M61206FP RENESAS | Alldatasheet

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Regarding the change of names mentioned in the document, such as Mitsubishi Electric and Mitsubishi XX, to Renesas Technology Corp. The semiconductor operations of Hitachi and Mitsubishi Electric were transferred to Renesas Technology Corporation on April 1st 2003. These operations include microcomputer, logic, analog and discrete devices, and memory chips other than DRAMs (flash memory, SRAMs etc.) Accordingly, although Mitsubishi Electric, Mitsubishi Electric Corporation, Mitsubishi Semiconductors, and other Mitsubishi brand names are mentioned in the document, these names have in fact all been changed to Renesas Technology Corp. Thank you for your understanding. Except for our corporate trademark, logo and corporate statement, no changes whatsoever have been made to the contents of the document, and these changes do not constitute any alteration to the contents of the document itself. Note : Mitsubishi Electric will continue the business operations of high frequency & optical devices and power devices. Renesas Technology Corp. Customer Support Dept. April 1, 2003 7tENESAS Renesas Technology Corp.

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR

DESCRIPTION

The M61206FP is designed to provide a solution to NTSC color television system. It is an I°C bus controlled NTSC 1 chip. It consists of various processing blocks such as power supply, video IF, sound IF, luminance, chrominance, OSD display, interface, H and V deflection. At each block, ’C control is possible and a total of 62 parameters can be controlled by I°C bus.

FEATURES

Various signal output for Intelligent Monitoring function HlAlignment-free sound demodulator MBuilt-in H OSC resonator MiBuilt-in sync sep.(auto-slicer type) MBuilt-in black peakhold capacitor MBACL / ABCL MVertical count-down circuit MEBuilt-in vertical saw tooth generator Mi Mute filter integrated MIPLL-SPLIT SIF system with FM receiving function WH&V pulse output for OSD WBuilt-in MCU reset circuit ifsc output Mi Built-in 5V(MCU,1CHIP) & 8V regulator RECOMMENDED OPERATING CONDITIONS Supply voltage 4.76V to 5.25V (pins 2,3 , 23 and 24) 7.6Vto84V (pins 18, 19, 44, and 45) 8.3Vto9.1V (pin 55) Rated supply voltage 5.0V (pins 2, 3, 23 and 24) 8.0V (pins 18, 19, 44 and 45) 8.7V (pin 55) Maximum output current 4.0mA (pin 7) APPLICATION NTSC type color TV, projector rRENESAS 1

MITSUBISHI ICs (TV) NTSC TV SIGNAL PROCESSOR PIN CONFIGURATION (TOP VIEW) x ai Ee 5_2 Ge gt gaze ES ares oMForet zo QNrToOugtrtozrrnra So8,82 2887823885 Z9LQZOEESSOSHE=ZQLO ErySLEEER EE BESS SLeGtsS Ss5s5tucacg BERREEERERRERGEE VIF IN(2) IF AGC FILTER 2 VIF VCC(1) O UMTER IN VIF VCC(2) [45] SWITCHING REG CONTROL H.VCO FEED BACK Hi VCC(2) scl Hi VCC(1) FBPIN [6 J INTELLIGENT MONITOR HOUT MCU RESET DEF GND(1) | MCU 57VREG OUT DEF GND(2) To | M61206FP YSWOUT SDA 5 7VREGOUT AFC FILTER VIDEO/CHROMA GND(2) INV FBP OUT VIDEO/CHROMA GND(1) POWER ON CONTROL IN TWY IN ROUT CHROMA APC FILTER G OUT EXTIC IN BOUT 8.7VREG OUT EEEFRESEEEEEEREES Gea t BG SAR SESE SA a Goee aN 2425 29 g°a5§gsitosegs 22S GSSS825 Yo aX faa 2ae°p-e@ 2 8B see 235 eg 2 * gee 2°g2 5 > id 25 & S8 > > mo ga 2tENESAS 2

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR BLOCK DIAGRAM 7 A Zz 5 t s Were the es 9-OO00000 Fa 7 5s Q ; 2 y de i Vs 28 adel Fe ae i ra + “hse aor 7 | E i at R0 [| A { a P an. . lth] be ede Bl é . pe 3 ae 9 a 2 ‘ ; af ff’ ete 0 Bee e = 5 — rote | Ae ort : i i, est 6) Os Qt] Li Bg Batis Are A rea : 2RENESAS 3

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR ABSOLUTE MAXIMUM RATINGS Symbol [Vcc | Supply vottage 6.0, 10.0 [ed [Power dissipation | ___ 1325 [Kt___| Thermal derating Operating temperature -20 to 65 Storage temperature -40 to 150 TYPICAL CHARACTERISTICS THERMAL DERATING (MAXIMUM RATING) = 2.0 i j 1 i H = 1 i df : : a \\ i \\ \\ \\ 9 1.33 ' ' | ' ' & og a o ' i ' ' wi | { | \\ \\ = | | | ; : 6 1 ' ' ' ' 0 25 606575 100 125 150 AMBIENT TEMPERATURE Ta (°C) 2tENESAS 4

MITSUBISHI ICs (TY) NTSC TV SIGNAL PROCESSOR eS ES A SS TS TS TS SL (2) WRITE TABLE(input bytes) OE a TS A TT cm TT Te cooocoen Fo coos Foo [waeotre | ausioba | face siler] Tearon | uceotstap] Asoc | vonneag] Takeon | [eon | conor fp | [cot | coon (S| gp ee eee ox | conten |S a ee | con | como fee be oe | coo 10 Fv vo coo) Fo v0 vo coooncen J vo vv rns con | corer | — cx] coorore | a] ae ee c_| a cei coonon |_| A : A ee eo ee ee ee eo oo ce | exer io |p ee ee | confi To To | o | o Jo | 6 7 0 | crt | coors |} 3 J to a er ce | cow f oo coo19001 [1 oa corto fo oo on on Jo son | coco Fo oo oo fo To To [Fervent | ysworr | breckstech ohamge | SSice Goma | ___FMSteton tel se | conor ff | oe | compo | | se] cor |-—s — To [cw] | exon | ss [cn _| iH | corn [o_o | cron | cm_| cnc [am | | con [am | sen) cooiriop Poo NOTE WOT soe TORT 3) READ TABLE (output bytes SS SS LS LT TS | [oon oomomo) —Ktuens | rusroers | vooms | —sroers [arma] arm’ | rooms | ciotasinea) | 7tENESAS 5

MITSUBISHI ICs (TV) NTSC TV SIGNAL PROCESSOR WRITE [Frncnow —Tar[swenoo] om [sono | re | a eS ee eT frevooag [6 | 0H 0-05 |ViFV00 res ming Fginoy Agusan SOD c0a a A TR a § faeveeooucs [3 [cst bs. 07 i Vien ce ouput ample Acusmentby 2600s ro a ce oc SS feces [+ [ora [ori 60 Gan Nomaininiman sich 0: ASC Fursin, +-Detsubininun Gai} of Bru [eer [or rer carerstcameswieh a mercamer apeGarer Pucpatr D7 Tost [00-05 audio Out Level arenuaion by 7bROAG MAX gaineods Tg yy pusset [et [0s ar Dien eenat a npitsgralsvieh oar amp om cexemal |» |_| 8 uso mys [1 [eat | 07 a at ut NOR] HERO: SounSON Non MUG) FeMus Po a ce Fusetcrtee! [3 | wi [tote fainsatnareamnine! fuiseo Tone Ts Tos [00-05 [ebay tine type Aperture Cont] Tico fv baton ee a A CT TT fecracacomestGip [1 [cst [07 [Const ConolCip Swiohwian O50 made OOO, TOBOEF vt | a CE a a Ce fer et [oe as Secor 0-1 mate, EXT moge or] a Ce SC TT & fesmupe [ee [0s Pr sw out requeroysvtch 0 LAT, + LPefberooKgey [reo Torsha [1 [con | 02 vie Tone Gan Normal) sith O-Fer -nghtag] Po a ce Ce CS freon [+ [et | 0s_[enna Tap ONOFEsvioh_ Chora Tap ON 1. CuomaTe@pOH oP fiesprreng] [2 | en [to.0i [onmmatiepm adusment or a A TS fsck stew rape [2 | 4H | Ds. [Charge Tine Constr Austen orBeok Seek oo fosckswen Osonaga [2 | 10H | 05.07 Deohage Tine Constant Agusinnt or Shek Swe oo ns a oo CS ec TN ea CS SS TT TT fineon_—T1 [eeu To onom spetaleonswien_o.8°@ rece 8 fesmgecs Tet Tr ono Demat ange Sieh 0-0, 9609 a ce ee

8 Fave Gove [1 | si | te [Feed Goirmeceswioh OFF, 1-FanesGobe Po

Frovenows [1 | 5H | 02 Feed noce 0: OFF Famed Bsekawhs a ce ea A TT fone [7 ob cots JROUT Ange Asien Wy TERDRS rr | a oS TE Te feuoney |e [ots | to.tr JROUT Paes evel Ajusmnerbyebe DRS roc | a A A SS Tc » Pots) [sors [ov.07 [pou Pedal eval ajusmertbyab:086 orc] 8 feuewen a [cet or oi be noce NOR swaoh OFF ebeBaxe a ce A fasce [ot [be pect On rr swioh 0 ORFACH) seABSLON Po ce a A A SS a a ce Posie ro | or Job tector ovo so Po a i es a Phase MS [is [or |arooHPhesems8eg a ce Ce Se a sep [1 [ot | 0s Jporretoupitsweh o-HOUL nHSTOR Po a ce A farcocen [1 | cot | 01 poreonet sce Gan son ocHgh bige Fg CY a fesse [ot tots Jv a mpi Asien By obe DAG coo a Ce SS eC a Ce A Se fs sexton [1 | 0H | 05 fore tats Lvl woo) Osco ome ee eS eC favo Stee Cowm | + | 0H | bo [Sire Ct Sis Lewl avon cur veo god 0. Sies Lnwloorsant TLawldoen Gag wees | oo | | a A RA ee ce a a fies [oe | be Ino ce tr custones cesta) aco a eT fesse Jr te. Jp user customer este) Po a SA EC ztENESAS 6

MITSUBISHI ICs (TV) NTSC TV SIGNAL PROCESSOR READ ferro oon [03 Part outp ferry Tt oot [02 ar routpe Ficome toon [ot orizntal mute det output OH coincident Fu stoere Tt Toon [ps Staton det for Fit Rado made. Station det, frcome Lt Toot [0s Wvertial Sync det output. CV coincident Broce Too foe Staton det for TV mode. Staton get <READ BYTEAFT OUTPUT> =100KHz +100K Hz eee t t i fc [arro[ 4 [oo Joo fT o [To | stENESAS 7

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR Measurement circuit 2 FJ

6 EXTRIN EXTG IN FASTELKIN

HN ° Soe? a PPEPPEREPEEEEEEE z H 7 z ea M61206FP Ply Hi 6B [=e en S 7a =] [= }—e Oo = pwwele: SIF IN: [7] [2] = oO ea “Fe kal OF, (ab MT74LS221P (b . OPPPOPHE 2tENESAS 8

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR INPUT SIGNALS (1) For VIF/SIF block SG4 f1=45.75MHz, 90dBu, CW PT [eisreweSie rom cw SG 13 f1=45.75MHz, 90dBy, Red raster signal, AM=87.5% video modulation, a SG 14 fo=45.75MHz, Standard 10-step signal, Syne ratio 28.6% | [iinsrsnonedison Smet smetolent indo, | rRENESAS 9

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR (2) VIDEO/CHROMA/RGB/DEF block Input signal (value at pin terminal is 500hm) NTSC system APL100% standard video signal. ; ia o7tay The vertical signal should be sy «= | 1Vpp SG.A | interlaced at 60Hz. i ; | + 1.5yus 5.8us The amplitude and frequency of t Luminance signal can be varied by signal SG. A. The typical amplitude ae SG.B | is 0.714mVp-p. ' H The frequency of Luminance, (f) | | as stated in test. a 1.5us 5.8ys NTSC system standard mono- 5 chroma video signal. Ars The vertical signal should be aoe : i 0.286V - SG.C | interlaced at 60Hz. ty CL O572V 0.286, | ol le 5.8us 1.5ys NTSC system video signal. APL can be varied. . 4.7us Vv The vertical signal should be a le y| SG.D | interlaced at 60Hz. i | kh 4.0ps| | i a elem 0.286V 1.5yus 5.8ys 7tENESAS 10

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR Input signal (value at pin terminal is 500hm) NTSC system mono-chroma video signal. The 4 amplitude and frequency of burst part and 4.7us chroma part can be varied > < The vertical signal should be interlaced at D aa ae SG. E | con veo | : WAL TIN | Veo typical condition _ i H Veb=0.286V, Vec=0.572V 0.280V Le et teh feo me feb=fe0=3.579545MHz | 5.8us 1.548 Fast blanking signal. i a It should be synchronized with input video ! 2.0Vi signal. owv— i | 20us | 24us | | i i i 8G. F External RGB (OSD) signals. ' \\ te | They should be synchronized with input ' Vosd | video signal and fast blanking signal. ov H i ' 20us | 24yus ! ! 8G.G NTSC system rainbow color bar video signal. . The vertical signal should be interlaced at 60Hz. Duty cycle 90%, frequency can be varied, level can be varied (typ. 1Vp-p) SG.H | Duty cycle can be varied (typ. 95%), frequency can be varied, level can be varied (typ. 1Vp-p) SG. | “ke 1Vp-p NTSC system standard color bar a video signal. 4.7us 0.714V SG. J The vertical signal should be a , interlaced at 60Hz. | i i | eee ees a ee 0.286V 1.5us 5.8ys NTSC system standard 8-steps signal. SG. K The vertical signal should be interlaced at 60Hz. stENESAS 11

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR Setup instruction for evaluation PCB 1) Horizontal blanking pulse adjustment The timing and pulse width of the horizontal blanking pulse should be as shown in the following figure by adjusting the variable resistor of the single shot multi vibrator. pin 7 (H OUT) le—>! 6us ' f Horizontal blanking pulse H i «>| 10.5ps ' i The variable resistor at pin 15 of TTL IC 'M74LS221P' is used to fix the timing at 8y1s and that at pin 7 is used to fix the pulse width at 12us. 2) VIF VCO adjustment Before measurement of M61206FP, VIF VCO must be adjusted by the following procedure. (1) Input PC bus data of VIF Freq (01H D6), according as IF frequency. (2) Input PC bus data of VIF Defeat ON (07H D7 = 1). (3) Set the DC voltage at pin 60 (AFT OUT) to 2.5V by adjusting PC bus data of VCO control (01H DO-D5). (4) Input °C bus data of VIF Defeat OFF (07H D7 = 0). Voltage 2.5V ON i i 45.75MHz Frequency (or 58.75MHz) (3) HVCO adjustment Before measurement of M61206FP, H VCO must be adjusted by the following procedure. (a) Set the frequency at pin 7 (H OUT) to about 15.734kHz by adjusting I°C bus data of H VCO control (10H D3-D5). ztENESAS 12

MITSUBISHDs(™ M61206F P NTSC T¥ SIGNAL PROCESSOR Electrical characteristics (Ta=25jC) Test Symbol Pararreter Input stgral point Unit Remarks fers | so] | tan |e wa iccsy [BY current 23232) 97 ma. |VIFISIFVIDEO/Chroma supply (Pins 23,23 and 24) 4 Pins 2 and 3 supply Reference data pocee [are | «| «fae | = [| | m icici Pins 23 and24 supply Reference data pectin | | [amar | as | | me [roca Pins 18 and 19 supply Reference data poorer | | feel | | [om [Serer ontecin Pins 44 and 45 supply Reference data fecal omy | = | = dasol [oe | [im esac Power ON Control presomecnn| [Pete [e [ee] + fro proeccmanne] | - [= [ - |» [oa] + pram Frnecomnonon| [| [rl ee [oe] + from MCU 6.7 VREG output ay SN A CA dC MICU 5.7 VREG output e SW REG Control output saree peor feces" [Le fe [oo] + | fron ISW REG Control output " pes frcgere™ [TT feels [| bra jor fuwoenomen| -[-felele[e[y[ | ja focomereme | —{-fe|-[ole[y| pes fromm [-[-feteetelt aS peace | feofebelely[ +d ztENESAS 13

MITSUBISHTs(T™ M61206FP NTSC TV SIGNAL PROCESSOR Symbol SUB ADDRESS PPP EPP PPP PP bbobe tab blabla eT TEETT LTE Re OCC Rest COOOL Pe COCO CCCCE EEE Reel TOCCATA eel CCCP = COC CCCCCC EEE eee EEL LLL OPC OPC OCC fee CEE Pe OPC Re COPE ee = TPP LLL eee Pe OCC eo TEE i 2tENESAS 14

MITSUBISHTs(T™ M61206FP NTSC TV SIGNAL PROCESSOR Test Pepe | [me a els lspe[p a ideo detector output DC 2 pr fw [sfoofo[o[=]-[=[ ideo frequenoy MA hesanlnrarie 164] sea] 57 | 4 | 54 fom foro olen] -[@ |= [mp vin max Meximum permsible 1.64] sae | 67 | 100 input = _foomes [-[-|-[@|-[-le haem for fomaroomm| | le ef@pelv[ ja forme foe] ee pete[ ep rarermes [fone [+ for[ee[mep pst rowan [olen] @]7 Le po fm) sd fe frowwrom [| - [== [apo] ep Cyd Dd oe fer] [Lo fas[o| = [mehr | Cm Sc Ice CS DD fr pewwos [om fon] = [| [amon pat femme] felt [ep 2tENESAS 15

MITSUBISHEs(T™ M61206FP NTSC TV SIGNAL PROCESSOR o~ EEBEREEEEEEEEEEBEPEEEEEEE Mm TETTTTTT TTT TEEPE TTT TT et yyy a eee Em eee a eee ee ee ed ee M TTT TTT TEEPE EE ET TEEPE EEE 2 eee Mem T TTT TTT TTT TTT TTT TTT TTT a Bee rm TTT TTT TTT TTT TTT TTT TEE E EEL Ee See a Bee bem { TTT TTT TTT TTT TTT Tt Ty ty TT a ee hem TTT TTT TTT TT TTT TTT ET a ee a ee he T TTT TT TT TTT TTT TTT Ty Ty TT Ty ews TT TTT TTT TTT TTT TTT TTT TTT yy a eee met TTT TTT TTT TTT TTT tty tt ttt tT he TTT TTT TTT TT TTT TTT Ty Te ty Ty a eee a eee Ze

2 Bee

MITSUBISHI s(TV) M61206FP NTSC TV SIGNAL PROCESSOR Test Limits : Symbol Parameter point Unit Remarks Ce CC fa frmnrsoormn| erfoor] [Lefty] id po Beer [fefe tefl fel | pos femowrnener [off -[= [afm fs symbol SUB ADDRESS Ey et TTT TTT TTT ETT ET TTT ET ET TT Tt oe ee ee ee 2tENESAS 7

MITSUBISHLs(T™ M61206F P NTSC TV SIGNAL PROCESSOR Test we. | |v IRF AGC delay point MAF AF direct output DC 53 22] 30 | 38 ¥ holtage jor franco [a feole[e[e[efo) | eo fw [of@[»f=|-f=[ id seam fe fe=lo[=[=[=p—e] —*| SCFU noe frequency sG2t } 8 [ss] 75 | - | nmiz [varvtrequencyor input signal SCFL fomett frequency: sG21 } | = | 2 | 40 | mee vanvtrequeney of input signal Audio output maximum recon 7d a dd jattenuation QIF2 QIF detector output 2 | er | $G22 ) 49 | ot | a7 | 109 | abu [rerscou FIM mode AF direct output FIM mode video detector SC FM 2ENESAS 18

MITSUBISHTs(T™ M61206FP NTSC TV SIGNAL PROCESSOR symbol SUB ADDRESS PPP PPP PPP PPP PPP PPP PPP PPh Pt oo Tl BETTE ee POTEET i BOE PEE POOR POPC mCP eet COREE eet POPE Ps Te EEL et LEE mee pedal TTT TCL pee LCCC LE penal ETE TTT Tet EEE EE FINE Solel DDC 2tENESAS 19

MITSUBISHLs(T™ M61206F P NTSC TV SIGNAL PROCESSOR Test Symbol Parameter Input signal point Unit Remarks res | se | [we [ [| FIM Fapramcon| « foal = [== [a [ahem FM 7 Faappretenccowa| o [scale fw er| vel ae fem 0 a Video SW output level pes occa [= [eal= [ele [e[ “lete[e[=[ Video frequency 14,15, = fe penmomnn fo fool] -[-[e[=[ Chroma trap maximum 14,15, lous |¥ delay time 3 ae | 120 | 200 | 220 | ns frova-measure -YDL2 YDL4 Y delay time 4 eae } 120 | 200 | 200 | ns froremeasure- yoLs Video tone control 14,15, ar Video tone control 14,15, a Video tone control 14,15, 7 Video tone control 14,15, = Video tone control 14,15, or perenonanee| s [enf"efom[omfon] «| 5 14,15, MF Video mute function 34) SGA 16 -45 | -35 2ENESAS 20

MITSUBISHEs(T™ M61206FP NTSC TV SIGNAL PROCESSOR CEE BER RRS ECCGEEEEEPEPEREE Feacool | | | |] |} tt ttle TET ttt tty ttt resco] | | | [| | TTT | jet | | TTT TT TTT rd eo TT LT LTT et EE TTT EEE TT EE EEE EL pee TT | LT Pelee] foo] PTET EET TEE ET ET eT TL Ly Peleet fee] PEE EEE TEE EEE EEE rev] | feo] | Pelee] foo] TTT TE EET TEE EET TT a eee ree TTT TTT leet fot | EE TTT fe] EET ru TTT LT leet fe] EEE EEE EEE EEE EE roe TT TT let fe] PEE EEE EEE EET ET ror TTT TT dh fe] EE EE EEE TEE EEE EE ror TT TL det fe} EEE EET EEE EE ET eee erm | { [TL fort Feet foot | EE EEE ET ET TT TTT TI erm TTY | fet leet fe] PEE EET TEE EEE EE erm TTT LT leet fee] PETE TE EET EEE EET ET ere | TTT TT eel fo] PE EET EE EET TT TT TT es TT | | T feslee] feo] dest | TE ET TT fet | TT de we TT del Pelee] fe? EE EEE EE EET EE TET LI ztENESAS a

MITSUBISHLs(T™ M61206F P NTSC TV SIGNAL PROCESSOR Test Input | Lirvit: Symbol Parameter point Unit Rerrarks es] 904) | i] | per ferme [spools [of [m[e] cnorB [Chroma standard output 34 Isoc y200 | mw (B-Y) ACC characteristic 1 | fsce[ ee] 2 [io | 2 | oe fre Vee : +608 of typical input level ACC characteristic 2 | [sce fe [as] o | 15] ce fe Vee : -200B of typical input level Chroma overload p femme [=fee[e[s[=[=[afemm br _ferowan fo poefe[—[s[@[@feom f= _feomserme [= [uo] = [= [m[on [oe] + 'sc output frequency at fsc ed ed ‘sc output arrplitude at fsc fe feme == |= [eo] = [= [ole foef 2ENESAS 22

MITSUBISHEs(T™ M61206FP NTSC TV SIGNAL PROCESSOR "BEEPS EEEEE REESE EERE eer | LTT TT leet TT ET TE TE EE EET TT feet TT eos | TT TT leet EE ET EE EET EEE LT fete bor TTT TTT lel PTET ET EE ETT TT ett TI bos [TT TTT lel TET TT TTT TT LT TT delet 1 om TTT TTT let PETE EEE EET TT fetet TT oe 2 eee beou TT TT LT leet EE ET EE EET EEE LT fete bee | TTT TT let PTET TET TE ETT TT ett TI ew TTT TTT lel PET TTT TTT LT TY rele) [I em TT TT TT leet TEE TTT EEE EET TT feet TT eee TT TTT eet EE EE EE EET ET fe fefey | i Boo re TT TTT elt EEE EE EET EEE TT fete ae me TTT TTT et PETE TTT ETT TT TTT te id ee me TET TET el PE EEE ETE ET EET fet EE 7tENESAS 23

MITSUBISHEs(T™ M61206FP NTSC T¥ SIGNAL PROCESSOR, [ree oa | [me Tom [me jeux fowrowienvone [oe [ooaler| oferfoofv [| Peon omens [= [esol [ae [ae [o free | Frew Esemers [= [eae | [mle fw perme | freoe mms [aaleor|" [om [os [om[ v pares | pow fimmmner™ [= [eof [er [es [y frcow | fowler’ | m [eo[ [oe [eo [|v bow fovnn ities | m [esolMer| = [oof os[ v focc OS per fry [a fefeleelefel | pee foes [= lealefeol[ol™l | fox femmes [= [ale [oo[e[aof@[ | pow pememe Pale © [so [ [eo [we fermamecn | pen (ieees™ Paisal«[=|=[e|~feameraom | poet) Prmanormne [sa |saa| 1 | 220 | 209 | 400 | wv [ecicmsamue- ers) icharacteristic2 34 | SGA IEXD2(G)=measure - EXD1(G) poor [iemenne [se [seal © [20 | 200 | 0 | mv erica oor) | pr” amereerente — | - | - | - [so fete? Er’ [fmeres cama | - | - | - [| 0 [oofm | pr [imwewseanan | ~ | - | -[e[ 0 [oo]m] poo fimmc™ Parlsaal © [|e [o [we peen | purchmecracs | -|-[-[=[efelw[ | pecker. (-|-[-f=[el=[e[ | peofecems [-[-[-l=[el=[-[ ztENESAS 24

MITSUBISHEs(T™ M61206FP NTSC TV SIGNAL PROCESSOR er PSE RRER EERE CEbREE Sami ee TT TTT fel fet TE ETE ET EET TE ee bem | [TT dele fe] PETE ET EE EE TT eer | | TTT | rel fet TT TTT TE ET EET TE ad ee veo | TTT | delet fot | ETT TTT TE TT TTT TT TT ememrT TT TT fel fet TEE EE EE EEE bom {TTT el tel fet EEE EEE EE EET LT Fommio | | TT TY fel fet fet | ET TE ET EET EET Pen | | TTT fel fet fete} TTT TT TE ET TE TT Per [TT TTT el fel fel EE EE EET TI bee { [TTT fel fel [ele] PET TE TEE ET TI Pee TTT TTT el fet fel fe] TTT TT | ETT TTT ee fe ed Oe oe Oe ea | fol | | | fel fet TT TT TT TT TET TT TT oe eet TTT ttle TTT TTT TT TTT fe ee fl Oe Pe {TT TT tele fel PEE EEE ET fel ET ew ( [TL | ele fel TEE TETTT I fel LT ewe | | TT | delet fot | TE ETT TTT tT fel TT TT Pero! | TTT | el TET TTT TTT TTT fel | Perot TTT TT lel TET ETT TT ty Te fel ET Peet TT EET el LETTE EEE tt tle EE zRENESAS 25

MITSUBISHI s(TV) M61206FP NTSC TV SIGNAL PROCESSOR Symbol Parameter ‘ea Unit Remarks foe] | [am i Ca MC fe | [eof ele] «fm from | CN a CC Ca co oo S| oe [eeel [fe [@ fw [ pnw pans [ [soa wefoor[ow wo] [| prc fomamse —[ [soe wufom ow pow] —[ poo RES PEE «| [sol = fam | poce meee? PSPs wow [ow femora joo fae fest [oslo] fw pose fea PTs [ [osfoo] = fer fom foneninonms [focal w [foe [aspe | +t joc femmes [ole] efofa pele | foo fmnconenm [oleae] eff fete [ ‘| fo fomeswinan [fom Pf fff zRENESAS 26

MITSUBISHIs(TV) M61206FP NTSC TV SIGNAL PROCESSOR fff fon oe ooo fcc ici a i] ec eee TT | LTT det fet PT EE ET TT EEE EEL ees | TT TTT fel et PEE EET EEE EE LTT ee [TT TTT fet fet EE deh EEE EE EET eon TT LT TT feel feel TT TT tet PETE EE ET TT 1 ee TT LL TT beet feel TTT ET et PE EE EET eee [TT TTT fet fet EEE fet | EEE EEE ETI eee [| TT TTT feet fet FEET del EEE EE EET eee [TTT TT feet fet EEE TT fel TE ET ET TI en TT tet Tt tet tet TTT TE ET TE EE ET TT TT ome { {| fot TT feet fot EE ET ET EET EE EEE TI fem | {fmt TT fect fot EEE EET EET EE EE TI ad rece TT | LT LT det EET TEE ET ET EE EE LE TT oso | TT TT delet TTT TE TTT LTT EE ELT od eee pooot TT | TT Pelee] | ETE EE ET TE EET del TT pose T TL LL delet EE TT EE ET EEE ET de LT em [TTT TT fel fet EEE TTT ETE EE ELT Peo TTT TTT del fel PEE TTT ET TEL TL peo TT | TTT lel fe] PTE EET TT EEE TT TT TT me TET TT bet PEE TT EET det EEE EE TT TI zRENESAS 27

MITSUBISHLs(T™ M61206F P NTSC TV SIGNAL PROCESSOR Symbol Parameter point Unit Remarks Pes [ se] [om [on om Horizontal free-running e kee [P(e folefefe| HH2 Horizontal free-running 7 447) is4 | i185 frequency 2 Horizontal free-running po fen [| [oofee[we[me[ IHtree Forced honzontaltree = | a4 Joc al 7 | ass] is7| iat | kHz running function prs fowowineimer [a foes Posfvofeste[ fro _fomonmeme fe [wal 7 [oefeo[e f= [ ——_—*| foo fone || [7 falsfaf=| fe feownneeomenl | Pe fefm- [ef Horizontal pulse stop psro Femer™"[ | [| feofosfv | pee froannmen [= fea [ooeofeol@f Vertical free-running eerie "| | Pe [sto fete] | Forced Vertical free-run SN aC pe foram | [wfelefefy[ | Vertical ramp size control foes foe feoe] w [eo feeofe] ————*s Vertical ramp size control feos eS [os focal fool 2] ef] sd Vertical rarnp position por ease [= [=f fe[=fe[™[ Vertical ramp position fv fsainieeom [a [sal fossfos[om[m[ Minimum vertical sync 2ENESAS 28

MITSUBISHEs(T™ M61206FP NTSC TV SIGNAL PROCESSOR ee a eee me TE ETT T TTT ETE EE es EEE bee | TT TTT ef TET EE TT ET fe ET TT Few TE LTT et EEE EEE ET ET EEL ET Fee | TT TTT et TET TTT EET TE ET rem TTT TTT fet fet EE EEE fe EE on eee ew TT TTT TE TTT EEE EE PE EEE EE Mm TEE E TT ETT TEE EE EEE EE so TT TTT TT TT ET ETT TT TTT TEE ET eco | | LTT fet TET TE EEE TT fe ET 2 ee mee TTT TTT fet tT TT fet TEE EE EE EE TT ee TE TTT TEE ET TE ELE LTLT TE lee EE Few | TTT fet EET EEE EE TE EEE TT Fm TTT TTT et EET ET EE EEE ET EE EEE met TET TTT fet PET ET TE EEE EE EE ree TT TTT fet EEE EEE TE fe EEE EE ee Oe ers | LT LTT | fet ETT EEE TE TE EEE EEE peme | | | LTT fet EET EE EEE Fe hm TTT TTT ref TET TT ETT TTT TT TT TT reo | TT TTT fet fmt TEE EEE EE EET TT mss | LT] | LT fe} TE} tT TTT Tet tt | | zRENESAS 29

MITSUBISHLs(T™ M61206F P NTSC TV SIGNAL PROCESSOR Test Symbol Parameter Input signal point Unit Remarks Pro] so] im Po [om ._4 {intelligent monitoring 2-4 IMONI2-1 (RF AGCI) 43°] 378 | 3.95 | 415 Vo JAtwhich RF AGC voltage is High Intelligent monitoring 2-2 Intelligent monitoring 3 Intelligent monitoring 4 Intelligent monitoring 5 jos [iewwswemma™ | ® [sea] «© [ore fos] see] we] MONIT et monitoring 7 | w [sca] a | 15 | 20 | 25 | vor | Measure amplitude from blanking level. Intelligent monitoring 9 owe [os [| -fefeefeofaty | Intelligent monitoring 10 pow femree™™ [w= [malo fom [ae[oo[m[ Intelligent monitoring 14 pow perme Ts [oslo [ee[eo[ee[mep ——*Y Intelligent monitoring 12 pone fapesr™™ | Po fefem [on] [ Intelligent monitoring 13 pow facsmeme™ | [Pw fess[em[en] | Intelligent monitoring 14 MONI 4 (ideo schroma Voc) 43 | 235] 250] 265) Vv Intelligent monitoring 15 fons [i Vcc) 43 | 255 | 2.70 | 2.85 v 2tENESAS 30

MITSUBISHLs(T™ M61206F P NTSC TV SIGNAL PROCESSOR Symbol SUB ADDRESS i veo oye 9 oo ed eee eves} TT TT TT TTT TET TE ET fet ET owes TET TTT TTT TET TET Td fet tT eee ed eee ot Oe Ed eee eee pow TET TT TTT TT TTT TT Ty Pel TTT TT eee i See i eee ee ows TTT TTT TTT TTT EET det PET 2tENESAS 31

MITSUBISHI ICs (TV) NTSC TV SIGNAL PROCESSOR Electrical characteristics test method VIF BLOCK SIF, QIF BLOCK PIN : Video S/N LIM : Input limiti ivit 1. Input SG8 and measure the ms value of output signal at mIPUL IATA Sensitivity, pin 57 edd ibe input leveliot SG19 Measure the input es when the element o z at pin 57 is smaller than # EM edeined 23 lollows VoAF P (Maximum AF output (5.5M)) PIN = 20 log SS (a8) AMR: AM Rejection lu ™ 4. Vam is the element of 400Hz at pin 53 Vf : Video frequency characteristics 2oBMbiIS: eines ser 1. Input SG4 and set the frequency f2 to 44.75MHz so that AMR = 20 log eae (dB) the beat element of 1MHz is output to pin 57 (Vins) 2. Then set the applied voliage at pin 63 so that the beat element of 1MHz at pin64 may be 100dBy AFSN : AF S/N 3, Decrease f2 to the level at which the beat element 4, Measure the noise (20Hz to 100KHz) of output at pin 50. becomes 3dB smaller than the element of 1MHz, and read 2 AFSN is defined as follows the value at that level VoAF max pin 57) jo0dBy ke AF SIN = 20109 qaeacyeqvae7 (2B) dB mp FM-SM : FM mode S/N ; 1, Set FM Radio and SPLIT control data to 'ON' i 2. Input SG22 (vi=85d By) to pins 64 and 1 freq 3. Measure the noise (20Hz to 100kHz) of output at pin 3 1MHz Wi 4, FM-SN is defined as follows: Vin min : Input sensitivit - EM VObr pa ’ FM-SN = 20100 -yegscreqvatne— (95) 1. Decrease SGS level until the video detector output is 3dB cmaleriteniiie measured value of Parameter Vo "Video Ex. OUT - FM mode video detector output 1. Set FM Radio and SPLIT contro! data to ‘ON’ Vin max : Maximum permissible input 2. Input SG23 to pins 64 and 1 41. Input 90dBy SG6 3. Measure the DC voltage of output at pin 57, 2. Va is the output level at pin 57. Increase amplitude of SG6 until the output at pin 57 becomes 3dB smaller than Va. The input level at that time is the maximum pemissible input HAFT - AFT detector sensitivity V2H : Maximum AFT voltage V2L : Minimum AFT voltage See the following figure. pin 60) veoH bat edit Veok, Fa TSNHZ to 46. 75NIz freq LIAFT is defined as follows: pAFT = (3.0-4.0) X108MV_ myykHzy di KHz IM : Intermodulation 1, Input SG43 to pins 64 and 4 2. Measure elements of 0.92MHz and 3.58MHz of output at pin 57, 3. IM is defined as follows: Element of 0.92MHz M= 20109 rementorasemHz (1°) DLPH : Maximum RF AGC delay point DLPL : Minimum RF AGC delay point 1. Input SGS to pins 64 and 4 2, Change amplitude of SG to the level at which voltage of pin 62 becomes 2.5V, and read the value at that level, ztENESAS 32

MITSUBISHI ICs (TV) NTSC TV SIGNAL PROCESSOR VIDEO BLOCK GTmax : Video tone control characteristic 1 1. Input SG.B (f=2.5MHz) to pin 34 2AGTV Video SW output level (TV input) 2. The output amplitude at pins 14, 15 and 16 when video PAGEV :Video SW output level (External input) tone data is center (20H) are defined as GTnor. 3.M {put amplitude at 14, 15 and 16 at vid 1. Input SGA to pin 86 (2AGTV) or pin 84 (2AGEV). eee ee eee 2. Measure the amplitude (peak to peak) at pin 40. 4. GImax is defined as follows. Note | use sub address 06H to select TV or extemal video sais Valle: (VPS) ETS ete GTnor(mVp=) (28) Ymax : Maximum video output Pa GTmin : Video tone control characteristic 2 1. Input SGA to pin 34. 2. Measure the amplitude (peak to peak) except measure 1. Input SG.B (f=2.5MHz) to pin 34 from blanking part of output at pins 14, 15 and 16 2. The output amplitude at pins 14, 15 and 16 when video tone data is center (20H) are defined as GTnor. anieaeeae 3. Measure output amplitude at pins 14, 15 and 16 at video @ tone data minimum 4. GTmin is defined as follows: zo! @Tmin= 20 og Measured value (mrs) (4, GTnor (mVp-p) GT1M : Video tone control characteristic 3 FBY : Video frequency characteristics 4. The output amplitude at pins 14, 15 and 16 when 2. Measure the amplitude (peak to peak) except measure 2. Input SG.B (f=2MHz) to pin 34. from blanking part of the output at pins 14, 15 and 16. The 3. Measure output amplitude at pins 14, 15 and 16 amplitude is defined as YB 4. GT2M is defined as follows. f . 3. FBY is defined pola GT2M = 20 log Measured value (mVr9) 4, FBY =20log =P? (yp) GTnor (mVp-) GY Wpp GT5M : Video tone control characteristic 4 CRE : Chroma trap attenuation (common to R/G/B output) 4. The output amplitude at pins 14, 15 and 16 when TRE; Chroma trap maximum attenuation frequency of input signal is 2.5MHz are defined as GTnor. 2. Input SG.B (=5MHz) to pin 34. i. Input SG.C to pin 34. Measure the frequency level of 3. Measure output amplitude at pins 14, 15 and 16 3.58MHz at trap on/off (02H D4) data 1. The level is defined 4. GTEM is defined as follows. as No. Measured value (mVp- 2. Then, measure the level at trap on/off data 4 (trap active) GTM = 20 ing MOSSES ENS (ONE ap) 3. CRF is defined as follows nor (mV) Mocsuroll vse teed BLS Black stretch characteristics No (mVp-p) 2. At condition of Black stretch OFF (06H D3=1), set output 4. TRF is minimum value of CRF at which I2C bus data of level of the first step (the lowest step) to 2.0V and eighth step Trap fine adj, (12H DO/D1) is adjusted. (the highest step) to 4.6V at pins 14, 15 and 16 by adjusting Contrast (05H) and Brightness (0AH) 3. Change to Black stretch ON (06H D3=0), and measure the YDL1 : ¥ delay time 1 output level of the first step at pins 14, 15 and 16 1. Input SGA to pin 34. 4, BLS is defined as follows: 2. Measure the delay time from signal input to output at pins tai and 16 ¥ onan {put at pi BLS = 2.0 - Measured value (V) SGA ‘Ouiput signal 4ev Slaten ieleieietad (mM) Blok stmtbh OFF Measure the delay time at the center point of rise: Fed \\eenencn YDL2, 3 and4 : Y delay time 2, 3 and 4 4. Input SGA to pin 34. VMF Video mute characteristics 2. Measure the delay time from signal input to output at_ pins 1. Input SGA to pin 34. 14, 15 and 16 2. Measure output amplitude when mute switch (02H D7) is 3. YDL2, YDL3 and YDL4 are defined as follows: on "VMFon" and off "VMFotf" YDL2=Measured value (nsec) - YDL1 3: VMialedelined ceo YDL3=Measured value (nsec) - YDL2 VMF =20 log SMFOn Vos) (4p) YDL4=Measured value (nsec) - YDL3 VMFoff (Vp-p) ztENESAS 33

MITSUBISHI ICs (TV) NTSC TV SIGNAL PROCESSOR CHROMA BLOCK R-YN : Demodulated phase angle 1. Input SG.E (eb=single chroma=ec+50KHz) to pin 34. CnorR : Standard chroma output (R-Y) Coe at pin 62 when IC bus data of CnorB : Standard chroma output (B-Y) 3. Vey is the output amplitude at pin 62 when I2C bus data of 1. Input SG.C to pin 34, ‘test mode’ 16H D6=0, D7=1 2. CnorR and CnorB are output amplitude measured at pin 62 4. R-YN is defined as follows when IC data of ‘test mode’ 16H D6=1, D7=1 and D6=0, RYN = Tart OY X88 (deg) D7=1 respectively. = Wer xtgras (°9 Note: Vector should be found with taking the gain ratio of a ACC1: ACC characteristics 1 demodulator into consideration 1. Input SG.E (eb=570mV:level+ 6dB) to pin 34. 2. Measure the output amplitude at pin 62 TC1 : Tint control characteristics 1 3. ACC1 is defined as follows TC2 : Tint control characteristics 2 ACC1 =20 log Measured value (mVr-p) (a8) 1. Input SG.C (see the following figure) to pin 34, Based on Gort (mVp-p) the output voltage at pin 62, find the absolute angle as shown in the above figure ACC2 : ACC characteristics 2 -1sodeg odeg sovleg g0deg 1. Input SG.E (input level:-20dB) to pin 34. 2. Measure the output amplitude at pin 62 3. ACC2 is defined as follows: | : : : AGO? «20 log —Measuredvalue (Vr) ag t As oaoy Cort (mVp-p} £ A H OV : Chroma overload characteristics t q=Tan’t (B/A) 4. Input SG.E (ec=800mVp-»:chroma+3dB) to pin 34. GND, 2. Measure the output amplitude at pin 62 2. Tint data center (07H data 40H) is defined as the reference 8.,OV18 detined as follows: angle "TO". Find angles at tint data maximum and tint data OV =20 log —Measuredvalue (MVP) 4p, minimum. TCi and TC2 are differences in angle between Cort (mp) (a8) TCmax and TC and between TCmin and TC and detined as follows. Hie a operating input level Tot = Tomax - TC (dea) i iller operating input level TC2 = TC - TCmin (deg) 1. Input SG.E (level:variable) to pin 34 at input level OdB. 2. Lower the input level while monitoring the output amplitude at pin 62, and measure the input level when output amplitude is not found KilIP : Killer color residual 1. Input SG.E (level:-40dB) to pin 34. 2. Measure the output amplitude at pin 62 APCU - APC pull-in range (Upper) APCL : APC pullin range (Lower) 1. Input SG.E (feb=tec=3.579545MHz) to pin 34. 2. Increase the frequency until the output from pin 62 disappears. Decrease the frequency and note the point at which the output reappears; fu 3. Decrease the frequency until the output from pin 62 disappears. Increase the frequency and note the point at which the output reappears, ft 4. APCU and APCL are defined as follows: APCU = fu - 357954500 (Hz) APCL = fi - 357954500 (Hz) R/BN : Demodulation output ratio 1. Input SG.E (eb=single chroma=ec+50KHz) to pin 34 2. Vry is the output amplitude at pin 62 when I2C bus data of ‘test mode’ 16H D6=1, D7=1 3. Vay is the output amplitude at pin 62 when I2C bus data of ‘test mode’ 16H D6=0, D7=1 4, RIBN is defined as follows pupn =< VECImVe-) Vey (mVp-p) ztENESAS 34

MITSUBISHI ICs (TV) NTSC TV SIGNAL PROCESSOR RGB INTERFACE BLOCK VBLK : Output blanking voltage D(R)2 : Drive control characteristic 2 (R) 1. Input SG.A to pin 34 1 Input $G.A to pin 34 2. Measure the voltage of pedestal part and blanking part at 2. Measure DRnor and DRmin which are output amplitude at pins 14, 15 and 16. pin 14 at Drive(R) data center and Drive(R) data minimum respectively. 3. D(R)2 is defined as follows DRmin (Vp-p) = 20 log <P Output waveform D(R)2 = 20 log DRinor (Vp-p) (dB) i D(B)2 : Drive control characteristic 2 (B) VBLK hie 4. Input SG.A to pin 34. i 2. Measure DBnor and DBmin which are output amplitude at pin 16 at Drive(B) data center and Drive(B) data minimum respectively. GYmax : Contrast control characteristic 1 3. D(B)2 is defined as follows GYmin : Contrast control characteristic 2 DBmin (Vp-p) 4h _ D(B)2 = 20 log <P gy Input SG.B (f=100KHz) to pin 34. DBnor (Vp-p) 2. Measure output amplitude at pins 14, 15 and 16 GYEnor : Contrast control characteristic 3 EXD(R) : Digital OSD (R) VO characteristic GYEmin : Contrast control characteristic 4 EXD(G) : Digital OSD (G) I/O characteristic 1. Input SG.A to pin 34 EXD(B) : Digital OSD (B) /O characteristic and OV are exte mally applied to pin 34 2. Measure output amplitude which is higher than the pedestal level at pins 14, 15 and 16. The amplitude at GYEcrip : Contrast control characteristic 5 blanking;pariisnouldinetbemeasured, 1. Input SG.F to pins 20, 27, 28 and 30. 2. Set contrast control data to minimum and measure the (} output amplitude which is higher than the pedestal level at pins 14, 15 and 16. The amplitude at blanking part should not TRAT be measured Lum nor : Brightness control characteristic 1 Lum max : Brightness control characteristic 2 EXD(R-G) : Digital OSD level difference R and G Lum min : Brightness control characteristic 3 EXD(G-8) : Digital OSD level difference G and B 1. Input SG.D (Vy=0V) to pin 34. EXD(B-R) : Digital OSD level difference B and R 2. Measure DC voltage of output at pins 14, 15 and 16 except i. EXD(R-G), EXD(G-B) and EXD (B-R) are defined as that at blanking part follows: Output waveform EXD(R-G) = EXD(R) - EXD(G) EXD(G-8) = EXD(G) - EXD(B) o) EXD(B-R) = EXD(B) - EXD(R) GND EXA(R) : Analog OSD (R) V/O characteristic EXA(G) : Analog OSD (G) I/O characteristic D(R)1 : Drive control characteristic 1 (R) EXA(B) : Analog OSD (B) VO characteristic 2. Measure DRnor and DRmax which are output amplitude at 2. Measure output amplitude which is higher than the pin 14 at Drive (R) data center and Drive (R) data maximum pedestal level at pins 14, 15 and 16. The amplitude at respectively. blanking part should not be measured 3. D(R)1 is defined as follows Ea ececenk motoas

7 DRmax (Vp)

D(R)}1 = 20 log EPP ") 2 DRnor (Vp-p) (=) ie D(B)1 : Drive control characteristic 1 (B) 1. Input SG.A to pin 34 2. Measure DBnor and DBmax which are output amplitude at pin 16 at Drive(B) data center and Drive(B) data maximum EXA(R-G) : Analog OSD level difference R and G respectively. EXA(G-B) : Analog OSD level difference G andB 8. D(B)1 is defined as follows: EXA(B-R) : Analog OSD level difference B and R D(B)1 = 20 log PBmax (Ve) (ab) 1. EXA(R-G), EXA(G-B) and EXA (B-R) are defined as DBnor (Vp-p) follows: EXA(R-G) = EXA(R) - EXA(G) EXA(G-B) = EXA(G) - EXA(B) EXA(B-R) = EXA(B) - EXA(R) ztENESAS 36

MITSUBISHI ICs (TV) NTSC TV SIGNAL PROCESSOR OFEXR : Offset voltage between R and EXT(R) DOSD1 : Digital OSD speed characteristic 1 OFEXG : Offset voltage between G and EXT(G) DOSD2 : Digital OSD speed characteristic 2 OFEXB : Offset voltage between B and EXT(B) 1. Input SG.F (Vosd=1.0V) to pins 20, 27, 28, 30 1. Input SG.D (Vy=0V) to pin 34. 2. Measure rise time and fall time of the signal of output at 2. Measure DC voltage of output at pins 14, 15 and 16 except pins 14, 15 and 16. Measurement points should be higher that at blanking part than the pedestal level and blanking part should not be 3. The voltage when RGB output is defined as Vr, Va and Ve, measured and the voltage when OSD output is defined as Vexr, Vexe mney prsneteces cess essses === 20%) and Vexe, : 4.OFEXR, OFEXG and OFEXB are defined as follows soft 10% fn ii Output waveform at OFEXR = Va- Vex (V) we pins 14, 15 and 16. OFEXG = Ve - Vexe (V) @) (a) OFEXB = Ve- Vexe (V) Output waveform spt osbe AOSD1 : Analog OSD speed characteristic 1 @ AOSD2 : Analog OSD speed characteristic 2 one 1. Input SG.F (Vosd=0.79V) to pins 20, 27, 28, 30 2. Measure rise time and fall time of the signal of output at pins 14, 15 and 16. Measurement points should be higher C(R)1 : R cutoff characteristic 1 than the pedestal level and blanking part should not be C(G)1 : G cutoff characteristic 1 measured. C(B)1 : B cutoff characteristic 1 sli iene, ieee C(R)2 : R cutoff characteristic 2 ‘ 7 C(G)2 : G cutoff characteristic 2 paceypspearsecasensssyseeresnsg OG, C(B)2 : B cutoff characteristic 2 it it oie mavstorms at : he ins 14, 15 an 4. Input SG.D (Vy=0V) to pin 34 Tae mom 7 2. Measure DC voltage of output at pins 14, 15 and 16 except @ (0) that at blanking part osDt osb2 Ccon1 : Color control characteristic 1 BB(R) : Blue back function (A) Ccon2 : Color control characteristic 2 BB(G) : Blue back function (G) Ccon3 : Color control characteristic 3 BB(B) : Blue back function (B) 2. Measure output amplitude at pins 14, 15 and 16 when PC 2. Measure the amplitude (peak to peak) except measure data 08H=40h, and define as Ccond from blanking part of output at pins 14, 15 and 16 2. Measure output amplitude at pins 14, 15 and 16 under nurreasieeerge each condition 3. Ccont, Ccon2 and Ccon’ are defined as follows () Ceont, Ceon? and Ccons a Measured value (Vp-p) = 20 log

8 Ceond Ven)

WB : White raster function 1. Input SG.A to pin 34 MITXRB : Matrix ratio R/B 2. Measure the amplitude (peak to peak) except measure MTXGB : Matrix ratio G/B from blanking part of output at pins 14, 15 and 16 1. Input SG.G (rainbow color bar) to pin 34 cece 2. Measure output amplitude VA, Va and Ve at pins 14, 15 and 16 respectively () 3. MTXRB and MTXGB are defined as follows . Vr (Vp-p) MTXRB = —2P?) Ve (Vp) urxep = YolVe) | Ve (Vp-p) 2tENESAS 36

MITSUBISHI ICs (TV) NTSC TV SIGNAL PROCESSOR DEFLECTION BLOCK {H1 : Horizontal free-running frequency 1 Viree : Forced vertical free-running frequency {H2 : Horizontal free-running frequency 2 {Input SGA to pin 34 fH3 : Horizontal free-running frequency 3 2. Set V-free control data to ‘ON’, and measure the output Measure the output frequency at pin 7 when no signal is frequency at pin 17. input. r SVC : Service mode function Hfree : Forced horizontal free-running frequency Measure the output DC voltage at pin 17 when the service 1. Input SG.A to pin 34 allel 2. Set H-free control data to ‘ON’, and measure the output frequency at pin 7 FPVU : Vertical pullin frequency (upper) FPVL : Vertical pull-in frequency (lower) FPHU : Horizontal pull-in range (upper) Change the vertical frequency of SG.H and measure the FPHL : Horizontal pull-in range (lower) frequency when output waveform at pin 17 is pulledin 1. Input SG.H to pin 34. 2. Change the frequency of SG.H, and measure the VRsi: Vertical ramp size frequency at the moment when the output signal at pin 7 and = VRsc1: Vertical ramp size control range 1 ihe input signal at pin $4 are pulled in. The hortzontal pull-in Piso? - Vertical ramp size control range 2 range is measured by comparing with the horizontal frequency of video signal. a we HPT1 : Horizontal pulse timing 1 @ pin 34 : H-syno pin 17: Vamp 7 I VRpot : Vertical ramp position control range 1 HPT, HPT2, HPTS pin 34: V-syne pin 15: H OUT -s} i_VRpot pin 17: V-tamp HPT2 : Horizontal pulse timing 2 HPTS : Horizontal pulse timing 3 1. Measure the timing of horizontal pulse as same method in HPT1 VRpo2 : Vertical ramp position control range 2 2nHR 12 end:HPirs ate\\deined as follows 1. Measure the timing of vertical ramp as same method in HPT2, HPT = (Measured value) - HPT1 VRpot 2. VRpo?2 is defined as follows: HPTW : Horizontal pulse width VRpo2 = (Measured value) - VRpot VH : Horizontal pulse amplitude Le HPTW —»! VW : Vertical pulse width H ae pin 17 : V. PULSE vA pin 15 -H OUT w ~~ end HSTO : Horizontal stop operation VBLKW : Vertical BLK width Confirm that the horizontal output is high when the horizontal Output waveform at stop switchis on pins 14, 15 and 16 AFCG : AFC gain operation () 4. Measure AFCon which is the output amplitude of pin 19 —oomno when AFC switch is on and AFCoff which is that when the switch is off. WVSS : Minimum sync detection width 2. AFGG is defined as follows: Reduce the width of signal SG.| and measure the width of AFCon (Vp- input signal when the output waveform at pin 17 loses lock AFCG = 20 10g AEGON WPA) (4p) vain SGI ° AFCoff (Vp-p) f¥ : Vertical free run frequency Measure the output frequency at pin 17 when no signal is input. 2tENESAS 37

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR APPLICATION CIRCUIT (EVALUATION BOARD CIRCUIT) Vec= 8V Veo 11V CO Veo SV oO eee ueaeaeaaessSTwO [ee tt tc bovowour_| fe [at ]ivime % sie 233 2. - ORIN eM t—— be fe] ecTAUDIOIN 3 3 é 3 Eruseour [3] © v PULSE OUT 8 | Ftc ta ruoinectour z 28 * ow Fe] OGIN 1} 22255 | vneo veo gor [a] soz 4 oo 5 | om Z » fa] on} |S payor seats Emmure Po} 0 ‘i PPT EEE | Totty fi @LoP 2 aie zENESAS 38

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR PIN DESCRIPTION va 64 | VIF IN (1) Cy EA 1.6V 1 | VIF IN(2) <= 2 (1) 2 | VIF Vee (1) 5.0V 3. | VIF Voc (2) aad NS ove 4 4 vs 4 [HCO (4) 3.0V FEEDBACK nv VIL: 0.75V 5 SCL eK 90. 10 VIH : 4.25V ztENESAS 39

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR BV ve ~ Vm: 2.0V EBP IN - . (FBP Vth L=OFF) VTH: 1.0V (FBP Vth L=ON) Vv VoL : 0.0V 7 HOUT VOH : 5.4V DEF GND (1) DEF GND (2) VIL: 0.75V 10 | SDA 3a 190 (40) VIH : 4.25V Hi 7tENESAS 40

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR VS BV BV Vue 11 | AFC FILTER iJ J 4 a 3.5V [ae] | ‘ fe 8 i VoL : 0.0V 12. | FBP INV OUT Ton ee anv g ave POWER ON 13 -. : _ rf a ‘ 14 |ROUT “| oy 15 |GOUT i SA en ) 16 |BOUT prep lt as ztENESAS 41

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR BV 17 | VOUT ar 4.6V

18 START UP

Vec (1)

19 START UP

Voc (2) vo BV 5V- e- po ee =e (20) 3 Zz al rk |(1)Digital OSD Vit: 0.OV 20 ea [ ViH_: 1.0V (2)Analog OSD | 3 0.7Vpp Z VO WOES WO BV BV ayy vo 21 |v RAMP (2) FEED BACK a V RAMP lan 121) 22 | cap z 2) ztENESAS 42

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR Video/Chroma 23 | Vee (1) 5.0V

24 Video/Chroma

Voc (2) aS Me Sav 25 |fsc OUT ] 3.0V BV BV “Sev I 8: i we 26 | SPOT KILLER Ct, « | Tg 7.1V cre] (is) 5 18) 0.0-0.5V: INT RGB 27 |FAST BLK 1 27 1.5-3.0V: EXT RGB 4.0-5.0V: BLK ztENESAS 43

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR @) qt il TK | (1)Digital OSD VIL: 0.0V 28 fo [ Vin: 1.0V (2)Analog OSD | wy 0.7Vpp x 8 7 £ NV- N- V PULSE VoL: 0.0V 29 OUT @) VOH : 5.0V Be SV SV Mee 5vV-<> ® qt il th | 1)Digital sD Vit: 0.0V 30 for rT Vin: 1.0V (2)Analog OSD we 0.7Vpp pSV -5V Vv 31 | ACL/ABCL tel stENESAS 44

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR av i) 8 + a

8.7 VREG 7 ®

8.7V see | Te |= 100 av 34 | EXT/C IN 17V 5 8 i V- SV 5V-- Vv ov CHROMA i, He} 3° | APC FILTER | LES 3.2V | wid 2RENESAS 45

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR No ee Sov Vv om oA 36 |TV IN ptt | 4.7V (36) it SH J id 3

37 Video/Chroma

GND(1) BY

38 Video/Chroma

GND (2) BV «BV BV- Ft KF sav

5.7 VREG PD

39 5.7V OUT sv ® VS BV -OHOV x BV. 40 |Y SWOUT (40) 17V 28h 5 69 | i yop ztENESAS 46

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR BIV-E B7VE> BV jan 1 <87V MCU 5.7VREG 5.7V 1.25V. mr é EZ perv H: 5.0V 42 |MCU RESET @ L: 0.0V va VO 43_ INTELLIGENT on MONITOR @) 44 | HiVcc (1) a 45 | Hi Vcc (2) ztENESAS 47

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR BV BV SWITCHING |” av 46 |REG ae Open Collector CONTROL wr 47 | LIMITER IN * spat) 2.5V t + (36 : aver IF AGC CY) =. 48) 48 ran 28% 25V FILTER 2 4 wt 7 1 y 49 | QIF OUT 4 a“ 23V 49) 8 8 + + ztENESAS 48

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR BV AV Vv 6V BV tow Ci; 50 } AUDIO OUT ae. 2.3V Lie 9 st 3 Ay 3B: 3 5V-= SV <S5V

51 AUDIO ror fhe | ae 23V

BYPASS an : [ol tg ] EL 52. | EXT AUDIO bay IN <8v tir 52 SV BV-4 53 | FM DIRECT one 5 3v OUT im Nd ztENESAS 49

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR SVE SVS SVE ev re [ ra VIF VCO rv 54 4 3.0V FEEDBACK ; 10K @) wif il - Pp |e VS HV -OV-HOV Ce VIF APC Ay ea $6 | EILTER 5.0V Cp 57 | VIDEO OUT P 27V ztENESAS 50

MITSUBISHI ICs (TV) M61206FP NTSC TV SIGNAL PROCESSOR 58 | VIF GND (1) 59 | VIF GND (2) “er BV VE OV i I s Av AFT OUT | (60) 0.3~4.7V KK mol als 4 4 vue NS iV @1) QIF IN [4 pack A any 15K [| t tt 5V=r SV SV 62 | RF AGC OUT a @ 0.3~4.7V N] a BVONV SVS OSV BVO SVQ OSV (34 63. | IF AGC YY fy) 48 FILTER 1 rue ma 2.3V ztENESAS 51