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2AU4T-T9NA4G Mobile WiFi

Shanghai TUGE Data Technologies Co., Ltd.
4G Mobile WiFi - FCC ID 2AU4T-T9NA - Shanghai TUGE Data Technologies Co., Ltd.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Dec 09, 2025
Application Purpose
Original Equipment
Equipment Note
4G Mobile WiFi
Frequency Range
2412.00000000 - 2462.00000000
Company
Shanghai TUGE Data Technologies Co., Ltd.
Country
China

Documents & Files

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Users Manual

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Attestation Statements

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

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

Users Manual

4G Mobile WiFi T9NA User Guide Type-C USB Port Power Button Reset Button Battery Power Button Long press for 3 seconds to turn on or off the device. Type-C USB Port Charge your device by connecting the charging plug via the Tye-C USB cable. Reset Button Press and hold for 3 seconds to reset. Screen The followinginformation are displayed on screen: 3G/4G network signalstrength, usage of data plan, WiFi SSD and password etc. When not operating the device, the screen will go off automatically after15 seconds, short press the power button to light up . Dimensions 60mm×98mm×20mm Battery Capacity 3000mAh Normal Working Hours About 9 h Power input USB Type-C DC 5V/1.5A Network and Bands T9JP FDD-LTE:B1/B3/B5/B8/B18/B19/B26 TDD-LTE:B38/B40/B41(120M) WCDMA/HSPA:B1/B8 T9EA FDD-LTE:B1/B3/B5/B7/B8/B20/B28 TDD-LTE:B34/B38/B39/B40/B41(120M) WCDMA/HSPA:B1/B8 T9NA FDD-LTE:B2/B4/B5/B7/B12/B13/B17/B25/B26/B66 TDD-LTE: B40/B41(120M) WCDMA/HSPA:NA Peak Rate Cat.4, DL 150Mpbs, UL 50Mbps WiFi 2.4G 802.11 b/g/n/ax WiFi Users Max 16 concurrent connected users Notes: ① The charging environment temperature is between 0°C-45°C. After one year of normal use of charging and discharging, the battery capacity will be reduced by about 20%. ② 2 months.Please do not over discharge or over charge the battery. When the device is not used for a long time, suggest you charge the ③ Device heating are normal when working, it can be used normally. The device can be placed in a cool and ventilated place to do corresp-ond ing cooling treatment. Step 1: Power on 1.1 Press and hold the power button to start the device. 1.2 (Optional) You can scan the QR code on the device screen with your phone to enter the store. Step 2: Purchase data package(optional) 2.1 Scan the QR code from again in online shop to perform binding 2.2 Please restart your device after purchasing a data plan for the new plan to take effect. Step 3: Connect to WiFi hotspot 3.1 Shortly press the power button to switch to display the "SSID, PWD"information page of WiFi. Set the SSID and password information for WiFi connection in the settings of your phone or computer, and connect to the WiFi. 3.2 If the phone supports scanning QR codes to connect to WiFi, you can hort press the power button to switch, and the screen will display a "Set WiFi" QR code. Use the phone's camera to scan the QR code to establish a WiFi connection. Step 4: Check usage of data package When checking the data usage during use, please briefly press the power button to switch and view the data usage information on the display Step 5: Modify WiFi SSID , Password (optional) If you need to modify the SSD, Password of WiFi , your mobie phone or computer need to access the devices' WiFi hotspot, then login 192.168.100.1 with web browser . The default login user name: admin , default login password: admin . 1.WiFi device can' t be powered on / off ① Please check that a properly working charging cable and charging plug are used and charge for a period of time before trying to boot the device. ② Please confirm whether the power button is loose or obvious damaged, if there are abnormalities, please return for testing and repairing. ③ After confirming the aboveis to use undamaged charging cable and charging plug, the device can’t be charged, the device may be in water or hardware abnormalities, please Please return for testing and repairing. 2.The WiFi terminal cannot access internet Turn the device off and on again, when the 4G ↑↓appears on theupper left corner of the screen, then reconnect to the WiFi to usethe network. Check the network signal strength indicator in the upper left cornerof the device screen, and when it indicates a weak network signal,please 3.WiFi network detected but unable to connect to the network Please check if the WiFi SSID, Password are set correctly. 4.Device's WiFi cannot be detected ① Please turn off your phone's smart WiFi connection, or suggest you try searching with another phone. ② If WiFi signal still cannot be detected, please contact customers ervice. 5.Network is connected but cannot access the internet Please contact with customer service 1. Do not disassemble the equipment and accessories without authorization. 2. Do not subject the device and its accessories to strong shocks or vibrations that could damage or cause combustion or explosion. 3. Do not use strong chemicals, cleaning agents and strong detergents to clean equipment and accessories. 4. To clean the device, please turn off and disconnect the device from the charging cable first. 5. When charging is complete or when not charging, disconnect from the device and unplug the charger from the power outlet. 6. Do not place the device around heating equipment such as microwave ovens, ovens, etc. 7. If the battery becomes unusually hot during use, charging or storage, stop using it. 8. Do not continue to use the charger if the power cord is damaged. 9. Do not throw the device into fire. 10. Do not replace the device parts by yourself. 11. Please comply with local laws regarding the disposal of electronic device, batteries and accessories, and support recycling i ni ti ati ve s. 12. Please do not dispose of this equipment, batteries and accessories Disclaimer: Please be aware that if you do not use the device in accordance with th User Guide, we assume no responsibility. 1 2 3 4 5 Safety Precautions Quick Troubleshooting Note: If you have purchased a data package at the same time as the device, you can only perform step 1.1 to turn on the device and perform step 3 to connect WiFi, you can access the internet then. Steps for Using the Device Please do not charge the device with the charger plugged in continuously,and unplug the charger when charging is completed or when the device has not been used for a long time, so as to avoid damage to the battery caused by prolonged and continuous. Product Specification Screen Product Appearance and Interface Description NOTE: This equipment has been tested and found to comply…

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RF Exposure Info

CALIBRATION DATA PROBE CALIBRATION DATA DIPOLE CALIBRATION DATA

Test Setup Photos

Report No.: AGC12060251002AP02 Page 1 of 2 TEST SETUP PHOTOS RADIATED EMISSION TEST SETUP BELOW 1GHz RADIATED EMISSION TEST SETUP ABOVE 1GHz Report No.: AGC12060251002AP02 Page 2 of 2 AC POWER LINE CONDUCTED TEST SETUP RF CONDUCTED TEST SETUP ****************************************End of Report*************************************

Test Report

Report No.: AGC12060251002FR01 Page 66 of 93 Test_Graph_802.11n40_ANT1_2452_MCS0_Lower Band Emissions Test_Graph_802.11n40_ANT1_2452_MCS0_Higher Band Emissions Report No.: AGC12060251002FR01 Page 67 of 93 Test_Graph_802.11ax20_ANT1_2412_MCS0_Lower Band Emissions Test_Graph_802.11ax20_ANT1_2412_MCS0_Higher Band Emissions Report No.: AGC12060251002FR01 Page 68 of 93 Test_Graph_802.11ax20_ANT1_2437_MCS0_Lower Band Emissions Test_Graph_802.11ax20_ANT1_2437_MCS0_Higher Band Emissions Report No.: AGC12060251002FR01 Page 69 of 93 Test_Graph_802.11ax20_ANT1_2462_MCS0_Lower Band Emissions Test_Graph_802.11ax20_ANT1_2462_MCS0_Higher Band Emissions Report No.: AGC12060251002FR01 Page 70 of 93 Test_Graph_802.11ax40_ANT1_2422_MCS0_Lower Band Emissions Test_Graph_802.11ax40_ANT1_2422_MCS0_Higher Band Emissions Report No.: AGC12060251002FR01 Page 71 of 93 Test_Graph_802.11ax40_ANT1_2437_MCS0_Lower Band Emissions Test_Graph_802.11ax40_ANT1_2437_MCS0_Higher Band Emissions Report No.: AGC12060251002FR01 Page 72 of 93 Test_Graph_802.11ax40_ANT1_2452_MCS0_Lower Band Emissions Test_Graph_802.11ax40_ANT1_2452_MCS0_Higher Band Emissions Report No.: AGC12060251002FR01 Page 73 of 93 Test Graphs of Band Edge Emissions in Non-Restricted Frequency Bands Test_Graph_802.11b_ANT1_2412_1Mbps_Lower Band Edge Emissions Test_Graph_802.11g_ANT1_2412_6Mbps_Lower Band Edge Emissions Report No.: AGC12060251002FR01 Page 74 of 93 Test_Graph_802.11n20_ANT1_2412_MCS0_Lower Band Edge Emissions Test_Graph_802.11n40_ANT1_2422_MCS0_Lower Band Edge Emissions Report No.: AGC12060251002FR01 Page 75 of 93 Test_Graph_802.11ax20_ANT1_2412_MCS0_Lower Band Edge Emissions Test_Graph_802.11ax40_ANT1_2422_MCS0_Lower Band Edge Emissions Report No.: AGC12060251002FR01 Page 76 of 93 11. Radiated Spurious Emission 11.1 Measurement Limits  15.209(a) Limit in the below table has to be followed Frequencies (MHz) Field Strength (microvolts/meter) Measurement Distance (meters) 0.009~0.490 2400/F(kHz) 300 0.490~1.705 24000/F(kHz) 30 1.705~30.0 30 30 30~88 100 3 88~216 150 3 216~960 200 3 Above 960 500 3 Note: All modes were tested for restricted band radiated emission, the test records reported below are the worst result compared to other modes. 11.2 Measurement Procedure 1. The EUT was placed on the top of the turntable 0.8 or 1.5 meter above ground. The phase center of the receiving antenna mounted on the top of a height-variable antenna tower was placed 3 meters far away from the turntable. 2. Power on the EUT and all the supporting units. The turntable was rotated by 360 degrees to determine the position of the highest radiation. 3. The height of the broadband receiving antenna was varied between one meter and four meters above ground to find the maximum emissions field strength of both horizontal and vertical polarization. 4. For each suspected emission, the antenna tower was scan (from 1 M to 4 M) and then the turntable was rotated (from 0 degree to 360 degrees) to find the maximum reading. 5. Set the test-receiver system to Peak or CISPR quasi-peak Detect Function with specified bandwidth under Maximum Hold Mode. 6. For emissions above 1GHz, use 1MHz RBW and 3MHz VBW for peak reading. Place the measurement antenna away from each area of the EUT determined to be a source of emissions at the specified measurement distance, while keeping the measurement antenna aimed at the source of emissions at each frequency of significant emissions, with polarization oriented for maximum response. The measurement antenna may have to be higher or lower than the EUT, depending on the radiation pattern of the emission and staying aimed at the emission source for receiving the maximum signal. The final measurement antenna elevation shall be that which maximizes the emissions. The measurement antenna elevation for maximum emissions shall be restricted to a range of heights of from 1 m to 4 m above the ground or reference ground plane. 7. When the radiated emissions limits are expressed in terms of the average value of the emissions, and pulsed operation is employed, the measurement field strength shall be determined by averaging over one complete pulse train, including blanking intervals, as long as the pulse train does not exceed 0.1 seconds. As an alternative (provided the transmitter operates for longer than 0.1 seconds) or in cases where the Report No.: AGC12060251002FR01 Page 77 of 93 pulse train exceeds 0.1 seconds, the measured field strength shall be determined from the average absolute voltage during a 0.1 second interval during which the field strength is at its maximum values. 8. If the emissions level of the EUT in peak mode was 3 dB lower than the average limit specified, then testing will be stopped and peak values of EUT will be reported, otherwise, the emissions which do not have 3 dB margin will be repeated one by one using the quasi-peak method for below 1GHz. 9. For testing above 1GHz, the emissions level of the EUT in peak mode was lower than average limit (that means the emissions level in peak mode also complies with the limit in average mode), then testing will be stopped and peak values of EUT will be reported, otherwise, the emissions will be measured in average mode again and reported. 10. In case the emission is lower than 30MHz, loop antenna has to be used for measurement and the recorded data should be QP measured by receiver. High - Low scan is not required in this case.  The following table is the setting of spectrum analyzer and receiver. Spectrum Parameter Setting Start ~Stop Frequency 9kHz~150KHz/RB 200Hz for QP Start ~Stop Frequency 150kHz~30MHz/RB 9kHz for QP Start ~Stop Frequency 30MHz~1000MHz/RB 120kHz for QP Start ~Stop Frequency 1GHz~26.5GHz 1MHz/3MHz for Peak, 1MHz/3MHz for Average Receiver Parameter Setting Start ~Stop Frequency 9kHz~150KHz/RB 200Hz for QP Start ~Stop Frequency 150kHz~30MHz/RB 9kHz for QP Start ~Stop Frequency 30MHz~1000MHz/RB 120kHz for QP Report No.: AGC12060251002FR01 Page 78 of 93  Quasi-Peak Measuremen…

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Test Report

Page 1 of 93 FCC Test Report Report No.: AGC12060251002FR01 FCC ID : 2AU4T-T9NA APPLICATION PURPOSE : Original Equipment PRODUCT DESIGNATION : 4G Mobile WiFi BRAND NAME : N/A MODEL NAME : T9NA APPLICANT : Shanghai TUGE Data Technologies Co., Ltd. DATE OF ISSUE : Oct. 31, 2025 STANDARD(S) : FCC Part 15 Subpart C §15.247 REPORT VERSION : V1.0 Attestation of Global Compliance (Shenzhen) Co., Ltd Report No.: AGC12060251002FR01 Page 2 of 93 Report Revise Record Report Version Revise Time Issued Date Valid Version Notes V1.0 / Oct. 31, 2025 Valid Initial Release Report No.: AGC12060251002FR01 Page 3 of 93 Table of Contents 1. General Information ........................................................................................................................................ 5 2. Product Information ........................................................................................................................................ 6 2.1 Product Technical Description ................................................................................................................... 6 2.2 Table of Carrier Frequency ........................................................................................................................ 7 2.3 IEEE 802.11n Modulation Scheme ........................................................................................................... 8 2.4 Related Submittal(S) / Grant (S) ............................................................................................................... 9 2.5 Test Methodology ...................................................................................................................................... 9 2.6 Special Accessories .................................................................................................................................. 9 2.7 Equipment Modifications ........................................................................................................................... 9 2.8 Antenna Requirement................................................................................................................................ 9 2.9 Description of Test Software ................................................................................................................... 10 3. Test Environment .......................................................................................................................................... 11 3.1 Address of The Test Laboratory .............................................................................................................. 11 3.2 Test Facility .............................................................................................................................................. 11 3.3 Environmental Conditions ....................................................................................................................... 12 3.4 Measurement Uncertainty ....................................................................................................................... 12 3.5 List of Equipment Used ........................................................................................................................... 13 4.System Test Configuration ............................................................................................................................ 14 4.1 EUT Configuration ................................................................................................................................... 14 4.2 EUT Exercise ........................................................................................................................................... 14 4.3 Configuration of Tested System .............................................................................................................. 14 4.4 Equipment Used in Tested System ......................................................................................................... 15 4.5 Summary of Test Results ........................................................................................................................ 16 5. Description of Test Modes ........................................................................................................................... 17 6. Duty Cycle Measurement ............................................................................................................................. 19 7. RF Output Power Measurement .................................................................................................................. 21 7.1 Provisions Applicable .............................................................................................................................. 21 7.2 Measurement Procedure ......................................................................................................................... 21 7.3 Measurement Setup (Block Diagram of Configuration) .......................................................................... 21 7.4 Measurement Result ............................................................................................................................... 22 8. 6dB Bandwidth Measurement ...................................................................................................................... 23 8.1 Provisions Applicable .............................................................................................................................. 23 8.2 Measurement Procedure ......................................................................................................................... 23 8.3 Measurement Setup (Block Diagram of Configuration) .......................................................................... 23 8.4 Measurement Result ............................................................................................................................... 24 9. Power Spectral Densit…

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Test Report

Confidential Information Version 1.00 第1页/共计9页 Shenzhen yGalax Technologies Limited Name:Sample Approval Ver:V1.0 date:2025.9.15 Sample Approval Sheet Project Name: TM46P-T9NA Sample Name: WIFI antenna Sample SPEC: WIFI—PCB Antenna Customer PN.: Transfer Date: 2025.09.15 Supplier Confirm Project Engineer Quality date Customer confirm PM Electron MD PD QE date conclusion □ MP □ Limits use( )K □ ROHS Supplier name: Shenzhen yGalax Technologies LimitedThe Supplier address: Unit F, 4/F, BlockA, Junxiangda Plaza, Zhongshanyuan Road, Nanshan District, Shenzhen, China Confidential Information Version 1.00 第2页/共计9页 Catalog 1. Specification overview .................................................................................................. 3 2. appearance ........................................................................................................................... 3 3. Electrical properties .................................................................................................... 3 3.1. Antenna frequency band ........................................................................................... 3 3.2. Matching circuit ......................................................................................................... 3 3.3. Impedance requirements ........................................................................................... 3 3.4. Passive standing wave diagram ................................................................................ 4 3.5. Environmental treatment .......................................................................................... 5 4. Appearance structure ................................................................................................... ...5 4.1. Antenna material ........................................................................................................ 5 4.2. Structural drawings ................................................................................................... 6 5. List of raw materials(BOM) .......................................................................................... 7 6. Production flow chart .......................................................................................................... 7 7. GP test report of antenna and accessory materials .......................................................... 8 1. Specification overview This specification describes the condition of built-in WIFI antenna of STONEOIM JC06. It is Confidential Information Version 1.00 第3页/共计9页 frequency band WCDMA+LTE is manufactured by Shenzhen yGalax Technologies Limited。 2. Appearance 3. Electrical properties 3.1. Antenna frequency band WIFI Emission spectrum(MHz) 2400~2500 Receiving frequency band(MHz) 2400~2500 3.2. Matching circuit 3.3 Impedance requirements 50 ohm Confidential Information Version 1.00 第4页/共计9页 3.4 Antenna test data 1. The Main antenna test dataPassive standing wave diagram of main antenna; 2.Smith chart of main antenna: 3 Return loss of main antenna: Confidential Information Version 1.00 第5页/共计9页 4.Passive gain efficiency of main antenna: Confidential Information Version 1.00 第6页/共计9页 3.5 Environmental treatment Confidential Information Version 1.00 第7页/共计9页 Appearance structure 4.1 Antenna material Antenna material: PCB antenna, black ink, gold plating on exposed copper area. Substrate + double sided adhesive tape + release paper Cable line: the total length of the cable is 33.00mm, the wire diameter is 0.81mm, With four generations terminals. 4.2 Structural drawings 5. List of raw materials(BOM) Confidential Information Version 1.00 第8页/共计9页 6 .Production flow chart

RF Exposure Info

Report No.: AGC12060251002FH01 Page 155 of 175 Test Laboratory: AGC Lab Date: Oct. 24, 2025 LTE Band 17 Low-Body/Hotspot-Back (1 RB#0) DUT: 4G Mobile WiFi ; Type: T9NA Communication System: LTE; Communication System Band: LTE Band 17; Duty Cycle:1:1; Conv.F=2.30; Frequency: 709 MHz; Medium parameters used: f = 750 MHz; σ=0.86 mho/m; εr =43.07; ρ= 1000 kg/m³ ; Phantom section: Flat Section SATIMO Configuration: • Probe: SSE2; Calibrated: 2025-05-06; Serial No.: 2023-EPGO-414 • Sensor-Surface: 4mm (Mechanical Surface Detection) • Phantom: SAM twin phantom • Measurement SW: OpenSAR V4_02_32 Configuration/ LTE Band 17 Low-Body/Hotspot-Back/Area Scan: Measurement grid: dx=8mm, dy=8mm Configuration/ LTE Band 17 Low-Body/Hotspot-Back/Zoom Scan: Measurement grid: dx=8mm,dy=8mm, dz=5m; Area Scan surf_sam_plan.txt, h= 5.00 mm Zoom Scan 5x5x7,dx=8mm dy=8mm dz=5mm Phantom Validation plane Device Position Body/Hotspot Back Band LTE Band 17 Channels Low Signal OFDM (Crest factor: 1.0) SURFACE SAR VOLUME SAR Maximum location: X=-2.00, Y=6.00 SAR Peak: 1.17 W/kg SAR 10g (W/Kg) 0.496838 SAR 1g (W/Kg) 0.700899 Report No.: AGC12060251002FH01 Page 156 of 175 Z (mm) 0.00 4.00 9.00 14.00 19.00 24.00 29.00 SAR (W/Kg) 1.2528 0.7396 0.4448 0.4530 0.3330 0.3199 0.2157 3D screen shot Hot spot position Report No.: AGC12060251002FH01 Page 157 of 175 Test Laboratory: AGC Lab Date: Oct. 29, 2025 LTE Band 25 Mid-Body/Hotspot-Back (1 RB#0) DUT: 4G Mobile WiFi ; Type: T9NA Communication System: LTE; Communication System Band: LTE Band 25; Duty Cycle:1:1; Conv.F=2.25; Frequency:1882.5MHz; Medium parameters used: f = 1750 MHz; σ= 1.37 mho/m; εr =40.36; ρ= 1000 kg/m³ ; Phantom section: Flat Section SATIMO Configuration: • Probe: SSE2; Calibrated: 2025-05-06; Serial No.: 2023-EPGO-414 • Sensor-Surface: 4mm (Mechanical Surface Detection) • Phantom: SAM twin phantom • Measurement SW: OpenSAR V4_02_32 Configuration/ LTE Band 25 Mid-Body/Hotspot-Back/Area Scan: Measurement grid: dx=8mm, dy=8mm Configuration/ LTE Band 25 Mid-Body/Hotspot-Back/Zoom Scan: Measurement grid: dx=8mm,dy=8mm, dz=5m; Area Scan surf_sam_plan.txt, h= 5.00 mm Zoom Scan 5x5x7,dx=8mm dy=8mm dz=5mm Phantom Validation plane Device Position Body/Hotspot Back Band LTE Band 25 Channels Middle Signal OFDM (Crest factor: 1.0) SURFACE SAR VOLUME SAR Maximum location: X=-11.00, Y=29.00 SAR Peak: 1.68 W/kg SAR 10g (W/Kg) 0.532794 SAR 1g (W/Kg) 1.001729 Report No.: AGC12060251002FH01 Page 158 of 175 Z (mm) 0.00 4.00 9.00 14.00 19.00 24.00 29.00 SAR (W/Kg) 1.6125 1.0385 0.5809 0.3308 0.1833 0.1033 0.0565 3D screen shot Hot spot position Report No.: AGC12060251002FH01 Page 159 of 175 Test Laboratory: AGC Lab Date: Nov. 03, 2025 LTE Band 26a High-Body/Hotspot-Back (1 RB#0) DUT: 4G Mobile WiFi ; Type: T9NA Communication System: LTE; Communication System Band: LTE Band 26a; Duty Cycle:1:1; Conv.F=2.23 Frequency:841.5 MHz; Medium parameters used: f = 835 MHz; σ=0.91 mho/m; εr =40.72; ρ= 1000 kg/m³ ; Phantom section: Flat Section SATIMO Configuration: • Probe: SSE2; Calibrated: 2025-05-06; Serial No.: 2023-EPGO-414 • Sensor-Surface: 4mm (Mechanical Surface Detection) • Phantom: SAM twin phantom • Measurement SW: OpenSAR V4_02_32 Configuration/ LTE Band 26a High-Body/Hotspot-Back/Area Scan: Measurement grid: dx=8mm, dy=8mm Configuration/ LTE Band 26a High-Body/Hotspot-Back/Zoom Scan: Measurement grid: dx=8mm,dy=8mm, dz=5m; Area Scan surf_sam_plan.txt, h= 5.00 mm Zoom Scan 5x5x7,dx=8mm dy=8mm dz=5mm Phantom Validation plane Device Position Body/Hotspot Back Band LTE Band 26a Channels High Signal OFDM (Crest factor: 1.0) SURFACE SAR VOLUME SAR Maximum location: X=-10.00, Y=-32.00 SAR Peak: 1.79 W/kg SAR 10g (W/Kg) 0.641449 SAR 1g (W/Kg) 1.000387 Report No.: AGC12060251002FH01 Page 160 of 175 Z (mm) 0.00 4.00 9.00 14.00 19.00 24.00 29.00 SAR (W/Kg) 1.1101 1.2303 0.9943 0.3922 0.2435 0.2885 0.2292 3D screen shot Hot spot position Report No.: AGC12060251002FH01 Page 161 of 175 Test Laboratory: AGC Lab Date: Oct. 30, 2025 LTE Band 40- Lower Side Mid-Body/Hotspot- Back (1 RB#0) DUT: 4G Mobile WiFi ; Type: T9NA Communication System: LTE; Communication System Band: LTE Band 40-Upper Side; Duty Cycle:1:1.58; Conv.F=2.37 Frequency: 2310 MHz; Medium parameters used: f = 2300 MHz; σ=1.73 mho/m; εr =38.67; ρ= 1000 kg/m³ ; Phantom section: Flat Section SATIMO Configuration: • Probe: SSE2; Calibrated: 2025-05-06; Serial No.: 2023-EPGO-414 • Sensor-Surface: 4mm (Mechanical Surface Detection) • Phantom: SAM twin phantom • Measurement SW: OpenSAR V4_02_32 Configuration/ LTE Band 40- Lower Side Mid-Body/Hotspot- Back/Area Scan: Measurement grid: dx=8mm, dy=8mm Configuration/ LTE Band 40- Lower Side Mid-Body/Hotspot- Back/Zoom Scan: Measurement grid: dx=8mm, dy=8mm, dz=5mm; Area Scan surf_sam_plan.txt, h= 5.00 mm Zoom Scan 7x7x7,dx=5mm dy=5mm dz=5mm Phantom Validation plane Device Position Body/Hotspot Back Band LTE Band 40- Lower Side Channels Middle Signal Crest factor: 1.58 SURFACE SAR VOLUME SAR Maximum location: X=9.00, Y=36.00 SAR Peak: 2.15 W/kg SAR 10g (W/Kg) 0.599486 SAR 1g (W/Kg) 1.214641 Report No.: AGC12060251002FH01 Page 162 of 175 Z (mm) 0.00 4.00 9.00 14.00 19.00 24.00 29.00 SAR (W/Kg) 2.1542 1.3107 0.6692 0.3400 0.1713 0.0860 0.0428 3D screen shot Hot spot position Report No.: AGC12060251002FH01 Page 163 of 175 Test Laboratory: AGC Lab Date: Oct. 30, 2025 LTE Band 40-Upper Side Mid-Body/Hotspot- Back (1 RB#0) DUT: 4G Mobile WiFi ; Type: T9NA Communication System: LTE; Communication System Band: LTE Band 40-Upper Side; Duty Cycle:1:1.58; Conv.F=2.37 Frequency: 2355 MHz; Medium parameters used: f = 2300 MHz; σ=1.74 mho/m; εr =38.43; ρ= 1000 kg/m³ ; Phantom section: Flat Section SATIMO Configuration: • Probe: SSE2; Calibrated: 2025-05-06; Serial No.: 2023-EPGO-414 • Sensor-Surface: 4mm (Mechanical Surface Detection) • Phantom: SAM twin phantom • Measurement SW: OpenSAR V4_02_32 Configuration/ LTE Band 40-Upper Side Mid-Body/Hotspot- Back/Area Scan: Measurement grid: dx=8mm, dy=8mm Conf…

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RF Exposure Info

Page 1 of 175 SAR Test Report Report No.: AGC12060251002FH01 FCC ID : 2AU4T-T9NA APPLICATION PURPOSE : Original Equipment PRODUCT DESIGNATION : 4G Mobile WiFi BRAND NAME : N/A MODEL NAME : T9NA APPLICANT : Shanghai TUGE Data Technologies Co., Ltd. DATE OF ISSUE : Nov. 13, 2025 STANDARD(S) : IEEE Std. 1528:2013 FCC 47 CFR Part 2§2.1093 IEEE Std C95.1 ™-2019 REPORT VERSION : V1.0 Attestation of Global Compliance(Shenzhen) Co., Ltd. Report No.: AGC12060251002FH01 Page 2 of 175 Report Revise Record Report Version Revise Time Issued Date Valid Version Notes V1.0 / Nov. 13, 2025 Valid Initial Release Report No.: AGC12060251002FH01 Page 3 of 175 Test Report Applicant Name Shanghai TUGE Data Technologies Co., Ltd. Applicant Address Floor 1-2, Building 4, No.1628, Lingang New Area, Shanghai Pilot Free Trade Zone, Shanghai, China Manufacturer Name Shanghai TUGE Data Technologies Co., Ltd. Manufacturer Address Floor 1-2, Building 4, No.1628, Lingang New Area, Shanghai Pilot Free Trade Zone, Shanghai, China Factory Name Huizhou Meitron Technology Co., Ltd. Factory Address Factory building in Wuyi District, Zhongkai high-tech zone, Huizhou Product Designation 4G Mobile WiFi Brand Name N/A Model Name T9NA EUT Voltage DC 3.8V by battery Applicable Standard IEEE Std. 1528:2013 FCC 47 CFR Part 2§2.1093 IEEE Std C95.1 ™-2019 Date of receipt of test item Oct. 10, 2025 Test Date Oct. 24, 2025 to Nov. 03, 2025 Report Template AGCRT-US-4G/SAR (2021-04-20) Note: The results of testing in this report apply to the product/system which was tested only. Prepared By Bibo Zhang (Project Engineer) Nov. 13, 2025 Reviewed By Jack Gui (Reviewer) Nov. 13, 2025 Approved By Angela Li (Authorized Officer) Nov. 13, 2025 Report No.: AGC12060251002FH01 Page 4 of 175 TABLE OF CONTENTS 1. SUMMARY OF MAXIMUM SAR VALUE ......................................................................................................... 5 2. GENERAL INFORM…

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Contact Information

Applicant

XiangWang Wu
[email protected]Fax: 13827468032

Test Firm

Attestation of Global Compliance (Shenzhen) Co., LDoris Li
[email protected]

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz92.00 mW
Confidentiality
Long Term
Grant Notes
Output power listed is conducted power. This device contains 20 and 40 MHz signal bandwidth. SAR compliance for body-worn operating configurations is limited to the specific configurations tested for this filing. Body-worn operations are restricted to belt-clips, holsters or similar accessories that have no metallic component in the assembly and must provide at least 0 cm separation between the device and the body of the user. End-users must be informed of the body-worn operating requirements for satisfying RF exposure compliance. The highest reported SAR for body-worn accessory and simultaneous transmission use conditions is 0.17W/kg and 1.55W/kg respectively.

Other Applications from Shanghai TUGE Data Technologies Co., Ltd.

Smart Car Holder with Charging & WiFi - FCC ID 2AU4T-TC10 - Shanghai TUGE Data Technologies Co., Ltd.
2AU4T-TC10

Smart Car Holder with Charging & WiFi

Sep 11, 2025

Equipment Class

PCB - PCS Licensed Transmitter