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2AI9TOAW-AP156XOmniAccess Stellar

ALE USA Inc.

Application Details

Equipment Class
6SD - 15E 6 GHz Standard Power Access Point
Date of Grant
Apr 09, 2026
Application Purpose
Original Equipment
Equipment Note
OmniAccess Stellar
Frequency Range
5955.00000000 - 6415.00000000
Company
ALE USA Inc.
Country
United States

Documents & Files

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Attestation Statements

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Cover Letter(s)

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ID Label/Location Info

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Operational Description

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RF Exposure Info

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Test Report

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Document Text

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

Operational Description

2000 Corporate Center Drive Thousand Oaks, CA 91320 Alcatel-Lucent Enterprise’s PIA Inquiry of Geolocation for 6GHz Access Points Geolocation General Description The following is a general description of how Alcatel-Lucent Enterprise’s wireless access points (APs) acquire location information and maintain a confidence level of at least 95% in the accuracy of said location information when under the control of an Automated Frequency Coordination (AFC) system. Location Acquisition via Hardware Interfaces: To provide accurate location information to AFC systems, Alcatel-Lucent Enterprise’s wireless APs capable of transmitting at standard power limits in the UNII-5 and UNII-7 bands are equipped with GNSS receivers. The APs self-locate using the GNSS receiver and report their geolocation at regular intervals to the wireless controller. The GNSS module can decode signals from GPS satellite systems to achieve a position fix. The APs continuously collect satellite positioning data through their built-in high-precision GNSS receivers and store these raw coordinates along with dynamic updates in a specially designed circular buffer database. This database employs an advanced Last-In-First-Out (LIFO) storage management mechanism, when new coordinate data is written, the system automatically overwrites the oldest historical records to ensure efficient storage utilization. The system defaults to a 95% confidence ellipse, meaning there is at least a 95% probability that the AP’s actual location falls within this elliptical area. Fallback Positioning Solutions When Alcatel-Lucent Enterprise wireless APs cannot acquire valid signals due to obstructed GNSS visibility or weak GPS signals, the system activates an intelligent fallback positioning mode. The wireless controller then estimates the AP’s location based on neighboring APs within the same network, primarily using Received Signal Strength Indicator (RSSI) technology. The wireless controller estimates distances to neighboring APs with known locations and incorporates these values into the uncertainty range of the target AP. Under cloud controller management, confidence levels are determined solely based on the major axis of the ellipse, with the uncertainty area moderately expanded to maintain a minimum 95% confidence standard. 2000 Corporate Center Drive Thousand Oaks, CA 91320 Additional Information on Software-Based Location Handling Enhancements Alcatel-Lucent Enterprise’s wireless controllers track the AFC response expiration time for each AP and initiate new requests before expiry. Each AFC request is submitted in the format defined by the Wi-Fi Alliance’s AFC Device Interface Specification, including updated location information. When the system detects changes in AP location information—whether from automatic GNSS updates or manual adjustments by administrators via the web interface—it triggers a multi-tiered verification process. A new AFC request is initiated, and the AP dynamically adjusts its channel/power plan based on the latest AFC instructions. In scenarios where an AP reboots, the system activates a conservative operating mode: The AP have their 6GHz radio modules disabled entirely until valid positioning data is reacquired and a new AFC request is issued to restore standard-power operation. Manual Elevation Entry Specifications The installation height of Alcatel-Lucent Enterprise wireless APs will be manually entered by certified installers via a web interface or command line. Installers are required to input both the height value (Above Ground Level, AGL) and its uncertainty (meter-level precision). This elevation entry feature is restricted to professional installation scenarios. Due to the unique frequency band characteristics of these APs, standard-power APs cannot be installed by end users. Additionally, accessing AP configurations requires managed accounts with robust security measures. 2000 Corporate Center Drive Thousand Oaks, CA 91320 APPENDIX A-Glossary AFC= Automated Frequency Coordination AGL = Above Ground Level AP = Access Point GNSS = Global Navigation Satellite System GPS = Global Positioning System RSSl= Received Signal Strength Indicator

RF Exposure Info

MRT Technology (Suzhou) Co., Ltd. Report No.: R25S1065098-U401 Phone: +86-512-66308358 Report Version: V01 Web: www.mrt-cert.com Issue Date: 2025-12-26 Template Version: 2.1 1 of 13 RF Exposure Evaluation Declaration FCC ID: 2AI9TOAW-AP156X Applicant: ALE USA Inc. Product: OmniAccess Stellar Model No.: OAW-AP1561 Brand Name: Alcatel-Lucent Enterprise FCC Rule Part(s): FCC Part 2.1091 Result: Complies Evaluation Date: 2025-11-07 Reviewed By: Vincent Yu Approved By: Robin Wu The test results relate only to the samples tested. This equipment has been shown to be capable of compliance with the applicable technical standards as indicated in the measurement report. Testing was performed in accordance with the applicable measurement procedures. The test results reported herein apply only to the specific item(s) tested. The test report shall not be reproduced except in full without the written approval of MRT Technology (Suzhou) Co., Ltd. Report No.: R25S1065098-U401 2 of 13 Revision History Report No. Version Description Issue Date Note R25S1065098-U401 V01 Initial Report 2025-12-26 Valid Report No.: R25S1065098-U401 3 of 13 CONTENTS Description Page 1. General Information ............................................................................................................................... 4 1.1. Applicant ........................................................................................................................................4 1.2. Manufacturer .................................................................................................................................4 1.3. Testing Facility ...............................................................................................................................4 1.4. Product Information .......................................................................................................................5 1.5. Antenna Details .............................................................................................................................6 1.6. WLAN Configuration .....................................................................................................................6 1.7. Device Classification .....................................................................................................................7 1.8. Applied Standards .........................................................................................................................7 2. RF Exposure Evaluation ........................................................................................................................ 8 2.1. Limits .............................................................................................................................................8 2.2. MPE Exemptions ...........................................................................................................................9 2.3. Calculated Result ....................................................................................................................... 12 Report No.: R25S1065098-U401 4 of 13 1. General Information 1.1. Applicant ALE USA Inc. 2000 Corporate Center Drive Thousand Oaks, CA 91320 1.2. Manufacturer ALE USA Inc. 2000 Corporate Center Drive Thousand Oaks, CA 91320 1.3. Testing Facility Test Site - MRT Suzhou Laboratory Laboratory Location (Suzhou - Wuzhong) D8 Building, No.2 Tian’edang Rd., Wuzhong Economic Development Zone, Suzhou, China Laboratory Location (Suzhou - SIP) 4b Building, Liando U Valley, No.200 Xingpu Rd., Shengpu Town, Suzhou Industrial Park, China Laboratory Location (Suzhou - Wujiang) Building 1, No.1 Xingdong Road, Wujiang, Suzhou, Jiangsu, People’s Republic of China Laboratory Accreditations A2LA: 3628.01 CNAS: L10551 FCC: CN1166 ISED: CN0001 Test Site - MRT Shenzhen Laboratory Laboratory Location (Shenzhen) 1G, Building A, Junxiangda Building, Zhongshanyuan Road West, Nanshan District, Shenzhen, China Laboratory Accreditations A2LA: 3628.02 CNAS: L10551 FCC: CN1284 ISED: CN0105 Test Site - MRT Taiwan Laboratory Laboratory Location (Taiwan) No. 38, Fuxing 2nd Rd., Guishan Dist., Taoyuan City 333, Taiwan (R.O.C.) Laboratory Accreditations TAF: 3261 FCC: 291082, TW3261 ISED: TW3261 Report No.: R25S1065098-U401 5 of 13 1.4. Product Information Product Name OmniAccess Stellar Model No. OAW-AP1561 Brand Name Alcatel-Lucent Enterprise Wi-Fi Specification 802.11a/b/g/n/ac/ax/be GNSS Specification BDS, Galileo, GLONASS, GPS, SBAS Antenna Specification Refer to clause 1.5 Operating Temp. -40 ~ 70 °C Power Supply PoE Input Accessory(ies) PoE #1 Model: POE60U-1BT-X (ALE P/N: POE60U-1BT-X-R) Input: 100-240 V ~ 1.5 A, 50-60 Hz Output: 56 V⎓0.535 A, 30 W PIN 3, 6+ PIN 1, 2 Return Output: 56 V⎓0.535 A, 30 W PIN 4, 5+ PIN 7, 8 Return PoE #2 Model: POE075U-1BT Input: 100-240 V ~ 2.0 A, 50-60 Hz POE Output 1: 56 V⎓0.8 A, 45 W PIN 3, 6 - +56 V PIN 1, 2 - RETURN POE Output 2: 56 V⎓0.8 A, 45 W PIN 4, 5 - +56 V PIN 7, 8 - RETURN Notes: 1. The information of the EUT (Equipment Under Test) was provided by the manufacturer. The accuracy, completeness, and validity of the information are solely the responsibility of the manufacturer. 2. PoE Injector are not marketed in conjunction with the device. Report No.: R25S1065098-U401 6 of 13 1.5. Antenna Details Antenna Type Frequency (MHz) TX Paths Max. Directional Gain (dBi) Antenna Gain above 30 degrees from the horizon (dBi) Correlated Uncorrelated Correlated Uncorrelated Wi-Fi Antenna Dipole 2412 ~ 2462 2 6.77 6.77 -- -- 5150 ~ 5250 2 7.11 7.11 0.76 0.76 5250 ~ 5350 2 7.26 7.26 -- -- 5470 ~ 5725 2 7.44/7.77 7.44/7.77 -- -- 5725 ~ 5850 2 7.17/7.71 7.17/7.71 -- -- Dipole 5925 ~ 6425 2 7.75 7.75 -2.51 -2.51 6525 ~ 6875 2 6.70 6.70 -1.45 -1.45 Notes: 1. The EUT supports Cyclic Delay Diversity (CDD) mode, and CDD signals are correlated. 2. The EUT also supports Beam Forming mode, and the Beam Forming support 802.11n/ac/ax/be, not include 802.11a/b/g. 3. For bea…

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Test Report

OAW-AP1561 Antenna Test Report Version:V1 2025-9-29 Regulatory WIFI Antenna Information 1 / 14 Table of Contents 1. Test Information ........................................................................................................................................................................ 2 2. Testing Location ........................................................................................................................................................................ 2 3. Test Frequency .......................................................................................................................................................................... 2 4. Antenna Information ............................................................................................................................................................... 2 5. Test Configuration .................................................................................................................................................................... 3 6. Reference Test ........................................................................................................................................................................... 5 7. Test Method ............................................................................................................................................................................... 5 8. Measured Values and Calculation of Correlated / Uncorrelated Gains ................................................................. 6 9. Radiation Pattern .................................................................................................................................................................... 12 Regulatory WIFI Antenna Information 2 / 14 1. Test Information Equipment EMT Chamber Applicant Han-Networks Manufacturer AOT 2. Testing Location Testing Location AOT ADD: 289 Jinghua Road,Shipai, BachengTown, Kunshan City, Jiangsu Province Test Condition Test Engineer Test Environment ( °C / %) Test Date Radiated Changgang Lai 20-24 / 45-60 20250714 3. Test Frequency Band (MHz) Test Frequency (MHz) 2400-2500 2450 5150-5850 5200/5300/5500/5800 5925-7125 6000/6800 4. Antenna Information Freq. Type Size(L*W*H) Cable length (mm) Polarization Type ANT1 WiFi2G Dipole 33*15.5*0.6 100 +45° ANT2 WiFi2G Dipole 33*15.5*0.6 165 -45° ANT3 WiFi5/6G Dipole 20*20*0.6 145 -45° ANT4 WiFi5/6G Dipole 20*20*0.6 200 +45° ANT5 WiFi5G Dipole 21*20*0.6 100 -45° ANT6 WiFi5G Dipole 21*20*0.6 165 +45° ANT7 GNSS L1/L5 PIFA 35.5*20.9*8.5 150 Vertical Regulatory WIFI Antenna Information 3 / 14 5. Test Configuration Regulatory WIFI Antenna Information 4 / 14 Microwave anechoic chamber Regulatory WIFI Antenna Information 5 / 14 6. Reference Test Measurement Instrument 7. Test Method The “great circle” cut method, whereby the Measurement Antenna remains fixed and the EUT is rotated about two axes in sequential order. The radiated RF performance of the Equipment Under Test (EUT) is Regulatory WIFI Antenna Information 6 / 14 measured by sampling the radiated transmit power of the mobile at various locations surrounding the device. A three-dimensional characterization of the 'transmit' performance of the EUT is pieced together by analyzing the data from the spatially distributed measurements. Data points taken every 2 degrees in the theta and in the phi axes are deemed sufficient to fully characterize the EUT's Far-Field radiation pattern and total radiated power All of the measured power values will be integrated. 8. Measured Values and Calculation of Correlated / Uncorrelated Gains Summary of Antenna Peak Gain Antenna Peak Gain Table (Ant. Position:2.4G Ant.1~2) Band (MHz) 2400-2500 Ant.1 Max Gain (dBi) 6.87 Ant.2 Max Gain (dBi) 6.88 Antenna Peak Gain Table (Ant. Position:5G Ant.5~6) Band (MHz) 5150 ~ 5250 5250 ~ 5350 5470 ~ 5725 5725 ~ 5850 Ant.5 Max Gain (dBi) 6.53 6.88 7.27 7.31 Ant.6 Max Gain (dBi) 8.00 7.95 7.90 7.20 Antenna Peak Gain Table (Ant. Position:5GH/6G Ant.3~4) Band (MHz) 5470 ~ 5725 5725 ~ 5850 5925 ~ 6425 6525 ~ 6875 Ant.3 Max Gain (dBi) 8.13 8.58 8.24 7.65 Ant.4 Max Gain (dBi) 7.50 7.64 8.13 7.12 Antenna Peak Gain Table (Ant. Position:GNSS Ant.7) Band (MHz) 1176.45 1575.42 Ant.7 Max Gain (dBi) -1.52 1.71 The installation method of AP1561 is with the network port facing downward and the Z-axis tilted downward by 30 degrees, as shown in the figure below. Peak Realized Gain of Antennas in angle 30° relative to horizontal Regulatory WIFI Antenna Information 7 / 14 Gain(dBi) Frequency MHz 5150 ~ 5250 5925 ~ 6425 6525 ~ 6875 Ant.3 / -2.18 -1.22 Ant.4 / -2.03 -1.19 Ant.5 2.33 / / Ant.6 1.65 / Two 5G (Ant.5 & Ant.6) and two 5G High/6GHz (Ant.3 & Ant.4) outputs drive a cross-polarized pair of linearly polarized antennas. Therefore, The Uncorrelated Peak Realized Gain of Antennas in angle 30° relative to horizontal as below Gain(dBi) Frequency MHz 5150 ~ 5250 5925 ~ 6425 6525 ~ 6875 Ant.3~4 / -2.51 -1.45 Ant.5~6 0.76 / / Regulatory WIFI Antenna Information 8 / 14 Result for Uncorrelated Gain and Correlated Gain Maximum Correlated Gain Calculation Because the antennas are fixed in location within the device the directional antenna gain for MIMO is calculated over a sphere using the raw spatial data taken at 10 degree steps of theta and 10 degree of theta phi for each antenna using the equations from KDB 662911 D01. The raw antenna data is located in the appendix of this report. The correlated antenna gain was calculated using KDB 662911 D01 F(2)(d)(i). The uncorrelated antenna gain was calculated using KDB 662911 D01 F(2)(d)(ii) The correlated gains were calculated for each point in the spatial data and the highest values reported. Regulatory WIFI Antenna Information 9 / 14 Correlated / Uncorrelated Directional Gain for 2.4GHz (Ant. Position:2.4G Ant.1~2) Frequency (MHz) 2450 Directional Gain 6.77 Ant.1~2 @2.45GHz Note: Two 2.4GHz outputs drive a cross-polarized pair of linearl…

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Test Report

MRT Technology (Suzhou) Co., Ltd. Report No.: R25S1065098-U205 Phone: +86-512-66308358 Report Version: V01 Web: www.mrt-cert.com Issue Date: 2025-12-26 Template Version: 2.1 1 of 148 RF MEASUREMENT REPORT FCC ID: 2AI9TOAW-AP156X Applicant: ALE USA Inc. Product: OmniAccess Stellar Model No.: OAW-AP1561 Brand Name: Alcatel-Lucent Enterprise FCC Classification: 15E 6GHz Standard Power Access Point (6SD) FCC Rule Part(s): Part 15 Subpart E (Section 15.407) Result: Complies Received Date: 2025-11-20 Test Date: 2025-12-04 ~ 2025-12-05 Reviewed By: Vincent Yu Approved By: Robin Wu The test results relate only to the samples tested. This equipment has been shown to be capable of compliance with the applicable technical standards as indicated in the measurement report. Testing was performed in accordance with the applicable measurement procedures. The test results reported herein apply only to the specific item(s) tested. The test report shall not be reproduced except in full without the written approval of MRT Technology (Suzhou) Co., Ltd. Report No.: R25S1065098-U205 2 of 148 Revision History Report No. Version Description Issue Date Note R25S1065098-U205 V01 Initial Report 2025-12-26 Valid Report No.: R25S1065098-U205 3 of 148 CONTENTS Description Page 1. General Information ................................................................................................................................ 5 1.1. Applicant ...................................................................................................................................... 5 1.2. Manufacturer ............................................................................................................................... 5 1.3. Testing Facility ............................................................................................................................. 5 1.4. Product Information ..................................................................................................................... 6 1.5. Radio Specification under Test .................................................................................................... 7 1.6. Working Frequencies ................................................................................................................... 7 1.7. Antenna Details ........................................................................................................................... 8 1.8. WLAN Configuration .................................................................................................................... 9 1.9. AFCD General Capabilities Declaration ....................................................................................10 2. Test Configuration ................................................................................................................................. 11 2.1. Test system connection diagram ............................................................................................... 11 2.2. Applied Standards ..................................................................................................................... 11 2.3. Test Environment Condition ...................................................................................................... 11 3. Measuring Equipment ........................................................................................................................... 12 4. Decision Rules and Measurement Uncertainty .................................................................................. 13 4.1. Decision Rules ...........................................................................................................................13 4.2. Measurement Uncertainty .........................................................................................................13 5. Test Result .............................................................................................................................................. 14 5.1. Summary ...................................................................................................................................14 5.2. Successful Registration and Spectrum Access Request ..........................................................16 5.2.1. Test compliance requirement ....................................................................................................16 5.2.2. Test Procedure ..........................................................................................................................16 5.2.3. Test Result .................................................................................................................................18 5.3. Unsuccessful Spectrum Access Request ..................................................................................19 5.3.1. Test compliance requirement ....................................................................................................19 5.3.2. Test Procedure ..........................................................................................................................19 5.3.3. Test Result .................................................................................................................................20 5.4. Successful Spectrum Access Update ........................................................................................21 5.4.1. Test compliance requirement ....................................................................................................21 5.4.2. Test Procedure ..........................................................................................................................21 5.4.3. Test Result .................................................................................................................................24 5.5. Unsuccessful Spectrum Access Update ....................................................................................25 5.5.1. Test compliance req…

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Test Report

MRT Technology (Suzhou) Co., Ltd. Report No.: R25S1065098-U204 Phone: +86-512-66308358 Report Version: V01 Web: www.mrt-cert.com Issue Date: 2025-12-26 Template Version: 2.1 1 of 118 RF MEASUREMENT REPORT FCC ID: 2AI9TOAW-AP156X Applicant: ALE USA Inc. Product: OmniAccess Stellar Model No.: OAW-AP1561 Brand Name: Alcatel-Lucent Enterprise FCC Classification: 15E 6 GHz Standard Power Access Point (6SD) FCC Rule Part(s): Part 15 Subpart E (Section 15.407) Result: Complies Received Date: 2025-09-28 Test Date: 2025-10-14 ~ 2025-10-31 Reviewed By: Vincent Yu Approved By: Robin Wu The test results relate only to the samples tested. This equipment has been shown to be capable of compliance with the applicable technical standards as indicated in the measurement report. Testing was performed in accordance with the applicable measurement procedures. The test results reported herein apply only to the specific item(s) tested. The test report shall not be reproduced except in full without the written approval of MRT Technology (Suzhou) Co., Ltd. Report No.: R25S1065098-U204 2 of 118 Revision History Report No. Version Description Issue Date Note R25S1065098-U204 V01 Initial Report 2025-12-26 Valid Report No.: R25S1065098-U204 3 of 118 CONTENTS Description Page 1. General Information ................................................................................................................................ 6 1.1. Applicant ...................................................................................................................................... 6 1.2. Manufacturer ............................................................................................................................... 6 1.3. Testing Facility ............................................................................................................................. 6 1.4. Product Information ..................................................................................................................... 7 1.5. Radio Specification under Test .................................................................................................... 8 1.6. Working Frequencies ................................................................................................................... 8 1.7. Antenna Details ........................................................................................................................... 9 1.8. WLAN Configuration ..................................................................................................................10 2. Test Configuration ................................................................................................................................. 11 2.1. Test Mode .................................................................................................................................. 11 2.2. Test System Connection Diagram ............................................................................................. 11 2.3. Test Software .............................................................................................................................12 2.4. Applied Standards .....................................................................................................................12 2.5. Test Environment Condition ......................................................................................................12 3. Antenna Requirements ......................................................................................................................... 13 4. Measuring Instrument ........................................................................................................................... 14 5. Decision Rules and Measurement Uncertainty .................................................................................. 15 5.1. Decision Rules ...........................................................................................................................15 5.2. Measurement Uncertainty .........................................................................................................15 6. Test Result .............................................................................................................................................. 16 6.1. Summary ...................................................................................................................................16 6.2. Channel Bandwidth Measurement ............................................................................................17 6.2.1. Test Limit ...................................................................................................................................17 6.2.2. Test Procedure ..........................................................................................................................17 6.2.3. Test Setting ................................................................................................................................17 6.2.4. Test Setup ..................................................................................................................................18 6.2.5. Test Result .................................................................................................................................18 6.3. Equivalent Isotopically Radiated Power Measurement .............................................................19 6.3.1. Test Limit ...................................................................................................................................19 6.3.2. Test Procedure ..........................................................................................................................19 6.3.3. Test Setting ................................................................................................................................19 6.3.4. Test Setup ........................................................…

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Test Report

Report No.: R25S1065098-U204 51 of 118 802.11be-EHT80 Power Spectral Density- Ant 1 Channel 7 (5985 MHz) Channel 55 (6225 MHz) Channel 87 (6385 MHz) Channel 135 (6625 MHz) Channel 151 (6705 MHz) Channel 167 (6785 MHz) Report No.: R25S1065098-U204 52 of 118 802.11be-EHT160 Power Spectral Density- Ant 1 Channel 15 (6025 MHz) Channel 47 (6185 MHz) Channel 79 (6345 MHz) Channel 143 (6665 MHz) Report No.: R25S1065098-U204 53 of 118 802.11be-EHT320-1 Power Spectral Density- Ant 1 Channel 31 (6105 MHz) 802.11be-EHT320-2 Power Spectral Density- Ant 1 Channel 63 (6265 MHz) Report No.: R25S1065098-U204 54 of 118 A.5 In-Band Emission Measurement Test Site SIP-TR2 Test Engineer Nolan Chen Test Date 2025-10-20 ~ 2025-10-21 Model No. OAW-AP1561 802.11be-EHT20 In-Band Emission - Ant 0 Channel 1 (5955 MHz) Channel 49 (6195 MHz) Channel 93 (6415 MHz) Channel 117 (6535 MHz) Channel 149 (6695 MHz) Channel 181 (6855 MHz) Note: The limit is based on 99% bandwidth, the limit is more stringent than the limit based on 26 dB bandwidth. Report No.: R25S1065098-U204 55 of 118 802.11be-EHT40 In-Band Emission - Ant 0 Channel 3 (5965 MHz) Channel 51 (6205 MHz) Channel 91 (6405 MHz) Channel 123 (6565 MHz) Channel 147 (6685 MHz) Channel 179 (6845 MHz) Note: The limit is based on 99% bandwidth, the limit is more stringent than the limit based on 26 dB bandwidth. Report No.: R25S1065098-U204 56 of 118 802.11be-EHT80 In-Band Emission - Ant 0 Channel 7 (5985 MHz) Channel 55 (6225 MHz) Channel 87 (6385 MHz) Channel 135 (6625 MHz) Channel 151 (6705 MHz) Channel 167 (6785 MHz) Note: The limit is based on 99% bandwidth, the limit is more stringent than the limit based on 26 dB bandwidth. Report No.: R25S1065098-U204 57 of 118 802.11be-EHT160 In-Band Emission - Ant 0 Channel 15 (6025 MHz) Channel 47 (6185 MHz) Channel 79 …

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Contact Information

Applicant

MOHAMMAD ANWAR
[email protected]Fax: 818-878-4583

Technical Contact

ALE USA Inc.MOHAMMAD ANWAR
[email protected]Fax: 818-878-4583

2000 CORPORATE CENTER DRIVE · THOUSAND OAKS, 91320 · United States

Test Firm

MRT Technology (Suzhou) Co., Ltd.Mr. Marlin Chen
[email protected]

Technical Specifications

#Rule PartsFrequency RangePower Output
115E5.96 GHz - 6.42 GHz1.1429 W
215E6.54 GHz - 6.86 GHz1.0447 W
Confidentiality
Long Term
Grant Notes
Output power listed is EIRP. Device is a 802.11 ax/be device in a 2x2 Spatial Multiplexing MIMO configuration as described in this filing. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 27 cm from all persons and not be co-located with any other transmitters except in accordance with FCC multi-transmitter product procedures. End-users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance. This device has HE/EHT 20 MHz, HE/EHT 40 MHz , HE/EHT 80 MHz, HE/EHT 160 MHz and EHT 320 MHz bandwidth modes. This device contains 2.4 GHz WLAN and 5 GHz WLAN transmitters.

Other Applications from ALE USA Inc.

2AI9TOAW-AP1542

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Jul 26, 2026

Equipment Class

DTS - Digital Transmission System
2AI9TOAW-AP1541

OmniAccess Stellar

Jul 06, 2026

Equipment Class

NII - Unlicensed National Information Infrastructure TX