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2BH7FTBE230UBE3600 Dual Band Wi-Fi 7 Mini Wireless USB Adapter

TP-Link Systems Inc.
BE3600 Dual Band Wi-Fi 7 Mini Wireless USB Adapter - FCC ID 2BH7FTBE230U - TP-Link Systems Inc.
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Application Details

Equipment Class
NII - Unlicensed National Information Infrastructure TX
Date of Grant
Feb 04, 2026
Application Purpose
Original Equipment
Equipment Note
BE3600 Dual Band Wi-Fi 7 Mini Wireless USB Adapter
Frequency Range
5180.00000000 - 5240.00000000
Company
TP-Link Systems Inc.
Country
United States

Documents & Files

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Users Manual

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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

FCC compliance information statement Product Name: BE3600 Dual Band Wi-Fi 7 Mini Wireless USB Adapter Model Number: Archer TBE230U Responsible Party: TP-Link Systems Inc. Address: 10 Mauchly, Irvine, CA 92618 Website: http://www.tp-link.com/us/ Tel: +1 626 333 0234 Fax: +1 909 527 6804 E-mail: [email protected] This equipment has bee n tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If t his equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: Increase the separation between the equipment and receiver. Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. Consult the dealer or an experienced radio/ TV technician for help. This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: This device may not cause harmful interference. This device must accept any interference received, including interference that may cause undesired operation. Any changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. Note: The manufacturer is not responsible for any radio or TV interference caused by unauthorized modifications to this equipment. Such modifications could void the user’s authority to operate the equipment. FCC RF Radiation Exposure Statement This equipment complies with FCC radiation exposure limits set forth for an uncontrolled environment. End users must follow the specific operating instructions for satisfying RF exposure compliance. This transmitter must not be co-located or operating in conjunction with any other antenna or transmitter. SAR measurements are based on a 5mm spacing from the body and that compliance is achieved at that distance. FCC regulations restrict the operation of this device to indoor use only. We, TP-Link Systems Inc., has determined that the equipment shown as above has been shown to comply with the applicable technical standards, FCC part 15. There is no unauthorized change is made in the equipment and the equipment is properly maintained and operated. Issue Date: 2025-09-15 Ca nadian Compliance Statement This device contains licence-exempt transmitter(s)/receiver(s) that comply with Innovation, Science and Economic Development Canada’s licence-exempt RSS(s). Operation is subject to the following two conditions: (1) This device may not cause interference. (2) This device must accept any interference, including interference that may cause undesired operation of the device. L’émetteur/récepteur exempt de licence contenu dans le présent appareil est conforme aux CNR d’Innovation, Sciences et Développement économique Canada applicables aux appareils radio exempts de licence. L’exploitation est autorisée aux deux conditions suivantes : 1) L’appareil ne doit pas produire de brouillage; 2) L’appareil doit accepter tout brouillage radioélectrique subi, même si le brouillage est susceptible d’en compromettre le fonctionnement. Caution: 1) The device for operation in the band 5150–5250 MHz is only for indoor use to reduce the potential for harmful interference to co-channel mobile satellite systems; DFS (Dynamic Frequency Selection) products that operate in the bands 5250- 5350 MHz, 5470-5725MHz. Avertissement: 1) Le dispositif fonctionnant dans la bande 5150-5250 MHz est réservé uniquement pour une utilisation à l’intérieur afin de réduire les risques de brouillage préjudiciable aux systèmes de satellites mobiles utilisant les mêmes canaux; Les produits utilisant la technique d'atténuation DFS (sélection dynamique des fréquences) sur les bandes 5250- 5350 MHz, 5470-5725MHz. De vices shall not be used for control of or communications with unmanned aircraft systems. Les appareils ne doivent pas être utilisés pour le contrôle ou la communication avec des systèmes d'aéronefs sans pilote. Radiation Exposure Statement: This EUT is compliance with SAR for general population/uncontrolled exposure limits in RSS-102 and had been tested in accordance with the measurement methods and procedures specified in IEEE 1528 and IEC 62209. This equipment should be installed and operated with minimum distance 0.5 cm between the radiator and your body. This device and its antenna(s) must not be co-located or operating in conjunction with any other antenna or transmitter.   Déclaration d'exposition aux radiations : Cet adaptateur est conforme au SAR pour la population générale/limites d'exposition non contrôlées dans RSS-102 et a été testé conformément aux méthodes et procédures de mesure spécifiées dans IEEE 1528 et CEI 62209. Cet équipement doit être installé et ut ilisé avec une distance minimale de 5 mm entre le radiateur et votre corps. Cet appareil et ses antennes ne doivent pas être situés ou fonctionner en conjonction avec une autre antenne ou un autre émetteur. C E Mark Warning OPERATING FREQUENCY (the maximum transmitted power) 2400 MHz -2483.5 MHz (20dBm) 5150 MHz -5250 MHz (23dBm) 5250 MHz -5350 MHz (23dBm) 5470 MHz -5725 MHz (23dBm) EU Declaration of Conformity TP-Link hereby declares that the BE3600 Dual Band Wi-Fi 7 Mini Wireless USB Adapter is in compliance with the essential requirements and other relevant provisions of directives 2014/53/EU, 2011/65/EU and (EU)2015/863. The original EU Declaration of Conformity may be found at https://www.tp- …

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Users Manual

FCC compliance information statement Product Name: BE3600 Dual Band Wi-Fi 7 Mini Wireless USB Adapter Model Number: Archer TBE230U Responsible Party: TP-Link Systems Inc. Address: 10 Mauchly, Irvine, CA 92618 Website: http://www.tp-link.com/us/ Tel: +1 626 333 0234 Fax: +1 909 527 6804 E-mail: [email protected] This equipment has bee n tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If t his equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: Increase the separation between the equipment and receiver. Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. Consult the dealer or an experienced radio/ TV technician for help. This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: This device may not cause harmful interference. This device must accept any interference received, including interference that may cause undesired operation. Any changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. Note: The manufacturer is not responsible for any radio or TV interference caused by unauthorized modifications to this equipment. Such modifications could void the user’s authority to operate the equipment. FCC RF Radiation Exposure StatementThis equipment complies with FCC radiation exposure limits set forth for an uncontrolled environment. End users must follow the specific operating instructions for satisfying RF exposure compliance. This transmitter must not be co-located or operating in conjunction with any other antenna or transmitter. This equipment has been SAR-evaluated for use in hand. SAR measurements are based on a 5mm spacing from the body and that compliance is achieved at t hat distance. FCC regulations restrict the operation of this device to indoor use only. Operation of transmitters in the 5.925-7.125 GHz band is prohibited for control of or communications with unmanned aircraft systems. We, TP-Link Systems Inc., has determined that the equipment shown as above has been shown to comply with the applicable technical standards, FCC part 15. There is no unauthorized change is made in the equipment and the equipment is properly maintained and operated. Issue Date: 2025-09-15 Canadian Compliance Statement This device contains licence-exempt transmitter(s)/receiver(s) that comply with Innovation, Science and Economic Development Canada’s licence-exempt RSS(s). Operation is subject to the following two conditions: (1) This device may not cause interference. (2) This device must accept any interference, including interference that may cause undesired operation of the device. L’émetteur/récepteur exempt de licence contenu dans le présent appareil est conforme aux CNR d’Innovation, Sciences et Développement économique Canada applicables aux appareils radio exempts de licence. L’exploitation est autorisée aux deux conditions suivantes : 1) L ’appareil ne doit pas produire de brouillage; 2) L ’appareil doit accepter tout brouillage radioélectrique subi, même si le brouillage est susceptible d’en compromettre le fonctionnement. Caution: 1) The device for operation in the band 5150–5250 MHz is only for indoor use to reduce the potential for harmful interference to co-channel mobile satellite systems; DFS (Dynamic Frequency Selection) products that operate in the bands 5250- 5350 MHz, 5470-5725MHz. Avertissement: 1) Le dispositif fonctionnant dans la bande 5150-5250 MHz est réservé uniquement pour une utilisation à l’intérieur afin de réduire les risques de brouillage préjudiciable aux systèmes de satellites mobiles utilisant les mêmes canaux; Les produits utilisant la technique d'atténuation DFS (sélection dynamique des fréquences) sur les bandes 5250- 5350 MHz, 5470-5725MHz. D evices shall not be used for control of or communications with unmanned aircraft systems. Les appareils ne doivent pas être utilisés pour le contrôle ou la communication avec des systèmes d'aéronefs sans pilote. Radiation Exposure Statement: This EUT is compliance with SAR for general population/uncontrolled exposure limits in RSS-102 and had been tested in accordance with the measurement methods and procedures specified in IEEE 1528 and IEC 62209. This equipment should be installed and operated with minimum distance 0.5 cm between the radiator and your body. This device and its antenna(s) must not be co-located or operating in conjunction with any other antenna or transmitter.   Déclaration d'exposition aux radiations : Cet adaptateur est conforme au SAR pour la population générale/limites d'exposition non contrôlées dans RSS-102 et a été testé conformément aux méthodes et procédures de mesure spécifiées dans IEEE 1528 et CEI 62209. Cet équipement doit être installé et ut ilisé avec une distance minimale de 5 mm entre le radiateur et votre corps. Cet appareil et ses antennes ne doivent pas être situés ou fonctionner en conjonction avec une autre antenne ou un autre émetteur. C E Mark Warning OPERATING FREQUENCY (the maximum transmitted power) 2400 MHz -2483.5 MHz (20dBm) 5150 MHz -5250 MHz (23dBm) 5250 MHz -5350 MHz (23dBm) 5470 MHz -5725 MHz (23dBm) EU Declaration of Conformity TP-Link hereby declares that the BE3600 Dual Band Wi-Fi 7 Mini Wireless USB Adapter is in compliance wi…

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Test Report

Report No.: 2512TW0108-U2 Page Number: 111 of 541 802.11ax-HE80 Power Spectral Density - Ant 1 Channel 42 (5210MHz) Channel 58 (5290MHz) Channel 106 (5530MHz) Channel 122 (5610MHz) Channel 138 (5690MHz) Channel 155 (5775MHz) Report No.: 2512TW0108-U2 Page Number: 112 of 541 802.11ax-HE160 Power Spectral Density - Ant 1 Channel 50 (5250MHz) Channel 114 (5570MHz) Report No.: 2512TW0108-U2 Page Number: 113 of 541 802.11be-EHT20 Power Spectral Density - Ant 1 Channel 36 (5180MHz) Channel 40 (5200MHz) Channel 48 (5240MHz) Channel 52 (5260MHz) Channel 60 (5300MHz) Channel 64 (5320MHz) Report No.: 2512TW0108-U2 Page Number: 114 of 541 802.11be-EHT20 Power Spectral Density - Ant 1 Channel 100 (5500MHz) Channel 116 (5580MHz) Channel 140 (5700MHz) Channel 144 (5720MHz) Channel 149 (5745MHz) Channel 157 (5785MHz) Report No.: 2512TW0108-U2 Page Number: 115 of 541 802.11be-EHT20 Power Spectral Density - Ant 1 Channel 165 (5825MHz) Report No.: 2512TW0108-U2 Page Number: 116 of 541 802.11be-EHT40 Power Spectral Density - Ant 1 Channel 38 (5190MHz) Channel 46 (5230MHz) Channel 54 (5270MHz) Channel 62 (5310MHz) Channel 102 (5510MHz) Channel 110 (5550MHz) Report No.: 2512TW0108-U2 Page Number: 117 of 541 802.11be-EHT40 Power Spectral Density - Ant 1 Channel 134 (5670MHz) Channel 142 (5710MHz) Channel 151 (5755MHz) Channel 159 (5795MHz) Report No.: 2512TW0108-U2 Page Number: 118 of 541 802.11be-EHT80 Power Spectral Density - Ant 1 Channel 42 (5210MHz) Channel 58 (5290MHz) Channel 106 (5530MHz) Channel 122 (5610MHz) Channel 138 (5690MHz) Channel 155 (5775MHz) Report No.: 2512TW0108-U2 Page Number: 119 of 541 802.11be-EHT160 Power Spectral Density - Ant 1 Channel 50 (5250MHz) Channel 114 (5570MHz) Report No.: 2512TW0108-U2 Page Number: 120 of 541 7.7. Frequency Stability Measurement 7.7.1.Test Limit Manufactures of U-NII devices are responsible for ensuring frequency stability such that an emission is maintained within the band of operation under all conditions of normal operation as specified in the user’s manual. 7.7.2.Test Limit Frequency Stability Under Temperature Variations: The equipment under test was connected to an external AC or DC power supply and input rated voltage. RF output was connected to a frequency counter or spectrum analyzer via feed through attenuators. The EUT was placed inside the temperature chamber. Set the spectrum analyzer RBW low enough to obtain the desired frequency resolution and measure EUT 20°C operating frequency as reference frequency. Turn EUT off and set the chamber temperature to highest. After the temperature stabilized for approximately 30 minutes recorded the frequency. Repeat step measure with 10°C decreased per stage until the lowest temperature reached. Frequency Stability Under Voltage Variations: Set chamber temperature to 20°C. Use a variable AC power supply / DC power source to power the EUT and set the voltage to rated voltage. Set the spectrum analyzer RBW low enough to obtain the desired frequency resolution and recorded the frequency. Reduce the input voltage to specify extreme voltage variation (±15%) and endpoint, recordthe maximum frequency change. Report No.: 2512TW0108-U2 Page Number: 121 of 541 7.7.3.Test Setup 7.7.4.Test Result Grantee ensure that the product meets e-CFR Title 47 section 15.407(g) and KDB 789033 D02v02r01 frequency stability such that the emissions are maintained within the band of operation under all conditions of normal operation as specified in the user's manual. Report No.: 2512TW0108-U2 Page Number: 122 of 541 7.8. Radiated Spurious Emission Measurement 7.8.1.Test Limit All out of band emissions appearing in a restricted band as specified in Section 15.205 of the Title 47CFR must not exceed the limits shown in Table per Section 15.209. FCC Part 15 Subpart C Paragraph 15.209 Frequency [MHz] Field Strength [uV/m] Measured Distance [Meters] 0.009 - 0.490 2400/F (kHz) 300 0.490 - 1.705 24000/F (kHz) 30 1.705 - 30 30 30 30 - 88 100 3 88 - 216 150 3 216 - 960 200 3 Above 960 500 3 7.8.2.Test Procedure Used KDB 789033 D02v02r01- Section G 7.8.3.Test Setting Table 1 - RBW as a function of frequency Frequency RBW 9 ~ 150 kHz 200 ~ 300 Hz 0.15 ~ 30 MHz 9 ~ 10 kHz 30 ~ 1000 MHz 100 ~ 120 kHz >1000 MHz 1 MHz Report No.: 2512TW0108-U2 Page Number: 123 of 541 Quasi-Peak Measurements below 1GHz 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. Span was set greater than 1MHz 3. RBW = as specified in Table 1 4. Detector = CISPR quasi-peak 5. Sweep time = auto couple 6. Trace was allowed to stabilize Peak Measurements above 1GHz 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 1MHz 3. VBW = 3MHz 4. Detector = peak 5. Sweep time = auto couple 6. Trace mode = max hold 7. Trace was allowed to stabilize Average Measurements above 1GHz (Method VB) 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 1MHz 3. VBW;If the EUT is configured to transmit with duty cycle ≥ 98%, set VBW = 10 Hz. If the EUT duty cycle is < 98%, set VBW ≥ 1/T. T is the minimum transmission duration. 4. Detector = Peak 5. Sweep time = auto 6. Trace mode = max hold 7. Trace was allowed to stabilize Report No.: 2512TW0108-U2 Page Number: 124 of 541 7.8.4.Test Setup Below 1GHz Test Setup: Above 1GHz Test Setup: Report No.: 2512TW0108-U2 Page Number: 125 of 541 7.8.5.Test Result EUT BE3600 Dual Band Wi-Fi 7 Mini Wireless USB Adapter Date of Test 2025-08-29 Factor VULB 9162 Temp. / Humidity 24C /53% Polarity Horizontal Site / Test Engineer AC1 / Tim Test Mode 802.11ac-20MHz_TX_Band1_CH 40_ANT 0+1 Test Voltage By Notebook PC No Frequency (MHz) Reading (dBuV) C.F (dB/m) Measurement (dBuV/m) Margin (dB) Limit (dBuV/m) Height (cm) Angle (deg) Remark (QP/PK/AV) 1 54.724 0.80 20.61 21.41 -18.59 40.00 150 150 QP 2 112.726 0.21 18.34 18.55 -24.95 43.50 150 65 QP 3 198.493 8.29 18.49 26.79 -16.71 43.50 100 330 QP 4 263.245 8…

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Test Setup Photos

Report No.: R25S1107126-UT 1 of 3 SAR Test Setup Photograph Description: Horizontal-UP Position with 5 mm gap Description: Horizontal-UP_Type C Position with 5 mm gap Report No.: R25S1107126-UT 2 of 3 Description: Horizontal-Down Position with 5 mm gap Description: Horizontal-Down_Type C Position with 5 mm gap Report No.: R25S1107126-UT 3 of 3 Description: Vertical-Front Position with 5 mm gap Description: Vertical-Back Position with 5 mm gap

Test Setup Photos

Report No.: 2512TW0108-UT 1 of 4 RF Test Photograph Description: Front View of Conducted Emission Test Setup Description: Back View of Conducted Emission Test Setup Report No.: 2512TW0108-UT 2 of 4 Description: Radiated Emission Test Setup for below 1GHz Description: Radiated Emission Test Setup for above 1GHz Report No.: 2512TW0108-UT 3 of 4 Description: Radiated Emission Test Setup for 18GHz~40GHz Description: Radiated Emission Test Setup for 9kHz~30MHz Report No.: 2512TW0108-UT 4 of 4 Description: Conducted Measurement Test Setup Description: DFS Test Setup

Test Report

Product Model: Archer TBE230U Manufacturer: TP-Link Systems Inc. Test Date: 2025.6.30 Tested By: Xuan Shan TP-Link Systems Inc. 10 Mauchly, Irvine, CA 92618 Index 1. Antenna Distribution ........................................................................................ 3 2. Electrical Characteristics ................................................................................ 3 3. Gain and Radiation Pattern ............................................................................. 4 3.1 Measurement Procedure ......................................................................................... 4 3.2 Test Setup ............................................................................................................... 5 3.3 S Parameter Test Data ............................................................................................ 6 3.4 Antenna Peak Gain ................................................................................................. 7 3.5 Antenna Radiation Pattern ....................................................................................... 8 Page 3 1. Antenna Distribution Archer TBE400U 2. Electrical Characteristics Ant1 Frequency 2400~2500 &5150~5895MHz Impedance 50Ohm Antenna Type PIFA & Monopole Antenna Gain 0.02dBi@2400~2500MHz 2.28dBi@5150~5250MHz 2.59dBi@5250~5350MHz 2.97dBi@5470~5725MHz 3.08dBi@5725~5895MHz Radiation pattern Omni-Directional P/N Ant2 Frequency 2400~2500 &5150~5895MHz Impedance 50Ohm Antenna Type PIFA & Monopole Antenna Gain -0.05dBi@2400~2500MHz 2.15dBi@5150~5250MHz 2.57dBi@5250~5350MHz 2.11dBi@5470~5725MHz 2.63dBi@5725~5895MHz 1.91dBi@6875~7125MHz Radiation pattern Omni-Directional P/N Page 4 3. Gain and Radiation Pattern 3.1 Measurement Procedure This measurement experiment adopted an antenna near-field measurement system, and the diagram of the measurement system was shown in Figure 3-1. The excitation signal was generated by the Keysight E5071C (300kHz-20GHz). Under the control of the central computer, the probe rotated in the θ direction, and the EUT rotated in the φ direction with the turntable. The probe sampling frame received and collected signals in the near-field range of the EUT. The software system which was controlled by the central computer completed the processing, output and display of the test data. Figure 3-1 The test site was a full anechoic chamber with a size of 3.0m×3.1m×2.97m, which was built by GTS Rayzone2800. All six surfaces of the anechoic chamber were pasted with absorbing materials. And the chamber was calibrated by the authoritative third-party lab every year. The antenna anechoic chamber measurement system adopted a 13-probe multi-probe system. The probe antennas were evenly distributed on the spherical surface surrounding the EUT, and theirs operating frequency was 600MHz~8.5GHz. During the measurement, the probe antennas were rotated in the θ direction under the control of the probe holder to sample the near-field data at the θ angle. At the same time, the EUT rotated with the turntable in the φ direction to sample the near field data at the φ angle. The sampling accuracy was 15°. The system diagram was shown in Figure 3-2. From the sampling results, the EUT's near-field test data of θ component, φ component and total component could be obtained. Page 5 Figure 3-2 Before the measurement, calibrated the vector network analyzer, and then connected the input end of each antenna to the output end of the vector network analyzer, and evenly the antennas to be measured. Test Equipment listed below: Equipments Model Manufacturer S/N Cali. Interval Cali. Due Date Chamber Rayzone2800 GTS(General Test System) MY5347043 5 12months 2024/01/15 Vector Network Analyzer E5071C Keysight MY46315238 24months 2024/03/13 GTS MaxSign100 Software V2.1 GTS(General Test System) / / / 3.2 Test Setup The test setup was shown in Figure 3-3, 3-4: Figure 3-3 Page 6 Figure 3-4 3.3 S Parameter Test Data Ant1 Ant2 Page 7 3.4 Antenna Peak Gain Frequency 2.45GHz 2400~2500MHz 5.2GHz 5150~5250MHz 5.3GHz 5250~5350MHz 5.6GHz 5470~5725MHz Ant1 MaxGain(dBi) 0.02 2.28 2.59 2.97 Ant2 MaxGain(dBi) -0.05 2.15 2.57 2.11 Ant1 Polarization/Φ (°)/θ(°) Linear/210/120 Linear/60/165 Linear/60/165 Linear/45/165 Ant2 Polarization/Φ (°)/θ(°) Linear/105/30 Linear/75/165 Linear/60/165 Linear/60/165 Max Gain(dBi) 0.02 2.28 2.59 2.97 Frequency 5.8GHz 5725~5895MHz 6.175GHz 5925~6425MHz 6.475GHz 6425~6525MHz 6.725GHz 6525~6875MHz Ant1 MaxGain(dBi) 3.08 5.51 5.51 5.92 Ant2 MaxGain(dBi) 2.63 3.78 3.59 4.00 Ant1 Polarization/Φ (°)/θ(°) Linear/15/165 Linear/0/165 Linear/0/165 Linear/0/165 Ant2 Polarization/Φ (°)/θ(°) Linear/75/135 Linear/0/165 Linear/0/165 Linear/0/165 Max Gain(dBi) 3.08 5.51 5.51 5.92 Frequency 7.025GHz 6875~7125MHz Ant1 MaxGain(dBi) 3.38 Ant2 MaxGain(dBi) 1.91 Ant1 Polarization/Φ (°)/θ(°) Linear/300/135 Ant2 Polarization/Φ (°)/θ(°) Linear/105/105 Max Gain(dBi) 3.38 Page 8 3.5 Antenna Radiation Pattern Ant1 Ant2 Page 9

Test Report

Report No.: 2512TW0108-U2 Page Number: 93 of 541 802.11be-EHT40 Power Spectral Density - Ant 0 Channel 134 (5670MHz) Channel 142 (5710MHz) Channel 151 (5755MHz) Channel 159 (5795MHz) Report No.: 2512TW0108-U2 Page Number: 94 of 541 802.11be-EHT80 Power Spectral Density - Ant 0 Channel 42 (5210MHz) Channel 58 (5290MHz) Channel 106 (5530MHz) Channel 122 (5610MHz) Channel 138 (5690MHz) Channel 155 (5775MHz) Report No.: 2512TW0108-U2 Page Number: 95 of 541 802.11be-EHT160 Power Spectral Density - Ant 0 Channel 50 (5250MHz) Channel 114 (5570MHz) Report No.: 2512TW0108-U2 Page Number: 96 of 541 802.11a Power Spectral Density - Ant 1 Channel 36 (5180MHz) Channel 40 (5200MHz) Channel 48 (5240MHz) Channel 52 (5260MHz) Channel 60 (5300MHz) Channel 64 (5320MHz) Report No.: 2512TW0108-U2 Page Number: 97 of 541 802.11a Power Spectral Density - Ant 1 Channel 100 (5500MHz) Channel 116 (5580MHz) Channel 140 (5700MHz) Channel 144 (5720MHz) Channel 149 (5745MHz) Channel 157 (5785MHz) Report No.: 2512TW0108-U2 Page Number: 98 of 541 802.11a Power Spectral Density - Ant 1 Channel 165 (5825MHz) Report No.: 2512TW0108-U2 Page Number: 99 of 541 802.11ac-VHT20 Power Spectral Density - Ant 1 Channel 36 (5180MHz) Channel 40 (5200MHz) Channel 48 (5240MHz) Channel 52 (5260MHz) Channel 60 (5300MHz) Channel 64 (5320MHz) Report No.: 2512TW0108-U2 Page Number: 100 of 541 802.11ac-VHT20 Power Spectral Density - Ant 1 Channel 100 (5500MHz) Channel 116 (5580MHz) Channel 140 (5700MHz) Channel 144 (5720MHz) Channel 149 (5745MHz) Channel 157 (5785MHz) Report No.: 2512TW0108-U2 Page Number: 101 of 541 802.11ac-VHT20 Power Spectral Density - Ant 1 Channel 165 (5825MHz) Report No.: 2512TW0108-U2 Page Number: 102 of 541 802.11ac-VHT40 Power Spectral Density - Ant 1 Channel 38 (5190MHz) Channel 46 (5230MHz) Channel 54 (5270MHz) Channel 62 (5310MHz) Channel 102 (5510MHz) Channel 110 (5550MHz) Report No.: 2512TW0108-U2 Page Number: 103 of 541 802.11ac-VHT40 Power Spectral Density - Ant 1 Channel 134 (5670MHz) Channel 142 (5710MHz) Channel 151 (5755MHz) Channel 159 (5795MHz) Report No.: 2512TW0108-U2 Page Number: 104 of 541 802.11ac-VHT80 Power Spectral Density - Ant 1 Channel 42 (5210MHz) Channel 58 (5290MHz) Channel 106 (5530MHz) Channel 122 (5610MHz) Channel 138 (5690MHz) Channel 155 (5775MHz) Report No.: 2512TW0108-U2 Page Number: 105 of 541 802.11ac-VHT160 Power Spectral Density - Ant 1 Channel 50 (5250MHz) Channel 114 (5570MHz) Report No.: 2512TW0108-U2 Page Number: 106 of 541 802.11ax-HE20 Power Spectral Density - Ant 1 Channel 36 (5180MHz) Channel 40 (5200MHz) Channel 48 (5240MHz) Channel 52 (5260MHz) Channel 60 (5300MHz) Channel 64 (5320MHz) Report No.: 2512TW0108-U2 Page Number: 107 of 541 802.11ax-HE20 Power Spectral Density - Ant 1 Channel 100 (5500MHz) Channel 116 (5580MHz) Channel 140 (5700MHz) Channel 144 (5720MHz) Channel 149 (5745MHz) Channel 157 (5785MHz) Report No.: 2512TW0108-U2 Page Number: 108 of 541 802.11ax-HE20 Power Spectral Density - Ant 1 Channel 165 (5825MHz) Report No.: 2512TW0108-U2 Page Number: 109 of 541 802.11ax-HE40 Power Spectral Density - Ant 1 Channel 38 (5190MHz) Channel 46 (5230MHz) Channel 54 (5270MHz) Channel 62 (5310MHz) Channel 102 (5510MHz) Channel 110 (5550MHz) Report No.: 2512TW0108-U2 Page Number: 110 of 541 802.11ax-HE40 Power Spectral Density - Ant 1 Channel 134 (5670MHz) Channel 142 (5710MHz) Channel 151 (5755MHz) Channel 159 (5795MHz)

Test Report

Report No.: 2512TW0108-U2 Page Number: 75 of 541 802.11ac-VHT20 Power Spectral Density - Ant 0 Channel 36 (5180MHz) Channel 40 (5200MHz) Channel 48 (5240MHz) Channel 52 (5260MHz) Channel 60 (5300MHz) Channel 64 (5320MHz) Report No.: 2512TW0108-U2 Page Number: 76 of 541 802.11ac-VHT20 Power Spectral Density - Ant 0 Channel 100 (5500MHz) Channel 116 (5580MHz) Channel 140 (5700MHz) Channel 144 (5720MHz) Channel 149 (5745MHz) Channel 157 (5785MHz) Report No.: 2512TW0108-U2 Page Number: 77 of 541 802.11ac-VHT20 Power Spectral Density - Ant 0 Channel 165 (5825MHz) Report No.: 2512TW0108-U2 Page Number: 78 of 541 802.11ac-VHT40 Power Spectral Density - Ant 0 Channel 38 (5190MHz) Channel 46 (5230MHz) Channel 54 (5270MHz) Channel 62 (5310MHz) Channel 102 (5510MHz) Channel 110 (5550MHz) Report No.: 2512TW0108-U2 Page Number: 79 of 541 802.11ac-VHT40 Power Spectral Density - Ant 0 Channel 134 (5670MHz) Channel 142 (5710MHz) Channel 151 (5755MHz) Channel 159 (5795MHz) Report No.: 2512TW0108-U2 Page Number: 80 of 541 02.11ac-VHT80 Power Spectral Density - Ant 0 Channel 42 (5210MHz) Channel 58 (5290MHz) Channel 106 (5530MHz) Channel 122 (5610MHz) Channel 138 (5690MHz) Channel 155 (5775MHz) Report No.: 2512TW0108-U2 Page Number: 81 of 541 802.11ac-VHT160 Power Spectral Density - Ant 0 Channel 50 (5250MHz) Channel 114 (5570MHz) Report No.: 2512TW0108-U2 Page Number: 82 of 541 802.11ax-HE20 Power Spectral Density - Ant 0 Channel 36 (5180MHz) Channel 40 (5200MHz) Channel 48 (5240MHz) Channel 52 (5260MHz) Channel 60 (5300MHz) Channel 64 (5320MHz) Report No.: 2512TW0108-U2 Page Number: 83 of 541 802.11ax-HE20 Power Spectral Density - Ant 0 Channel 100 (5500MHz) Channel 116 (5580MHz) Channel 140 (5700MHz) Channel 144 (5720MHz) Channel 149 (5745MHz) Channel 157 (5785MHz) Report No.: 2512TW0108-U2 Page Number: 84 of 541 802.11ax-HE20 Power Spectral Density - Ant 0 Channel 165 (5825MHz) Report No.: 2512TW0108-U2 Page Number: 85 of 541 802.11ax-HE40 Power Spectral Density - Ant 0 Channel 38 (5190MHz) Channel 46 (5230MHz) Channel 54 (5270MHz) Channel 62 (5310MHz) Channel 102 (5510MHz) Channel 110 (5550MHz) Report No.: 2512TW0108-U2 Page Number: 86 of 541 802.11ax-HE40 Power Spectral Density - Ant 0 Channel 134 (5670MHz) Channel 142 (5710MHz) Channel 151 (5755MHz) Channel 159 (5795MHz) Report No.: 2512TW0108-U2 Page Number: 87 of 541 802.11ax-HE80 Power Spectral Density - Ant 0 Channel 42 (5210MHz) Channel 58 (5290MHz) Channel 106 (5530MHz) Channel 122 (5610MHz) Channel 138 (5690MHz) Channel 155 (5775MHz) Report No.: 2512TW0108-U2 Page Number: 88 of 541 802.11ax-HE160 Power Spectral Density -…

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Contact Information

Applicant

Sarah Wang
[email protected]Fax: 6263330234

Technical Contact

TP-Link Systems Inc.Sarah Wang
[email protected]

10 Mauchly, Irvine, CA 92618 · Irvine, 92618 · United States

Test Firm

MRT Technology (Taiwan) Co.,LtdChenz Ker
[email protected]Fax: +886-3-328-8918

Technical Specifications

#Rule PartsFrequency RangePower Output
115E5.18 GHz - 5.24 GHz44.50 mW
215E5.26 GHz - 5.32 GHz44.50 mW
315E5.50 GHz - 5.72 GHz44.20 mW
415E5.75 GHz - 5.83 GHz38.90 mW
515E5.25 GHz - 5.25 GHz42.00 mW
Confidentiality
Long Term
Grant Notes
Power output listed is conducted. The SAR data in this filing is applicable to demonstrate compliance for the USB Dongle only as shown in this filing. Device is operating in a 2x2 Spatial Multiplexing MIMO configuration. End users must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance. The antenna used for this transmitter must not be co-located or operating in conjunction with any other antenna or transmitter. The highest reported SAR values are: Body: 1.14 W/kg; This device has 20 MHz, 40MHz, 80 MHz and 160 MHz bandwidth modes in 5G WLAN transmitter and it also contains 2.4GHz WLAN transmitters.