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  ? e92604a79-te sony reserves the right to change products and specifications without prior notice. this information does not convey any licens e by any implication or otherwise under any patents or other right. application circuits shown, if any, are typical examples illustr ating the operation of the devices. sony cannot assume responsibility for any problems arising out of the use of these circuits. absolute maximum ratings (ta=25 ?) [pin numbers shown are for the cxa1518s.] supply voltage v cc 10 v input signal (pin 6) v is 0.6 vp-p control voltage (pins 12, 13, 14) v ic v cc v operating temperature topr ?0 to +75 ? storage temperature tstg ?5 to +150 ? allowable power dissipation p d 900 mw (sdip) 470 mw (qfp) led drive current iled 10 ma operating voltage 6.0 to 4.5 v description the CXA1518Q/s are bipolar ics designed for eiaj tv sound multiplexing decoders. these ics provide various functions including sound multiplexing demodulation, broadcast mode discrimination (stereo/bilingual discrimination display), mode display, and muting. features external parts greatly reduced with a built-in active filter. count down can be used for broadcast mode discrimination so that adjustment for discrimination system (q-osc) is not required. output level of 380 mvrms (1 khz, mono, 100 %) forced monaural operates with both stereo and bilingual broadcasts. built-in digital facsimile interference elimination filter. low supply voltage (v cc =5 v) the pin configuration of the cxa1518s is identical to that of the cxa1138as. applications color tvs hi-fi vcrs liquid crystal tvs structure bipolar silicon monolithic ic eiaj sound multiplexing decoder CXA1518Q cxa1518s 32 pin qfp (plastic) 22 pin sdip (plastic) CXA1518Q/s
2 CXA1518Q/s block diagram CXA1518Q cxa1518s 3 . 5 f h c l o c k 9 5 2 h z c l o c k 1 2 3 4 5 6 8 9 1 0 1 1 1 2 1 3 1 9 2 1 2 3 2 5 2 6 2 7 2 8 2 9 3 0 3 1 3 2 2 2 2 4 2 0 1 8 1 7 m c o u t n c n c n c n c n c n c c u b i m p x i n n c n c n c m c i n l o u t r o u t m o u t m a i n d e e m m a t r i x s u b m a i n t e s t l r c u e c a r r i e r o u t p u t a m p & o u t p u t s w m a i n o u t c o n t l e d d r i v e b i a s c u r r e n t i b i a s s u b b p f 4 . 5 f h t r a p 3 . 5 f h v c o b u f f e r b i a s v o l t a g e i n a m p m p x s i g n a l s c i n s c o u t n c s u b i g n d f l a j r e f l v c c f o m o m u t e m o d e n c n c l e d m a i n l e d s u b l e d s t c o m p f m d e m o d s u b d e e m v o l t a g e r e g u l a t o r s u b d e t i l l o g i c 2 a m d e m o d 9 5 2 h z b p f c u e b p f 7 1 4 1 5 1 6 1 2 3 4 5 6 7 8 9 1 0 1 1 1 2 1 3 1 4 1 5 1 6 1 7 1 8 1 9 2 0 2 1 2 2 s u b i g n d f l a j r e f l v c c n c n c c u b i l e d s t l e d s u b l e d m a i n m p x i n s c o u t s c i n m c o u t m c i n l o u t r o u t m o u t f o m o m u t e m o d e s u b d e e m m a t r i x f m d e m o d m a i n d e e m t e s t l r s u b m a i n m a i n o u t c u e c a r r i e r c o n t i l l o g i c b i a s c u r r e n t s u b b p f s u b d e t i b i a s b u f f e r b i a s v o l t a g e i n a m p m p x s i g n a l 3 . 5 f h 9 5 2 h z b p f 9 5 2 h z a m d e m o d c l o c k c l o c k c o m p l e d d r i v e v o l t a g e r e g u l a t o r 4 . 5 f h t r a p c u e b p f 3 . 5 f h v c o 2 o u t p u t a m p & o u t p u t s w
3 CXA1518Q/s pin description (ta=25 c, v cc =5 v) pin numbers in brackets are for the CXA1518Q. pin no. symbol pin equivalent circuit description sdip qfp voltage 1 2 3 4 6 8 29 30 31 32 3 7 gnd flaj refl v cc mpxin cubi 0 2.4 v 2.5 v 2.5 v 2.4 v 2 ( 3 0 ) v c c v c c 1 4 7 1 0 k 8 0 k g n d 4 0 ( 3 1 ) v c c v c c 5 4 k 1 4 k 1 4 k 2 0 k 1 . 5 k 3 ( 3 ) v c c 2 5 k 9 0 k 3 0 k g n d 1 4 7 8 0 2 . 5 v 6 8 1 k 4 0 k 1 1 k 2 k 4 0 k ( 7 ) v c c v c c 1 4 7 2 . 5 v gnd filter adjustment pin connects noise elimination filter of internal reference power supply. power supply pin sound multiplexing signal input. standard input level=70 mvrms (mono 100 %) connects bias capacitor for cue pulse generator.
4 CXA1518Q/s pin no. symbol pin equivalent circuit description sdip qfp voltage 9 10 11 12 13 14 15 9 10 11 14 15 16 17 ledst ledsu ledm mode mute fomo mout 2.4 v 9 1 0 1 1 1 6 k 1 6 k 1 6 k 6 4 k 6 4 k 6 4 k g n d v c c v c c v c c 1 4 7 1 4 7 1 4 7 ( 1 4 ) v c c v c c 1 4 7 1 6 k 1 6 k 8 k 2 . 4 v g n d 2 0 a 1 2 ( 1 5 ) v c c v c c 1 4 7 3 2 k 1 6 0 k 8 k g n d 1 3 ( 1 6 ) v c c v c c 8 0 k g n d 4 0 1 4 7 1 k 1 4 ( 1 7 ) v c c v c c 1 4 7 1 4 k 3 2 k 3 2 k g n d 1 5 connects the leds to display each mode. pin 9: stereo pin 10: sub pin 11: main switches the output mode with the dc voltage during bilingual broadcasting. output mute pin. when set to high, only dc is output from pins 15, 16 and 17 (pins 17, 18 and 20). forced monaural pin. when set to high, monaural function (main) is forcibly set regardless of stereo and bilingual broadcasts and leds are extinguished. main signal output pin. always outputs the main signal component regardless of the broadcast mode.
5 CXA1518Q/s pin no. symbol pin equivalent circuit description sdip qfp voltage 16 17 18 19 20 21 22 18 20 22 24 25 26 28 rout lout mcin mcout scin scout subi 2.4 v 2.4 v 2.5 v 1.7 v 2.5 v 1.7 v 2.4 v ( 1 8 ) v c c v c c 1 4 7 1 4 k 3 2 k 3 2 k g n d 1 6 ( 2 0 ) v c c v c c 1 4 7 1 4 k 3 2 k 3 2 k g n d 1 7 1 8 g n d v c c v c c v c c 1 4 7 1 4 7 1 4 7 1 4 7 ( 2 4 ) ( 2 2 ) 1 6 k 2 . 5 v 1 6 0 8 0 8 0 2 0 p 1 9 g n d v c c v c c v c c 1 4 7 1 4 7 1 4 7 1 4 7 2 0 ( 2 6 ) ( 2 5 ) 8 0 a 8 0 a 1 6 0 a 5 k 2 . 5 v 1 2 k 1 8 p 2 1 v c c v c c 1 4 7 1 4 7 ( 2 8 ) 8 0 2 0 2 . 5 v 1 . 4 v 1 6 k 1 5 k 1 k 8 k 6 4 k 8 k 2 2 r-ch output pin l-ch output pin. during ?est? outputs the cue signal component passed through the cue bpf. connects dc cut capacitor of the main signal. connects dc cut capacitor of the sub signal. connects bias capacitor of the sub fm detector. grounding this pin enables the test mode for filter adjustment.
6 CXA1518Q/s pin no. symbol pin equivalent circuit description sdip qfp voltage 5, 7 1, 2 4, 5 6, 8 12, 13 19, 21 23, 27 nc keep these pins open (they are not connected to the chip.) electrical characteristics measurement circuit (cxa1518s) o n o f f s w 6 s w 4 t e s t ( o n ) n o r m ( o f f ) c 1 0 1 0 f c 1 1 0 f c 3 1 0 f c 4 1 0 f c 2 4 7 f c 9 1 f c 1 0 1 f l o u t r o u t m a i n o u t 2 2 2 1 2 0 1 9 1 8 1 7 1 6 1 5 1 4 1 3 1 2 1 2 3 4 5 6 7 8 1 1 1 5 k h z l p f c c i r f i l t e r s w 1 s w 2 s w 3 m e a s u r e m e n t s y s t e m r m s d i s t o r t i o n d c v o l t e 2 e 3 e 4 v r 1 2 0 k r 1 2 2 k r 2 4 7 0 r 3 4 7 0 r 4 4 7 0 e 1 5 v s t e r e o s u b m a i n s i g n a l s i g a t t s w 5 9 1 0 a * set att such that the stereo separation (l ? r) to minimum.
7 CXA1518Q/s electrical characteristics (ta=25 c, v cc =5 v) pin numbers shown in conditions are for the cxa1518s. no. 1 2 3 4 5 6 7 8 9 item current consumption sub output level 400 hz sub frequency response characteristics 1 khz sub frequency response characteristics 10 khz sub distortion factor sub s/n stereo distortion factor l ch stereo distortion factor r ch stereo output level l ch 1 khz symbol i cc vs1 fs1 fs2 ds ns dst1 dstr vst1 sw conditions 1 4 4 4 4 4 4 4 4 bias conditions 1 2 and 3 2 and 3 2 and 3 2 and 3 2 and 3 2 2 2 conditions measures the input current to pin 4. input signal: sig1 measures output amplitude at pins 16 and 17 (400 hz, sine wave) : vs1 (15 k lpf) input signal: sig2 measures output amplitude at pins 16 and 17 (1khz, sine wave) : vs2 vs2 fs1=20 log vs1 (15 k lpf) input signal: sig3 measures output amplitude at pins 16 and 17 (10 khz, sine wave) : vs3 vs3 fs2=20 log vs1 (15 k lpf) input signal: sig2 measures output signal distortion factor at pins 16 and 17 (1 khz, sine wave). (15 k lpf) input signal: sig2 measures s/n ratio of the outputs (1 khz) at pins 16 and 17. (15 k lpf. rms) input signal: sig4 measures output signal distortion factor at pin 17 (1 khz, sine wave). (15 k lpf) input signal: sig5 measures output signal distortion factor at pin 16 (1 khz, sine wave) (15 k lpf) input signal: sig4 measures output amplitude at pin 17 (1 khz, sine wave). (15 k lpf) test point sdip pin 4 pins 16 and 17 * 1 pins 16 and 17 * 1 pins 16 and 17 * 1 pins 16 and 17 * 1 pins 16 and 17 * 1 pin 17 pin 16 pin 17 qfp pin 32 pins 18 and 20 pins 18 and 20 pins 18 and 20 pins 18 and 20 pins 18 and 20 pin 20 pin 18 pin 20 min. typ. max. unit 14 20 26 ma 330 380 480 mvrms ?.6 ?.6 0 db ?9.0 ?7.0 ?4.7 db 1 2 % 58 62 db 0.2 1.5 % 0.2 1.5 % 310 360 440 mvrms * 1 when bias condition is [3], the test point is pin 16 only.
8 CXA1518Q/s no. 10 11 12 13 14 15 16 17 18 item stereo output level r ch 1 khz main output level main out main output level main frequency response characteristics 1 khz main frequency response characteristics 10 khz main distortion factor main out main distortion factor main distortion factor at maximum input main s/n ratio symbol vstr vm1 vm2 fm1 fm2 dm1 dm2 dm3 nm sw conditions 4 4 4 4 4 4 4 4 4 bias conditions 2 2 2 2 2 2 2 2 2 conditions input signal: sig5 measures output amplitude at pin 16 (1 khz, sine wave). (15 k lpf) input signal: sig6 measures output signal at pin 15 (400 hz, sine wave). (15 k lpf) input signal: sig6 measures output signal amplitude at pins 16 and 17 (400 hz, sine wave). (15 k lpf) input signal: sig7 measures output amplitude at pins 16 and 17 (1khz, sine wave) : vm3 vm3 fm1=20 log vm2 (15 k lpf) input signal: sig8 measures output amplitude at pins 16 and 17 (10 khz, sine wave): vm4 vm4 fm2=20 log vm2 (15 k lpf) input signal: sig7 measures output signal distortion factor at pin 15 (1 khz, sine wave). (15 k lpf) input signal: sig7 measures output signal distortion factor at pins 16 and 17 (1 khz, sine wave). (15 k lpf) input signal: sig9 measures output signal distortion factor at pins 16 and 17 (1 khz, sine wave). (15 k lpf) input signal: sig7 measures s/n ratio of outputs at pins 16 and 17 (1 khz). (15 k lpf. rms) sdip pin 16 pin 15 pins 16 and 17 pins 16 and 17 pin 15 pins 16 and 17 pins 16 and 17 pins 16 and 17 pins 16 and 17 qfp pin 18 pin 17 pins 18 and 20 pins 18 and 20 pin 17 pins 18 and 20 pins 18 and 20 pins 18 and 20 pins 18 and 20 min. typ. max. unit 310 360 440 mvrms 330 390 480 mvrms 330 390 480 mvrms ?.6 ?.6 0 db ?6.5 ?4.5 ?2.5 db 0.2 1 % 0.2 1 % 0.3 3 % 65 69 db test point
9 CXA1518Q/s no. 19 20 21 22 23 item stereo separation l ? r stereo separation r ? l cross talk main ? sub cross talk sub ? main cross talk main ? sub both mode symbol sstr sstl cms1 csm1 cms2 sw conditions 4 4 2 2 2 bias conditions 2 2 2 1 3 conditions input signal: sig4 sstr= pin17 output amplitude (db) 20 log pin 16 output amplitude (15 k lpf) input signal: sig5 sstl= pin16 output amplitude (db) 20 log pin17 output amplitude (15 k lpf) input signal: sig15 calculates the level differ- ence between the output amplitude at pins 16 and 17 (vms1) and the measured value in measurement no. 13 (vm3). cms1=20 log vm3 vms1 (db) (15 k lpf, 1 k bpf) input signal: sig2 calculates the level differ- ence between the output amplitude at pins 16 and 17 (vsm1) and the measured value in measurement no. 3 (vs2). csm1=20 log vs2 (db) vsm1 (15 k lpf, 1 k bpf) input signal: sig15 calculates the level differ- ence between the output amplitudes at pin 16 (vms2) and at pin 17 (vms3) cms2=20 log vms3 (db) vms2 (15 k lpf, 1 k bpf) sdip pins 16 and 17 pins 16 and 17 pins 16 and 17 pins 16 and 17 pins 16 and 17 qfp pins 18 and 20 pins 18 and 20 pins 18 and 20 pins 18 and 20 pins 18 and 20 min. typ. max. unit 35 50 db 35 50 db 52 59 db 59 66 db 52 58 db test point
10 CXA1518Q/s no. 24 25 26 27 28 29 item cross talk sub ? main both mode residual carrier sub residual carrier main mute volume main mute volume sub mute volume stereo symbol csm2 lcs lcm mm ms mst sw conditions 2 3 3 2 2 2 bias conditions 3 2 1 4 4 2 and 4 conditions input signal: sig2 calculates the level differ- ence between the output amplitude at pin 17 (vsm2) and at pin 16 (vsm3). csm2=20 log vsm3 (db) vsm2 (15 k lpf, 1 k bpf) input signal: sig11 measures the amplitude of the subcarrier component of the output at pins 16 and 17. input signal: sig11 measures the amplitude of the subcarrier component of the output at pins 16 and 17. input signal: sig7 calculate the level differ- ence between the output amplitude at pins 16 and 17 (vmm) and the measured value in measurement no. 13 (vm3). mm=20 log vm3 (db) vmm (1 k bpf, 15 k lpf) input signal: sig2 calculates the level differ- ence between the output amplitude at pins 16 and 17 (vms) and the measured value in measurement no. 3 (vs2). ms=20 log vs2 (db) vms (1 k bpf, 15 k lpf) input signal: sig4 and 5 measures output signal level difference at pins 16 and 17 under bias conditions 2 and 4. mst= measured value under bias condition 2 20 log (mvrms) measured value under bias condition 4 (mvrms) (1 k bpf, 15 k lpf) sdip pins 16 and 17 pins 16 and 17 pins 16 and 17 pins 16 and 17 pins 16 and 17 pins 16 and 17 * 2 qfp pins 18 and 20 pins 18 and 20 pins 18 and 20 pins 18 and 20 pins 18 and 20 pins 18 and 20 min. typ. max. unit 59 64 db 14 30 mvrms 10 20 mvrms 70 80 db 70 80 db 70 80 db test point * 2 measure pin 17 when input signal is sig4, and pin 16 when input signal is sig5.
11 CXA1518Q/s no. 30 31 32 33 34 35 36 item dc offset stereo l ch dc offset stereo r ch dc offset main out cue detector sensitivity sub detector sensitivity cue bpf gain 4.5 fh trap attenuation level sw conditions 3 3 3 4 4 5 6 bias conditions 2 and 4 2 and 4 2 and 4 2 2 2 2 conditions input signal: sig18 measures output dc level fluctuation at pin 17 under bias conditions 2 and 4. input signal: sig18 measures output dc level fluctuation at pin 16 under bias conditions 2 and 4. input signal: no input measures output dc level fluctuation at pin 15 under bias conditions 2 and 4. input signal: sig12 varying sig12, measures attenuation while switching from monaural to sound multiplexing mode. input signal: sig13 varying sig13, measures attenuation while switching from monaural to sound multiplexing mode. input signal: sig14 measures output amplitude at pin 17 input signal: sig16 and sig17 measuring output amplitude at pin 22, measure the output signal level difference when inputting sig16 and when inputting sig17. tg= measured value 20 log for sig16 (mvrms) measured value for sig17 (mvrms) sdip pin 17 pin 16 pin 15 pin 17 pin 22 qfp pin 20 pin 18 pin 17 pin 20 pin 28 min. typ. max. unit 20 100 mv 20 100 mv 20 100 mv 8 11 17 db 9 12 17 db 125 190 290 mvrms 20 35 db test point symbol ostl ostr om cd sd cg tg
12 CXA1518Q/s sw condition table bias condition table sw no. 1 2 3 4 5 6 1 off off off on off off 2 off on off off off off 3 off off on off on on 4 off off off off on off 5 off off off off on on 6 off off off off off on sw no. 1 2 3 4 e1 5 v 5 v 5 v 5 v e2 0.5 v 4.5 v 2.5 v 4.5 v e3 0.5 v 0.5 v 0.5 v 4.5 v e4 0.5 v 0.5 v 0.5 v 0.5 v
13 CXA1518Q/s input signal definitions sig1 : sound mpx signal main : 0 % sub : 400 hz, 100 % mod cue : bilingual sig2 : sound mpx signal main : 0 % sub : 1 khz, 100 % mod cue : bilingual sig3 : sound mpx signal main : 0 % sub : 10 khz, 100 % mod cue : bilingual sig4 : sound mpx signal l ch : 1 khz, 100 % r ch : 0 % cue : stereo sig5 : sound mpx signal l ch : 0 % r ch : 1 khz, 100 % cue : stereo sig6 : sound mpx signal main : 400 hz, 100 % sub : carrier off cue : cue signal off sig7 : sound mpx signal main : 1 khz, 100 % sub : carrier off cue : cue signal off sig8 : sound mpx signal main : 10 khz, 100 % sub : carrier off cue : cue signal off sig9 : sound mpx signal main : 1 khz, 250 % sub : carrier off cue : cue signal off sig10 : sound mpx signal l ch : 1 khz, 100 % r ch : 0 % cue : cue signal off sig11 : sound mpx signal main : 0 % sub : 0 % (carrier only) cue : bilingual sig12 : sound mpx signal main : 0 % sub : 0 % (carrier only) cue : bilingual (level adjusted to the minimum) sig13 : sound mpx signal main : 0 % sub : 0 % (level adjusted to the minimum) cue : bilingual sig14 : 55.069 khz sine wave 5.6 mvrms sig15 : sound mpx signal main : 1 khz, 100 % sub : 0 % (carrier only) cue : bilingual sig16 : 31.47 khz sine wave 42 mvrms sig17 : 70.80 khz sine wave 42 mvrms sig18 : sound mpx signal l ch : 0 % r ch : 0 % cue : stereo * sound mpx signal level is defined as monaural 100 % at 1 vp-p.
broadcast status stereo bilingual monaural control voltage range pin numbers in brackets are for the CXA1518Q. 14 CXA1518Q/s output and led on/off table mode sw sub both main on on on forced monaural off on off off off on mute off off on off off off off on off on output status l r main l r l+r l+r l+r l+r dc dc dc sub sub main main sub main main main main main main main dc dc dc mono mono mono dc dc dc led on/off conditions stereo sub main on off off off off off off off off off on off off on on off off on off off off off off off off off off off off off mode sw pin 12 (pin 14) forced mono pin 14 (pin 16) mute pin 13 (pin 15) sub both main on off on off voltage range 4.0 v to v cc 2 v to 3 v 0 v to 0.5 v 3 v to v cc 0 v to 0.5 v (or open) 3 v to v cc 0 v to 0.5 v (or open) : no response description of operation pin numbers in brackets are for the CXA1518Q. the sound multiplexing signal input from pin 6 (pin 3) passes through in amp, and is added to the cue bpf, sub bpf and the main de-emphasis circuits. 1 discrimination system the cue bpf passes only the cue signal component of the multiplexing signal. the am demodulator detects the amplitude modulation of the cue signal (am wave) and generates a sine wave of either 922.5 hz (for bilingual) or 982.5 hz (for stereo sound). comp shapes the carrier-stripped cue signal into a waveform, transforming it into pulses of either 922.5 hz or 982.5 hz, after which it is added to the logic unit. a 3.5f h vco generates a 3.5f h pulse locked to the cue signal carrier wave (3.5f h ), and sends it to the logic unit. the logic unit performs broadcast mode discrimination using the countdown method. from this result, and the existence/absence of a sub signal from the sub detector, mute on/off from cont, mode switch, and the fomo on/off commands, the logic unit generates an output switchover control signal to control the output statuses of output sw and main out.
15 CXA1518Q/s 2 main system main deem applies de-emphasis on the main signal component and removes the sub and cue components. after having passed through main deem, the main signal is added to martix, output amp, and main out. 3 sub system sub bpf passes the sub signal component of the multiplexed signal. a 4.5f h trap filter then removes the digital facsimile signal component. fm demodulation frequency demodulates the sub signal. the sub deem applies de-emphasis on the fm demodulated sub signal and removes the carrier wave component. after passing through sub deem, the sub signal is added to matrix and output amp. 4 matrix and output system when broadcasting in stereo, matrix generates l and r signals by adding and subtracting the main signal from main deem and the sub signal from sub deem. output amp & output sw switch the output signals as instructed by locig. note that main out always outputs the main signal component regardless of the broadcast mode. adjustment methods 1. preset before filter adjustment fig. 1 procedure 1) connect as shown in fig. 1 2) set the encoder to mono mode, and input a 1 khz signal to mpx in. 3) adjust vr2 until the level on tp1 (pin 6) is 0.2 vp-p (70 mvrms). (pin 3 for the CXA1518Q) j a p a n s o u n d m u l t i p l e x i n g e n c o d e r a p p l i c a t i o n c i r c u i t m p x i n v r 2 t p 1 o s c i l l o s c o p e
16 CXA1518Q/s 2. filter adjustment fig. 2 procedure 1) connect as shown in fig. 2. 2) set sw4 to test. (turn sw6 off) 3) put the encoder in stereo mode, and input only a modulated q signal into mpx in of the board. 4) observing l.out with the oscilloscope, adjust vr1 until the q signal output to be maximum. 3 separation adjustment fig. 3 procedure 1) connect as shown in fig. 3. (set sw4 to norm) 2) ?set the encoder to stereo mode and perform 100 % modulation of a 1 khz signal. ?output only the l ch. 3) observing the oscilloscope and the ac voltmeter, adjust vr2 until the r ch to be minimum. (separation standard 35 db or more) j a p a n s o u n d m u l t i p l e x i n g e n c o d e r a p p l i c a t i o n c i r c u i t o s c i l l o s c o p e a c v o l t m e t e r m p x i n v r 2 l . o u t r . o u t r l c h 1 c h 2 1 k h z b p f s w i t c h j a p a n s o u n d m u l t i p l e x i n g e n c o d e r a p p l i c a t i o n c i r c u i t m p x i n v r 1 o s c i l l o s c o p e l o u t t e s t s w 4
17 CXA1518Q/s application circuit CXA1518Q 1 2 3 4 5 6 7 8 1 2 1 3 1 4 1 5 1 6 1 7 1 8 1 9 2 0 2 1 2 2 2 3 2 4 2 5 2 6 2 7 2 8 2 9 3 1 3 2 c 9 c 1 0 1 1 0 r 2 4 7 0 c 4 1 0 7 0 m v r m s ( m o n o 1 0 0 % ) v r 2 1 k c 1 1 0 c 2 4 7 c 3 1 0 v r 1 2 0 k r 1 2 2 k t e s t ( o n ) n o r m ( o f f ) r 6 2 . 4 k r 5 2 . 4 k s w 4 s t e r e o l o u t r o u t m a i n o u t m p x i n v c c m a i n o f f b o t h s u b o f f o n o n s w 3 s w 2 s w 1 5 v r 3 4 7 0 s u b r 4 4 7 0 m a i n 3 0 a c 8 1 c 7 1 0 c 5 1 0 c 6 1 0 9 1 0 1 1 application circuits shown are typical examples illustrating the operation of the devices. sony cannot assume responsibility fo r any problems arising out of the use of these circuits or for any infringement of third party patent and other right due to same . * non-polar capacitor is recommended for c8 and c9. * nc pin is left open.
18 CXA1518Q/s cxa1518s s w 4 t e s t ( o n ) n o r m ( o f f ) c 1 0 1 0 f c 7 1 0 f c 5 1 0 f c 6 1 0 f c 1 1 0 f c 3 1 0 f c 4 1 0 f c 2 4 7 f c 9 1 f c 8 1 f l o u t r o u t m a i n o u t 2 2 2 1 2 0 1 9 1 8 1 7 1 6 1 5 1 4 1 3 1 2 1 2 3 4 5 6 7 8 v r 1 2 0 k r 1 2 2 k r 2 4 7 0 r 3 4 7 0 r 4 4 7 0 s t e r e o s u b m a i n o f f s w 3 s w 2 s w 1 o n o n o f f m a i n b o t h s u b v c c 5 v v r 2 1 k 7 0 m v r m s ( m o n o 1 0 0 % ) m p x i n 9 1 0 1 1 r 6 2 . 4 k r 5 2 . 4 k a application circuits shown are typical examples illustrating the operation of the devices. sony cannot assume responsibility fo r any problems arising out of the use of these circuits or for any infringement of third party patent and other right due to same . * non-polar capacitor is recommended for c8 and c9. * nc pin is left open.
19 CXA1518Q/s d e - e m p h a s i s c h a r a c t e r i s t i c s o u t p u t l e v e l ( d b ) f r e q u e n c y ( h z ) 0 5 1 0 1 5 1 0 0 1 k 1 0 k m a i n s u b c u e b p f f r e q u e n c y c h a r a c t e r i s t i c s a t t e n u a t i o n ( d b ) f r e q u e n c y ( h z ) 0 2 0 4 0 6 0 3 . 5 f h 2 0 k 3 . 5 f h + 2 0 k 3 . 5 f h + 4 0 k 3 . 5 f h 3 . 5 f h 4 0 k s u b b p f f r e q u e n c y c h a r a c t e r i s t i c s o u t p u t l e v e l ( d b ) f r e q u e n c y ( h z ) 0 2 0 4 0 6 0 1 0 2 0 3 0 1 0 0 9 0 8 0 7 0 6 0 5 0 4 0 m a i n d i s t o r t i o n c h a r a c t e r i s t i c s d i s t o r t i o n ( % ) m a i n d e g r e e o f m o d u l a t i o n f a c t o r ( % ) 3 2 1 0 . 5 0 1 0 0 2 0 0 3 0 0
s o n y c o d e e i a j c o d e j e d e c c o d e p a c k a g e m a t e r i a l l e a d t r e a t m e n t l e a d m a t e r i a l p a c k a g e m a s s e p o x y r e s i n s o l d e r p l a t i n g 4 2 a l l o y 3 2 p i n q f p ( p l a s t i c ) 9 . 0 0 . 2 7 . 0 0 . 1 1 . 5 0 . 1 5 ( 8 . 0 ) 0 . 1 0 . 1 + 0 . 2 + 0 . 3 5 + 0 . 3 0 . 5 0 0 . 1 2 7 0 . 0 5 + 0 . 1 0 t o 1 0 0 . 8 0 . 3 0 . 1 + 0 . 1 5 1 8 9 3 2 1 6 1 7 2 4 2 5 m 0 . 2 4 0 . 2 g q f p - 3 2 p - l 0 1 q f p 0 3 2 - p - 0 7 0 7 0 . 1 s o n y c o d e e i a j c o d e j e d e c c o d e p a c k a g e s t r u c t u r e m o l d i n g c o m p o u n d l e a d t r e a t m e n t l e a d m a t e r i a l p a c k a g e m a s s e p o x y r e s i n s o l d e r p l a t i n g c o p p e r a l l o y 2 2 p i n s d i p ( p l a s t i c ) s d i p - 2 2 p - 0 1 s d i p 0 2 2 - p - 0 3 0 0 0 . 9 5 g 1 . 7 7 8 1 1 1 2 1 2 2 1 9 . 2 0 . 1 + 0 . 4 7 . 6 2 6 . 4 0 . 1 + 0 . 3 0 . 2 5 0 . 0 5 + 0 . 1 0 t o 1 5 0 . 5 0 . 1 0 . 9 0 . 1 + 0 . 1 5 3 . 2 5 0 . 2 + 0 . 1 5 0 . 5 1 m i n 3 . 9 0 . 1 + 0 . 4 1 . a l l m a t s u r f a c e t y p e . t w o k i n d s o f p a c k a g e s u r f a c e : 2 . a l l m i r r o r s u r f a c e t y p e . package outline unit : mm CXA1518Q cxa1518s CXA1518Q/s 20


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