
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Quick Installation Guide RG300EX Lite Wireless N Router CONTENTS English..........................................................................................1-1 French..........................................................................................2-1 Por tuguese....................................................................................3-1 Spanish......................................................................................... 4-1 Quick Installation Guide RG300EX LITE Wireless N Router RG300EX LITE 1-1 1. Connecting the Router Before installing the router, you should have connected your PC to the Internet through your broadband service successfully. If there are any problems, please contact with your ISP. After that, please install the router according to the following steps. Don't forget to pull out the power plug and keep your hands dry. a. Power off your PC(s), Cable/DSL modem, and the router. b. Locate an optimum location for the router. The best place is usually near the center of the area in which your PC(s) will wirelessly connect. c. Adjust the direction of the antenna. Normally, upright is a good direction. d. Connect the PC(s) and each Switch/Hub on your LAN to the LAN Ports on the router, shown in the following figure. e. Connect the DSL/Cable Modem/Ethernet to the WAN port on the router, shown in the following figure. f. Connect the DC power adapter to the DC power socket on the router, and the other end into an electrical outlet. The router will start to work automatically. g. Power on your PC(s) and Cable/DSL modem. h. When all of the devices boot up completely, make sure that the router's LEDs light as follows: ¾ Power LED: Lit up RG300EX LITE 1-2 ¾ CPU LED: Flashing ¾ Link/Act LEDs(WAN&LAN): Lit up ¾ WLAN LED: Flashing 2. Login to the Router To login to the router, you should set up the TCP/IP Protocol in "Obtain an IP address automatically" mode on your PC(s). For the detailed instructions as to how to do this, please refer to Appendix B in the User Guide on the Resource CD. a. To access the configuration utility, open a web-browser and type in the default address http://192.168.0.1 in the address field of the browser. b. After a moment, a login window will appear. Enter admin for the User Name and Password, both in lower case letters. Then click OK or press Enter. 3. Connecting to the Internet a. After successfully login, you can configure the router using the web browser. Please click the Quick Setup link on the left of the main menu and the Quick Setup screen will appear. RG300EX LITE 1-3 b. Click Next, the Choose WAN Connection Type screen will appear. Please select one compatible with your ISP. Click Next to configure the necessary network parameters. I. If you have a PPPoE account, select PPPoE and click Next to load the following figure, and enter User Name and Password provided by your ISP. II. If you have a Dynamic IP (or automatic IP) account, select Dynamic IP and click Next, the router will automatically get IP parameter from your ISP without entering any parameters. III. If you have a fixed IP (or static IP) account, select Static IP and click Next RG300EX LITE 1-4 to load the following figure, and fill the blanks with the parameters pr ovided by your ISP. c. After you complete the above, click Next, the Wireless settings screen wil l appear as the following: d. At the end of th e Quick Set up, cli ck the Finish button to exit thi s Quick Setup. The router should now be connecting you to the Internet. 4. WPS configuration WPS function all ows the Adapter to joi n a wirele ss network quickl y. RG300EX LITE 1-5 If the wireless card supports Wi-Fi Protected Setup (WPS), you can establish a wireless connection between wireless card and router using either Push Button Configuration (PBC) method or PIN method. Here we will introduce two ways to configure the WPS (For the configuration of WPS, here takes the Wireless Router of our company for example. For more ways of WPS Configuration. 1. PBC (Push Button Configuration) method 1) Press the WPS button on the rear panel of the Router and released immediately. Figure 9 Figure 10 Once the ‘figure 10’ image shown, choose the router name, above is ‘RG300EX LITE’ for example Press US300EX Lite WPS button, the dongle would connect to router immediately, you could find the USB wifi card mac in the router connection page(figure10). 2. PIN method 1)Double click icon, Figure 10 would shows up, you would see the Pin code from the right bar. RG300EX LITE 1-6 2) get pin code from the right colume. 3)input the PIN code to following page to Figure 11 4)Go to wireless configuration, you would find the adapter information as following. Figure12 COPYRIGHT & TRADEMARKS Specifications are subject to change without notice. MSI is a registered trademark of Micro Star International Co., Ltd. Other brands and product names are trademarks of their respective holders. No part of the specifications may be reproduced in any form or by any means or used to make any derivative such as translation, transformation, or adaptation without permission from Micro Star International Co., Ltd. Copyright © 2006-2009 Micro-Star Int’l Co. Ltd. All rights reserved. RG300EX LITE 1-7 FCC Caution : Changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment. Compliance statement: 1: This device is verified to comply with Part 15 of the FCC Rules. Operation subject to the following two conditions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. 2: This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses a…
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Attestation for FCC Declaration of Conformity FCC ID: X7DIP0494 Data: Mar. 20, 2010 Please be notified that we,the undersigned, ZIONCOM TECHNOLOGY LIMITED declares that the product which bears the above FCC ID is also compliant with the FCC requirements for Doc,The test report number supporting the DoC is 1002308,Testing in regards to this report was done by SIEMIC Inc, located at 2206 Ringwood Avenue,San Jose,CA 95131 USA which has been accredited in accordance to all of the requirements of 47CFR2.948(d)and(e)of the FCC rules and KDB349827 Sincerely, Tony Geng / Maneger ZIONCOM TECHNOLOGY LIMITED Tel: +86-755-61363299 Fax: +86-755-61363322 Email: [email protected]
Label Location Antenna Location
Label Location 34.5mm 9.5mm 40x20mm 2.8mm 4mm 1.4mm 18.5mm
Antenna Location
NS Technology Co., Ltd. Report No. NSE-F10034600 Page 1 of 3 FCC ID: X7DIP04103 NS Technology Co., Ltd. Applicant: Address: ZIONCOM TECHNOLOGY LIMITED Building A1~A2,lantian Science and Technology Park,Xinyu Road Xinqiao Henggang Block Shajing Street,Baoan District, Shenzhen City Manufacturer: Address: ZIONCOM TECHNOLOGY LIMITED Building A1~A2,lantian Science and Technology Park,Xinyu Road Xinqiao Henggang Block Shajing Street,Baoan District, Shenzhen City E.U.T: Wireless Router Model Number: IP0494; RG300EX Lite Report Number: NSE-F10044646 Tra de Name: ------ Operating Frequency: IEEE802.11b 2412~2462MHz; IEEE802.11g 2412~2462MHz IEEE802.11n HT20:2412~2462MHz;IEEE802.11n HT40:2422~2452MHz Date of Receipt: Mar.4, 2010 Date of Test: Mar. 10~Mar . 28, 2010 Test Specification: 47 CFR FCC Part 2 Subpart J, section 2.1091 Test Result: The equipment under test was found to be compliance with the requirements of the standards applied. Issue Date: Mar.30, 2010 Tested by: Reviewed by: Approved by: Jade/ Engineer Iceman Hu / Supervisor Steven Lee / Manager Other Aspects: None. Abbreviations: OK/P=passed fail/F=failed n.a/N=not applicable E.U.T=equipment under tested This test report is based on a single evaluation of one sample of above mentioned products ,It is not permitted to be duplicated in extracts without written approval of NS Technology Co., Ltd. NS Technology Co., Ltd. Report No. NSE-F10034600 Page 2 of 3 FCC ID: X7DIP04103 Maximum Permissible Exposure 1 Applicable Standard 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 level in excess limit for maximum permissible exposure. In accordance with 47 CFR FCC Part 2 Subpart J, section 2.1091 this device has been defined as a mobile device whereby a distance of 0.2m normally can be maintained between the user and the device. (a) Limits for Occupational / Controlled Exposure Frequency Range (MHz) Electric Field Strength (E) (V/m) Magnetic Field Strength (H) (A/m) Power Density(S) (mW/cm 2 ) Averaging Times ︱E︱ 2 ,︱H︱ 2 or S (minutes) 0.3-3.0 614 1.63 (100)* 6 3.0-30 1842/f 4.89/f (900/f)* 6 30-300 61.4 0.163 1.0 6 300-1500 F/300 6 1500-100000 5 6 (b) Limits for General Population / Uncontrolled Exposure Frequency Range (MHz) Electric Field Strength (E) (V/m) Magnetic Field Strength (H) (A/m) Power Density(S) (mW/cm2) Averaging Times ︱E︱ 2 ,︱H︱ 2 or S (minutes) 0.3-1.34 614 1.63 (100)* 30 1.34-30 824/f 2.19/f (180/f)* 30 30-300 27.5 0.073 0.2 30 300-1500 F/1500 30 1500-100000 1.0 30 Note: f=frequency in MHz; *Plane-wave equivalent power density 2 MPE Calculation Method E (V/m) = (30*P*G) 0.5 /d Power Density: Pd (W/m 2 ) = E 2 /377 E = Electric Field (V/m) P = Peak RF output Power (W) G = EUT Antenna numeric gain (numeric) d = Separation distance between radiator and human body (m) The formula can be changed to Pd = (30*P*G) / (377*d 2 ) From the peak EUT RF output power, the minimum mobile separation distance, d=0.2m, as well as the gain of the used antenna, the RF power density can be obtained. NS Technology Co., Ltd. Report No. NSE-F10034600 Page 3 of 3 FCC ID: X7DIP04103 3 Calculated Result and Limit Mode CH Output power (dBm) Output power (mW) Antenna Gain (dBi) MPE estimation result (mW/cm²) at 20cm Limit of MPE Estimation (mW/cm²) Test result CH1:2412MHz 17.87 61.24 5 0.0385 1 Compiles CH6:2437MHz 17.94 62.23 5 0.0391 1 Compiles IEEE 802.11b CH11:2462MHz 17.59 57.41 5 0.0361 1 Compiles CH1:2412MHz 17.29 53.58 5 0.0337 1 Compiles CH6:2437MHz 17.42 55.21 5 0.0347 1 Compiles IEEE 802.11g CH11:2462MHz 17.31 53.83 5 0.0338 1 Compiles CH1:2412MHz 16.09 40.64 5 0.0255 1 Compiles CH6:2437MHz 16.12 40.93 5 0.0257 1 Compiles IEEE 802.11n HT20 CH11:2462MHz 15.97 39.54 5 0.0249 1 Compiles CH1:2422MHz 15.88 38.73 5 0.0243 1 Compiles CH4:2437MHz 15.84 38.37 5 0.0243 1 Compiles IEEE 802.11n HT40 CH7:2452MHz 15.49 35.40 5 0.0223 1 Compiles
FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 70 of 110 6.3. 6dB Bandwidth 6.3.1. Test limits >500kHz. 6.3.2. Test procedure 1. The EUT was placed on a table which is 0.8m above ground plane. 2. Connect EUT RF output port to the spectrum analyzer through an RF attenuator. 3. Set SA Center Frequency = Operation frequency, RBW=100kHz,VBW=300kHz. 4. Set SA trace max hold, then view. 6.3.3. Test result Pass Test Channel Frequency MHz 6dB bandwidth MHz Conclusion 802.11b CH1 2412MHz 11.98 Pass 802.11b CH6 2437MHz 12.39 Pass 802.11b CH11 2462MHz 12.39 Pass 802.11g CH1 2412MHz 16.45 Pass 802.11g CH6 2437MHz 16.45 Pass 802.11g CH11 2462MHz 16.45 Pass 802.11n HT20 CH1 2412MHz 17.25 Pass 802.11 n HT20 CH6 2437MHz 16.93 Pass 802.11 n HT20 CH11 2462MHz 16.77 Pass 802.11 n HT20 CH1 2422MHz 34.33 Pass 802.11 n HT20 CH4 2437MHz 34.49 Pass 802.11 n HT20 CH7 2452MHz 34.32 Pass When IEEE 802.11b’s data rate was 11Mbps ; IEEE 802.11g’s data rate was 54Mbps, When IEEE 802.11n HT20’s data rate was 130Mbps ; IEEE 802.11n HT40’s data rate was 135Mbps the EUT have maximum output power and all the test was performed in this data rate set. The test plots as following: FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 71 of 110 802.11b CH1 2412MHz 802.11g CH1 2412MHz 802.11b CH6 2437MHz 802.11g CH6 2437MHz 802.11b CH11 2462MHz 802.11g CH11 2462MHz FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 72 of 110 802.11n HT20 CH1 2412MHz 802.11n HT40 CH1 2422MHz 802.11 n HT20 CH6 2437MHz 802.11 n HT40 CH4 2437MHz 802.11 n HT20 CH11 2462MHz 802.11 n HT40 CH7 2452MHz FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 73 of 110 6.4. Power Spectral Density Test 6.4.1.Test procedure 1. The EUT was placed on a table which is 0.8m above ground plane. 2. Connect EUT RF output port to the spectrum analyzer through an RF attenuator. 3. Set SA Center Frequency = Operation frequency, RBW=3kHz,VBW=300kHz. 4. Set SA trace max hold, then view. 6.4.2. Test result Pass Test Channel Read (dBm) Factor (dB) Result (dBm) Limit 802.11b CH1 -22.30 6 -16.30 8.0 802.11b CH6 -23.68 6 -17.68 8.0 802.11b CH11 -27.44 6 -21.44 8.0 802.11g CH1 -26.78 6 -20.68 8.0 802.11g CH6 -28.03 6 -22.03 8.0 802.11g CH11 -27.44 6 -21.44 8.0 802.11n HT20 CH1 -28.46 6 -22.46 8.0 802.11 n HT20 CH6 -27.22 6 -21.22 8.0 802.11 n HT20 CH11 -27.46 6 -21.46 8.0 802.11 n HT40 CH1 -28.84 6 -22.84 8.0 802.11 n HT40 CH4 -29.59 6 -23.59 8.0 802.11 n HT40 CH7 -29.79 6 -23.79 8.0 Note:Result=Read+Factor Factor= RF attenuator loss(3dB)+Cable loss(3dB) The test plots as following: When IEEE 802.11b’s data rate was 11Mbps ; IEEE 802.11g’s data rate was 54Mbps, When IEEE 802.11n HT20’s data rate was 130Mbps ; IEEE 802.11n HT40’s data rate was 135Mbps the EUT have maximum output power and all the test was performed in this data rate set. FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 74 of 110 802.11b CH1 2412MHz 802.11g CH11 2412MHz 802.11b CH6 2437MHz 802.11g CH11 2437MHz 802.11b CH11 2462MHz 802.11g CH11 2462MHz FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 75 of 110 802.11n HT20 CH1 2412MHz 802.11n HT40 CH1 2422MHz 802.11n HT20 CH6 2437MHz 802.11n HT40 CH4 2437MHz 802.11n HT20 CH11 2462MHz 802.11n HT40 CH7 2452MHz FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 76 of 110 6.5. Output Power Test 6.5.1. Test procedure 1. The EUT was placed on a table which is 0.8m above ground plane. 2. Connect EUT RF output port to the Power meter through an RF attenuator. 6.5.2. Test result Pass Test Channel Read (dBm) Factor (dB) Result (dBm) Limit 802.11b CH1 11.87 6 17.87 30.00 802.11b CH6 11.94 6 17.94 30.00 802.11b CH11 11.59 6 17.59 30.00 802.11g CH1 11.29 6 17.29 30.00 802.11g CH6 11.42 6 17.42 30.00 802.11g CH11 11.31 6 17.31 30.00 802.11n HT20 CH1 10.09 6 16.09 30.00 802.11 n HT20 CH6 10.12 6 16.12 30.00 802.11n HT20 CH11 9.97 6 15.97 30.00 802.11 n HT40 CH1 9.88 6 15.88 30.00 802.11 n HT40 CH4 9.84 6 15.84 30.00 802.11 n HT40 CH7 9.49 6 15.49 30.00 Note:Result=Read+Factor Factor= RF attenuator loss(3dB)+Cable loss(3dB) When 802.11b’s data rate was 11MHz;802.11g’s data rate was 54MHz;the EUT have Maximum output and all the test was performed in this data rate set. FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 77 of 110 6.6. Band Edge 6.6.1. Test limits Emissions radiated outside of the specified frequency bands, except for harmonics, shall be attenuated by at least 50 dB below the level of the fundamental or to the general radiated emission limits in Section 15.209 , whichever is the lesser attenuation. 6.6.2. Test procedure The EUT was placed on a turn table which was 0.8 meter above ground. The turn table can rotate 360 degrees to determine the position of the maximum emission level. The EUT was set 3 meters away from the receiving antenna which was mounted on a antenna tower. At the frequency band of 1G Hz to 18GHz,The measuring antenna moved from 1 to 4 m for horizontal and vertical polarization. The horn antenna was used was a receiving antenna. The resolution bandwidth and video bandwidth of the test receiver was1MHz and 1MHz for Peak detection at frequency above 1GHz. When 802.11b’s data rate was 11MHz;802.11g’s data rate was 54MHz;the EUT have Maximum output and all the test was performed in this data rate set. The EUT was tested in Chamber Site. 6.6.3. Test Setup Diagram 1-4m EUT 0.8m 3m 6.6.4. Test result PASS. The test plots as following: Rece ver FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 78 of 110 FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 79 of 110 FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 80 of 110 FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 81 of 110 FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 82 of 110 FCC ID: X7DIP0494 NS Technology Co., Ltd. …
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FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 1 of 110 FCC COMPLIANCE REPORT for ZIONCOM TECHNOLOGY LIMITED Wireless Router Model Number: IP0494; RG300EX Lite Prepared for: ZIONCOM TECHNOLOGY LIMITED Address: Building A1~A2,lantian Science and Technology Park,Xinyu Road Xinqiao Henggang Block Shajing Street,Baoan District, Shenzhen City Prepared By:NS Technology Co., Ltd. Address:Chenwu Industrial Zone, Houjie Town, Dongguan City, Guangdong, China Tel: +86-769-85935656 Fax: +86-769-85991080 Report Number : NSE-F10044644 Date of Test : Mar. 10~Mar . 28, 2010 Date of Report : Mar. 30, 2010 FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 2 of 110 TABLE OF CONTENTS Test Report Declaration Page 1.GENERAL PRODUCT INFORMATION ......................................................................... 4 1.1.Product Function ......................................................................................................................... 4 1.2.Description of Device (EUT) ...................................................................................................... 4 1.3.Difference between Model Numbers .......................................................................................... 4 1.4.Independent Operation Modes ....................................................................................................4 1.5.Test Supporting System .............................................................................................................. 5 2.TEST SITES.......................................................................................................................... 6 2.1.Test Facilities .............................................................................................................................. 6 2.2.List of Test and Measurement Instruments ................................................................................. 7 3.TEST SET-UP AND OPERATION MODES .................................................................... 8 3.1.Principle of Configuration Selection........................................................................................... 8 3.2.Block Diagram of Test Set-up..................................................................................................... 8 3.3.Test Operation Mode and Test Software..................................................................................... 8 3.4.Special Accessories and Auxiliary Equipment ........................................................................... 8 3.5.Countermeasures to Achieve EMC Compliance......................................................................... 8 4.TEST SUMMARY................................................................................................................ 9 5.DATA RATE VS POWER................................................................................................. 10 6.EMISSION TEST RESULTS............................................................................................ 11 6.1.Conducted Emission at The Mains Terminals Test................................................................... 11 6.2.Radiated Emission..................................................................................................................... 14 6.3.6dB Bandwidth ......................................................................................................................... 70 6.4.Power Spectral Density Test ..................................................................................................... 73 6.5.Output Power Test..................................................................................................................... 76 6.6.Band Edge ................................................................................................................................. 77 6.7.ANTENNA REQUIREMENT ................................................................................................ 110 FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 3 of 110 NS Technology Co., Ltd. Applicant: Address: ZIONCOM TECHNOLOGY LIMITED Building A1~A2,lantian Science and Technology Park,Xinyu Road Xinqiao Henggang Block Shajing Street,Baoan District, Shenzhen City Manufacturer: Address: ZIONCOM TECHNOLOGY LIMITED Building A1~A2,lantian Science and Technology Park,Xinyu Road Xinqiao Henggang Block Shajing Street,Baoan District, Shenzhen City E.U.T: Wireless Router Model Number: IP0494; RG300EX Lite Trade Name: ------ Operating Frequency: IEEE802.11b 2412~2462MHz; IEEE802.11g 2412~2462MHz IEEE802.11n HT20:2412~2462MHz;IEEE802.11n HT40:2422~2452MHz Date of Receipt: Mar.4, 2010 Date of Test: Mar. 10~Mar . 28, 2010 Test Specification: FCC Part 15 Subpart C: Oct. 2009 ANSI C63.4:2003 Test Result: The equipment under test was found to be compliance with the requirements of the standards applied. Issue Date: Mar.30, 2010 Tested by: Reviewed by: Approved by: Jade/ Engineer Iceman Hu / Supervisor Steven Lee / Manager Other Aspects: None. Abbreviations: OK/P=passed fail/F=failed n.a/N=not applicable E.U.T=equipment under tested This test report is based on a single evaluation of one sample of above mentioned products ,It is not permitted to be duplicated in extracts without written approval of NS Technology Co., Ltd. FCC ID: X7DIP0494 NS Technology Co., Ltd. Report No. NSE-F10044644 Page 4 of 110 1. GENERAL PRODUCT INFORMATION 1.1. Product Function Details please refer to Technical Construction Form and User Manual. 1.2. Description of Device (EUT) E.U.T. : Wireless Router Model No. : IP0494 Operating Frequency : 2412~2462MHz Number of Channels : IEEE 802.11b/g,802.11n HT20:11 Channels IEEE 802.11n HT40:7 Channels Type of Modulation : DSSS for IEEE 802.11b, OFDM for IEEE 802.11g and IEEE 802.11n IEEE 802.11b:11/5.5/2/1M bps IEEE 802.11g:54/48/36/24/18/12/9/6Mbps IEEE 802.11n HT20:130/117/104/78/65/58.5/52/…
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1.1. Set-up for conducted emission at the mains terminals test 1.2. Set-up for radiated emission test(30MHz~1000MHz) 1.3. Set-up for radiated emission test(above 1GHz) 1.4. Set-up for Peak output Power Test
Chenwu Industrial Zone, Houjie Town, · Dongguan · China
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15C | 2.42 GHz - 2.45 GHz | 39.00 mW |

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