
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
This equipment complies with the FCC RF radiation exposure limits set forth for an uncontrolled environment. This equipment should be installed and operated with a minimum distance of 20 centimeters between the radiator and your body.
Important Product Information GuideAutonet Mobile customer support line: 1-800-977-2107 © 2009 Autonet Mobile, Inc. P/N: 186-1100-001 Rev. 01 Important Product Information Guide Welcome Quickstart Guide Configuring the In-Car Router Configuring Wireless Settings Configuring Wireless Security Settings Configuring Login Screen Changing the Password on Your In-Car Router Checking the Connection Status of the In-Car Router Troubleshooting Guide Safety Policy Acceptable Use Policy Autonet Mobile Software License Autonet Mobile Limited Warranty and Liability Legal Disclosure 2 4 5 6 9 10 11 12 13 14 20 24 26 27 23 Welcome to Autonet Mobile To activate your account with Autonet Mobile, please submit a completed service agreement online or by fax. Online Go to https://signup.autonetmobile.com Fax Download the service agreement from: https://signup autonetmobile.com and fax the completed agreement to 415-840-1725. If you have any questions please call 1-800-977-2107. For technical support call the Autonet Mobile customer service center: 1-800-977-2107. Autonet Mobile assumes no responsibility for the configurations, security, or data files on your wireless device resulting from connection to Autonet Mobile’s network. Anti-virus, privacy and security protection is the responsibility of the user. Do not operate the In- Car Router while driving or perform any function that takes your attention away from safely driving your vehicle. Any function that requires prolonged attention should be performed after coming to a complete stop. Always stop the vehicle in a safe location before performing these functions. Failure to do so may result in an accident. If the In-Car Router is found, please call: 1-800-977-2107. The router is automatically disabled if lost. 45 Quickstart Guide Step 1 Turn your car to power up Autonet Mobile. Shortly “autonet” will appear in your wireless network list. Step 2 In your wireless network list connect to the wireless network that contains the name “autonet”. Step 3 Open your web browser. Click on the login button. Step 4 Happy surfing! Configuring the In-Car Router It is highly recommended that the user enable WEP security and change the default password on the Autonet Mobile In-Car Router. Configuring the WiFi interface on your In-Car Router The unit’s serial number is is a ten digit hexadecimal number located in 2 places. It is located: 1. On the back of the In-Car Router 2. On the front of the quickstart guide. If you have trouble locating the serial number of the router please call our customer support line at 1-800-977-2107 for assistance. Open a web browser and go to the URL: http://www. autonetrouter.com/admin login as username “autonet” and use the unit’s serial number as the password. (e.g. 0024C76258 ) and click on the “login” button. or 67 Configuring Wireless Settings Click on “Wireless Settings” ESSID Extended Service Set ID. The ESSID is the identifying name of a wireless network - strictly it is the identifying name of a wireless access point. It allows one wireless network to be clearly distinguishable from another. The default ESSID is autonet- XXXX, where XXXX is the last 4 digits of the In-Car Router’s serial number. It is recommended that you keep this ESSID in order to distinguish your router from other routers that may be in the area. WEP key The WEP key is not shown if it is set. You do not have to set it, if you want it to remain the same. To set the current encryption key, just enter the key in hex digits as XXXXXXXXXX. The key must be 10 hex digits, (e.G. 1234567890 ) You can also enter the key as an ASCII string by using the s: prefix. The ASCII string must be five characters, (e.g. s:smile ). To disable WEP, enter “off” as the WEP key. Radio Mode This allows you to select whether the radio is in 802.11b, 802.11g and 802.11a mode. Not all routers support all modes, so only the supported modes for your In-Car Router are shown. Channel Direct communication between an 802.11 Radio card and an access point occurs over a common channel frequency. The FCC allows channels 1 through 11 within the U.S. An important concept to note regarding channel assignments is that the channel actually represents the center frequency that the transceiver within the radio and access point uses (e.g., 2.412 GHz for channel 1 and 2.417 GHz for channel 2). There is only 5 MHz separation between the center frequencies, and an 802.11b signal occupies approximately 30 MHz of the frequency spectrum. The signal falls within about 15 MHz of each side of the center frequency. As a result, an 802.11b signal overlaps with several adjacent channel frequencies. This leaves you with only three channels (channels 1, 6, and 11 for the U.S.) That you can use without causing interference between access points. 89 Bit rate This allows you to set the bit rate in Mbs. The bit rate is the speed at which bits are transmitted over the medium. The user speed of the link is lower due to medium sharing and various overhead. Select a value to lock the card to a particular bit rate. If you specify auto, the driver will use all bit rates to find an optimum rate. RTS threshold RTS/CTS adds a handshake before each packet transmission to make sure that the channel is clear. This adds overhead, but Increases performance in case of hidden nodes or a large number of active nodes. This parameter sets the size of the smallest packet for which the node sends rts; a value equal to the maximum packet size disables the mechanism. You may also set this parameter to off. Fragmentation threshold Fragmentation allows to split an IP packet in a burst of smaller fragments transmitted on the medium. In most cases this adds overhead, but in a very noisy environment this reduces the error penalty and allow packets to get through interference bursts. This parameter sets the maximum fragment size. You may also set this to off to disable the mechanism. TxPower This allows you to set the transmit power of the radio. Setting a l…
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Bottom Top Top PCB
Model WH-2.4GHZ-I2.15 Main Techmical pecfications Frequency 2400-2483MHZ Bandwidth 830MHz VSWR ≤1.8 Gain 2.15dBi Polarizatio Type Vertical Rated Power 50w Input Impedcion 50Ω Connector Type U.FL Dimensions Φ35*7*1(mm) Weight 14g
MET Laboratories, Inc. Safety Certification - EMI - Telecom Environmental Simulation 914 WEST PATAPSCO AVENUE ! BALTIMORE, MARYLAND 21230-3432 ! PHONE (410) 354-3300 ! FAX (410) 354-3313 33439 WESTERN AVENUE ! UNION CITY, CALIFORNIA 94587 ! PHONE (510) 489-6300 ! FAX (510) 489-6372 3162 BELICK STREET ! SANTA CLARA, CA 95054 ! PHONE (408) 748-3585 ! FAX (510) 489-6372 13301 MCCALLEN PASS ! AUSTIN, TX 78753 ! PHONE (512) 287-2500 ! FAX (512) 287-2513 DOC-EMC700 9/17/2007 Electromagnetic Compatibility MPE Calculation For the Autonet Mobile Model AS-STWRTR-01 FCC ID: VOI-ANMSTWRTR-02 Tested under Title 47 of the Code of Federal Regulations (CFR), Part 15 Subpart C MET Report: EMCS32446-MPE Rev. 2 October 13, 2011 Prepared For: Autonet Mobile 1700 Montgomery Ste. 111 San Francisco, CA 94111 Prepared By: MET Laboratories, Inc. 3162 Belick Street Santa Clara, CA 95054 Electromagnetic Compatibility Autonet Mobile MPE Calculation AS-STWRTR-01 CFR Title 47, Part 15, Subpart C MET Report: EMCS81435-MPE Rev. 2 © 2011, MET Laboratories, Inc. Page 2 of 6 Electromagnetic Compatibility MPE Calculation For the Autonet Mobile Model AS-STWRTR-01 FCC ID: VOI-ANMSTWRTR-02 Tested under Title 47 of the Code of Federal Regulations (CFR), Part 15 Subpart C MET Report: EMCS32446-MPE Rev. 2 Anderson Soungpanya Jennifer Warnell Manager, Electromagnetic Compatibility Lab Documentation Department Engineering Statement: The measurements shown in this report were made in accordance with the procedures indicated, and the emissions from this equipment were found to be within the applicable limits. I assume full responsibility for the accuracy and completeness of these measurements, and for the qualifications of all persons taking them. It is further stated that upon the basis of the measurements made, the equipment tested is capable of operation in accordance with the requirements of Title 47 of the CFR, Part 15, Subpart C under normal use and maintenance. Electromagnetic Compatibility Autonet Mobile MPE Calculation AS-STWRTR-01 CFR Title 47, Part 15, Subpart C MET Report: EMCS81435-MPE Rev. 2 © 2011, MET Laboratories, Inc. Page 3 of 6 Electromagnetic Compatibility Criteria for Intentional Radiators § 15.247(b) Peak Power Output and RF Exposure Test Purpose: Co-location of two modules, Wistron, FCC ID: NKRCM9 (2.15dBi/2.19dBi) and FUSION, FCC ID: XU9-FW2770P (0.8dBi/3dBi). RF Exposure Requirements: §1.1307(b)(1) and §1.1307(b)(2): Systems operating under the provisions of this section shall be operated in a manner that ensures that the public is not exposed to radio frequency energy levels in excess of the Commission’s guidelines. RF Radiation Exposure Limit: §1.1310: As specified in this section, the Maximum Permissible Exposure (MPE) Limit shall be used to evaluate the environmental impact of human exposure to radiofrequency (RF) radiation as specified in Sec. 1.1307(b), except in the case of portable devices which shall be evaluated according to the provisions of Sec. 2.1093 of this chapter. Electromagnetic Compatibility Autonet Mobile MPE Calculation AS-STWRTR-01 CFR Title 47, Part 15, Subpart C MET Report: EMCS81435-MPE Rev. 2 © 2011, MET Laboratories, Inc. Page 4 of 6 MPE Calculation - Wistron Module: 2.4GHz & 5.725-5.825GHz (FCC ID: NKRCM9) Equation from page 18 of OET 65, Edition 97-01 S = PG / 4R 2 or R = √PG / 4S MPE Limit Calculation: EUT’s operating frequencies @ 2412 - 2462MHz; highest conducted power = 22.912dBm (peak) therefore, Limit for Uncontrolled exposure: 1 mW/cm 2 or 10 W/m 2 EUT maximum antenna gain = 2.15 dBi. where, S = Power Density (mW/cm 2 ) P = Power Input to antenna (195.524mW) G = Antenna Gain (1.64 numeric) S = (195.524*1.64/ 4*3.14*20.0 2 )= (320.7746 / 5024) = 0.063mW/cm 2 @ 20cm separation MPE Limit Calculation: EUT’s operating frequencies @ 5745 - 5805MHz; highest conducted power = 20.04dBm (peak) therefore, Limit for Uncontrolled exposure: 1 mW/cm 2 or 10 W/m 2 EUT maximum antenna gain = 2.19 dBi. where, S = Power Density (mW/cm 2 ) P = Power Input to antenna (100.925mW) G = Antenna Gain (1.65 numeric) S = (100.925*1.65/ 4*3.14*20.0 2 )= (165.1091/ 5024) = 0.033mW/cm 2 @ 20cm separation Electromagnetic Compatibility Autonet Mobile MPE Calculation AS-STWRTR-01 CFR Title 47, Part 15, Subpart C MET Report: EMCS81435-MPE Rev. 2 © 2011, MET Laboratories, Inc. Page 5 of 6 MPE Calculation - Fusion Module: 824.7 – 848.31MHz & 1851.25-1908.75MHz (FCC ID: XU9-FW2770P) Equation from page 18 of OET 65, Edition 97-01 S = PG / 4R 2 or R = √PG / 4S MPE Limit Calculation: EUT’s operating frequencies @ 824.7 – 848.3MHz; highest conducted power = 24.67dBm (peak) therefore, Limit for Uncontrolled exposure: 0.56 mW/cm 2 or 5.6 W/m 2 EUT maximum antenna gain = 0.8 dBi. where, S = Power Density (mW/cm 2 ) P = Power Input to antenna (293.09mW) G = Antenna Gain (1.20 numeric) S = (293.09*1.20/ 4*3.14*20.0 2 ) = (352.37 / 5024) = 0.0701mW/cm 2 @ 20cm separation MPE Limit Calculation: EUT’s operating frequencies @ 1851.25 – 1908.75MHz; highest conducted power = 24.04dBm (peak) therefore, Limit for Uncontrolled exposure: 1 mW/cm 2 or 10 W/m 2 EUT maximum antenna gain = 3 dBi. where, S = Power Density (mW/cm 2 ) P = Power Input to antenna (253.51mW) G = Antenna Gain (1.99 numeric) S = (253.51*1.99/ 4*3.14*20.0 2 ) = (505.82 / 5024) = 0.1001cm 2 @ 20cm separation Electromagnetic Compatibility Autonet Mobile MPE Calculation AS-STWRTR-01 CFR Title 47, Part 15, Subpart C MET Report: EMCS81435-MPE Rev. 2 © 2011, MET Laboratories, Inc. Page 6 of 6 MPE Calculation – Co-Location of Wistron Module, FCC ID: NKRCM9 & Fusion Module, FCC ID: XU9-FW2770P MPE Summary: Frequency Range MPE Result (mW/cm 2 ) Limit (mW/cm 2 ) 2.4GHz 0.0630 1 5.745-5.805GHz 0.0330 1 824.7 – 848.3MHz 0.0701 0.56 1851.25 – 1908.75MHz 0.1001 1 Test Requirements: [MPE(f1)/Limit(f1) + MPE(f2)/Limit(f2)] < 1 Test Results: MPE(f1) MPE(f2) Calculation [MPE(f1)/Limit(f1) + MPE(f2)/Limit(f2)] MPE Result (mW/cm 2 ) Frequency (MHZ) Frequency (MHZ) 2412 - 2…
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Report Number: ISL-04LR018FC Issue Date: 2004/05/26 HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 ISL-T10-R29-1 PART I (For Antenna 1: Vendor:WNC, Model DMA) Test Report for FCC Part 15 Subpart B & C & E of WLAN a+b+g mini-PCI Module Model CM9 (Brand: Wistron NeWeb) Applied by: Wistron Neweb Corporation No. 10-1, Li-hsin Road 1, Science-based Indus Taiwan, R. O. C. Test Performed by: International Standards Laboratory No. 120, Lane 180, San Ho Tsuen, Hsin Ho Rd. Lung-Tan Hsiang, Tao Yuan County 325 Taiwan, R.O.C. Tel:(03)407-1718 Fax:(03)407-1738 FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 -i- Contents of Report 1. General.............................................................................................................................. 1 1.1 Certification of Accuracy of Test Data............................................................................. 1 2. Test Results Summary........................................................................................................ 2 3. Description of Equipment Under Test (EUT)....................................................................... 3 The Power Setting of the test program................................................................................... 5 4. TEST RESULTS (802.11a) (for Antenna DMA)................................................................ 6 4.1 Maximum Peak Output Power [Section 15.407 (a)(1)(2)(3)]........................................... 6 4.1.1 Test Procedure........................................................................................................ 6 4.1.2 Test Setup............................................................................................................... 6 4.1.3 Test Data: (Normal Mode)....................................................................................... 6 4.1.4 Test Data: (Turbo Mode)......................................................................................... 7 4.2 Peak Power Spectral Density [Section 15.407(a)(1)(2)(3) ].......................................... 14 4.2.1 Test Procedure...................................................................................................... 14 4.2.2 Test Setup............................................................................................................. 14 4.2.3 Test Data: (Normal Mode).................................................................................... 14 4.2.4 Test Data: (Turbo Mode)...................................................................................... 15 4.3 Peak Power Excursion Measurement [Section 15.407(a)(6) ]....................................... 22 4.3.1 Test Procedure...................................................................................................... 22 4.3.2 Test Setup............................................................................................................. 22 4.3.3 Test Data: (Normal Mode).................................................................................... 22 4.3.4 Test Data: (Turbo Mode)...................................................................................... 23 4.4 Powerline Conducted Emissions [Section 15.207 & 15.407 (b)(5) ].............................. 30 4.4.1 EUT Configuration................................................................................................. 30 4.4.2 Test Procedure...................................................................................................... 30 4.4.3 EMI Receiver/Spectrum Analyzer Configuration (for the frequencies tested)............ 30 4.4.4 Test Data:.............................................................................................................. 31 4.5 Radiated Emission Measurement [Section 15.209 & 15.407(b)(5)]............................... 33 4.5.1 EUT Configuration................................................................................................. 33 4.5.2 Test Procedure...................................................................................................... 33 4.5.3 EMI Receiver/Spectrum Analyzer Configuration..................................................... 33 4.5.4 Test Data (30MHz – 1GHz) .................................................................................. 34 4.5.5 Test Data ( 1GHz – 40 GHz, Transmitting ) ........................................................... 35 4.6 Band Edge Measurement (Section 15.407 (b) (1) (2))................................................... 46 4.6.1 Test Procedure (Conducted).................................................................................. 46 4.6.2 Test Setup (Conducted)......................................................................................... 46 4.6.3 Test Data (conducted):........................................................................................... 47 4.6.4 Bandedge Measurement Test Procedure (Radiated)................................................ 52 4.6.5 Test Setup (Radiated)............................................................................................ 53 4.6.6 Test Data (Radiated):............................................................................................. 54 FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 -ii- 4.7 RF Exposure Measurement [Section 15.407(f)(4) & 1.1307(b)].................................... 64 4.8 Frequen…
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-17- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 -18- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 -19- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 -20- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 -21- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 -22- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 4.3 Peak Power Excursion Measurement [Section 15.407(a)(6) ] 4.3.1 Test Procedure 1. The Transmitter output of EUT was connected to the spectrum analyzer. 2. Frequency SPAN of Spectrum: 30MHz or 50MHz. 3. Trace 1 : RBW: 1MHz, VBW: 3MHz. Using positive detector and Max -hold 4. Trace 2 : RBW: 1MHz, VBW: 3MHz. Using Sample detector and Max-hold 5. Record the largest difference between Trace 1 and Trace 2. 4.3.2 Test Setup 4.3.3 Test Data: (Normal Mode) Peak Power Excursion Temp. (deg. C): 25 Test Engr: Mailes Hsieh Humidity (%): 50 Channel Frequency (Mhz) Peak Power Excursion (dBm) Limit dBm Pass/Fail 1 5180 11.98 13 Pass 4 5240 11.73 13 Pass 5 5260 11.70 13 Pass 8 5320 12.05 13 Pass 9 5745 12.23 13 Pass 12 5805 11.04 13 Pass EUT Spectrum Analyzer -23- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 4.3.4 Test Data: (Turbo Mode) Peak Power Excursion Temp. (deg. C): 25 Test Engr: Mailes Hsieh Humidity (%): 50 Channel Frequency (Mhz) Peak Power Excursion (dBm) Limit dBm Pass/Fail 1 5210 11.98 13 Pass 2 5250 11.01 13 Pass 3 5290 10.58 13 Pass 4 5760 10.63 13 Pass 5 5800 11.86 13 Pass -24- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 -25- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 -26- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 -27- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 -28- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 -29- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 -30- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 4.4 Powerline Conducted Emissions [Section 15.207 & 15.407 (b)(5) ] 4.4.1 EUT Configuration The EUT was set up on the non-conductive table that is 1.0 by 1.5 meter, 80cm above ground. The wall of the shielded room was located 40cm to the rear of the EUT. Power to the EUT was provided through the LISN. The impedance vs. frequency characteristic of the LISN is complied with the limit shown on the figure 1 of ANSI C63.4-2001. Both lines (neutral and hot) were connected to the LISN in series at testing. A coaxial-type connector which provides one 50 ohms terminating impedance was provided for connecting the test instrument. The excess length of the power cord was folded back and forth at the center of the lead so as to form a bundle not exceeding 40cm in length. Any changes made to the configuration, or modifications made to the EUT, during testing are noted in the following test record. If the EUT is a Personal Computer or a peripheral of personal computer, and the personal computer has an auxiliary AC outlet which can be used for providing power to an external monitor, then all measurements will be made with the monitor…
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-37- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 1GHz~ 40 GHz (Horizontal), Normal Mode, Channel 5 : 5260 MHz Operator: Mailes Hsieh RBW: 1 MHz Humidity (%): 46 Temperature (C): 25 Frequency Rx_R. Ant_F. Cab_L. PreAmpl Emission Limit Margin A.Tower T.Table MHz dBuV dB/m dB dB dBuV/m dBuV/m dB cm deg 1467.53 62.85 26.46 0.83 46.21 43.94 54.00 -10.06 102 118 2201.20 52.80 30.62 1.08 46.20 38.29 54.00 -15.71 101 70 4571.23 50.53 33.70 1.87 46.66 39.44 54.00 -14.56 100 45 7793.61 46.12 40.46 2.46 44.72 44.32 54.00 -9.68 101 145 11690.2 38.49 42.29 3.05 42.03 41.80 54.00 -12.20 101 349 15777.6 41.90 43.69 5.73 41.87 49.45 54.00 -4.55 101 259 1GHz~ 40 GHz (Vertical), Normal Mode, Channel 5 : 5260 MHz Operator: Mailes Hsieh RBW: 1 MHz Humidity (%): 46 Temperature (C): 25 Frequency Rx_R. Ant_F. Cab_L. PreAmpl Emission Limit Margin A.Tower T.Table MHz dBuV dB/m dB dB dBuV/m dBuV/m dB cm deg 2388.21 53.99 30.54 1.14 46.21 39.47 54.00 -14.53 101 74 3772.83 50.92 31.73 1.61 46.36 37.90 54.00 -16.10 101 66 4175.62 51.17 32.49 1.74 46.28 39.12 54.00 -14.88 103 52 7225.37 44.45 39.73 2.36 46.21 40.33 54.00 -13.67 101 135 11484.6 38.02 42.34 3.02 41.56 41.83 54.00 -12.17 100 322 15782.5 43.54 43.70 5.74 41.85 51.13 54.00 -2.87 100 275 Note: “ * ”: Fundamental Frequency “ pk”: peak reading “av”: average reading The Spectrum noise level+Correction Factor<Limit-6 dB Margin = Corrected Amplitude – Limit Corrected Amplitude=Radiated Amplitude+Antenna Correction Factor+Cable Loss-Pre-Amplifier Gain A margin of -8dB means that the emission is 8dB below the limit. The restricted band limit is 54dBuV, the out of band limit is 68.3dBuV. All test data can meet this both limit. (E=mV P / 3 301000000 μ, –27dBm EIRP =68.3 dBuV) All frequencies from 1GHz to 40 GHz have been tested. -38- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 1GHz~ 40 GHz (Horizontal), Normal Mode, Channel 8: 5320 MHz Operator: Mailes Hsieh RBW: 1 MHz Humidity (%): 46 Temperature (C): 25 Frequency Rx_R. Ant_F. Cab_L. PreAmpl Emission Limit Margin A.Tower T.Table MHz dBuV dB/m dB dB dBuV/m dBuV/m dB cm deg 1877.52 53.76 29.70 0.97 46.20 38.22 54.00 -15.78 101 166 3869.93 51.38 31.84 1.64 46.25 38.61 54.00 -15.39 101 68 4326.67 51.09 32.91 1.79 46.43 39.37 54.00 -14.63 100 66 7746.85 45.61 40.29 2.45 44.93 43.42 54.00 -10.58 102 42 11142.0 38.34 41.04 2.98 40.82 41.54 54.00 -12.46 101 302 15958.7 41.10 44.27 5.99 41.27 50.09 54.00 -3.91 102 150 1GHz~ 40 GHz (Vertical), Normal Mode, Channel 8: 5320 MHz Operator: Mailes Hsieh RBW: 1 MHz Humidity (%): 46 Temperature (C): 25 Frequency Rx_R. Ant_F. Cab_L. PreAmpl Emission Limit Margin A.Tower T.Table MHz dBuV dB/m dB dB dBuV/m dBuV/m dB cm deg 7991.41 45.57 41.17 2.50 43.79 45.45 54.00 -8.55 102 145 1708.49 60.56 28.31 0.91 46.21 43.57 54.00 -10.43 102 101 2391.81 53.78 30.54 1.14 46.21 39.26 54.00 -14.74 100 82 4060.54 50.72 32.17 1.70 46.17 38.42 54.00 -15.58 101 44 11323.1 37.86 41.73 3.00 41.21 41.38 54.00 -12.62 100 204 15958.7 41.16 44.27 5.99 41.27 50.16 54.00 -3.84 102 210 Note: “ * ”: Fundamental Frequency “ pk”: peak reading “av”: average reading The Spectrum noise level+Correction Factor<Limit-6 dB Margin = Corrected Amplitude – Limit Corrected Amplitude=Radiated Amplitude+Antenna Correction Factor+Cable Loss-Pre-Amplifier Gain A margin of -8dB means that the emission is 8dB below the limit. The restricted band limit is 54dBuV, the out of band limit is 68.3dBuV. All test data can meet this both limit. (E=mV P / 3 301000000 μ, –27dBm EIRP =68.3 dBuV) All frequencies from 1GHz to 40 GHz have been tested. -39- FCC ID:NKRCM9 International Standards Laboratory Report Number: 04LR018FC HC LAB:NVLAP:200234-0;VCCI: R-341,C-354;NEMKO:ELA 113a,113c;BSMI:SL2-IN-E-0037;SL2-R1-E-0037;CNLA:1178 LT LAB:NVLAP:200234-0;VCCI: R-1435,C-1440;NEMKO:ELA 113b,113d;BSMI:SL2-IN-E-0013;CNLA:0997 1GHz~ 40 GHz (Horizontal), Normal Mode, Channel 9: 5745 MHz Operator: Mailes Hsieh RBW: 1 MHz Humidity (%): 46 Temperature (C): 25 Frequency Rx_R. Ant_F. Cab_L. PreAmpl Emission Limit Margin A.Tower T.Table MHz dBuV dB/m dB dB dBuV/m dBuV/m dB cm deg 3715.28 51.41 31.66 1.59 46.42 38.23 54.00 -15.77 102 225 4110.89 50.93 32.31 1.72 46.22 38.74 54.00 -15.26 102 95 4438.16 51.07 33.23 1.83 46.54 39.59 54.00 -14.41 100 85 7829.57 45.05 40.59 2.47 44.55 43.55 54.00 -10.45 101 42 11425.9 38.50 42.12 3.02 41.43 42.20 54.00 -11.80 102 177 17231.5 39.64 46.69 6.31 42.09 50.55 54.00 -3.45 102 304 1GHz~ 40 GHz (Vertical), Normal Mode, Channel 9: 5745 MHz Operator: Mailes Hsieh RBW: 1 MHz Humidity (%): 46 Temperature (C): 25 Frequency Rx_R. Ant_F. Cab_L. PreAmpl Emission Limit Margin A.Tower T.Table MHz dBuV dB/m dB dB dBuV/m dBuV/m dB cm deg 2769.43 54.48 30.66 1.27 46.41 40.01 54.00 -13.99 101 72 4074.93 51.00 32.21 1.71 46.18 38.73 54.00 -15.27 101 63 4362.64 50.96 33.02 1.80 46.47 39.31 54.00 -14.69 101 45 7649.75 45.14 39.94 2.44 45.39 42.13 54.00 -11.87 100 226 11504.2 38.52 42.40 3.03 41.60 42.34 54.00 -11.66 102 320 17231.5 39.68 46.69 6.31 42.09 50.59 54.00 -3.41 102 150 Note: “ * ”: Fundamental Frequency “ pk”: peak re…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 196.00 mW |

Telematics Control Unit
Equipment Class
DTS - Digital Transmission SystemMobile Router
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
GPS Tracker
Equipment Class
PCB - PCS Licensed Transmitter
Mobile Router
Equipment Class
PCB - PCS Licensed Transmitter
Mobile Router
Equipment Class
PCB - PCS Licensed Transmitter