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  2. AzureWave Technologies, Inc./
  3. TLZ-CM2XXNF

TLZ-CM2XXNFIEEE 802.11 a/b/g/n/ac Wireless LAN and Bluetooth M.2 Combo Module

AzureWave Technologies, Inc.
IEEE 802.11 a/b/g/n/ac Wireless LAN and Bluetooth M.2 Combo Module - FCC ID TLZ-CM2XXNF - AzureWave Technologies, Inc.
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Application Details

Equipment Class
NII - Unlicensed National Information Infrastructure TX
Date of Grant
Mar 01, 2015
Application Purpose
Original Equipment
Date of Application
Mar 01, 2015
Equipment Note
IEEE 802.11 a/b/g/n/ac Wireless LAN and Bluetooth M.2 Combo Module
Frequency Range
5745.00000000 - 5825.00000000
Company
AzureWave Technologies, Inc.
Country
Taiwan

Documents & Files

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Users Manual

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Attestation Statements

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

- 1 - AW-CM195NF IEEE 802.11 a/b/g/n/ac Wireless LAN and Bluetooth M.2 Combo Module User Guide Document release Date Modification Initials Approved Version 0.1 2015/02/16 Initial Version Stanley Wang Chihhao Liao - 2 - - 3 - Contents 1. WLAN Basic Test Driver Installation Throughput Test RF Tx/Rx Performance Test 2. Bluetooth Basic Test Download Mini-driver Throughput Test RF Performance Test 3. Known Limitation/Issues 1. WLAN Basic Test **Must connect USB to PC Driver Installation DRIVER INSTALLATION (IN LINUX) •First prepare the Broadcom’s linux package, and put it in the “home”folder. •Open the Terminal, enter the command: sudo su and password. - 4 - •Enter cd /home/username/ DHD_REL_1_141_65_1_Linux/src/dhd/linux •Enter make dhd-cdc-sdmmc-gpl to generate the dhd.ko file in /home/username/ DHD_REL_1_141_65_1_Linux /src/dhd/linux/dhd-cdc-sdmmc-gpl-2.6.32-21-generic •Enter Insmod /(path of dhd.ko file) firmware_path=/(path of firmware file) nvram_path=/(path of nvram file) to enable. •Enter rmmod dhd to disable • Throughput Test CONNECTING TO WIRELESS NETWORKS The examples in the following sections illustrate how to connect to both infrastructure and ad hoc networks, including infrastructure networks that use no security, WEP security, and WPA/PSK and WPS2/PSK security. SCANNING FOR WIRELESS NETWORKS To force the dongle to scan • Run wl scan. To force the dongle to return the results of the scan • Run wl scanresults. Example results returned when an AP is found: • SSID: “Eval4325” • Mode: Managed: RSSI: -48 dBm noise: -105 dBm Channel: 1 • BSSID: 00:10:18:90:2E:C1 Capability: ESS ShortSlot • Supported Rates: [ 1(b) 2(b) 5.5(b) 11(b) 18 24 36 54 6 9 12 48 ] Example results returned when an ad hoc network is found: • SSID: “ADHOC#1” • Mode: Ad Hoc RSSI: -41 dBm noise: -105 dBm Channel: 1 • BSSID: B2:51:28:6B:3C:A1 Capability: IBSS • Supported Rates: [ 1(b) 2(b) 5.5(b) 11(b) ] CONNECTING TO AN INFRASTRUCTURE NETWORK WITH NO SECURITY (AP CONNECTION) To connect to the network through an AP with SSID = Eval4325 Run wl join Eval4325. CONNECTING TO AN INFRASTRUCTURE NETWORK WITH WEP SECURITY - 5 - To connect to the network that uses 12345 as the network key • Run wl join Eval4325 key 12345. CONNECTING TO AN INFRASTRUCTURE NETWORK WITH WPA-PSK/WPA2-PSK SECURITY To specify TKIP or AES as the data encryption method • Run wl wsec 3/7. To enable the supplicant • Run wl sup_wpa 1. To specify the PSK passphrase (network key) to use • Run wl set_psk $passphrase. To connect to a network that uses WPA-PSK security • Run wl join Eval4325 imode bss amode wpapsk. To connect to a network that uses WPA2-PSK security • Run wl join Eval4325 imode bss amode wpa2psk. CONNECTING TO AN AD HOC NETWORK USING CHANNEL 1 To set the channel to channel 1 • Run wl channel 1. To connect to the ad hoc network with SSID = 4325-ADHOC • Run wl join 4325-ADHOC imode ibss. MANAGING POWER CONSUMPTION To disable Power Save (PS) mode (default) • Run wl PM 0. To enable legacy IEEE 802.11 Power Save (PS) mode • Run wl PM 1. To enable Fast IEEE 802.11 Power Save mode • Run wl PM 2. Note: • The STA automatically transitions to Legacy PS mode when no data is being sent or received. • The STA automatically disables PS mode when data is being sent or received. MEASURING WLAN THROUGHPUT - 6 - The throughput measurement shows the performance of the TCP/IP layer over the wireless link. To achieve the best results, run the measurement test in a clean environment with as little interference as possible . The test can be run with the adapter connected to either an Infrastructure network (see Fig. 2.2) or an ad hoc network (see Fig. 2.3). An AP that is known to be in good working order should be used for the infrastructure mode test. MEASURING THROUGHPUT USING NETIQ CHARIOT Test Procedure 1. Bring up the AW-CM195NF demo boar with the IP address set as 192.168.1.110. 2. Connect the reference computer with Chariot Console, which is assigned an IP address of 192.168.1.100, to the LAN port of the AP 3. Verify that communication exists between the reference computer and the AW-CM195NF demo board by pinging 192.168.1.100 from the AW-CM195NF host console. 4. Set up Chariot. HOST COMPUTER. AW-CM195NF EndPoint Reference Computer Chariot Console HOST COMPUTER. AW-CM195NF EndPoint A P LAN Reference Computer Chariot Console FIG. 2.2 FIG. 2.3 - 7 - a. On the host computer, activate EndPoint: b. Using Chariot Console on the reference computer, create two pair groups (192.168.1.100 and 192.168.1.110) using the Chariot Throughput.scr script. Run the throughput test for a specified period of time and observe the results. RF Tx/Rx Performance Test CREATING A Tx TEST (In Ubuntu linux 12.04) 1. Open the Terminal, enter the command: sudo su and password. 2. Enter Insmod /(path of dhd.ko file) firmware_path=/(path of firmware file) nvram_path=/(path of nvram file) to enable. 3. Enter the wl ver command to check the current WL driver version. 4. Run the following command set (delay at least 700ms between each command): 11b rate: ./wl mpc 0 ./wl phy_watchdog 0 ./wl country ALL ./wl band b ./wl channel 1 ./wl up ./wl phy_forcecal 1 ./wl scansuppress 1 ./wl txchain 1 ./wl txcore -k 1 -o 1 ./wl 2g_rate -r 1 -b 20 ./wl phy_txpwrctrl 1 ./wl txpwr1 -1 ./wl txpwr1 -o -d 16 ./wl pkteng_start 00:11:22:33:44:55 tx 100 1024 0 - 8 - This will send continuous Tx Packets with 100 us packet interval,1024 byte packet length. Data rate =1Mbps ,Channel=1 and output power =16dBm. 11g rate: ./wl mpc 0 ./wl phy_watchdog 0 ./wl country ALL ./wl band b ./wl channel 1 ./wl up ./wl phy_forcecal 1 ./wl scansuppress 1 ./wl txchain 1 ./wl txcore -k 1 -o 1 ./wl 2g_rate -r 54 -b 20 ./wl phy_txpwrctrl 1 ./wl txpwr1 -1 ./wl txpwr1 -o -d 15 ./wl pkteng_start 00:11:22:33:44:55 tx 100 1024 0 This will send continuous Tx Packets with 100 us packet interval,1024 byte packet length. Data rate =54Mbps ,Channel=1 and output power =15dBm. 2.4G 11n 20 SISO rate: - 9 - ./wl mpc 0 ./wl phy_watchdog 0 ./wl country…

Text truncated - open the document above for the full version.

Users Manual

- 1 - AW-CM217NF IEEE 802.11 a/b/g/n/ac Wireless LAN and Bluetooth M.2 Combo Module User Guide Document release Date Modification Initials Approved Version 0.1 2015/02/16 Initial Version Stanley Wang Chihhao Liao - 2 - - 3 - Contents 1. WLAN Basic Test Driver Installation Throughput Test RF Tx/Rx Performance Test 2. Bluetooth Basic Test Download Mini-driver Throughput Test RF Performance Test - 4 - 1. WLAN Basic Test Driver Installation COMPONENTS bcmwI5/ bcmwI564.sys and bcmwI5.inf bcmwI5/ bcmwI564.sys and bcmwI5.inf are the dongle host driver for PCI Bridge Card. It also includes a dongle image for download to the PCI dongle. wl.exe wl is an utility application that one can use to control the software running in the PCI dongle, e.g. initiate an association and modify WLAN parameters. Throughput Test CONNECTING TO WIRELESS NETWORKS The examples in the following sections illustrate how to connect to both infrastructure and ad hoc networks, including infrastructure networks that use no security, WEP security, and WPA/PSK and WPS2/PSK security. SCANNING FOR WIRELESS NETWORKS To force the dongle to scan • Run wl scan. To force the dongle to return the results of the scan • Run wl scanresults. Example results returned when an AP is found: • SSID: “Eval4325” • Mode: Managed: RSSI: -48 dBm noise: -105 dBm Channel: 1 • BSSID: 00:10:18:90:2E:C1 Capability: ESS ShortSlot • Supported Rates: [ 1(b) 2(b) 5.5(b) 11(b) 18 24 36 54 6 9 12 48 ] Example results returned when an ad hoc network is found: - 5 - • SSID: “ADHOC#1” • Mode: Ad Hoc RSSI: -41 dBm noise: -105 dBm Channel: 1 • BSSID: B2:51:28:6B:3C:A1 Capability: IBSS • Supported Rates: [ 1(b) 2(b) 5.5(b) 11(b) ] CONNECTING TO AN INFRASTRUCTURE NETWORK WITH NO SECURITY (AP CONNECTION) To connect to the network through an AP with SSID = Eval4325 Run wl join Eval4325. CONNECTING TO AN INFRASTRUCTURE NETWORK WITH WEP SECURITY To connect to the network that uses 12345 as the network key • Run wl join Eval4325 key 12345. CONNECTING TO AN INFRASTRUCTURE NETWORK WITH WPA-PSK/WPA2-PSK SECURITY To specify TKIP or AES as the data encryption method • Run wl wsec 3/7. To enable the supplicant • Run wl sup_wpa 1. To specify the PSK passphrase (network key) to use • Run wl set_psk $passphrase. To connect to a network that uses WPA-PSK security • Run wl join Eval4325 imode bss amode wpapsk. To connect to a network that uses WPA2-PSK security • Run wl join Eval4325 imode bss amode wpa2psk. CONNECTING TO AN AD HOC NETWORK USING CHANNEL 1 To set the channel to channel 1 • Run wl channel 1. To connect to the ad hoc network with SSID = 4325-ADHOC • Run wl join 4325-ADHOC imode ibss. MANAGING POWER CONSUMPTION To disable Power Save (PS) mode (default) • Run wl PM 0. - 6 - To enable legacy IEEE 802.11 Power Save (PS) mode • Run wl PM 1. To enable Fast IEEE 802.11 Power Save mode • Run wl PM 2. Note: • The STA automatically transitions to Legacy PS mode when no data is being sent or received. • The STA automatically disables PS mode when data is being sent or received. MEASURING WLAN THROUGHPUT The throughput measurement shows the performance of the TCP/IP layer over the wireless link. To achieve the best results, run the measurement test in a clean environment with as little interference as possible . The test can be run with the adapter connected to either an Infrastructure network (see Fig. 2.2) or an ad hoc network (see Fig. 2.3). An AP that is known to be in good working order should be used for the infrastructure mode test. - 7 - MEASURING THROUGHPUT USING NETIQ CHARIOT Test Procedure 1. Bring up the AW-CM217NF demo boar with the IP address set as 192.168.1.110. 2. Connect the reference computer with Chariot Console, which is assigned an IP address of 192.168.1.100, to the LAN port of the AP 3. Verify that communication exists between the reference computer and the AW-CM217NF demo board by pinging 192.168.1.100 from the AW-CM217NF host console. 4. Set up Chariot. a. On the host computer, activate EndPoint: b. Using Chariot Console on the reference computer, create two pair groups (192.168.1.100 and 192.168.1.110) using the Chariot Throughput.scr script. Run the throughput test for a specified period of time and observe the results. RF Tx/Rx Performance Test CREATING A Tx TEST HOST COMPUTER. AW-CM217NF EndPoint Reference Computer Chariot Console HOST COMPUTER. AW-CM217NF EndPoint A P LAN Reference Computer Chariot Console FIG. 2.2 FIG. 2.3 - 8 - 1. From the Start menu, select Run. 2. Type cmd, then click OK. 3. Navigate to the directory that contains wl.exe 4. Enter the wl ver command to check the current WL driver version. 5. Run the following command set (delay at least 700ms between each command): 11b rate: wl mpc 0 wl phy_watchdog 0 wl country ALL wl band b wl channel 1 wl up wl phy_forcecal 1 wl scansuppress 1 wl txchain 1 wl txcore -k 1 -o 1 wl 2g_rate -r 1 -b 20 wl phy_txpwrctrl 1 wl txpwr1 -1 wl txpwr1 -o -d 16 wl pkteng_start 00:11:22:33:44:55 tx 100 1024 0 This will send continuous Tx Packets with 100 us packet interval,1024 byte packet length. Data rate =1Mbps ,Channel=1 and output power =16dBm. 11g rate: - 9 - wl mpc 0 wl phy_watchdog 0 wl country ALL wl band b wl channel 1 wl up wl phy_forcecal 1 wl scansuppress 1 wl txchain 1 wl txcore -k 1 -o 1 wl 2g_rate -r 54 -b 20 wl phy_txpwrctrl 1 wl txpwr1 -1 wl txpwr1 -o -d 15 wl pkteng_start 00:11:22:33:44:55 tx 100 1024 0 This will send continuous Tx Packets with 100 us packet interval,1024 byte packet length. Data rate =54Mbps ,Channel=1 and output power =15dBm. 2.4G 11n 20 SISO rate: wl mpc 0 wl phy_watchdog 0 wl country ALL wl band b wl chanspec 1/20 wl up wl phy_forcecal 1 wl scansuppress 1 - 10 - wl txchain1 wl txcore -s 1 -c 1 wl 2g_rate -h 7 -b 20 wl phy_txpwrctrl 1 wl txpwr1 -o -d 14 wl pkteng_start 00:11:22:33:44:55 tx 100 1024 0 This will send continuous Tx Packets with 100 us packet interval,1024 byte packet length. Data rate =MCS7, Bandwidth=20Mhz, Channel=1 and output power =14dBm. 2.4G 11n 40 SI…

Text truncated - open the document above for the full version.

Users Manual

- 1 - AW-CM235NF IEEE 802.11 a/b/g/n/ac Wireless LAN and Bluetooth M.2 Combo Module User Guide Document release Date Modification Initials Approved Version 0.1 2015/02/16 Initial Version Stanley Wang Chihhao Liao - 2 - - 3 - Contents 1. WLAN Basic Test Driver Installation Throughput Test RF Tx/Rx Performance Test 2. Bluetooth Basic Test Download Mini-driver Throughput Test RF Performance Test 3. Known Limitation/Issues 1. WLAN Basic Test **Must connect USB to PC Driver Installation DRIVER INSTALLATION (IN LINUX) •First prepare the Broadcom’s linux package, and put it in the “home”folder. •Open the Terminal, enter the command: sudo su and password. - 4 - •Enter cd /home/username/ DHD_REL_1_141_65_1_Linux/src/dhd/linux •Enter make dhd-cdc-sdmmc-gpl to generate the dhd.ko file in /home/username/ DHD_REL_1_141_65_1_Linux /src/dhd/linux/dhd-cdc-sdmmc-gpl-2.6.32-21-generic •Enter Insmod /(path of dhd.ko file) firmware_path=/(path of firmware file) nvram_path=/(path of nvram file) to enable. •Enter rmmod dhd to disable • Throughput Test CONNECTING TO WIRELESS NETWORKS The examples in the following sections illustrate how to connect to both infrastructure and ad hoc networks, including infrastructure networks that use no security, WEP security, and WPA/PSK and WPS2/PSK security. SCANNING FOR WIRELESS NETWORKS To force the dongle to scan • Run wl scan. To force the dongle to return the results of the scan • Run wl scanresults. Example results returned when an AP is found: • SSID: “Eval4325” • Mode: Managed: RSSI: -48 dBm noise: -105 dBm Channel: 1 • BSSID: 00:10:18:90:2E:C1 Capability: ESS ShortSlot • Supported Rates: [ 1(b) 2(b) 5.5(b) 11(b) 18 24 36 54 6 9 12 48 ] Example results returned when an ad hoc network is found: • SSID: “ADHOC#1” • Mode: Ad Hoc RSSI: -41 dBm noise: -105 dBm Channel: 1 • BSSID: B2:51:28:6B:3C:A1 Capability: IBSS • Supported Rates: [ 1(b) 2(b) 5.5(b) 11(b) ] CONNECTING TO AN INFRASTRUCTURE NETWORK WITH NO SECURITY (AP CONNECTION) To connect to the network through an AP with SSID = Eval4325 Run wl join Eval4325. CONNECTING TO AN INFRASTRUCTURE NETWORK WITH WEP SECURITY - 5 - To connect to the network that uses 12345 as the network key • Run wl join Eval4325 key 12345. CONNECTING TO AN INFRASTRUCTURE NETWORK WITH WPA-PSK/WPA2-PSK SECURITY To specify TKIP or AES as the data encryption method • Run wl wsec 3/7. To enable the supplicant • Run wl sup_wpa 1. To specify the PSK passphrase (network key) to use • Run wl set_psk $passphrase. To connect to a network that uses WPA-PSK security • Run wl join Eval4325 imode bss amode wpapsk. To connect to a network that uses WPA2-PSK security • Run wl join Eval4325 imode bss amode wpa2psk. CONNECTING TO AN AD HOC NETWORK USING CHANNEL 1 To set the channel to channel 1 • Run wl channel 1. To connect to the ad hoc network with SSID = 4325-ADHOC • Run wl join 4325-ADHOC imode ibss. MANAGING POWER CONSUMPTION To disable Power Save (PS) mode (default) • Run wl PM 0. To enable legacy IEEE 802.11 Power Save (PS) mode • Run wl PM 1. To enable Fast IEEE 802.11 Power Save mode • Run wl PM 2. Note: • The STA automatically transitions to Legacy PS mode when no data is being sent or received. • The STA automatically disables PS mode when data is being sent or received. MEASURING WLAN THROUGHPUT - 6 - The throughput measurement shows the performance of the TCP/IP layer over the wireless link. To achieve the best results, run the measurement test in a clean environment with as little interference as possible . The test can be run with the adapter connected to either an Infrastructure network (see Fig. 2.2) or an ad hoc network (see Fig. 2.3). An AP that is known to be in good working order should be used for the infrastructure mode test. MEASURING THROUGHPUT USING NETIQ CHARIOT Test Procedure 1. Bring up the AW-CM235NF demo boar with the IP address set as 192.168.1.110. 2. Connect the reference computer with Chariot Console, which is assigned an IP address of 192.168.1.100, to the LAN port of the AP 3. Verify that communication exists between the reference computer and the AW-CM235NF demo board by pinging 192.168.1.100 from the AW-CM235NF host console. 4. Set up Chariot. HOST COMPUTER. AW-CM235NF EndPoint Reference Computer Chariot Console HOST COMPUTER. AW-CM235NF EndPoint A P LAN Reference Computer Chariot Console FIG. 2.2 FIG. 2.3 - 7 - a. On the host computer, activate EndPoint: b. Using Chariot Console on the reference computer, create two pair groups (192.168.1.100 and 192.168.1.110) using the Chariot Throughput.scr script. Run the throughput test for a specified period of time and observe the results. RF Tx/Rx Performance Test CREATING A Tx TEST (In Ubuntu linux 12.04) 1. Open the Terminal, enter the command: sudo su and password. 2. Enter Insmod /(path of dhd.ko file) firmware_path=/(path of firmware file) nvram_path=/(path of nvram file) to enable. 3. Enter the wl ver command to check the current WL driver version. 4. Run the following command set (delay at least 700ms between each command): 11b rate: ./wl mpc 0 ./wl phy_watchdog 0 ./wl country ALL ./wl band b ./wl channel 1 ./wl up ./wl phy_forcecal 1 ./wl scansuppress 1 ./wl txchain 1 ./wl txcore -k 1 -o 1 ./wl 2g_rate -r 1 -b 20 ./wl phy_txpwrctrl 1 ./wl txpwr1 -1 ./wl txpwr1 -o -d 16 ./wl pkteng_start 00:11:22:33:44:55 tx 100 1024 0 - 8 - This will send continuous Tx Packets with 100 us packet interval,1024 byte packet length. Data rate =1Mbps ,Channel=1 and output power =16dBm. 11g rate: ./wl mpc 0 ./wl phy_watchdog 0 ./wl country ALL ./wl band b ./wl channel 1 ./wl up ./wl phy_forcecal 1 ./wl scansuppress 1 ./wl txchain 1 ./wl txcore -k 1 -o 1 ./wl 2g_rate -r 54 -b 20 ./wl phy_txpwrctrl 1 ./wl txpwr1 -1 ./wl txpwr1 -o -d 15 ./wl pkteng_start 00:11:22:33:44:55 tx 100 1024 0 This will send continuous Tx Packets with 100 us packet interval,1024 byte packet length. Data rate =54Mbps ,Channel=1 and output power =15dBm. 2.4G 11n 20 SISO rate: - 9 - ./wl mpc 0 ./wl phy_watchdog 0 ./wl country…

Text truncated - open the document above for the full version.

Attestation Statements

AzureWave Technologies, Inc. 8F,No.94, Baozhong Rd., Xindain, Taipei, Taiwan 231. TEL:886‐2‐66289888 FAX:886‐2‐66289666 Declaration for no non‐US channel operation February 26, 2015 We, AzureWave Technologies , Inc. declare that the device does not support channel 12 ~ 13 in 2.4GHz band and any non-US channels in all the operational mode(s) for the following product. FCC ID : TLZ-CM2XXNFLZ-CM2X堀NF If you sh ould have any question(s) regarding this declaration, please don’t hesitate to contact us. Thank you! Ivan Chen /Manager AzureWave Technologies , Inc. Phone: 02-55995805 / 02-6628-9888 Fax: 03-573-8097 / 02-6628-9666 [email protected]

Cover Letter(s)

We, the undersigned, hereby authorize Amanda Wu of Bureau Veritas Consumer Products Services (H.K.) Ltd., Taoyuan Branch (BV CPS Taoyuan) of Taiwan to act on our behalf in all manners relating to FCC application for equipment authorization, including signing of all documents relating to these matters. Any and all acts carried out by Amanda Wu of BV CPS Taoyuan on our behalf shall have the same effect as acts of our own.

Cover Letter(s)

FCC ID: TLZ-CM2XXNF Report No.: RF150126E05 Modular Approval Request Letter Bureau Veritas Consumer Products Services (H.K.) Ltd., Taoyuan Branch February 25, 2015 Dear Application Examiner, AzureWave Technologies, Inc., FCC ID: TLZ-CM2XXNF would like to have your authorization as a modular approval specific to the mobile RF exposure condition. 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 BVM43540. 3. “The modular transmitter must have its own power supply regulation.” The part number of this regulator is BVM43540. 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 tested in a stand-alone configuration via a USB extender. Please see section Photographs of Test Configuration in the test report, the EUT was plugged in this extender. 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-CM2XXNF Report No.: RF150126E05 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, Hank Chung Assistant Manager Bureau Veritas Consumer Products Services (H.K.) Ltd., Hsinchu Branch

External Photos

Report No.: 150126E05 Page 1 CONSTRUCTION PHOTOS OF EUT Model: AW-CM195NF Report No.: 150126E05 Page 3 Model: AW-CM217NF Report No.: 150126E05 Page 5 Model: AW-CM235NF

ID Label/Location Info

(Fig. 1) FCC ID: TLZ-CM2XXNF FCC LABEL LOCATION The label will be permanently affixed at a conspicuous location on the device. Label

Internal Photos

Report No.: 150126E05 Page 2 Model: AW-CM195NF Report No.: 150126E05 Page 4 Model: AW-CM217NF Report No.: 150126E05 Page 6 Model: AW-CM235NF Report No.: 150126E05 Page 7 Antenna (Brand: MAG.LAYERS ; Model : MSA-4008-25GC1-A1) Report No.: 150126E05 Page 8 Report No.: 150126E05 Page 9 Antenna (Brand: LUXSHARE ICT ; Model : Speedy) Report No.: 150126E05 Page 10

RF Exposure Info

Report No.: SA150126E05 Page No. 1 / 8 Report Format Version: 6.1.1 RF Exposure Report Report No.: SA150126E05 FCC ID: TLZ-CM2XXNF Test Model: AW-CM195NF Series Model: AW-CM217NF, AW-CM235NF Received Date: Jan. 26, 2015 Test Date: Feb. 03 to 17, 2015 Issued Date: Feb. 25, 2015 Applicant: AzureWave Technologies, Inc. Address: 8 F., No. 94, Baozhong Rd., Xindian,Taipei, Taiwan 231 Issued By: Bureau Veritas Consumer Products Services (H.K.) Ltd., Taoyuan Branch Hsin Chu Laboratory Lab Address: No. 81-1, Lu Liao Keng, 9th Ling,Wu Lung Tsuen, Chiung Lin Hsiang, Hsin Chu Hsien 307, Taiwan R.O.C. Test Location (1): No. 81-1, Lu Liao Keng, 9th Ling,Wu Lung Tsuen, Chiung Lin Hsiang, Hsin Chu Hsien 307, Taiwan R.O.C. Test Location (2): No. 49, Ln. 206, Wende Rd., Shangshan Tsuen, Chiung Lin Hsiang, Hsin Chu Hsien 307, Taiwan R.O.C. This report is for your exclusive use. Any copying or replication of this report to or for any other person or entity, or use of our name or trademark, is permitted only with our prior written permission. This report sets forth our findings solely with respect to the test samples identified herein. The results set forth in this report are not indicative or representative of the quality or characteristics of the lot from which a test sample was taken or any similar or identical product unless specifically and expressly noted. Our report includes all of the tests requested by you and the results thereof based upon the information that you provided to us. You have 60 days from date of issuance of this report to notify us of any material error or omission caused by our negligence, provided, however, that such notice shall be in writing and shall specifically address the issue you wish to raise. A failure to raise such issue within the prescribed time shall constitute your unqualified acceptance of the completeness of this report, the tests conducted and the correctness of the report contents. Unless specific mention, the uncertainty of measurement has been explicitly taken into account to declare the compliance or non-compliance to the specification. Report No.: SA150126E05 Page No. 2 / 8 Report Format Version: 6.1.1 Table of Contents Release Control Record .................................................................................................................................... 3 1 Certificate of Conformity ......................................................................................................................... 4 2 RF Exposure ........................................................................................................................................... 5 2.1 Limits For Maximum Permissible Exposure (MPE) ............................................................................. 5 2.2 MPE Calculation Formula ................................................................................................................... 5 2.3 Classification ....................................................................................................................................... 5 3 Antenna Gain .......................................................................................................................................... 5 4 Calculation Result Of Maximum Conducted Power ................................................................................ 6 Report No.: SA150126E05 Page No. 3 / 8 Report Format Version: 6.1.1 Release Control Record Issue No. Description Date Issued SA150126E05 Original release. Feb. 25, 2015 Report No.: SA150126E05 Page No. 5 / 8 Report Format Version: 6.1.1 2 RF Exposure 2.1 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) Limits For General Population / Uncontrolled Exposure 300-1500 ... ... F/1500 30 1500-100,000 ... ... 1.0 30 F = Frequency in MHz 2.2 MPE Calculation 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 2.3 Classification The antenna of this product, under normal use condition, is at least 20cm away from the body of the user. So, this device is classified as Mobile Device. 3 Antenna Gain The antennas provided to the EUT, please refer to the following table: Antenna No Chain No. Brand Model Gain (dBi) Antenna Type Connector Type Frequency range (GHz to GHz) Cable Length (External only) 1 Chain (0) MAG.LAYERS MSA-4008-25 GC1-A1 2.98 PIFA i-pex(MHF) 2.4~2.5 15cm 5.164.9~5.9 Chain (1) MAG.LAYERS MSA-4008-25 GC1-A1 2.98 PIFA i-pex(MHF) 2.4~2.5 15cm 5.164.9~5.9 Report No.: SA150126E05 Page No. 6 / 8 Report Format Version: 6.1.1 4 Calculation Result Of Maximum Conducted Power For WLAN: 15.247(2.4GHz) 802.11b FREQUENCY (MHz) CONDUCTED POWER (mW) ANTENNA GAIN (dBi) DISTANCE (cm) POWER DENSITY (mW/cm 2 ) LIMIT (mW/cm 2 ) 2412 - 2462 179.473 2.98 20 0.07091 1 802.11g FREQUENCY (MHz) CONDUCTED POWER (mW) ANTENNA GAIN (dBi) DISTANCE (cm) POWER DENSITY (mW/cm 2 ) LIMIT (mW/cm 2 ) 2412 - 2462 270.396 2.98 20 0.10684 1 802.11n (HT20) FREQUENCY (MHz) CONDUCTED POWER (mW) ANTENNA GAIN (dBi) DISTANCE (cm) POWER DENSITY (mW/cm 2 ) LIMIT (mW/cm 2 ) 2412 - 2462 466.771 2.98 20 0.18443 1 802.11n (HT40) FREQUENCY (MHz) CONDUCTED POWER (mW) ANTENNA GAIN (dBi) DISTANCE (cm) POWER DENSITY (mW/cm 2 ) LIMIT (mW/cm 2 ) 2422 - 2452 233.435 2.98 20 0.09223 1 Note: Directional gain = 10 log[(10 G1/20 + 10 G2/20 ) 2 / 2] = 4.82dBi Report No.: SA150126E05 Page No. 7 / 8 Report Format Version: 6.1.1 For WLAN: 15.407(5GHz) 802.11a FREQUENCY (MHz) CONDUCTED POWER (mW) ANTENNA GAIN (dBi) DISTANCE (cm) POWER DENSITY (mW/cm 2 ) LIMIT (mW/cm 2 ) 5180 ~ 5240 74.645 5.16 20 0.04872 1 5260 ~ 5320 72.611 5.16 20 0.04739 1 5500 ~ 5700 79.433 5.16 20 0.05185 1 5745 ~ 5825 89.536 5.16 20 0.05844 1 802.11ac (VHT20) FREQUENCY (MHz) CON…

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Test Report

Report No.: RF150126E05-5 1 of 25 Report Format Version 5.3.0 DFS TEST REPORT Report No.: RF150126E05-5 FCC ID: TLZ-CM2XXNF Test Model: AW-CM195NF Series Model: AW-CM217NF, AW-CM235NF Received Date: Jan. 26, 2015 Test Date: Feb. 17, 2015 Issued Date: Feb. 25, 2015 Applicant: AzureWave Technologies, Inc. Address: 8 F., No. 94, Baozhong Rd., Xindian,Taipei, Taiwan 231 Issued By: Bureau Veritas Consumer Products Services (H.K.) Ltd., Taoyuan Branch Hsin Chu Laboratory Lab Address: No. 81-1, Lu Liao Keng, 9th Ling,Wu Lung Tsuen, Chiung Lin Hsiang, Hsin Chu Hsien 307, Taiwan R.O.C. Test Location: No. 81-1, Lu Liao Keng, 9th Ling,Wu Lung Tsuen, Chiung Lin Hsiang, Hsin Chu Hsien 307, Taiwan R.O.C. This report is for your exclusive use. Any copying or replication of this report to or for any other person or entity, or use of our name or trademark, is permitted only with our prior written permission. This report sets forth our findings solely with respect to the test samples identified herein. The results set forth in this report are not indicative or representative of the quality or characteristics of the lot from which a test sample was taken or any similar or identical product unless specifically and expressly noted. Our report includes all of the tests requested by you and the results thereof based upon the information that you provided to us. You have 60 days from date of issuance of this report to notify us of any material error or omission caused by our negligence, provided, however, that such notice shall be in writing and shall specifically address the issue you wish to raise. A failure to raise such issue within the prescribed time shall constitute your unqualified acceptance of the completeness of this report, the tests conducted and the correctness of the report contents. Unless specific mention, the uncertainty of m…

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Contact Information

Applicant

Patrick Lin(Director)
[email protected]02-55995599Fax: 02-66289666

Test Firm

Bureau Veritas CPS (H.K.) Ltd., Taoyuan BranchRichard Chen
[email protected]+886-3-2600884Fax: +886-3-2115834

Technical Specifications

#Rule PartsFrequency RangePower Output
415E5.75 GHz - 5.83 GHz178.00 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Power listed is the maximum combined conducted output power. Single Modular Approval for mobile RF Exposure condition. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter, except the collocation as described in this filing or in accordance with FCC multi-transmitter product guidelines. Approval is limited to OEM installation only. OEM integrators must be provided with antenna installation instructions. OEM integrators and end-Users must be provided with transmitter operation conditions for satisfying RF exposure compliance. This grant is valid only when the device is sold to OEM integrators and the OEM integrators are instructed to ensure that the end user has no manual instructions to remove or install the device. Only those antenna(s) tested with the device or similar antenna(s) with equal or lesser gain may be used with this transmitter. This device has 20 MHz, 40 MHz and 80 MHz bandwidth mode.

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