M52300BSP MITSUBISHI | Alldatasheet
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MITSUBISHI ICs (TV) NTSC VIDEO CHROMA DEFLECTION PROCESSOR
DESCRIPTION
M52300BSP semiconductor integrated circuit has a built-in IC PIN CONFIGURATION (TOP VIEW) interface, and processes video signals and color signals. It also has all necessary functions to process horizontal and vertical 4 our 3] v. PULSE signals, except the vertical signal ramp voltage generation circuit. xnav erorecror Fitter [] 7] TIMING CURRENT This IC can be used in all kinds of television sets, including COINCIDENCE DET OUTS] Ed] sci reasonably priced ones and high-grade ones. It also helps simplity AFC-2 FILTER[AI gj SOA ‘TV set production lines, thanks to the !2C-bus control. AFC-1 FILTERTE] bi) H. vco V SYNC SEP IN[6] #7] y-CONTROL FEATURES H SYNC SEP IN Big] H vec (9) ‘With the built-in 12C interface, this IC requires fewer peripheral FBP. IN[B| #3] OSD IN(A) components than conventional ones, helping simplify production DIGITAL GNO [| 44] OSD IN(G) lines. y-GAIN Hi3] oso IN(@) Black signal expanding circuit ensures dynamic image reproduc- un] Hi] G CLAMP. tion, 10UT Fd 3] Veo (uIL) Built-in flesh color compensation circuit ensures improved color out & fa y-cLamp(e) reproduction. QIN 3 89} y -CLAMP(B) @Sharp images are reproduced thanks to the contour kiveck [| $ave vee (sv) compensation system with a built-in delay line. X-TAL [fg] B7] auto PEDESTAL CLAMP Provided with IQ demodulation, this IC reproduces color APC FILTER) Bal w. PEAK DET difference signals precisely. It can be connected to external RGB CHROMA IN [fal 53] Bap OUT input easily because an on-screen character display circuit is built ACC FILTER [ig Ba] y CLAMP (R) in, reducing external components such as switch circuits. B CLAMP Bo) B3] DC REGENERATION Horizontal and vertical signals are counted down by the 32f # 8 ouT Bi] 2] Y IN generator, therefore no adjustment is necessary. G OUT B2| Bt] Y CLAMP. ROUT Ba 0] FAST BLK. IN APPLICATION VCD Vee (9V) Ba] B9] Y OUT NTSC color televisions veo GND 3) Ba] mtx v IN ACL 6} 7] R CLAMP. RECOMMENDED OPERATING CONDITION Supply voltage tNg@..n.snnnnnmninnnmnennennenesned,5~5,5V (pin 8) Outline 52P4B 8.5-9.5V (pins 24 and 46) 9.0V (pins 24 and 48) Reted supply current... esneeees46.0MA (pin 4) SSSSSFSSSSSSSSSSSSFSSSSSSSSSSSSSSSSSSseS
9 MITSUBISHI
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MITSUBISHI ICs (TV) NTSC VIDEO CHROMA DEFLECTION PROCESSOR BLOCK DIAGRAM COINCIDENCE DET OUT VSYNC TIMING DIGITAL GND = BGP OUT SEP IN CURRENT H SYNC X-RAY PROTECTOR F.BP.IN SEPIN | v.SULSE H Veci9V) FILTER W o (2 z a ae z= al: 2h] [El] 28] /8 Lis veony(S) = o ES ge & (—)H.0uT Q wSe cs 8 >3/|93 y-CLAMP(B)(@) | © is ozl| ° el Eg rod Fac} a St —-@)H.vco 26 bo baked reno 8 ia >= [ r f
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MITSUBISHI ICs (TV) M52300BSP IN PROCESSOR NTSC VIDEO CHROMA DEFLECTIO! a VIDEO cHHROMA DEFLECTION PROCESSOR ELECTRICAL CHARACTERISTICS (co — Z ies [|| Unit |. sisted TT] | [2s] s [8 del elelapersiolon A abe Spe Sree Binal aaee aan eee eee elles ati Sohda rey aH erie comanee| | = td a cc Pee CEECE EEC alata CE ah SSS ti HERE fewe sae] S88 FREESE PEE ta a poleneaee EIRRSuMEREREUCREOCRRERUGEERRE ESE , PR CECE CECE CECH me | | RCC eo Pe Coe elt | RHEE rHephr erred BRa characteristic 4 Cocca co _ ett See 000S880 Es HEHE Pe ed elo BRT cea tteristic 7 | [Pw | SORRRERER HHH feos costes | be oH Coe ue Been Coad av Sr ntnaeene ceeeeeeroesnenes 7 ere cosmmie BEE we Fa EEE EE EEE Soom ea tere oe EARRSUEERERESTREACARESUOEERET mt ml sw i SSA0SHE8 0000008 nat ea as |_| pel we be ECOL CEE Ne [2 | 05 CCCeeeeo SSRREanE 5 peveerm [a aT SESSEGHESEREERGEEEEEE RCE CE gaverome [88] ty Fae CET BEaetGEGECEyEny a CoCo at ess puree | 56] FREE EEE tH Hh pear SERECUREEEREEUEEEERE ESE REECE Coca Drive amplifier SG ony CoCo SESEREEaE - a a CO HH obs REECE Drive, ampiiier of fam TEE ASERAREESEEL 5 : zr {a Coeceeccr Ath Lobe fee EE gasoreme || be bem CT Poh — Coeeeee coe femme REE ee TH : cree | Bee wala Re SEO hy coth Pata fem H ero SERRGRECCORGGERGREOee Semele tHe aan . RGB | acs trequency fee ECE eee oe sc ° Bie | saeucae | 5 | aRERRRNUE eee fe PRC at aun gi |omommes 88] 9 FCT Leese hb ; Pesicieiecett EEECODAAE sr [SS SSaEaneafaqenta oven asetsussprer or Coccecoe SauuuEE | be Pt EEE Pee ee 2-871 MITSUBISHI . 7.“ ELECTRIC
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR ELECTRICAL CHARACTERISTICS (cont.) es] Parameter lee ells le be elilmasolnelstsascsqosde | | | | ae 3e> Val elell cael ololedele| | ae FTetS] 12181918 fell leholeielalee ea ix rw TELL ccc. ws comm 6 Dre EE i OE we Datgign nt Eanngen BOUGCOCORN an sencitone Pe Eco ma egg fan RECUR SEEDS RR SREERRERRERERR SE reais POE i CC Tae | Bl apa beep) COC Cee cece pane | ie” ew lal | T ve T Ce " Tolzonal signe be CCE EEE EEE EEE Fra ut Ceo pul ranget Pew tl Eee cra| Horzora gral EEE od — | [| putin range 2 a) SESS eee Horizontal gna bee eeeeeeeeeeeeeeey TH # pulse with Perf sa | Horzoralegnal ad af a »| utp vaage Pe OCC my | Yate SE TTT ord se fay Pes Ce es Oe rw [eitewse |s Pee “ > [ree | TT old og | FPV 3 pabiorerge fe | few PE eumaaepaeel so |, (ET TTT reece al oe ro? [ens Pe OCC ama sof, IPT Tre Tere el eee re EHH pelea [8 RE 22 lon Rp ITH lee y FP | voteoe pea ee pee fame [REESE cc 29 voltage 6 vox | Vat gre | See | od v seat Pea Cee pease [PREECE CCE tL Yerea ia ge peel COPE A MSS | aint Pe CCE essa psecton ET od a ol | eet Peet) CECE eee a | Sto TF | EEco we [aco is BREE EEEHEEEEE EEE EH vanonai gral 86 a ETT a al coon phase 8 bE Cee ee MITSUBISHI 2-872 oe MiSs ;
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MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR (cont) SLECTRICAL CHARACTERISTICS a soe SS es | temen_[in_oTs fama rfp ee ee oe po — oe EH CEE oc [ssa is eer et Cl wets eee Pe [sesso | HH pe eee Pree OC Pee OO Eto BAR epee EY [ssessee| TT = pf fee [seen | _ ati fee eee eesieretet OO Ce pe Be oor = fa ee Regeneration wrvwn_FTTTI DeCCe Ce a a eleal ele ei TSE TS [eT fool elo [le fee ee Ee — ae pee Fe CCE eo {ween fT ee fr fumes Fee Perrier rir Pee EEE Eee racine oH SSSSSSeeeeeene ae oe oo SeSSEEEEEESEEEEEE fuamcome eee Ee es a vs pees eo oe “ fees Free “T ee ee Cee = ee Foto SEE EEE Et = [sae Fe ee Sas eae COE OE eo = [sas Fee ee Peper Hoo os fests eet Oe sesame EE eo os [sats 2 a ae [eo fawamaee Fame te ee ELECTRIC . 2-874 .
MITSUBISHI ICs (TV) M52300BSP —$ NTSC VIDED CHROMA DEFLECTION PROCESSOR ELECTRICAL CHARACTERISTICS (cont) [sm | Pam eS aaetulitpaiiew novad | Funeton [os]o2] | sx[coconcou| mm] xe] y [anr[ormfeca|crmcca|c@era]cofee]ruefoes4ser] ar [aur]ynal Joow Singin Sadie tf fd creresorsie! | runcton | TT | fol TT TPP TTT PPP rrr yy tir Joow saageanrg Swe shereciorate dL runeion TT TT fel TT TTT TT Pt TTT PTT jcow |Seuenanny beeevere | fT Tf creresonsne” [runetion | TT [Ted [TTT TT TT Pt PPP TTT Pe TT cow seems Feeesewet tT TT TTT TTT : [Fureon | T [ | fal TTT TTT Tr ty Prt rr yt Ty fom [Baas Feast aigess| TT TTT eg a eee gang gee acess eeeeseeee Brightness: ‘Sub address om | Bee [Function TT TTT TT tT Tt tel TP Prt tT TTT rT ow [ature feeweet titi ttt oy characteristic? [euncton [TT TT | ty tT fe TT PTT | soe] osoiwe.e feeaswes {fT Jee FLEE rr Pitt ty TPP [runeion | T TTT TTT Try TP Py Per rr try) peewee feet CHEE eee pe fe ames foe | | pee Ed Ltt crane Frese Feber eH sen [Function T TTT TTT TTT fofo TT TT TTT paler Feet oot Het tere orcs] ureerte Subadiess| TT | TT | on Vref Jf ete PT TT Josce|aurarote | sipadtes|___f tate ee 8 [runeton TT TP TTT Tt TT fesfesf TT TET PT TT | ovcs|oeyrow fSmeteee | 8 pom Jt ete) ETT TT once] gargeroe [Sesto | ft po sen [Funeion TT TTT PTT TTT fesfesl tT TT TTT TTT Jew ome, Peewee [Function | JT | | yt {ef LE [TT cmloae Sbawes TP Pd Cd ee ee Pt cut? | cut? [subecdoes[ TT PP [Functon TT [| | PPT TT | sete} LTT las [ateamaey Sewer} Bw _| sharactelste pemme p L E -feet | 85 lospmeans Ebewwes) oF s! [Fureion [ TT [PPP TTT yyy Pry PTT Try Tre fl al See seeec Sneeeasecaseees | Funeton | write poor | Subactvess |e ot {Function [TTP PTET PTT ry Tr PP rr Terr] MITSUBISHI ate MTSUBS 2-875
MITSUBISHI ICs (TV) M52300BSP ROCESSOR NTSC VIDEO CHROMA DEFLECTION PI 16 (con) Pal LECTIN CMAPACTERS SIs ss pi nea aaa i Sa eean eewesesencessetenseeesese Ree oo Bianking wi Function a7 hi27| ae eS eect Soe Seeteeetostasnavensaraed C--— Bier ee = LT i Fae te ERRRES UPEDEEEESS SEEEEEEEE Mane | Sra ag ee eee ie eo Horizontal [TLL] ree CLE ren | SSR Doerr CCCerr — [ swecwess [I COCO es ee ier [To ++ mie feo Sie eer ee Do : [| weg Feet Sd > [eas fewer PT a rise einer ee ese TOOT Jp pbe row | Nae feet eee Po . — o> | Bystgats,, eet Eo [subacdess| | CCOOCCC Pe tap TT ann [TTT fo eee EEE —— Po aug See oo ° Po feet om | | an pamela rr von | Sapeelom | Subse WEEE vol a — Merce janet | Sub addons SESE jo [sae Dee En nn ee oveonial aga [eee EE | Coo acs [gee fee current rd = a vs ee a eeaSSEEETTTRABEESEESEESE a a
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MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR ELECTRICAL CHARACTERISTICS (cont.) symeot] Parameter FSweacttess | cen _[oonfosnfosrfernfoou] oan [oenifocrfoorfoenforifion] vm [ak | Funetion [os] oa] [su eoxfcortcor| wy] He] [anslorniccscemferaioe/amnfara| se] rte penser ar [aur| nn) a nO whee fruneion | TT Ti tT? ?TTt ty Pt tt rrr iy rrr) Eee ee [Funeton [TT Tre er eT ee [ps [somewhere [Function | [ { [ te} | | TTT | Se eye ELECTRICAL CHARACTERISITCS TEST METHODS. (4) Calculate BLSTn as follows:BLSTn=V BU/Vw x 100/IRE] YMAX 1 (1) Set signal a to 100kHz and 1.0V-p, and input it via SG32. (2) Measure pin@ output amplitude(P-P) ,as shown below: |INPUT:Y18 OUTPUT:Y18, VBL — (Note) M| Waveform peak OUTPUT:Y19 VV VLIV ties i PEDESTAL ee Y20 _ fama 20 Gy Yat (1) Set signal a to 100kHz and 0.35Ve-, and input it via SG32. _ (2) Measure pin® output amplitude(P-P). Itis called Gt. _ paurewe y21 NVALUE 3 (1) Set signal a to 7 MHz and 0.35Ve., and input it via SG32. (2) Measure pin % output amplitude (sine-wave portion). It is called YB. (3) YBW=20log [YB (Ve-P)/GY1 (VP-P)]{dB] (3)GY1=2010g(G 1(V-P)/0.35(VP-P) [dB] Dc REG1 YTMAX (1) Set signal b to sync level 0, and input it via SG32. (1) Input signal a (f=3MHz) via SG32 (2) Measure DC voltage at where pin 29 output is lowest. (2) Measure pin @ output amplitude. It is called TY1. Dc REG2 (3) YTMID1=20I0g (YT1/input amplitude) (dB) (1) Set signal b to sync level 0, and input it via SG32. YTMIN (2) Measure DC voltage at where pin 29 output is lowest.This, (1) Input signal a (f=3MHz) via SG32. voltage is called DCR2. (2) Measure pin @ output amplitude. It is called YT2. (3) DCREG2=DCREG1 - DCR2 (3) YTMID2=20l0g (YT2/input amplitude) (8) BLST3 and BLST4 ~ (1) Set signal ¢ to 100kHz, V1=0.15V and V2=0.2V, and input it LL via SG32. / LS (2) input signal n via SG15. M. (3) Measure pin 2 output amplitude (voltage from pedestal to ocreas| CORES! “white” peak). It is called Vw. Measure setup voltage pore (voltage from pedestal and sine wave bottom.) It is called Vou. GND SSS ate MTSUBSH “& ELECTRIC 2-877
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR YLIN RIQ (1) Set signal a to 100kHz and 0.7VP-p, and input it via SG32. (1) Set signal h fsc to 3.679545MHz (100kHz higher than (2) Measure pin @ output amplitude(sine wave portion). It is normal), and input it via SG18. called YL. (2) Measure pin @ output amplitude. It is called Ri. (3) YLIN=20log (1-YU2G1){dB] (3) Measure pin “® output amplitude. It is called RQ. NRC1 (4) RIQ-RVRQ (1) Set signal a to 100kHz and 50mVe-P, and input it via SG32. MTX1 through MTX7 (2) Measure pin @ output amplitude. It is called NR1. (1) Set signal a to 100kHz and 0.35VP-P, and input it SG12. (3) NRC1=20log (NR1 (mVP-r)/50 (mVP-P) [dB] (2) Measure output amplitude (sine-wave portion) under acct appropriate switch/data conditions. The amplitude is called (2) Measure pin @® output amplitude. (3) MTX1 through MTX7=20log(MTn(V p-P)/0.35(VP-P) [dB] Acc2 cet (1) Set signal e to —20dB, and input it via SG18. (1) Set signal a to 100kKHz and 0.35Vp-p, and input it via SG12. (2) Measure pin (@ output amplitude. It is called AC2. (2) Measure pin @ output amplitude (sine-wave portion). It is (3) ACC2=20log [AC2(mVP-P\\ACC1(mVP-P)][dB] called Vect. ACC3 (3) Calculate CC1 as follows: CC1=20log (V cc1/input)[dB} (1) Set signal e to +6dB, and input it via SG18. cc2 (2) Measure pin @® output amplitude. tt is called AC3. (1) Set signal a to 100kHz and 0.35Vr-», and input it via SG12. (3) ACC3=20l0g [AC3(mVP-P\\/ACC1(mVP-P)][dB] (2) Measure pin @ output amplitude (sine-wave portion). It is KILI called CRI. (1) Set signal e to-20dB, and input it via SG18. (3) CC2=20log (CB1/CC1)(dB] (2) Measure pin ( DC voltage. cc3 Kia (1) Set signal a to 100kHz and 0.35VP-», and input it via SG12. (1) Set signal e to -51dB, and input it via SG18. (2) Measure pin 23 output amplitude (sine-wave portion). It is (2) Measure pin (5 DC voltage. called CR2. DKIL (3) CC3=20l0g (CB2/CC1){d8} (1) Set eb of signal e (burst portion) to —2> dB, and inputit via. CC4 sG18. (1) Set signal a to 100kHz and 0.35Yp-p, and input it via SG12. (2) Measure pin (2 output amplitude. (2) Measure pin 2 output amplitude (sine-wave portion). It is 1 called Voca. (1) Set eb of signal e (burst portion) to—s2 dB, and input it via (3) CC4=20log (Veca/input) SG18. (2) Obtain the angle based on pin (2) output waveform, in the same way as for TCEN. This angle is called IT1. sine wave| (3) T1=IT1-A1 2 mn (1) Set eb of signal e (burst portion) toe dB, and input it via SG18. ‘COMMON OUTPUT WAVEFORM (2) Obtain the angle based on pin {2 output waveform, in the CCS same way as for TCEN. This angle is called IT2. (1) Set signal a to 100kHz and 0.35, and input it via SG12. (3) T2=IT2-A1 (2) Measure pin 23 output amplitude (sine-wave portion). It Is 17 called CR3. (1) Tr=IT1 172 (3) CC5=20log (CRIVcca)[d8] FL cece (1) Input signal 0 via SG18. (1) Set signal a to 100kHz and 0.35Vp-p, and input it via SG12 (2) Obtain the angle based on pin ‘12 output waveform, in the (2) Measure pin @3 output amplitude (sine-wave portion) . It is same way as for TCEN. This angle is called IF. called CRA. (3) FL=AI-IF (3) CC6=20l0g (CR4Vcca)[d8] Ala CONt (1) AIQ=Al-AQ (1) Set signal a to 100kHz and 0.5VP-p, and input it via SG28. (2) Measure pin 21, 22 and 23 output amplitudes (sine-wave Portionn). (3) Measure pin 2 voltage, It is called Vcont. eee
4 MITSUBISHI
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR CONS CUTI through CUTS (1) Set signal a to 100kHz and 0.5Ve-p, and input via SG28. (1) Input SG6 syne signal only. (2) Measure pin @), @ and @ output amplitudes (sine-wave (2) Measure pin 0, @ and @ output DC voltage, except at portion). The amplitudes are called, respectively, COB1, CO blanking portions. G1 and CORI. RGB BW1 through BW3 (3) CON48=20lo9 (COB1/CON1)[48) (1) Set signal a to 4MHz and 0.5 vp-», and input it via SG28. (4) CON4a=20l0g (COG1/CON18){<B] (2) Measure @, @& and 2 output amplitudes (sine-wave (5) CON4R=20log (COR1/CONI 8){d8) portion). They are called, respectively, BWB, BWG and CONT BWR. (1) Set signal a to 100kHz and 0.5Ve-r, and input it via SG28. (3) RGB BW1=20!0g (BWB/CON4)[dB} (2) Measure pin 2), 2 and (3) output amplitudes (sinne-wave RGB BW2=20log (BWB/CONS)[dB) portion). The amplitudes are called, respectively, COB2, RGB BW3=20iog (BWB/CON6)[d8] COG2 and COR2. osp st (3) CON7=20log (COB2/CON 1 8)[d8] (1) Set signal n to 5 Vo-, and input it via SG43. (4) CON7a=20!0g (COG2/CON 1 8)[d8] (2) Measure pin 21, 2 and @ output rise time and fall time, as (5) CON7A=20I0g (CORZ/CONI 8){dB] ‘shown below: (6) Measure pin 2. This is called Vcon2, CONt0 (1) Set signal a to 100kHz and 0.5Vp-r, And input it via SG28. | (2) Measure pin @), @ and @ output amplitudes (sine-wave | portion). The amplitudes are called, respectively, COB3, : COG3 and COR3. ri M (3) CON108=20l0g (COB3/CON18)[dB} (4) CON10s=20log (COG3/CON 8)[d8) (5) CON10A=20log (COR3/CONI 8)(dB] FAST S1 BRI through BRO (1) Set signal n to 5Vo-P, and input it via SG30. (1) Input SG6 syne signal only. (2) Measure pin 20, 22 and 23 output rise time and fall time, in (2) Measure pin 2), @ and @ output DC voltage, except at the same way as for 143. blanking portions. Wand P (1) Set signal a to 100kHz and 0.5VP-P, and input it via SG28. (2) Measure pin 38 output DC voltage. BLKW1 to BLKW3 M (1) Measure pin Gi, 22 and 23 horizontal signal blanking width. GND OSD4 through DC12 M (1) Input SG6 sync signal only. (2) Measure pin 2), @ and @ output DC voltages, except at blanking portions. ACL FH (1) ACL=Vcon1—Vcone [mV] (1) Apply no input DAG1 and DAGS (2) Measure pin i: output frequency. (1) Set signal a to 100kHz and 0.5VP-P, and input it via SG28. V46MIN (2) Measure pin @ output amplitudes (sine-wave portion) twice. (1) Apply no input. Drive Amplifier Gains: DAG2, DAG3, DAGS and DAG6 (2) Set pin 46 voltage to 7.5V (1) Set signal a to 100 kHz and 0.5VP-r, and input it via SG28. (3) Measure pin 1) output frequency. (2) Measure pin 2) (B OUT) and pin 2? (ROUT) output FPH1 The amplitudes are called DAGB1, DAGR1, DAGB2 and DC voltage is no more than 4.0V. DAGR2. (2) Increase signal k frequency gradually. Measure it when pin (3) DAG2=20l0g (DAGB1/DAG1){dB} 3) DC voltage exceeds 5.0V. This frequency is called PL. DAG3=20l0g (DAGR1/DAG1 [dB] (3) FPH1=PL—15.734 [kHz] DAG5=20l0g (DAGB2/DAG4)[dB} DAG6=20log (DAGR2/DAG4)[dB} 7“& ELECTRIC 2-879
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR FPH2 viss (1) Set signal k to 17.5kHz, and input it via SG6. Check if pin@ (1) Flow 1A current out of pin@), and increase the current. DC voltage is no more than 4.0V. (2) Measure pin 62 output frequency, and measure pin® (2) Decrease signal k frequency gradually. Measure it when pin outflow current when the frequency reaches a level that is ® DC voltage exceeds 5.0V. This frequency is called PH. above FV by 5Hz or more. (3) FPH2=PH-15.734 [kHz] x TH and VH (1) Apply 1.0V to pin @. (2) Check if pin® output is LO. V3L VH (1) Apply no input. (2) Measure pin @ DC voltage. m4 AFC GND (1) Measure pin ©) output amplitude difference when AFC SW PIN (1) OUTPUT WAVEFORM setting is changed. (Sub-address 12 data is changed to C6 FV and C2.) (1) Apply no input (2) Measure pin $ frequency. 8v __ ee M He ov ~ FPV (1) Set signal 4 to 100Hz. Input via SG6. (2) Monitoring pin §2 output frequency, lower signal 1 frequency. HP (3) Measure the frequency when pin $2 output frequency meets (1) Shift horizontal signal phase from the maximum to the signal 1 frequency. minimum (by switching from A3 to B6 at sub-address 0A), TGP, TBGP1 and TBGP2 and measure the change in the period between pin 1 pulse reise and syne fall. H.SYNC. vw (1) Input signal 1 to 20sec 60Hz, and input it via SG6. (2) Measure pin §2 output frequency. TRG w BURST GATE PULSE (1) Set signal 1 to 60Hz and 100mVP-e, and input it via SG6. i >| fe TBGP2 (2) Measure pin © output frequency. oP FBP (1) Pin @ output DC voltage. VOH, VOL and HISS (1) Flow 1pA current out of pin (and increase the current. (2) Measure pin (i) output frequency. and measure pin ® outflow current when the YOH frequency teaches a level xD that is below FH by 50Hz or VoL more. eee
MITSUBISHI ICs (TV) NTSC VIDEO CHROMA DEFLECTION PROCESSOR INPUT SIGNALS. Vide U ‘ia Variable leo signal fariable (sine wave) AS A qT Over Ww uy (0.357Ve-PIAPL S35 u8 Blanking pulse } | Roraavee ae 0.375, ae 2us ‘ov APL 100% ops veep reference Lak 75s i signal Fo.143 . at 180" Sus, 635us ver 0 90° 9 _[0']80] Fodb = b chroma signal Odb SUT 200mve-P et TOOMVE-P it: CO = A Video signal (i) fia) fitanitn | Y (sine wave) | ve 635 u8 200mVp.r=0d8 Frequency should be fss: Burst signal ed frequency ohn 3 Q aie {sc: Chroma signal] roma 7 frequency standard signal |, «FU tss=fsc=3,579545 (color bar) Wee | MHz 45 us OdB:e0= 63.548 100mVp.P OdB:e0= 200mVP-P tss={so=3,579545 J MHz Chroma Fed — (frequency) 100mve.p OdB:ee= 200mve-P Compared with chroma signal-1(f), Chroma both burst and chroma frequencies ig! are variable with this signal. © The same as chroma signalt-1 (f), hroma. ‘except that fsc=5.529545MHz. h | signal-3 gh (fss=3.579545MHz) Standard = t reference 5 usa signal TSS Hs lg 149 us APL 50% PR | ete | Periodic Duty 90% o signal 1 u LEV Pou e gna Periodic 90% S| signal 2 U BVP OU eal [om [eure O08? toomv ee ore SERS MM ELECTRIC 2-881
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR VW aaa Seas" TYPICAL CHARACTERISTICS THERMAL DERATING (MAXIMUM RATING) red = 1.35) LN 5 10 = \\ o , G os + IAG wy 0 N ic) 25 50 6575 100 125 150 AMBIENT TEMPERATURE Ta (‘C) os MITSUBISHI 2 - 882 ELECTRIC
MITSUBISHI ICs (TV) NTSC VIDEO CHROMA DEFLECTION PROCESSOR NTSC VIDEO CHROMA DEFLECTION PROCESSOR APPLICATION EXAMPLE ° a 3 a 5 3 3 om & To. oO w Rr Fd Fa 33 = bos TS 8 Sing 5 mim | a Zz Site 8 ssf ass [1 f=] fl fe] [Ts [= 7 ; a Ps Se, =| 23) |Z5| (a = ext_tf se F sa] |z8 Lio SEL4e es| Seis us cs " g 731 [88 age or—F{8h |® 8 ll| log Eo 88a . ou zo ia (++ 2 ot +¢-{$} ee 2 Y ~ § z re) nN © 1S] aS @ po pen > | 3 | ; Ee} + (&] 32 ay z 7 zz Gs x5 as | les; Us ; Pe re} bz co} (S| © <£ Fa Q a iii, | eee > g ; E88 31.3 ae — ae Sle 2 > Loa] 8 ee b c oF yt ote ar 3 fer ee] FS 8s g Ee 2 g off}42 Fd yi * IF} oz" 3 a! lo 8 ae | id ay Pe i + vs « a] [2 3 zw [=] et 2 t fake? 3 gt 42 & Shar ||s 4 s fo zwllél au me Fe ko Lee /|F
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‘ [| co i 2 =] © ° ° z yn oy y z 5 33 3 o Units Resistance: eee @ wrsusisH NA ELECTRIC 2-883
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR DESCRIPTION OF PIN [_PinNo. [Name [Voltage andwave information | _—Peripheralcircuitofpins__— [OC voltage vec Hyec H.OUT ou 4h °PIN1 39k vec H.Vec Le ™ X-RAY PROTECTOR, FILTER ©PIN2 et 3k $2.6 47k $e 2k 5.6k Veco Hyec COINCI- cTas @ DENCE a DET.OUT o PINS 2kg 2k Vec H.veo AFC-2 So OPING @ FILTER 54 ot 4.5V a
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR DESCRIPTION OF PIN (cont) [“PinNo. [Name [Voltage and wave information [_—Peripheralcircuit of pins [DC voltage Voc H. Veo ‘Gl Ty AFC-1 ch 3 FILTER — PINS 6.3av Veo Hee V.SYNC * © SEP.IN 6.8V PING 12k Vcc HVce H.SYNC : ® SEP.IN 65V PINT vec H. Nec ral FBP IN Goa cP ¢ MITSUBISHI 7“ ELECTRIC 2-885
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR DESCRIPTION OF PIN (cont.) [_PinNo. [Name [Voltage andwave information | —Peripheralcircuit ofpins [DC voltage © DIGITAL ee Veo Hee ‘60k @ y-GAIN tok 3.0V PINIO 10k 30k Voc voc amo om Saal © PIN11,14 oe 2. 25k 32.25k Veo! Heo 1OuT ie 2.5V J opiNt2 40k Voc! Hee QouT | 2.5V 33 oPinis EEO ¢ MITSUBISHI 2-886 é ELECTRIC
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR DESCRIPTION OF PIN (cont.) [_PinNo. [Name | Voltage and wave information | __—Peripheralcircuitof pins [OC voltage Veo Hee 25k @ KILUBLK ea PINS 25V 20k 25k Voc H.Voo @ X-TAL 3.58MHz of X-TAL al OPINIG, 3.0V
8 I ~ 88
Vgc H. Nec 7 : APC ro p=t oPINIT FILTER Ci ste 3.0V vec Hvce 10k [209 CHROMA se @ cr PINTB Sp i 5 ee ‘NB ELECTRIC 2 ~ 887
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR | —$ $ rrr rr Eee SOR DESCRIPTION OF PIN (cont.) [_PinNo. [Name [Voltage and wave information | ___—Peripheralcirouit ofpins——s|_—=S(C voltage Voc Hoo | | Sp © PINI9 acc 106 2.5k tk Sk Veo Hyco @ B CLAMP @ R CLAMP 3.5V @ G CLAMP PIN20, 27, 42 Vec Hee @ BOUT () GOUT 2.75V (x) ROUT PIN21, 22, 23 (gv) Pe ie | — | GND Veo Hoo [. | o PIN26 6 ACL 15k | T | 3.0V ae [heya nyt] Q a 8 8 2 - 888 é ELECTRIC
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR DESCRIPTION OF PIN (cont.) [_PinNo. [Name [Voltage and wave information | __Peripheralcircuitofpins [| OC voltage Veo Heo tk MTX
8 YIN
2.25k Vgc H.Voo @ Your 3.0V PIN2B Vee veo FAST BLK. PIN3O @ IN 5.3V 75k $7.5k $7.5k 35k )2.5« ek 36k 36k Tt Veo Heo t Re (3) Y CLAMP oy 4 oPIN3t —_—— 1k 1k eee 7“& ELECTRIC 2-889
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR DESCRIPTION OF PIN (cont.) [_PinNo. [Name [Voltage andwave information [Peripheral ciruitofpins [DC voltage | Veo Hoe ie . i @ YIN aoe opine 2.5V ween 8 8 Voc H.Vcc ° 1k oc 8 REGENE- 2.5V RATION PINSS 11k vec —-H.Vec 2k: y-CLAMP 8 i) =] y-CLAMP 3.5V y-CLAMP (@) Veo Hoe BGP OUT on PINSS av 3.2k sw 2-890 ELECTRIC ,
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR DESCRIPTION OF PIN (cont) [PinNo. [Name Voltage andwave information | —Peripheralcircuitofpins TDC voltage | Vec Hee 70k INGE @ | WEA oev 20k. 20K Vee Hye [oe : AUTO ‘alar @ PEDESTAL oy At 29V ‘CLAMP J bal 0 PIN37 <1) QQ 1.15k 375 VCD Veo ewe | Pe fe [ Veo Hye OSD IN GL 8 ®) @ OSD IN @ |Som er t-oPINGS, 44, 45 (R) H Veo Voc Hee 47k 7.5k $ 7.5k: y-CONTROL — PIN47 tk f ae 7“& ELECTRIC 2-891
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR DESCRIPTION OF PIN (cont.) [“PinNa [Name] Votiage and wave information | Petpheralcreut ofpins | DO wotage ——] Veo Hyco @ H VCO f=Approx. 500kHz 42k $4.2k 56k SK pins Veo H.Voo 20k @ SDA 44Vv PINGS Vec Hee 20k
9 SCL
20k: 10k 31k eee MITSUBISHI 2-892 ELECTRIC
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR — eee DESCRIPTION OF PIN (cont.) [ Pino. [Name Voltage and wave information | ____—Peripheralcircuitofpins S| ~—SOC voltage | Veo Hee 50k: Q V PULSE PINES 8.0V 30k (2C-BUS ADDRESS LIST (1) Slave address AG AS A4 A3 A2 A1 AO RW 10 1 = 1 1 0 1 = O (=BAH) (2) Data format [lee [oT [ete [ed Starting condition Acknowledge bit Finishing condition —..
MITSUBISHI ICs (TV) M52300BSP NTSC VIDEO CHROMA DEFLECTION PROCESSOR FUNCTIONS AND SUB ADDRESSED CONTROLLED BY I2C-BUS SYSTEM Pi te Sub OC voltage a rameter adgross | p7_[ 06 [0s o4_ | 08 ba | pt [bo A | 2 [pt apenure cont? | on | o | 0 | - | - | a | ase | o | 0 | [“3[shapnessSSS* || 0 ae | mae [nage | nat] A0_| | “4 [eontrast ont | oo | as _| nas | aaa | aaa | aaa | ast | Ado | [5 [NReomngiewr | oH | o | o | 0 [0 | 0 | asa] Ast] as0_| [6 [eoiorcont or | 0 | are | are | Ard | ara | are [Art| a70_ a [8 ['arc-2 phase [oan [| 0 | Ang | AAS | AMS [aaa — | [2 [positon oa of |) ane faa | aa] [10 bright conto] 0 a | 5 [A ABS Ape [ABT ABO] [1 [are (@) oc 00 | acs | ace | aca” | ace] act) ACO | [12 [ive (8) oon 0 0 as | a] a0 | a2 | aD ADO _| [13 [outed 0 ARS [Aes [AA | AE | AED | ABI) ABO | [14 [out ot (Go| 0 | AAS | AFA | APO | APO | APY —aFO_| [15 cutoff) [10H | 0 | arog [Aros [Aton | “atoa | atoa_| Ato _|_A100_| [ie [eiKseed Ge [17 [etksoect (Gy ef [18 [eck soect@) a wo [19 | fresh cont onof A a [20 [-aemod axis ; a Sone SWF a a Sd [2 | arc-tspeed ve ror [Pes Tyne ono eo ee MITSUBISHI > 204 wre TES .