
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
PKb‡c.Ú»D ̧UJ>’vT7000 108-011,P2A,Installation Manual R4 AIS Shipborne Class A Transponder System.docì\]Œ$×U®Y›Œ[vâõš`H ̧Ú„°ÏôvýõÏ81ÌßÎN¼óãé¶ÈkLMwÍtÙÝUMUõŽÇqHÄB ÄoXIìD<ä!^@B²På"^@ü$21çÜŸîªê[Õ·m£¼ÐÒ™ž¾uë;÷çœs¿sow}ãëïþ»ÏýþƒßÖr ̄G ́; ́¼YÑÞ•*;9ø1þÞ¹ÿþ§©iKð^...Ï×@j ˆ bØ H¤Òi¬< òa€<òs ?² ²² ²²rdäÈ.ÈGA-¹ ²²ò"È_‚¼ëÝš¶ òô}šö Ï€ü"ˆ r 2º¤i ̄‚üÈkhÚŸƒ|ëÇ¡Þ{4ís ŸyäÏ>e Ÿyä/€¼ñ^MKÞ§iß9ûiM{-ääO€¼òI_ùÈÿ¼_ÓÆÐ ́ÿ9ûMû/ójÚƒ|âgä“W4í Ÿº ú!×@6Ò ́¿Ù^Ñ ́ ̄‚ì¬jÚ_ìV5íuG ̄iÚ_ƒìÕ4ík †¦}äE ̃›ùWù.È÷@þäû ÿô...?Óž"•;¡5÷}e2³ð‚’_ýô’v ̄vüìñ³ßѾ£Í¾*w> ýáŸ,kŸ~v‰ÊÏ/Ñò/eë}Œä xóÍ”ý/^ú×üImòžþ_kï}ï¥^âåþíìû—áýuxãG`4ÿ^Óî¹{ZÿK- Ú¡ÅßúgMûÀO€...ßμ¤}Êï.Ö-ü{ÿâ’öà3šö+Ñ’v`üÆo.i¿v ̄¦yÍ Ô;N›h=•w0 í›_Ð}÷# ́?...ÏŸòKÚìKôû—rÃÍ_ö}KZ.õ }w¦ê‰÷Ïp½ÿð ûœ_Ñ?ñÂÏ¿^o€û‚Ô}ùwÄáù¼4ÅùêOiÚQ ×ãúÅKÜ¿èKôÇKõ牻§x|yI{Úýú ́æ¥íˆ ü=0~— ‹@^t‰éýù&ØË=ðþ»ÞÿõßýökKhO/~ejw¿õÙ%ípƒÖ} ́Ws8_‚†Ü v÷’Æì_ÿõ¾ÿ¾úûüÅ—— ́¥ég¡_ôSØ ̄xÏÏgþý‚ö7ð÷.|ݳypøñ£Ý½Ó÷H7 /HHxB’¾“^رÀzÄObâ&‰ÛícQLâ¾;Ⱥ~@ÂqDFQ8ò¢ä¼Jëœ Ýs„ 9ó“~8Nh•³ÈO@*Šd...xpÑ‹ À»‘0òOýÀ8q>ÒÛAÿ9éöÝàÔ‹WÈ16tä{=¼y ¶7îz½Òóãî ŒáBâμž7ðo{û aà‘qàŽ¡=‘Õ ̈4ÆNàŸ¶d4ŽFC{Ü€œõÝ„ôÝt²VŸøÑꟓ¶ë-“Näñ( z^Ôñº}ìvÑN«º ́ÂúÆ i?¹½μ½ ̄ߥC•/9‡»â$w- FEß¡ßÐhÓ`žèŽÜFªc'7èzñš¾ýKc„“±¼)«Až>½¼|d§±\[1iÙÞ£[Ë-åel`¿³½ßiëIç` “Ü ÉecÕºLnõÉ-È-„\>Œ<rÃs{Øãaã2¹ÿ"¹ññÃí£›»û’[rù™NØμlÓ ̈›M ̧¼t¿_™XVå"9\ßÙ>Ú¾NÒμ-ê]º ¤—`™Ë ̄HJ k*ÁZkTvƒ„Ú âÉá,g—ÃÙ®jTÖÑЩë Ý`ì ä ̈¶ªÃPÍÊãÁÈí>‡cfá‰I—c;JØu†mUÚçqâInrÛ÷Îä ̃u†é”c6Ó¬ì...ã@ ÕP‚jR(Pf ̈à ́~Aw› ̄^Ž×âx€x3ìºÅóÝRkÕœYÙxnDÍ<W Úª)ÔªöÏc¿ ApÈÇ’ =7-C ̈ÅÀ+Wb()1...»²é-Ц©e*¡YÍ©†g<ãñh48— CZJ¶€¬3ÈÕñ×ïÐ}90÷¦F9°Ã€ÍJ6-›VËQÂ-sÜy¦Õª+Á5œši5”@›ô-™VSIIK(™cZ-4«VhóM *+ARÕ ́àÜ,æNeUÖwÛd}àFCòxUAeÙ*‡äžeW ýP ̈Ñ`,M ̈ÈàŒZ9-w+§òÄëÀ„€‚R‹‚šÐ(äîäà¢ÇàÈ Äüá5ܺÀ5' ̧Éù ̈`zêj ̃iM0co¾UÜÚ†rS ÛÌ[ ®¡Œ={Iæ E ̧Of¹‚–PàLš 4ù ́_`\-%T£&Pëe® õÔà × pÞ$¶ÈQ5TS 6+;ö M5@îSõÊÎa»Ô áTV9 wªºª¶®#pÍòéqÔàêÎRš-áT¥ Ò2Õž7=5@îKÊ“~„ëÒn0'× Æ ¼aæxżîæJJ‰¥epjL©e— É\ü–¾Yø3<CM)\®”&Y&w¹¦àï43=³F³õØKpŽ Ô,_2MîƒM®½½ö.Y!»{$½h...lbþßöOHiûþ(&ûîÐ[D9€”‚<êyÒ y Ê×VÓ-0ÓnK E÷ ýÌäþk–/Ц-°-Êä¶áœ1ãÞk–‡Ó ̈v¥Íð μQ_Û=ãr76ËÝØá#Ѫl?ŸxÝ"ñ‚8Œä-u,5T>- ̃áC>¦äÊÎÎú Ù¹yþì·WÈÑÞæ Ùêì/éV ̄ÊÕÙjê¡Î¬ˆý„+7¶: Š#S 8 ̧itB:ãúqtP„̃œY-“œ†@¶ÜCSŸØx²°¡Ø€ BçpK ÷w†‡°¥ƒÄÔ¥åjx ̃3ËÃ#òÝZe7ˆpS†Lý ́”ë"õ-±šŽp[nâ2Rõššc¢a&†²L [¬ÂPSaNTXb ̃×x SÙš Ûyn£-5h{añeȶ²3AÎp£2dG y²Qˇ‡Û·4óìE.ÝÕÌN®TØ:1Ë— C‘„ù¤™îëªèñ |=Ù¹aôæ[Ž/ÂCùj'uîlyñsI8*çj"37˳I‘šK»7 ̃ÚRμE†nÔ+ínßB„é ̃G Ðè‘ ýqä÷ ¾ù© $Ói‹ Þ*]±m–oY°®F> üf&lî‚ÕF'nW-àl‘qY¥Ë·Í2. ¢Û–î9¹FX ÎÂr )×ÓRÒÃr0‹nIkBêÛÃÈ„Œ FY®U¤jVéRi³TÍ¢;—EZCÆ ̧ÕÔò€k•.{6Ëå,¶·I•±®]Ê Éð ̧k•›åvôªÍ8Ñt–ä°– ¬Íaa’ðBsb«)q ̃+Í&›üó:â ̈é ̈st—r¢ådž}Ø"œÝÐfåæÑBãâUÜm–¢ ,džM5ÜçaÉîlîÍqáߥ¡Üf™ ]ÁC?¶L ́G^×?áÑJÞ^‘ýYå¡—e6Î¥ÓÃZ< ƒ¢\[¤{ópM†›ç]rLSÓb ̃‚hɱÄ1[yøg ›ó4Ýh=ò †ÉAÅ)[é-žÍò5§²~x ̧½¿μ»¹Ý–£‰sμò°nRG[- ¼ ç?OÖ«ùhã‰yÈIÄyzÁ4q³Ëƒ ̧ÙÈé0A]ýF‘—°Ålbw{“Ô£n® ̃)&Ø€½Üíò(n6sz-Ð |q•mmÄÞÀë&aμpOtæÌp+§Â@v•TpÇtÊçÛªåT8Ø‹AÇn$7$‹{¥S>õ– ‘®3àcðýCvÌLÚãQáRgq'upöÓÇçzî Z—Ÿ4:®ê“ý I@0tôçUtÜ¥9 £À#›ü¶Àz&»b·VL.w¹sa,5+ø‘°R¡ÔÒM¾ŒRêFÃw&í...–hg)ÀVW° «Ä+¦ìþÙZ€®0Ù²e§{®ì³•?‡cÅve÷ÚÛØá%¹ƒ*Z&=iÒq%KçY™&êl•žÙPÖÙ+§³1·¡KKÓ²:~ Lg‹y]v.;«Ë–ê²³ºìÊÞÇpÛwoû§, q;ÈL¢nÌ¡ŽJD¶ÜÉncðó•ÝÝΔÂèxE‹®lŒýA²ê³”à4ò“sÒñâä*Ö1ókGNU½r@¿4ùj¥(:ß›Ñqo~z4— Ç€ÁšÙ¤ÃÒ6Ùhõü&-”nrÑ+éM*½N?–o1éìÀn±L6žø8 ̄†G¶‘¤ã>:þÁŽμ ̄-?þ1¾i@ ÍJzïƒY’- zÁ–ì<è ̧.M ́ó^ŽUóŽÊsYU{Á”U—ï³C9t|Ç ¼â/~Àq‘D`Y‰—Ú„§™í‰kH^ÙWÎØld*ƒóewô1ÃAƒ¡5Ó@Ö ¡ûC ̧]Xìc2ð‡~ '-!rBFF¡_ãC»é$ ÇÜÈ #¿“žCO,ÖC¬±éF§!éàñ¬Þš“”Cμœë- žÓ»Ïiéme9©Þ’æ”X<7'Ô[ós:¬S“ÑKe9-Pšé-ÙœF7jÅI‰N÷u%Y...ηcg½‰n¢Ä}zu– -놑¦Ûº]Öß"ÝÕçÓU}>Ýԋ袮F÷2tÎÏó9ã-:ë$têX‹:ëmºÙûX„®^Ìèêå”®QÄé9R׳ºæ -k–óºf±kå ̃Q“s;^žV EŠüÎ0 -½$åxpE...å¦ Ï£μ&ÆSHö Ú,Ý3,ᣥŔ^– >V¾í3l)ñãÅRêÇ ̄¥ÉŸá(Ñ? ̈VH-44ê”éÍ:cÅhR’&qS\‡ºG€Ôxi’U1ZxË c4k ́8Ëy!ØçÁþõÝl©-á’ü’#a“ô’üàf¶_¦Ai¢¤²èSÅ4¡Š#%< */zRbÚEÄÓt2Ô“},$Ÿü²*ý¤Õ$ ìžyÔ¬¿}Ê1ä4ÔlÌ'¢fS•вš‹“Q³õé ̈U›KH-£€’² sI)-6—–²ZÄ”_,£¦–9ŸœÒ:3ôÔ²K ªåRTvI‹ø¥bšjÕQ]0è¥ [μ*|Õj¾UÆjμ8«í(°V»^È[í†"sμ›ú%] 6^¬ë„ÿPˆý> ̈K._§W ~dZuw8q{”U$æûŒêB›’ÙSȪ ¶ey-FJ ̄ƒzK9Tß/×ÓLéi,Ø?r í9sî)„Oy#š*hea.Öˆ3öÅËÒV ́ZÁΑ&-pª¹¥^,Ž“Ê- p½Z)þr ̧CÖÎÀ6ª²}äá + ́U:...-ªâÖ•T¡£¢°ž5ÎZUJÏ¥øuü ́“5©ñgWx9ôÔ ̄t=ÊnÓ¾-@ù3.º@ê›uQ Ä7[(çfFcŠdUeT: Ûƒæ ́º-->ùeO/öNàÉE-–¾Ôëžõ Ò“›š`é¢A²ª©Ù)p )μžkØÀ¤ËŒ8%¬r»í 9 ̧N:ë7·Ûºž_ã:8¥KœMÃ-G,Ô3÷gFâ>³í)8í„„ÿ’+ì:¬'Qˆ Ð-’ÝÎã«Gd ̄jXcÕÈ}U€« ́À™¶ ...- ̧áŸöWã‘Ù„Ò×>ŒŠ®zZ— ™Ñ¥ö£¢¬‘V> ̧Èw}„ŠžfZ8 ̄ê÷eÄí*:ZiNUý+3âþTL.7åºþ X#dl YäV‹YäTÊ3 ™Òì@ê¢6–åžôn ̄>³Ï«w¦ÿ ̄$<õhVN{p‘ÐÙxÕjA¢`3’Dn}ˆìm- íl_?8Ú[ïûáz•<e<}i§ç¶ßó03\íy£IÀZƒYGȲüO®
Page Operational Description 1 (8) Document Class Jens Johansson Restricted Document Id Version Date PT- P1A 2003-08-11 Saab TransponderTech AB This document and attachments shall remain our property. They may not without our written consent, either in their original state or with any changes, be copied or reproduced, disclosed to or delivered to anyone unauthorized nor used for other purposes than what has been confirmed by Saab TransponderTech in writing. Saab TransponderTech AB, SWEDEN PX-00-0050 A Appendices Project designation R4 Document title Operational Description for the R4-AIS transponder Distribution Page Operational Description 2 (8) Document Class Jens Johansson Restricted Document Id Version Date PT- P1A 2003-08-11 Saab TransponderTech AB This document and attachments shall remain our property. They may not without our written consent, either in their original state or with any changes, be copied or reproduced, disclosed to or delivered to anyone unauthorized nor used for other purposes than what has been confirmed by Saab TransponderTech in writing. Saab TransponderTech AB, SWEDEN PX-00-0050 A DOCUMENT VALIDATION Name Dept. Code/ Function Date/ Signature Prepared Jens Johansson PS-JJ Reviewed Nils Willart PS-NW 2003-08-15 Approved DOCUMENT CHANGE RECORD Issue Change order Date Pages affected Motive for and information on the change P1A 2003-07-02 First draft Page Operational Description 3 (8) Document Class Jens Johansson Restricted Document Id Version Date PT- P1A 2003-08-11 Saab TransponderTech AB This document and attachments shall remain our property. They may not without our written consent, either in their original state or with any changes, be copied or reproduced, disclosed to or delivered to anyone unauthorized nor used for other purposes than what has been confirmed by Saab TransponderTech in writing. Saab TransponderTech AB, SWEDEN PX-00-0050 A CONTENTS 1 INTRODUCTION .................................................................................................................4 2 GENERAL .............................................................................................................................4 3 TRANSCEIVER FUNCTIONAL BLOCKS ......................................................................6 3.1 T RANSMIT/RECEIVE SWITCH............................................................................................6 3.2 RECEIVER SIGNAL SPLITTER.............................................................................................6 3.3 RECEIVER 1, 2 AND 3........................................................................................................6 3.4 TRANSMITTER EXCITER....................................................................................................7 3.5 TRANSMITTER POWER AMPLIFIER....................................................................................7 4 DSP SUBSYSTEM ................................................................................................................7 4.1 SIGNAL PROCESSING FUNCTIONS......................................................................................7 4.2 MODULATION SCHEMES...................................................................................................7 4.3 DSP FUNCTIONS...............................................................................................................8 Page Operational Description 4 (8) Document Class Jens Johansson Restricted Document Id Version Date PT- P1A 2003-08-11 Saab TransponderTech AB This document and attachments shall remain our property. They may not without our written consent, either in their original state or with any changes, be copied or reproduced, disclosed to or delivered to anyone unauthorized nor used for other purposes than what has been confirmed by Saab TransponderTech in writing. Saab TransponderTech AB, SWEDEN PX-00-0050 A 1 INTRODUCTION This document describes the major blocks and their function in the transceiver part of the R4 transponder. 2 GENERAL The R4 transceiver can be divided into the following functional blocks: 1. Transmit/Receive switch 2. Receiver signal splitter 3. Receiver 1 4. Receiver 2 5. Receiver 3 6. Transmitter exciter 7. Transmitter power amplifier Page Operational Description 5 (8) Document Class Jens Johansson Restricted Document Id Version Date PT- P1A 2003-08-11 Saab TransponderTech AB This document and attachments shall remain our property. They may not without our written consent, either in their original state or with any changes, be copied or reproduced, disclosed to or delivered to anyone unauthorized nor used for other purposes than what has been confirmed by Saab TransponderTech in writing. Saab TransponderTech AB, SWEDEN PX-00-0050 A The major functional blocks of the transceiver are shown in the diagram below: TX and RX RF Switch RX Detector Circuits I+ I- Q+ Q- TX Pwr Cntrl TXEN PA Bias Bandpass Filter PA Driver PA Module Power Control Circuitry Harmonic Filter Coupler TX REVTX FWD TX I/Q in 12.8MHz Fref PLL1 PLL2 RX1 LO1 RX1 LO2 200-208MHz 45MHz SDATA SCLK CS TX TXEN Splitter 1st RF Filter LNALP Filter RX1 AGC 45MHz XTAL Filters 12.5kHz BW 25kHz BW AGC Amp IF AmpMixer 2nd RF Filter RX1 LO1 Vtune RX1 RX2 AGC 45.1MHz XTAL Filters 12.5kHz BW 25kHz BW AGC Amp IF AmpMixer 2nd RF Filter RX2 LO1 Vtune RX2 RX3 AGC 55MHz XTAL Filters 25kHz BWAGC Amp IF AmpMixer 2nd RF Filter RX3 LO1 RX1 BW Select RX2 BW Select RX1 I/Q out RX2 I/Q out RX3 I/Q out CS RX1 CS RX2 Vtune RX3 Plus some digital circuitry ADCsDACs EEPROM SPI Bus IQ Modulator TXLO Buffer AD6459 IQ Demodulator RX1 LO2 I+ I- Q+ Q- AD6459 IQ Demodulator RX2 LO2 I+ I- Q+ Q- AD6459 IQ Demodulator RX3 LO2 I+ I- Q+ Q- PLL1 PLL2 RX2 LO1 109.9 - 117.9MHz 45.1MHz PLL1 PLL2 RX3 LO1 210-218MHz 55MHz PLL1 PLL2 247-255MHz 92MHz TXLO 155-163MHz TX Offset Mix Architecture CS RX3 RX2 LO2 RX3 LO2 Page Operational Description 6 (8) Document Class Jens Johansson Restricted Document Id Version Date P1A Saab T…
Text truncated - open the document above for the full version.
R4 transceiver active device function description ComponentTypeFunction RF board, Receiver 1 TR35BFR 520 TransistorLNA bias regulator TR10BFR 520 TransistorLNA amplifier IC2ADE-1H, mixerHigh level mixer TR1BFR 520 TransistorPost IF amplifier IC1RF2436IF bandwidth filter switch IC20RF2436IF bandwidth filter switch TR5BC 847, TransistorVCO on/off switch D27MA4ST407CK, cap diodeVCO varicap TR29BFR 520 TransistorVCO oscillator OSC12TXO4080 12.8MHz 2.0 ppm12.8 MHz Reference oscillator IC22LMX2332, PLL ICDual Integrated Phase locked loop TR30BFR 520 TransistorVCO buffer amplifier TR6BFR 520 TransistorVCO buffer amplifier TR31BC 847, TransistorVoltage regulator TR28BC 847, TransistorVoltage regulator TR50BC 858 TransistorPLL lock detect switch TR2BF998 MOS FET TransistorAGC amplifier TR27BC 847, TransistorAGC control IC4AD6459, ICI/Q Demodulator D17, 18BB535, cap diode VCO varicap TR16BF 517A, TransistorVCO oscillator TR3BFS 17A, TransistorVCO buffer amplifier RF board Receiver 2 MX2ADE-1H, mixerHigh level mixer TR7BFR 520 TransistorPost IF amplifier IC7RF2436IF bandwidth filter switch IC23RF2436IF bandwidth filter switch TR11BC 847, TransistorVCO on/off switch D29MA4ST407CK, cap diodeVCO variable capacitance TR34BFR 520 TransistorVCO oscillator IC31LMX2332, PLL ICDual Integrated Phase locked loop TR36BFR 520 TransistorVCO buffer amplifier TR12BFR 520 TransistorVCO buffer amplifier TR37BC 847, TransistorVoltage regulator TR33BC 847, TransistorVoltage regulator TR43BC 858 TransistorPLL lock detect switch TR8BF998 MOS FET TransistorAGC amplifier TR32BC 847, TransistorAGC control IC9AD6459, ICI/Q Demodulator D33, 34BB535, cap diode VCO varicap TR39BF 517A, TransistorVCO oscillator TR9BFS 17A, TransistorVCO buffer amplifier RF board Receiver 3 IC12ADE-1H, mixerHigh level mixer TR13BFR 520 TransistorPost IF amplifier TR44BC 847, TransistorVCO on/off switch D21MA4ST407CK, cap diodeVCO variable capacitance TR21BFR 520 TransistorVCO oscillator IC27LMX2332, PLL ICDual Integrated Phase locked loop TR20BFR 520 TransistorVCO buffer amplifier TR41BFR 520 TransistorVCO buffer amplifier TR42BC 847, TransistorVoltage regulator TR38BC 847, TransistorVoltage regulator TR45BC 858 TransistorPLL lock detect switch TR15BF998 MOS FET TransistorAGC amplifier TR40BC 847, TransistorAGC control IC13AD6459, ICI/Q Demodulator D35, 36BB535, cap diode VCO varicap TR51BF 517A, TransistorVCO oscillator TR14BFS 17A, TransistorVCO buffer amplifier RF board Transmitter IC17U2793A, ICI/Q Modulator IC15UPC2708TBTransmitter driver amplifier TR17BC 847, TransistorCurrent regulator TR18BC 847, TransistorCurrent regulator D32MA4ST407, cap diodeVCO varicap TR46BFR 520 TransistorVCO oscillator TR22BC 847, TransistorVCO bias regulator TR47BFR 520 TransistorVCO buffer amplifier TR48BFR 520 TransistorVCO buffer amplifier IC18ADE-1Transmitter frequency mixer TR24BFS17A TransistorPost mixer amplifier IC19LMX2332, PLL ICDual Integrated Phase locked loop TR25BC 858B TransistorPLL lock detect switch D23BB535 cap diodeVCO varicap TR26BFS17A TransistorVCO oscillator TR52BFS17A TransistorVCO buffer amplifier TR19BFG35 TransistorPower amplifier driver D23MA4P1250 diodePIN switch diode IC30M57719 ICPower amplifier module D20MA4P1250 diodeT/R switch PIN diode D24MA4P1250 diodeT/R switch PIN diode IC16LMC7101 ICFWD power detector amplifier IC26LMC7101 ICREF power detector amplifier D22-ABAS70-07 diodeRF detector D22-BBAS70-07 diodeRF detector D31-ABAS70-07 diodeRF detector D31-BBAS70-07 diodeRF detector IC14LMC7101 ICRF power control IC28 A-BLMC6482 ICRF power control TR81BD676 TransistorRF power control regulator IC2574HC00, ICTX ramp up-down time control DTR54BC 847B Transistorramp control switch TR23BCV27 Transistorramp comtrol switch DTR55PMBF170 Transistorramp control switch IC11MAX1111.ADCTX rev and fwd power A-D converter IC5MAX529, DACRx and Tx control A-D converter IC6TLC274, ICBuffer, driver for RX control functions TR4BC 847B TransistorCurrent regulator IC1025LC040, ICParameter EEPROM Baseband Processor / Power supply Board IC7MAX811 ICReset circuit IC10SN74LVC08 IC IC11TMS320VC5402, ICHost /transmitter DSP IC12XCS05XL-4VQ100IFPGA IC13SST39VF400, ICFlash memory IC14SN74LVC08 IC IC15TMS320VC5402, ICReceiver 1 DSP IC16SN74LV138A IC IC17TMS320VC5402, ICReceiver 2 DSP IC18TMS320VC5402, ICReceiver 3 DSP IC19SN74ALVC32 IC20AK5353, ICReceiver 1 ADC IC21AK5353, ICReceiver 2 ADC IC22AK5353, ICReceiver 3 ADC IC23AK4380, ICTransmitter DAC IC24TPS763181.8 V voltage regulator IC26TPS763181.8 V voltage regulator IC27TPS763181.8 V voltage regulator IC28XC74UHU04WMInverter IC29TPS763181.8 V voltage regulator IC30LMV324, ICOP amplifier IC31LMV324, ICOP amplifier IC32LMV324, ICOP amplifier IC34XC17S05XLPROM IC35AK5383Receiver 1 ADC IC36AK5383Receiver 2 ADC IC37AK5383Receiver 3 ADC IC39LMV324, ICOP amplifier IC40SN74LVTH245A IC41SN74LVTH245A IC42SN74LVTH245A U1MAX16276V Voltage regulator U11MAX16273.3V Voltage regulator U21LT17645V Voltage regulator U31PKG2623DC/DC converter, 18 -36VDC in 2 x 12VDC out, 60W
DELTA Development Technology AB REC-237C75 Rev. - Page 3 of 49 Date: 2002-12-19 CONTENTSPage 1 SCOPE ...............................................................................................................................4 2 IDENTIFICATION ..........................................................................................................5 3 SUMMARY OF RESULT ...............................................................................................6 4 GENERAL TEST SET UP ..............................................................................................7 5 DRY HEAT ....................................................................................................................... 10 6 DAMP HEAT (STEADY STATE) .................................................................................. 11 7 LOW TEMPERATURE (COLD) ................................................................................... 12 8 VIBRATION - RESONANCE SEARCH ....................................................................... 13 9 VIBRATION – ENDURANCE........................................................................................ 15 10 CONDUCTED RADIO FREQUENCY EMISSION TEST........................................ 17 11 RADIATED RADIO FREQUENCY EMISSION TEST ............................................ 20 12 CONDUCTED RADIO FREQUENCY IMMUNITY TEST...................................... 28 13 RADIATED RADIO FREQUENCY IMMUNITY TEST .......................................... 31 14 ELECTRICAL FAST TRANSIENT/ BURST IMMUNITY TEST........................... 33 15 POWER SUPPLY VARIATIONS ................................................................................ 36 16 POWER SUPPLY FAILURE........................................................................................ 37 17 REVERSE POLARITY CHECK.................................................................................. 38 18 ELECTROSTATIC DISCHARGE IMMUNITY TEST ............................................ 39 19 COMPASS SAFE DISTANCE ...................................................................................... 42 20 TEST EQUIPMENT ...................................................................................................... 45 21 REVISION....................................................................................................................... 49 DELTA Development Technology AB REC-237C75 Rev. - Page 4 of 49 Date: 2002-12-19 1SCOPE This report gives the result of an EMC (Electromagnetic Compatibility) test on R4 AIS transponder. The abbreviation EUT mentioned in this report stands for Equipment Under Test and is thus equal to R4 transponder. The purpose of this test was to measure the emission of RF (radio-frequency) electromag- netic fields generated by the EUT and to verify the capability of the EUT to satisfy the requirements of function under influence of electromagnetic interference all in accordance with the test procedures below Test Procedures: Emission according to IEC 60945:2002 •Conducted RF emission:CISPR 16-1 (1993), IEC 60945 (2002) •Radiated RF emission:CISPR 16-1 (1993), IEC 60945 (2002) Immunity according to IEC 60945:2002 •Dry heatIEC 60068-2-2:1984 + Amendments •Damp heat (steady state)IEC 60068-2-56:1988 •Low temperature (cold)IEC 60068-2-1:1990 + Amendments •Vibration (resonance search)IEC 60068-2-6:1995 •Vibration (random)IEC 60068-2-64:1993 •Conducted RF voltage:IEC / EN 61000-4-6 (1996) •Radiated RF field:IEC / EN 61000-4-3 (1995) •Fast transient/burst:IEC / EN 61000-4-4 (1995) •Power supply variationsIEC 60945:2002 •Power supply failureIEC 60945:2002 / IEC 61000-4-11:1994 •Reverse polarity checkIEC 60945:2002 •Electrostatic discharge (ESD):IEC / EN 61000-4-2 (1995/96) Compass safe distance according to IEC 60945:2002 •Compass safe distanceIEC 60945:2002 DELTA Development Technology AB REC-237C75 Rev. - Page 5 of 49 Date: 2002-12-19 2IDENTIFICATION 2.1Modifications incorporated in EUT. 1.Two Y capacitors on the power supply module were changed from 2,2 nF to 68 nF. (AVX SV03AC683KAA) The modification was done in order to improve the result of Conducted RF emission test. Tests performed previous to the incorporation of the modification were not repeated. The modification was considered not to have any negative effect of the result of previously per- formed tests. 2.2Test sequence for EMC tests. •Radiated emission. 30 MHz - 1 GHz •ESD •Fast transient/ burst. •Conducted immunity •Radiated immunity •Power supply failure/ interruption •Radiated emission 0.15 MHz - 30 MHz, 1 gHz - 2 GHz. •Conducted emission General description of the EUT (Equipment Under Test) The R4 transponder is a vessel transponder for AIS (Automatic Identification System) EUT: Model R4 AIS transponder EUT: Part no152.20012.001 EUT: Serial no001002 EUT: Power24 VDC EUT: ManufacturerSAAB TransponderTech AB Project number237C75 Client: CodeC75 Client: CompanySAAB TransponderTech AB dept. Client: ReferenceMikael Pettersson Test date:2002-09-23 to 2002-12-19 Test place:DELTA Västerås DELTA Hörsholm DELTA Development Technology AB REC-237C75 Rev. - Page 6 of 49 Date: 2002-12-19 3SUMMARY OF RESULT The result of the tests on R4 transponder can be summarized as follows: 1) Passed = Complied with the specification. Failed = Did not comply with the specification. See relevant chapter for details. Criteria, see chapter 4.5 Criteria for approval. 2) With the modification described in chapter 2.1 implemented. EmissionPortLimitsResult 1) Conducted emissionDC power portlimits of IEC 60945Passed 2) Radiated emissionEnclosurelimits of IEC 60945Passed Immunity Enclosure port Signal ports24 VDC port Earth ports Result/ Criteria 1 ) Dry heat+55 o CPassed Damp heat (steady state)40 o C 93% RHPassed Low temperature (cold)-15 o CPassed Vibration (resonance search) 2-13 Hz: ±1.0 mm 13-100 Hz: ±0.7 g Passed Vibration (random)2 - 100 Hz, 1GPassed Conducted RF voltage-10 V10 V10 VPassed /A Radiated RF fields15 V/m---P…
Text truncated - open the document above for the full version.
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 3 | 8 | 156.525 MHz - 156.525 MHz | 12.5 W | 14.2G2B | 1000 Hz |

AtoN station
Equipment Class
AIS - Automatic Identification Systems
R5 AIS Transponder
Equipment Class
AIS - Automatic Identification Systems