
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
1 AW-GD200 Linux Driver Installation & User Guide Version: 1.1 2005/10/20 2 History Version Date Description 1.0 2005/08/01 First Edition 1.1 2005/10/20 Add iwconfig user command Table of Contents AW-GD200 Installation and User Guide ................................................ 1 History ........................................................................................... 2 Table of Contents ............................................................................ 2 Introduction .................................................................................... 3 1.1 Installation .............................................................................. 3 1.1.1 Adapter Linux Driver ................................................................ 3 1.1.2 Installation and Configuring the Linux Source Tree ................... 3 1.1.3 Compile the Driver .................................................................. 3 1.1.4 Install the Driver ..................................................................... 4 1.1.5 Overall Installation Procedure ................................................... 4 2.0 Configure a wireless network interface ............................................... 5 2.1 iwconfig .................................................................................... 5 3 Introduction This guide explains how to install the following software on a Linux based desktop or laptop computer: - AW-GD200 Driver for Linux system This adapter can be used in a non-PC device to easily enable Wireless connectivity. 1.1 Installation The installation procedure includes two main steps: 1. Compile the Driver 2. Install the Driver 1.1.1 Adapter Linux Driver The driver is distributed in source-code format. In order to compile the driver, you need to have the Linux source tree installed in your desktop/laptop computers, preferably in the /usr/src/linux directory. This driver has been tested with Linux version 2.4.22 and compiled with gcc 3.2.2. The host Linux system that was used to compile and test the driver is based on Slackware 9.1 distribution. 1.1.2 Installation and Configuring the Linux Source Tree The requirements for the environment to install and configure the Linux source tree are: - Linux kernel source v2.4.22 - GCC v3.2.2 - Wireless Tools version 26 Then you have to follow the steps below to complete the installation and configuration process. 1. Download the Linux kernel file from http://www.kernel.org. 2. Untar the source in the /usr/src directory. 3. Create a symbolic link to the Linux source tree to a directory called "linux". 4. Run "make menuconfig" in the Linux directory and then enable the Wireless LAN under "Network Device Support"/"Wireless LAN (Non Hamradio). 5. Configure any other options as required. 6. Exit and save the configuration. The Linux kernel does not to be compiled when you compile the driver. However, you must install the same version of the kernel which the driver is compiled against to run the driver. 1.1.3 Compile the Driver If the Linux source tree is not presented in the default Linux directory, you can modify the KERNELDIR parameter in the Makefile to direct to the location of the kernel source. Then you can follow the steps below to compile the Linux driver: a) Type “make clean”. Verify that there is no legacy file in the target directory. b) Type "make". Verify that the file “deep31.o” is built and placed in the target directory. c) The deep31.o is the driver compiled as a module for the current kernel. The Makefile also tries to copy the driver to the /lib/modules/2.4.22/pcmcia directory so that the driver can be easily loaded at boot time. If you want to remove debug options -DDEBUG and –DDBG, they can be removed from Makefile CFLAGS variable. 4 1.1.4 Install the Driver After inserting the adapter, you can run insmod deep31.o to load the driver into the kernel. 1.1.5 Overall Installation Procedure As a summary, the overall installation procedure for Linux driver is as below: 1. Extract the source into any directory. For example, cd /usr/src tar xvzf mb31ep_sdk_2_1_x_x.tar.gz 2. Go to the created directory and then compile the source code cd MB31-DeepLinux make clean make This should create the file deep31.o which is the driver as a loadable module. 3. There are four options to operate the driver. a) To load this driver as AP mode, you can type insmod deep31.o active=”deep_ap” b) To load this driver as Client mode, you can type insmod deep31.o active=”deep_wb” c) To load this driver for firmware upgrade in AP mode insmod deep31.o active=”change_ap_mode” d) To load this driver for firmware upgrade in Client mode insmod deep31.o active=”change_wb_mode” (or You can execute/modify the run1 script in the source file directory to load driver) 4. If debug is enabled in the Makefile (-DDEBUG -DDBG) then debug messages can be printed out through the klogd facility of the Linux kernel. The standard log files are in folder /var/log/debug, folder /var/log/messages and folder /var/log/syslog. 5 2.0 Configure a wireless network interface The following describes the configuration of AW-GD200 wireless driver using the wireless extension tools. 2.1 iwconfig iwconfig is dedicated to the wireless interfaces. It is used to set the parameters of the network interface which are specific to the wireless operation (for example: the frequency). iwconfig may also be used to display those parameters, and the wireless statistics. The format of the iwconfig is depicted as following: iwconfig iwconfig -help iwconfig interface iwconfig interface [parameters] Parameters [essid X] [nwid N] [freq F] [channel C] [sens S] [mode M] [ap A] [nick NN] [rate R] [rts RT][frag FT] [txpower T] [enc E] [key K] [power P] [retry R] [commit] Please refer the wireless extension tool manual for more information. Federal Communication Commission Interference Statement This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant …
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FCC ID: TLZ-GD200 Report No. RF941201H09 Modular Approval Request Letter Advance Data Technology Jan. 02, 2006 Dear Application Examiner, AzureWave Technologies, Inc.’s Wireless Digital Media Adapter Module, FCC ID: TLZ-GD200, would like to have your authorization as a modular approval. The requirements of Public Notice DA00-1407 have been met and shown on the following statements. 1. “The modular transmitter must have its own RF shielding.” The radio portion of this module has been shielded, please see exhibition External Photo. 2. “The modular transmitter must have buffered modulation/data inputs.” The EUT has buffered data inputs, it is integrated in chip 88W8510. 3. “The modular transmitter must have its own power supply regulation.” The chips RF converter which will influence the frequency radiation, have to be 2.5VDC powered. The MiniPCI interface provides 3.3VDC, so there are regulators in front of these chips, the part number of this regulator is 88W8510. 4. “The modular transmitter must comply with the antenna requirements of section 15.203 and 15.204(C).” The EUT meets the FCC antenna requirements. The spurious emission, unique antenna connector and photo of antennas are shown in the test report. 5. “The modular transmitter must be tested in a stand-alone configuration” The EUT was placed on an extended card which connected to Notebook Computer as a stand-alone configuration. The EUT was tested via the outside a Notebook Computer. Please see section Photographs of Test Configuration in the test report. 6. “The modular transmitter must be labeled with its own FCC ID number.” Please see exhibition Label Sample for the FCC ID of this module. And also in the exhibition Users Manual, there are instructions give to the OEM on how to label the end product. FCC ID: TLZ-GD200 Report No. RF941201H09 7. “The modular transmitter must comply with any specific rule or operating requirements applicable to the transmitter and the manufacturer must provide adequate instructions along with the module to explain any such requirements.” The EUT is compliant with all applicable FCC rules. Detail instructions for maintaining compliance are given in the Users Manual. 8. “The modular transmitter must comply with any applicable RF exposure requirements.” The EUT is compliant with all applicable RF exposure requirements. RF Exposure is addressed in the RF exposure exhibition. Please contact me if you have any further questions. Thanks for your attention. Best Regards, Eric Lin Manager of Hsinchu Certification Service Div. Advance Data Technology
Page 1 CONSTRUCTION PHOTOS OF EUT With Dipole antenna With PIFA antenna
FCC LABEL LOCATION The label will be permanently affixed at a conspicuous location on the device. LABEL (Fig. 1) FCC ID: TLZ-GD200
4.5cm 3cm AW-GD200 FCC ID:TLZ-GD200 201NY XXXXXXXX201GZ XXXXXXXX
Page 2 With Dipole antenna Page 3 Page 4 Page 5 With PIFA antenna Page 6 Page 7 Page 8
FCC ID: TLZ-GD200 Report No. RF941201H09 Operational Description This device is a Wireless Digital Media Adapter Module, the maximum data rate could be 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 (Wireless Digital Media Adapter Module) is powered by host equipment. The antenna used in this product are as following: No.Antenna TypeConnectorGain (dBi)Cable Loss (dB)Remark 1PIFASMA30NA 21/2λ DipoleSMA1.81.3with cable (11.5cm) The other instruction, please have a look at the users manual.
FCC ID: TLZ-GD200 Report No.: SA941201H09 1 RF EXPOSURE REPORT REPORT NO.: SA941201H09 MODEL NO.: AW-GD200 ACCORDING: FCC Guidelines for Human Exposure IEEE C95.1; FCC Part 1.1310 FCC Part 1.1307; FCC Part 2.1091 APPLICANT: AzureWave Technologies, Inc. ADDRESS: 8F, No.94, Baozhong Rd., Xindian, Taipei , Taiwan 231. ISSUED BY:Advance Data Technology Corporation LAB LOCATION:No. 81-1, Lu Liao Keng, 9 Ling, Wu Lung Tsuen, Chiung Lin Hsiang, Hsin Chu Hsien, Taiwan, R.O.C. FCC ID: TLZ-GD200 Report No.: SA941201H09 2 RF Exposure Measurement 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: TLZ-GD200 Report No.: SA941201H09 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 Pd is the limit of MPE, 1 mW/cm 2 . 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 20cm. 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 The antenna of this product, under normal use condition, is at least 20cm 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: TLZ-GD200 Report No.: SA941201H09 4 6. Test Results 6.1 Antenna Gain No.Antenna TypeConnectorGain (dBi)Cable Loss (dB)Remark 1PIFASMA30NA 21/2λ DipoleSMA1.81.3with cable (11.5cm) 6.2 Output Power Into Antenna & RF Exposure value at distance 20cm: For Part 802.11b: (Antenna 1) Channel Channel Frequency (MHz) Output Power to Antenna (mW) Power Density (mW/cm 2 ) Limit of Power Density (mW/cm 2 ) 1241259.9790.0241.0 6243771.2850.0281.0 11246270.9580.0281.0 For Part 802.11b: (Antenna 2) Channel Channel Frequency (MHz) Output Power to Antenna (mW) Power Density (mW/cm 2 ) Limit of Power Density (mW/cm 2 ) 1241259.9790.0131.0 6243771.2850.0161.0 11246270.9580.0161.0 FCC ID: TLZ-GD200 Report No.: SA941201H09 5 For Part 802.11g: (Antenna 1) Channel Channel Frequency (MHz) Output Power to Antenna (mW) Power Density (mW/cm 2 ) Limit of Power Density (mW/cm 2 ) 1241250.5820.0201.0 6243759.4290.0241.0 11246249.8880.0201.0 For Part 802.11g: (Antenna 2) Channel Channel Frequency (MHz) Output Power to Antenna (mW) Power Density (mW/cm 2 ) Limit of Power Density (mW/cm 2 ) 1241250.5820.0111.0 6243759.4290.0131.0 11246249.8880.0111.0
FCC ID: TLZ-GD200 Report No.: RF941201H091Report Format Version 2.0.4 FCC TEST REPORT REPORT NO.:RF941201H09 MODEL NO.: AW-GD200 RECEIVED:Dec. 01, 2005 TESTED:Dec. 04 to 24, 2005 ISSUED: Dec. 29, 2005 APPLICANT:AzureWave Technologies, Inc. ADDRESS:8F, No.94, Baozhong Rd., Xindian, Taipei , Taiwan 231. ISSUED BY:Advance Data Technology Corporation LAB LOCATION:No. 81-1, Lu Liao Keng, 9 Ling, Wu Lung Tsuen, Chiung Lin Hsiang, Hsin Chu Hsien, Taiwan, R.O.C. This test report consists of 79 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. The test results in this report are traceable to the national or international standards. 0536 No. 2177-01 ILAC MRA FCC ID: TLZ-GD200 Report No.: RF941201H092Report Format Version 2.0.4 Table of Contents 1CERTIFICATION ........................................................................................... 4 2SUMMARY OF TEST RESULTS................................................................... 5 3GENERAL INFORMATION ........................................................................... 6 3.1GENERAL DESCRIPTION OF EUT.............................................................. 6 3.2DESCRIPTION OF TEST MODES................................................................ 7 3.3TEST MODE APPLICABLITY AND TESTED CHANNEL DETAIL: ................ 8 3.4GENERAL DESCRIPTION OF APPLIED STANDARDS ............................... 9 3.5DESCRIPTION OF SUPPORT UNITS........................................................ 10 3.6CONFIGURATION OF SYSTEM UNDER TEST ..........................................11 4TEST TYPES AND RESULTS..................................................................... 12 4.1CONDUCTED EMISSION MEASUREMENT .............................................. 12 4.1.1LIMITS OF CONDUCTED EMISSION MEASUREMENT ........................... 12 4.1.2TEST INSTRUMENTS ................................................................................ 12 4.1.3TEST PROCEDURES................................................................................. 13 4.1.4TEST SETUP .............................................................................................. 13 4.1.5EUT OPERATING CONDITIONS................................................................ 14 4.1.6TEST RESULTS.......................................................................................... 15 4.2RADIATED EMISSION MEASUREMENT ................................................... 17 4.2.1LIMITS OF RADIATED EMISSION MEASUREMENT ................................ 17 4.2.2TEST INSTRUMENTS ................................................................................ 18 4.2.3TEST PROCEDURES................................................................................. 19 4.2.4TEST SETUP .............................................................................................. 20 4.2.5EUT OPERATING CONDITIONS................................................................ 20 4.2.6TEST RESULTS (Antenna 1) ...................................................................... 21 4.2.7TEST RESULTS (Antenna 2) ...................................................................... 22 4.2.8TEST RESULTS – DSSS(Antenna 1) ......................................................... 23 4.2.9TEST RESULTS – DSSS(Antenna 2) ......................................................... 26 4.2.10 TEST RESULTS – OFDM (Antenna 1)........................................................ 29 4.2.11 TEST RESULTS – OFDM (Antenna 2)........................................................ 32 4.36dB BANDWIDTH MEASUREMENT .......................................................... 35 4.3.1LIMITS OF 6dB BANDWIDTH MEASUREMENT........................................ 35 4.3.2TEST INSTRUMENTS ................................................................................ 35 4.3.3TEST PROCEDURE ................................................................................... 36 4.3.4TEST SETUP .............................................................................................. 36 4.3.5EUT OPERATING CONDITIONS................................................................ 36 4.3.6TEST RESULTS - DSSS (Antenna 1&Antenna 2)....................................... 37 4.3.7TEST RESULTS - OFDM (Antenna 1&Antenna 2)...................................... 40 4.4MAXIMUM PEAK OUTPUT POWER .......................................................... 43 4.4.1LIMITS OF MAXIMUM PEAK OUTPUT POWER MEASUREMENT ........... 43 FCC ID: TLZ-GD200 Report No.: RF941201H093Report Format Version 2.0.4 4.4.2TEST INSTRUMENTS ................................................................................ 43 4.4.3TEST PROCEDURES................................................................................. 44 4.4.4TEST SETUP .............................................................................................. 44 4.4.5EUT OPERATING CONDITIONS................................................................ 44 4.4.6TEST RESULTS - DSSS (Antenna 1&Antenna 2)....................................... 45 4.4.7TEST RESULTS -OFDM (Antenna 1&Antenna 2)....................................... 46 4.5POWER SPECTRAL DENSITY MEASUREMENT...................................... 47 4.5.1LIMITS OF POWER SPECTRAL DENSITY MEASUREMENT ................... 47 4.5.2TEST INSTRUMENTS ................................................................................ 47 4.5.3TEST PROCEDURE ................................................................................... 48 4.5.4TEST SETUP .............................................................................................. 48 4.5.5EUT OPERATING CONDITIONS.............................................…
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FCC ID: FLZ-GD200 Report No.: RF941201H0973Report Format Version 2.0.4 5 PHOTOGRAPHS OF THE TEST CONFIGURATION CONDUCTED EMISSION TEST FCC ID: FLZ-GD200 Report No.: RF941201H0974Report Format Version 2.0.4 RADIATED EMISSION TEST (ANTENNA 1) FCC ID: FLZ-GD200 Report No.: RF941201H0975Report Format Version 2.0.4 FCC ID: FLZ-GD200 Report No.: RF941201H0976Report Format Version 2.0.4 RADIATED EMISSION TEST (ANTENNA 2) FCC ID: FLZ-GD200 Report No.: RF941201H0977Report Format Version 2.0.4
81-1 Luliaoken, 9th Lin, Wulung Tsuen Chiunglin · Hsinchu · Taiwan
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 71.00 mW |

IEEE 802.11 a/b/g/n/ac/ax Wi-Fi +Bluetooth 6.0 Combo LGA Module
Equipment Class
NII - Unlicensed National Information Infrastructure TX
AW-CM689
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterIEEE802.11 a/b/g/n/ac/ax and Bluetooth LE 5.4 LGA Module
Equipment Class
NII - Unlicensed National Information Infrastructure TXIEEE802.11 a/b/g/n/ac/ax and Bluetooth LE 5.4 LGA Module
Equipment Class
DTS - Digital Transmission SystemIEEE 802.11 a/b/g/n 1T1R WLAN and Bluetooth Low Energy Microcontroller Module
Equipment Class
NII - Unlicensed National Information Infrastructure TX