MAX332 MAXIM | Alldatasheet

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Quad SPST CMOS Analog Switches Maxim's MAX332, DG202 and DG212 are normally Improved 2nd Source! (See pages 3 and 5 2 open, quad single-pole-single-throw (SPST) analog for “MAXIM Advantage™”) switches. These CMOS switches can be continuously operated with power supplies ranging from +4.5V to @ Guaranteed +4.5V to +18V Operation =18V. Maxim guarantees that the MAX332 and No V Supply Required ay DG202/212 will not latch up if their power supplies @ y, i jon-Latching with Supplies Turned-off are disconnected with input signals still connected. and input Signals Present 8 The MAX332 and DG202/DG212 are similar to the it DG201 and DG211 except for inverted control inputs. # CMOS and TTL Logic Compatible S All devices have guaranteed break-before-make © ® Monolithic, Low Power CMOS Design switching as well as essentially constant on resistance over the analog signal range. All switches conduct ——__—____ Ordering Information current in either direction and add no offset to the 8 output signal. ” PART TEMP. RANGE | x) Compared to the original manufacturers products, 3aMut 5 to 125°C EADIP Maxim’s MAX332 and DG202/DG212 consume very | MAXSZMIE__-SS°C 10 125°C _ 16 Lead CEADI S little power, making them ideally suited for portable 0G202¢/D OC to+70°C Dice — applications. Maxim has also eliminated the need for 0G202C) O°Cto+70°C —‘6 Lead Plastic DIP} the third logic power supply (Vi), required when 3G20208E Ce 70S Ty in| operating the original manufacturer's 0G212, without DG2020SE_—O*CL.170°C_ 16 Lead Small Outline i.) sacrificing compatibility. DG202CK _ O*Cto+70°C 6 Lead CERDIP ly ‘DG2028SE “25°C 10 +85°C 16 Leag Smal Outline | AQ Analog Multiplexers DG202AK 56°C 10 "125°C 16 Lead CERDIP Programmable Gain Amplifiers DG2120/0 OSt0-70C Dice Communications Systems DG212C) 0°G to +70°C 16 Lead Plastic DIP Sample/Holds DG212CSE O° to +70°C 16 Lead Small Outline Automatic Test Equipment . . ae Ww ive | = ea ot | maxi | SO] maxim fas, ‘MAX332 © v-Ge] A992 FS) v* (SUBSTRATE) CY} oaa02 £ ‘our note] = 2202 awe T] paee = sate] 2022 ing, on fit 4 3 Fated lea los ime] Fp. 2m Wee] Pains

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Programmable Gain Amplifier | i ee | Note: “Pins 1, 8, 9 and 16 are logic controt inputs. Note: “Pin 12 can be left open or connected to a logic supply voltage. MAXIM ________ Maxim integrated Products 1 Call toll free 1-800-998-8800 for free samples or literature.

N ABSOLUTE MAXIMUM RATINGS (DG212) IO cece tcteteeeeecersseresrees 40V Storage Temperature ...cccccscesecsesesses 65°C to 125°C QW Minto Ground so. Ve VF Operating Temperature 20020 Lase °C to #70°C Voto Ground oie iiietiisiceeses: =03V,25V Power Dissipation (Note 1) a Veto Ground 2.202002 IIL -25V. Nee: Device mounted with all leads soldered to PC board Current, Any Terminal Except Sor Do... 022.2 csceeeeees SOMA °C above +25% Peak Current, S or O Note 3: Derate 7mW/°C above +25°C 8 Sesses lated under ‘Absolute Maximum Ratings” may be applied {one at te} to device without resuling permanent damage. These we sess ‘atings only, and functional operation of the device at these or any other conaitions above those indicated in the operational sections of the specications Se Ervtiihe pres aol sim ans cone reins one my anv once aan ® ELECTRICAL CHARACTERISTICS (DG212) (WE ET1SV.V" = -15V, GND =v, T= +25°C, unless otherwise noted) ° LIMITS | PARAMETER ‘SYMBOL TEST CONDITIONS MIN TY max | UNITS | (Note 4) (Note §) | ‘Analog Signal Range Vanasoo 18 5 Vv = Drain-Source ON Resistance Tos tom _| Vo = *10V, Viy= 24V, Ig = 1A 15 ws a | Source OFF Leakage Curent | Isom | Viv 08V Vo= 14 Vo=-4V [001 50 FA] Vg =14V, Vp = 14V 50-002 2 ry rary a! | & | Drain OFF Leakage Current loom | Viw= sv LMS" 4V.Vo" “Vv oor 80 ma | Vs" -14V, Vo = 14V 50 0.02 Drain ON Leakage Current loron WBZ M0= HV. Viy = 24V on 5.0 | (Note 6) | Vs = Vp = -14V, Vin = 2.4V 50 015 4. | Input Current With input lan | Mine 24V =10 _ -0.0004 | 5 voltage Hign Vin = 15V 0.003 10 ‘A E [input curentwinineat 1 oo ; Vonage Low Ie | Va ® OV 10 -0,0004 [Turn-On Time ten | ‘See Switching Time 460 _ 1000 i [tem | Test Creu 360500 | ns | Tun-OFF Time [ee] ez 2 Re Th, ©, = 259 rrr) eo = Se — — — | Q | Source OFF Capacitance Cs iom_| Ve = OV. Viy= OV.F= MHZ 5 | & [Drain OFF Capacitance Coron | Vo=OV. Vw OV, 1 = 1MH2 5 oF al Channel ON Capacitance Co-sion) | Vo = Vs = 5M Vy = OV, f= IMHz 16 OFF Isolation (Note 7) OlRR 70 Greteaton wee TORR Tv y= = oF en rosstal Ve= 1VRMS, t = 100KH2 (Channel to Channet) CoRR | is © > | Positive Supply Current r 035 048 & Negative Supply Current | F __| vw-ovand2av 0.30 0.48 mA | @ [Logic Supply Current rn os 12 Note 4: The algebraic convention whereby the most nagative value is a minimum, and the most positive Is a maximum, is used in this data sheet Note S: Typical values are tor DESIGN AID ONLY, not guaranteed nor subject to production testing. Note 6: —I;on) is leakage from driver into “ON” switch Note 7: OFF Isolation = 20 109°. Vs = input to OFF switch, Vp = output i The electrical characteristics above avo a reproduction of a portion of Silicanix's copyrighted 1985 data book. This information does not constitute any ‘representation by Maxim that Siliconix's products will perform in accordance with these specifications. The “Electrical Characteristics Table. along with escrptve excerpts from the original manufacturer's data sheet havo been included in this data sheet solely lor comparatve purposes

Quad SPST CMOS Analog Switches @ = Significantly Reduced Power Consumption @ = Third (Logic) Supply Not Required @ =~ Fault Protected = ABSOLUTE MAXIMUM RATINGS (DG212): This device conforms to the Absolute Maximum Ratings on the adjacent x page ELECTRICAL CHARACTERISTICS (DG212): specitications below satisty or exceed all “tested” parameters on XN adjacent page S (V* = +18V, V- = -18V, GND = OV, T,= 125°C, unless otherwise noted) 9 uMITs a » PARAMETER SYMBOL TEST CONDITIONS MIN TYP MAX UNITS: fo] (Note 4) (Note 5) Analog Signal Range v WN Drain-Source ON Resistance | Tosiem | Vo= HOV Vis 24V. Ig = tna 0 5 x | source OFF Leakage current | Ig | Vw=08V 9 2 -69__-0.02 wD @ | Drain OFF Leakage Current Voy [Ys* 14V, Vo = =14V oor 50 nA ~ Ve=-14V, Vp = 14V “50-002 ix) | Drain ON Leakage Curent lover _ 0150 | j mere) Vs = Vp = -14V, Vin = 24 50-015 | | Input Current With Input hae fume ea «| 40 -0.0008 2 | Voltage High Wwe e008 10 | a | = | input Current With input | Vottage Low law Viy= OV “10 0.0004 Turn-ON Time ton See Switching Time 4601000 SurmOFF T tots Test Circuit 360 500 ns | ime Ton Vg = 2V, Ry = 1kf2, C, = 35pF 450 g ‘Source OFF Capacitance Coton | Vs = OV. Vy = OV. f= MHZ 5 © | Drain OFF Capacitance Co iam, _| Vo= OV. Vin = OV. f= IMHz 5 pF 3 | Channel ON Capacitance Co.sion | Vo = Vs = OV. Viy = 5V, f= 1MHz 16 OFF Isolation (Note 8) {_OIRR 70 ‘Gostuk Vine = OV. R= 1k02, Cy = 15pF. a rossta VEE IVAMS. 1 = 100KHe2 (Channel to Channel) CCAR | Vs 90 | Positive Supply Current lr 0.02 O41 | >; | Negative Supply Current r Vin = OV and 2.4V 0.00001 o4 mA = Logic Supply Current in 0.0 00 ® | Power Supply Range a + | for Continuous Operation #48 #18 v Note 8: Electrical characteristics. such as ON Resistance, will change when power supplies, other than? 15V, are used MAXIM ae 3

Quad SPST CMOS Analog Switches ABSOLUTE MAXIMUM RATINGS (DG202) N VO necseeeeseseeesessssssssrsenereeeseseseesesreerers 44 Power Dissipation (Note 2) Current, Any Terminal Except S or 0 eee eeee eee eeees SOMA Continuous Current, $ Of D ....esesccssssvsessesssss 2OMA Note t: Signals on Sy, Dy or INy exceeding V* or V~ on Maxim's Peak Current, S or D MAX332 and 0G202 will be clamped by internal diodes, QQ Operating Temperature Note 2: Device mounted with all leads soldered to PC board. (C Suffix) occ e eee eee es OPC to 470°C Note 5: Derate 7mW/°C above +25°C. MAX332MJE eee e cece eee ees eeerenees “BSC to +125°C Stress0s listed under “Absolute Maximum Ratings” may be applied (one at a time) fo devices without resulting in permanent damage. These are stress ratings only. and lunctional operation of the device at these of any other condone above thase indiceted in the operational sections ofthe speciicatlons refit Exposure te absolute maximum ratings conditions lor extended periods may aflec! vic etait © ELECTRICAL CHARACTERISTICS (DG202) ty) (V" = +15V, V> = -15V, GND = OV, T, = +25°C, unless otherwise noted) ty) {yT— re ums PARAMETER ‘SYMBOL ‘TEST CONDITIONS DG202A 0G2028.¢ | MIN. TYP MAX| MIN TYP MAX = Note 6) (Note 7) Note 6) (Note 7) ‘Analog Signal Range =15 18 | -15 ws [iv | Drain-Source ON a+ . Peeistance Fos com | Vp = 210V, Viy® 24V, Ig = 1A 15175 118 200} 9 ‘Source OFF Leakage [g= 14V.Vp = -14V 001 10 001 50 Fl \\ Vys0ay $32 - & | Current Iscom | Vin ig=—14V.Vp=14V | -50 -0.02 = | Drain OFF Leakage jg= 14V.Vp=-14V. 001 10 oor 50 ) @ lovom | Vww= 08V ns Drain ON Leakage \\ Vg -14V, Viy = 2.4V [or t0 0150 Current (Note 8) lon! Vp = 14V, Vin = 24V 1.0035 6.0 -015 4. | Input Current with Vin ® 24V =1.0_-0.0004 2 | Input Voltage High Vin = 15V 0.00310 9.003 1.0 2 | input Corrent With . : pet art pl Vy = OV -10 -0.0004 -1.0 -0.0006 Turn-ON Time ‘See Switching Time 480 600 480600 | ‘Turn-OFF Time tort Test Circuit 7 370 450 370 450 Charge Injection Q a NpOPF, Naen “ov, 20 pc cen | @ | Source OFF cs | Ceoact | Cscem = tance ” | Vg = OV. Vig = OV | 3 [brain OFF Capacitance. ; = 4oktte 5 © | Channel ON Co ion) = - Capacitance E50, | Vo* Vo= OV. Vin= 5V 16 16 (OFF Isolation Vi = OV, Z; = 75K. 70 70 Crosstalk ©2ov.t= (obarnet 10 Channel) Vg 20V,1= 100kH2 0 90 '& >. | Positive Supply Current 1 | All Channels ON or OFF 09. 2 os 2 Positive Supply Current n - mA Ba | Negative Supply Current | 1 | All Channels ON or OFF 3-03 a 03 Note 6: The aigebraic convention whereby the most negative value is a minimum, and the most positive is a maximum, is used in this data sheet Note 7: Typical values are for DESIGN AID ONLY. not guaranteed nor subject to production testing. Note 8: —ojon is leakage from driver into “ON” switch The olectrical characteristics above are a reproduction of @ portion of Siiconix’s copyrighted 1985 date book. This information does not constitute any ‘representation by Maxim that Siiconix’s produets will perform in accordance mith these specifications. The -électrical Charactorisves Table along with Gescriptive excerpis rom the original manufacturers deta sheet have Deen included in this data sheet solely for comparative purposes. ao AM AKIM

Quad SPST CMOS Analog Switches @ Significantly Reduced Power Consumption © Lower Input Current Over Temperature @ No Input Current Spike = ABSOLUTE MAXIMUM RATINGS (MAX332, DG202): this device conforms to the Absolute Maximum Ratings x on the adjacent page. 8 ELECTRICAL CHARACTERISTICS (MAX332, DG202): sosctcatonsbsow saty or exces at estar? ND parameters on adjacent page (V* = +18V, V> = -18V, GND = OV, T, = +25°C, unless otherwise noted) 8 UMITS PARAMETER SYMBOL ‘TEST CONDITIONS MAXS32/0G202A_| _DG2028.C__ 8 MIN. TYP MAX| MIN TYP MAX » tNote 6) (Note 7) {Note 6) (Note 7) \\ ‘Analog Signal Range | Vanaioa 75 aes 3 3 Drain-Source ON : : - oslotance weve) os(on | Vo=210V, Vin = 24V, tg = 1mA 18 175 15 200] & | Source OFF Leakage 1 Vcoay ani Vo=-V 00110 0160 | | curent sian | Yin Vs=-14V.Vp=14v | 10-002 “50-002 | | d & | brain OFF Leakage Vs = 14V, Vo =—14V oo 10 on 50 | \\ Viveoey jYs= TM Vor ov — Current Drom | uN Vs2-14V.Vp=14v | -10 0.02 “50-002 } A | Drain ON Leakage A Vg = -14V, Vi = 2.4V o1 10 o1 50 | Current (Note 8) Dion) Y= 14V, Viy=24V 10-015 “50-015 | w | inet Curent in 1 Viv= 24V =10_ 0.0004 =10 00008 input Voitage High iw a B | out voraoe to Vin= 15V_ 000310 000310 | 4a | 2 | input Current with : 7 “0 Inout Voge Low lw | Viw= OV ~10 -0.0004 4.0 00004 Turn-ON Time ton ‘Seo Switching Time 480 600 «0600 | Turn-OFF Time tomy Test Circuit 370-450 370 450 Charge injection 3 = doOeF Woes = Ou 2 2 sc | 2 | Source OFF 3 | Capacitance ©siom | Vvg=0¥, vy = OV 5 5 Drain OFF Capacitance | Coo f= 140kH2 5 5 oF Channel ON Cpion* | vo=Ve= . aan Bion” | Vos Va" Ov. Yn SY | 6 6 OFF Isolation Vin= OV. Z, = 75k. 70 70 | Crosstalk cbovte 8 (Channel to Channel) Vs = 20¥. 1 = 100kH2 90 80 >, | Positive Supply Current 1 __| AllChannels ON or OFF 002 08 oo2 or | & | Negative Supply Current 1 | AllChanneis ON or OFF “01-001 01-001 @ | Power Supply Range for | ® | Continaous Opereton Vor +45 218 | +45 sev Note 6: The algebraic convention whereby the most negative value Is a minimum, and the most positive is a maximum, is used in this data sheet Note 7: Typical values are for DESIGN AID ONLY, not guaranteed nor subject to production testing Note 8: pion is leakage trom driver into “ON” switch. Note 9: Electrical characteristics, such as ON Resistance, will change when power supplies other than +15V, are used MAXIMA — a 5

Quad SPST CMOS Analog Switches ELECTRICAL CHARACTERISTICS (DG202) a (V* = +15V, V> = -15V, GND = OV, T, = Full Operating Temperature Range) = LIMITS: N PARAMETER TEST CONDITIONS DG2024 062028.C__|ynits ‘MIN TYP MAX | MIN TYP MAX [Note 6) (Noto 7) (Note 6) (Note 7) ing Analog Signal Range 15 15 | -15 5 v a Sraio-Seurce OM | rosie | Yo" HOV. Vy=240,g= mA 250 aso | 0

8 Current Som " Vs=-14V, Vp=14v_| -100 100

Drain OFF Leakage . Vs= 14V, Vo = -14V 100 100 XN Current ‘oven | Vin" 0.80 Vs = -14V, Vp = 14V | -100 =100 mA Nn Drain ON Leakage in Vs = ~14V. Vin = 24 200 200 ° Current (Note 10) Pron) Ve 14V, Vay = 24V ~200 ~200 ° | Input Current with j Vay 2.4V =10 s 2 Input Voltage High MY) Viy= 15V =10 | input Current With : ~ Input Voltage Low fo Vin = OV -10 70 = Note 10: Ipjon) i$ leakage from driver into “ON” switch. The slactrical characteristics above are a reproduction of # portion of Siliconix's copyrighted 1985 data book. This information does not constitute ary representation by Maxim that Siiconix’s products will perform in eccoreance with these specttications. The Elsctical Charactersies Table” along with eecriptive excerpts trom the original manufacturer's date sheet have Deen included inthis data shee! solely for comparative purposes, SSF Switching Time Test Circuit Switch output waveform shown for Vs = constant —_Vo is the steady state output with switch on. Feed- with logic input waveform as shown. Note that Vs___through via gate capacitance may result in spikes at may be +ve or -ve as per switching times test circuit. leading and trailing edge of output waveform. 105 1 swoN Ln ] ; kee w weg he Py ov | . art ® iat | weve ° ° T. LN fu swita ye — | hh or wat | | oF a #2HD > i i voy @ neat TET FON WR AND ureur © > 0 6NO ow Po ‘we Typical Roscon) vs. Power Supplies for Maxim’s MAX332, DG202/DG212 POWER SUPPLIES 'osiow) AT ANALOG SIGNAL LEVEL _ +8V ~10v +10v a8v +15V Ey - SOV 1650, 2500 - =8V rr 1600 1350 75501 @ MAXIM

3 Input Voltage High Vig = 15V 10 10 | a Ixy

Note 11: Electrical characteristics, such as ON Resistance, will change when power supplies other than +15V. are used. Figure 1. Protection Against Fault Conditions

Quad SPST CMOS Analog Switches w ; eS }} 0150-0158 0.181 - 0205 0228-0248 iN JUeeheeo——— tS Soo | | >) la = sail | fs = | = _ie Rens | 0060 -a008 vot fe 16 Lead Smal! Outline (SE) - yn = 110°C/W Dy he my o Aye = 60°C/W sore (1.83 met 250 0mm tree Prag MO maa ows +0058 | ox 00% ayo (SSC em. shed | (0635) ee = ow oso = aga 0130+ 0005 10+ ' (rseerore [I eT Be eg lL bawam sede 0258) a5 088 eae = 0051) fa77e + 1838

16 Lead CERDIP

16 Lead Plastic DIP Ayn = 100°C/W

Oya = 135°C/W yc = 60°C/W yc = 65°C/W — 8 _______Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 (408) 737-7600