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  unisonic technologies co., ltd ucd4066 cmos ic www.unisonic.com.tw 1 of 8 copyright ? 2014 unisonic technologies co., ltd qw-r502-739.d quad bilateral switch ? description the utc ucd4066 is a quad bilateral switch which can be applied for switching of analog signals and digital signals. when control input cont is set to ?h? level, the impedance between input and output of the sw itch becomes low and when it is set to ?l? level, the impedance becomes hi gh. it has a much lower ?on? resistance, and ?on? resistance is relatively constant over the input-signal range. ? features * 15v digital or 7.5v peak-to-peak switching * 85- ? typical on-state resistance for 15v operation * high noise immunity 0.45 v dd (typ.) * matched ?on? resistance ? r on =5 ? (typ.) over 15v signal input * high degree linearity 0.1% distortion (typ.) @ f is =1khz, v is =5v p-p , v dd -v ss =5v, r l =10k ? * extremely low ?off? 0.1na (typ.) switch leakage: @ v dd -v ss =10v, t a =25c * extremely high control input impedance 10 12 ? (typ.) * frequency response, switch ?on? 40 mhz (typ.) dip-14 ? ordering information ordering number package packing lead free halogen free ucd4066l-d14-t ucd4066g-d14-t dip-14 tube (1) t: tube (2) d14: dip-14 (3) l: lead free, g: halogen free and lead free ucd4066l-d14-t (1)packing type (2)package type (3)green package ? marking
ucd4066 cmos ic unisonic technologies co., ltd 2 of 8 www.unisonic.com.tw qw-r502-739.d ? pin configuration 14 13 12 11 10 9 8 v dd control a control d in/out out/in out/in in/out 1 2 3 4 5 6 7 in/out out/in out/in in/out v ss control b control c ? pin description pin no. pin name description 1 in/out signal in/out a 2 out/in signal out/in a 3 out/in signal out/in b 4 in/out signal in/out b 5 control b control b 6 control c control c 7 v ss ground 8 in/out signal in/out c 9 out/in signal out/in c 10 out/in signal out/in d 11 in/out signal in/out d 12 control d control d 13 control a control a 14 v dd power supply
ucd4066 cmos ic unisonic technologies co., ltd 3 of 8 www.unisonic.com.tw qw-r502-739.d ? block diagram sw a sw d sw b sw c 9 v dd control a control d in/out out/in out/in in/out in/out out/in out/in in/out v ss control b control c 14 13 12 11 10 9 8 1 4 2 3 5 6 7 ? schematic diagram
ucd4066 cmos ic unisonic technologies co., ltd 4 of 8 www.unisonic.com.tw qw-r502-739.d ? absolute maximum rating (v ss =0v unless otherwise specified.) parameter symbol ratings unit supply voltage v dd -0.5~+18 v input voltage v in -0.5~ v cc +0.5 v power dissipation p d 700 mw storage temperature t stg -65~+150 c ? recommended operating conditions (v ss =0v unless otherwise specified.) parameter symbol ratings unit supply voltage v dd 3~15 v input voltage v in 0~v dd v operating temperature t a -40~+85 c note: absolute maximum ratings are those values beyond which the device could be permanently damaged. absolute maximum ratings are stress ratings only and functional device oper ation is not implied. ? dc electrical characteristics (t a =25c, v ss =0v unless otherwise specified.) parameter symbol test conditions min typ max unit quiescent device current i dd v in =v dd v dd =5v 0.01 1.0 a v dd =10v 0.01 2.0 v dd =15v 0.01 4.0 singal inputs and outputs ?on? resistance r on r l =10k ? ~(v dd -v ss /2), v con =v dd ,v ss ~v dd v dd =5v 240 1050 ? v dd =10v 120 400 v dd =15v 80 240 ? ?on? resistance between any 2 of 4 switches ? r on r l =10k ? ~(v dd -v ss /2), v cc =v dd , v is =v ss ~v dd v dd =10v 10 ? v dd =15v 5 input or output leakage switch ?off? i is v con =0 0.1 50 na control inputs low level input voltage v ilc v is =v ss and v dd, v os =v dd and v ss, i is =10a v dd =5v 2.25 1.5 v v dd =10v 4.5 3.0 v dd =15v 6.75 4.0 high level input voltage v ihc v dd =5v 3.5 2.75 v v dd =10v (note 5) 7.0 5.5 v dd =15v 11.0 8.25 input current i in v dd -v ss =15v, v dd v is v ss, v dd v con v ss 10 -5 0.3 a
ucd4066 cmos ic unisonic technologies co., ltd 5 of 8 www.unisonic.com.tw qw-r502-739.d ? ac electrical characteristics (t a =25c, t r =t f =20ns and v ss =0v, unless otherwise specified) (note 1) parameter symbol test conditions min typ max unit propagation delay time signal t phl, t plh v con =v dd , c l =5pf, r l =200k ? (fig. 1) v dd =5v 25 55 ns v dd =10v 15 35 ns v dd =15v 10 25 ns propagation delay time control input to signal output high impedance to logical level t pzh , t pzl r l =1k ? , c l =50pf, (fig. 2, 3) v dd =5v 125 ns v dd =10v 60 ns v dd =15v 50 ns propagation delay time control input to signal output logical level to high impedance t phz, t plz r l =1k ? , c l =50pf, (fig. 2, 3) v dd =5v 125 ns v dd =10v 60 ns v dd =15v 50 ns sine wave distortion v con =v dd =5v, v ss =-5v, r l =10k ? , v is =5v p - p , f=1khz (fig. 4) 0.1 % frequency response-switch ?on? (frequency at -3db) v con =v dd =5v, v ss =-5v, r l =1k ? , 20 log 10 ( v os /v is )=-3db, v is =5.0v p - p (fig. 4) 40 mhz feedthrough - switch ?off? (frequency at -50db) v dd =5.0v, v cc =v ss =-5.0v, r l =1k ? , v is =5.0v p-p , 20 log 10 ( v os /v is )=-50db (fig. 4) 1.25 mhz crosstalk between any two switches (frequency at -50db) v dd =v con(a) =5.0v, r l =1k ? , v ss =v con (b) =5.0v, v is(a) =5.0v p-p , 20 log 10 ( v os(b) /v is(a) )=-50db(fig. 5) 0.9 mhz crosstalk, control input to signal output v dd =10v, r l =10k ? , r in =1k ? , v cc =10v square wave, c l =50pf (fig. 6) 150 mv p- p maximum control input r l =1k ? , c l =50pf, v os(f) =? v os (1khz) (fig. 7) v dd =5v 6 mhz v dd =10v 8 mhz v dd =15v 8.5 mhz signal input capacitance c is 8.0 pf signal output capacitance c os v dd =10v 8.0 pf feedthrough capacitance c ios v con =0v 0.5 pf control input capacitance c in 5.0 7.5 pf notes: 1. ac parameters are guaranteed by dc correlated testing. 2. these devices should not be connec ted to circuits with the power ?on?. 3. in all cases, there is approx imately 5 pf of probe and jig capacit ance in the output; however, this capacitance is included in c l wherever it is specified. 4. v is is the voltage at the in/out pin and v os is the voltage at the out/in pin. v con is the voltage at the control input. 5. conditions for v ihc : a) v is =v dd , i os =standard b series i oh b) v is =0v, i ol = standard b series i ol
ucd4066 cmos ic unisonic technologies co., ltd 6 of 8 www.unisonic.com.tw qw-r502-739.d ? special consideration using continuously under heavy loads may cause utc ucd4066 to decrease in the reliability even if the operating conditions are within the absol ute maximum ratings and the operating ranges. in applications where separate power sources are used to drive v dd and the signal input, the v dd current capability should exceed v dd /r l . this provision avoids any permanent current flow or clamp action of the v dd supply when power is applied or removed from utc ucd4066 . ? ac test circuit and switching time waveforms t r t f t plh 90% 50% 10% 50% t phl v dd 0v v dd 0v v is v os fig. 1 t phl , t plh propagation delay time si gnal input to signal output control in/out out/in v dd v ss v is v con =v dd v dd v os r l 200k c l 50pf t plz t pzl v dd v dd 0v v ol v ol v dd v dd 0v t pzl t plz 50% 50% 10% 90% fig. 3 t pzl , t plz propagation delay time control to signal output control in/out out/in v dd v ss v is =0v v con v dd v os r l 1k c l 50pf v dd
ucd4066 cmos ic unisonic technologies co., ltd 7 of 8 www.unisonic.com.tw qw-r502-739.d ? ac test circuit and switching time waveforms(cont.) 1/f 2.5v v is(1) 0v -2.5v control v dd in/out out/in v ss v os(1) v is(1) -5v r l 1k ? 5v v con(1) =v dd v con(2) =v ss v is(2) =0v v os(2) r l 1k ? control v dd in/out out/in v ss fig. 5 crosstalk between any two switches -5v 5v
ucd4066 cmos ic unisonic technologies co., ltd 8 of 8 www.unisonic.com.tw qw-r502-739.d ? ac test circuit and switching time waveforms(cont.) utc assumes no responsibility for equipment failures that result from using products at values that exceed, even momentarily, rated values (such as maximum ratings, operating condition ranges, or other parameters) listed in products specifications of any and all utc products described or contained herein. utc products are not designed for use in life support appliances, devices or systems where malfunction of these products can be reasonably expected to result in personal injury. reproduction in whole or in part is prohibited without the prior written consent of the copyright owner. the information presented in this document does not form part of any quotation or contract, is believed to be accurate and reliable and may be changed without notice.


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