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  ii cos/mos quad bilateral switch for transmission or multiplexing of analog or digital signals high-voltage types (20-volt rating) the rca-cd4016b series types are quad bilateral switches intended for the trans- mission or multiplexing of analog or digital signals. each of the four independent bi- lateral switches has a single control signal input which simultaneously biases both the p and n device in a given switch on or off. the cd4016 "b" senes types are supplied in 14-lead hermetic dual-in-ilne ceramic pack- ages (d and f suffixes). 14-lead dual-in-ilne plastic packages (e suffix). 14-lead ceramic flat packages (k suffix). and in chip form (h suffix). features: terminal assignment !ilg a in i. out 2 'iig bo~~ co~trol b co~trol c vss top view voo contllol "c~"""'>ivi."""''''''''' 14 voo 15 control a 12 control 0 " in 10 out sig 0 9 out in sig c 92cs244~8 schematic diagram - 1 of 4 identical sections. recommended operating conditions cd40168 types functional diagram for maximum reliability, nominal operating conditions should be selected so that operation is always within the following range: 20-vdigital or 10-v peak-to-peak switching 280-n typical on-state resistance for 15-v operation switch on-state resistance matched to within 10 n typo over 15-v signal-input range characteristic ? supply voltage range (for t a = full package limits units min. max. _ high on/off output-voltage ratio: 65 db typo @ fis = 10 khz, rl = 10 kn .. high degree of linearity: <0.5% distortion typo @ fis = 1 khz, vis = 5 v p _ p , vdd-vss;;;:' 10 v, rl = 10 kn ? extremely low off-state switch leakage resulting in very low offset current and high effective off-state resistance: 100 pa typo @ vdd-vss=18 v, ta=25 0 c - extremely high control input impedance (contr i circuit isolated from signal circuit: 10 12 n typo - low crosstalk between switches: -50 db typo @ fis = 0.9 mhz, r l = 1 kn - matched control-input to signal-output capacitance : reduces output signal transients _ frequency response, switch on = 40 mhz (typ.) _ 100% tested for quiescent current at 20 v _ maximum control input current of 1 /la at 18 v over full package temperature range; 100 na at 18 v at 2s o c _ s-v, 10-v, and 15-v parametric ratings app/ications: - analog signal switching/multiplexing signal gating - modulator squelch control - demodulator chopper - commutating switch _ digital signal switching/multiplexing - cos/mos logic implementation - analog-to-digital & digital-to- e analog conversi n digital control f frequency, impedance, phase, and anal g-signal gain temperature range) maximum ~atings, absolutemaxlmum values dc suppl yvol tage range. (v dd ) (voltages referl!nced to vss terminal) input voltage range. all inputs 3 18 v dc inplit'current. any one input (including transmission gate) - 0 5 to +20 v 0510 v dd to 5 v 10ma power dissipation poer package (po) for 1 a = -40 to +60 c (package type e) for 1 a = +60 to +85c (package type e) for 1 a = -55 to +100 o c (package types d. f) for 1 a = +100 to +125c (package types d. f) device dissipation per transmission gate 500 mw derate linearly at 12 mw, c to 200 mw . 500 mw derate linearly at 12 mwi c to 200 mw for t a = full packagetemperature range (all package types) opera1ingtemperature range (t a) 100mw -55 to + 125:c package types d. f. h pac~:age type e storage temperature range (t st ) lead t:mperature (during sold~ring) -40 to +85 c 65 to +150 o c at dl;tance 1/16 1/32 inch (1 59 079 mm) from case for 10 s max , input stgnal volts ivis' fig. 1- typ. on-state characteristics for 1 of 4 switches with vooc+15 v, vss=o 11. . . i_t signal. volts "'osl fig. 2- typ. on-state characteristics for 1 of 4 switches with voo = +10 v, vss=o 11. ________________________________________________________________________ 95
cd4016b types electrical characteristics characteristic test conditions vin vdd (v) (v) 0,5 5 quiescent device 0,10 10 current, 100 0,15 15 0,20 20 signal inputs (vis) and output (vos) onstate vc= voo ivis=voo or vss 10 resistance, ron rl = 10ks! v ls =4.75 to 5.75 v 10 max. returned to voo-vss vis=voo or vss 15 2 v ls =7.25 to 7.75 v 15 60nstate 5 resistance r l =10kh, vc=voo between any 10 2 switches, 6r on 15 total harmonic vc=voo =5v, vss=-5v, vis(p-p) distortion, = 5 v (sine wave centered on 0 v) tho rl =10 kn, tls=l khz sine wave -3d8 cutoff vc=voo=5v, vss=-5v, frequency vis(p.p) =5 v (sine wave (switch on) centered on 0 v) rl = 1 kn. -5odb feed- through vc=vss= -5v. v is (p_p{5v frequency (sine wave centered on v) (switch off) rl = 1 iku input/output vc=ov leakage current v ls =18v,v os =ov; 18 (switch off) vis =ov, lis max. vos = 18 v vc(a) = voo = +5 v, -50d8 vc(b) = vss = -5v, crosstalk vis(a) = 5 vp- p ' frequency son source rl = 1 kn rl = 200 kn 5 propagation vc = vf.~ vss = gno, delay (signal cl =5 p 10 i nput to signal vis = 10 v (square 15 output) tpd wave centered on 5 v t r , tf = 20 ns capacitance: input, cis voo=+5v output, cos vc=vss=-6v feedthrough. cios 96 limits at indicated temperature (oc) values at -55, +25, +125 apply to d, f, h packages values at -40, +25, +85 apply to e package +25 -55 -40 +85 +125 typ. max. 0.25 0.25 7.5 7.5 0.01 0.25 0.5 05 15 15 0.01 0.5 1 1 30 30 0.01 1 5 5 150 150 0.02 5 600 610 840 960 - 660 1870 1900 ~380 2600 - 2000 360 370 520 600 - 400 775 790 1080 1230 - 850 - - - - 15 - - - - - 10 - - - - - 5 - - - - - 0.4 - - - - - 40 - - - - - 1.25 - 0.1 0.1 1 1 10-4 0.1 - - - - 0.9 - - - - - 40 100 - - - - 20 40 - - - - 15 30 - - - - 4 - - - - - 4 - - - - - 0.2 - u n i t s p.a n n % ~hz ~hz p.a ~hz ns pf . input slon4l vol.ts ivlsl fig. 3- typ. on-state characteristics for 1 of 4 switches with v dd a +5 v. v ss a 0 ii. fig. 4- typ. on-state characteristics for 1 of 4 switches with vdda+7.5 v. v s s"'-7.511. 2 input signal volts iv,sl fig. 5- typ. on-state characteristics for 1 of 4 switches with v dd "'+5 v. vssa -5 v. ? fig. 6- typ. on-state characteristics for 1 of 4 ? switches with v dd a+2.5 v. vss",-2.5 .'
ii electrical characteristics (cont'd) limits at indicated temperature (oc) u characteristic test conditions v.illues at -55, +25, +125 apply to n d., f, h packages i viilues at -40, +25, +85 apply to t ~ e package +25 s (v) -!i5 -40 +85 +125 typ. max. control (vc) control input illsl< 101la low voltage, vis = vss, vas = vdd 5,10, 0.9 0.9 0.4 0.4 - 0.7 v vile (max.) and 15 vis = vdd, vas = vss 5 3.5 (min.) control input see fig. 1 10 7 (min.) v high voltage, vihc 15 11 (min.) input current, vis ~ v~d 10- 5 0.1 ija lin (max.) vdd- ss=18v 18 0.1 0.1 1 1 vcc ~ vdd - vss crosstalk (con- vc = 10 v (sq. wave) trol input to tr. tf = 20 ns 10 - - - - 50 - mv signal output) rl=10kn turn-on tr. tf = 20 ns 5 - - - - 35 70 propagation cl = 50 pf 10 - - - - 20 40 ns delay rl = 1 kn 15 - - - - 15 30 vis = vdr' vss - gnd. r l = 1 k to gnd. maximum cl=50pf, control input vc = 10 v(square 10 - - - - 10 - mhz repetition rate wave centered on 5 v) tr. tf = 20 ns. vos = yo vos @ 1 khz input capacitance. - - - cin - 5 7.5 ijf switch input switch output vdd vis lis (ma) vos (v) (v) (v) _55c -40c 25c 25c~ +85c +125c min. max. 5 0 0.25 0.2 0.2 o.lli 0.12 0.14 - 0.4 5 5 0.25 -0.2 -0.2 -0.11i -0.12 -0.14 4.6 - 10 0 0.62 0.5 0.5 0.4 0.3 0.35 - 0.5 10 10 -0.62 -0.5 -0.5 -0.4 -0.3 -0.35 9.5 - 15 0 1.8 1.4 1.5 1.2 1 1.1 - 1.5 15 15 -1.8 -1.4 -1.5 -1.2 -1 -1.1 13.5 - cd4016b typ s fig. 7- typ. onstate characteristics asa function of temp. for' of 4 switches with v dd - +5 v. v ss "'-5v. 10-1 4111 to 102' .. 10' .. 10 4 iiput signal frequency n .. _ 11m, fig. 8 - typ. feedthru lis. frequency - switch off. =y =~';~~:;':~p _ ~iu?~ jj,i ! 3c "xtum ahd !leur _led out 355 11111 i illi i i i cyoo h , e't:l"1 ~ 2c~ .1. lt~ s ucn6 ikn il ~ 15i-h a'vol'''uefil i- 41'&~ ~ ys ::~~o:i.~:dm) ~ a iii-t- ~~ptfr ~ 4~ !; ~ <,' 1. vo,ibi a 51-t- l"nt'knl - 1-1- ~, of. sw'tches 1'1 ~ -i , 10 .02 10 3 o input signal freouency "1,)- kh, fig. 9- typical crosstalk between switch circuits in the same package. supp\.y volts: yoo-.5,yss-fj ciosoi" '""'t sio .... l voltslyil"5 y~p r--l~- _, co:~a:'';;~~~!~5 ! 1...! ''':':.~a5~~~["c,,,clim'' ~i""" ,..-,-- cd4016b types typical on-state resistance characteristics, ta = 2soc charac supply loao teristic' conditions conditions rl = lkh rl = lokh rl = lookh vdd vss value vis value vis value vis (vi (vi (izi (vi (ill (vi (lzi (vi 200 +15 200 +15 180 +15 ron +15 0 200 0 200 0 200 0 ron (max.) +15 0 300 +11 300 +93 320 +92 290 +10 250 +10 240 +10 ron +10 0 290 0 250 0 300 0 ron (max.) +10 0 500 +74 560 +56 610 +55 860 + 5 470 + 5 450 + 5 ron + 5 0 600 0 580 0 800 0 ron (max.) + 5 0 1 7k +42 7k +29 33k +27 200 +75 200 +75 180 +75 ron +75 -75 200 -75 200 -75 180 -75 ron (max.) +75 -75 290 !o 25 280 25 400 to.25 260 + 5 250 + 5 240 + 5 ron + 5 - 5 310 - 5 250 -5 240 -5 ron (max.) + 5 - 5 600 to 25 580 to 25 760 to 25 590 +25 450 +25 490 +25 ron +25 -25 720 -25 520 -25 520 -2.5 ron (max.) +2.5 -25 232k to 25 300k to.2s 870k to.2s ? variation from aperfect switch. ron = 0 n. scale x 0 2 ms/olv y. 20 v/oiv voo' vc' +7 sv. vss' 7 5v, rl' 10kn cl" 15 pf ',5' 1 khz v's' sv p p olstortion' 02% 92cs-27612 fig 14 - typical sme wave response of voo = +7.5 v. vss = -7.5 v. scale x 100 nsidiv y'sov/oiv 92cs-2761~ fig. 17 - typical square walle response at voo = vc = +'5 v, vss = gnd. scale x, 0 2 ms!oiv y. 20 v/oiv voo' vc' 's v vss' s v rl' iokn cl'ispf lis' i khz v's: s v p p olstortion' 04" 92cs-27613 fig. 15 - typical sme wave response of voo = +5 v, vss=-5 v. scale x" 100 ns,oiv' y'sovoiv 92cs-27616 fig.,8 - typical square wave response at vod = vc = +'0 v, vss = gnd. all unused terminals are connected to vss fig. '2- off'state switch input or output leakage current test circuit. yd~./"'"\.. vc'yoo '"tf- 2oft ? all unused terminals are connected to yss 10 ~o fig. 13 - test ctrcuit for squarewave response. scale x 0 2 ms/olv y. 20 v/oiv voo' vc' ,2 sv. vss' 2 sv. rl 0 10k!! cl' 15 pf ,'s 0 1 khz v's 0 sv p p olstortion 0 3 " 92cs-27614 fig.'6 - typical sme wave response of voo 0 +2.5 v, vss = -2.5 v. 92cst27617 fig.,9 - typical square wave response at voo '" vc"'+5 v, vss = gnd. 98 ____________________________________________________________________ __
ii all unused terminals are connected to vss (aj vc "--: vos with test unit i i switchof c04d16a_ pluggeo in test fixturei vos fixture alone./ ino unit term 5 to j of socketi t ---i --.- -, --.- - . i . i i ~ ? i i vc' loy per div vos . d 7v per div i loon. per div ? (b) 92c5-21618 flg.20 - crosstalk-control mput to signal output. vc 'r',-20m vd~~vc t r ,t,-20nl all unused terminals are rate ~ ep snitch threshold iioltage is defined as the iioltage applied to a trans- mission gate control which causes i(i,.a of transmission gate current ? connected to vss 92,,-".11.1 .~ fig. 22 - max. control-input repetition rate. f111.23 - switch threshold voltage. cd40168 typ s all unused terminals are connected to \iss flg.27 - propagation delay time signal input (v's) to signal output (vos). _asumd 011 iiooiitoii cajw:itaiia iii.,. iioiiel tiia 1\ ... ., "c"-tlv y."-5y vdd"+5v all ul&lsed te~ am connected to ss fig.24 - capacitance c,os and cos. vd~f""\...vc tpt,20na vdd dimensions and pad layout for cd4016bh all unused terminals are connected to vss 92cm-2blob vdd pig.25 - turn-on propagation delay-control input. dimensions in parentheses are in nlllllmeters and are derived from the basic inch dimen::ions as indicated. grid graduations are m mils (70-;,' inch). 92cm-109ib the phorographs and dimensions of each cos/mos chip represent a chip when it is part of the wafer. when the wafer is cut mto chips. the cleavage angles are 51 mstead of 90 with respect to the face of the chip. therefore. the isolated chip is actually 1 mtls (0. 71 mm) larger m both dimensions. __________________________________________________________________ 99


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