 21