ILA8362ANS IKSEMICON | Alldatasheet

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ILA8362ANS (8A) Integrated PAL and PAL/NTSC TV processor GENERAL DESCRIPTION The ILA8362ANS is designed to be used in a multi-standard TV receiver and contains functional units for processing signals of intermediate frequency of a udio and sound, vertical scanning and lin e synchronisation of colour signal in PAL/NTSC and RGB output signal. The ILA8362ANS is pin to pin compatible with TDA8362A , Philips and nearly identical to the TDA8362. The main difference between ILA8362ANS and TDA8362 is that ILA8362ANS contain a bl ack-current stabilisation circuit. Because of the required input pin for the black-current stabilisation circuit the luminan ce peaking function has been omitted in the ILA8362ANS. All other function of the 2 IC's are identical. The pinning of the 2 IC's is slightly different, because the ILA8362ANS have a ground connection on each si de. This adoption of the pinning has positive effects on the application of the IC. The ILA8362ANS is single-chip TV processors which contain nearly all small signal functions that are required for a colour television receiver. For a complete receiver the following circuits need to be added: a tuner, a SECAM decoder a base-band delay line (ILA4661) and output stages for audio, video and horizontal and vertical deflection.

FEATURES

  • Multistandard vision IF circuit (positive and negative modulation)
  • Multistandard FM sound demodulator (4.5 Mhz to 6.5 Mhz)
  • Source selection for external A/V inputs (separate Y/C signals can also be applied)
  • Integrated chrominance trap and bandpass filters (automatically calibrated)
  • Integrated luminance delay line
  • PAL/NTSC colour decoder with automatic search system
  • Easy interfacing with the ILA8395 (SECAM decoder) for multistandard applications.
  • RGB control circuit with linear RGB inputs and fast blanking
  • Input for automatic cut-off control with compensation for leakage current of the picture tube.
  • Horizontal synchronisation with two control loops and alignment-free horizontal oscillator without external components
  • Vertical count-down circuit (50/60 Hz) and vertical preamplifier
  • Low dissipation (700 mW)
  • Small amount of peripheral components compared with competition ICs
  • Only one adjustment (vision IF demodulator)
  • The ICs are mounted in a shrink DIL package with 52 pins

ILA8362ANS (8A) QUICK REFERENCE DATA Parameter Symbol Min. Max. Supply voltage, V VP 7.2 8.8 Supply current, mA IP 30 120 Video IF amplifier sensitivity (RMS value), μV Vi(rms) – 100 Gain control rang, dB Gcr 64 – Bandwidth of demodulated output signal, MHz B 6.0 – Video non linearly, % NLvid – 5 Signal-to-noise ratio, dB S/N 52 – Minimum starting level voltage for tuner take-over (RMS value), mV Vmin 0.15 0.5 Maximum starting level voltage for tuner take-over (RMS value), mV Vmax 100 200 Output voltage swing AFC, V V 5 – AFC slope, mV/kHz fsl 120 200 Output voltage: video not identified, V video identified; colour signal available; fosc=3.5МГц, V video identified; colour signal available/unavailable; fosc=4.4МГц, V Vo 5.5 7.1 0.5 6.5 8.8 Catching range PLL, MHz δf 4.2 6.8 Control range, dB VOLcr 80 – Suppression of output signal when mute is active, mV OSS 80 – Sync pulse amplitude, mV V13 50 – Free running frequency, Hz ffr 15310 15940 Holding range PLL, kHz fHR – ±1.2 Catching range PLL, kHz fCR ±0.6 – Voltage to switch on the X-ray protection, V V39 6.0 – Locking range, Hz flock 45 64.5 Locking range (lines/frame) LF 488 722 Residual carrier output voltage (peak-to-peak value) (R-Y) and (B-Y) outputs, mV V30 – 15 H/2 ripple at (R-Y) output (peak-to-peak value), mV V30r – 25 Saturation control range, dB CRs 52 – Contrast control range, dB CRc 18 24 Brightness control range, V CRb ±0.6 ±1.3 Output voltage level, V Vo 2.8 5.2 Residual frequency at fOSC in the RGB outputs (peak-to-peak value), mV Residual frequency at 2fOSC plus higher harmonics in the RGB outputs (peak-to-peak value), mV fres Difference in black level between the three outputs (nominal brightness), mV Vdiff – 50 Bandwidth of output signals for RGB input CVBS input (fOSC=3.58 MHz) CVBS input (fOSC=4.43 MHz) S-VHS input B 2.8 3.5

ILA8362ANS (8A) BLOCK DIAGRAM

ILA8362ANS (8A) PIN DESCRIPTIONS PIN SYMBOL DESCRIPTION

01 AUDEEM audio de-emphasise and modulation switch

02 IFDEM1 IF demodulator tuned circuit

03 IFDEM2 IF demodulator tuned circuit

04 IDENT video identification output/MUTE input

05 SOIF sound IF input and volume control

06 EXTAU external audio input

07 IFVO IF video output

08 DECdig decoupling digital supply

09 AFCOUT AFC output

10 Vcc supply voltage (+8 V)

11 GND1 ground 1

12 DECft decoupling filter tuning

13 CVBSint internal CVBS input

14 BC black current input

15 CVBSext external CVBS input

16 CHROMA chrominance and A/V switch input

17 BRI brightness control input

18 BOUT blue output

19 GOUT green output

20 ROUT red output

21 RGBIN RGB insertion and blanking input

22 RIN red input

23 GIN green input

24 BIN blue input

25 CON contrast control input

26 SAT saturation control input

27 HUE hue control input (or chrominance output)

28 BYI B-Y input signal

29 RYI R-Y input signal

30 RYO R-Y output signal

31 BYO B-Y output signal

32 XTALOUT 4.43 MHz output for ILA8395

33 DET loop filter burst phase detector

34 XTAL1 3.58 MHz crystal connection 35 XTAL2 4.43 MHz crystal connection

36 HOSC supply/start horizontal oscillator

37 HOUT horizontal output

38 FBI/SCO flyback input/sandcastle output

39 PH2LF phase 2 loop filter

40 PH1LF phase 1 loop filter

41 GND2 ground 2

42 VFB vertical feedback input

43 VRAMP vertical ramp generator

44 VOUT vertical output

45 IFIN1 IF input 1

46 IFIN2 IF input 2

47 AGCOUT tuner AGC output

48 DECagc AGC decoupling capacitor

49 TUNEadj tuner take-over adjustment

50 AUOUT audio output

51 DECdem decoupling sound demodulator

52 DECbg decoupling bandgap supply

ILA8362ANS (8A) FUNCTIONAL DESCRIPTION Video IF amplifier The IF amplifier contains 3 AC-coupled control stages with a total gain control range of greater than 60 dB and sensitivity 70 μV. The reference carrier for the video demodulator is obtained by means of passive regeneration of the picture carrier. The external reference tuned circuit is the only remaining adjustment of the IC. The polarity of the demodulator can be switched so that the circuit is suitable for both positive and negative modulated signals. The AFC circuit is driven with the same reference signal as the video demodulator. The AFC output voltage is 6 V. The AGC detector operates on levels, top sync for negative modulated and top white for positive modulated signals. The AGC detector time constant capacitor is connected externally. This is mainly because of the flexibility of the application. The time constant of the AGC system during positive modulation is slow, this is to avoid any visible picture variations. This, however, causes the system to react very slowly to sudden changes in the input signal amplitude. To overcome this problem a speed-up circuit has been included which detects whether the AGC detector is activated every frame period. The circuit contains a video identification circuit which is independent of the synchronisation circuit. Therefore search tuning is possible when the display section of the receiver is used as a monitor. In the normal television mode the identification output is connected to the coincidence detector, this applies to all three devices. The identification output voltage is LOW when no transmitter is identified. In this condition the sound demodulator is switched off (mute function). When a transmitter is identified the output voltage is HIGH. The voltage level is dependent on the frequency of the incoming chrominance signal. Sound circuit The sound bandpass and trap filters have to be connected externally. The filtered intercarrier signal is fed to a limiter circuit and is demodulated by means of a PLL demodulator. The PLL circuit tunes itself automatically to the incoming signal, consequently, no adjustment is required. Synchronisation circuit The sync separator is proceeded by a voltage controlled amplifier which adjusts the sync pulse amplitude to a fixed level. The sync pulses are then fed to the slicing stage (separator) which operates at 50% of the amplitude. The separated sync pulses are fed to the first phase detector and to the coincidence detector. The coincidence detector is used for transmitter identification and to detect whether the line oscillator is synchronised. The line oscillator operates at twice the line frequency. The oscillator network is inte rnal. Because of the spread of internal components an automatic adjustment circuit has been added to the IC. The circuit compares the oscillator frequency with that of the crystal oscillator in the colour decoder. This results in a free-running frequency which deviates less than 2% from the typical value. The circuit employs a second control loop to generate the drive pulses for the horizontal driver stage. X-ray protection can be realised by switching the pin of the second control loop to the positive supply line. The detection circuit must be c onnected externally. When the X-ray protection is active the horizontal output voltage is switched to a high level. When the voltage on this pin returns to its normal level the horizontal output is released again. The IC contains a start-up circuit for the horizontal oscillator. When this feature is required a current of 5.5 mA has to be supplied to pin 36. For an application without start-up both supply pins (10 and 36) must be connected to the 8 V supply line. The drive signal for the vertical ramp generator is generated by means of a divider circuit. The RC network for the ramp generator is external. Integrated video filters The circuit contains a chrominance bandpass and trap circuit. The filters are realised by means of gyrator circuits and are automatica lly tuned by comparing the tuning frequency with the crystal frequency of the decoder. When the pin is left open-circuit the trap is switched off so that the circuit can also be used for S-VHS applications. The luminance delay line and the delay for the peaking circuit are also realised by means of gyrator circuits. Colour decoder The colour decoder in the various ICs contains an alignment-free crystal oscillator, a colour killer circuit and colour difference demodulators. The 90 ° phase shift for the reference signal is achieved internally.

ILA8362ANS (8A) Demodulation and array/matrix mode is switched depending on input signal standard. The circuit can co-operate with the SECAM add-on decoder ILA8395. The communication between the two ICs is achieved via pin 32. The ILA8362ANS supplies the reference signal (4.43 MHz) for the calibration system of the ILA8395, identification of the colour standard is via the same connection. RGB output circuit The colour difference signals are matrixed with the luminance signal to obtain the RGB signals. The contrast and brightness controls operate on internal and external signals. When applying to output 21 voltage of more then 4 V there may be possibility of immediate application of RGB-signals to RGB-outputs. Outputs signal amplitude at nominal settings and input conditions is 2 V from white to black. Presence of automatic stabilisation of black current enables to eliminate further settings of dark level during operation. This circuit is a backfeed loop, operates during four line periods, which precede the end of the blanking frame pulse and stabilises black current of each of RGB- channels in sequence and independently. MAXIMUM RATINGS Symbol Parameter Min Max Unit Tstg Storage temperature -60 +150 °C Tamb Operating ambient temperature -25 +70 °C Tsol Soldering temperature for 10 s - 260 °C Tj Maximum junction temperature (operating) - 150 °C ELECTRICAL CHARACTERISTICS (VCC = 8 V; Tamb = 25°C; unless otherwise specified) Guaranteed Limits Symbol Parameter Min Max Unit Supplies VCC Supply voltage 7.2 8.8 V IP Supply current - 110 mA IHOSC Horizontal oscillator start current 6.5 - mA Vth Sweep threshold start 5.5 6.5 V IF circuit VISION IF AMPLIFIER INPUTS Vi(rms) Input sensitivity (RMS value) - 100 μV RI Input resistance (differential) 1.4 2.6 kΩ CI Input capacitance (differential) 2.0 4.0 pF Gcr Gain control range 64 - dB θ AGC efficiency (when changing input signal to 50 dB) - 6 dB VIDEO AMPLIFIER OUTPUT V07 Zero signal output level of video amplifier V negative modulation 4.0 5.6 positive modulation 1.2 2.8 VS7 Top sync level of video amplifier V

ILA8362ANS (8A) Guaranteed Limits Symbol Parameter Min Max Unit negative modulation 1.9 2.1 VW7 White level of video amplifier V positive modulation 4.0 4.5 ΔV7 Difference in amplitude between negative and positive modulation - 25 % ZO Video output impedance - 50 Ω B Bandwidth of demodulated output signal 6 - MHz Gdiff Gain differential - 5 % Fdiff Phase differential - 5 deg NLvid Video non linearity - 5 % Vth White spot threshold voltage level 4.0 5.6 V Vins White spot insertion voltage level 2.9 4.5 V Nclamp Noise inverter clamping voltage level 0.7 1.6 V η Intermodulation blue yellow blue yellow V O = 0.92 or 1.1 Mhz VO = 0.92 or 1.1 Mhz VO = 2.66 or 3.3 Mhz VO = 2.66 or 3.3 Mhz dB dB dB dB S/N signal-to-noise ratio Vi = 10 mV 52 - dB Vn Residual carrier signal - 7 mV V2n Residual 2nd harmonic of carrier signal - 3.5 mV IF AND TUNER AGC Timing of IF-AGC γ Modulated video interference - 10 % tinc Response time for an IF input signal amplitude increase of 52 dB for positive and negative modulation 1 3 ms tdec Response time for an IF input signal amplitude decrease of 52 dB for negative modulation for positive modulation 140 ms ms Ileak Allowed leakage current of the AGC capacitor for negative modulation for positive modulation 200 μA nA Tuner take-over adjustment Vmin Minimum starting level voltage for tuner take-over (RMS value) 0.15 0.5 mV Vmax Maximum starting level voltage for tuner take-over (RMS value) 100 200 mV Vcr Control voltage range 0.5 4.5 V Tuner control output V(sat) Output saturation voltage - 300 mV Ileak Leakage current RF AGC - 1 μA ΔV47 Input signal variation for complete tuner control 0.5 4 dB

ILA8362ANS (8A) Guaranteed Limits Symbol Parameter Min Max Unit AFC OUTPUT V Output voltage swing 5 - V fsl AFC slope 120 200 kHz fos AFC offset - 50 kHz VO Output voltage at centre frequency 3.5 4.5 V ZO Output impedance 30 70 kΩ SWITCHING TO POSITIVE MODULATION II Input current on pin 1 to switch the video demodulator and AGC to positive modulation 50 150 μA VIDEO IDENTIFICATION OUTPUT VO Output voltage Video not identified - 0.5 V ZO Output impedance 14 26 kΩ VO Output voltage Video identified; colour signal available; fOSC = 3.5 MHz 5.5 6.5 V Video identified; colour signal available; fOSC = 4.4 MHz 7.1 8.8 V td Delay time of identification after the AGC has stabilised on a new transmitter - 10 ms Sound circuit DEMODULATOR INPUT Δf Catching range PLL 4.2 6.8 MHz RI DC input resistance 6 10 kΩ CI Input capacitance - 5 pF AMR AMR rejection 66 - dB DE-EMPHASIS VO(rms) Output signal amplitude (RMS value) 200 400 mV RO Output resistance 10 20 kΩ V1 DC output voltage 2.6 3.4 V AUDIO ATTENUATOR OUTPUT VO(rms) Output signal amplitude (RMS value) 500 900 mV RO Output resistance 175 325 Ω V50 DC output voltage 2.9 3.7 V THD Total harmonic distortion - 0.5 % S/N Internal signal-to-noise ratio 60 - dB VOLcr Control range 80 - dB OSS Suppression of output signal when mute is active 80 - dB ΔV50 DC shift of the output when mute is active - 50 mV EXTERNAL AUDIO INPUT RI Input resistance 17.5 32.5 kΩ ΔGV Voltage gain difference between input and output 8 14 dB

ILA8362ANS (8A) Guaranteed Limits Symbol Parameter Min Max Unit α Crosstalk between internal and external audio signals 60 - dB CVBS/On-Screen Display and CD inputs INTERNAL AND EXTERNAL CVBS INPUTS I13 Internal CVBS input current - 5.2 μA I15 External CVBS input current - 5.2 μA ISS Suppression of non-selected CVBS input signal 50 - dB COMBINED CHROMINANCE AND SWITCH INPUT V16 Chrominance input voltage (peak-to-peak value) 0.16 0.4 V RI Chrominance input resistance 10.5 19.5 kΩ Ci Chrominance input capacitance - 5 pF V16 DC input voltage to switch the A/V switch to external mode - 0.5 V V16 DC input voltage for chrominance insertion 3 5 V SS Suppression of non-selected chrominance signal from CVBS input 50 - dB RGB INPUTS FOR ON-SCREEN DISPLAY VI Input signal amplitude for an output signal of 4V (black-to- while) (peak-to-peak value) - 1.0 V Vdiff Difference of black level of internal and external signals at the outputs - 100 mV II Input currents - 0.13 μA FAST BLANKING No data insertion - 0.3 V VI Fast blanking input voltage Data insertion 0.9 - V VI(max) Maximum input pulse - 3 V td Delay of data insertion - 20 ns I21 Input current - 0.2 mA SSint Suppression of internal RGB signals with data insertion at f = 0 to 5 MHz 46 - dB SSext Suppression of external RGB signals with data insertion at f = 0 to 5 MHz 46 - dB VI Input voltage to blank the RGB outputs to facilitate ON-Screen-Display signals being applied to these outputs 4 - V td Delay between the input pulse and the blanking at the output 21 39 ns COLOUR DIFFERENCE INPUT SIGNALS V29 Input signal amplitude (R-Y) (peak-to-peak value) - 1.4 V V28) Input signal amplitude (B-Y) (peak-to-peak value) - 1.85 V II Input current for both inputs - 1.0 μA Chrominance filters CHROMINANCE TRAP CIRCUIT ftrap Trap frequency f0-0.5 f0+0.5 MHz QFtr Trap quality factor 1.8 2.2

ILA8362ANS (8A) Guaranteed Limits Symbol Parameter Min Max Unit SR Colour subcarrier rejection 20 - dB CHROMINANCE BANDPASS CIRCUIT fC Centre frequency f0-0.5 f0+0.5 MHz QFbp Bandpass quality factor 2.5 3.5 Delay line peaking circuit Y DELAY LINE td Delay time 450 510 ns B Bandwidth of internal delay line 8 - MHz Horizontal and vertical synchronisation circuits SYNC VIDEO INPUT V13 Sync pulse amplitude 50 - mV SL Slicing level 35 65 % SYNC VIDEO INPUT tW Width of the vertical sync pulse without sync instability 22 - μs HORIZONTAL OSCILLATOR ffr Free running frequency 15310 15940 Hz Δf/ΔV Frequency variation with respect to the supply voltage - 0.5 % Δf(max) Maximum frequency deviation at the start of the horizontal output - 75 % FIRST CONTROL LOOP fHR Holding range PLL - ±1.2 kHz fCR Catching range PLL ±0.6 kHz S/N Signal-to noise ratio of the video input signal at which the time constant is switched 14 26 dB H Hysteresis at the switching point 2.5 3.9 dB SECOND CONTROL LOOP Δϕi/Δϕo Control sensitivity 105 195 μs/μs tcr control range from start of horizontal output to flyback 11 13 μs tshift Maximum horizontal shift range ±2 - μs Δϕi/Δϕo Shift control sensitivity 2.5 3.5 μA/μ s V39 Voltage to switch on the X-ray protection 6 - V HORIZONTAL OUTPUT VOL LOW level output voltage - 0.3 V n Duty factor 48 52 % FLYBACK INPUT/SANDCASTLE OUTPUT I38 Required input current during flyback pulse 100 300 μA VO Output voltage during burst key 4.8 5.8 V VO Output voltage during blanking 1.8 2.2 V Vlcl Clamped input voltage during flyback 2.6 3.4 V

ILA8362ANS (8A) Guaranteed Limits Symbol Parameter Min Max Unit tW Burst key pulse width 3.3 3.7 μs tW Vertical blanking pulse width 14 14 lines td Delay of start of burst key to start of sync 5.2 5.6 μs VERTICAL SECTION flock Locking range 45 64.5 Hz LF Locking range (lines/frame) 488 722 VERTICAL RAMP GENERATOR I43 Input current during scan - 2.0 μA Idis Discharge current during retrace 0.28 0.52 mA Vsaw(p-p) Sawtooth amplitude (peak-to-peak value) 1.3 1.7 V td Delay from field-to-field - 1.6 μs VERTICAL OUTPUT VO(max) Maximum available output voltage 4 - V VO(min) Minimum available output voltage - 0.3 V VERTICAL FEEDBACK INPUT V42 DC input voltage 2.0 3.0 V V42 AC input voltage 0.7 1.3 V I42 Input current - 15 μA Δtp Internal pre-correction to sawtooth 2.1 3.9 % ΔT/ΔV Temperature dependency on amplitude - 1 % VGL Vertical guard switching level with respect to the DC feedback level; switching level LOW -1.5 - V VGH Vertical guard switching level with respect to the DC feedback level; switching level HIGH - +1.5 V td Delay of scan start 98 182 ms Colour demodulation part CHROMINANCE AMPLIFIER ΔCCor AGC control range 26 - dB ΔV Change in amplitude of the output signals over the ACC range - 2 dB THRon Threshold colour killer ON -30 -38 dB HYSoff Hysteresis colour killer OFF +2 +6 dB CHROMINANCE AMPLIFIER Phase-locked loop fCR Catching range ±300 - Hz Δϕ Phase shift for ±200 Hz deviation of the oscillator frequency - 2 deg Oscillator TC Temperature coefficient of fOSC - 2.5 Hz/K Δf fOSC deviation with respect to VP - 250 HZ RI Input resistance (pin 34) 1.05 1.95 kΩ

ILA8362ANS (8A) Guaranteed Limits Symbol Parameter Min Max Unit RI input resistance (pin 35) 0.91 1.69 kΩ CI Input capacitance (pins 34 and 35) - 10 pF HUE CONTROL AND CHROMINANCE OUTPUT CRHUE Hue control range ±45 - deg ΔH Hue variation for ±10% VP -5 +5 deg ΔH/ΔT Hue variation with temperature -5 +5 deg VO Chrominance output signal (peak-to-peak value) 100 450 mV DEMODULATOR V30 (R-Y) output signal amplitude (peak-to-peak value) 0.47 0.58 V V31 (B-Y) output signal amplitude (peak-to-peak value) 0.60 0.75 V G Gain ratio of both demodulators G(B-Y)/ G(R-Y) 1.6 1.96 SOS Spread of signal amplitude ratio PAL/NTSC -1 +1 dB ZO Output impedance (R-Y)/(B-Y) output - 250 Ω B Bandwidth of demodulators 0.9 - MHz V30 Residual carrier output voltage (peak-to-peak value) - 15 mV V30 H/2 ripple at (R-Y) output (peak-to-peak value) - 25 mV ΔVO/ΔT Change of output signal amplitude with temperature - 1 %/K ΔVO/ΔVC Change of output signal amplitude with supply voltage -0.1 0.1 dB ϕe Phase error in the demodulated signals - 5 deg REFERENCE SIGNAL OUTPUT fref Reference frequency 4.4238 4.4432 MHz V32 Output signal amplitude (peak-to-peak value) 0.2 0.3 V PAL/NTSC identified 1.2 1.8 V VO Output voltage level SECAM identified 3.3 5.5 V I32 Required current to force combination in SECAM mode 150 - μA Control part SATURATION CONTROL CRs Saturation control range 52 - dB ΔS/ΔV Saturation level change -10 +10 % CONTRAST CONTROL CRc Contrast control range 18 24 dB TBT Tracking between the three channels over a control range of 10 dB - 0.7 dB BRIGHTNESS CONTROL CRb Bridhtness control range ±0.6 ±1.3 V RGB AMPLIFIERS VO Output signal amplitudes (peak-to-peak value) Nominal luminance input signal and nominal contrast 2.8 5.2 V

ILA8362ANS (8A) Guaranteed Limits Symbol Parameter Min Max Unit Vobl Blanking level at the RGB outputs 0.7 0.9 V Vob Black level at the RGB outputs 2.4 3.0 V Vmax Maximum peak white level 4.1 5.3 V ZO Output impedance 70 130 Ω RS Relative spread between the RGB output signals - 5 % S/N Signal-to-noise ratio of output signals for RGB input for CVBS input dB dB fres Residual frequency at fOSC in the RGB outputs (peak-to-peak value) - 25 mV fres Residual frequency at 2fOSC plus higher harmonics in the RGB outputs (peak-to-peak value) - 25 mV Vdiff Difference in black level between the three outputs Nominal brightness - 50 mV Δb/ΔT Variation of black level with temperature -2 0 mV/ K Vdiff Differential drift of black level over a temperature range of 40°C - 10 mV B Bandwidth of output signals for RGB input CVBS input CVBS input S-VHS input 2.8 3.5 Mhz Mhz Mhz MHZ

ILA8362ANS (8A) RECOMMENDED FUNCTIONAL SCHEME OF TV ILA8362ANS VIFA, SIFA, synchroprocessor RGB processor picture tube Line scanning unit Frame scanning ILA3654Q Sound filter Video filter LFA ILA1519B SCART LF video video RGB sound LF(video/sound) VIFA input sound G Power supply ILA4605-02 ILA8138A Photomodule TMFS5360 Nonvolatile memory INF8582N I2C-bus Microcontroller (INA84C641ANS-68) (INA84C641ANS-19) (INA84C641ANS-30) Control Remote control console INA3010 Feed back I2C-bus SECAM decoder ILA8395 Band delay line ILA4661 UV UV Colour signal R B Video amplifier

ILA8362ANS (8A) 52-Pin Plastic Dual-in-Line (NS) Dimension, mm A max 5.08 Aı min 0.51 min 3.05 A2 max 4.57 min 0.38 B max 0.56 min 0.89 BB max 1.14 min 0.23 C max 0.38 min 45.72 D max 46.23 min 15.24 E max 16.00 min 12.70 E1 max 14.48 e nom 1.778 e2 nom 15.24 min 2.54 L max 3.56 min 0º α max 10º