
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
DJI Mavic 3E DJI Mavic 3T Quick Start Guide v1.0 2022.07 Aircraft The DJI TM MAVIC TM 3E/3T features upward, downward, and horizontal omnidirectional Vision Systems and Infrared Sensing System*, allowing for hovering and flying indoors as well as outdoors and for automatic Return to Home while avoiding obstacles in all directions. With precise three-axis gimbal to stabilize high-performance multi-camera load, the DJI Pilot 2 app can be used to observe the real-time view from the cameras and take photos and videos. The built-in DJI AirSense detects nearby aircraft in the surrounding airspace to ensure safety and beacon help to identify the aircraft during flight. With a PSDK port so the aircraft can be equipped with designated accessories to adapt to different application scenarios such as security, patrol inspection, and mapping. 1. Gimbal and Camera** 2. Horizontal Omnidirectional Vision System 3. Auxiliary Bottom Light 4. Downward Vision System 5. Infrared Sensing System 6. Front LEDs 7. Motors 8. Propellers 9. Aircraft Status Indicators 10. Landing Gears (Built-in antennas) 11. Upward Vision System 12. USB-C Port 13. microSD Card Slot 14. Battery Level LEDs 15. Intelligent Flight Battery 16. Power Button 17. Battery Buckles 18. Beacon 19. Extended Port (can be used to connect accessories) * The Vision and Infrared Sensing Systems are affected by surrounding conditions. Read the User Manual for more information. ** The Mavic 3E and Mavic 3T are equipped with different cameras. Refer to the actual product purchased. Remote Controller The DJI RC Pro Enterprise remote controller features O3 Enterprise, the latest version of DJI’s signature OCUSYNC TM image transmission technology, and can transmit a live HD view from the camera of an aircraft at a distance of up to 15 km*. The remote controller comes with a wide range of aircraft and gimbal controls as well as customizable buttons. The built-in microphone allows recording voice and 5.5-in high brightness 1000 cd/m 2 screen boasts a resolution of 1920×1080 pixels. Users can connect to the internet via Wi-Fi and the Android operating system comes with a variety of functions such as Bluetooth and GNSS. 1. Control Sticks 2. Back/Function Button 3. RTH Button 4. Flight Pause Button 5. Flight Mode Switch 6. 5D Button 7. Power Button 8. Confirm Button/Customizable C3 Button 9. Touchscreen 10. M4 Screw Hole 11. microSD Card Slot 12. USB-C Port 13. Mini HDMI Port 14. Microphone 15. Gimbal Dial 16. Record Button 17. Antennas 18. Status LED 19. Battery Level LEDs 20. Focus/Shutter Button 21. Camera Settings Dial 22. Air Vent 23. Control Sticks Storage Slot 24. Customizable C1 Button 25. Speaker 26. Customizable C2 Button 27. Air Intake * The remote controller is able to reach its maximum transmission distance (FCC) in a wide-open area with no electromagnetic interference at an altitude of about 400 ft (120 m). 1. Watching the Tutorials Scan the QR code or visit www.dji.com/mavic-3-enterprise to watch the tutorial videos. 2. Charging the Battery Charge to activate the Intelligent Flight Battery and the internal battery of the Remote Controller before using for the first time. Check battery level: press once. Power on/off: press, then press and hold. 3. Preparing the Aircraft Unfold the front arms Unfold the rear arms Remove the gimbal protector from the camera Press the propellers down and rotate until they click in place Match the propellers to motors Unfolded Unfold the front arms before the rear ones. All arms and propellers must be unfolded before takeoff. 4. Preparing the Remote Controller Remove the control sticks from the storage slots Attach the control sticks and twist to secure Unfold the antennas The optimal transmission range is where the antennas are facing toward the aircraft and the angle between the antennas and the back of the remote controller is 180° or 270°. DO NOT operate other wireless devices at the same frequency as the remote controller, to avoid signal interference. A warning prompt appears in DJI Pilot 2 if the transmission signal is weak. Adjust the antennas to make sure that the aircraft is within the optimal transmission range. 5. Getting Ready for Takeoff Power on the remote controller Power on the aircraft Launch DJI Pilot 2 Use a DJI account to activate the aircraft and the remote controller. Activation requires an internet connection. Before activating the aircraft in DJI Pilot 2, power on the remote controller and follow the prompts to activate. 6. Flight Manual Takeoff/Landing Start/stop motors: perform Combination Stick Command and hold for two seconds. Or Takeoff: slowly push the left control stick (mode 2) up to take off. Landing: slowly push the left control stick (mode 2) down until the aircraft lands. Hold for three seconds to stop the motors. Control Stick Mode The default control stick mode is mode 2. The left control stick controls the altitude and heading of the aircraft while the right control stick controls the forward, backward, and sideward movements. Always set an appropriate RTH mode and altitude when remote controller signal is lost before takeoff. Press the Flight Pause button for emergency braking during flight. Specifications Aircraft (Model: M3E/M3T) Takeoff Weight (with propellers) 915 g (Mavic 3E), 920 g (Mavic 3T) Max Takeoff Weight 1050 g Max Ascent Speed 8 m/s (Sport mode) 6 m/s (Normal mode) 1 m/s (Cine Mode) Max Descent Speed 6 m/s (Sport mode) 6 m/s (Normal mode) 1 m/s (Cine Mode) Max Horizontal Speed (near sea level, no wind) 21 m/s (Sport mode), 19 m/s (Sport mode, EU) 15 m/s (Normal mode) 5 m/s (Cine Mode) Max Service Ceiling Above Sea Level 6,000 m Max Flight Time (without wind) 45 min (Mavic 3E), 44 min (Mavic 3T) Max Hover Time (without wind) 39 min (Mavic 3E), 38 min (Mavic 3T) Max Wind Speed Resistance 12 m/s Operating Temperature -10° to 40° C (14° to 104° F) GNSS GPS + Galileo + BeiDou Operating Frequency 2.400-2.4835 GHz, 5.725-5.850 GHz * Transmitter Power (EIRP) 2.4…
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TCB Authority to Act as Agent Number: MS-0045317 Revision: 0 Effective date: Oct 8, 2021 Page 1 of 1 SZ DJI TECHNOLOGY CO.,LTD. Authority to Act as Agent Date: 2022-09-14 TUV Rheinland of North America, Inc. 1279 Quarry Lane., Suite. A Pleasanton, CA 94566 To Whom It May Concern: I appoint TUV Rheinland (Shenzhen) Co., Ltd. and TUV Engineer to act as our agent in the preparation of this application for equipment certification. I certify that submitted documents properly describe the device or system for which equipment certification is sought. I also certify that each unit manufactured, imported or marketed, as defined in the FCC or Industry Canada’s regulations will have affixed to it a label identical to that submitted for approval with this application. For instances where our authorized agent signs the application for certification on our behalf, I acknowledge that all responsibility for complying with the terms and conditions for Certification, as specified by TUV Rheinland Group, still resides with SZ DJI TECHNOLOGY CO.,LTD. 14th floor, West Wing, Skyworth Semiconductor Design Building NO.18 Gaoxin South 4th Ave, Nanshan, Shenzhen, Guangdong, China For TCB applications, We certify that we are not subject to denial of federal benefits, that includes FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 862. Further, no party, as defined in 47 CFR 1.2002 (b), to the application is subject to denial of federal benefits, that includes FCC benefits. Thank you, Agency Agreement Date: ___2022-09-14________________ Agreement is valid for 12 months from the above date. By: ______________ ____Gary Zeng__ (Signature) (Print name) _Certification Manager +86 755 26656677 (Title) (Telephone) On behalf of: SZ DJI TECHNOLOGY CO.,LTD. (Company Name)
Number: 44715 Revision: 1 Effective date: Sep 12, 2022 MS-0044715 Page 1 of 1 Revision 1 Legal Scope: Global Business Scope: Cross Business Process Scope: Cross Process The following is a sample Confidentiality Request letter, which must be completed on Applicant company letterhead, signed by the Applicant or their authorized Agent, and submitted to TÜ V Rheinland. Date: 2022-09-14 Federal Communications Commission Equipment Authorization Branch 7435 Oakland Mills Road, Columbia, MD 21046, USA Subject: Confidentiality Request for FCC ID: SS3-M3E2206 Pursuant to FCC 47 CRF 0.457(d), the applicant requests that a part of the subject FCC application be held confidential. Type of Confidentiality Requested Exhibit Short Term Permanent Block Diagrams Short Term n/a External Photo Short Term Permanent Internal Photos *** Short Term Permanent Operation Description/Theory of Operation Short Term Permanent Schematics Short Term Permanent Test Setup*** Short Term Permanent Tune-Up Procedure Short Term Permanent User’s Manual*** Short Term Permanent Part List/ Antenna Construction SZ DJI TECHNOLOGY CO., LTD. has spent substantial effort in developing this product and it is one of the first of its kind in industry. Having the subject information easily available to "competition" would negate the advantage they have achieved by developing this product. Not protecting the details of the design will result in financial hardship. Permanent Confidentiality: The applicant requests the exhibits listed above as permanently confidential be permanently withheld from public review due to materials that contain trade secrets and proprietary information not customarily released to the public. (*** Exceptional case for Permanent Confidentiality for these Exhibits by PAG only) Short-Term Confidentiality: The applicant requests the exhibits selected above as short term confidential be withheld from public view for a period of 180 days from the date of the Grant of Equipment Authorization and prior to marketing. This is to avoid premature release of sensitive information prior to marketing or release of the product to the public. Applicant is also aware that they are responsible to notify TUV Rheinland in the event information regarding the product or the product is made available to the public. TUV Rheinland will then release the documents listed above for public disclosure pursuant to FCC Public Notice DA 04-1705. Sincerely, By: ________________________ _________ Gary Zeng _______________ (Signature/Title) (Print name) Tel: +86 755 26656677 Email: [email protected]
Family Certification information T o w h o m i t m a y c o n c e r n , W e , S Z D J I T E C H N O L O G Y C O . , L T D . h e r e b y c o n f i r m t h a t t h e f a m i l y m o d e l s a r e l i s t e d i n t h e f o l l o w i n g t a b l e . N o . H V I N P M N R e m a r k s 01 M3E D J I M a v i c 3 E T h e e l e c t r i c a l c i r c u i t d e s i g n a n d P C B l a yo u t a r e i d e n t i c a l , o n l y t h e m o d e l n u m b e r and M i n o r c i r c u i t r i e s f o r n o n-t r a n s m i t t e r p o r t i o n s a r e d i f f e r e n t f o r m a r k e t s t r a t e g y. 02 M3T D J I M a v i c 3 T T h e s e m o d e l s a r e i d e n t i c a l a s f o l l o w s : E l e c t r o n i c s / e l e c t r i c a l d e s i g n s , i n c l u d i n g s o f t w a r e & f i r m w a r e C o n s t r u c t i o n D e s i g n / P h ys i c a l D e s i g n / E n c l o s u r e P C B L a yo u t ( O t h e r s , p l e a s e s p e c i f y) : T h e o n l y d i f f e r e n c e s b e t w e e n t h e s e m o d e l s a r e t h e f o l l o w s f o r m a r k e t i n g p u r p os e : M o d e l N o . M i n o r c i r c u i t r i e s f o r n o n-t r a n s m i t t e r p o r t i o n s (t h e r m a l I m a g i n g f u n c t i o n o n t h e c a m e r a) , w h i c h h a s n o a f f e c t i o n s o n t h e RF c h a r a c t e r i s t i c s . T r a d e N a m e / T r a d e m a r k (O t h e r s p l e a s e s p e c i f y) : R e g a r d s , S i g n a t u r e : P r i n t N a m e / T i t l e : Ga r y Zeng, C o m p l i a n c e M a n a g e r D a t e : 2 0 2 2-09-16
M3E M3T
1 1. WM260 UAV SDR RB ANT0 1.1 Basic Specifications No. Specification Descriptions Notes 1 Antenna Name WM260 UAV SDR RB ANT0 2 Brand DJI 3 Operation Frequency 2.4~2.483GHz; 5.725~5.85GHz 4 Connector Type 1代IPEX 5 Impedance 50ohm 6 Gain 1.5 [email protected]~2.483GHz 3 [email protected]~5.85GHz 7 Efficiency ≥50% 8 VSWR ≤2.5 9 Polarization type Linear 10 3dB Beamwidth Omnidirectional Vertical 11 Weight 1.2 radiation pattern Frequency Efficiency( ) E Total. dB(dB) 2400MHz 51% 1.43649 2420MHz 52% 1.466 2440MHz 53% 1.48475 2460MHz 53% 1.4676 2480MHz 51% 1.37426 5725MHz 52% 2.81937 5775MHz 52% 2.92576 5800MHz 52% 2.85842 5850MHz 50% 2.73477 2.4G水平面 2.4G俯仰面 5.8G水平面 5.8G俯仰面 2.3 Structure drawing 2. WM260 UAV SDR LF ANT1 2.1 Basic Specifications No. Specification Descriptions Notes 1 Antenna Name WM260 UAV SDR LF ANT1 2 Brand DJI 3 Operation Frequency 2.4~2.483GHz; 5.725~5.85GHz 4 Connector Type 1代IPEX 5 Impedance 50ohm 6 Gain 2 [email protected]~2.483GHz 2.5 [email protected]~5.85GHz 7 Efficiency ≥50% 8 VSWR ≤2.5 9 Polarization type Linear 10 3dB Beamwidth Omnidirectional horizontal 11 Weight 2.2 radiation pattern Frequency Efficiency( ) E Total. dB(dB) 2400MHz 61% 1.78888 2420MHz 62% 1.78554 2440MHz 63% 1.93675 2460MHz 61% 1.63152 2480MHz 59% 1.59199 5725MHz 54% 2.35058 5775MHz 55% 2.40539 5800MHz 56% 2.47963 5850MHz 54% 2.41271 2.4G水平面 2.4G俯仰面 5.8G水平面 5.8G俯仰面 2.3 Structure drawing 3. WM260 UAV SDR RF ANT2 3.1 Basic Specifications No. Specification Descriptions Notes 1 Antenna Name WM260 UAV SDR RF ANT2 2 Brand DJI 3 Operation Frequency 2.4~2.483GHz; 5.725~5.85GHz 4 Connector Type 1代IPEX 5 Impedance 50ohm 6 Gain 2 [email protected]~2.483GHz 2.5 [email protected]~5.85GHz 7 Efficiency ≥50% 8 VSWR ≤2.5 9 Polarization type Linear 10 3dB Beamwidth Omnidirectional horizontal 11 Weight 3.2 radiation pattern Frequency Efficiency( ) E Total. dB(dB) 2400MHz 59% 1.64122 2420MHz 60% 1.87162 2440MHz 61% 1.84796 2460MHz 62% 1.99157 2480MHz 61% 1.70693 5725MHz 54% 2.48951 5775MHz 53% 2.40645 5800MHz 52% 2.34776 5850MHz 53% 2.39765 2.4G水平面 2.4G俯仰面 5.8G水平面 5.8G俯仰面 3.3 Structure drawing 4. WM260 UAV SDR LB ANT3 4.1 Basic Specifications No. Specification Descriptions Notes 1 Antenna Name WM260 UAV SDR LB ANT3 2 Brand DJI 3 Operation Frequency 2.4~2.483GHz; 5.725~5.85GHz 4 Connector Type 1代IPEX 5 Impedance 50ohm 6 Gain 1.5 [email protected]~2.483GHz 3 [email protected]~5.85GHz 7 Efficiency ≥50% 8 VSWR ≤2.5 9 Polarization type Linear 10 3dB Beamwidth Omnidirectional Vertical 11 Weight 4.2 radiation pattern Frequency Efficiency( ) E Total. dB(dB) 2400MHz 53% 1.42422 2420MHz 54% 1.45707 2440MHz 55% 1.49203 2460MHz 52% 1.44166 2480MHz 51% 1.39642 5725MHz 50% 2.65794 5775MHz 53% 2.92507 5800MHz 52% 2.71814 5850MHz 50% 2.67981 2.4G水平面 2.4G俯仰面 5.8G水平面 5.8G俯仰面 3.3 Structure drawing
Prüfbericht - Produkte Test Report - Products Prüfbericht-Nr.: Test report no.: CN22SRMQ 004 Auftrags-Nr.: Order no.: 168379672 Seite 1 von 9 Page 1 of 9 Kunden-Referenz-Nr.: Client reference no.: N/A Auftragsdatum: Order date: 2022-06-29 Auftraggeber: Client: SZ DJI TECHNOLOGY CO., LTD. 14th Floor, West Wing, Skyworth Semiconductor Design Building No.18 Gaoxin South 4th Ave Nanshan District, Shenzhen, P.R. China Prüfgegenstand: Test item: DJI Mavic 3E, DJI Mavic 3T Bezeichnung / Typ-Nr.: Identification / Type no.: M3E, M3T Auftrags-Inhalt: Order content: Test Report Prüfgrundlage: Test specification: FCC Part 2: Section 2.1091 Wareneingangsdatum: Date of sample receipt: 2022-07-07 Please refer to photo documents Prüfmuster-Nr.: Test sample no: A003293964-004~005 A003293964-010, 017, 018 Prüfzeitraum: Testing period: 2022-07-14 to 2022-08-02 Ort der Prüfung: Place of testing: TÜV Rheinland (Shenzhen) Co., Ltd. Prüflaboratorium: Testing laboratory: TÜV Rheinland (Shenzhen) Co., Ltd. Prüfergebnis*: Test result*: Pass geprüft von: tested by: X Signed by: Bell Hu genehmigt von: authorized by: X Signed by: Lin Lin Datum: Date: 2022-09-14 Ausstellungsdatum: Issue date: 2022-09-14 Stellung / Position: Assistants Project Manager Stellung / Position: Reviewer Sonstiges / Other: FCC ID: SS3-M3E2206 Zustand des Prüfgegenstandes bei Anlieferung: Condition of the test item at delivery: Prüfmuster vollständig und unbeschädigt Test item complete and undamaged * Legende: 1 = sehr gut 2 = gut 3 = befriedigend 4 = ausreichend 5 = mangelhaft P(ass) = entspricht o.g. Prüfgrundlage(n) F(ail) = entspricht nicht o.g. Prüfgrundlage(n) N/A = nicht anwendbar N/T = nicht getestet * Legend: 1 = very good 2 = good 3 = satisfactory 4 = sufficient 5 = poor P(ass) = passed a.m. test specification(s) F(ail) = failed a.m. test specification(s) N/A = not applicable N/T = not tested Dieser Prüfbericht bezieht sich nur auf das o.g. Prüfmuster und darf ohne Genehmigung der Prüfstelle nicht auszugsweise vervielfältigt werden. Dieser Bericht berechtigt nicht zur Verwendung eines Prüfzeichens. This test report only relates to the a. m. test sample. Without permission of the test center this test report is not permitted to be duplicated in extracts. This test report does not entitle to carry any test mark. TÜV Rheinland (Shenzhen) Co., Ltd. 1601 R&D Room, 1602-1604, 17-18F, Building 7 Site C, Vanke Cloud City Phase I, Xingke First Street, Xili Street, Xili Community, Nanshan District, Shenzhen 518052, P.R. China Mail: [email protected] · Web: www.tuv.com jjj Prüfbericht - Produkte Test Report - Products Prüfbericht - Nr.: Test Report No.: CN22SRMQ 004 Seite 2 von 9 Page 2 of 9 TEST SUMMARY 3.1.1 RF EXPOSURE COMPLIANCE RESULT: Pass Prüfbericht - Produkte Test Report - Products Prüfbericht - Nr.: Test Report No.: CN22SRMQ 004 Seite 3 von 9 Page 3 of 9 CONTENTS 1. TEST SITES ....................................................................................................................... 4 1.1 TEST FACILITIES ............................................................................................................... 4 1.2 TRACEABILITY .................................................................................................................. 4 1.3 CALIBRATION .................................................................................................................... 4 1.4 LOCATION OF ORIGINAL DATA ........................................................................................... 4 1.5 STATUS OF FACILITY USED FOR TESTING ........................................................................... 4 2. GENERAL PRODUCT INFORMATION .................................................................................... 5 2.1 GENERAL DESCRIPTION .................................................................................................... 5 2.2 RATING AND SYSTEM DETAILS ........................................................................................... 5 3. TEST RESULTS ................................................................................................................. 7 3.1 TRANSMITTER REQUIREMENTS & TEST SUITES ................................................................... 7 3.1.1 RF Exposure Compliance ............................................................................................................ 7 3.1.1.1 Radio Frequency Exposure Limit ................................................................................... 8 3.1.1.2 Radio Frequency Exposure Calculation Formula ........................................................... 8 3.1.1.3 Simultaneous transmission MPE .................................................................................... 8 3.1.1.4 Conclusion ...................................................................................................................... 8 4. LIST OF TABLES ................................................................................................................ 9 Prüfbericht - Produkte Test Report - Products Prüfbericht - Nr.: Test Report No.: CN22SRMQ 004 Seite 4 von 9 Page 4 of 9 1. TEST SITES 1.1 TEST FACILITIES TÜV Rheinland (Shenzhen) Co., Ltd. 362 Huanguan Road Middle Longhua District, Shenzhen 518110 People’s Republic of China FCC Registration No.: 694916 ISED wireless device testing laboratory: 25069 A2LA Certificate Number: 5162.01 1.2 Traceability All measurement equipment calibrations are traceable to NIST or where calibration is performed outside the United States, to equivalent nationally recognized standards organizations. 1.3 Calibration Equipment requiring calibration is calibrated periodically by the manufacturer or according to manufacturer’s specifications. Additionally all equipment is verified for proper performance on a regular basics using in house standards or comparisons. 1.4 Location of Original Data The original copies of all test data taken during actual testing were attache…
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Prüfbericht - Produkte Test Report - Products Appendix A CN22SRMQ 002 Page 1 of 219 Appendix A: Test Results of 2.4GHz SDR APPENDIX A: TEST RESULTS OF 2.4GHZ SDR .................................................................................................................. 1 APPENDIX A.1: TEST RESULTS OF CONDUCTED POWER SPECTRAL DENSITY ..................................................................................... 2 2.4GHz SDR, 1.4MHz BW .............................................................................................................................................. 2 2.4GHz SDR, 1.4MHz BW CA mode .............................................................................................................................. 5 2.4GHz SDR, 3MHz BW ................................................................................................................................................. 8 2.4GHz SDR, 3MHz BW CA mode ............................................................................................................................... 11 2.4GHz SDR, 10MHz BW ............................................................................................................................................. 14 2.4GHz SDR, 20MHz BW ............................................................................................................................................. 17 2.4GHz SDR, 40MHz BW ............................................................................................................................................. 20 APPENDIX A.2: TEST RESULTS OF 6DB BANDWIDTH ................................................................................................................. 23 2.4GHz SDR, 1.4MHz BW ............................................................................................................................................ 23 2.4GHz SDR, 1.4MHz BW CA mode ............................................................................................................................ 25 2.4GHz SDR, 3MHz BW ............................................................................................................................................... 27 2.4GHz SDR, 3MHz BW CA mode ............................................................................................................................... 29 2.4GHz SDR, 10MHz BW ............................................................................................................................................. 31 2.4GHz SDR, 20MHz BW ............................................................................................................................................. 33 2.4GHz SDR, 40MHz BW ............................................................................................................................................. 35 APPENDIX A.3: TEST RESULTS OF 99% BANDWIDTH ................................................................................................................. 37 2.4GHz SDR, 1.4MHz BW ............................................................................................................................................ 37 2.4GHz SDR, 1.4MHz BW CA mode ............................................................................................................................ 39 2.4GHz SDR, 3MHz BW ............................................................................................................................................... 41 2.4GHz SDR, 3MHz BW CA Mode ............................................................................................................................... 43 2.4GHz SDR, 10MHz BW ............................................................................................................................................. 45 2.4GHz SDR, 20MHz BW ............................................................................................................................................. 47 2.4GHz SDR, 40MHz BW ............................................................................................................................................. 49 APPENDIX A.4: TEST RESULTS OF CONDUCTED SPURIOUS EMISSIONS MEASURED IN 100 KHZ BANDWIDTH ...................................... 51 2.4GHz SDR, 1.4MHz BW ............................................................................................................................................ 51 2.4GHz SDR, 1.4MHz BW CA mode ............................................................................................................................ 55 2.4GHz SDR, 3MHz BW ............................................................................................................................................... 59 2.4GHz SDR, 3MHz BW CA mode ............................................................................................................................... 63 2.4GHz SDR, 10MHz BW ............................................................................................................................................. 67 2.4GHz SDR, 20MHz BW ............................................................................................................................................. 71 2.4GHz SDR, 40MHz BW ............................................................................................................................................. 75 2.4GHz SDR, 1.4MHz BW Bandedge .......................................................................................................................... 79 2.4GHz SDR, 1.4MHz BW CA mode Bandedge .......................................................................................................... 80 2.4GHz SDR, 3MHz BW Bandedge ............................................................................................................................. 81 2.4GHz SDR, 3MHz BW CA mode Bandedge .....................…
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Prüfbericht - Produkte Test Report - Products Appendix A CN22SRMQ 002 Page 74 of 219 20M-MIMO_Ant1_2462.5_0~Reference 20M-MIMO_Ant1_2462.5_30~1000 20M-MIMO_Ant1_2462.5_1000~26500 Prüfbericht - Produkte Test Report - Products Appendix A CN22SRMQ 002 Page 75 of 219 2.4GHz SDR, 40MHz BW TestMode Antenna Channel FreqRange [MHz] RefLevel [dBm] Result [dBm] Limit [dBm] Verdict 40M-MIMO Ant1 2422.5 Reference 5.93 5.93 --- PASS 30~1000 5.93 -38.12 ≤-24.07 PASS 1000~26500 5.93 -29.4 ≤-24.07 PASS 2437.5 Reference 8.41 8.41 --- PASS 30~1000 8.41 -37.65 ≤-21.59 PASS 1000~26500 8.41 -29.67 ≤-21.59 PASS 2452.5 Reference 5.05 5.05 --- PASS 30~1000 5.05 -38.31 ≤-24.95 PASS 1000~26500 5.05 -28.95 ≤-24.95 PASS Prüfbericht - Produkte Test Report - Products Appendix A CN22SRMQ 002 Page 76 of 219 40M-MIMO_Ant1_2422.5_0~Reference 40M-MIMO_Ant1_2422.5_30~1000 40M-MIMO_Ant1_2422.5_1000~26500 Prüfbericht - Produkte Test Report - Products Appendix A CN22SRMQ 002 Page 77 of 219 40M-MIMO_Ant1_2437.5_0~Reference 40M-MIMO_Ant1_2437.5_30~1000 40M-MIMO_Ant1_2437.5_1000~26500 Prüfbericht - Produkte Test Report - Products Appendix A CN22SRMQ 002 Page 78 of 219 40M-MIMO_Ant1_2452.5_0~Reference 40M-MIMO_Ant1_2452.5_30~1000 40M-MIMO_Ant1_2452.5_1000~26500 Prüfbericht - Produkte Test Report - Products Appendix A CN22SRMQ 002 Page 79 of 219 2.4GHz SDR, 1.4MHz BW Bandedge TestMode Antenna ChName Channel RefLevel [dBm] Result [dBm] Limit [dBm] Verdict 1.4M-MIMO Ant1 Low 2403.5 13.20 -41.83 ≤-16.8 PASS High 2469.5 13.36 -45.85 ≤-16.64 PASS 1.4M-MIMO_Ant1_Low_2403.5 1.4M-MIMO_Ant1_High_2469.5 Prüfbericht - Produkte Test Report - Products Appendix A CN22SRMQ 002 Page 80 of 219 2.4GHz SDR, 1.4MHz BW CA mode Bandedge TestMode Antenna ChName Channel RefLevel [dBm] Result [dBm] Limit [dBm] Verdict 1.4MCA- MIMO Ant1 Low 2405.12 13.20 -45.15 ≤-16.8 PASS High 2471.12 14.47 -45.71 ≤-15.53 PASS 1.4MCA-MIMO_Ant1_Low_2405.12 1.4MCA-MIMO_Ant1_High_2471.12 Prüfbericht - Produkte Test Report - Products Appendix A CN22SRMQ 002 Page 81 of 219 2.4GHz SDR, 3MHz BW Bandedge TestMode Antenna ChName Channel RefLevel [dBm] Result [dBm] Limit [dBm] Verdict 3M-MIMO Ant1 Low 2405.5 11.16 -45.66 ≤-18.84 PASS High 2468.5 14.80 -46.35 ≤-15.2 PASS 3M-MIMO_Ant1_Low_2405.5 3M-MIMO_Ant1_High_2468.5 Prüfbericht - Produkte Test Report - Products Appendix A CN22SRMQ 002 Page 82 of 219 2.4GHz SDR, 3MHz BW CA mode Bandedge TestMode Antenna ChName Channel RefLevel [dBm] Result [dBm] Limit [dBm] Verdict 3MCA-MIMO Ant1 Low 2408.2 11.35 -45.59 ≤-18.65 PASS High 2471.2 12.26 -46.71 ≤-17.74 PASS 3MCA-MIMO_Ant1_Low_2408.2 3MCA-MIMO_Ant1_High_2471.2 Prüfbericht - Produkte Test Report - Products Appendix A CN22SRMQ 002 Page 83 of 219 2.4GHz SDR, 10MHz BW Bandedge TestMode Antenna ChName Channel RefLevel [dBm] Result [dBm] Limit [dBm] Verdict 10M-MIMO Ant1 Low 2407.5 14.11 -17.29 ≤-15.89 PASS High 2467.5 13.93 -46.84 ≤-16.07 PASS 10M-MIMO_Ant1_Low_2407.5 10M-MIMO_Ant1_High_2467.5 Prüfbericht - Produkte Test Report - Products Appendix A CN22SRMQ 002 Page 84 of 219 2.4GHz SDR, 20MHz BW Bandedge TestMode Antenna ChName Channel RefLevel [dBm] Result [dBm] Limit [dBm] Verdict 20M-MIMO Ant1 Low 2412.5 8.93 -23.17 ≤-21.07 PASS High 2462.5 8.55 -46.41 ≤-21.45 PASS 20M-MIMO_Ant1_Low_2412.5 20M-MIMO_Ant1_High_2462.5 Prüfbericht - Produkte Test Report - Products Appendix A…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 7 | 15C | 2.42 GHz - 2.45 GHz | 392.60 mW |
DJI AGRAS T55
Equipment Class
NII - Unlicensed National Information Infrastructure TXDJI AGRAS T100S, DJI AGRAS T70S
Equipment Class
NII - Unlicensed National Information Infrastructure TXDJI RC Mini
Equipment Class
DTS - Digital Transmission SystemFixed Millimeter Wave Radar
Equipment Class
FDS - Part 15 Field Disturbance SensorRotational Active Phased Array Radar
Equipment Class
FDS - Part 15 Field Disturbance Sensor