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I88WAP56055-GHz Wireless N Media Streaming Box

ZyXEL Communications Corporation
5-GHz Wireless N Media Streaming Box - FCC ID I88WAP5605 - ZyXEL Communications Corporation
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Application Details

Equipment Class
NII - Unlicensed National Information Infrastructure TX
Date of Grant
Oct 23, 2011
Application Purpose
Original Equipment
Date of Application
Oct 23, 2011
Equipment Note
5-GHz Wireless N Media Streaming Box
Frequency Range
5755.00000000 - 5795.00000000
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 WAP5605 Wireless N Media Streaming Box Copyright © 2011 ZyXEL Communications Corporation Firmware Version 1.0 Edition 1, 10/2011 Default Login Details IP AddressAP: 192.168.1.2 Client: 192.168.1.10 Password1234 About This User's Guide WAP5605 User’s Guide 3 About This User's Guide IMPORTANT! READ CAREFULLY BEFORE USE. KEEP THIS GUIDE FOR FUTURE REFERENCE. Intended Audience This manual is intended for people who want to configure the WAP5605 using the Web Configurator. Related Documentation •Quick Start Guide The Quick Start Guide is designed to help you get up and running right away. It contains information on setting up your network and configuring for Internet access. •Support Disc Refer to the included CD for support documents. Document Conventions WAP5605 User’s Guide 4 Document Conventions Warnings and Notes These are how warnings and notes are shown in this User’s Guide. Warnings tell you about things that could harm you or your device. Note: Notes tell you other important information (for example, other things you may need to configure or helpful tips) or recommendations. Syntax Conventions • The WAP5605 may be referred to as the “WAP5605”, the “device”, the “product” or the “system” in this User’s Guide. • Product labels, screen names, field labels and field choices are all in bold font. • A key stroke is denoted by square brackets and uppercase text, for example, [ENTER] means the “enter” or “return” key on your keyboard. • “Enter” means for you to type one or more characters and then press the [ENTER] key. “Select” or “choose” means for you to use one of the predefined choices. • A right angle bracket ( > ) within a screen name denotes a mouse click. For example, Maintenance > Log > Log Setting means you first click Maintenance in the navigation panel, then the Log sub menu and finally the Log Setting tab to get to that screen. • Units of measurement may denote the “metric” value or the “scientific” value. For example, “k” for kilo may denote “1000” or “1024”, “M” for mega may denote “1000000” or “1048576” and so on. • “e.g.,” is a shorthand for “for instance”, and “i.e.,” means “that is” or “in other words”. Icons Used in Figures Figures in this User’s Guide may use the following generic icons. The WAP5605 icon is not an exact representation of your device. 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. Document Conventions WAP5605 User’s Guide 5 WAP5605ComputerNotebook computer ServerModemFirewall Tel ep ho n eSwitchRouter Safety Warnings WAP5605 User’s Guide 6 Safety Warnings • Do NOT use this product near water, for example, in a wet basement or near a swimming pool. • Do NOT expose your device to dampness, dust or corrosive liquids. • Do NOT store things on the device. • Do NOT install, use, or service this device during a thunderstorm. There is a remote risk of electric shock from lightning. • Connect ONLY suitable accessories to the device. • Do NOT open the device or unit. Opening or removing covers can expose you to dangerous high voltage points or other risks. ONLY qualified service personnel should service or disassemble this device. Please contact your vendor for further information. • Make sure to connect the cables to the correct ports. • Place connecting cables carefully so that no one will step on them or stumble over them. • Always disconnect all cables from this device before servicing or disassembling. • Use ONLY an appropriate power adaptor or cord for your device. • Connect the power adaptor or cord to the right supply voltage (for example, 110V AC in North America or 230V AC in Europe). • Do NOT allow anything to rest on the power adaptor or cord and do NOT place the product where anyone can walk on the power adaptor or cord. • Do NOT use the device if the power adaptor or cord is damaged as it might cause electrocution. • If the power adaptor or cord is damaged, remove it from the power outlet. • Do NOT attempt to repair the power adaptor or cord. Contact your local vendor to order a new one. • Do not use the device outside, and make sure all the connections are indoors. There is a remote risk of electric shock from lightning. • Do NOT obstruct the device ventilation slots, as insufficient airflow may harm your device. • Antenna Warning! This device meets ETSI and FCC certification requirements when using the included antenna(s). Only use the included antenna(s). • If you wall mount your device, make sure that no electrical lines, gas or water pipes will be damaged. Your product is marked with this symbol, which is known as the WEEE mark. WEEE stands for Waste Electronics and Electrical Equipment. It means that used electrical and electronic products should not be mixed with general waste. Used electrical and electronic equipment should be treated separately. Contents Overview WAP5605 User’s Guide 7 Contents Overview User’s Guide ........................................................................................................................... 13 Getting to Know Your WAP5605 ................................................................................................15 WAP5605 Modes .......................................................................................................................21 Easy Mode .................................................................................................................................23 Access Point Mode ....................................................................................................................31 Client Mode ................................................................................................................................37 The Web Configurator ........................................................…

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Users Manual

WAP5605 User’s Guide113 APPENDIX A Pop-up Windows, JavaScripts and Java Permissions In order to use the web configurator you need to allow: • Web browser pop-up windows from your device. • JavaScripts (enabled by default). • Java permissions (enabled by default). Note: The screens used below belong to Internet Explorer version 6, 7 and 8. Screens for other Internet Explorer versions may vary. Internet Explorer Pop-up Blockers You may have to disable pop-up blocking to log into your device. Either disable pop-up blocking (enabled by default in Windows XP SP (Service Pack) 2) or allow pop-up blocking and create an exception for your device’s IP address. Disable Pop-up Blockers 1In Internet Explorer, select Tools, Pop-up Blocker and then select Turn Off Pop-up Blocker. Figure 68 Pop-up Blocker You can also check if pop-up blocking is disabled in the Pop-up Blocker section in the Privacy tab. 1In Internet Explorer, select Tools, Internet Options, Privacy. Appendix A Pop-up Windows, JavaScripts and Java Permissions WAP5605 User’s Guide 114 2Clear the Block pop-ups check box in the Pop-up Blocker section of the screen. This disables any web pop-up blockers you may have enabled. Figure 69 Internet Options: Privacy 3Click Apply to save this setting. Enable Pop-up Blockers with Exceptions Alternatively, if you only want to allow pop-up windows from your device, see the following steps. 1In Internet Explorer, select Tools, Internet Options and then the Privacy tab. Appendix A Pop-up Windows, JavaScripts and Java Permissions WAP5605 User’s Guide 115 2Select Settings...to open the Pop-up Blocker Settings screen. Figure 70 Internet Options: Privacy 3Type the IP address of your device (the web page that you do not want to have blocked) with the prefix “http://”. For example, http://192.168.167.1. Appendix A Pop-up Windows, JavaScripts and Java Permissions WAP5605 User’s Guide 116 4Click Add to move the IP address to the list of Allowed sites. Figure 71 Pop-up Blocker Settings 5Click Close to return to the Privacy screen. 6Click Apply to save this setting. JavaScripts If pages of the web configurator do not display properly in Internet Explorer, check that JavaScripts are allowed. Appendix A Pop-up Windows, JavaScripts and Java Permissions WAP5605 User’s Guide 117 1In Internet Explorer, click Tools, Internet Options and then the Security tab. Figure 72 Internet Options: Security 2Click the Custom Level... button. 3Scroll down to Scripting. 4Under Active scripting make sure that Enable is selected (the default). 5Under Scripting of Java applets make sure that Enable is selected (the default). Appendix A Pop-up Windows, JavaScripts and Java Permissions WAP5605 User’s Guide 118 6Click OK to close the window. Figure 73 Security Settings - Java Scripting Java Permissions 1From Internet Explorer, click Tools, Internet Options and then the Security tab. 2Click the Custom Level... button. 3Scroll down to Microsoft VM. 4Under Java permissions make sure that a safety level is selected. Appendix A Pop-up Windows, JavaScripts and Java Permissions WAP5605 User’s Guide 119 5Click OK to close the window. Figure 74 Security Settings - Java JAVA (Sun) 1From Internet Explorer, click Tools, Internet Options and then the Advanced tab. 2Make sure that Use Java 2 for <applet> under Java (Sun) is selected. Appendix A Pop-up Windows, JavaScripts and Java Permissions WAP5605 User’s Guide 120 3Click OK to close the window. Figure 75 Java (Sun) Mozilla Firefox Mozilla Firefox 2.0 screens are used here. Screens for other versions may vary slightly. The steps below apply to Mozilla Firefox 3.0 as well. You can enable Java, Javascripts and pop-ups in one screen. Click Tools, then click Options in the screen that appears. Figure 76 Mozilla Firefox: TOOLS > Options Appendix A Pop-up Windows, JavaScripts and Java Permissions WAP5605 User’s Guide 121 Click Content to show the screen below. Select the check boxes as shown in the following screen. Figure 77 Mozilla Firefox Content Security Opera Opera 10 screens are used here. Screens for other versions may vary slightly. Appendix A Pop-up Windows, JavaScripts and Java Permissions WAP5605 User’s Guide 122 Allowing Pop-Ups From Opera, click Tools, then Preferences. In the General tab, go to Choose how you prefer to handle pop-ups and select Open all pop-ups. Figure 78 Opera: Allowing Pop-Ups Enabling Java From Opera, click Tools, then Preferences. In the Advanced tab, select Content from the left- side menu. Select the check boxes as shown in the following screen. Figure 79 Opera: Enabling Java Appendix A Pop-up Windows, JavaScripts and Java Permissions WAP5605 User’s Guide 123 To customize JavaScript behavior in the Opera browser, click JavaScript Options. Figure 80 Opera: JavaScript Options Select the items you want Opera’s JavaScript to apply. Appendix A Pop-up Windows, JavaScripts and Java Permissions WAP5605 User’s Guide 124 WAP5605 User’s Guide125 APPENDIX B IP Addresses and Subnetting This appendix introduces IP addresses and subnet masks. IP addresses identify individual devices on a network. Every networking device (including computers, servers, routers, printers, etc.) needs an IP address to communicate across the network. These networking devices are also known as hosts. Subnet masks determine the maximum number of possible hosts on a network. You can also use subnet masks to divide one network into multiple sub-networks. Introduction to IP Addresses One part of the IP address is the network number, and the other part is the host ID. In the same way that houses on a street share a common street name, the hosts on a network share a common network number. Similarly, as each house has its own house number, each host on the network has its own unique identifying number - the host ID. Routers use the network number to send packets to the correct network, while the host ID determines to which host on the network the packets are delivered. Structure An IP address is made up of four pa…

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External Photos

External photo of EUT External photo of EUT Model: DSA-12CA 12 120100 Model: DSA-12CA 12 120100

ID Label/Location Info

Label FCC ID Label Location

Internal Photos

Internal photo of EUT Antenna 2 Antenna 1 Internal photo of EUT

RF Exposure Info

FCC ID. : I88WAP5605 Report No.: TS11070025-EME Page 1 of 7 Maximum Permissible Exposure (MPE) Evaluation Report Report No. : TS11070025-EME Model No. : WAP5605 Issued Date : Sep. 16, 2011 Applicant: ZyXEL Communications Corporation No. 6, Innovation Rd II, Science-Based Industrial Park, Hsin-Chu, Taiwan Test Method/ Standard: FCC 1.1310 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 Terry Hsu / Engineer The test report was reviewed by: Name Jimmy Yang Title Engineer FCC ID. : I88WAP5605 Report No.: TS11070025-EME Page 2 of 7 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. : I88WAP5605 Report No.: TS11070025-EME Page 3 of 7 Summary of Tests MPE Evaluation meet FCC OET No. 65: 1997, IEEE C95.1-2005 5-GHz Wireless N Media Streaming Box - Model: WAP5605 FCC ID: I88WAP5605 Test Reference Results MPE Evaluation FCC Guidelines for Human Exposure IEEE C95.1 Complies FCC ID. : I88WAP5605 Report No.: TS11070025-EME Page 4 of 7 1. Introduction The EUT operates in the 5 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: 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. : I88WAP5605 Report No.: TS11070025-EME Page 5 of 7 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. : I88WAP5605 Report No.: TS11070025-EME Page 6 of 7 4 Description of EUT The EUT is 5-GHz Wireless N Media Streaming Box, 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) Antenna 1 (DAC 0) The EUT uses a permanently connected antenna. Antenna Gain : 1.484 dBi Antenna Type : Printed PCB antenna Connector Type : N/A (2) Antenna 2 (DAC 1) The EUT uses a permanently connected antenna. Antenna Gain : 1.155 dBi Antenna Type : Printed PCB antenna Connector Type : N/A FCC ID. : I88WAP5605 Report No.: TS11070025-EME Page 7 of 7 5. Test results EUT : WAP5605 Antenna gain (numeric) Mode Channel Frequency (MHz) Antenna 1 Output power to antenna (mW) Power density (mW/cm 2 ) Limit of power density (mW/cm 2 ) 36 5180 1.40734 29.17 0.00861 1 40 5200 1.40734 29.99 0.00885 1 48 5240 1.40734 30.27 0.00894 1 149 5745 1.40734 28.44 0.00840 1 157 5785 1.40734 28.77 0.00850 1 802.11a (DAC0) 161 5805 1.40734 28.38 0.00838 1 Antenna gain (numeric) Mode Channel Frequency (MHz) Antenna 2 Output power to antenna (mW) Power density (mW/cm 2 ) Limit of power density (mW/cm 2 ) 36 5180 1.30467 28.51 0.00655 1 40 5200 1.30467 29.72 0.00683 1 48 5240 1.30467 28.58 0.00657 1 149 5745 1.30467 28.44 0.00654 1 157 5785 1.30467 30.27 0.00696 1 802.11a (DAC1) 161 5805 1.30467 30.34 0.00697 1 Antenna gain (numeric) Output power to antenna (mW) Mode Channel Frequency (MHz) Antenna 1 Antenna 2DAC 0DAC 1 Power density (mW/cm 2 ) Limit of power density (mW/cm 2 ) 36 5180 1.40734 1.30467 24.66 24.04 0.01281 1 40 5200 1.40734 1.30467 24.04 24.38 0.01270 1 48 5240 1.40734 1.30467 23.17 24.60 0.01250 1 149 5745 1.40734 1.30467…

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Test Report

FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 1 of 125 EMC TEST REPORT Report No. : TS11070024-EME Model No. : WAP5605 Issued Date : Sep. 15, 2011 Applicant: ZyXEL Communications Corporation 6, Innovation Rd II, Science-Based Industrial Park, Hsin-Chu, Taiwan Test Method/ Standard: FCC Part 15 Subpart E Section §15.207§15.209 §15.407 and 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 Terry Hsu / Engineer The test report was reviewed by: Name Jimmy Yang Title Engineer FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 2 of 125 Table of Contents Summary of Tests ...................................................................................................................... 4 1. General information .............................................................................................................. 5 1.1 Identification of the EUT ................................................................................................ 5 1.2 Additional information about the EUT............................................................................ 6 1.3 Antenna description.........................................................................................................6 1.4 Peripherals equipment ..................................................................................................... 6 1.5 Adapter information ........................................................................................................6 2. Test specifications ................................................................................................................. 7 2.1 Test standard.................................................................................................................... 7 2.2 Operation mode ............................................................................................................... 8 3. Peak Output Power test (FCC 15.407) .................................................................................. 9 3.1 Operating environment.................................................................................................... 9 3.2 Test setup & procedure .................................................................................................... 9 3.3 Limit ................................................................................................................................ 9 3.4 Measured data of Maximum Output Power test results ................................................ 10 3.5 Measured data of 26dB Bandwidth test results ............................................................. 27 4. Power Spectrum Density test (FCC 15.407) ....................................................................... 44 4.1 Operating environment.................................................................................................. 44 4.2 Test setup & procedure .................................................................................................. 44 4.3 Limitation ...................................................................................................................... 44 4.4 Measured data of Power Spectrum Density test results ................................................ 45 5. Additional provisions test (FCC 15.215)............................................................................. 62 5.1 Operating environment.................................................................................................. 62 5.2 Procedure of test setup & limitation.............................................................................. 62 5.3 Measured data of Power Spectrum Density test results ................................................ 63 6. Peak excursion to average ratio test (FCC 15.407) ............................................................. 75 6.1 Operating environment.................................................................................................. 75 6.2 Test setup & procedure .................................................................................................. 75 6.3 Limitation ...................................................................................................................... 75 6.4 Measured data of Peak excursion to average ratio test results ...................................... 76 7. Radiated Emission test (FCC 15.205 & 15.209) ................................................................. 93 7.1 Operating environment.................................................................................................. 93 7.2 Test setup & procedure .................................................................................................. 93 7.3 Emission limits .............................................................................................................. 94 7.4 Radiated spurious emission test data............................................................................. 95 7.4.1 Measurement results: frequencies equal to or less than 1 GHz.................................. 95 7.4.2 Measurement results: frequency above 1GHz ........................................................... 96 8. Emission on the band edge §FCC 15.205 ......................................................................... 107 8.1 Operating environment................................................................................................ 107 8.2 Test setup & procedure ......................................................................…

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Test Report

FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 62 of 125 5. Additional provisions test (FCC 15.215) 5.1 Operating environment Temperature: 25 Relative Humidity: 50 % Atmospheric Pressure: 1008 hPa 5.2 Procedure of test setup & limitation Method of Measurement: The additional provisions mean the device must be designed to ensure that the 20dB bandwidth of the emission or whatever bandwidth may otherwise be specified in the specific rule section under which the equipment operates, is contained within the frequency band designated in the rule section under which the equipment is operated. This requirement per FCC §15.215 (c) was measured from the antenna port of the EUT using a 50ohm spectrum analyzer with the resolution bandwidth set at 300kHz (approximately 1% of the emission bandwidth), the video bandwidth set at 1MHz (VBW > RBW). FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 63 of 125 5.3 Measured data of Power Spectrum Density test results Chain 0: 802.11a mode channel 36 Chain 0: 802.11a mode channel 48 FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 64 of 125 Chain 0: 802.11a mode channel 149 Chain 0: 802.11a mode channel 161 FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 65 of 125 Chain 1: 802.11a mode channel 36 Chain 1: 802.11a mode channel 48 FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 66 of 125 Chain 1: 802.11a mode channel 149 Chain 1: 802.11a mode channel 161 FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 67 of 125 Chain 0: 802.11n HT20 mode channel 36 Chain 0: 802.11n HT20 mode channel 48 FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 68 of 125 Chain 0: 802.11n HT20 mode channel 149 Chain 0: 802.11n HT20 mode channel 161 FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 69 of 125 Chain 1: 802.11n HT20 mode channel 36 Chain 1: 802.11n HT20 mode channel 48 FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 70 of 125 Chain 1: 802.11n HT20 mode channel 149 Chain 1: 802.11n HT20 mode channel 161 FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 71 of 125 Chain 0: 802.11n HT40 mode channel 38 Chain 0: 802.11n HT40 mode channel 46 FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 72 of 125 Chain 0: 802.11n HT40 mode channel 151 Chain 0: 802.11n HT40 mode channel 159 FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 73 of 125 Chain 1: 802.11n HT40 mode channel 38 Chain 1: 802.11n HT40 mode channel 46 FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 74 of 125 Chain 1: 802.11n HT40 mode channel 151 Chain 1: 802.11n HT40 mode channel 159 FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 75 of 125 6. Peak excursion to average ratio test (FCC 15.407) 6.1 Operating environment Temperature: 23 Relative Humidity: 52 % Atmospheric Pressure: 1008 hPa 6.2 Test setup & procedure The power spectrum density per FCC §15.407(a)(6) was measured from the antenna port of the EUT. Using a 50ohm spectrum analyzer with the RBW=1MHz, VBW=3MHz for peak measurement and RBW=1MHz, VBW=10 kHz for average measurement. Peak excursion to average ratio was read directly. Set the spectrum analyzer span to view the entire emission bandwidth. The largest difference between the following two traces must be ≤ 13 dB for all frequencies across the emission bandwidth. Submit a plot. 1st Trace: Step: Set RBW = 1 MHz, VBW ≥ 3 MHz with peak detector and maxhold settings. 2nd Trace: Step 1: Set span to encompass the entire emission bandwidth (EBW) of the signal. Step 2: Set RBW = 1 MHz. Step 3: Set VBW ≥ 3 MHz. Step 4: Use sample detector mode if bin width (i.e., span/number of points in spectrum display) < 0.5 RBW. Otherwise use peak detector mode. Step 5: Use a video trigger with the trigger level set to enable triggering only on full power pulses. Transmitter must operate at full control power for entire sweep of every sweep.If the device transmits continuously, with no off intervals or reduced power intervals, the trigger may be set to “free run”. Step 6: Trace average 100 traces in power averaging mode. 6.3 Limitation Operating Frequency (MHz) Peak excursion to average ratio limit 5150~5250 <13dB 5250~5350, 5470~5725 <13dB 5725~5825 <13dB FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 76 of 125 6.4 Measured data of Peak excursion to average ratio test results Frequency Data rate PK excursionLimit Margin Mode Channel (MHz) (Mbps) (dBm) (dBm) (dB) 36 5180 9.35 13 -3.65 40 5200 9.31 13 -3.69 48 5240 9.40 13 -3.60 149 5745 9.49 13 -3.51 157 5785 9.28 13 -3.72 802.11a (DAC 0) 161 5805 9.49 13 -3.51 36 5180 9.38 13 -3.62 40 5200 9.24 13 -3.76 48 5240 9.31 13 -3.69 149 5745 9.24 13 -3.76 157 5785 9.28 13 -3.72 802.11a (DAC 1) 161 5805 6 9.46 13 -3.54 Frequency Data rate PK excursion (dBm) Limit Margin (dBm) Mode Channel (MHz) (Mbps) DAC 0DAC 1(dBm) DAC 0 DAC 1 36 5180 9.31 9.35 13 -3.69 -3.65 40 5200 9.11 9.61 13 -3.89 -3.39 48 5240 9.39 9.59 13 -3.61 -3.41 149 5745 9.42 9.52 13 -3.58 -3.48 157 5785 9.49 9.70 13 -3.51 -3.30 802.11n HT20 161 5805 6.5 9.04 9.52 13 -3.96 -3.48 36 5180 9.89 10.4113 -3.11 -2.59 40 5200 9.49 10.4713 -3.51 -2.53 48 5240 9.85 10.4613 -3.15 -2.54 802.11n HT40 149 5745 13 9.61 10.5313 -3.39 -2.47 Please see the plot below. FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 77 of 125 Chain 0: Peak excursion to average ratio @ 802.11a mode channel 36 Chain 0: Peak excursion to average ratio @ 802.11a mode channel 40 FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 78 of 125 Chain 0: Peak excursion to average ratio @ 802.11a mode channel 48 Chain 0: Peak excursion to average ratio @ 802.11a mode channel 149 FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 79 of 125 Chain 0: Peak excursion to average ratio @ 802.11a mode channel 157 Chain 0: Peak excursion to average ratio @ 802.11a mode channel 161 FCC ID: I88WAP5605 Report No.: TS11070024-EME Page 80 of 125 Chain 1: Peak excursion…

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Contact Information

Applicant

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

Technical Contact

Intertek Testing Services Taiwan Ltd.Rico Deng
[email protected](+886)-3-519-1411

11, Ln. 275, Ko Nan 1st Street · Hsinchu · Taiwan

Non-Technical Contact

Intertek Testing Services Taiwan Ltd.Rico Deng
[email protected](+886)-3-519-1411

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
415E5.75 GHz - 5.79 GHz61.67 mW
Confidentiality
Long Term
Grant Notes
Power Output listed is conducted. Device is an 802.11n device in a 2x2 Spatial Multiplexing MIMO configuration as described in this filing.The antennas used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and not be co-located with any other transmitters except in accordance with FCC multi-transmitter product procedures. End-users and installers must be provided with antenna installation instructions and transmitter operating 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