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ICs for VCR AN3389SB Recording/Playback Amplifier IC for 4-Head VCR Overview The AN3389SB is a multi-functional recording and playback IC with built-in auto-tracking interface, and automatic head selector at special playback for 4-head VCR. Features Single power supply : V CC =5V typ. Built-in AGC circuit for recording current control Automatic head switching for special playback Built-in an automatic tracking interface Absolute Maximum Ratings (Ta=5 C) 0.35±0.1 0.8 0.1±0.1 0.5 8.4±0.3 11.93±0.3 15.±0.3 36-Pin SSOP Package (SSOP036-P-0450A) Parameter Symbol Rating Unit Supply voltage Note ) V CC 5.6 V Supply voltage Note ) Power dissipation Note 3) Operating ambient temperature Note 1) Note 1) Storage temperature I CC P D T opr T stg 160 930 0 to + 70 55 to + 15 ma mw C C Note 1) Ta=5 C except operating ambient temperature and storage temperature. Note ) Guaranteed values if RADJ is 0kΩ or more. If RADJ is less than 0kΩ, ensure that the stated power dissipation is not exceeded. Note 3) The power dissipation is that of a package at Ta=70 C as mounted on the standard PC board. Recommended Operating Range (Ta=5 C) Parameter Symbol Range Operating supply voltage range V CC 4.5V to 5.5V 0. + 0.1 0.05 Unit : mm includes following four Product lifecycle stage. 1.3±0.5.85±0. 1.3±0.5 1

AN3389SB ICs for VCR Block Diagram 100 VCC (typ.5v) 0.01 0.00 33 V CC1 VASEL AUDIO : L) RECIN ICCADJ SLOW SW (VIDEO : H, AGC OUT AGC DET RECAGC- EPSPSW RECEQ RECSW PLUSCFB AGC ADJ (EP : H, MUTE IN SP : L) DEF OUT DEF IN SYNC CONT SW VCC OUT GND3 ATOUT 36 35 34 33 3 31 30 9 8 7 6 5 4 3 1 0 19 Rec Det. MUTE SW 1kΩ EF EP (+) V I 0.1 0.00 Det. SW6 AGC Amp. HASW SW9 SW10 CH3 CH4 SW3 RADJ 47kΩ SW4 EP ( ) 0.01 HASW Amp. EP SP 1 3 4 5 6 7 8 9 10 11 1 13 14 15 16 17 18 CHARGE DUMP3 EPCOM CH3 GND1 CH4 REF DUMP DUMP1 SPCOM CH1 GND CH HOLD DUMP AGCTL VGCTL RECAGC DET 1kΩ 68pF 1kΩ 1kΩ 68pF MINDCFB 1kΩ 0.1 0.1 0.01 68pF 0.01 0.01 68pF 0.1 0.1 0.1 0.1 0.01 HEAD HEAD HEAD HEAD 0.01 ENV EP ( ) ENV COMP SW SP (+) 390pF SW5 VCC 10kΩ 390kΩ AT OUT TIM HASW1 SW8 SW7 CH3 CH4 SW LOGIC (EvSWControl) SW1 S/H V I CHARGE SP ( ) Det. MUTE SW SP ( ) 0.0 VCA Amp. HPF AUDIO IN includes following four Product lifecycle stage. + VCC 47kΩ VCC 47kΩ

ICs for VCR AN3389SB Electrical Characteristics (Ta=5± C) Parameter quiescent current Rec quiescent current SLOW SW input "L" (Pin36) Rec/ input "L" (Pin33) MUTE SW input "L" (Pin0) EP/SP input "H" (Pin5) EP/SP input "L" (Pin5) DRUM FF input "H" (Pin3) DRUM FF input "L" (Pin3) SYNC input "H" (Pin) SYNC input "L" (Pin) CONT input "H" (Pin1) CONT input "M" (Pin1) CONT input "L" (Pin1) DRUM FF output "H" (Pin4) DRUM FF output "L" (Pin4) voltage gain Between CHs gain difference output nd harmonics distortion Input-conversion noise Head change-over DC unbalance SP selection in AUTO EP selection in AUTO AGC level AGC control characteristics AGC output nd harmonics distortion Rec amp. gain Rec AGC level Rec AGC control characteristics Recording current nd harmonics distortion Muting ratio Common terminal ON resistance Input terminal ON resistance Output DC drift VCA output voltage 1 (amp. gain) VCA output voltage (amp. f characteristics) VCA output voltage 3 CHARGE Pin VCA output voltage 4 CHARGE Pin Symbol I PCQ I RCQ V SL V RP V MS V ESH V ESL V DFH V DFL V SYH V SYL V PCH V PCM V PCL V DOH V DOL GV GV HDP NV V 3 V SP V EP V AGC V AGC HDA IOR I AGC I AGC HDR MR R C R I V CC V CA1 V CA Condition min typ max Unit At At Rec Input level at SLOW Input level at Rec Input level at MUTE OFF I OUT= ma I IN= ma f= 4MHz, 0.5mV P P, CH1 to CH4 f= 4MHz, 0.5mV P P, CH1 to CH4 f= 4MH Z, 0.5mV P P, 8MHz/4MHz Rg= 10Ω, 1MHzBPF, output/gv Rg= 10Ω, output DC difference CH1, CH4 input,pin4 DC measurement CH, CH3 input,pin4 DC measurement f= 4MHz, 40mV P P f= 4MHz, 500mV P P f= 4MHz, 500mV P P f= 4MHz, 0mV P P f= 4MHz, 15mV P P R AGC= 18kΩ f= 4MHz, 50mV P P R AGC= 18kΩ f= 4MHz, 15mV P P R AGC= 18kΩ f= 4MHz, 15mV P P R AGC= 18kΩ SW5, SW6 ON SW1 to SW4 ON Supply voltage when Rec circuit is not operating in Video side 6dB amp. f= 4MHz, 1mV P P Video side 6dB amp. f= 4MHz/6MHz, 1mV P P AUDIO SP mode 1.V P P input VIR= 10kΩ AUDIO SP mode 0.V P P input VIR= 10kΩ Note 60 85 110 ma 90 10 150 ma 0 1.8 V 0 1.3 V 0 1.4 V.9 5.0 V 0.1 V 1.7 5.0 V 0 1.0 V 1.5 5.0 V 0 0.7 V 3.8 5.0 V 1.9 3.1 V 0 1.1 V 4.0 5.0 V 0 1.0 V 57.5 60.0 6.5 db 1.0 0 1.0 db 45 40 db 1.0 µvrms 100 0 100 mv 0 1.0 V 4.0 5.0 V 55 30 390 mv P P 0 db 50 40 db 60 360 465 ms Rec 17.8 0.0.4 4.5 0 1. 40 35 45 40 5 10 5 10 0.15 0.05 0.30 includes following four Product lifecycle stage. V CA3 V CA4 0.15 0.05 0.30 0.30 0.70 1.0 0.50 0.75 1.00 ma P P db db db Ω Ω V V V V V Rec Rec Rec Rec 3

AN3389SB ICs for VCR Electrical Characteristics (cont.) (Ta=5± C) Parameter Symbol VCA output voltage 5 CHARGE Pin Droop voltage HOLD Pin15 Saturation voltage (V CC side) ATOUT Pin6 V CA5 V DLP V SAT Condition min typ max Unit AUDIO SP mode 0.1V P P input 0.50 0.75 1.00 V VIR=10kΩ AUDIO SP mode 0.4V P P input HOLDC= 0.01 50 150 mv AUDIO SP mode 0.6V P P input 4.6 4.9 V HOLDC= 0.01 AUDIO SP mode 0.6V P P input 0.1 0.4 V HOLDC= 0.01 Saturation voltage(gnd side) ATOUT Pin6 Offset voltage ATOUT Pin6 G SAT V OFS AUDIO SP mode in no signal 0.1 0.4 V V/A SEL input "L" (Pin35) V ATH Input condition 0 0.7 V Crosstalk CT HSW, HASW change-over Rg=10Ω ( 35) db output 3rd harmonics distortion HDP3 f= 4MHz, 0.5mV P P 1MHz/4MHz ( 45) ( 40) db AGC output 3rd harmonics distortion HDA3 f= 4MHz, 500mV P P ( 50) ( 40) db Recording current 3rd harmonics distortion HDR3 f= 4MHz, 15mV P P ( 45) ( 40) db Recording current cross CM1 fy= 4MHz, 0mA P P modulation (±fc) fc= 630kHz, 13dB ( 50) db Recording current cross CM fy= 4MHz, 0mA P P modulation (±fc) fc= 630kHz, 13dB ( 50) db Note) Values with an asterisk are typical ones and not guaranteed values. Pin s Reference Pin No. Pin name Pin No. Pin name 1 V CC 17 AFM signal gain control input P D Ta CHARGE 18 VFM signal gain control input 1800 Rec AGC detection 19 AFM signal input 1600 3 Ch3 damping adjustment 0 Rec. mute switch input 1453 Glass-epoxy board 1400 (50mm 50mm t 0.8mm) Playback common 1 Playback mode control input Rthj a=86 C/W 4 100 PD=1453mW (5 C) Rec. EP (+) amp. output SYNC signal input 5 1008 Playback amp. ch3 signal input 3 DRUM FF signal input 1000 IC without heatsink Rthj-a=14 C/W PD=1008mW (5 C) Rec. EP ( ) amp. output 4 DRUM FF signal output 800 6 GND 5 EP/SP switch input 600 7 Playback amp. ch4 signal input 6 Automatic tracking signal output Rec. EP ( ) amp. output 7 GND 400 8 Playback ref. voltage output 8 Playback amp. output 9 Ch4 damping adjustment 9 V CC 10 Ch1 damping adjustment 30 Rec. AGC level adjustment Playback common 31 Playback AGC signal input 11 Rec. SP (+) amp. output Playback AGC detection 3 Playback amp. ch1 signal input Rec. positive amp. DCFB 1 Rec. SP ( ) amp. output Playback AGC signal output 33 13 GND Playback/Rec. switch input 14 Playback amp. ch signal input 34 Rec. amp. signal input Rec. SP ( ) amp. output 35 VFM/AFM switch input 15 HOLD Slow switch input 36 Rec. ( ) amp. DCFB Rec. equalization 16 Ch damping adjustment Power dissipation PD (mw) 00 0 0 5 50 75 100 15 150 Ambient temperature Ta ( C) includes following four Product lifecycle stage. Note 4

ICs for VCR AN3389SB Pin s Pin No. Pin name DC voltage (V CC=5V) 1 V CC1 3 9 10 16 4 11 CHARGE Rec. AGC Det. DUMP3 DUMP4 DUMP1 DUMP EPCOM SPCOM 5V 1.5V () 1.65V ().V (Rec) (For playback) (For recording) 36kΩ VCC (5V) 5kΩ 70kΩ (For recording) 1 5kΩ 10Ω 10Ω 15kΩ 15kΩ 5kΩ 3 4 (11) 0.1 0.1 (9) (10) (16) Power supply input for playback and recording amplifiers Integration output of automatic tracking interface peak detection signal for the playback mode. An external capacitor is connected to this pin for integration function. Recording AGC detection. Connected to an external capacitor for the recording mode Head amplifier damping adjustment. Connected to an external resistor Recording current output for the recording mode. Pin4 (EPCOM) is terminated in the SP mode, and Pin11 (SPCOM) is terminated in the EP mode. includes following four Product lifecycle stage. 5

AN3389SB ICs for VCR Pin s (cont.) Pin No. Pin name DC voltage (V CC=5V) (For playback) 5 7 1 14 5 7 1 14 6 CH3 CH4 CH1 CH CH3 CH4 CH1 CH GND1 0.69V ().V (Rec) 0V 8 REF 3.V 13 GND 0V 50kΩ 15kΩ (For recording) 150Ω 5kΩ 5kΩ 0Ω 0Ω 4kΩ 6 13 5 ( 7 ) (1) (14) 5 ( 7 ) (1) (14) 8 Playback amplifier input for the playback mode Recording current output for the recording mode Ground for playback and recording amplifiers in the EP mode Reference voltage output for playback amplifiers Ground for playback and recording amplifiers in the SP mode includes following four Product lifecycle stage. 6

ICs for VCR AN3389SB Pin s (cont.) Pin No. PIn name DC voltage (V CC=5V) (For playback) 15 HOLD 15 17 18 19 0 MIN DCFB AGCTL VGCTL AUDIO -IN MUTE SW 1.5V ().V (Rec).5V.5V.5V for playback, and 0.7V for recording (For recording).8kω.8kω (For playback) (For recording) 0 150Ω 0kΩ 0kΩ 5kΩ 5kΩ 46KΩ 46KΩ 15 15 10kΩ 0.1 0.1 17 18 19 Peak hold of automatic tracking interface peak detection integration signal for the playback mode. An external capacitor is connected to this pin for peak hold function. Connecting to an external capacitor for recording amplifier DC voltage feedback at the recording mode Gain control of automatic tracking interface amplifiers.pin17(agctl) controls the gain in the audio mode, and Pin18 (VGCTL) controls the gain in the video mode. Automatic tracking interface audio FM signal input Mute control for the recording mode. Muting is on at low and OFF at high (open). includes following four Product lifecycle stage. 7

AN3389SB ICs for VCR Pin s (cont.) Pin No. Pin name DC voltage (V CC=5V) (For playback) 1 CONT 1 SYNC 3 4 5 DFF IN DFF OUT EPSPSW 5V 3 5 0kΩ 0Ω 0kΩ 0kΩ 50kΩ 4 Playback mode control. Manual, auto, or still/slow mode is selected when this pin is high, middle, or low respectively. Pin36 selects still or slow mode. SYNC signal input. Recording AGC operates when this pin is high. DRUM.FF signal input Color rotation control signal output. This pin goes low when + azimuth head (ch1 or ch3) is selected, and goes high when azimuth head (ch or ch4)is selected. EP/SP mode selection control. The EP mode is selected when this pin is high, and the SP mode is selected when this pin is low. includes following four Product lifecycle stage. 8

ICs for VCR AN3389SB Pin s (cont.) Pin No. Pin name DC voltage (V CC=5V) 6 AT OUT 7 GND3 8 9 30 FM OUT V CC I CC ADJ Rec AGC ADJ 0.1V 0V 3.V for playback 5V 3.4V 40Ω 4.8kΩ VCC (5V) 7 9 30 6 8 Peak hold voltage output of automatic tracking interface peak detection integration signal for the playback mode. In the recording mode, this pin is forcibly terminated. Ground Playback amplifier output V CC Recording amplifier idle-current control as well as recording AGC level control includes following four Product lifecycle stage. 9

AN3389SB ICs for VCR Pin s (cont.) Pin No. Pin name DC voltage (V CC=5V) 31 3.6V for 31 AGC IN playback 3 3 33 AGC Det. PLUS DCFB AGC OUT Rec SW 34 Rec IN.V for recording 3.1V for playback 3V (For playback) 0.1 3 6kΩ 5kΩ 50kΩ 34 400Ω 3 0.1 33 AGC amplifier input AGC amplifier detection. Connected to an external capacitor Connecting to an external capacitor for recording amplifier DC voltage feedback for the recording mode. AGC amplifier output as well as playback/recording mode selection control. Recording mode is selected when this pin is low. Recording signal input includes following four Product lifecycle stage. 10

ICs for VCR AN3389SB Pin s (cont.) Pin No. Pin name DC voltage (V CC=5V) 35 35 VASEL 5V 36 SLOW SW Rec EQ 5V for playback 3.7V for recording 36 50kΩ 50kΩ 960Ω 36 Video/audio mode-selection control for automatic tracking interface. Video mode is selected when this pin is high (open), and audio mode is selected when this pin is low. Still/slow mode selection control. Still mode is selected when this pin is high (open), and slow mode is selected when this pin is low, under the condition that Pin1 ( CONT) is low. Recording equalization includes following four Product lifecycle stage. 11

Request for your special attention and precautions in using the technical information and semiconductors described in this book (1) If any of the products or technical information described in this book is to be exported or provided to non-residents, the laws and regulations of the exporting country, especially, those with regard to security export control, must be observed. () The technical information described in this book is intended only to show the main characteristics and application circuit examples of the products, and no license is granted under any intellectual property right or other right owned by our company or any other company. Therefore, no responsibility is assumed by our company as to the infringement upon any such right owned by any other company which may arise as a result of the use of technical information described in this book. (3) The products described in this book are intended to be used for standard applications or general electronic equipment (such as office equipment, communications equipment, measuring instruments and household appliances). Consult our sales staff in advance for information on the following applications: Special applications (such as for airplanes, aerospace, automobiles, traffic control equipment, combustion equipment, life support systems and safety devices) in which exceptional quality and reliability are required, or if the failure or malfunction of the products may directly jeopardize life or harm the human body. Any applications other than the standard applications intended. (4) The products and product specifications described in this book are subject to change without notice for modification and/or improvement. At the final stage of your design, purchasing, or use of the products, therefore, ask for the most up-to-date Product Standards in advance to make sure that the latest specifications satisfy your requirements. (5) When designing your equipment, comply with the range of absolute maximum rating and the guaranteed operating conditions (operating power supply voltage and operating environment etc.). Especially, please be careful not to exceed the range of absolute maximum rating on the transient state, such as power-on, power-off and mode-switching. Otherwise, we will not be liable for any defect which may arise later in your equipment. Even when the products are used within the guaranteed values, take into the consideration of incidence of break down and failure mode, possible to occur to semiconductor products. Measures on the systems such as redundant design, arresting the spread of fire or preventing glitch are recommended in order to prevent physical injury, fire, social damages, for example, by using the products. (6) Comply with the instructions for use in order to prevent breakdown and characteristics change due to external factors (ESD, EOS, thermal stress and mechanical stress) at the time of handling, mounting or at customer's process. When using products for which damp-proof packing is required, satisfy the conditions, such as shelf life and the elapsed time since first opening the packages. (7) This book may be not reprinted or reproduced whether wholly or partially, without the prior written permission of Matsushita Electric Industrial Co., Ltd. includes following four Product lifecycle stage.