M51365SP 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) _ PLL-SPLIT VIF/SIF xox: EEETION PIN CONFIGURATION (TOP VIEW) The M51365SP is a semiconductor integrated circuit consisting of an IF signal processor suitable for color TV RE AGC ouTpuT (Reverse) [1] [30] VIDEO INPUT h AV. sets and NTRsiweih AY, VIDEO NEGATIVE FEEDBACK [2a] CONTROL OUTPUT Circuits include VIF amplifiers, video detector, VCO, APC EQUALIZED OUTPUT Ea) vineo ourpur detector, AFT, video equalizer, plus IF/RF AGC and SIF RF acc veLay [4] | —— detector functions. Vee (wir) [3d es ° IF AGC FILTER [6] = [25] APC FILTER GND (VIF) Gi fa} GND tvco) FEATURES eneur{ 8 } veo cou ‘@ Employment of a full synchronous detector circuit using eno si) fe] 2 EB vec woo PLL as video detector provides excellent DG, DP, 920kHz Sie det INPUT [i] Ea} CONTROL FILTER beat and cross color characteristics. Vee (SIF) He et AUDIO OUTPUT LIMITED INPUT g] LIMITER OUTPUT @ Usage of PLL-SPLIT method to obtain intercarrier by ~~ Bypass [ie FM DETECTOR INPUT separating video IF and audio IF pracessing by VCO output SIF det OUTPUT [fS fig} AFT OUTPUT provides good sound sensitivity and reduces buzz. In consumer sets, intercarrieris also available from the video Ojutline ;SOP4B detector output. @ Built-in video equalizer suitable for VTRs and color TV sets equipped with video output terminals. @ Employment of quadrature detector circuit for FM detection of audio IF requires no adjustment.

APPLICATIONS

TV sets, VTR tuners RECOMMENDED OPERATING CONDITIONS Supply voltage range .ssiccssssssssssesseeiseenseeneeene B1OV Rated supply voltage ....sscssesssssseusessssssssnseenseen OV BLOCK DIAGRAM AFT COIL veo colt AUDIO ER VIDEO OUTPUT AEE AR OA LOONTHRR Gureur Sueur ‘ @A) sno weor t—— ConTROL, @ rl — 1) vec (veo) LOCK PHASE Lt -M eM | contro. || “FT J) betector outace] [DETECTOR — ree VIDEO SONTRO! AFT OUTPUT W252 GD as scan © INVERTER] LOETECTOR fe ++ oe i EQUALIZER RE iF AMPLIFIER [mre ] “e an) 7 Tt T L ST IF SIF |] (ig) sift RF AGC ampificr| | DETECTOR ouTPUT ourrut G) (REVERSE) Sy ' VIDEO «EQUALIZER RFF acc a SIF det LIMITER BYPASS NEGATIVE OUTPUT AGC = FILTER IF INPUT INPUT INPUT FEEDBACK DELAY See 2 - 198 2tENESAS

MITSUBISHI ICs (TV) M51365SP - PLL-SPLIT VIF/SIF . _ ABSOLUTE MAXIMUM RATINGS [ps [rower dsipaton 7250 “20-75 O28 [ Sane S| Pormissbie ge in| 206, =180 [—[ermissbie sue itt sas) 2200 ELECTRICAL CHARACTERISTICS (Ta=25'C, Vcc=9V, unless otherwise noted) VIF SECTION mm | re | seoeant_ pm] = [=| [icstviri | cewneoremvin if |- |= [3 [-|-|swiaasw=s | = |_| a [ma | [va [eee Irfrrel —[—[ 3 [o [= lowensewane | afar] ar| v | [veers hi [reel — [= [To [= lswanaswame fp ael ae] sa] v | [ Veans | vecosemcroronaur |r |ree|san[— [3 |— [= [ewes Das [45 [1.75 | veo | [Vesnz [verosrere nour? |1|rre[sar— [3 |—| = [ewes [ie [uss | 23 | vee | [pm [veeosn |r frridlsoal— [> |— | — [evans enon Ege] so | se | ae | [Wacnnr [eum |i rrofsoql — | 3 [=| — wana ewtrionows | ae | i [any | [or [acceowonne [i= | - [= |= |=] =| faeries] se [et || an | [van | weximmieascroiaw |r [xea] = || [= [= [ewens [esfesf |v] [vissnz1| 1 Ac veto eoseu” [1 [rea]sce] — | 3 |= |= [ewens [aspasp es v | [vu | wninomiF ascvotow [1] rea]sq7] — [3 |= | = [ewans [aepasfea[ | [res [Semen [sect » || — [snes je |e | | oe. | fo siF-2 aeaie singin omni 1) 7P4 Sw2=3 dBy [we [artowouveroe [irre] = [= [3 [0 |= [ewans [aepaspse[v | [a [arremeoronnny fi [res ard = | 3 [|= [swomaawweaous| a | 70 | 9 [avin [Wer | wsimmarTeoton fi [res pat — [a= |= [swomsrwerenon7] eo | ar [| v_| [via [wnmmarascrone —|ifresboid — [3 |—|= [swans Awesome) [oe | v.0 | v_| [vn | winimam nF ascvonm |r] rP1[soa] — [2 [= | — [ewes Lapa [vi [wanna acevo [1] rer]sca] = [« [— |= [ewes ac [ci [cone fifreapan| = [a |—|— [swans aeronmva] os |e | [we [rout [owen it |ifrrekonl — fs [=| = [swans avwternevo| 1.2 [1.7 [| wie | [out [ewnenrem f=] =|=|-)=|=| fetrionow | 2.0" 27 || mine | SW2==3, SW5=2 CL-U2 Capture range (U) 2 TPO S' 3 Refer to note 9 SW2=3, SW5=2 CL-L2 Capture range (L) 2 TPIS 3 Rétertonow to 0.7 Lock detection threshold ri. | SW2=*3, SW3, 4,52 [vom [smart flee] —[—[ | s frm] oe | ee ee] v | [vm _ [menses me fifo] -[-[ >] frcfeeens| fee [os] v | Pe 2tENESAS 2 - 189

MITSUBISHI ICs (TV) . PLL-SPLIT VIF/SIF VIF SECTION (cont) : : Symbol Parameter 3] & Unit gl 2 * Switch is set at 1 Typ. | 8 [west] ws [vs [ve] TPO FC! EQ frequency characteristics 1 SW2=3 Refertonoie14 | 1.4 TP2 TPO FC2 €Q frequency characteristics 2 3 SW2=3 Refer to note 14 5.7 | 7.2 TP2 TPO FC3 €Q frequency characteristics 3 3 SW2=3 Refer to note 14 TP2 Vari-| ‘SW2=3, SW3=2 Intermodutation TPO Em il Refer to note 15 [es [os Yr fsaie) = [3 [= [= enema reteronmnie | P| 8 | | [op or fifrra|sciel — [3 [= [= [swans retrroraere | | 2 | 8 | ea | Black spot inverter Vari- ‘SW2=3, SW3=2 Vern TR2 1.7 v threshold level able] Refer to note 17 Black spot inverter Naar ‘SW2=3, SW3=2 7 | a Fi Nest clamp level we able Reter to note 17 | > 2 eM | Vernc [Fr Giareonmiew [i] vea|sea] — [3 [ - [= [swans [arp as} =| | [-rintv | wirnowvenane [a] ate] = [3 [— [| [fees [ea | [-cintvy | wrnewencione [2] |aas] — [3 [- [| [sr | [ainsi | sirtieweniwne [2] | — [nas] 3 [= [| [perp pe | [ems [sitnetancine fal = jaws [= T= a a SIF SECTION

5 Test conditions

3 3 [vr] [vs [ve [v0 [eats] Coren fe} - | fo] -| - |swinnswme [so [a2 [aa | ma [vis | aFeusu downer —fi[res[ = [Po [= [= [swims [ao fas fsa y v | [von] MexmunaFoveur [i ves|sen] —f o| - [= [swims [sso [eso | aso [vena [Hose [AF ovenasovon [+] vrsfecal] [0 || — [swims [fee fe] = | [ vinsimy [irowinsvaeniiny —[r]rrs[scr| [0 |—|— [swims erorowio [36 | 6 [apy | [awe [awe “Si [resfsciol [oo [= [= [swina reteroroeva| co | co [| os | [sm [ar sw |r] rre|soa’ [Po [= [= swims retoronnero] so | 75 | | 8 | ELECTRICAL CHARACTERISTICS TEST METHOD b. Measure V1, the component of 1MHz at TP9. Note 1.Video s/n “P/N” c. Decrease frequency fz level until the component a. Input SG2 to VIF IN. (fi-f2) at TP9 becomes 3dB smaller than Vi, and b. Passing Pin 28 noise through a low pass filter (MHz, read the value at that level, at -3dB), measure the ouput voltage at TP10 in d. Bw=58.75 — fz (MHz) rm.s. Note3.Input sensitivity “Vin(min)” Vodett (Vf x 0.7 : c. PIN=20 log d (Vp-p) a. Input SG4 to VIF IN. _ noise (Vrms) b. Decrease SG4 evel until pin 28 detector output Voget 1 is video detector output 1. is 3d8 -sinalles thatn Vodet 1. This is the input sensitivity level. Note 2. Video frequency characteristics “Bw” a. SG3 is set as follows. f1=58.75MHz Vi=90dBp } mixed signal i f2=57.75MHz Viz70dBu | "Ee S'S) 2ENESAS 2 - 190

MITSUBISHI ICs (TV) M51365SP = . PLL-SPLIT VIF/SIF a Note 4. Maximum permissible input “Vin(max)” ~ a. Set SG5 at 90dBy and input to VIF IN. TPB b. V2 is detector output at pin 28. VOLTAGE c. Increase SG5 voltage until detector output becomes 3dB smaller than Vz, This is the maximum permissible voltage. Vau Note 5. AGC control range “GR” H a. AGC contro! range is defined as follows: i) Veo GR=maximum permissible input-input sensitivity Voorn Note 6. AFT detector sensitivity “1” a. Input SG10 to VIF IN Note 13. Minimum pin 29 voltage “Vz0L” b. Measure frequency difference Af when DC voltage a. V2. is the minimum voltage mentioned in note at TPS transits from 3.0V to 6.0V. 12. c. AFT detector sensitivity is defined as follows: Note 14. EQ frequency characteristics“FC1"“FC2” “FC3” a. Input SG12, SG13 or SG14 to VIF IN. pe 3000mV (mV/kHz) b. Measure level of (fi-f2) component at TP9, this ealoidiad is Veo w (dBy). c. Measure level of (fi-fz) component at TP2, this v at is Veo our (By). * d. EQ frequency characteristics are defined as follows: 6v FC1~3=Vea our-Veo in (dB) Note 15. Intermodulation“IM” a. Input SG15 to VIF IN av b. Read values of TP9 on an oscilloscope and adjust View Ve voltage to set minimum level of detector output 5 tein) waveform at 2V. 58. 75MHz c. Observe TPQ value on a spectrum analyzer. The relation 920kHz level to 3.58MHz level is the intermodulation. Note 7, Maximum AFT voltage “Vien” a. Maximum AFT voltage is Viex in the above figure. Note 8. Minimum AFT voltage “Vie.” a. Minimum AFT voltage is Vie. in the above figure. 2 Note 9. Capture range (U) “CL-U-1” “CL-U-2” a. Input SG11 to VIF IN and increase frequency until VCO lock is removed. Note 16. DG,DP “DG,DP” b. Decrease SG11 frequency until VCO lock is enabled a. As shown below, the modulated waveform of SG16 again. This frequency is fv (MHz). is a 10-step wave with 87.5% video modulation c. Capture range {U) is fv-58.75 (MHz). b. Measure values of DG and DP at TP9 on a Note 10. Capture range (L) “CL-L-1" “CL-L-2” vectorscope. a. Input SG11 to VIF IN and decrease frequency until VCO lock is removed. + b. Increase SG11 frequency until VCO lock is enabled 10% again. This frequency is fi (MHz). c. Capture range (L) is between 58.75-f. (MHz). ra 100% Note 11. Capture range (T) “CT-T”. sd a. "CL-T* = "CL-U-1" + “CCL-L-1* (MHz) Note 12. Lock detection threshold voltage “VzoT1” a. Measure TP8 value with Vzo voltage at 3V SUBCARRIER 3. 58MHz [tos b. Increase Vz0 voltage until TP8 voltage shows drastic change. This voltage is VzoTH. (threshold 1V). es RENESAS a

MITSUBISHI ICs (TV) : PLL-SPLIT VIF/SIF Note 17. Black spot inverter threshold, clamp level INPUT SIGNAL - “Ve mH, Ve cL” [se ] Input signal (Value at pin terminal, 50) a. Input SG1 to VIF IN. Equivalent to 87 5% b. Measure DC voltages from output waveform at fon6h SMH VimOdB 7.7 eg medion ) TP2 as shown in the figure. [2] 6 58, eMH2 vi=9008 11=58. 75MHz vens0ae | 3 mixed signal Veeise ==: fe=53t5MHz_Vi=704B | 4 | t=58.75MHz Vi=Vaviable tm=Z0kHz 77. 7896AM | 5 | t.=58.75MHz Vi=Vaviable fm=20kKHz 169%AM Vern ---—> | 6 | %=58.75MHz Vi=80dBy, TEST POINT fo =58.75MHz _Vi=1100B [8 | %=54.25MHz Vi=1000By | 9 | t)=54.25MHz Vi=800By Note 18. Input limiting sensitivity “Vin(lim)” [10 | 9 =58.75MHz+5MHz Vi=900B a, Set SG18 value at 80dBy and input to SIF2 IN. [71 _| tase 75MHactbuH2 _Vi=90dB, frye 20RH 77.70%AM |» b. Decrease SG18 output untill detector output at TPE fh=58, 75MHz Vi=900B becomes 3d8 smaller than VOar max. fo==58, 25MHz _Vi=60d8 } mised signal That SG18 level is the input limiting sensitivity. h=58,75MHz Vi=900B x Note 19. AMR “AMR” 13 } mixea signal . f=55.75MHz_Vi=600B a. Input SG19 to SIF2 IN. h=58.75MHz Vi=90dBy b. Measure Vam, which is output voltage at TP6. ty=54,75MHz_Vi=60d8 } mised signal c. AMR is defined as follows: f=58. 75MHz Vi=90dB y tes) f=55. 17MHz waste» | me signal MR=20 log Sa (dB) fy=54,25MHz_Vi=804B wa yin fo=58, 7SMHz, standard 10step modulation Note 20. AF S/N “S/N” , m=87, 5% video modulation syne chip level SOdB x a: Wik Sca0% SiF2!IN b. The output voltage measured at TP6 is VN [19 | te=4.SMizst25kHz dev VimVaviabel_tm=400Hz c. AF SIN is defined as follows : [19 | tom4.SMHz Vie=1000By, _309%AM_tm=d00Hz | 20 | fo=4.5MHz Vi==1000B $/N=20 log Voar_max_(mVrms) (a8) [21 | to=4.5MHz Viz=100dBy _fm=400Hz+7. 5kHz dev Vw (Vrms) * The oscillation levels of all AM modulated waves are those at the peak level. * The following circuit is used for the mixer. ES Es * Set IF AGC voltage of Vco coil at OV and adjust free run frequency at 58.75MHz in quiescent state TS 2tENESAS 2 - 192

MITSUBISHI ICs (TV) ° PLL-SPLIT VIF/SIF ee _. .TEST CIRCUIT 1 Veo TPS ; ? 2k 560 2 TPIO ° upr Loop p ° *—[uehaeg bpp oe c 124 910 6.9 O15 a OSAMC20 W 0.47 4 | $4 Vee TRAP i 92)? 300 56 TP7 id pe 3k 22p|0. 01 300k Ld V20_ 270. + MS1365SP Tho oe ao ee oo ee fa ot ny = x en TPO 168 n TEWES. Sk Vee] 1p tant), 7 = be 310 ze] fet Lh cee Eom 3.6K TP2 Vi 1 ve © 350 0. 07% 7 SIFZIN '150p + “+ 0.01 4 + ans 0.47 THA wee UT Bee , as! Q sz o: ? on ° Veo ° O2 Units : a? ne J Resinance: 9 Capacitance: F TEST CIRCUIT 2 Vec=9V © 0.014 t tif t | # oon] os 0.01 ye OOo ooe oOo eee eo eS 0.01 0.01 vie pr + “ 10k “y _ aa gMETER]| oMETER to Lo Units Resistance: 9 Capacitance: F 7tENESAS a 198

MITSUBISHI ICs (TV) M51365SP - PLL-SPLIT VIF/SIF nents TYPICAL CHARACTERISTICS THERMAL DERATING (MAXIMUM RATING) sat | | tl 24) INT re ee 2 IN & 08 sot | IN I | B 06 2 S a sot | | AT zo i | | hb | 2 02 bs [| | | | TN 23-025 8075100125 AMBIENT TEMPERATURE Ta (‘C) APPLICATION EXAMPLE Vee 90 f = ayo Audi a ; 3 dio 1 r Vee ‘Out AFT OUT Bq_ felis) fer] Pd fed fed fs] fe) fey) [2d fis} fis] 7] [ig [| C— Cr ahah Bea ; You "Se| f= | vco ‘ i AGC ‘GC — ted bese Jaweuiricr) oetectoR — r— | | We BW eee el td bt ty by bg VOLTAGE aE age J ConTROL taal t po RE AGC i our [saw co bind os I NOISE Fs FF if - eben 5 I]? ° SIF Veo Tuner ee — RENESAS