
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
802.11g WLAN Router U SERβS GUIDE V ERSION 1.0, JUN. 2003 802.11g Router Userβs Guide 1 Copyright Statement No part of this publication may be reproduced, stored in a retrieval system, or transmitted in any form or by any means, whether electronic, mechanical, photocopying, recording or otherwise without the prior writing of the publisher. Windows 95/98 and Windows 2000 are trademarks of Microsoft Corp. Pentium is trademark of Intel. All copyright is reserved. 2 TABLE OF CONTENT INTRODUCING THE 802.11G ROUTER ....................................................................................................................................3 O VERVIEW OF THE 802.11 G R OUTER ..........................................................................................................................................3 802.11G ROUTER APPLICATIONS.................................................................................................................................................4 A SECURITY OVERVIEW...............................................................................................................................................................5 802.11G ROUTER FEATURES........................................................................................................................................................5 SETTING UP THE DEVICE..............................................................................................................................................................6 INSTALLING THE 802.11G ROUTER .....................................................................................................................................7 W HAT β S IN THE B OX ? ...................................................................................................................................................................7 A PHYSICAL LOOK AT THE BACK PANEL ......................................................................................................................................8 A PHYSICAL LOOK AT THE FRONT PANEL ....................................................................................................................................9 CONNECTING THE CABLES.........................................................................................................................................................10 HIGH LEVEL CONFIGURATION STEPS REQUIRED FOR THE 802.11G ROUTER.........................................................................10 SETTING UP A WINDOWS PC OR WIRELESS CLIENT AS DHCP CLIENTS..................................................................................11 CONFIGURING A PC RUNNING MS-WINDOWS 95/98/ME: .......................................................................................................11 CONFIGURING A PC RUNNING MS-WINDOWS XP/2000: .........................................................................................................11 CONFIRMING YOUR PCβS IP CONFIGURATION:.........................................................................................................................12 CONNECTING MORE DEVICES THROUGH A HUB TO THE 802.11G ROUTER..........................................................................12 BASIC CONFIGURATION OF THE 802.11G ROUTER ....................................................................................................13 LOGGING ON...............................................................................................................................................................................14 SETUP WIZARD...........................................................................................................................................................................14 ADVANCED SETTINGS............................................................................................................................................................22 O PERATIONAL M ODE .................................................................................................................................................................22 P ASSWORD S ETTINGS .................................................................................................................................................................23 S YSTEM M ANAGEMENT .............................................................................................................................................................24 SNMP S ETTINGS ........................................................................................................................................................................26 DHCP S ERVER S ETTINGS ..........................................................................................................................................................27 MULTIPLE DMZ..........................................................................................................................................................................29 VIRTUAL SERVER SETTINGS......................................................................................................................................................30 SPECIAL APPLICATIONS..............................................................................................................................................................31 MAC FILTERING SETTINGS.......................................................................................................................................................32 IP FILTERING SETTINGS.............................................................................................................................................................34 IP ROUTING SETTINGS...............................................................................................................................................................36 WIRELESS SETTINGS......β¦
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Rev 2 C:\tmp\03LR012 Rr8\fcc\AP FORM.doc 02/08/02 American Telecommunications Certification Body, Inc. 6731 Whittier Avenue McLean, VA 22101 Ph: (703) 847-4700 FAX: (703) 847-6888 Certification Application Package AmericanTCB CERTIFICATION APPLICATION Rev 2 C:\tmp\03LR012 Rr8\fcc\AP FORM.doc 02/08/02 Wistron NeWeb Corporation No. 10-1, Li-hsin Road I, Science-based Industrial Park Hsinchu 300, Taiwan, R. O. C. This TESTING AND CERTIFICATION AGREEMENT ("Agreement") is made effective as of the latter date of execution below, by and between American Telecommunication Certification Body (ATCB) and Wistron NeWeb Corporation (Applicant), collectively referred to as "the Parties". Equipment Description Equipment Description: 802.11g WLAN Router Model Number: RT-200G FCC Rule Part(s): 15C In consideration of the mutual covenants in this Agreement, ATCB or its subcontractors will perform certification inspection services to determine if Applicant's device(s) identified above under Equipment Description (hereinafter "Devices") are in compliance with the laws, regulations and technical standards (hereinafter "Certification Regulations") of the national authorities specified by Applicant in Schedule A. 1. General 1.1 This Agreement is for the purpose of testing and certification and applies to all tests, audits, and certifications for the Devices, and will be pe in accordance with the Certification Regulations of the national authorities specified in Schedule A. 1.2 ATCB retains full discretion to determine if the Devices are compliant with the Certification Regulations of the Countries. In the event that certification is not issued for the aforementioned Devices, ATCB agrees to advise Applicant in writing of the reasons there 1.3 This Agreement may not be assigned to or acquired by any other person, firm, or corporation without ATCB's written authorization. 2. Scope of Performance 2.1 The scope of performance between the Parties shall be agreed to by contract, purchase order or other mutually agreed-upon schedule or order. 2.2 Except as provided in Section 2.3 hereof, testing of all Devices shall take place at ATCB facilities. 2.3 In lieu of section 2.2 above, ATCB may agree to accept test data from any ISO/IEC Guide 25 accredited laboratory or FCC-Listed Laboratory evaluate the Devices on the basis of this data. ATCB may also choose to accept test data from ISO Guide 25 accredited laboratories owned by Applicant, provided the requirements of 2.3.1. are met. 2.3.1 Employees of Applicant shall not participate in any tests, evaluations, or assessments described in sections 2.2 or 2.3 above without the presence and supervision of an ATCB engineer or technician. 2.4 If requested for sample purposes (as required by the FCC), client shall supply ATCB, at no charge, with at least one test sample of each Device, including the necessary peripherals, connecting cables, accessories or other hardware or software (hereinafter collectively referred to as "support equipment") required for testing, evaluation, and assessment. 2.5 Applicant shall supply ATCB, at no charge, with all technical documentation and materials required for the testing, evaluation, and assessment of such Devices and support equipment. 2.5.1 Technical documentation and materials include, but are not limited to, any relevant operating instructions, schematics, block diagrams, photographs, prior tests and certificates concerning the safety of the Devices, its components or support equipment. 2.6 Applicant recognizes that Device samples, including support equipment, may be damaged or completely destroyed when subjected to ATCB's testing and evaluation process. Applicant shall hold ATCB harmless for any such damage or destruction to its equipment. 2.7 If necessary ATCB shall test, evaluate, or assess Applicant's equipment within 30 business days of ATCB's receipt of such Devices, support equipment and technical documentation, and to work diligently until certification is granted or denied, or Applicant decides to abandon testing, evaluation, and assessment on such Devices. AmericanTCB CERTIFICATION APPLICATION Rev 2 C:\tmp\03LR012 Rr8\fcc\AP FORM.doc 02/08/02 2.8 Upon completion of testing, evaluation, or assessment, ATCB shall advise Applicant via an abbreviated report whether the results are favorable, and what, if any, conditions, limitations or qualifications to the requested Certification exist. 2.9 Applicant agrees that a full report is available to Applicant only by special request, and for the separate charge specified. 2.10 Where testing, evaluation, and assessment results in certification, ATCB shall certify Applicant's equipment as compliant with the laws, regulations and/or standards of the Countries within 30 business days from the date testing, evaluation, and assessment is completed. 2.10.1 Section 2.11 may be dependent upon a timely response by the United States Federal Communications Commission (FCC) or its foreign equivalent. 2.10.2 In the event of product certification, Applicant may request that ATCB return or destroy Applicant's Device sample(s), equipment support, and technical documentation. Applicant shall bear all costs associated with the return or destruction of such equipment test sample(s) and support equipment. 2.11 Where testing, evaluation, and assessment does not result in certification, ATCB shall provide cost-free storage for each Device sample, support equipment, and technical documentation for a period not to exceed 30 days, provided Applicant agrees to re-testing within this period when notified of the Device's failure. 2.12 If Applicant does not collect or accept receipt of the Device sample(s), support equipment and technical documentation, despite ATCB having sent notice pursuant to subsection 2.12.1, ATCB reserves the right to dispose of them at Applicant's expense. 2.13 Applicant shall retain all documents forwarded to it by ATCB as required by the Certification Regulations of the Countries. 2.14 Applicβ¦
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Date: Sep. 08, 2003 American Telecommunications Certification Body, Inc. 6731 Whittier Avenue Suite C110 McLean, VA 22101 Subject: supplement for FCC ID: NKRRT200G Dear Bill, Here are our answers for you comments. Ans. 1. See the updated manual. Ans.2. See the additional Block Diagram. Ans.3. See the additional Schematics Ans.4.Due to donβt have the peak power meter and diode detector, we test the output power again by HP peak power analyzer and HP average power meter. The result listed below: Channel 1 Channel 6 Channel 11 HP peak power analyzer 8990A (Peak) 13.24dBm(11b) 15.31dBm (11g) 16.70dBm (11b) 21.82dBm (11g) 10.86dBm (11b) 15.11dBm (11g) HP average power meter 438A (Average) 11.21dBm(11b) 13.21dBm(11g) 14.42dBm(11b) 19.16dBm(11g) 11.02dBm(11b) 13.50dBm(11g) The average power is about 2 dB less than the peak power I have uploaded the additional block diagram, schematics and updated manual onto your website Any insufficiency, please feel free to contact me through E-MAIL. Thanks for your help. Daphne Liu 2003/09/08
Report Number: 03LR012FC Test Date: 2003/08/20 NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 Test Report FOR FCC Part 15 Subpart C of 802.11g WLAN Router Model: RT-200G (Brand: Wistron NeWeb) Applied by: Wistron NeWeb Corporation No. 10-1, Li-hsin Road I, Science-based Industrial Park Hsinchu 300, Taiwan, R. O. C. Test Performed by: (NVLAP Lab. Code: 200234-0) 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:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 -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 3.1 Test Standards and Procedure........................................................................................4 3.2 General Test Conditions..................................................................................................4 4. TEST RESULTS (802.11b)..........................................................5 4.1 Powerline Conducted Emissions [Section 15.207]...........................................................5 4.1.1 EUT Configuration.........................................................................................................................................5 4.1.2 Test Procedure................................................................................................................................................5 4.1.3 EMI Receiver/Spectrum Analyzer Configuration (for the frequencies tested).....................................5 4.1.4 Test Data:.........................................................................................................................................................6 4.2 Bandwidth for DSSS [Section 15.247 (a)(2)]..................................................................8 4.2.1 Test Procedure................................................................................................................................................8 4.2.2 Test Setup........................................................................................................................................................8 4.2.3 Test Data..........................................................................................................................................................8 4.3 DSSS Maximum Peak Output Power [Section 15.247 (b)(1)].......................................12 4.3.1 Test Procedure..............................................................................................................................................12 4.3.2 Test Setup......................................................................................................................................................12 4.3.3 Test Data:.......................................................................................................................................................12 4.4 Radiated Emission Measurement [Section [15.247(c)(4)]..............................................13 4.4.1 EUT Configuration.......................................................................................................................................13 4.4.2 Test Procedure..............................................................................................................................................13 4.4.3 EMI Receiver/Spectrum Analyzer Configuration (for the frequencies tested)...................................13 4.4.4 Test Data (30MHz β 1GHz) :........................................................................................................................14 4.4.5 Test Data ( 1GHz β 25 GHz, Transmitting from Main antenna) .............................................................15 4.5 Band Edge Measurement..............................................................................................18 4.5.1 Test Procedure (Conducted).......................................................................................................................18 4.5.2 Test Setup (Conducted)..............................................................................................................................18 4.5.3 Test Data:.......................................................................................................................................................18 4.5.4 Band Edge measurement Test Procedure (Radiated)..............................................................................21 4.5.5 Test Setup (Radiated)..................................................................................................................................21 4.5.6 Test Data:.......................................................................................................................................................22 4.6 RF Exposure Measurement [Section 15.247(b)(4) & 1.1307(b)]...................................27 4.6.1 Applied Standards........................................................................................................................................27 4.6.2 Limits for Maximum Permissible Exposure (MPE)....................................................................................27 4.6.3 Test Procedure..............................................................................................................................................27 4.6.4 Test Setup.......................β¦
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-28- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 4.6.5 Test Data: Table Maximum Peak Output Power Chennel Frequency (MHz) Peak Power Output (mW) Peak Power Output (dBm) 1 2412 20.78 13.176 6 2437 49.10 16.911 11 2462 11.90 10.754 4.6.6 RF Exposure Calculations: From FCC 1.1310, the maximum permissible RF exposure for an uncontrolled environment is 1 mW/cm2. The Minimum Allowable Distance ,R, of EUT is calculated as follows: Friis Transmission Formula: Pd = (Pout*G)/(4* Γ°*R 2 ) R= [(Pout*G)/(4* Γ°*Pd)] 1/2 Where Pd = power density in mW/cm 2 = 1mW/ cm 2 Maxmium Peak Gain at 2.4GHz: (refer to antenna spec. ) G = antenna numeric gain = Log -1 (dB gain/10) Pout = output power to antenna in mW (Refer to table 4.3.1) Γ° = 3.1416 Since the host equipment is a notebook computer, the normal use distance is more than 20cm, the suitable standard for RF exposure is Β§1.1307(b)(1) MPE test. According to the result of 4.3.1, the calculated minimum allowance distance of EUT is listed below: Table 5.2.1 MPE Minimum Allowance Distance of EUT Channel Frequency (MHz) Maximum output power (mW) Minimum Allowance Distance (cm) 1 2412 20.78 1.336 7 2442 49.10 2.053 11 2462 11.90 1.011 Note: Antenna gain=0.33dBi The minimum allowable distance is very close to the enclosure of the antenna and also very far away from the human being under normal use condition. So, the RF exposure warning or SAR Measurement is not needed. -29- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 4.7 DSSS Peak Power Spectral Density [Section 15.247(d) ] 4.7.1 Test Procedure 1. The Transmitter output of EUT was connected to the spectrum analyzer. Equipment mode: Spectrum analyzer Detector function: Peak mode SPAN:1.5MHz RBW: 3KHz VBW: 30KHz Center frequency: fundamental frequency tested. Sweep time= 500 sec. Cable loss=1.13dB 2. Using Peak Search to read the peak power after Maximum Hold function is completed. 4.7.2 Test Setup Attentuator 4.7.3 Test Data: Table Maximum Peak Output Power Density Chennel Peak Power Output (dBm/3KHz) Limit (dBm/3KHz) Pass/Fail 1 -13.57 8 Pass 6 -9.14 8 Pass 11 -15.46 8 Pass Note: Two RF output( MAIN & AUX) have been test,the worse data shown above. Cable Lose=1.13dB EUT Spectrum Analyzer -30- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 -31- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 -32- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 -33- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 5. TEST RESULTS (802.11g) 5.1 Powerline Conducted Emissions [Section 15.207] 5.1.1 EUT Configuration The conducted emission test setups are in accordance with Figs 9, 10(a) and 10(b) of ANSI C63.4-2001, CFR 47 Part 15 Subpart B; or EN55022:1994/ A1:1995/A2:1997; CISPR 22:1993/A1:1995/A2:1996. 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 power from first the computer-mounted AC outlet and then a floor-mounted AC outlet. 5.1.2 Test Procedure The system was set up as described above, with the EMI diagnostic software running. The main power line conducted EMI tests were run on the hot and neutral conductors of the power cord and the results were recorded. The effect of varying the position of the interface cables has been investigated to find the configuration that produces maximum emission. At the frequencies where the peak values of the emissions were higher than 6dΓ below the applicable limits, the emissions were also measured with the quasi-peak detectors. At the frequencies where the quasi-peak values of the emissions were higher than 6dΓ below the applicable average limits, the emissions were also measured with the average detectors. The highest emissions were analyzed in details by operating the spectrum analyzer in fixed tuned mode to determine the nature of the emissions and to provide information which could be useful in reducing their amplitude. 5.1.3 EMI Receiver/Spectrum Analyzer Configuration (for the frequencies tested) Frequency Range: 150 KHz--30MHz Detector Function: Quasi-Peak/Average Bandwidth (RBW): 9KHz -34- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 5.1.4 Test Data: Power Line Conducted Emissions (Hot) Chaβ¦
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-48- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 Band Edge Conducted Measurement -49- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 5.5.4 Test Procedure (Radiated) 1. Antenna and Turntable test procedure same as Radiated Emission Measurement. Equipment mode: Spectrum analyzer Detector function: Peak mode SPAN: 100MHz RBW: 100KHz VBW: 100KHz Center frequency: 2.395GHz, 2.48 GHz. 2. Using Peak Search to read the peak power of Carrier frequencies after Maximum Hold function is completed. 3. Find the next peak frequency outside the operation frequency band. 4. For peak frequency emission level measurement in Restricted Band , Change RBW: 1MHz , VBW: 10Hz, Span: 100MHz. 5. Get the spectrum reading after Maximum Hold function is completed. 5.5.5 Test Setup (Radiated) Same as Radiated Emission Measurement -50- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 5.5.6 Test Data: Table Band Edge measurement (Radiated) Channel Frequency (MHz) Spectrum Reading (dBuV) Correction Factor (dB/m) Emission Level (dBuV/m) Limit: > 20dB (dBC) Limit (dBuV/m) Equip. Setup VBW Pass or Fail 1(peak mode) 2411.2 77.85 31.67 109.52 --- ----- 100KHz ----- Outside band 23999 51.25 31.67 82.92 26.60 ----- 100KHz Pass 1(average mode) 2412.7 73.29 31.67 104.96 --- ----- 10Hz ----- Restricted band 2390.0 19.99 31.67 51.66 ----- 54 10Hz Pass 11(peak mode) 2461.2 75.58 31.64 107.22 ---- ----- 100KHz ----- Outside band 2474.6 50.13 31.64 81.77 25.45 ----- 100KHz Pass 11(average mode) 2462.7 72.01 31.64 103.65 ---- ----- 10Hz ----- Restricted band 2483.5 19.09 31.64 50.73 ----- 54 10Hz Pass Note: The Spectrum plot of emission level measurement in Restricted band is attached. Emission Level = Spectrum Reading + Correction Factor Correction Factor = Antenna Factor + cable loss β amplifier gain Both Horizontal and Vertical polarization have been tested and the worst data is listed above. -51- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 Band Edge measurement for radiated emission in Restricted Band(Radiated) Peak Mode (Channel 1) -52- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 Band Edge measurement for radiated emission in Restricted Band(Radiated) Average Mode (Channel 1) -53- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 Band Edge measurement for radiated emission in Restricted Band(Radiated) Peak Mode (Channel 11) -54- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 Band Edge measurement for radiated emission in Restricted Band(Radiated) Average Mode (Channel 11) -55- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 5.6 RF Exposure Measurement [Section 15.247(b)(4) & 1.1307(b)] 5.6.1 Applied Standards FCC 47 CFR Part 15 Section 15.247(b)(5) & Part 1 Section 1.1307(b)(1) 5.6.2 Limits for Maximum Permissible Exposure (MPE) A. Limits for Occupational/Controlled Exposure Frequency Range (MHz) Electric Field Strength(V/m) Magnetic Field Strength (A/m) Power Density (S) (mW/cm2) Averagine Time (Minutes) 300-1500 ---- ----- f/300 6 1500-100,000 ---- ----- 5 6 B. Limits for General Population/Uncontrolled Exposure Frequency Range (MHz) Electric Field Strength(V/m) Magnetic Field Strength (A/m) Power Density (S) (mW/cm2) Averagine Time (Minutes) 300-1500 ---- ----- f/1500 30 1500-100,000 ---- ----- 1.0 30 5.6.3 Test Procedure The Transmitter output of EUT was connected to the peak power analyzer through an attenuator. 5.6.4 Test Setup Peak Power Sensor EUT Peak Power Analyzer -56- FCC ID:NKRRT200G International Standards Laboratory Report Number: 03LR012FC NVLAP Lab. Code: 200234-0; VCCI: R-1435, C-1440; NEMKO Aut. No: ELA 113; BSMI Lab. Code: SL2-IN-E-0013 5.6.5 Test Data: Table Maximum Peak Output Power Chennel Frequency (MHz) Peak Power Output (mW) Peak Power Output (dBm) 1 2412 34.261 15.348 6 2437 156.96 21.958 11 2462 31.996 15.051 5.6.6 RF Exposure Calculations: From FCC 1.1310, the maximum permissible RF exposure for an uncontrolled environment is 1 mW/cm2. Theβ¦
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No. 65, Ku Dai Keng St. Β· Hsichih Β· Taiwan
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 152.00 mW |
Enterprise product
Equipment Class
NII - Unlicensed National Information Infrastructure TXTouchscreen
Equipment Class
NII - Unlicensed National Information Infrastructure TXDoor/Window Sensor
Equipment Class
DXX - Part 15 Low Power Communication Device TransmitterTELE2
Equipment Class
NII - Unlicensed National Information Infrastructure TXNAD (Network Access Device)
Equipment Class
CXX - Communications Rcvr for use w/ licensed Tx and CBs