
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Manual DWL-G700AP 2.4GHz Building Networks for People Wireless Access Point D-Link AirPlus G TM 2 Contents Package Contents................................................................................ 3 Introduction............................................................................................ 4 Wireless Basics.................................................................................... 6 Getting Started ...................................................................................... 8 Using the Configuration Utility................................................................ 9 Networking Basics.............................................................................. 19 Troubleshooting................................................................................... 32 Technical Specifications...................................................................... 37 Contacting Technical Support.............................................................. 39 Warranty and Registration................................................................... 40 4 Introduction At up to five times the speed of previous wireless devices (up to 54Mbps), you can work faster and more efficiently, increasing productivity. With the DWL-G700AP, bandwidth- intensive applications like graphics or multimedia will benefit significantly because large files are able to move across the network quickly. The D-Link AirPlus TM G DWL-G700AP Wireless Access Point is an 802.11g high- performance, wireless device that is also compatible with 802.11b devices. It is an ideal way to extend the reach and number of computers connected to your wireless network. Capable of data transfer rates up to 54Mbps, when used with other D-Link AirPlus G products, the DWL-G700AP is compatible with most popular operating systems, including Macintosh, Linux and Windows, and can be integrated into a large network. 5 Up to 5X Faster with AirPlus G Products - high-speed wireless data transfer rates up to 54Mbps. With increased data rate and capacity, the DWL-G700AP delivers media rich content such as digital images, videos, and MP3 files much faster than standard 802.11b networks. Fully 802.11b Compatible β Fully compatible with the IEEE 802.11b standard and interoperable with all existing 802.11b compliant devices. Network Security with up to 128-bit WEP Encryption β Supports 64/128- bit WEP encryption for a level of security for your data and wireless communication. Built-in DHCP Server β If enabled, it will automatically assign IP addresses to wireless clients on the local network. Web-based interface for Managing and Configuring β Easy-to-use interface independent of the operating system. Features and Benefits LEDS LED stands for Light-Emitting Diode. The DWL-G700AP Wireless Access Point has 3 LEDs as shown below: LAN: blinking green light indicates wireless activity; solid green light indicates connection WLAN: blinking green light indicates activity; solid green light indicates connection Power: solid green light indicates connection to a power source 6 Wireless Basics D-Link wireless products are based on industry standards to provide easy-to-use and compatible high-speed wireless connectivity within your home, business or public access wireless networks. D-Link wireless products will allow you access to the data you want, when and where you want it. You will be able to enjoy the freedom that wireless networking brings. A Wireless Local Area Network (WLAN) is a computer network that transmits and receives data with radio signals instead of wires. WLANs are used increasingly in both home and office environments, and public areas such as airports, coffee shops and universities. Innovative ways to utilize WLAN technology are helping people to work and communicate more efficiently. Increased mobility and the absence of cabling and other fixed infrastructure have proven to be beneficial for many users. Wireless users can use the same applications they use on a wired network. Wireless adapter cards used on laptop and desktop systems support the same protocols as Ethernet adapter cards. People use WLAN technology for many different purposes: Mobility - Productivity increases when people have access to data in any location within the operating range of the WLAN. Management decisions based on real-time information can significantly improve worker efficiency. Low Implementation Costs β WLANs are easy to set up, manage, change and relocate. Networks that frequently change can benefit from WLANs ease of implementation. WLANs can operate in locations where installation of wiring may be impractical. Installation and Network Expansion - Installing a WLAN system can be fast and easy and can eliminate the need to pull cable through walls and ceilings. Wireless technology allows the network to go where wires cannot go - even outside the home or office. Scalability β WLANs can be configured in a variety of ways to meet the needs of specific applications and installations. Configurations are easily changed and range from peer-to-peer networks suitable for a small number of users to larger infrastructure networks to accommodate hundreds or thousands of users, depending on the number of wireless devices deployed. Inexpensive Solution - Wireless network devices are as competitively priced as conventional Ethernet network devices. 7 Installation Considerations Keep in mind, that the number, thickness and location of walls, ceilings, or other objects that the wireless signals must pass through, may limit the range. Typical ranges vary depending on the types of materials and background RF (radio frequency) noise in your home or business. The key to maximizing wireless range is to follow these basic guidelines: Wireless Basics (continued) Keep the number of walls and ceilings between the DWL-G700AP and other network devices to a minimum - each wall or ceiling can reduce your DWL-G700APβs range from 3-90 feet (1-30 metβ¦
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21 Enter a Computer description and a Computer name (optional.) Networking Basics (continued) Click Next. Enter a Workgroup name. All computers on your network should have the same Workgroup name. Click Next. 22 Please wait while the Network Setup Wizard applies the changes. Networking Basics (continued) When the changes are complete, click Next. Please wait while the Network Setup Wizard configures the computer. This may take a few minutes. 23 Networking Basics (continued) In the window below, select the option that fits your needs. In this example, Create a Network Setup Disk has been selected. You will run this disk on each of the computers on your network. Click Next. Insert a disk into the Floppy Disk Drive, in this case drive A. 24 Networking Basics (continued) Please read the information under Hereβs how in the screen below. After you com- plete the Network Setup Wizard you will use the Network Setup Disk to run the Network Setup Wizard once on each of the computers on your network. To continue click Next. 25 Networking Basics (continued) Please read the information on this screen, then click Finish to complete the Network Setup Wizard. The new settings will take effect when you restart the computer. Click Yes to restart the computer. You have completed configuring this computer. Next, you will need to run the Network Setup Disk on all the other computers on your network. After running the Network Setup Disk on all your computers, your new wireless network will be ready to use. 26 Networking Basics (continued) Naming your Computer To name your computer, please follow these directions:In Windows XP: Click Start (in the lower left corner of the screen). Right-click on My Computer. Select Properties and click. Select the Computer Name Tab in the System Properties window. You may enter a Computer Description if you wish; this field is optional. To rename the computer and join a domain, Click Change. 27 Networking Basics (continued) Naming your Computer In this window, enter the Computer name. Select Workgroup and enter the name of the Workgroup. All computers on your network must have the same Workgroup name. Click OK. Checking the IP Address in Windows XP The wireless adapter-equipped computers in your network must be in the same IP Address range (see Getting Started in this manual for a definition of IP Address Range.) To check on the IP Address of the adapter, please do the following: Right-click on the Local Area Connection icon in the task bar. Click on Status. 28 Networking Basics (continued) Checking the IP Address in Windows XP This window will appear. Click the Support tab. Click Close. Assigning a Static IP Address in Windows XP/2000 Note: Residential Gateways/Broadband Routers will automatically assign IP Addresses to the computers on the network, using DHCP (Dynamic Host Configuration Protocol) technology. If you are using a DHCP-capable Gateway/Router you will not need to assign Static IP Addresses. If you are not using a DHCP capable Gateway/Router, or you need to assign a Static IP Address, please follow these instructions: Go to Start. Double-click on Control Panel. 29 Networking Basics (continued) Assigning a Static IP Address in Windows XP/2000 Double-click on Network Connections. Double-click on Properties. Right-click on Local Area Connections. 30 Select Use the following DNS server address. Enter the LAN IP address of the wireless router. (D-Link wireless routers have a LAN IP address of 192.168.0.1) Networking Basics (continued) Assigning a Static IP Address in Windows XP/2000 You have completed the assignment of a static IP address. (You do not need to assign a static IP address if you have a DHCP-capable router.) Click on Internet Protocol (TCP/IP). Click Properties. IP Address: e.g., 192.168.0.2 Subnet Mask: 255.255.255.0 Default Gateway: In the window below, select Use the following IP address. Input your IP address and subnet mask. (The IP addresses on your network must be within the same range. For example, if one computer has an IP address of 192.168.0.2, the other computers should have IP addresses that are sequential, like 192.168.0.3 and 192.168.0.4. The subnet mask must be the same for all the computers on the network.) Click OK. Enter the LAN IP address of the wireless router. (D-Link wireless routers have a LAN IP address of 192.168.0.1) 31 Networking Basics (continued) Checking the Wireless Connection by Pinging in Windows XP/2000 Checking the Wireless Connection by Pinging in Windows Me /98SE Go to Start > Run > type cmd. A window similar to this one will appear. Type ping xxx.xxx.xxx.xxx, where xxx is the IP address of the wireless router or access point. A good wireless connection will show four replies from the wireless router or access point, as shown. Go to Start > Run > type command. A window similar to this will appear. Type ping xxx.xxx.xxx.xxx where xxx is the IP address of the wireless router or access point. A good wireless connection will show four replies from the wireless router or access point, as shown. 32 Check that the Ethernet LED on the DWL-G700AP is ON. If the LED is not ON, check that the cable for the Ethernet connection is securely inserted. Check that the Ethernet adapter is working properly. Please see item 3 (Check that the drivers for the network adapters are installed properly) in this Troubleshooting section to check that the drivers are loaded properly. Check that the IP address is in the same range and subnet as the DWL-G700AP. Please see Checking the IP Address in Windows XP in the Networking Basics section of this manual. Do a Ping test to make sure that the DWL-G700AP is responding. Go to Start>Run>Type Command>Type ping 192.168.0.50. A successful ping will show four replies. Note: It is recommended that you use an Ethernet connection to configure the DWL-G700AP Access Point. 1. The computer used to configure the DWL-G700AP cannot access the configuration menu.β¦
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Page 1 CONSTRUCTION PHOTOS OF EUT Page 2
Page 1 LABEL LOCATION FCC ID: KA2DWLG700APB2
54.00 mm 69.00 mm ACN 052 202 838 FCC ID: KA2DWLG700APB2 Model No.:DWL-G700AP Z576 This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. MADE IN TAIWAN Complies With IDA Standards DB100549
Page 3 Page 4 Page 5 Page 6 Page 7
FCC ID: KA2DWLG700APB2 Report No.RF941229L04 Operational Description This device is a AirPlus G TM 2.4GHz Wireless Access Point which operates in the 2.4GHz frequency spectrum with throughput of up to 54Mbps which OFDM technique will be applied. If the signal to noise radio is too poor which could not support 54Mbps, the 11Mbps data rate with CCK technique will be applied. The transmitter of the EUT is powered by AC Adapter. The antenna is Dipole antenna with SMA reverse antenna connector. For more detailed instruction, please take a look at the userβs manual.
FCC ID: KA2DWLG700APB2 Report No: SA941229L04 1 RF EXPOSURE REPORT REPORT NO.: SA941229L04 MODEL NO.: DWL-G700AP ACCORDING: FCC Guidelines for Human Exposure IEEE C95.1 APPLICANT: D-Link Corporation ADDRESS: 17595 Mt. Herrmann, Fountain Valley, CA 92708, U.S.A. ISSUED BY: Advance Data Technology Corporation LAB ADDRESS: No. 47, 14th Ling, Chia Pau Tsuen, Lin Kou Hsiang 244, Taipei Hsien, Taiwan, R.O.C. TEST LOCATION: No. 19, Hwa Ya 2nd Rd., Wen Hwa Tsuen, Kwei Shan Hsiang, Taoyuan Hsien 333, Taiwan, R.O.C. FCC ID: KA2DWLG700APB2 Report No: SA941229L04 2 RF Exposure Measurement (Mobile Device) 1. Introduction In this document, we try to prove the safety of radiation harmfulness to the human body for our product. The limit for Maximum Permissible Exposure (MPE) specified in FCC 1.1310 is followed. The Gain of the antenna used in this product is measured in a Fully Anechoic Chamber (FAC) calibrated for antenna measurement in ADT, and also the maximum total power input to the antenna is measured. Through the Friis transmission formula and the maximum gain of the antenna, we can calculate the distance, away from the product, where the limit of MPE is reached. Although the Friis transmission formula is a far field assumption, the calculated result of that is an over-prediction for near field power density. We will take that as the worst case to specify the safety range. 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 300-1500......F/3006 1500-100,000......56 (B)Limits For General Population / Uncontrolled Exposure 300-1500......F/15006 1500-100,000......1.030 F = Frequency in MHz FCC ID: KA2DWLG700APB2 Report No: SA941229L04 3 3. Friis Formula Friis transmission formula : Pd = (Pout*G) / (4*pi*r 2 ) where Pd = power density in mW/cm 2 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 If we know the maximum Gain of the antenna and the total power input to the antenna, through the calculation, we will know the MPE value at distance r. Ref. : David K. Cheng, Field and Wave Electromagnetics, Second Edition, Page 640, Eq. (11-133). 4. EUT Operating condition The software provided by Manufacturer enabled the EUT to transmit and receive data at lowest, middle and highest channel individually. 5. Classification This device is not fixed inside the host equipment, it is connected with host through wire. So it is easy to be re-located in the place where at least 20cm far away from the body of the user. Warning statement to the user for keeping at least 20cm or more separation distance with the antenna should be included in users manual. So, this device is classified as Mobile Device. FCC ID: KA2DWLG700APB2 Report No: SA941229L04 4 6. Test Results 6.1 Antenna Gain The maximum Gain measured in Fully Anechoic Chamber is 2dBi or 1.585 (numeric). 6.2 Output Power Into Antenna & RF Exposure value at distance 20cm: 802.11b DSSS modulation Channel Channel Frequency (MHz) Output Power to Antenna (mW) Power Density (mW/cm 2 ) Limit of Power Density (mW/cm 2 ) 1241222.5940.0071.0 6243745.0820.0141.0 11246244.7710.0141.0 802.11g OFDM modulation Channel Channel Frequency (MHz) Output Power to Antenna (mW) Power Density (mW/cm 2 ) Limit of Power Density (mW/cm 2 ) 1241244.6680.0141.0 6243744.7710.0141.0 11246245.0820.0141.0
FCC ID: KA2DWLG700APB2 Report No.: RF941229L041Report Format Version 2.0.4 FCC TEST REPORT REPORT NO.: RF941229L04 MODEL NO.: DWL-G700AP RECEIVED: Dec. 15, 2005 TESTED: Dec. 15, 2005 ~ Jan. 03, 2006 ISSUED: Jan. 05, 2006 APPLICANT: D-Link Corporation ADDRESS: 17595 Mt. Herrmann, Fountain Valley, CA 92708, U.S.A. ISSUED BY: Advance Data Technology Corporation LAB ADDRESS: 47 14 th Lin, Chiapau Tsun, Linko, Taipei, Taiwan, R.O.C. TEST LOCATION: No. 19, Hwa Ya 2 nd Rd., Kueishan, Taoyuan, Taiwan, R.O.C. This test report consists of 63 pages in total. It may be duplicated completely for legal use with the approval of the applicant. It should not be reproduced except in full, without the written approval of our laboratory. The client should not use it to claim product endorsement by CNLA, A2LA or any government agencies. The test results in the report only apply to the tested sample. 0528 No. 2177-01 FCC ID: KA2DWLG700APB2 Report No.: RF941229L042Report Format Version 2.0.4 Table of Contents 1CERTIFICATION...........................................................................................................4 2SUMMARY OF TEST RESULTS ..................................................................................5 2.1MEASUREMENT UNCERTAINTY ...............................................................................5 3GENERAL INFORMATION ...........................................................................................6 3.1GENERAL DESCRIPTION OF EUT.............................................................................6 3.2DESCRIPTION OF TEST MODES...............................................................................7 3.2.1 CONFIGURATION OF SYSTEM UNDER TEST ..........................................................7 3.2.2 TEST MODE APPLICABILITY AND TESTED CHANNEL DETAIL ...............................8 3.3GENERAL DESCRIPTION OF APPLIED STANDARDS............................................10 3.4DESCRIPTION OF SUPPORT UNITS .......................................................................10 4TEST TYPES AND RESULTS .................................................................................... 11 4.1CONDUCTED EMISSION MEASUREMENT .............................................................11 4.1.1 LIMITS OF CONDUCTED EMISSION MEASUREMENT........................................... 11 4.1.2 TEST INSTRUMENTS................................................................................................ 11 4.1.3 TEST PROCEDURES ................................................................................................12 4.1.4 DEVIATION FROM TEST STANDARD ......................................................................12 4.1.5 TEST SETUP .............................................................................................................13 4.1.6 EUT OPERATING CONDITIONS ...............................................................................13 4.1.7 TEST RESULTS .........................................................................................................14 4.2RADIATED EMISSION MEASUREMENT ..................................................................20 4.2.1 LIMITS OF RADIATED EMISSION MEASUREMENT................................................20 4.2.2 TEST INSTRUMENTS................................................................................................21 4.2.3 TEST PROCEDURES ................................................................................................22 4.2.4 DEVIATION FROM TEST STANDARD ......................................................................22 4.2.5 TEST SETUP .............................................................................................................23 4.2.6 EUT OPERATING CONDITIONS ...............................................................................23 4.2.7 TEST RESULTS .........................................................................................................24 4.36dB BANDWIDTH MEASUREMENT .........................................................................31 4.3.1 LIMITS OF 6dB BANDWIDTH MEASUREMENT .......................................................31 4.3.2 TEST INSTRUMENTS................................................................................................31 4.3.3 TEST PROCEDURE...................................................................................................32 4.3.4 DEVIATION FROM TEST STANDARD ......................................................................32 4.3.5 TEST SETUP .............................................................................................................32 4.3.6 EUT OPERATING CONDITIONS ...............................................................................32 4.3.7 TEST RESULTS .........................................................................................................33 4.4MAXIMUM PEAK OUTPUT POWER .........................................................................39 4.4.1 LIMITS OF MAXIMUM PEAK OUTPUT POWER MEASUREMENT..........................39 4.4.2 TEST INSTRUMENTS................................................................................................39 4.4.3 TEST PROCEDURES ................................................................................................40 4.4.4 DEVIATION FROM TEST STANDARD ......................................................................40 4.4.5 TEST SETUP .............................................................................................................40 4.4.6 EUT OPERATING CONDITIONS ...............................................................................40 FCC ID: KA2DWLG700APB2 Report No.: RF941229L043Report Format Version 2.0.4 4.4.7 TEST RESULTS .........................................................................................................41 4.5POWER SPECTRAL DENSITY MEASUREMENT ....................................................42 4.β¦
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FCC ID: KA2DWLG700APB2 Report No.: RF941229L0460Report Format Version 2.0.4 5 PHOTOGRAPHS OF THE TEST CONFIGURATION CONDUCTED EMISSION TEST FCC ID: KA2DWLG700APB2 Report No.: RF941229L0461Report Format Version 2.0.4 RADIATED EMISSION TEST
No. 19, Hwa Ya 2nd Rd., Kwei Shan Hsiang Β· Taoyuan Hsien Β· Taiwan
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 45.00 mW |

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