
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
www.zyxel.com 802.11n Wireless ADSL2+ 4-port Security Gateway Firmware V3.10 Edition 1, 9/2010 P-661HNU-Fx DEFAULT LOGIN DETAILS IP Address:http://192.168.1.1 User Login:User Name: user Password: 1234 Administrator Login: User Name: admin Password: 1234 Copyright 2010 ZyXEL Communications Corporation 2 Device Panels 3 Overview The P-661HNU-Fx series are high performance routers which combine high-speed ADSL Internet access, a built-in switch, a firewall and high- speed wireless networking capability. It also comes with a USB 2.0 port that can be used for file sharing via a USB compatible storage device, or inserting a 3G wireless adapter to access the internet through a 3G network. The P-661HNU-Fx can also function as a print server. Requirements Make sure you have the following things before you start. • Internet access - account information provided by your ISP, such as user name, password, and so on. • 3G account - if you want to access the Internet through a 3G network. The P-661HNU-Fx uses this 3G connection as your WAN or as a backup when the DSL connection fails. • Internet Explorer 6.0 and later versions, with JavaScript enabled, or Mozilla Firefox 3 and later versions or Safari 2.0 and later versions. 4 Hardware Connections Remove the P-661HNU-Fx’s plastic cover before using it. 1. DSL: Use a telephone wire to connect this port to a telephone jack (or the DSL or MODEM jack on a splitter, if you have one). 2. ETHERNET: Use an Ethernet cable to connect a computer to one of these ports for initial configuration and/or Internet access. 3. USB 2.0: You can do the following: 5 a. Connect a USB (version 2.0 or lower) memory stick or a USB hard drive for file sharing. The P-661HNU-Fx automatically detects the USB device. Alternatively, use a USB cable (not provided) to connect a USB (version 2.0 or lower) printer to this port. b. Insert a 3G adapter to access the Internet wirelessly via a 3G network. The P-661HNU-Fx uses this 3G WAN connection as a backup when the DSL connection fails. 4. POWER: Use the power adaptor provided with your P-661HNU-Fx to connect an appropriate power source to this socket. 5. Push the power button to the on position. Look at the LEDs (lights) on the top panel of the P-661HNU-Fx. • The POWER light blinks during start-up and is green once the P- 661HNU-Fx is ready. • An ETHERNET light turns on if the corresponding ETHERNET port is properly connected. An Ethernet port’s light blinks when the P- 661HNU-Fx is sending or receiving data through it. • The WLAN/WPS light stays green when the wireless LAN is ready. It blinks when the P-661HNU-Fx is sending/receiving data through the wireless LAN. • The DSL light stays on if a physical DSL connection exists and blinks when attempting to synchronize DSL signal. • The INTERNET light is solid green when Internet access is available and blinks when sending or receiving data. 6 • The USB light turns on when there is a USB device (printer or memory stick) or a 3G adapter connected to the P-661HNU-Fx and blinks when transmitting data. If none of the lights are on, check your connections. Make sure that you have the power adaptor connected to the P- 661HNU-Fx and plugged in to an appropriate power source. Make sure the power source is turned on. Turn the P- 661HNU-Fx off, wait for a few seconds and turn it back on. If the LEDs are still off, contact your local vendor. If you want to have the P-661HNU-Fx use 3G as your WAN or as a backup when the DSL connection fails, see your User’s Guide for how to use the Network Setting > Broadband > 3G Backup screen to set up the 3G WAN connection. Set Up a Wireless Network To set up a wireless network you need at least one wireless network card/adapter. • If you have a desktop computer, use either a wireless USB adapter or a wireless PCI adapter. • If you have a laptop, use either a wireless USB adapter or a wireless CardBus card. These are built into many laptops. 7 Setting Up a Secure Wireless Network with WPS If your wireless devices display the WPS logo, you can use Wi-Fi Protected Setup (WPS) to add wireless devices to your wireless network. If your wireless devices do not display the WPS logo, go to Set Up a Wireless Network Manually on page 10 to manually set up a wireless network. The P-661HNU-Fx supports two WPS methods for creating a secure connection. • Push Button Configuration - create a secure wireless network simply by pressing the P-661HNU-Fx’s physical WPS button. See Push Button Configuration on page 7 to have your wireless devices join the P-661HNU-Fx’s wireless network using the Windows wireless configuration tool. • PIN Configuration - create a secure wireless network by entering your wireless device’s PIN (Personal Identification Number) into the configuration screen of the P-661HNU-Fx. See PIN Configuration on page 8. You must use the same method on the P-661HNU-Fx and the wireless client. Push Button Configuration 1. Place a WPS-enabled device that is installed in your system and supports the WPS Push Button method within range of the P- 661HNU-Fx. 8 2. Press the WLAN button on the P-661HNU-Fx’s top panel for five seconds. 3. Use the WPS-enabled device’s WPS button. It can be either a button in the utility or a physical button. See the device’s documentation if you cannot locate the WPS button. It doesn’t matter which button is pressed first. You must press the second button within two minutes of pressing the first one. 4. The P-661HNU-Fx and the wireless device establish a secure connection. This can take up to two minutes. 5. Congratulations! Your computer is now ready to connect to the Internet wirelessly through your P-661HNU-Fx. PIN Configuration 1. Place a WPS-enabled device that is installed in your computer and supports the WPS PIN configuration method within range of the P- 661HNU-Fx. 2. Log into the P-661HNU-Fx’s web configurator at http://192.168.1.1 (see The Web Configurator on page 12 for more details on this). 3. In the navigation panel, click Network…
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Product Number: AN2400-03A03RS Product Name: Antenna COR/F-G-15b Specification For Approval Date: 2010 / 09 / 20 File No.: 100920003 Version: 1.0 Customer: 合勤科技有限公司 Customer P/N: 65-031-066104B INVAX P/N: AN2400-03A03RS Description : Antenna Cortec Checked By: Customer Approved By: INVAX System Technology Corp. Cortec Technology Inc. 4F. No. 815.Chung Hsiao East Rd.,Sec.5 Xian-Xi Industrial, Sha-Tou Administration Zone, Taipei, TAIWAN Chang-An Town, Dong-Guan City, Guangdong Province, China TEL:886-2-2788-5218 FAX:886-2-2783-1658 TEL:86-769-85388261 FAX:86-769-85317869 http://www.invaxsystem.com http://www.cortec.com.cn Product Number: AN2400-03A03RS Product Name: Antenna Page 1 Version: 1.0 Issue Date: 2010-09-20 Index: 1. Specification / Page 2 2. Characteristics and Reliability Test / Page 3 3. Antenna - S Parameter Test Data / Page 4 4. Antenna - Radiation Pattern Test Data / Page 5 ~ 7 5. Mechanical and Packing Drawing / Page 8 ~ 9 6. Material Description and RoHS Test Report / Page 10 ~ end Product Number: AN2400-03A03RS Product Name: Antenna Page 2 Version: 1.0 Issue Date: 2010-09-20 1. Specification Sample Photo A. Electrical Characteristics Frequency 2400 ~ 2500 MHz S.W.R. <= 2.0 Antenna Gain 2.0dBi Polarization Linear Impedance 50 Ohm B. Material & Mechanical Characteristics Material of Radiator Cu Material of Plastic Body: TPE Hinge: PA+ABS Holder: PA+ABS Cable Type RG-178 Connector Type SMA Male Reverse Connector Pull Test >= 3 Kg Connector Torque Test 200 ~ 500 g.cm C. Environmental Operation Temperature - 40 ̊C ~ + 65 ̊C Storage Temperature - 40 ̊C ~ + 80 ̊C Product Number: AN2400-03A03RS Product Name: Antenna Page 3 Version: 1.0 Issue Date: 2010-09-20 2. Characteristics and Reliability Test Test Items Test Condition and Procedure Requirements C1 S.W.R. Set DUT on Network Analyzer; make individual calibration to test Directive DUT specification C2 Antenna Gain Set DUT on Antenna Chamber; make individual calibration to test Directive DUT specification M1 Vibration MIL-STD-202G, 201A Amplitude: 0.03 inch (0.76mm); Freq: 10 to 55 Hz 3 directions; 2 hours for each direction 1. No Visual Damage 2. Frequency Tol.<= 5% M2 Random Drop Height: 1.5 Meter; 3 directions; 1 time for each direction 1. No parts separated 2. Frequency Tol.<= 5% M3 Solderability MIL-STD-202G, 210F, cond. A Solder iron: 350±10°C; Duration: 5 seconds 1. Mounted on PCB 2. No Visual Damage M4 Terminal- Pull Test MIL-STD-202G, 211A, cond. A Holding with individual specification; force applied to axis of terminal 1. Directive DUT specification 2. Frequency Tol.<= 5% M5 Terminal- Torque Test MIL-STD-202G, 211A, cond. E Holding with individual specification; applied clockwise and counterclockwise to the axis of terminal 1. Directive DUT specification 2. Frequency Tol.<= 5% M6 Dimension Inspection of dimension, color, material, package, surface process Directive DUT specification E1 Salt Spray MIL-STD-202G, 101E, cond. B Temp: 35°C; RH: >= 95%; NaCl solution: >= 5%; Time: 48 hours After 2 Hours Recovery 1. No Visual Damage 2. Frequency Tol.<= 5% E2 Humidity MIL-STD-202G, 103B, cond. B Temp: 40°C; RH: >= 95%; Time: 48 hours After 2 Hours Recovery 1. No Visual Damage 2. Frequency Tol.<= 5% E3 Thermal Shock 1 Cycle: - 40°C (30 minutes) to + 80°C (30 minutes) Cycles: 24 After 2 Hours Recovery 1. No Visual Damage 2. Frequency Tol.<= 5% E4 Life (High Temp.) MIL-STD-202G, 108A, cond. A Temp: 85°C; Time: 96 hours After 2 Hours Recovery 1. No Visual Damage 2. Frequency Tol.<= 5% R1 RoHS With Reference to IEC 62321:2008 with flow chart Directive RoHS 2002/95/EC R2 PFOS With Reference to USA EPA 3540C:1996 by LC/MS Directive RoHS 2006/122/EC R3 PFOA With Reference to USA EPA 3540C:1996 by LC/MS Directive RoHS 2006/122/EC Product Number: AN2400-03A03RS Product Name: Antenna Page 4 Version: 1.0 Issue Date: 2010-09-20 3. Antenna - S Parameter Test Data Product Number: AN2400-03A03RS Product Name: Antenna Page 5 Version: 1.0 Issue Date: 2010-09-20 4. Antenna - Radiation Pattern Test Data Testing Equipment Specification: Antenna Anechoic Chamber Dimension: 8 x 4 x 4 m Quite Zone: 600mm @1 GHz Isolation: >100dB @ 1 MHz ~ 10 GHz Testing Equipment: Agilent 5071B Received Antenna: 0.7 ~ 6.0 GHz for Gain Calibration Double Ridged Horn Antenna 5. Mechanical Drawing See attached files 6. Material Description and RoHS Test Report See attached files BCD SCALE: 1/1 UNITS: mmREVISION: A APPROVED BY Tolerance X.XXX.XX ° ± 1 ° ± 0.1 APPROVER DATE SIGN DESCRIPTION TITLE: 2.4GHz Antenna PART NO.: AN2400-03A03RS DWG NAME: AN2400-03A03RS.dwg CHECKED BY DESIDNED BY Cortec Technology Inc. Tel :886-2-27885218 Fax:886-2-27831658 ± 0.3 Body-1 Q'ty 3 Finished 1 Body-3 Description NO. Body-2 2 SMAMale Reverse 1 1 1 4 1 Material PA+ABS TPE Part Number AN0302-01WHQ2 AN9201-07WHQ2 AN03-T09WHQ2 PA+ABS Yang Dong 2010.09.27 Liu Kui Grant POM 2010.09.27 2010.09.27 2 3 4 White WhiteWhite White 1 SMA305-CPT5AN03 Revision : A Customer : ALL APPROVED BY: CHECKED BY: DESIGNED BY: Name: 2.4GHz Antenna Page: 1 of 1 Date: 2010.09.27 Part Number : AN2400-03A03RS 產品包裝規範 PACKING CRITERION HU CHUNJIN Liu Kui Grant 1.Enter the frame。 2.PACKING。 FRONT SIDE ITEM NO: ### QTY: ### PCS N W: ### KGS G W: ### KGS MEAS 38.0x26.0x33.0 cm 3 . SEALING。 SIZE:38.0x26.0x33.0cm 400PCS/BOX MADE IN CHINA C/NO I V X TPE Datasheet 苏 州 市 华 诺 线 缆 科 技 有 限 公 司 电话:0512-65433584 传真:0512-65438693 邮编:215137 地址:苏州市相城区太平镇工业园
Attestation for FCC Declaration of Conformity FCC ID: I88P661HNUF1 Date: Oct 13, 2010 Please be notified that we, the undersigned, Cerpass technology Coporation declares that the product which bears the above FCC ID is a;so compliant with the FCC requirements for DOC. The test report number supporting the DOC is SEFD1009041. Testing in regards to this report was done by Cerpass technology Coporation, located at No. 7-2, Moshihkeng, Fongtian Village, Shihding Township, Taipei County, Taiwan, R.O.C., which has been accredited in accordance to all of the requirements of 47 CFR 2.948(d) and(e)of the FCC rules and KDB349827. Sincerely, Anson Chou / Manager Tel: +886-2-26558100#5301 Fax: +886-2-26558200 Email: [email protected]
AHTHORIZATION LETTER FCC ID: I88P661HNUF1 Date: Oct 13, 2010 To whom it may concern: We, the undersigned, hereby authorize Cerpass Technology (Suzhou) Co., Ltd. of China to act on our behalf, as our agent, in the following matters related to the FCC approval of our products: report submittal, related correspondence, the signing of all documents relating to these matters, and any other lawful activity necessary to obtain such certification. Any act carried out by Cerpass Technology (Suzhou) Co., Ltd. within the scope of this authorization shall have the same effects as our own. This authorization shall expire 2 weeks from original data. If you have any questions regarding the authorization, please don’t hesitate to contact me. We also authorize Teleconformity, Mr. M. Koop, (address: Rietven 31, 7534NH Enschede, Netherlands) to process this application. Thank you. Yours Sincerely, Engineer ZyXEL Communications Corporation
ZyXEL Communications Corporation Date: Oct 13, 2010 Federal Communications Commission Authorization and Evaluation Division FCC ID: I88P661HNUF1 Confidentiality Request Pursuant to Sections 0.457 and 0.459 of the Commission’s Rules, the Applicant hereby requests confidential treatment of information accompanying this Application as outlined below: 1 Schematics 2 Operational Description 3 Block Diagram. The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the Applicant and provide unjustified benefits to its competitors. The Applicant understands that pursuant to Rule 0.457, disclosure of this Application and all accompanying documentation will not be made before the date of the Grant for this application. Sincerely, Wang Yi , engineer ZyXEL Communications Corporation
802.11n Wireless ADSL2+ 4-port Security Gateway (Model name: P-661HNU-F1) Exterior Photographs: 1) 2) 3) 4) 5) 6) 7) adapter 8) adapter 9) adapter 10) adapter
802.11n Wireless ADSL2+ 4-port Security Gateway (Model name: P-661HNU-F1) FCC ID Position: FCC ID
802.11n Wireless ADSL2+ 4-port Security Gateway (Model name: P-661HNU-F1) Inside photo: 1) 2) 3)
Page: 1 of 4 RF Exposure Evaluation Declaration Product: 802.11n Wireless ADSL2+ 4-port Security Gateway Test Item: RF Exposure Evaluation Declaration 1. RF Exposure Evaluation 1.1. Limits According to FCC 1.1310: The criteria listed in the following table shall be used to evaluate the environment 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/cm2) Average Time (Minutes) (A) Limits for Occupational/ Control Exposures 300-1500 -- -- F/300 6 1500-100,000 -- -- 5 6 (B) Limits for General Population/ Uncontrolled Exposures 300-1500 -- -- F/1500 6 1500-100,000 -- -- 1 30 F= Frequency in MHz Friis Formula Friis transmission formula: Pd = (Pout*G)/(4*pi*r2) Where Pd = power density in mW/cm2 Pout = output power to antenna in mW G = gain of antenna in linear scale Pi = 3.1416 R = distance between observation point and center of the radiator in cm Pd id the limit of MPE, 1 mW/cm2 . If we know the maximum gain of the antenna and the total power input to the antenna, through the calculation, we will know the distance r where the MPE limit is reached. Page: 2 of 4 1.2. Test Procedure Software provided by client enabled the EUT to transmit and receive data at lowest, middle and highest channel individually. The temperature and related humidity: 18°Cand 78% RH. 1.3. EUT Operation condition Software provided by client enabled the EUT to transmit and receive data at lowest, middle and highest channel individually. 1.4. Test Result of RF Exposure Evaluation Antenna Gain: Ant0: antenna type: Dipole antenna antenna gain: 2.0dBi Ant1: antenna type: Dipole antenna antenna gain: 2.0dBi Output Power Into Antenna & RF Exposure Evaluation Distance: 1) 802.11b (can transmit on An0 only) Test date: Channel Channel Frequency (MHz) Peak Output Power to Antenna (mW) Power Density at R = 20 cm to Antenna (mW/cm2) 01 2412.00 92.8966 0.0292907 06 2437.00 55.0808 0.0173672 11 2462.00 60.3949 0.0194274 2) 802.11g (can transmit on An0 only) Test date: Channel Channel Frequency (MHz) Peak Output Power to Antenna (mW) Power Density at R = 20 cm to Antenna (mW/cm2) 01 2412.00 113.7627 0.0358698 06 2437.00 77.6247 0.0244754 11 2462.00 84.7227 0.0267134 Page: 3 of 4 3) 802.11n(20MHz) (An0) Test date: Channel Channel Frequency (MHz) Peak Output Power to Antenna (mW) Power Density at R = 20 cm to Antenna (mW/cm2) 01 2412.00 51.5229 0.0162454 06 2437.00 43.9542 0.0138589 11 2462.00 49.6592 0.0156577 4) 802.11n(20MHz) (An1) Test date: Channel Channel Frequency (MHz) Peak Output Power to Antenna (mW) Power Density at R = 20 cm to Antenna (mW/cm2) 01 2412.00 40.2717 0.0126978 06 2437.00 46.8813 0.0147819 11 2462.00 40.0867 0.0126395 3) 802.11n(20MHz) (An1 and An0) Test date: Channel Channel Frequency (MHz) Peak Output Power to Antenna (mW) Power Density at R = 20 cm to Antenna (mW/cm2) 01 2412.00 91.8333 0.0289554 06 2437.00 90.7821 0.0286239 11 2462.00 89.7429 0.0282963 5) 802.11n(40MHz) (An0) Test date: Channel Channel Frequency (MHz) Peak Output Power to Antenna (mW) Power Density at R = 20 cm to Antenna (mW/cm2) 03 2422.00 51.9996 0.0163957 06 2437.00 54.7016 0.0172476 09 2452.00 49.3174 0.0155500 Page: 4 of 4 6) 802.11n(40MHz) (An1) Test date: Channel Channel Frequency (MHz) Peak Output Power to Antenna (mW) Power Density at R = 20 cm to Antenna (mW/cm2) 03 2422.00 46.4515 0.0146463 06 2437.00 46.1318 0.0145455 09 2452.00 43.4510 0.0137003 7) 802.11n(40MHz) (An1 and An0) Test date: Channel Channel Frequency (MHz) Peak Output Power to Antenna (mW) Power Density at R = 20 cm to Antenna (mW/cm2) 03 2422.00 98.4011 0.0310262 06 2437.00 100.9253 0.0318221 09 2452.00 92.6830 0.0292233 Note: The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission formula is far below the limit of 1 mW/cm2.
CERPASS TECHNOLOGY CORP. Report No.: SEFI1009041 Cerpass Technology Corp. Issued Date : Oct 11, 2010 Tel:86-512-6917-5888 Fax: 86-512-6917-5666 Page No. : 1 of 353 FCC TEST REPORT According to FCC CFR Title 47 Part 15 Subpart C Applicant : ZyXEL Communications Corp. Address : NO.6,Innovation Rd.IIScience Based Industrial Park Hsin-Chu,Taiwan Manufacturer(1) : ZyXEL Communications Corp. Address(1) : NO.6,Innovation Rd.IIScience Based Industrial Park Hsin-Chu,Taiwan Manufacturer(2) : ZyXEL Communications(Wuxi) Co Ltd. Address(2) : 60 – E, Minshan RD, New District, Wuxi, Jiangsu, P.R. China Equipment : 802.11n Wireless ADSL2+ 4-port Security Gateway Model No. : P-661HNU-F1,P-661HNU-F3 FCC ID : I88P661HNUF1 The test result refers exclusively to the test presented test model / sample. Without written approval of Cerpass Technology Corp. the test report shall not be reproduced except in full. The test report must not be used by the clients to claim product certification approval by NVLAP or any agency of the Government. CERPASS TECHNOLOGY CORP. Report No.: SEFI1009041 Cerpass Technology Corp. Issued Date : Oct 11, 2010 Tel:86-512-6917-5888 Fax: 86-512-6917-5666 Page No. : 2 of 353 Table of Contents 1. Report of Measurements and Examinations.............................................................................................6 2. Test Configuration of Equipment under Test............................................................................................7 2.1. Feature of Equipment under Test .................................................................................................... 7 2.2. Carrier Frequency of Channels ....................................................................................................... 8 2.3. Test Manner ..................................................................................................................................... 9 2.4. Description of Test System .............................................................................................................. 9 2.5. Connection Diagram of Test System ............................................................................................. 10 2.6. General Information of Test ............................................................................................................11 2.7. Measurement Uncertainty ..............................................................................................................11 3. Test of Conducted Emission ....................................................................................................................12 3.1. Test Limit........................................................................................................................................ 12 3.2. Test Procedures............................................................................................................................. 12 3.3. Typical Test Setup.......................................................................................................................... 13 3.4. Measurement Equipment .............................................................................................................. 13 3.5. Test Result and Data ..................................................................................................................... 14 4. Test of Radiated Emission ........................................................................................................................18 4.1. Test Limit........................................................................................................................................ 18 4.2. Test Procedures............................................................................................................................. 18 4.3. Typical Test Setup.......................................................................................................................... 19 4.4. Measurement Equipment .............................................................................................................. 20 4.5. Test Result and Data ..................................................................................................................... 21 5. Occupied Bandwidth ...............................................................................................................................261 5.1. Test Limit...................................................................................................................................... 261 5.2. Test Procedures........................................................................................................................... 261 5.3. Test Setup Layout ........................................................................................................................ 261 5.4. Measurement Equipment ............................................................................................................ 261 5.5. Test Result and Data ................................................................................................................... 262 6. Maximum Peak Output Power ................................................................................................................274 6.1. Test Limit...................................................................................................................................... 274 6.2. Test Procedure ............................................................................................................................ 274 6.3. Test Setup Layout ........................................................................................................................ 275 6.4. Measurement Equipment ............................................................................................................ 275 6.5. Test Result and Data .......................................................................…
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802.11n Wireless ADSL2+ 4-port Security Gateway (Model name: P-661HNU-F1) Test Photograph: Front View of Conducted Emission Test Back View of Conducted Emission Test Front View of Radiated Emission Test Back View of Radiated Emission Test
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15C | 2.42 GHz - 2.45 GHz | 101.00 mW |
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