
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
AIS AtoN N321/N323 USER MANUAL 3 COPYRIGHT The entire contents of this manual, including any future updates, revisions, and modifications to specifications, shall remain the property of Alltek Marine Electronics Corp. (hereinafter AMEC) at all times. Unauthorized copies or reproductions of this manual, either in part or as a whole, are strictly prohibited. The contents herein can only be used for the purpose subjects to this manual. DISCLAIMER AMEC is devoted in publishing and maintaining this manual. As we continue to improve our Aids to Navigation Automatic Identification System (AIS AtoN) products, information in this manual is subjected to changes without notice. AMEC does not make any representations or warranties (implied or otherwise) regarding the accuracy and completeness of this manual and shall in no event be liable for any loss of profit or any commercial damage, including but not limited to special, incidental, consequential, or other damages. CONTACT US AT: Technical Support: Sales & Marketing: ALLTEK MARINE ELECTRONICS CO., LTD 14F-2, No. 237, Sec. 1, Datong Rd., Xizhi Dist., New Taipei City, 22161, Taiwan TEL: +886 2 8691 8568 FAX: +886 2 8691 9569 www.alltekmarine.com (Your Local Dealer/Agent Warranty Stamp) Version 1.9 4 Please carefully read this manual before start using the AIS AtoN device. This product is an auxiliary monitoring device, and it should not be relied upon as the sole monitoring navigation system. Failure to operate this system in accordance with the operating instructions specified in this manual may result in unreliable or reduced system performance. Improper operation or installation may cause damage to the equipment or injury to personnel. AMEC shall in no event be liable for any loss of profit, personal injury, unpredictable damage arising out of incorrect operation or installation or any kind of product misuse or abuse. SAFETY INSTRUCTIONS WARNING DO NOT PLACE ANY LIQUID-FILLED CONTAINER ON TOP OF THE EQUIPMENT. Improper disassemble or modification could cause electrical shocks, fire, or personal injury. TURN OFF THE POWER IMMEDIATELY IF THE EQUIPMENT IS EMMITTING SMOKE OR FIRE. Continue operating the equipment could cause electrical shock or fire. Contact your nearest distributor for service. EVEN THOUGH THE EQUIPMENT IS WATERPROOF, PLEASE AVOID DIRECT CONTACT WITH RAIN FALLING OR WATER SPLASH. Electrical shock or fire could be resulted if water leaks into the equipment. ELECTRICAL SHOCK HAZARD. Do not open the case of the equipment. Only qualified personnel should work inside the equipment. WARNING TURN OFF THE POWER IMMEDIATELY IF WATER LEAKS INTO THE EQUIPMENT OR OBJECT DROPS INTO THE EQUIPMENT. Continue operating the equipment could cause electrical shock or fire. Contact your nearest distributor for service. DO NOT DISASSEMBLE OR MODIFY THE EQUIPMENT. Improper disassemble or modification could cause electrical shocks, fire, or personal injury. AVOID OPERATING THE EQUIPMENT WITH WET HANDS. Electrical shocks could be resulted if operating with wet hands. PLEASE USE THE PROPER FUSE. Damage to the equipment or fire could be resulted if using the wrong fuse. WARNING! 5 Table of Contents I. COPY RIGHT & DISCLAIMER II. WARNING & SAFETY INSTRUCTION 1 Introduction ........................................................................................................................................7 1.1 Introduction ........................................................................................................................... 7 1.2 WideLink N321/N323 Series and Comparison ........................................................................ 7 1.3 What’s in the box ................................................................................................................... 9 1.3.1 Downloadable Links ........................................................................................................... 9 2 Installation and Wiring...................................................................................................................... 10 2.1 Mounting Instructions ......................................................................................................... 10 2.2 Connection Interface............................................................................................................ 11 2.3 External Connections ........................................................................................................... 11 2.3.1 Antenna and Cables ......................................................................................................... 12 2.3.1.1 GPS (GNSS) Antenna Installation .............................................................................. 12 2.3.1.2 VHF Antenna Installation .......................................................................................... 13 2.3.1.3 Lighting Arrestor ....................................................................................................... 14 2.3.2 Wiring and Pin Assignments ............................................................................................. 14 2.3.2.1 Power Connector ...................................................................................................... 14 2.3.2.2 USB Connector .......................................................................................................... 15 2.3.2.3 N321/N323 Data Cable Wiring Assignment ............................................................... 16 2.4 Sensor Expansion Box (Optional) ......................................................................................... 17 3 Configuring your AtoN ...................................................................................................................... 18 4 Applications ...................................................................................................................................... 19 4.1 Type of AIS AtoN Station ..............................…
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2022-2924 16714 / 49 CFR Part 80 March 29, 2023 Leo Hsieh Alltek Marine Electronics Corp. 14F-2, No.237, Sec.1, Datong Rd. Xizhi District, New Taipei City, 221006 Taiwan Subj: AUTOMATIC IDENTIFICATION SYSTEM AID TO NAVIGATION (AIS AtoN); REVIEW We have reviewed the materials you have submitted with your email(s) dated December 12, 2022, requesting review of your AIS AtoN N321 and N323. These systems meet the technical requirements outlined in the International Electrotechnical Commission (IEC) standards 62320-2 and 60945. This equipment is not subject to U.S. Coast Guard type-approval per Title 46 U.S. Code of Federal Regulations subpart 159 nor should it be marketed as having received such type- approval. However, this letter may be used during the review and approval process performed by the U.S. Federal Communications Commission, as applicable. If you have any questions please feel free to contact this office at the email address or phone number above or at [email protected]. Please reference ID#: 2022-2924 in any correspondence related to this project. Sincerely, F. A. STROM Commander, U.S. Coast Guard Chief, Systems Engineering Division Office of Design and Engineering Standards By direction Commandant United States Coast Guard Martin Luther King Jr. Ave. SE, Stop 7509 Washington, DC 20593-7509 Staff Symbol: CG-ENG-3 Phone: (202) 372-1375 Fax: (202) 372-8379 Email: [email protected]
External photos N321 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 1 of 3 3-D-view 1 External photos N321 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 2 of 3 3-D-view 2 External photos N321 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 3 of 3 Connector view
External photos N323 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 1 of 3 3-D-view 1 External photos N323 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 2 of 3 3-D-view 2 External photos N323 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 3 of 3 Connector view
Alltek Marine Electronics Corp. 14F-2, No.237, Sec. 1, Datong Rd., Xizhi Dist., New Taipei City, Taiwan, 22161 www.alltkemarine.com Page 1 of 1 AIS Aids to Navigation (AtoN) Label The AIS Aids to Navigation (AtoN) N323 and N321 unit will be marked with following product label during manufacturing. Each unit will have unique production Serial Number. (1) Product Label: (2) Location of Product Label:
Internal photos N321 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 1 of 9 Internal view 1, housing opened Internal photos N321 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 2 of 9 Internal view 2, main PCB removed Internal photos N321 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 3 of 9 Internal view 2, connector PCB removed Internal photos N321 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 4 of 9 Main PCB, top view Internal photos N321 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 5 of 9 Main PCB, top view, shieldings removed Internal photos N321 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 6 of 9 Main PCB, bottom view Internal photos N321 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 7 of 9 Main PCB, bottom view, shieldings removed Internal photos N321 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 8 of 9 Connector PCB, top view Internal photos N321 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 9 of 9 Connector PCB, bottom view
Internal photos N323 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 1 of 9 Internal view 1, housing opened Internal photos N323 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 2 of 9 Internal view 2, main PCB removed Internal photos N323 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 3 of 9 Internal view 2, connector PCB removed Internal photos N323 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 4 of 9 Main PCB, top view Internal photos N323 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 5 of 9 Main PCB, top view, shieldings removed Internal photos N323 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 6 of 9 Main PCB, bottom view Internal photos N323 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 7 of 9 Main PCB, bottom view, shieldings removed Internal photos N323 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 8 of 9 Connector PCB, top view Internal photos N323 Examiner:Thomas KÜHNRevision:00 Date of issue: 08.12.2021Order Number: 21-112211page 9 of 9 Connector PCB, bottom view
Calculation: RF-Exposure for 156 MHz – 162 MHz transmitter Type identification: Type 1 AIS AtoN Station N321 In accordance to theCFR Part 47, §1.1310and RSS-102 Issue 5 S: Limit for power density according to - CFR Part 47, §1.1310:2.0 W/m 2 - RSS-102 Issue 5, Table 4: 1.291 W/m 2 P:12.5 W (rated output power, used because this value is higher than the peak value, documented in clause 5.4 of test report F212211E2) G: 2.86 dBi = 1.93 (max. antenna gain, declared by the applicant) D: Duty cycle: According to the Recommendation ITU-R M.1371-5 (02/2014) the maximum reporting rate for a AtoN Station is 3 s. So every 3 seconds a 27 ms telegram is transmitted as worst case. This is equal to a duty cycle of 0.9 % = 0.009. R: Distance in what the limit of S has to be reached: 0.2 m. 푆= 푃⋅퐺⋅퐷 4⋅휋⋅푅 2 ⇒ 푆= 12.5 푊⋅1.93 ⋅0.009 4⋅휋⋅(0.2 푚) 2 =0.432 푊 푚 2 The value of the power density is below the limit of CFR Part 47, §1.1310 for the “General population / Uncontrolled Exposure” and below the limit of RSS-102 Issue 5, Table 4 “General Public (uncontrolled environment)”. Base of the above calculations is the highest output power of the EUT.
Calculation: RF-Exposure for 156 MHz – 162 MHz transmitter Type identification: Type 3 AIS AtoN Station N323 In accordance to theCFR Part 47, §1.1310and RSS-102 Issue 5 S: Limit for power density according to - CFR Part 47, §1.1310:2.0 W/m 2 - RSS-102 Issue 5, Table 4: 1.291 W/m 2 P:12.5 W (rated output power, used because this value is higher than the peak value, documented in clause 5.5 of test report F212211E4) G: 2.86 dBi = 1.93 (max. antenna gain, declared by the applicant) D: Duty cycle: According to the Recommendation ITU-R M.1371-5 (02/2014) the maximum reporting rate for a AtoN Station is 3 s. So every 3 seconds a 27 ms telegram is transmitted as worst case. This is equal to a duty cycle of 0.9 % = 0.009. R: Distance in what the limit of S has to be reached: 0.2 m. 푆= 푃⋅퐺⋅퐷 4⋅휋⋅푅 2 ⇒ 푆= 12.5 푊⋅1.93 ⋅0.009 4⋅휋⋅(0.2 푚) 2 =0.432 푊 푚 2 The value of the power density is below the limit of CFR Part 47, §1.1310 for the “General population / Uncontrolled Exposure” and below the limit of RSS-102 Issue 5, Table 4 “General Public (uncontrolled environment)”. Base of the above calculations is the highest output power of the EUT.
Königswinkel 10 32825 Blomberg, Germany Phone: +49 (0) 52 35 / 95 00-0 Fax: +49 (0) 52 35 / 95 00-10 [email protected] www.phoenix-testlab.de Test Report Report Number: F212211E2 Equipment under Test (EUT): Type 1 AIS AtoN Station N321 Applicant: Alltek Marine Electronics Corporation Manufacturer: Alltek Marine Electronics Corporation Test engineer: Thomas KÜHN Report Number: F212211E2 Date of issue: 08.12.2021 Order Number: 21-112211 page 2 of 21 References [1] ANSI C63.26-2015, American National Standard for Compliance Testing of Transmitters Used in Licensed Radio Services [2] FCC CFR 47 Part 80, Stations In The Maritime Services [3] FCC CFR 47 Part 2, Frequency allocations and radio treaty matters; general rules and regulations [4] RSS-182 Issue 6 June 2021, Maritime Radio Transmitters and Receivers in the Band 156 – 162.5 MHz [5] RSS-Gen Issue 5 February 2021 Amendment 2, General Requirements for Compliance of Radio Apparatus [6] KDB 971168 D01 V03R01 April 2018, Measurement Guidance for Certification of Licensed Digital Transmitters TEST RESULT The requirements of the tests performed as shown in the overview (clause 4) were fulfilled by the equipment under test. The complete test results are presented in the following. “Passed” indicates that the equipment under test conforms with the relevant limits of the testing standard without taking any measurement uncertainty into account as stated in the introduction of ANSI C63.26 (2015). However, the measurement uncertainty is calculated and shown in this test report. Tested and written by: Signature Reviewed and approved by: Signature T h i s t e s t r e p o r t i s o n l y v a l i d i n i t s o r i g i n a l f o r m. Any reproduction of its contents in extracts without written permission of the accredited test laboratory PHOENIX TESTLAB GmbH is prohibited. The test results herein refer only to the tested sample. PHOENIX TESTLAB GmbH is not responsible for any generalisations or conclusions drawn from these test results concerning further samples. Any modification of the tested samples is prohibited and leads to the invalidity of this test report. Each page necessarily contains the PHOENIX TESTLAB Logo and the TEST REPORT NUMBER. Test engineer: Thomas KÜHN Report Number: F212211E2 Date of issue: 08.12.2021 Order Number: 21-112211 page 3 of 21 Contents: Page 1 Identification ............................................................................................................................................. 4 1.1 Applicant ........................................................................................................................................... 4 1.2 Manufacturer .................................................................................................................................... 4 1.3 Test laboratory ................................................................................................................................. 4 1.4 EUT (Equipment Under Test)........................................................................................................... 5 1.5 Technical data of equipment ............................................................................................................ 5 1.6 Dates ................................................................................................................................................ 6 2 Operational states .................................................................................................................................... 6 3 Additional information ............................................................................................................................... 6 4 Overview ................................................................................................................................................... 7 5 Test results ............................................................................................................................................... 8 5.1 Bandwidths ....................................................................................................................................... 8 5.1.1 Method of measurement (bandwidths) ..................................................................................... 8 5.1.2 Test results (bandwidths) .......................................................................................................... 9 5.2 Transmitter frequency tolerances................................................................................................... 10 5.2.1 Method of measurement (transmitter frequency tolerances) .................................................. 10 5.2.2 Test results (transmitter frequency tolerances) ...................................................................... 11 5.3 Spurious emissions on antenna terminals ..................................................................................... 12 5.3.1 Method of measurement (spurious emissions on antenna terminals) .................................... 12 5.3.2 Test results (spurious emissions on antenna terminals) ........................................................ 13 5.4 Transmitter power .......................................................................................................................... 15 5.4.1 Method of measurement (transmitter power) .......................................................................... 15 5.4.2 Test results (transmitter power) .............................................................................................. 15 5.5 Radiated emissions ........................................................................................................................ 16 5.5.1 Method of measurement (radiated emissions) ....................................................................... 16 5.5.2 Test results (radiated emissions) ........................................................…
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Königswinkel 10 32825 Blomberg, Germany Phone: +49 (0) 52 35 / 95 00-0 Fax: +49 (0) 52 35 / 95 00-10 [email protected] www.phoenix-testlab.de Test Report Report Number: F212211E4 Equipment under Test (EUT): Type 3 AIS AtoN Station N323 Applicant: Alltek Marine Electronics Corporation Manufacturer: Alltek Marine Electronics Corporation Test engineer: Thomas KÜHN Report Number: F212211E4 Date of issue: 08.12.2021 Order Number: 21-112211 page 2 of 24 References [1] ANSI C63.26-2015, American National Standard for Compliance Testing of Transmitters Used in Licensed Radio Services [2] FCC CFR 47 Part 80, Stations In The Maritime Services [3] FCC CFR 47 Part 2, Frequency allocations and radio treaty matters; general rules and regulations [4] RSS-182 Issue 6 June 2021, Maritime Radio Transmitters and Receivers in the Band 156 – 162.5 MHz [5] RSS-Gen Issue 5 February 2021 Amendment 2, General Requirements for Compliance of Radio Apparatus [6] KDB 971168 D01 V03R01 April 2018, Measurement Guidance for Certification of Licensed Digital Transmitters TEST RESULT The requirements of the tests performed as shown in the overview (clause 4) were fulfilled by the equipment under test. The complete test results are presented in the following. “Passed” indicates that the equipment under test conforms with the relevant limits of the testing standard without taking any measurement uncertainty into account as stated in the introduction of ANSI C63.26 (2015). However, the measurement uncertainty is calculated and shown in this test report. Tested and written by: Signature Reviewed and approved by: Signature T h i s t e s t r e p o r t i s o n l y v a l i d i n i t s o r i g i n a l f o r m. Any reproduction of its contents in extracts without written permission of the accredited test laboratory PHOENIX TESTLAB GmbH is prohibited. The test results herein refer only to the tested sample. PHOENIX TESTLAB GmbH is not responsible for any generalisations or conclusions drawn from these test results concerning further samples. Any modification of the tested samples is prohibited and leads to the invalidity of this test report. Each page necessarily contains the PHOENIX TESTLAB Logo and the TEST REPORT NUMBER. Test engineer: Thomas KÜHN Report Number: F212211E4 Date of issue: 08.12.2021 Order Number: 21-112211 page 3 of 24 Contents: Page 1 Identification ............................................................................................................................................. 4 1.1 Applicant ........................................................................................................................................... 4 1.2 Manufacturer .................................................................................................................................... 4 1.3 Test laboratory ................................................................................................................................. 4 1.4 EUT (Equipment Under Test)........................................................................................................... 5 1.5 Technical data of equipment ............................................................................................................ 5 1.6 Dates ................................................................................................................................................ 6 2 Operational states .................................................................................................................................... 6 3 Additional information ............................................................................................................................... 6 4 Overview ................................................................................................................................................... 7 5 Test results ............................................................................................................................................... 8 5.1 Bandwidths ....................................................................................................................................... 8 5.1.1 Method of measurement (bandwidths) ..................................................................................... 8 5.1.2 Test results (bandwidths) .......................................................................................................... 9 5.2 Transmitter frequency tolerances................................................................................................... 10 5.2.1 Method of measurement (transmitter frequency tolerances) .................................................. 10 5.2.2 Test results (transmitter frequency tolerances) ...................................................................... 11 5.3 Spurious emissions on antenna terminals ..................................................................................... 12 5.3.1 Method of measurement (spurious emissions on antenna terminals) .................................... 12 5.3.2 Test results (spurious emissions on antenna terminals) ........................................................ 13 5.4 Modulation characteristics .............................................................................................................. 15 5.4.1 Method of measurement (modulation characteristics) ............................................................ 15 5.4.2 Test results (modulation characteristics) ................................................................................ 15 5.5 Transmitter power .......................................................................................................................... 16 5.5.1 Method of measurement (transmitter power) .......................................................................... 16 5.5.2 Test results (transmitter power) ...................................................................…
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Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F212211E2 Date of issue: 08.12.2021Order Number:21-112211page 1 of 14 A.1 26 dB bandwidth 212211_009.wmf: 26 dB bandwidth on 156.025 MHz: 212211_012.wmf: 26 dB bandwidth on 162.025 MHz: A Offset 20 dB LVL Ref 45 dBmAtt 50 dB Center 156.025 MHzSpan 25 kHz2.5 kHz/ * 3DB RBW 300 Hz VBW 1 kHz SWT 280 ms 1 PK MAXH -50 -40 -30 -20 -10 0 10 20 30 40 1 Marker 1 [T1 ] 11.97 dB m 156.019511218 MHz 2 Marker 2 [T1 ] 38.00 dB m 156.025000000 MHz 1 Delta 1 [T1 ] -0.48 dB 11.498397435 kHz D1 38 dBm D2 12 dBm A Offset 20 dB LVL Ref 45 dBm 1 PK MAXH Center 162.025 MHzSpan 25 kHz2.5 kHz/ 3DB SWT 280 msAtt 50 dB * RBW 300 Hz VBW 1 kHz -50 -40 -30 -20 -10 0 10 20 30 40 1 Marker 1 [T1 ] 10.94 dBm 162.019511218 MHz 2 Marker 2 [T1 ] 37.76 dBm 162.025040064 MHz 1 Delta 1 [T1 ] -0.10 dB 11.538461538 kHz D1 37.8 dBm D2 11.8 dBm Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F212211E2 Date of issue: 08.12.2021Order Number:21-112211page 2 of 14 A.2 99 % bandwidth 212211_010.wmf: 99 % bandwidth on 156.025 MHz: 212211_011.wmf: 99 % bandwidth on 162.025 MHz: A Offset 20 dB LVL Ref 45 dBm Center 156.025 MHzSpan 25 kHz2.5 kHz/ 1 PK MAXH Att 30 dB * 3DB RBW 300 Hz VBW 1 kHz SWT 280 ms -50 -40 -30 -20 -10 0 10 20 30 40 1 Marker 1 [T1 ] 37.89 dBm 156.025000000 MHz OBW 9.575320513 kHz T1 Temp 1 [T1 OBW] 23.08 dBm 156.020232372 MHz T2 Temp 2 [T1 OBW] 22.93 dB m 156.029807692 MHz A Offset 20 dB LVL Ref 45 dBm 1 PK MAXH Center 162.025 MHzSpan 25 kHz2.5 kHz/ Att 30 dB * 3DB RBW 300 Hz VBW 1 kHz SWT 280 ms -50 -40 -30 -20 -10 0 10 20 30 40 1 Marker 1 [T1 ] 37.84 dBm 162.025000000 MHz OBW 9.415064103 kHz T1 Temp 1 [T1 OBW] 22.95 dBm 162.020232372 MHz T2 Temp 2 [T1 OBW] 21.74 dB m 162.029647436 MHz Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F212211E2 Date of issue: 08.12.2021Order Number:21-112211page 3 of 14 A.3 Spectrum Mask 212211_015.wmf: Spectrum mask transmit PRBS on 156.025 MHz: 212211_016.wmf: Spectrum mask transmit PRBS on 162.025 MHz: A Offset 20 dB LVL Att 50 dB * 1 PK MAXH Ref 40.7 dBm Center 156.025 MHzSpan 100 kHz10 kHz/ * 3DB RBW 300 Hz VBW 1 kHz SWT 1.15 s -50 -40 -30 -20 -10 0 10 20 30 40 80211F A Offset 20 dB LVL Att 50 dB * 1 PK MAXH Ref 40.7 dBm Center 162.025 MHzSpan 100 kHz10 kHz/ * 3DB RBW 300 Hz VBW 1 kHz SWT 1.15 s -50 -40 -30 -20 -10 0 10 20 30 40 80211F Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F212211E2 Date of issue: 08.12.2021Order Number:21-112211page 4 of 14 A.4 Transmitter conducted spurious emissions Transmitter operates on 156.025 MHz 212211_017.wmf: Transmitter conducted spurious emissions from 9 kHz to 150 kHz modulated with PRBS: The emissions around 70 kHz and 140 kHz caused by the measuring system and not by the EUT 212211_018.wmf: Transmitter conducted spurious emissions from 150 kHz to 30 MHz modulated with PRBS: Offset 20 dB A LVL * 3DB RBW 1 kHz VBW 3 kHz SWT 145 msRef 40 dBm Start 9 kHzStop 150 kHz14.1 kHz/ Att 35 dB * 1 PK MAXH -60 -50 -40 -30 -20 -10 0 10 20 30 40 D1 -13 dBm Ref 40 dBm * Offset 20 dB 1 PK MAXH A LVL 3DB Att 35 dB RBW 10 kHz VBW 30 kHz SWT 300 ms * Start 150 kHzStop 30 MHz2.985 MHz/ -60 -50 -40 -30 -20 -10 0 10 20 30 40 D1 -13 dBm Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F212211E2 Date of issue: 08.12.2021Order Number:21-112211page 5 of 14 212211_019.wmf: Transmitter conducted spurious emissions from 30 MHz to 1 GHz modulated with PRBS: 212211_020.wmf: Transmitter conducted spurious emissions from 1 GHz to 2 GHz modulated with PRBS: Ref 41 dBm * Offset 20 dB 1 PK MAXH A LVL Att 35 dB Start 30 MHzStop 1 GHz97 MHz/ * 3DB RBW 100 kHz VBW 300 kHz SWT 100 ms -50 -40 -30 -20 -10 0 10 20 30 40 D1 -13 dBm Offset 20 dB A LVL * 3DB RBW 1 MHz VBW 3 MHz SWT 10 msRef 0 dBm Start 1 GHzStop 2 GHz100 MHz/ Att 10 dB * 1 PK MAXH -100 -90 -80 -70 -60 -50 -40 -30 -20 -10 0 1 Marker 1 [T1 ] -51.48 dBm 1.000000000 GHz D1 -13 dBm Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F212211E2 Date of issue: 08.12.2021Order Number:21-112211page 6 of 14 Transmitter operates on 162.025 MHz 212211_024.wmf: Transmitter conducted spurious emissions from 9 kHz to 150 kHz modulated with PRBS: The emissions around 70 kHz and 140 kHz caused by the measuring system and not by the EUT 212211_023.wmf: Transmitter conducted spurious emissions from 150 kHz to 30 MHz modulated with PRBS: Offset 20 dB A LVL Att 35 dB * Ref 41 dBm 1 PK MAXH Start 9 kHzStop 150 kHz14.1 kHz/ * 3DB RBW 1 kHz VBW 3 kHz SWT 145 ms -…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 80 | 156.025 MHz - 162.025 MHz | 12.5 W | 16K0GXW | 0.8300000000 ppm |

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