FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. AzureWave Technologies, Inc./
  3. TLZ-NM387

TLZ-NM387IEEE 802.11b/g/n Wireless LAN & Bluetooth Module

AzureWave Technologies, Inc.
IEEE 802.11b/g/n Wireless LAN & Bluetooth Module - FCC ID TLZ-NM387 - AzureWave Technologies, Inc.
Click to zoom

Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Feb 16, 2011
Application Purpose
Original Equipment
Date of Application
Feb 16, 2011
Equipment Note
IEEE 802.11b/g/n Wireless LAN & Bluetooth Module
Frequency Range
2402.00000000 - 2480.00000000
Company
AzureWave Technologies, Inc.
Country
Taiwan

Documents & Files

Select a file to view

Users Manual

↗

Attestation Statements

↗

Cover Letter(s)

↗
↗
↗

External Photos

↗

ID Label/Location Info

↗
↗

Internal Photos

↗

Operational Description

↗

RF Exposure Info

↗

Test Report

↗
↗

Test Setup Photos

↗

Document Text

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

Users Manual

- 1 - AW-NM387 IEEE 802.11 b/g/n Wireless LAN & Bluetooth Module Datasheet Version 0.4 Document release Date Modification Initials Approved Version0.1 2010/06/30 Initial version Max Huang Ivan Chen Version0.12 2010/7/1 Update page 9 pin out and page 10 reference design Max Huang Ivan Chen Version0.2 2010/7/8 Update final mechanical characteristic Scott Hsieh Ivan Chen Version0.3 2010/7/19 Update Page 10 reference design Scott Hsieh Ivan Chen Version0.4 2010/8/19 Update Sleep_CLK pin define Scott Hsieh Ivan Chen - 2 - 1. General Description 1-1. Product Overview and Functional Description AzureWave Technologies, Inc. introduces the first IEEE 802.11b/g/n WLAN & Bluetooth module IC--- AW-NM387. The module is targeted to mobile devices including Personal Digital Assistants (PDAs), Netbook, Tablet and Gaming Devices which need small package module, low power consumption, multiple interfaces and OS support. By using AW-NM387, the customers can easily enable the Wi-Fi , and BT embedded applications with the benefits of high design flexibility, short development cycle, and quick time-to-market. Compliance with the IEEE 802.11b/g/n standard, the AW-NM387 uses Direct Sequence Spread Spectrum (DSSS), Orthogonal Frequency Division Multiplexing (OFDM), DBPSK, DQPSK, CCK and QAM baseband modulation technologies. A high level of integration and full implementation of the power management functions specified in the IEEE 802.11 standard minimize the system power requirements by using AW-NM387. In addition to the support of WPA/WPA2 and WEP 64-bit and 128-bit encryption, the AW-NM387 also supports the IEEE 802.11i security standard through the implementation of Advanced Encryption Standard (AES)/Counter Mode CBC-MAC Protocol (CCMP), Wired Equivalent Privacy(WEP) with Temporal Key Integrity Protocol(TKIP),Advanced Encryption Standard(AES)/Cipher- Based Message Authentication Code(CMAC), and WLAN Authentication and Privacy Infrastructure (WAPI) security mechanisms. For the video, voice and multimedia applications the AW-NM387 support 802.11e Quality of Service (QoS). For Bluetooth operation, AW-NM387 is Bluetooth 3.0 + High Speed (HS) also complaint with Bluetooth 2.1 + Enhanced Data Rate (EDR). Bluetooth 3.0 + HS can make it easier to connect The AW-NM387 supports SDIO for WLAN to the host processor. SDIO interface are available to connect the BT core the host processor. AW-NM387 is suitable for multiple mobile processors for different applications. With the support cellular phone co-existence, the AW-NM387 is also the best solution for mobile phones and PDA phones applications. AW-NM387 module adopts Marvell’s latest highly-integrated WLAN & Bluetooth SoC---88W8787. All the other components are implemented by all means to reach the mechanical specification required. - 3 - 1-2. Key Features Small footprint: 23mm(L) x 11mm(W) x 2.4 mm(H) SDIO interfaces support for WLAN SDIO for Bluetooth Bluetooth 3.0 + High Speed (HS) also complaint with Bluetooth 2.1 + Enhanced Data Rate (EDR) Cellular phone co-existence support Multiple power saving modes for low power consumption IEEE 802.11i for advanced security Quality of Service (QoS) support for multimedia applications Drip-in WLAN Linux drivers are Android ready and validated on Android based systems. Support for Linux kernel versions up to 2.6.32. Support for BlueZ v4.47 Bluetooth profiles stack used in Android Éclair Simultaneous AP-STA Support China WAPI Lead-free design - 4 - 2. Block Diagram 3. Specifications Table     Wireless LAN &Bluetooth Module   IEEE 802.11b/g/n, Wi-Fi compliant    Bluetooth 3.0 +high speed complaint with Bluetooth 2.1+Enhanced Data Rate (EDR)     WLAN and Bluetooth through SDIO     Marvell 8787    11mm x 23mm x 2.4mm   !    "! 3.3V/1.8V(optional)+/- 10% #   Operating: -20 ~ 70 o C ; Storage: -40 ~ 85 o C $        % & ' (! 2.4 GHz ISM radio band )     802.11b: USA, Canada and Taiwan – 11 Most European Countries – 13 France – 4, Japan – 14 802.11g: USA, Canada and Taiwan – 11 Most European Countries – 13 Japan – 13 802.11n(HT20): Channel 1~14(2412~2484) 802.11n(HT40): Channel 1~7(2422~2472)   DSSS, OFDM, DBPSK, DQPSK, CCK, 16-QAM, 64-QAM for WLAN GFSK (1Mbps), /4 DQPSK (2Mbps) and 8DPSK (3Mbps) for Bluetooth  *  WLAN: - 5 - 802.11b(Ch1~13): typical 17dBm +/- 2dBm 802.11b(Ch14): typical 10dBm +/- 2dBm 802.11g: typical 14dBm +/- 2dBm 802.11n: typical HT20 13dBm +/- 2dBm HT40 12dBm +/- 2dBm Typical power: Bluetooth Bluetooth Class 1.5>1dBm   WLAN&BT through U.FL connector (  +    + ' WLAN: 802.11b: Minimum -86dBm at 11Mbps 802.11g: Minimum -71dBm at 54Mbps 802.11n: Minimum -68dBm at HT20 MCS7 Minimum -65dBm at HT20 MCS7 Bluetooth: GFSK: typical -87dBm /4 DQPSK: typical -88dBm 8DPSK: typical -81dBm      CSMA/CA with ACK  ( WLAN 802.11b: 1, 2, 5.5, 11Mbps 802.11g: 6, 9, 12, 18, 24, 36, 48, 54Mbps 802.11n up to 150Mbps Bluetooth Bluetooth 2.1+EDR data rates of 1,2, and 3Mbps   ! (! Open Space: ~300m ; Indoor: ~100m for WLAN Minimum 10 m indoor for Bluetooth The transmission speed may vary according to the environment)   '  WAPI  WEP 64-bit and 128-bit encryption with H/W TKIP processing  WPA/WPA2 (Wi-Fi Protected Access)  AES-CCMP hardware implementation as part of 802.11i security standard ,$-   Bluetooth and cell phone(GSM/DCS/WCDMA/UMTS/3G) co-existence - 6 - 2. Electrical Characteristics 2-1. Absolute Maximum Ratings Symbol Parameter Condition Min Typ Max Units 3.3V PA and Internal voltage power supply 3.3 4.6 V VIO Host I/O power supply 1.8 2.3 V 2.6 3.1 3.3 4.2 External 1.8V Analog I/O power supply(optional) 1.8 2.3 V 2-2. Recommended Operating Conditions Symbol Parameter Condition Min Typ Max Units 3.3V PA and Internal voltage power supply 3 3.3 3.6 V VIO Host I/O power supply 1.62 1.8 1.98 V 2.5 2.6 2.7 2.97 3.3 3.63 External 1.8V Analog I/O pow…

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

Cover Letter(s)

FCC ID: TLZ-NM387 Report No.: RF991202E06 Modular Approval Request Letter Bureau Veritas Consumer Products Services (H.K.) Ltd., Taoyuan Branch February 16, 2011 Dear Application Examiner, AzureWave Technologies, Inc., It’s an IEEE 802.11 b/g/n Wireless LAN & Bluetooth Module, FCC ID: TLZ-NM387 would like to have your authorization as a modular device. The requirements of section 15.212 of FCC rules 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 8787 BGA. 3. “The modular transmitter must have its own power supply regulation.” The part number of this regulator is 8787 BGA. 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 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-NM387 Report No.: RF991202E06 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, signature Hank Chung Assistant Manager Bureau Veritas Consumer Products Services (H.K.) Ltd., Hsinchu Branch

External Photos

Page 1 CONSTRUCTION PHOTOS OF EUT Page 2 Page 3 Antenna 1 Page 4 Page 5 Antenna 2 Page 6 Page 7 Antenna 3 Page 8 Page 9 Antenna 4 Page 10 Page 11 Page 12 Antenna 5 Page 13 Page 14 Antenna 6 Page 15 Page 16 Page 17 Antenna 7 Page 18 Page 19 Antenna 8 Page 20 Page 21 Page 22 Antenna 9 Page 23 Page 24

ID Label/Location Info

(Fig. 1) FCC ID: TLZ-NM387 FCC LABEL LOCATION The label will be permanently affixed at a conspicuous location on the device. Label

Internal Photos

Page 1 CONSTRUCTION PHOTOS OF EUT

Operational Description

FCC ID: TLZ-NM387 Report No.: RF991202E06 Operational Description This device is an IEEE 802.11 b/g/n Wireless LAN & Bluetooth Module, which operates in the 2.4GHz band, the maximum data rate could be up to 135Mbps with OFDM technique. If the signal to noise ratio is too poor which could not support 135Mbps, the 11Mbps data rate with DSSS technique will be applied. The transmitter of the EUT is powered by 3.3Vdc±10% from host equipment. The antenna is PIFA antenna with I-PEX antenna connector. For more detailed instruction, please take a look at the user’s manual.

RF Exposure Info

Report No.: SA991202E06 Report Format Version 4.0.0. 1 RF EXPOSURE REPORT REPORT NO.: SA991202E06 MODEL NO.: AW-NM387 FCC ID: TLZ-NM387 ACCORDING: FCC Guidelines for Human Exposure IEEE C95.1 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 Report No.: SA991202E06 Report Format Version 4.0.0. 2 RELEASE CONTROL RECORD ISSUE NO. REASON FOR CHANGE DATE ISSUED Original release NA Feb. 09, 2011 Report No.: SA991202E06 Report Format Version 4.0.0. 3 1. RF EXPOSURE LIMIT 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. MPE CALCULATION 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 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. Report No.: SA991202E06 Report Format Version 4.0.0. 4 4. CALCULATION RESULT OF MAXIMUM CONDUCTED POWER For WLAN: FREQUENCY BAND (MHz) MAX POWER (dBm) ANTENNA GAIN (dBi) DISTANCE (cm) POWER DENSITY (mW/ cm 2 ) LIMIT (mW/cm 2 ) 2412-2462 22.3 2.98 20 0.067 1.00 For Bluetooth: FREQUENCY BAND (MHz) MAX POWER (dBm) ANTENNA GAIN (dBi) DISTANCE (cm) POWER DENSITY (mW/ cm 2 ) LIMIT (mW/cm 2 ) 2402-2480 7.9 2.98 20 0.002 1.00 ---END---

Test Report

Report No.: RF991202E06-1 1 Report Format Version 4.0.0 FCC TEST REPORT REPORT NO.: RF991202E06-1 MODEL NO.: AW-NM387 FCC ID: TLZ-NM387 RECEIVED: Dec. 02, 2010 TESTED: Dec. 10 to 28, 2010 ISSUED: Feb. 09, 2011 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 TEST LOCATION (1): No. 81-1, Lu Liao Keng, 9th Ling,Wu Lung Tsuen, Chiung Lin Hsiang, Hsin Chu Hsien 307, Taiwan TEST LOCATION (2): No.49, Ln. 206, Wende Rd., Shangshan Tsuen, Chiung Lin Hsiang, Hsin Chu Hsien 307, Taiwan This test report consists of 69 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 certification, approval, or endorsement by TAF or any government agencies. The test results in the report only apply to the tested sample. Report No.: RF991202E06-1 2 Report Format Version 4.0.0 TABLE OF CONTENTS RELEASE CONTROL RECORD........................................................................................4 1 CERTIFICATION..................................................................................................5 2 SUMMARY OF TEST RESULTS...........................................................................6 2.1 ME ASUREMENT UNCERTAINTY.......................................................................7 3 GENERAL INFORMATION...................................................................................8 3.1 GENERAL DESCRIPTION OF EUT......................................................................8 3.2 DESCRIPTION OF TEST MODES......................................................................10 3.3 TEST MODE APPLICABLITY AND TESTED CHANNEL DETAIL:........................11 3.4 GENERAL DESCRIPTION OF APPLIED STANDARDS.......................................13 3.5 DESCRIPTION OF SUPPORT UNITS................................................................14 3.6 CONFIGURATION OF SYSTEM UNDER TEST..................................................14 4 TEST PROCEDURES AND RESULTS................................................................15 4.1 CONDUCTED EMISSION MEASUREMENT.......................................................15 4.1.1 LIMITS OF CONDUCTED EMISSION MEASUREMENT.....................................15 4.1.2 TEST INSTRUMENTS.......................................................................................15 4.1.3 TEST PROCEDURES........................................................................................16 4.1.4 TEST SETUP....................................................................................................16 4.1.5 EUT OPERATING CONDITIONS........................................................................17 4.1.6 TEST RESULTS................................................................................................18 4.2 NUMBER OF HOPPING FREQUENCY USED....................................................20 4.2.1 LIMIT OF HOPPING FREQUENCY USED..........................................................20 4.2.2 TEST INSTRUMENTS.......................................................................................20 4.2.3 TEST PROCEDURES........................................................................................20 4.2.4 DEVIATION FROM TEST STANDARD...............................................................20 4.2.5 TEST SETUP....................................................................................................21 4.2.6 TEST RESULTS................................................................................................21 4.3 DWELL TIME ON EACH CHANNEL...................................................................25 4.3.1 LIMIT OF DWELL TIME USED...........................................................................25 4.3.2 TEST INSTRUMENTS.......................................................................................25 4.3.3 TEST PROCEDURES........................................................................................25 4.3.4 DEVIATION FROM TEST STANDARD...............................................................26 4.3.5 TEST SETUP....................................................................................................26 4.3.6 TEST RESULTS................................................................................................26 4.4 CHANNEL BANDWIDTH....................................................................................38 4.4.1 LIMITS OF CHANNEL BANDWIDTH..................................................................38 4.4.2 TEST INSTRUMENTS.......................................................................................38 4.4.3 TEST PROCEDURE..........................................................................................38 4.4.4 DEVIATION FROM TEST STANDARD...............................................................38 4.4.5 TEST SETUP....................................................................................................39 4.4.6 EUT OPERATING CONDITION..........................................................................39 4.4.7 TEST RESULTS................................................................................................40 4.5 HOPPING CHANNEL SEPARATION..................................................................43 4.5.1 LIMIT OF HOPPING CHANNEL SEPARATION...................................................43 Report No.: RF991202E06-1 3 Report Format Version 4.0.0 4.5.2 TEST INSTRUMENTS.......................................................................................43 4.5.3 TEST PROCEDURES...............................................................…

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

Test Report

Report No.: RF991202E06 1 Report Format Version 4.0.0 FCC TEST REPORT REPORT NO.: RF991202E06 MODEL NO.: AW-NM387 FCC ID: TLZ-NM387 RECEIVED: Dec. 02, 2010 TESTED: Dec. 10 to 30, 2010 ISSUED: Feb. 09, 2011 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 TEST LOCATION (1): No. 81-1, Lu Liao Keng, 9th Ling,Wu Lung Tsuen, Chiung Lin Hsiang, Hsin Chu Hsien 307, Taiwan TEST LOCATION (2): No. 49, Ln. 206, Wende Rd., Shangshan Tsuen, Chiung Lin Hsiang, Hsin Chu Hsien 307, Taiwan This test report consists of 77 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 certification, approval, or endorsement by TAF or any government agencies. The test results in the report only apply to the tested sample. Report No.: RF991202E06 2 Report Format Version 4.0.0 Table of Contents RELEASE CONTROL RECORD....................................................................................4 1. CERTIFICATION................................................................................................5 2. SUMMARY OF TEST RESULTS.........................................................................6 2.1 MEASUREMENT UNCERTAINTY.......................................................................7 3. GENERAL INFORMATION..................................................................................8 3.1 GENERAL DESCRIPTION OF EUT....................................................................8 3.2 DESCRIPTION OF TEST MODES....................................................................10 3.2.1 TEST MODE APPLICABILITY AND TESTED CHANNEL DETAIL.......................11 3.3 GENERAL DESCRIPTION OF APPLIED STANDARDS.....................................14 3.4 DESCRIPTION OF SUPPORT UNITS...............................................................15 3.5 CONFIGURATION OF SYSTEM UNDER TEST.................................................15 4. TEST TYPES AND RESULTS...........................................................................16 4.1 CONDUCTED EMISSION MEASUREMENT......................................................16 4.1.1 LIMITS OF CONDUCTED EMISSION MEASUREMENT....................................16 4.1.2 TEST INSTRUMENTS......................................................................................16 4.1.3 TEST PROCEDURES.......................................................................................17 4.1.4 DEVIATION FROM TEST STANDARD..............................................................17 4.1.5 TEST SETUP...................................................................................................18 4.1.6 EUT OPERATING CONDITIONS......................................................................18 4.1.7 TEST RESULTS...............................................................................................19 4.2 RADIATED EMISSION MEASUREMENT..........................................................21 4.2.1 LIMITS OF RADIATED EMISSION MEASUREMENT.........................................21 4.2.2 TEST INSTRUMENTS......................................................................................22 4.2.3 TEST PROCEDURES.......................................................................................23 4.2.4 DEVIATION FROM TEST STANDARD..............................................................23 4.2.5 TEST SETUP...................................................................................................24 4.2.6 EUT OPERATING CONDITIONS......................................................................24 4.2.7 TEST RESULTS...............................................................................................25 4.3 6dB BANDWIDTH MEASUREMENT.................................................................54 4.3.1 LIMITS OF 6dB BANDWIDTH MEASUREMENT................................................54 4.3.2 TEST INSTRUMENTS......................................................................................54 4.3.3 TEST PROCEDURE.........................................................................................54 4.3.4 DEVIATION FROM TEST STANDARD..............................................................54 4.3.5 TEST SETUP...................................................................................................54 4.3.6 EUT OPERATING CONDITIONS......................................................................54 4.3.7 TEST RESULTS...............................................................................................55 4.4 MAXIMUM PEAK OUTPUT POWER.................................................................59 4.4.1 LIMITS OF MAXIMUM PEAK OUTPUT POWER MEASUREMENT....................59 4.4.2 INSTRUMENTS................................................................................................59 4.4.3 TEST PROCEDURES.......................................................................................59 Report No.: RF991202E06 3 Report Format Version 4.0.0 4.4.4 DEVIATION FROM TEST STANDARD..............................................................59 4.4.5 TEST SETUP...................................................................................................59 4.4.6 EUT OPERATING CONDITIONS......................................................................59 4.4.7 TEST RESULTS...............................................................................................60 4.5 POWER SPECTRAL DENSITY MEASUREMENT..............................................62 4.5.1 LIMITS OF POWER SPECTRAL DENSITY MEASUREMENT............................62 4.5.2 TEST IN…

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

Test Setup Photos

1 PHOTOGRAPHS OF THE TEST CONFIGURATION CONDUCTED EMISSION TEST 2 RADIATED EMISSION TEST 3

Contact Information

Applicant

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

Technical Contact

Bureau Veritas CPS (H.K.) Ltd. Taoyuan BranchHank Chung
[email protected]886-3-593-5343

81-1, Lu Laio Keng, 9th Ling, Wu Lung Tsuen, Chiun · Hsinchu Hsien · Taiwan

Non-Technical Contact

Bureau Veritas CPS (H.K.) Ltd. Taoyuan BranchNatacha Chen
[email protected]886-3-3183232

Test Firm

Bureau Veritas CPS (H.K.) Ltd. Taoyuan BranchRichard Chen
[email protected]886-3-3183232Fax: 886-3-2115834

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz6.00 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Output power listed is conducted. Single Modular Approval for mobile RF Exposure conditions. Device is an 802.11bgn WLAN & Bluetooth module operating in a 1Tx1R configuration as described in this filing. 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. 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.

Other Applications from AzureWave Technologies, Inc.

IEEE 802.11 a/b/g/n/ac/ax Wi-Fi +Bluetooth 6.0 Combo LGA Module - FCC ID TLZ-XM643SUR - AzureWave Technologies, Inc.
TLZ-XM643SUR

IEEE 802.11 a/b/g/n/ac/ax Wi-Fi +Bluetooth 6.0 Combo LGA Module

Jul 22, 2026

Equipment Class

NII - Unlicensed National Information Infrastructure TX
AW-CM689 - FCC ID TLZ-CM689 - AzureWave Technologies, Inc.
TLZ-CM689

AW-CM689

May 06, 2026

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter
TLZ-CU640

IEEE802.11 a/b/g/n/ac/ax and Bluetooth LE 5.4 LGA Module

Dec 23, 2025

Equipment Class

NII - Unlicensed National Information Infrastructure TX
TLZ-CU668

IEEE802.11 a/b/g/n/ac/ax and Bluetooth LE 5.4 LGA Module

Nov 25, 2025

Equipment Class

DTS - Digital Transmission System
TLZ-CU597

IEEE 802.11 a/b/g/n 1T1R WLAN and Bluetooth Low Energy Microcontroller Module

Nov 24, 2025

Equipment Class

NII - Unlicensed National Information Infrastructure TX