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  3. I88NBG-419NV2

I88NBG-419NV2Wireless N NetUSB Router

ZyXEL Communications Corporation
Wireless N NetUSB Router - FCC ID I88NBG-419NV2 - ZyXEL Communications Corporation
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
May 14, 2012
Application Purpose
Original Equipment
Date of Application
May 14, 2012
Equipment Note
Wireless N NetUSB Router
Frequency Range
2422.00000000 - 2452.00000000
Company
ZyXEL Communications Corporation
Country
Taiwan

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

www.zyxel.com www.zyxel.com NBG-419N v2 Wireless N NetUSB Router IMPORTANT! READ CAREFULLY BEFORE USE. KEEP THIS GUIDE FOR FUTURE REFERENCE. Copyright © 2012 ZyXEL Communications Corporation Version 1.00 Edition 2, 03/2012 Default Login Details LAN IP Address http://192.168.1.1 Password1234 NBG-419N v2 User’s Guide2 IMPORTANT! READ CAREFULLY BEFORE USE. KEEP THIS GUIDE FOR FUTURE REFERENCE. Graphics in this book may differ slightly from the product due to differences in operating systems, operating system versions, or if you installed updated firmware/software for your device. Every effort has been made to ensure that the information in this manual is accurate. Related Documentation •Quick Start Guide The Quick Start Guid shows how to connect the NBG-419N v2 and access the Web Configurator . Contents Overview NBG-419N v2 User’s Guide 3 Contents Overview User’s Guide ....................................................................................................................................... 13 Getting to Know Your Router ..................................................................................................................15 The WPS Button .....................................................................................................................................20 ZyXEL NetUSB Share Center Utility .......................................................................................................21 Connection Wizard ..................................................................................................................................29 Introducing the Web Configurator ...........................................................................................................39 Monitor ....................................................................................................................................................45 Router Modes ..........................................................................................................................................51 Easy Mode ..............................................................................................................................................53 Router Mode ...........................................................................................................................................64 Access Point Mode .................................................................................................................................71 WISP Mode .............................................................................................................................................78 Tutorials ..................................................................................................................................................89 Technical Reference ........................................................................................................................ 101 Wireless LAN ........................................................................................................................................103 WAN ...................................................................................................................................................... 119 LAN .......................................................................................................................................................133 DHCP Server ........................................................................................................................................137 Network Address Translation (NAT) ......................................................................................................141 Dynamic DNS ........................................................................................................................................147 Static Route ...........................................................................................................................................149 RIP ........................................................................................................................................................153 Firewall ..................................................................................................................................................155 Content Filter .........................................................................................................................................159 Bandwidth Management .......................................................................................................................163 Remote Management ............................................................................................................................170 Universal Plug-and-Play (UPnP) ...........................................................................................................173 Maintenance ..........................................................................................................................................181 Troubleshooting ....................................................................................................................................191 Contents Overview NBG-419N v2 User’s Guide 4 Table of Contents NBG-419N v2 User’s Guide 5 Table of Contents Contents Overview .............................................................................................................................. 3 Table of Contents ................................................................................................................................. 5 Part I: User’s Guide ......................................................................................... 13 Chapter 1 Getting to Know Your Router............................................................................................................. 15 1.1 Overview ........................................................…

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Users Manual

NBG-419N v2 User’s Guide141 CHAPTER 17 Network Address Translation (NAT) 17.1 Overview NAT (Network Address Translation - NAT, RFC 1631) is the translation of the IP address of a host in a packet. For example, the source address of an outgoing packet, used within one network is changed to a different IP address known within another network. Each packet has two addresses – a source address and a destination address. For outgoing packets, NAT maps private (local) IP addresses to globally unique ones required for communication with hosts on other networks. It replaces the original IP source address in each packet and then forwards it to the Internet. The Router keeps track of the original addresses and port numbers so incoming reply packets can have their original values restored. The following figure illustrates this. Figure 99 NAT Example For more information on IP address translation, refer to RFC 1631, The IP Network Address Translator (NAT). 17.2 What You Can Do •Use the General screen (Section 17.3 on page 142) to enable NAT and set a default server. •Use the Application screen (Section 17.4 on page 142) o forward incoming service requests to the server(s) on your local network. •Use the Advanced screen (Section 17.5 on page 144) to change your Router’s trigger port settings. Chapter 17 Network Address Translation (NAT) NBG-419N v2 User’s Guide 142 17.3 General NAT Screen Use this screen to enable NAT and set a default server. Click Network > NAT > General to open the following screen. Figure 100 Network > NAT > General The following table describes the labels in this screen. 17.4 NAT Application Screen Use the Application screen to forward incoming service requests to the server(s) on your local network. You may enter a single port number or a range of port numbers to be forwarded, and the local IP address of the desired server. The port number identifies a service; for example, web service is on port 80 and FTP on port 21. In some cases, such as for unknown services or where one server can support more than one service (for example both FTP and web service), it might be better to specify a range of port numbers. In addition to the servers for specified services, NAT supports a default server. A service request that does not have a server explicitly designated for it is forwarded to the default server. If the default is not defined, the service request is simply discarded. Table 62 Network > NAT > General LABELDESCRIPTION NAT Setup Enable Network Address Translation Network Address Translation (NAT) allows the translation of an Internet protocol address used within one network (for example a private IP address used in a local network) to a different IP address known within another network (for example a public IP address used on the Internet). Select the check box to enable NAT. Default Server Setup Server IP Address In addition to the servers for specified services, NAT supports a default server. A default server receives packets from ports that are not specified in the Application screen. If you do not assign a Default Server IP address, the Router discards all packets received for ports that are not specified in the Application screen or remote management. ApplyClick Apply to save your changes back to the Router. ResetClick Reset to begin configuring this screen afresh. Chapter 17 Network Address Translation (NAT) NBG-419N v2 User’s Guide 143 Note: Many residential broadband ISP accounts do not allow you to run any server processes (such as a Web or FTP server) from your location. Your ISP may periodically check for servers and may suspend your account if it discovers any active services at your location. If you are unsure, refer to your ISP. Port forwarding allows you to define the local servers to which the incoming services will be forwarded. To change your Router’s port forwarding settings, click Network > NAT > Application. The screen appears as shown. Note: If you do not assign a Default Server IP address in the NAT > General screen, the Router discards all packets received for ports that are not specified in this screen or remote management. Refer to Appendix E on page 263 for port numbers commonly used for particular services. Figure 101 Network > NAT > Application The following table describes the labels in this screen. Table 63 Network > NAT > Application LABELDESCRIPTION Add Application Rule Active Select the check box to enable this rule and the requested service can be forwarded to the host with a specified internal IP address. Clear the checkbox to disallow forwarding of these ports to an inside server without having to delete the entry. Service NameType a name (of up to 31 printable characters) to identify this rule in the first field next to Service Name. Otherwise, select a predefined service in the second field next to Service Name. The predefined service name and port number(s) will display in the Service Name and Port fields. PortType a port number(s) to define the service to be forwarded to the specified server. To specify a range of ports, enter a hyphen (-) between the first port and the last port, such as 10-20. To specify two or more non-consecutive port numbers, separate them by a comma without spaces, such as 123,567. Server IP Address Type the IP address of the server on your LAN that receives packets from the port(s) specified in the Port field. Chapter 17 Network Address Translation (NAT) NBG-419N v2 User’s Guide 144 17.5 NAT Advanced Screen Some services use a dedicated range of ports on the client side and a dedicated range of ports on the server side. With regular port forwarding you set a forwarding port in NAT to forward a service (coming in from the server on the WAN) to the IP address of a computer on the client side (LAN). The problem is that port forwarding only forwards a service to a single LAN IP address. In order to use the same service on a different LAN computer, you have to manually replace the LAN computer's IP address in the forwardi…

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External Photos

External photo of EUT External photo of EUT Invax 2 dBi Antenna SAYTEC 2 dBi Antenna External photo of EUT Invax 5 dBi Antenna Model: DSA-12G-12 FUS 120120 External photo of EUT Model: DSA-12G-12 FUS 120120 Model: DSA-12CA-12 120100 External photo of EUT Model: DSA-12CA-12 120100

ID Label/Location Info

Label FCC & IC ID Label Location

Internal Photos

Internal photo of EUT Chain 0 Chain 1 Internal photo of EUT

RF Exposure Info

FCC ID. : I88NBG-419NV2 Report No.: TS12040196-EME Page 1 of 8 Maximum Permissible Exposure (MPE) Evaluation Report Report No. : TS12040196-EME Model No. : NBG-419N v2 Issued Date : Apr. 23, 2012 Applicant: ZyXEL Communications Corporation 6, Innovation Rd II, Science-Based Industrial Park, Hsin-Chu, Taiwan Test Method/ Standard: FCC 1.1310 and Safety Code 6 Test By: Intertek Testing Services Taiwan Ltd. No. 11, Lane 275, Ko-Nan 1 Street, Chia-Tung Li, Shiang-Shan District, Hsinchu City, Taiwan It may be duplicated completely for legal use with the allowance of the applicant. It shall not be reproduced except in full, without the written approval of Intertek Laboratory. The test result(s) in this report only applies to the tested sample(s). The test report was prepared by: Sign on File Jill Chen / Assistant These measurements were taken by: Sign on File Hugo Yeh / Engineer The test report was reviewed by: Name Jimmy Yang Title Engineer FCC ID. : I88NBG-419NV2 Report No.: TS12040196-EME Page 2 of 8 Table of Contents Summary of Tests ..............................................................................................................3 1. Introduction ...................................................................................................................4 2. RF Exposure Limit ........................................................................................................4 3. RF Exposure calculations..............................................................................................5 4. Description of EUT .......................................................................................................6 5. Test results .....................................................................................................................7 FCC ID. : I88NBG-419NV2 Report No.: TS12040196-EME Page 3 of 8 Summary of Tests MPE Evaluation meet FCC OET No. 65: 1997, IEEE C95.1-2005 and IC Safety Code 6 Wireless N NetUSB Router -Model: NBG-419N v2 FCC ID: I88NBG-419NV2 Test Reference Results MPE Evaluation FCC Guidelines for Human Exposure IEEE C95.1 IC Safety Code 6 Complies FCC ID. : I88NBG-419NV2 Report No.: TS12040196-EME Page 4 of 8 1. Introduction The EUT operates in the 2.4 GHz ISM band. Due to the EUT (include antenna) at its normal operation distance is at least 20 cm from the human body, the EUT was defined as a Mobile Device. The reason to do the MPE Evaluation is to avoid the RF hazard to human body. The maximum output power and gain of the antenna were used to calculate the limited Power density (S) at 20 cm distance away from the product. The limit for Maximum Permissible Exposure (MPE) specified in FCC 1.1310 and Safety Code 6 are followed. According to 1.1307 (b)(1), systems operating under the provisions of this section shall be operated in a manner that ensure that the public is not exposed to radio frequency energy level in excess of the Commission’s guideline. 2. RF Exposure Limit According to FCC 1.1310 and Safety Code 6: The criteria listed in the following table shall be used to evaluate the environmental impact of human exposure to radio-frequency (RF) radiation as specified in 1.1307(b). Limits for Maximum Permissible Exposure (MPE) Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mW/cm 2 ) Average Time (minutes) (A) Limits for Occupational / Control Exposures 30-300 61.4 0.163 1.0 6 300-1500 - - F/300 6 1500-100,000 - - 5 6 (B) Limits for General Population / Uncontrolled Exposure 30-300 27.5 0.073 0.2 30 300-1500 - - F/1500 30 1500-100,000 - - 1.0 30 F= Frequency in MHz FCC ID. : I88NBG-419NV2 Report No.: TS12040196-EME Page 5 of 8 3. RF Exposure calculations From §FCC 1.1310 table 1, the maximum permissible RF exposure for an uncontrolled environment is 1 mW/(cm 2 ) (or 10 W/m 2 )* Power density (S) is calculated by the following formula: S = (P * G)/4πR 2 where, S = Power density (mW/cm 2 ) P = Output power to antenna (mW) R = Distance between radiating structure and observation point (cm) G = Gain of antenna in numeric π = 3.1416 Example: Assume a mobile device operates at 2412MHz and its maximum output power is 50mW, and the maximum gain of antenna is 1 (numeric) /0dBi. Then the power density (S) = (50 * 1)/4*π*20 2 = 0.00995 (mW/cm 2 ) (or = 0.0995 W/m 2 ) FCC ID. : I88NBG-419NV2 Report No.: TS12040196-EME Page 6 of 8 4. Description of EUT The EUT is Wireless N NetUSB Router, and was defined as information technology equipment. For more detail features, please refer to User's manual as file name “Installation guide.pdf” 4.1 Antenna description 1. Invax 2 dBi Antenna The antenna is affixed to the EUT using a unique connector, which allows for replacement of a broken antenna, but DOES NOT use a standard antenna jack or electrical connector. Antenna Gain : 2 dBi Antenna Type : Dipole antenna Connector Type : SMA reverse 2. SAYTEC 2 dBi Antenna The antenna is affixed to the EUT using a unique connector, which allows for replacement of a broken antenna, but DOES NOT use a standard antenna jack or electrical connector. Antenna Gain : 2 dBi Antenna Type : Dipole antenna Connector Type : SMA reverse 3. Invax 5 dBi Antenna The antenna is affixed to the EUT using a unique connector, which allows for replacement of a broken antenna, but DOES NOT use a standard antenna jack or electrical connector. Antenna Gain : 5 dBi Antenna Type : Dipole antenna Connector Type : SMA reverse FCC ID. : I88NBG-419NV2 Report No.: TS12040196-EME Page 7 of 8 5. Test results 1. Antenna : Invax 2 dBi Mode Channel Frequency (MHz) Antenna gain (numeric) Output power to antenna (mW) Power density (mW/cm 2 ) Limit of power density (mW/cm 2 ) 2412 1.58 55.34 0.017447377 1.0 2437 1.58 133.05 0.041949824 1.0 802.11b 2462 1.58 69.82 0.022015581 1.0 2412 1.58 137.40 0.043324159 1.0 2437 1.58 174.18 0.054919951 1.0 802.11g Chain 0 2462 1.58 85.11 0.026836764 1.0 2412 1.58 193.64 0.061056252 1.0 2437 1.58 182.81 0.057640819 1.…

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Test Report

FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 1 of 243 EMC TEST REPORT Report No. : TS12020033-EME Model No. : NBG-419N v2 Issued Date : Apr. 23, 2012 Applicant: ZyXEL Communications Corporation 6, Innovation Rd II, Science-Based Industrial Park, Hsin-Chu, Taiwan Test Method / Standard: CFR 47 FCC Part 15.247 & ANSI C63.4 2003 Test By: Intertek Testing Services Taiwan Ltd. No. 11, Lane 275, Ko-Nan 1 Street, Chia-Tung Li, Shiang-Shan District, Hsinchu City, Taiwan It may be duplicated completely for legal use with the allowance of the applicant. It shall not be reproduced except in full, without the written approval of Intertek Laboratory. The test result(s) in this report only applies to the tested sample(s). The test report was prepared by: Sign on File Jill Chen / Assistant These measurements were taken by: Sign on File Hugo Yeh / Engineer The test report was reviewed by: Name Jimmy Yang Title Engineer FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 2 of 243 Table of Contents 1. Summary of Test Data ............................................................................................ 3 2. General Information ................................................................................................ 4 3. Maximum 6 dB Bandwidth ...................................................................................... 8 4. 99 % Occupied Bandwidth.................................................................................... 44 5. Maximum Output Power ....................................................................................... 80 6. Power Spectral Density ........................................................................................ 84 7. RF Antenna conducted Spurious ........................................................................120 8. Radiated Spurious Emission............................................................................... 153 9. Emission on Band Edge..................................................................................... 203 10. AC power line conducted emission ...................................................................237 Appendix A: Test Equipment List ............................................................................ 243 FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 3 of 243 1. Summary of Test Data Test/Requirement Description Applicable Rule Result Minimum 6 dB Bandwidth 15.247(a)(2) Pass Maximum Output Power 15.247(b) Pass Power Spectral Density 15.247(e) Pass RF Antenna Conducted Spurious 15.247(d) Pass Radiated Spurious Emission 15.247(d), 15.205, 15.209 Pass Emission on the Band Edge 15.247(d) Pass AC Power Line Conducted Emission 15.207 Pass FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 4 of 243 2. General Information Identification of the EUT Product: Wireless N NetUSB Router Model No.: NBG-419N v2 FCC ID.: I88NBG-419NV2 Frequency Range: 1. 2412 MHz ~ 2462 MHz for 802.11b, 802.11g, 802.11n HT20 2. 2422 MHz ~ 2452 MHz for 802.11n HT40 Channel Number: 1. 11 channels for 2412 MHz ~ 2462 MHz 2. 7 channels for 2422 MHz ~ 2452 MHz Rated Power: DC 12 V from Adapter Power Cord: N/A Data Cable: RJ-45 UTP Cat.5 10 meter × 1 Sample Received: Jan. 16, 2012 Test Date(s): Feb. 14, 2012 ~ Apr. 18, 2012 Note 1: This report is for the exclusive use of Intertek's Client and is provided pursuant to the agreement between Intertek and its Client. Intertek's responsibility and liability are limited to the terms and conditions of the agreement. Intertek assumes no liability to any party, other than to the Client in accordance with the agreement, for any loss, expense or damage occasioned by the use of this report. Only the Client is authorized to permit copying or distribution of this report and then only in its entirety. Any use of the Intertek name or one of its marks for the sale or advertisement of the tested material, product or service must first be approved in writing by Intertek. The observations and test results in this report are relevant only to the sample tested. This report by itself does not imply that the material, product, or service is or has ever been under an Intertek certification program. Note 2: When determining the test conclusion, the Measurement Uncertainty of test has been considered. FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 5 of 243 Description of EUT The EUT is Wireless N NetUSB Router, and was defined as information technology equipment. For more detail features, please refer to User's manual as file name “Installation guide.pdf” Antenna description 1. Invax 2 dBi Antenna The antenna is affixed to the EUT using a unique connector, which allows for replacement of a broken antenna, but DOES NOT use a standard antenna jack or electrical connector. Antenna Gain : 2 dBi Antenna Type : Dipole antenna Connector Type : SMA reverse 2. SAYTEC 2 dBi Antenna The antenna is affixed to the EUT using a unique connector, which allows for replacement of a broken antenna, but DOES NOT use a standard antenna jack or electrical connector. Antenna Gain : 2 dBi Antenna Type : Dipole antenna Connector Type : SMA reverse 3. Invax 5 dBi Antenna The antenna is affixed to the EUT using a unique connector, which allows for replacement of a broken antenna, but DOES NOT use a standard antenna jack or electrical connector. Antenna Gain : 5 dBi Antenna Type : Dipole antenna Connector Type : SMA reverse FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 6 of 243 Adapter information The EUT will be supplied with a power supply from below list: No. Brand Model no. Specification Adapter 1 DVE DSA-12G-12 FUS 120120 I/P: 100-240Vac, 50/60Hz, 0.3A O/P: +12Vdc, 1A Adapter 2 DVE DSA-12CA-12 120100 I/P: 100-240Vac, 50/60Hz, 0.3A O/P: +12Vdc, 1A Peripherals equipment Peripherals Brand Model No. Serial No. Notebook PC DELL Latitude D610 2YWZK1S FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 7 of 243 Operation mode The EUT was pre-tested with two adapters in th…

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Test Report

FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 71 of 243 Invax 5 dBi Antenna: Chain 0: 99 % Occupied Bandwidth @ 802.11g mode channel 6 Invax 5 dBi Antenna: Chain 0: 99 % Occupied Bandwidth @ 802.11g mode channel 11 FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 72 of 243 Invax 5 dBi Antenna: Chain 1: 99 % Occupied Bandwidth @ 802.11g mode channel 1 Invax 5 dBi Antenna: Chain 1: 99 % Occupied Bandwidth @ 802.11g mode channel 6 FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 73 of 243 Invax 5 dBi Antenna: Chain 1: 99 % Occupied Bandwidth @ 802.11g mode channel 11 Invax 5 dBi Antenna: Chain 0: 99 % Occupied Bandwidth @ 802.11n HT20 mode channel 1 FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 74 of 243 Invax 5 dBi Antenna: Chain 0: 99 % Occupied Bandwidth @ 802.11n HT20 mode channel 6 Invax 5 dBi Antenna: Chain 0: 99 % Occupied [email protected] HT20 mode channel 11 FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 75 of 243 Invax 5 dBi Antenna: Chain 1: 99 % Occupied Bandwidth @ 802.11n HT20 mode channel 1 Invax 5 dBi Antenna: Chain 1: 99 % Occupied Bandwidth @ 802.11n HT20 mode channel 6 FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 76 of 243 Invax 5 dBi Antenna: Chain 1: 99 % Occupied [email protected] HT20 mode channel 11 Invax 5 dBi Antenna: Chain 0: 99 % Occupied Bandwidth @ 802.11n HT40 mode channel 3 FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 77 of 243 Invax 5 dBi Antenna: Chain 0: 99 % Occupied Bandwidth @ 802.11n HT40 mode channel 6 Invax 5 dBi Antenna: Chain 0: 99 % Occupied Bandwidth @ 802.11n HT40 mode channel 9 FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 78 of 243 Invax 5 dBi Antenna: Chain 1: 99 % Occupied Bandwidth @ 802.11n HT40 mode channel 3 Invax 5 dBi Antenna: Chain 1: 99 % Occupied Bandwidth @ 802.11n HT40 mode channel 6 FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 79 of 243 Invax 5 dBi Antenna: Chain 1: 99 % Occupied Bandwidth @ 802.11n HT40 mode channel 9 FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 80 of 243 5. Maximum Output Power Name of Test Maximum output power Base Standard FCC 15.247(b) Measurement Uncertainty: ±0.392 dB (k=2) Test Result: Complies Measurement Data: See Table below Method of Measurement: Reference FCC document: KDB558074 The power output was measured on the EUT using a 50 ohm SMA Cable connected to peak power meter via power sensor. Connect 20 dB attenuator and DC block at the input port of the power sensor. Measure conducted transmit power of at each antenna port ,besides another ports were terminated by 50 ohm and sum these power in linear power units,Power output was measured with the maximum rated input level. Test Diagram: Note 1: §15.247 (b) (4) Except as shown in paragraphs (b)(3) (i), (ii) and (iii) of this section, if transmitting antennas of directional gain greater than 6 dBi are used the peak output power from the intentional radiator shall be reduced below the stated values in paragraphs (b)(1) or (b)(2) of this section, as appropriate, by the amount in dB that the directional gain of the antenna exceeds 6 dBi. Power meter 20 dB Attenuator & DC block EUT Power sensor FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 81 of 243 Table: Maximum output power Invax 2 dBi Antenna Output Power (dBm) Mode Channel Frequency (MHz) PK Calculated Power (mW) Limit (dBm) Margin (dB) 1 2412 17.43 55.34 30 -12.57 6 2437 21.24 133.05 30 -8.76 802.11b 11 2462 18.44 69.82 30 -11.56 1 2412 21.38 137.40 30 -8.62 6 2437 22.41 174.18 30 -7.59 802.11g Chain 0 11 2462 19.30 85.11 30 -10.70 1 2412 22.87 193.64 30 -7.13 6 2437 22.62 182.81 30 -7.38 802.11g Chain 1 11 2462 20.98 125.31 30 -9.02 Output Power (dBm) Total Calculated Power Mode Channel Frequency (MHz) Chain 0Chain 1(mW)(dBm) Limit (dBm) Margin (dB) 1 2412 21.4422.15 303.37 24.8230 -5.18 6 2437 22.0122.62 341.66 25.3430 -4.66 802.11n HT20 11 2462 20.4120.64 225.78 23.5430 -6.46 3 2422 17.3818.06 118.68 20.7430 -9.26 6 2437 21.4321.88 293.17 24.6730 -5.33 802.11n HT40 9 2452 18.4618.19 136.06 21.3430 -8.66 FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 82 of 243 SAYTEC 2 dBi Antenna Output Power (dBm) Mode Channel Frequency (MHz) PK Calculated Power (mW) Limit (dBm) Margin (dB) 1 2412 18.41 69.34 30 -11.59 6 2437 20.81 120.50 30 -9.19 802.11b 11 2462 17.01 50.23 30 -12.99 1 2412 23.03 200.91 30 -6.97 6 2437 22.47 176.60 30 -7.53 802.11g Chain 0 11 2462 19.29 84.92 30 -10.71 1 2412 22.35 171.79 30 -7.65 6 2437 23.27 212.32 30 -6.73 802.11g Chain 1 11 2462 21.20 131.83 30 -8.80 Output Power (dBm) Total Calculated Power Mode Channel Frequency (MHz) Chain 0Chain 1(mW)(dBm) Limit (dBm) Margin (dB) 1 2412 22.1423.15 370.22 25.6830 -4.32 6 2437 21.9822.37 330.34 25.1930 -4.81 802.11n HT20 11 2462 20.2720.53 219.39 23.4130 -6.59 3 2422 16.9418.17 115.05 20.6130 -9.39 6 2437 21.0321.59 270.98 24.3330 -5.67 802.11n HT40 9 2452 16.2517.3997.0019.8730 -10.13 FCC ID. : I88NBG-419NV2 Report No.: TS12020033-EME Page 83 of 243 Invax 5 dBi Antenna Output Power (dBm) Mode Channel Frequency (MHz) PK Calculated Power (mW) Limit (dBm) Margin (dB) 1 2412 17.09 51.17 30 -12.91 6 2437 19.56 90.36 30 -10.44 802.11b 11 2462 18.62 72.78 30 -11.38 1 2412 20.58 114.29 30 -9.42 6 2437 21.80 151.36 30 -8.20 802.11g Chain 0 11 2462 20.70 117.49 30 -9.30 1 2412 21.01 126.18 30 -8.99 6 2437 22.05 160.32 30 -7.95 802.11g Chain 1 11 2462 20.27 106.41 30 -9.73 Output Power (dBm) Total Calculated Power Mode Channel Frequency (MHz) Chain 0Chain 1(mW)(dBm) Limit (dBm) Margin (dB) 1 2412 20.3321.01 234.08 23.6930 -6.31 6 2437 21.7622.44 325.36 25.1230 -4.88 802.1…

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Contact Information

Applicant

Emma Bao(Section Manager)
[email protected]886 3 578-3942Fax: 886 3 578-2439

Test Firm

Intertek Testing Services Taiwan Ltd.Alpha Liu
[email protected]886-3-519-1411Fax: 886-3-519-1410

Technical Specifications

#Rule PartsFrequency RangePower Output
415C2.42 GHz - 2.45 GHz302.00 mW
Confidentiality
Long Term
Grant Notes
Output power listed is conducted. Device is an 802.11n device operates in 2x2 Spatial Multiplexing MIMO as described in this filing. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter except in accordance with FCC multi-transmitter product procedures. End-Users must be provided with transmitter operation conditions for satisfying RF exposure compliance.

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Equipment Class

DTS - Digital Transmission System
AX11000 WiFi 6E 10G Ethernet Gateway - FCC ID I88EX7710-B0 - ZyXEL Communications Corporation
I88EX7710-B0

AX11000 WiFi 6E 10G Ethernet Gateway

Apr 16, 2023

Equipment Class

NII - Unlicensed National Information Infrastructure TX