FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. BG T&A Co./
  3. QFRWM200

QFRWM200VHF Handheld Marine Tranceiver

BG T&A Co.
VHF Handheld Marine Tranceiver - FCC ID QFRWM200 - BG T&A Co.
Click to zoom

Application Details

Equipment Class
GVH - Part 80 VHF Transmitter (GMDSS)
Date of Grant
Feb 05, 2003
Application Purpose
Original Equipment
Date of Application
Nov 07, 2002
Equipment Note
VHF Handheld Marine Tranceiver
Frequency Range
156.05000000 - 157.40000000
Company
BG T&A Co.
Country
South Korea

Documents & Files

Select a file to view

Users Manual

↗

External Photos

↗

ID Label/Location Info

↗
↗
↗
↗

Internal Photos

↗

Operational Description

↗

Parts List/Tune Up Info

↗

RF Exposure Info

↗
↗
↗
↗
↗
↗

Schematics

↗

Test Report

↗

Test Setup Photos

↗

Document Text

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

Users Manual

WM200 Operation Guide Draft WM200 REV2 2002-05-30 1 WM 200 Operation Manual Guide . LCD Description ... USA / CANADIAN / INTERNATIONAL display segment ... Channel Number display segment ... MEM Each Channel Scan Memory status display icon ... STEP Each Channel step status display icon ... TRI Triple Watch status display icon ... WX Weather mode status display icon ... ALERT Weather Alert option status display icon ... M Tx Output Power Mid (1W) state display icon MEM STEP TRI WX ALERT M L LOCK BUSY TX WM200 Operation Guide Draft WM200 REV2 2002-05-30 2 ... L Tx Output Power Low (0.5 W) state display icon ... LOCK Key-PAD Lock status display icon ... TX Transmit now display icon ... BUSY Receive now display icon ... Battery Level display icon ... Channel Name or Radio condition display segment WM200 Operation Guide Draft WM200 REV2 2002-05-30 3 . Power On Rotate Power/Volume Knob clockwise till it sounds “tick” to power on. When Power is on, the last used Country mode (USA / INT / CAN) and last used channel will be displayed with last set Tx Power H/M/L, Key Lock, Squelch Level and etc. ** Power On display . Volume Control Rotate volume knob clockwise to increase volume. To reduce volume, rotate the knob counterclockwise. . Channel Selection To change channel, press Up or Down Key. ** If pressing and holding Up or Down Key, channels are changing rapidly. Ex) Change to Channel 16 ** Bottom Line Slide ** Bottom Line display “ DISTRESS,SAFETY,CALLING “ “ DISTRESS ” ** When channel is changed, the Channel Full Name is scrolled and then it display an abbrviated word. . USA / CANADIAN / INTERNATIONAL Country mode Press U/I/C key within 1 sec, then it will change USA INTERNATIONAL CANADIAN in turn. ** When Country mode is changed, TX/RX channel is changed to Channel 16. MEM STEP TRI WX ALERT M L LOCK BUSY TX MEM MEM WM200 Operation Guide Draft WM200 REV2 2002-05-30 4 ** USA mode display ** INTERNATIONAL display Bottom Line display 3 sec “ SEL_USA” “Bottom Line Slide “SEL_INTERNATIONAL” ** CANADIAN display Bottom Line Slide “ SEL_CANADIAN” . Squelch Level Setting Press SQL (U/I/C) Key for over 2 seconds to enter Squelch Level setting mode. Ex) Squelch Level is 03 Bottom Line display “SQL -- 03” In the above, squelch level can be adjusted by Up or Down key. (Total 9 level: 0 ~ 8) Level 0 is squelch open regardless of RF condition. MEM MEM STEP MEM STEP MEM STEP WM200 Operation Guide Draft WM200 REV2 2002-05-30 5 On the above, if there is no key is pressed for 3 sec, it goes to Receive stand by mode. (Channel name display  ) . Name display Channel Name will be shown on the display in RX or RX stand-by mode. **  ) USA mode Channel 16 ** WX Channel 1 Bottom Line display “DISTRESS” Bottom Line display “ WEATHER1” . Receive operation When the radio receives the signal, the display will be as under and the radio will open the speaker to listen to the call. Bottom Line display 3 sec “RECEIVE“ MEM STEP BUSY MEM WX WM200 Operation Guide Draft WM200 REV2 2002-05-30 6 ** Receive Out operation When receive signal stops, it will display as under and lock the speaker. Bottom Line display 3 sec “STAND BY” . Transmit operation Press PTT Button to transmit the signal. If PTT button is released, the radio turns to Receive or receive stand-by mode. ** Transmit display . Tx in Power High Setting Bottom Line display “XMIT HI” . Tx in Power MED Setting Bottom Line display “XMIT MED” . Tx Power Low Setting Bottom Line display “XMIT LOW” ** It display XMIT HI/MID/LOW for 3 sec. and then return to the channel name display. ** Tx End display : When Transmit is ended. (PTT Button release) . Bottom Line display 3 sec “TX END” MEM STEP TX MEM STEP MEM STEP TX WM200 Operation Guide Draft WM200 REV2 2002-05-30 7 ** If PTT button is pressed in WX Channel mode / Tx inhibit Channel, Error beep tone sounds and “REC ONLY” is displayed. Ex) When PTT button is pressed in WX WX Channel 1. Bottom Line slide “REC ONLY” . 16 / 9 Channel If 16/9/TRI key is pressed shortly(within 1 sec.), the channel changes Channel 16 Channel 9 current Channel in turn. ** The current Channel display ** Channel 16 display ** Channel 9 display Bottom Line display Bottom Line display Bottom Line display “MAR OPER” “DISTRESS” “CALLING” . Triple Watch If 16/9/TRI key is pressed more than 2 seconds, Triple Watch starts its operation. Triple Watch operation is to check Channel 16 and Channel 9 by every 2 seconds and if there is a signal in Channel 16, it stays in Channel 16 until the signal stops. If there is a signal in Channel 9, it stays in Channel 9 checking Channel 16 by every 2 seconds. Bottom Line display Bottom Line slide Bottom Line slide “16-09-15” “16-09-15” “16-09-15” WX TX M STEP Blinking Blinking STEP TRI TRI MEM STEP TRI WM200 Operation Guide Draft WM200 REV2 2002-05-30 8 . SCAN operation . Memory Channel Scan If SCAN key is pressed shortly(within 1 seconds), Memory Channel Scan starts. (It scans only memorized channels.) . Priority Channel Scan Press SCAN key more than 2 sec. to start Priority Channel Scan. (Memory Channel SCAN + Channel 16 Scan) In scanning, press SCAN key to stop scanning. ** Memory Channel Scan display ** Priority Scan display (Scan List display at bottom line) “MEMORY SCAN 1,6,10,14,71,84” “PRIORITY SCAN 1,6,10,14, 16 ,71,84” ** Channel Scan sequence 1 6 10 14 1 16 6 16 10 16 71 84 1 6 14 16 71 16 84 16 1 16 6 . Weather If WX key is pressed shortly (within 1 sec.), the mode changes Weather  Marine mode. ** Weather Mode display ** Marine mode display Bottom Line display 3 sec Bottom Line display 3 sec “WX MODE” “USA MODE” or “INT MODE” or “CAN MODE” MEM MEM WX STEP WM200 Operation Guide Draft WM200 REV2 2002-05-30 9 . WX Alert If WX key is pressed more than 2 seconds, WX Alert is enabled or disabled. ** Stand-by on the Marine Channel ** WX Alert Checking Bottom Line display Bottom Line display 1 sec “DISTRESS” “WX ALERT” ** WX Alert check at Marine mode It checks al…

Text truncated - open the document above for the full version.

ID Label/Location Info

FCC MARKING/LABEL FOR PART 15 The following statement will also be placed on the device:  CAUTION: Device must be restricted to Occupational use to satisfy FCC RF Exposure Compliance. See Owner’s Manual for specific operating instructions. FCC ID : QFRWM200 BG Tech Model NO. : WM200 THIS DEVICE COMPLIES WITH PART 15 OF THE FCC RULES. OPERATION IS SUBJECT TO THE FOLLOWING TWO CONDITIONS : (1) THIS DEVICE MAY NOT CAUSE HARMFUL INTERFERENCE, AND (2) THIS DEVICE MUST ACCEPT ANY INTERFERENCE RECEIVED, INCLUDING INTERFERENCE THAT MAY CAUSE UNDESIRED OPERATION.

ID Label/Location Info

FCC MARKING/LABEL FOR PART 15 The following statement will also be placed on the device:  CAUTION: Device must be restricted to Occupational use to satisfy FCC RF Exposure Compliance. See Owner’s Manual for specific operating instructions. FCC ID : QFRWM200 BG Tech Model NO. : WM200 THIS DEVICE COMPLIES WITH PART 15 OF THE FCC RULES. OPERATION IS SUBJECT TO THE FOLLOWING TWO CONDITIONS : (1) THIS DEVICE MAY NOT CAUSE HARMFUL INTERFERENCE, AND (2) THIS DEVICE MUST ACCEPT ANY INTERFERENCE RECEIVED, INCLUDING INTERFERENCE THAT MAY CAUSE UNDESIRED OPERATION.

Operational Description

                     !"$#$#%'&)($*,+.-)/*10)&2*)34657&)(.8.9$-23:-)78&)7-;9$4=<>)738-2*4)?'4=(.-@<&23(A)BC'D EFG@HI2JKL)MN O$P=KQI2JK.RQF.GQSI)K.R2HTJQQG)SUSG$O$G2JVG)SU=I)K.WO2P,K.QSP=XO2JSO,Y.JQR2Z [ ['\]=\^_,\ \]=\^_,\` ` abcedc$f.c2ghc)dif$gdf)j.gkl.m)n=okp m=jl)q,f$n,rhc)dp$gn,r p2j.o$c2dbckc2dn2m$srt uwvxyez{|}~1=€‚2ƒ„… †)‡.ˆ@‰Š‹Œ6Ž2$)‘“’” •—–˜š™=›œ—žŸ )¡¢,£¤¥¦2§. ̈@©$ª,§«.¬«“­«ª)®i ̄2°¦¥±²)³²$ ́μ¶,·= ̧¹³μ²)·º»=¼6½—¾T¿)³¹ ̧¹²,·º'À)¶2±μÁ±²)³²$ ́.μ¶=·, ̧¹³μ²)·Â ÃÄÅÇÆÅ.È$Å2ÉÊÅÌË.ÉÍ,ÎÏ)ÐÉËÑÆÒ,ÓÔÅ$ÕÑÔÄ.ÆÒ=ÓÍ=Ä×ÖØÙ2Ú.ÛÇÜÝ)ÞÝ$ßàÝ.Ûâáãäw哿$ç)èTäié$ê$é)è ëiì$í.î,ïëð“ñ2ò$ïëiì$í$ó2ïôõ=ö÷ô“õ.øùúû$ü)ùú“û$ýþÿ   ÿ  “û .þ  "! #$%#&%' #()&* + , *-$.'-// *-%-*-$ $  &#01$  '-&# + ' $324$5(76 8-9 *  :;<>=?@ABC=D"E>? F"GIH.J KLM-NO-PQRSUTQRM5VWHM XYKJ.KMZ[5V"VR3\^]`_ N J H.RP^abcd8ef5ghi)jklmno-pm qIers pm tuv uwxIyu z3{w|}~>€‚vƒ„4yy|3…^†u}yyuw‡-ˆ"‰Iu ‚IuyŠ|3‚ tvIx‹‚xwuC}ŒIu-zCxIy  Œ uwށv5y| ‘’“”‚ tvIx‹–• ‡†  ‰4—-˜7Š8‰™‰”‚”wu-‚I|vIxIyu-zv”ƒ-xwx‹‹u‹"x y8^4šI˜ ›5œŸž ¡`¢ £¤5¥¥¦-¡C¥§3 ̈"©-œª«"¬­I®– ̄>°±)²³ ́μI¶5· ̧¹Iº»¹·¼ ́½ ¾À¿ÁÂÄÃÅÄÆ)ÇÈÉÊÈË–Ì ÍÎÏÐÑCÒ-ÓÔÕIÖרÙÚÛÝÜÑ-Þ`ÓÒ.ÖÛß×ÓØÓà-áYÖâ-Úã5äÀÍæåáçÄÖ äŽÐÑ3ÖÛß3è^é3ÖÕ áÄÓÕßã5ääà-á äÚÄÐê–ëì–ÐÑ`Ðê^í Ðê>ëîÓÕ ï×ãIáà ÒÄÞðñò^ÓóIàÙì^ÞðñôIÚï Ö×õÒIï-Ó××Ö äÚÙí)ö÷IàøÒIÓÔÕIÖזØÙÚÛùÞðñòŽÓóIàَÓÒ Ùà-ØÓÕIà-áîÙàÛÀÚ-úIÓÕ Ôîã-Õ-ÕIà-ï-à ÒIÒ5ÖÙû`Ò ßã ÙÓÚã5Ò`Ò ÓÔÕ Ö×ÖÕIáøáà äà-ïIäà áøä÷-ÙÚãIÔ÷Ä÷IÓÔ÷ ÔÖÓÕC×ÓÕ àÖÙÖÛßíö"÷ ÓÒáà äà-ï äà-á3Ò ÓÔÕ Ö×Úã5ääÚÄÐê–ë`ßÓÕ üí ý.þÿÿ    "!#$% "&#$('"#*)+-,%.$!#0/"1324"56784:9;< +3#="'% "> !$- "#?$->@"$->A$B$- +*/"1C2D-)%E F784HG3! $-?"#<I ?A=+$(!?? "#JK>?C>1 '<#" '- >ELB"A$-?# 'J!?? "#! C/J?+-"!+0/"1AK#A'- >E MKNOQPQRBSTUV WBX"YAZY[]\Z-^_`"aYZ*b"cd%e"`_fg\%[ihjk*cbml\%^n_YZ*\foe\%cbYAa\*jppqW-X"YJe\cb"YCcb fc_aYgYZr`eZr`[Kn_cfcYZts"u3jvHwwxpk%xzyv{|x0}p(`e"Z~gYlacfcYZ~s"u3Z\-^s_Y  \-_a`dY€`amB{x]jop}€`eZ‚ag`e"b"f\%g[]YZƒa\=jr_Y  Y_q…„e"Z‚aXcb‚Bj3bcd%e"`_ocb         !"#%$#  !'& (*)+,'-/.01+243 576869:;#<=>?6@BAC – D @EFGIHA<A%JKL MON PNL A;6RQ#CST9U6BCVW=CTX@Y>= HCXAZCSS6@%[\ J] D^ _MONa`W>=@C>Xb%cdegfhijkilm#nmkhhilo'pqrcsfnptpkusdWpqrcsfsihod drihpoip tripvwihx yzO{a|4}~ €#‚ƒW„…†‚‡ˆ…~…‰4‡„‹Š‡… Œ7€#‚ƒŽˆ‚7‡W}‡}7‡‚‘ˆ…W€a‚ƒ’“y„“‡‚“‡ ”ˆ•‡‚‘ …€#‚ƒ’ – –‹— —˜7™š›œ ˜7™š›œ  ž — ž — Ÿ' ¡£¢¤¥¦§ ̈©¢¢¡¤ ª«¦§©§#¢§£«¬4­7®¬¬¡¤ ̄°«±I¡¤²“ ̈³ ́©¬©¡¤ ̄ μ«±¶°¥§#§ ̧·© ́¢¡¤ ̄²¦¢¡¦¦¥ ¹ºO»¼½¾¿À‹Á#¼ÂÃĺIÅÆNjÂȼÆÂÉÊ Ë‹Ì Ë‹ÌÍ Í ÍÎÏ ÍÎÏ ÐÑÒÓ7Ô£ÕÖ%×'Ø ÙÚÛÜÝÞßàáÔ£âã‹ägÚÙÝÔåÞÚßÚæÒWçáWÝàáèÜÒéêëÒÓ7Ôíìî ìèßßæà ïð çá%ñÝòæ ÒæÙÚàæÒáè#çåè#ç‹åáóIæàÝç7ßÚÜÝÞaô‹Ôåõ ö ÚæBÙ#çîÞæYàæÙÚÙ#çæàWÝççæÜèÝçáàWÚÙíè#ÙæÒ÷ìæçóIææÜ£âã“äøÝÜÒ÷Ó'èßßæà ô“ÔåõÕá ÔÚÜÚÔÚùæçñæ æßßæúç7áߓÞáÝÒWúÝèÙæÒ%ìîçàÝÜÙÔÚç'ÝÔåÞÚßÚæà'ÚÜÕÖ7õ ûü ûüý ýOþÿ þÿ þ  þ ÿ ÿ  "!#%$ & '"(%)*+,,,$-,#.% /!0%$132"2& 40"5132"2"$-,, 76+,98:;<-=7>@?A7BBC"DEFGHFI7H=JKI%B-FHDL9EDMGN OP OP"Q QR ST7T R ST7TVU U"W WX XY YZ[ Z[ \]^_-`7a@bc7dde"fghijkji7lmn7i7dohpim7q-arcqhi7l9d7sm7jf`md%t`j"u vV`m-hsm-h#s7`7awij tj`xytfqcg/z#x%s { _-|7} ~ |7\ ~ r€/|7~}"‚~}cjiƒpi „7fd7pi…i9e"fghij{ †‡ †‡ˆ ˆ‰ ‡ ‡"Š ‹ ‰ ‡ ‡"Š ‹Œ ŒŽ ˆ  ˆ ‘#’“” •–r—“˜™5—šo“›9š7™œ ž5“™žœ’“ž’"’œ+—’3Ÿ Vœ’¡ ¢ k”£“0¤ž¥ž’“š3Ÿ ¦§ ̈¦7©ª©«©ª¬%­® ̄°y±§7²®³7±³ª© ̄ ̈+ ́¬μ¶· ̧"¹0º¦ ̄»©ª#¼"® ̄"ª§7½ª¦®§7½7§"©«¾¿"ÀÁ¿ÂÀÃ#ÄÅ ÆÇÈÉÊ/ËÌÍÎ Ï9Ð7ËÍÌÑÇ-ÒÈ ÓÔ"É7Ô"ËÕÔÔÌÖ× ÒØ7ÓÌ7ËÌÍ9ÈÌ+ÙÚ×ÛÜ ÝÞßàyßá#âã-äVåæçèé"êëì í îïëð+ñ"ò7ðëó ìò7ñ ôõïö3ëìëö3ë÷òôøòùêõ"ððõú#ôø-òVðëó ìéê ûðëìó üýþÿý7ÿüþþ þ  þ   ÿ7þ                        ! " #$%'&( !) *(+,.-(**! ". "*/(!*(" ! 0 /12!34 56798;: <=>?(7A@(BCC7 D7 EF7ACD:GH=67AD7I!BIJ=: DKBI'> GML(<BCB7!@ONPRQSTUWV(XY[Z(\]^ ]_\[`a b]VZ(\WcadeV fgXZW]_;\O]_g^h^gZXV bjiKg]_[]_\kf\!l\(f\ Xc!\h`ab]VZ(\Wlfad monJp q rsnJt!u/vwsxnyzo{ |}~€ ‚ƒ„!… †ˆ‡(~‰‰† І ‹Œ†~ˆŽ†(ƒoƒ‘!†’;“”(•(–—.˜” –™—'•;š›!œ žŸ ;”(¡¢£¡¤'¥j¦§ ̈ ©ª « §¦ ¤ ̈ ª(¬s­ ® ̄ ¦ «J°s±²³ ́(μ!¶·( ̧¹º»º¼M½μ ¾;¿ ̧μ ÀÁμ ÂJ¿Ã Â;¿ Ä;μ À¿ÅÆ(·/μ ÇjÈsÉÊËjÌ!ÍÎÏÁǾ½¿Ïμ¾.ÏÁ.Á;ÅÄϾ!Æ/¿Î· Ð!Å¿¿·( ̧Ñ Ì ÒsÓ ÒsÓ Ó ÓˆÔÕ ÔÕ Ö Ö!רÙ ÚÛÜÙ ×ØÙ ÚÛÜÙÝ Ý Þß!àß(áß âã!ß/àáß!ä å;ß(âãæ.çè.é êëé!ì(í îðï.ñ âòôóîçèõ èã çööñóßòˆàáß!äåß(âãæ.çè.ã!õ÷Mø!ß âèñóß!òçâ óß ÷Mø!ß áñóåáß[ùæˆóîߍúñ áçñóçõâ9õ(àüûé ý9ãñ(øñ!ã çóõ ásñã!ã!õáò(çâþAóõRóî;ß9ú;õ öóñþ(ßRã(î;ñ âþ ß!è àáõ ÷ÿóîß(á÷Mçè;óõáë       !! "!$#% %&(' ")!   !! "*+ ' ," -" " ./!' ! !.0" ' !'1' " 0' "123!1  1! 1   4  5!1"  1 6/!)&87# 9$# !4 # 9$ ! :!!  ;=<>?@BACEDFGH H=H GIJ KL MKNMOCP MQRTS:UVWXYZ[ Y]\Y]^[ _1`[ abdc ef ^X _YaX g:`X gY[h idYXZ[` idW i YOjaik li _ ^ b m n [ a[ ggi gaiW X _ [ _ ^i1X j8opR qeOp=[ _ rst S6h i _ ia[ YiW/qu vxwujaik li_ ^b m yz{=| }~ € ƒ‚ }ƒ„x…‡†ˆ‰ Š ‹ŒŽ~ €‘’“„:…3†ˆ‰ Š”3•:–“ˆz—‰z€ˆ{z˜‡|} ™x‚ }ƒš{› œ › € ‰ž z „‰ †˜˜~ ˆ†z €={…

Text truncated - open the document above for the full version.

Parts List/Tune Up Info

         !"#$&%' ()%* !+-,.%  !"#$&%' ()%* !+-,.% /102-3547698:<;5=5=5>? @BA1CEDF GBHEIBA1J'KA1G5LHEMJ'F5NPOQDF&R1S5ITA1UBVWDFTX<Y[Z1\5J]JH9U)D^ _5`a bc5d9eBc9fBg1hg<i5e5f)jc9b kBl1mEno pBq l1p5rqWno sEq5l1m<t5uqEt5vQnoQw)x)x5yWk)z {5|}-o5~7q9usEq#nq9u €-B‚1ƒE„)… Ω †‡7ˆB‰5Š5‹1ŒB9‰ ‹1ŒBŠEŽB‹1E‘ ’B‰ ‹1’5“‰W‘ ‡E‰5‹1<”5•‰E”5ˆQ‘&–1—W˜‹< ™)š› œB9ž5Ÿ <¡¢œ5£ ¤E¥#¡¥9¦ §B ̈1©Eª« ¬B­ ̈1¬5®­Wª« ̄E­5 ̈1©<°5±­E°5²Qª«Q³) ́5μW§)¶* ̈1·B ̧*¹Bº»± ̈<ª¼« ̄7°5©9ª-¬5½Q ̄*«5±­Wª§B ̈1·Q³) ́T ̧#¾ ¿)ÀÁÃÂÄBÂÅÆ1ÇÈ)É5ÇÅÊEË#ÅË9Ì ÍÎ5Ï5Ð)ÅÂÊ7ÏBË5Ñ5Æ1ÎBÒ9ËEÊ7Ð5Ó9Å-ÔBËEÊ*É5ÌËWÅÕBÆ1Î&Ö× Ω Ø5Ù-Ú ÛBÜ5Ý<Þß]à5áãâ1äBâ1åæBç<Ü9ß èBâ1éEÞê ëBÜ â1ë5åÜWÞê áEÜ5â1é<à5ßÜEà5ÛQÞêTì5í)í)í5îWè)ç ï5ð-ñòó)ôBõ1öó÷9ôB÷9øõ<ùú5ø ûBõ1üEùú ýB÷ õ1ý5ö÷þÿ   Qþÿ  ! #" $&%'()* Ω +,-!./01!2#.34576!08596!0:!.;<=>?!@BADC EEF#GH!C EIJGLK MNOQP!RBSTUVSW#XTYZXST[\]BX]#Y ^!_`abc!d_cedfabgd_` hi d_ a7ed_`#a7ed#` `a^!_jlkm nopqQh!rBsbtQd#j!d#i _ abi u!vwxyz!{vz|{fxy}{vw ~ {€Zy}‚ƒxyƒƒ„Vu…       !"!#$&%'( !")&*  +!)! ,'-. /$!-021' "3.#4!.4#4!!56&%'( ! ( ! ,'-. /$!-7 8:9:;$<=>2?:@ AB?2CDFEG:HBA2I6J6EA 8:9:;$<=>2?:@ AB?2CDFEG:HBA2I6J6EA K3L-MN O4PQMRSMNTPQ&UV NWX QTWRZY$X XW P&[[2\R ]QMWMR ]SM]Z^ O_RQV\WMR ]`Xa6\X^-W:N^X \MP&[2\P&NX-b c X PQ&UV NWY$X]-WMN ]-R-W:O4X dV-MO4XY$X]-Wb ef6g`hig h6jijklmn o6g pmig j qrst kuZg nBk ef6g`hig h6jijklmn o6g pmig j qrst kuZg nBkv w&xy:z{{|}$~: €}3‚6ƒ „ „ …†S‡- …ˆ‰&ŠB}Tˆ`‹ŒŽ‰&‘Tˆ’}`“  } “ˆˆSˆ’}$4‰‘”BŒ  •–   } “ˆˆ’}Z“  } “ˆ ˆZ— ‰‘”$˜3-ˆ} ‰ ˆ}š™ ”‰&…Œ › •–   } “ˆˆ’}$4‰‘”SˆSˆ}œˆ } ƒ-”„ ™$}-ˆŒ žŸ:Ÿ¡ :¢B£B¤¥6¦ § ̈©¦ ª žŸ:Ÿ¡ :¢B£B¤¥6¦ § ̈©¦ ª «&¬­S® ̄&°± ²4®T³ ́®$μ-¶ ·³ ̄& ̧B®T¶ ¹ º ¶ »-³²_¶ ·Bμ-¶ ·³ ̄& ̧B®$¼½³ ́Z¾¿½ ̧- ́S½ÀÁ®  ̄&»Ã®$μ-¶ ·³ ̄& ̧B®$À$®³®²&Ä Å ÆÇ Â&ȱ °³2É¿ºËʳ¶S³± »®T³ ́®$°®³:¹²4® ̱®»Ã&Í6Ä Ê ÆÇ Â&ȱ °³2É¿º Î` ̄³ÉÏÑÐ&ÒÓ&Ô ÔÕÖרÙÚZÛÕÜÝÞßÝ à-áâ Ú Ô ãä嚿çäã äÙäè×Ýéßê¿ëìíBîïðñ:ò2óÑô&õð&ö ö÷øù&í ú-ûü ý ö þÿçÿþÿñÿ÷øý Bîí ðñ Fóô&õð&ö ö÷øî ! #" %$ ! #" %$ &(')!*(+,-.0/21!3.45.,67%.879- 7 .0:;4<7=(> 3'?07 .@),* A4B767=DC#.4=!.4EFHGDIJLK5G#MNOQPROS%T(UVW#XUUFW#YZYX[\TV ]X^0_YFRUT(`aDTW(Ib cde!V(fgSY0[2PcYX5YgUFVFS]RDFVh5T(_]OgOOXVg`T#Y]XUb ijklmnopqnrstpup;vw@px ijklmnopqnrstpup;vw@px y(z{0| }2{{@~€0H‚|ƒ|‚@}„ – …†;‡ ˆZ‰‹Š€ŒDŽL‘’ “”•– —˜™ ‡(š›œž2Ÿ! ‰9¡(¢£‰£#” ™ ›‡ £ ¡#0“£œ–0Œ(‘’ ¤ ˜ ™ ‡(š›œ2¥¥@¦€ž0§H ̈0”•”©2¡(ª‡«# ª¬£­‰®£¬!Œ — ‡ˆ ̄¥2£ª¡‡%£œ°”© ± – Œ;Œ#²;‡ ˆZ‰%– ³; ́\μZ¶· ̧(¹5º¶·»@¼½¿¾À€Á·Â·Á@ºÃ5ÃÄ·Å9¾ÆÇ ÈÃÊÉ#º2»@ˀÁ·Â·Á@Ì;³ Í; ́Î\·Ä·É#ºZº¶·É(Ï;÷%ÈÅ5Ã;º¶·ÐQ ̧(¶É(ÅÅ·ÁÑÒ           "!$#%#!&(')*+ "!$#%#!&(')*+ RV2 RV3 TC3 MIC. L C D PWR SW &RV6 SW11 SW1 TC4 Q11

RF Exposure Info

October 8, 2002 File No.: TEI-005-SAR BG Tech F3 DongIl Bldg # 107 YangJae-Dong SeoCho-Gu Seoul, South Korea NOT TRANSFERABLE This Verification Certificate is hereby issued to the named GRANTEE and is VALID ONLY for the equipment identified hereon for use under the rules and regulations listed below: GRANTEE'S NAME: BG Tech PRODUCT UNDER TEST: MARINE TRANSCEIVER MODEL NO.: WM200 FCC ID: QFRWM200 OPERATING FREQUENCY RANGE: 156.025 ~ 157.425 MHz RATED RF OUTPUT POWER: 36.51 dBm conducted EXPOSURE CATEGORY: Occupational/Controlled MAX. PEAK SPATIAL-AVERAGE SAR 1g : 1.700 W/Kg with 50% duty cycle APPLICABLE STANDARDS: SAR (Specific Absorption Rate) requirements using guidelines established in IEEE C95.1-1991, FCC OET Bulletin 65 (Supplement C), Industry Canada RSS-102(Issue 1) and ACA Radiocommunications (Electromagnetic Radiation – Human Exposure) Amendment Standard 2000 (No. 1) Assessed by ITI (UK) Competent Body, NVLAP (USA) Accreditation Body & ACA/AUSTEL (Australia), VCCI (Japan) echnology (NIST Technology • • Accredited by Industry Canada (Canada) under ACC-LAB (Europe/Canada MRA and APEC/Canada MRA) • Recognized/Listed by FCC (USA ) ineering test report are traceable to National Institute of Standards and T• All test results contained in this eng ( NIST) Approved by: Tri M. Luu, P.Eng. V.P. – Engineering UltraTech Bristol Circle, Oakville,ntario, Canada, L6H 63000 G4 Wm O Telephone (905) 829-1570 Facsimile (905) 829-8050 ebsite: www.ultratech-labs.co Email: [email protected]

RF Exposure Info

MARINE TRANSCEIVER Model No.: WM200 Tested For BG Tech F3 DongIl Bldg # 107 YangJae-Dong SeoChoi-Gu Seoul, South Korea In Accordance With SAR (Specific Absorption Rate) Requirements using guidelines established in IEEE C95.1-1991, FCC OET Bulletin 65 (Supplement C), Industry Canada RSS-102(Issue 1) and ACA Radiocommunications (Electromagnetic Radiation – Human Exposure) Amendment Standard 2000 (No. 1) UltraTech's File No.: TEI-005-SAR This Test report is Issued under the Authority of Tri M. Luu, Professional Engineer, Vice President of Engineering UltraTech Group of Labs Date: October 8, 2002 Report Prepared by: JaeWook Choi Tested by: JaeWook Choi Issued Date: October 7, 2002 Test Dates: September 23, 2002 The results in this Test Report apply only to the sample(s) tested, which has been randomly selected. UltraTech 3000 Bristol Circle, Oakville, Ontario, Canada, L6H 6G4 Telephone (905) 829-1570 Facsimile (905) 829-8050 Website: www.ultratech-labs.com Email: [email protected] SPECIFIC ABSORPTION RATE (SAR) Page 1 IEEE C95.1-1991, FCC OET Bulletin 65 (Supplement C), Industry Canada RSS-102(Issue 1) and ACA Radiocommunications (Electromagnetic Radiation – Human Exposure) Amendment Standard 2000 (No. 1) Marine Transceiver M/N: WM200 FCC ID: QFRWM200 TABLE OF CONTENTS EXHIBIT 1. INTRODUCTION................................................................................................................................................5 1.1. SCOPE...............................................................................................................................................................................5 1.2. REFERENCES...................................................................................................................................................................5 EXHIBIT 2. PERFORMANCE ASSESSMENT.....................................................................................................................6 2.1. CLIENT AND MANUFACTURER INFORMATION......................................................................................................6 2.2. DEVICE UNDER TEST (D.U.T.) DESCRIPTION.............................................................................................................6 2.3. LIST OF D.U.T.’S ACCESSORIES:.................................................................................................................................7 2.4. SPECIAL CHANGES ON THE D.U.T.’S HARDWARE/SOFTWARE FOR TESTING PURPOSES.............................7 2.5. ANCILLARY EQUIPMENT.............................................................................................................................................7 2.6. GENERAL TEST CONFIGURATIONS...........................................................................................................................7 2.6.1. Equipment Configuration...........................................................................................................................................7 2.6.2. Exercising Equipment................................................................................................................................................7 2.7. SPECIFIC OPERATING CONDITIONS......................................................................................................................................7 2.8. BLOCK DIAGRAM OF TEST SETUP............................................................................................................................. 8 EXHIBIT 3. SUMMARY OF TEST RESULTS......................................................................................................................9 3.1. LOCATION OF TESTS.....................................................................................................................................................9 3.2. APPLICABILITY & SUMMARY OF SAR RESULTS....................................................................................................9 EXHIBIT 4. MEASUREMENTS, EXAMINATIONS & TEST DATA..............................................................................10 4.1. TEST SETUP...................................................................................................................................................................10 4.2. PHOTOGRAPH OF D.U.T. AND ALL ACCESORIES................................................................................................................11 4.3. PHOTOGRAPHS OF D.U.T. POSITION........................................................................................................................16 4.3.1. Head Front Configuration.......................................................................................................................................16 4.3.1.1. Push-To-Talk...........................................................................................................................................................................16 4.3.2. Body-Worn(By stander) Configuration....................................................................................................................17 4.3.2.1. DUT parallel to the phantom and its belt clip in contact.........................................................................................................17 4.3.2.2. The tip of the antenna in contact..............................................................................................................................................18 4.3.2.3. Bottom edge of DUT in contact...............................................................................................................................................19 4.4. MAXIMUM PEAK SPATIAL-AVERAGE SAR........................................................................................................................20 4.4.1. Maximum Peak Spatial-average SAR Data.................................................................................…

Text truncated - open the document above for the full version.

RF Exposure Info

Q1) SAR setup figure 4.3.1.1 seems to show 25mm from antenna to flat phantom - what is distance from the front of device body to flat phantom? Please submit closeup photo of setup and spacing. Suppl C ~pg 44 has 25mm as distance from front of device not antenna. A1) We will use 25mm separation distance between the front of device and the phantom for future filings. In this case, SAR using 15mm separation distance will yield higher SAR than 25mm since SAR is known to be increasing as the separation distance decreased. (SAR surface is inversely proportional to the square of the separation distance according to the references listed in IEEE 1528) Q2) Depending on response to 1), more justification may be needed to use occupational SAR limits, which apply when persons are exposed as a consequence of their employment provided these persons are fully aware of and exercise control over their exposure. Awareness of exposure can be accomplished by use of warning labels or by specific training or education through appropriate means, such as an RF safety program in a work environment. A2) Refer to user manual folder for the revised version of the manual. Q3) Please explain how power drift of SAR report 4.5.3 was used to obtain final SAR numbers. A3) Since the power drift was found to be higher than 5% for 30 minutes continuous exposure at the maximum power level, the test was paused and the battery was replaced at least twice in order to make sure the SAR was evaluated at the maximum power level. During the area scan for finding the maximum exposure location, AA batteries and Ni- MH battery pack were replaced once. During area scans and zoom scans the batteries was replaced again prior to the volume scan for both types of battery to find the peak spatial- average 1-gram SAR. The position of the EUT was maintained to be as close as possible before and after the battery replacement. The volume scan for calculating actual 1-gram SAR took approximately 7-8 minutes for each scan. In either case, the Ni-MH battery was found to provide the higher SAR value and provided very little drop. Q4) FYI in future filings it may be useful to consider small gap to antenna tip (e.g., 5mm) rather than contact with phantom, to reduce possible antenna de-tuning effects. Q5) Please explain why probe conversion factor is 7.623 for both head and body liquid. A4) The conversion factor calibrated using tested tissue (γ muscle : 7.850, ζ muscle@cal : 0.03646 [W/Kg/mV]) is found to yield similar or lower SAR results than that calibrated using the brain tissue (γ brain : 7.623, ζ brain@cal : 0.03755 [W/Kg/mV]). The percentage difference between the sensitivities in each target tissue is found to be less than 2.99 [%]. The calibration detail using the tested muscle tissue and the revised SAR data using the new conversion factor is shown below. Simulated tissue for muscle Tissue calibration type HP Dielectric Strength Probe System Tissue calibration date [MM/DD/YYYY] 09/20/2002 Tissue calibrated by JaeWook Choi Room temperature [°C] 24 Room humidity [%] 50 Simulated tissue temperature [°C] 24 Tissue calibration frequency [MHz] 150 Tissue Type Muscle Target conductivity [S/m] 0.80 Target dielectric constant 61.9 Specific Heat Capacity [J/Kg/°C] 3,046 Mass Density [Kg/m3] 1,241 Measured conductivity [S/m] 0.81 (+0.3 % ) Measured dielectric constant 62.5 (+1.5 % ) Penetration depth (plane wave excitation) [mm] 61.9 Conversion Factor for muscle tissue Calibration Date [MM/DD/YYYY] 09/22/2002 Calibration by JaeWook Choi Calibration Frequency [MHz] 150 Room Temperature [°C] 24 Room Humidity [%] 50 Simulated Tissue Temperature [°C] 24 PO tot_tissue [mV] 15.987 @ 0.50 [W] 34.696 @ 1.01 [W] 52.834 @ 1.48 [W] 68.711 @ 2.01 [W] δ(PO tot_tissue )/δP [mV/W] 34.48698699 ∆T/∆t [°C/ sec] 0.00122 @ 4.0 [W] 0.00191 @ 6.0 [W] 0.00258 @ 8.0 [W] 0.00328 @ 10.0 [W] 0.00397 @ 12.0 [W] 0.00456 @ 14.0 [W] 0.00513 @ 16.0 [W] 0.00581 @ 18.0 [W] δ(∆T/∆t)/δP [°C/sec/W] 0.0003286310 Conversion Factor (γ) 7.850 0.00 10.00 20.00 30.00 40.00 50.00 60.00 70.00 80.00 0123456789101112131415161718 Po w e r [ W] PO t o t_ ti s s u e [m V ] 0.0000 0.0010 0.0020 0.0030 0.0040 0.0050 0.0060 0.0070 T/ t [° C / s e c ] E-f ield measurement Themperature measurement BODY-WORN (BY STANDER) CONFIGURATION DUT parallel to the phantom # Configuration Device Test Positions Antenna Position Freq. [MHz] Channel MAX SAR [W/Kg] 03 High Power (36.51 dBm conducted) Fixed 156.800 CH16 0.829 (1.658) 04 Medium Power (30.25 dBm conducted) DUT parallel to the phantom Fixed 156.800 CH16 0.129 (0.257) * The SAR Measurement inside the parenthesis indicates the reading before 50 % duty factor is applied for the half-duplex type PTT Unless otherwise specified, the reference point (0, 0) in the plots was set to the point at the base of antenna in the projected image of D.U.T. to the phantom surface. High Power Mode, CH16, 156.800 MHz Test date [MM/DD/YYYY] 10/02/2002 Test by JaeWook Choi Room temperature [°C] 24 Room humidity [%] 45 Simulated tissue temperature [°C] 24 Separation distance, d [mm] 0 Test frequency [MHz] 156.800 E-field Probe M/N: E-TR, S/N: UT-0200-1, Sensor Offset: 2.0 mm Sensor Factor (η Pd ) [mV/(mW/cm 2 )] 10.8 Amplifier Settings (AS 1 , AS 2 , AS 3 ) 0.01158954, 0.01040087, 0.01319890 Tissue Type Muscle Measured conductivity [S/m] 0.82 (+2.7 % ) Measured dielectric constant 62.8 (+1.4 % ) Conversion Factor (γ) 7.850 Sensitivity (ζ) [W/Kg/mV] 0.03646 Power [mW] 4,477 conducted Measurement Volume Specification (X × Y × Z) 5 pts × 5 pts × 7 pts , 20 mm × 20 mm × 30 mm; Resolution: 5 mm × 5 mm × 5 mm SAR 1g [W/Kg] 1.658 0.00 1.00 2.00 3.00 4.00 5.00 6.00 7.00 8.00 05101520253035404550 Distance [mm] SAR [W /Kg ] SAR measurementPoly. (SAR measurement) Medium Power Mode, CH16, 156.800 MHz Test date [MM/DD/YYYY] 10/02/2002 Test by JaeWook Choi Room temperature [°C] 24 Room humidity [%] 45 Simulated tissue temperature [°C] 24 Separation distance, d [mm] 0 Test frequency [MHz] 156.800 …

Text truncated - open the document above for the full version.

RF Exposure Info

SAFETY TRAINING INFORMATION Y our radio generates RF electromagnetic energy during transmit mode. This radio is designed f…

Text truncated - open the document above for the full version.

Contact Information

Applicant

JH Bang(Marketing Manager)
[email protected]82 2 2059 7997Fax: 82 2 2059 7981

Technical Contact

Timco Engineering, Inc.Frank Denuzzo
[email protected]888-472-2424

849 NW State Road 45 · Newberry, Florida · United States

Non-Technical Contact

Timco Engineering, Inc.Sharon A Hoffman
[email protected]888-472-2424

Test Firm

Timco Engineering, Inc.S Sanders
[email protected]888-472-2424Fax: 352-472-2030

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
680.1101(c)(4)156.05 MHz - 157.4 MHz500.00 mW15K2F3E10 ppm

Other Applications from BG T&A Co.

QFRVHF50

Marine Radio Transceiver - Transmitter

Dec 04, 2003

Equipment Class

GHH - Part 80 VHF Hand Held Transmitter (GMDSS)