
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
www.zyxel.com www.zyxel.com HES-309M WiMAX Outdoor CPE Copyright © 2010 ZyXEL Communications Corporation Firmware Version 2.00 Edition 1, 10/2010 Default Login Details IP Address:http://192.168.1.1 User Name:admin Password:1234 About This User's Guide HES-309M Series User’s Guide 3 About This User's Guide Intended Audience This manual is intended for people who want to configure the ZyXEL WiMAX Device using the ZyXEL Web Configurator. You should have at least a basic knowledge of TCP/IP networking concepts and topology. 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. • ZyXEL Web Site Please refer to www.zyxel.com for additional support documentation and product certifications. Documentation Feedback Send your comments, questions or suggestions to: [email protected] Thank you! The Technical Writing Team, ZyXEL Communications Corp., 6 Innovation Road II, Science-Based Industrial Park, Hsinchu, 30099, Taiwan. Need More Help? More help is available at www.zyxel.com. About This User's Guide HES-309M Series User’s Guide 4 • Download Library Search for the latest product updates and documentation from this link. Read the Tech Doc Overview to find out how to efficiently use the documentation in order to better understand how to use your product. • Knowledge Base If you have a specific question about your product, the answer may be here. This is a collection of answers to previously asked questions about ZyXEL products. •Forum This contains discussions on ZyXEL products. Learn from others who use ZyXEL products and share your experiences as well. Customer Support Should problems arise that cannot be solved by the methods listed above, you should contact your vendor. If you cannot contact your vendor, then contact a ZyXEL office for the region in which you bought the device. See http://www.zyxel.com/web/contact_us.php for contact information. Please have the following information ready when you contact an office. • Product model and serial number. •Warranty Information. • Date that you received your device. • Brief description of the problem and the steps you took to solve it. Document Conventions HES-309M Series User’s Guide 5 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 WiMAX 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 product(s) described in this book may be referred to as the “WiMAX Device”, the “device”, the “system” or the “product” 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, TOOLS > Logs > Log Settings means you first click Tools in the navigation panel, then the Logs sub menu and finally the Log Settings 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”. Document Conventions HES-309M Series User’s Guide 6 Icons Used in Figures Figures in this User’s Guide may use the following generic icons. The WiMAX Device icon is not an exact representation of your product. Table 1 Common Icons WiMAX Device ComputerWireless Signal NotebookServerBase Station TelephoneSwitchRouter Internet CloudNetwork Cloud Safety Warnings HES-309M Series User’s Guide 7 Safety Warnings For your safety, be sure to read and follow all warning notices and instructions. • 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 it to the right supply voltage (for example, 110V AC in North America or 230V AC in Europe). • Do NOT remove the plug and connect it to a power outlet by itself; always attach the plug to the power adaptor first before connecting it to a power outlet. • 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 device and the power source. • 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…
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Lettery of Agency "I, an officer of ZyXEL Communications Corporation do hereby authorize Rex Liao, who is Engineer in Intertek Testing Services Taiwan Ltd. to act on our behalf in front of the Federal Communications Commission with respect to all matters relating to certification of equipment under Part 15 and Part 18 of the FCC Rules until further notice." I further certify that no party (as defined in §1.2002(b) of CFR 47, 1992) to this application, including myself, is subject to a denial of federal benefits, that includes FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C.,853(a). By: Wang Yi Signature Printed Title: Section Manager Date: 2011/Jan/5
Confidentility Letter (Permanent) Attention: Application Examiner Re: Request for confidentiality Applicant: ZyXEL Communications Corporation FCC ID: I88HES309M To whom it may concern, Request is hereby submitted by ZyXEL Communications Corporation to withhold permanently from public review certain portions of the application for equipment certification for the referenced FCC identifiers. This request for confidentiality is made pursuant to 47 CFR 0.457(d) of the FCC Rules. In particular, the following sections of the application are to be kept permanently confidential: • Schematics • Detailed Block diagrams • Detailed Operational/Functional Description • Tune-up specification • BOM Rationale for request for confidentiality: ZyXEL Communications Corporation has invested considerable time and materials in research and development to produce the referenced product. Disclosure of the permanently confidential portions of this application to competitors would not only give them significant competitive advantages in developing similar products, but would also disclose successful implementation of unpublished, leading edge technology developed by us. If you have questions or need further information, please contact the undersigned. Sincerely, Section Manager ZyXEL Communications Corporation 2010/1/5
Attestation for FCC Declaration of Conformity FCC ID: I88HES309M Data: 2011/1/5 Please be notified that we, the undersigned, ZyXEL Communications Corporation 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 TS10110090-EME. Testing in regards to this report was done by Intertek Testing Service Taiwan Ltd., located at No. 11, Lane 275, Ko Nan 1st Street, Shiang-Shan District, Hsinchu Taiwan, which has been accredited in accordance to all of the requirements of 47CFR 2.948 (d) and (e) of the FCC rules and KDB349827. Sincerely, Printed name: Wang Yi Position: Section Manager ZyXEL Communications Corporation Tel: +886-3-5783942 Fax: +886-3-5782439 Email: [email protected]
1 Doug Noble From: Sunny Liu Intertek [[email protected]] Sent: Thursday, February 10, 2011 9:09 PM To: Doug Noble; Eric Chu Intertek; Jimmy Yang Intertek; Terry Hsu Intertek Cc: customerservice Subject: RE: www.acbcert.com ATCB010132 | I88HES309M | | | I88HES309M_ATCB010132 Dear Doug, Thanks for you comments, please see my answer as below: 1. For the internal photos exhibit please remove the shields from the PCB’s used in the transmitter. A: We revised the internal photo and upload to ATCB website. 2. The MPE exhibit fails the 1 mW/cm2 limit. With the data in the exhibit the answer would be 2.6287 mW/cm2. The EUT would have to be at least 33cm from bystanders to pass a t th is power level. A: We re vised the minimum distance from 20 cm to 40 cm of MPE tset report and upload to ATCB website. 3. In the test report on page 5 the power is listed at 41.21 dBm with is 13.21 Watts at the antenna connectors. If this power is put into a 14dBi antenna the power would be 331.89 Watts which I don’t think would meet the 20cm limit either. The unit would have to be a fixed location with a distance to bystander of 162cm which would be 0.99 mW/cm2 which is under the limit by only 0.01 mW/cm2. A: The power is 41.21 dBm at antenna terminals not connector, include the antenna gain. Tthe minimum distance should be 40 cm, so our client revsied the user namual on page 238. 4. Please explain the Form 731 power levels of 0.52602 Watts and 0.5152 Watts when on page 5 of test report it lists the conducted power at 41.21 dBm = 13.21 Watts. A: It is the conducted power not include the antenna gain. So the power is 0.52602 Watts and 0.5152 Watts. Thanks for your kindly help! Sunny From: Doug Noble [mailto:[email protected]] Sent: Saturday, January 29, 2011 3:45 AM To: Eric Chu Intertek; Sunny Liu Intertek; Julie Wang Intertek; Jimmy Yang Intertek; Terry Hsu Intertek Cc: [email protected] Subject: www.acbcert.com ATCB010132 | I88HES309M | | | I88HES309M_ATCB010132 Regarding www.acbcert.com application: ATCB ID: ATCB010132 FCC ID: I88HES309M IC: TCF: Account name: ITSEMCTPE Please read comments concerning this application. Thank you, Doug Noble ____________________________________________ 2 Douglas E. Noble Examining Compliance Engineer American Certification Body Certification for the Wireless Industry www.acbcert.com (703) 847-4700 corporate email: [email protected] corporate fax: 703/ 847-6888 direct number: 480-820-3830 alternate email: [email protected] cell number: 480-747-2409 NOTICE: This E-Mail message and any attachment may contain privileged or company proprietary information. If you received this message in error, please return to the sender. CONFIDENTIALITY NOTICE This email may contain confidential or privileged information, if you are not the intended recipient, or the person responsible for delivering the message to the intended recipient then please notify us by return email immediately. Should you have received this email in error then you should not copy this for any purpose nor disclose its contents to any other person. http://www.intertek.com
External photo of EUT External photo of EUT PoE PoE External photo of EUT PoE
Internal photo of EUT Internal photo of EUT Internal photo of EUT Internal photo of EUT Internal photo of EUT PoE Internal photo of EUT PoE PoE Internal photo of EUT PoE
FCC ID. : I88HES309M Report No.: TS10110092-EME Page 1 of 6 Maximum Permissible Exposure (MPE) Evaluation Report Report No. : TS10110092-EME Model No. : HES-309M, MAX308M Issued Date : Jan. 06, 2010 Applicant: ZyXEL Communications Corporation 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 Sunny Liu/ Senior Officer These measurements were taken by: Sign on File Jimmy Yang/ Engineer The test report was reviewed by: Name Arthur Tsai Title Engineer FCC ID. : I88HES309M Report No.: TS10110092-EME Page 2 of 6 Table of Contents Summary of Tests ............................................................................................................. 3 1. Introduction .................................................................................................................. 4 2. RF Exposure Limit ....................................................................................................... 4 3. RF Exposure calculations ............................................................................................. 5 4 Description of EUT ....................................................................................................... 5 4. Test results .................................................................................................................... 6 FCC ID. : I88HES309M Report No.: TS10110092-EME Page 3 of 6 Summary of Tests MPE Evaluation meet FCC OET No. 65: 1997, IEEE C95.1-2005 Test Reference Results MPE Evaluation FCC Guidelines for Human Exposure IEEE C95.1 Complies FCC ID. : I88HES309M Report No.: TS10110092-EME Page 4 of 6 1. Introduction The EUT operates in the 2.5GHz band about WiMAX IEEE 802.16e. 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 40 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. : I88HES309M Report No.: TS10110092-EME Page 5 of 6 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 ) 4 Description of EUT The EUT is a WiMAX Outdoor CPE and was defined as fixed station, it has two type of Bandwidth, one is 5MHz, the other is 10MHz and was defined as information technology equipment. The customer confirmed the models listed below were identical to model HES-309M (EUT). Different brands served as marketing strategy. Trade Name Model Number ZyXEL HES-309M MitraStar MAX307M 4.1 Antenna description 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 : 14dBi max Antenna Type : Directional patch antenna Connector Type : I-PAX FCC ID. : I88HES309M Report No.: TS10110092-EME Page 6 of 6 4. Test results For 5 MHz Modulation(Coding rate) Frequency (MHz) Maximum antenna gain (numeric Output power to antenna (mW) Power density (mW/cm 2 ) Limit of power density (mW/cm 2 ) 2502.5 25.12 498.88 0.623261289 1.0 2590 25.12 500.03 0.624698054 1.0 QPSK(1/2) 2687.5 25.12 526.02 0.657158536 1.0 2502.5 25.12 464.52 0.580323494 1.0 2590 25.12 476.43 0.595209910 1.0 QPSK(3/4) 2687.5 25.12 498.88 0.623261289 1.0 2502.5 25.12 474.24 0.592475169 1.0 2590 25.12 486.41 0.607673298 1.0 16QAM(1/2) 2687.5 25.12 506.99 0.633388470 1.0 2502.5 25.12 480.84 0.600717319 1.0 2590 25.12 497.74 0.621827828 1.0 16QAM(3/4) 2687.5 25.12 516.42 0.645164041 1.0 For 10 MHz Modulation(Coding rate) Frequency (MHz) Maximum antenna gain (numeric Output power to antenna (mW) Power density (mW/cm 2 ) Limit of power density (mW/cm 2 ) 2505 25.12 458.14 0.572361158 1.0 2590 25.12 483.06 0.603490105 1.0 QPSK(1/2) 2685 25.12 515.23 0.643680205 1.0 2505 25.12 450.82 0.563209736 1.0 2590 25.12 475.34 0.593840965 1.0 QPSK(3/4) 2685 25.12 506.99 0.633388470 1…
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FCC ID. : I88HES309M Report No.: TS10110090-EME Page 1 of 56 EMC TEST REPORT Applicant: ZyXEL Communications Corporation 6, Innovation Rd II, Science-Based Industrial Park, Hsin-Chu, Taiwan Test Method/ Standard: 47 CFR FCC Part 2 and Part 27, Subpart C 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 Sunny Liu/ Sr. Officer These measurements were taken by: Sign on File Jimmy Yang/ Engineer The test report was reviewed by: Name Arthur Tsai Title Engineer Report No. : TS10110090-EME Model No. : HES-309M, MAX308M Issued Date : Jan. 05, 2011 FCC ID. : I88HES309M Report No.: TS10110090-EME Page 2 of 56 Table of Contents 1. Summary of Test Data............................................................................................... 4 2. General Information................................................................................................... 5 3. Test Equipment List................................................................................................... 9 4. RF Power Output..................................................................................................... 11 4.1 Conducted Power Measurement.................................................................... 11 4.1.2 LIMITS OF RF Power Output....................................................................... 11 4.1.3 Method of Measurement............................................................................... 11 4.1.4 Test Diagram................................................................................................... 11 4.1.5 Test Result....................................................................................................... 12 4.2 Radiated Power Measurement........................................................................ 13 5. Occupied Bandwidth............................................................................................... 15 5.1 LIMITS OF Occupied Bandwidth Measurement........................................... 15 5.2 Method of Measurement.................................................................................. 15 5.3 Test Diagram...................................................................................................... 15 5.4 Test Result.......................................................................................................... 16 6. Spurious Emissions at Antenna Terminals........................................................... 20 6.1 LIMITS OF Spurious Emissions at Antenna Terminals Measurement...... 20 6.2 Method of Measurement.................................................................................. 20 6.3 Test Diagram...................................................................................................... 20 6.4 Test Result.......................................................................................................... 21 7. Field Strength of Spurious Radiation.................................................................... 35 7.1 LIMITS OF Field Strength of Spurious Radiation MEASUREMENT......... 35 7.2 Test Procedure and Setup................................................................................ 35 7.3 Method of Measurement.................................................................................. 35 7.3.1 Spurious Radiated Emission........................................................................ 35 7.3.2 Radiated Field Strength................................................................................. 36 7.4 Test Diagram...................................................................................................... 36 7.4.1 Spurious Radiated Emission........................................................................ 36 7.4.2 Radiated Field Strength................................................................................. 37 7.5 Field Strength of Spurious Radiation Emission Limit................................... 37 7.5.1 Spurious Radiated Emission........................................................................ 37 7.5.2 Radiated Field Strength................................................................................. 37 7.6 Test Result.......................................................................................................... 38 8. AC power line conducted emission....................................................................... 45 8.1 Method of Measurement.................................................................................. 45 8.2 Test Diagram...................................................................................................... 45 8.3 Emission Limit.................................................................................................... 46 8.4 Test Result.......................................................................................................... 47 9. Frequency Stability.................................................................................................. 49 9.1 Method of Measurement.................................................................................. 49 9.2 Test Result.......................................................................................................... 50 FCC ID. : I88HES309M Report No.: TS10110090-EME Page 3 of 56 Attachment 1: PHY Profile.......................................................................................... 52 Attachment 2: Power Class Profile............................................................................ 55 FCC ID. : I88HES309M Report No.: TS10110090-EME Page 4 of 56 …
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Radiated Emission Test set-up photo Conducted Emission Test set-up photo
11 Ln. 275, Ko Nan 1st Street · Hsinchu · Taiwan
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 2 | 27 | 2.50 GHz - 2.69 GHz | 526.00 mW | 4M47D2D | 7.781 ppm |
Tri-Band Wireless BE19000 10G Ethernet VoIP Gateway with SFP+ / Tri-Band Wireless BE19000 10G Ethernet VoIP Gateway / Tri-Band Wireless BE19000 10G Ethernet Gateway with SFP+ / Tri-Band Wireless BE19000 10G Ethernet Gateway
Equipment Class
6ID - 15E 6 GHz Low Power Indoor Access Point
802.11be (WiFi 7) Triple-Radio Unified Pro Access Point
Equipment Class
DTS - Digital Transmission System
802.11ax (WiFi 6) Dual-Radio Wall-Plate Unified Access Point
Equipment Class
NII - Unlicensed National Information Infrastructure TX
AX7800 WiFi 6E Tri-Band Gigabit Wireless Extender
Equipment Class
DTS - Digital Transmission System
AX11000 WiFi 6E 10G Ethernet Gateway
Equipment Class
NII - Unlicensed National Information Infrastructure TX