1 pc Charge Injection, 100 pa Leakage CMOS 5 V/5 V/3 V 4-Channel Multiplexer ADG604
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1 a FEATURES 1 pc Charge Injection (Over the Full Signal Range) 2.7 V to 5.5 V ual Supply 2.7 V to 5.5 ingle Supply Automotive Temperature Range: 4 C to +125 C 1 pa 25 C Leakage Currents 85 Typ On Resistance Rail-to-Rail Operation Fast Switching Times Typical Power Consumption (<.1 W) TTL/CMOS Compatible Inputs 14-Lead TSSOP Package APPLICATIONS Automatic Test Equipment ata Acquisition Systems Battery-Powered Instruments Communication Systems Sample and Hold Systems Remote-Powered Equipment Audio and Video Signal Routing Relay Replacement Avionics 1 pc Charge Injection, 1 pa Leakage CMOS 5 V/5 V/3 V 4-Channel Multiplexer AG64 FUNCTIONAL BLOCK IAGRAM 4 S2 5 S3 11 S4 1 AG64 1 OF 4 ECOER A A1 EN 6 GENERAL ESCRIPTION The AG64 is a CMOS analog multiplexer, comprising four single channels. It operates from a dual supply of ± 2.7 V to ± 5.5 V, or from a single supply of 2.7 V to 5.5 V. The AG64 switches one of four inputs to a common output,, as determined by the 3-bit binary address lines, A, A1, and EN. A Logic on the EN pin disables the device. The AG64 offers ultralow charge injection of ±1.5 pc over the entire signal range and leakage currents of 1 pa typical at 25 C. It offers on resistance of 85 Ω typ, which is matched to within 2 Ω between channels. The AG64 also has low power dissipation yet gives high switching speeds. The AG64 is available in a 14-lead TSSOP package. PROUCT HIGHLIGHTS 1. Ultralow Charge Injection (Q INJ : ± 1.5 pc Typ over the Full Signal Range) 2. Leakage Current <.5 na 85 C 3. ual ± 2.7 V to ±5.5 V or Single 2.7 V to 5.5 upply 4. Fully Specified to 125 C 5. Small 14-Lead TSSOP Package REV. Information furnished by Analog evices is believed to be accurate and reliable. However, no responsibility is assumed by Analog evices for its use, nor for any infringements of patents or other rights of third parties that may result from its use. No license is granted by implication or otherwise under any patent or patent rights of Analog evices. One Technology Way, P.O. Box 916, Norwood, MA , U.S.A. Tel: 781/ Fax: 781/ Analog evices, Inc., 22
2 AG64* PROUCT PAGE QUICK LINKS Last Content Update: 2/23/217 COMPARABLE PARTS View a parametric search of comparable parts. OCUMENTATION Application Notes AN-124: How to Calculate the Settling Time and Sampling Rate of a Multiplexer ata Sheet AG64: 1 pc Charge Injection, 1 pa Leakage CMOS ±5 V/5 V/3 V 4-Channel Multiplexer ata Sheet REFERENCE MATERIALS Product Selection Guide Switches and Multiplexers Product Selection Guide Technical Articles CMOS Switches Offer High Performance in Low Power, Wideband Applications ata-acquisition system uses fault protection Enhanced Multiplexing for MEMS Optical Cross Connects Temperature monitor measures three thermal zones ESIGN RESOURCES AG64 Material eclaration PCN-PN Information Quality And Reliability Symbols and Footprints ISCUSSIONS View all AG64 EngineerZone iscussions. SAMPLE AN BUY Visit the product page to see pricing options. TECHNICAL SUPPORT Submit a technical question or find your regional support number. OCUMENT FEEBACK Submit feedback for this data sheet. This page is dynamically generated by Analog evices, Inc., and inserted into this data sheet. A dynamic change to the content on this page will not trigger a change to either the revision number or the content of the product data sheet. This dynamic page may be frequently modified.
3 AG64 SPECIFICATIONS UAL SUPPLY 1 ( = +5 V 1%, = 5 V 1%, GN = V. All specifications 4 C to +125 C unless otherwise noted.) 4 C to 4 C to Parameter 25 C +85 C +125 C Unit Test Conditions/Comments ANALOG SWITCH Analog Signal Range to V = +4.5 V, = 4.5 V On Resistance (R ON ) 85 Ω Typ = ± 3 V, I S = 1 ma, Ω Max Test Circuit 1 On Resistance Match Between Channels ( R ON ) 2 Ω Typ = ± 3 V, I S = 1 ma Ω Max On-Resistance Flatness (R FLAT(ON) ) 25 Ω Typ = ± 3 V, I S = 1 ma Ω Max LEAKAGE CURRENTS = +5.5 V, = 5.5 V Source OFF Leakage I S (OFF) ±.1 na Typ = ±4.5 V, V = 4.5 V, ±.1 ±.25 ± 4 na Max Test Circuit 2 rain OFF Leakage I (OFF) ±.1 na Typ = ±4.5 V, V = 4.5 V, ±.1 ±.5 ± 8 na Max Test Circuit 2 Channel ON Leakage I, I S (ON) ±.1 na Typ = V = ± 4.5 V, Test Circuit 3 ±.1 ±.5 ± 1 na Max IGITAL INPUTS Input High Voltage, V INH 2.4 V Min Input Low Voltage, V INL.8 V Max Input Current I INL or I INH.5 µa Typ V IN = V INL or V INH ±.1 µa Max C IN, igital Input Capacitance 2 pf Typ YNAMIC CHARACTERISTICS 2 Transition Time 7 ns Typ 1 = +3 V, 4 = 3 V, R L = 3 Ω, ns Max C L = 35 pf, Test Circuit 4 t ON Enable 8 ns Typ R L = 3 Ω, C L = 35 pf ns Max = 3 V, Test Circuit 6 t OFF Enable 3 ns Typ R L = 3 Ω, C L = 35 pf ns Max = 3 V, Test Circuit 6 Break-Before-Make Time elay, t BBM 2 ns Typ R L = 3 Ω, C L = 35 pf, 1 ns Min 1 = 2 = 3 V, Test Circuit 5 Charge Injection 1 pc Typ = V, R S = Ω, C L = 1nF, Test Circuit 7 Off Isolation 75 db Typ R L = 5 Ω, C L = 5 pf, f = 1 MHz, Test Circuit 8 Channel-to-Channel Crosstalk 7 db Typ R L = 5 Ω, C L = 5 pf, f = 1 MHz, Test Circuit 1 Bandwidth 3 db 28 MHz Typ R L = 5 Ω, C L = 5 pf, Test Circuit 9 C S (OFF) 5 pf Typ f = 1 MHz C (OFF) 17 pf Typ f = 1 MHz C, C S (ON) 18 pf Typ f = 1 MHz POWER REQUIREMENTS = +5.5 V, = 5.5 V I.1 µa Typ igital Inputs = V or 5.5 V 1. µa Max Iss.1 µa Typ igital Inputs = V or 5.5 V 1. µa Max NOTES 1 Y Version Temperature Range: 4 C to +125 C 2 Guaranteed by design, not subject to production test. Specifications subject to change without notice. 2 REV.
4 SINGLE SUPPLY 1 ( = 5 V 1%, = V, GN = V. All specifications 4 C to +125 C unless otherwise noted.) AG64 4 C to 4 C to Parameter 25 C +85 C +125 C Unit Test Conditions/Comments ANALOG SWITCH Analog Signal Range V to V = 4.5 V, = V On Resistance (R ON ) 21 Ω Typ = 3.5 V, I S = 1 ma, Ω Max Test Circuit 1 On Resistance Match Between Channels ( R ON ) 3 Ω Typ = 3.5 V, I S = 1 ma Ω Max LEAKAGE CURRENTS = 5.5 V Source OFF Leakage I S (OFF) ±.1 na Typ = 1 V/4.5 V, V = 4.5 V/1 V, ±.1 ±.25 ± 4 na Max Test Circuit 2 rain OFF Leakage I (OFF) ±.1 na Typ = 1 V/4.5 V, V = 4.5 V/1 V, ±.1 ±.5 ± 8 na Max Test Circuit 2 Channel ON Leakage I, I S (ON) ±.1 na Typ = V = 4.5 V/1 V, ±.1 ±.5 1 na Max Test Circuit 3 IGITAL INPUTS Input High Voltage, V INH 2.4 V Min Input Low Voltage, V INL.8 V Max Input Current I INL or I INH.5 µa Typ V IN = V INL or V INH ±.1 µa Max C IN, igital Input Capacitance 2 pf Typ YNAMIC CHARACTERISTICS 2 Transition Time 9 ns Typ 1 = 3 V, 4 = V, R L = 3 Ω, ns Max C L = 35 pf, Test Circuit 4 t ON Enable 15 ns Typ R L = 3 Ω, C L = 35 pf ns Max = 3 V, Test Circuit 6 t OFF Enable 45 ns Typ R L = 3 Ω, C L = 35 pf ns Max = 3 V, Test Circuit 6 Break-Before-Make Time elay, t BBM 3 ns Typ R L = 3 Ω, C L = 35 pf, 1 ns Min 1 = 2 = 3 V, Test Circuit 5 Charge Injection.3 pc Typ = V, R S = Ω, C L = 1 nf, Test Circuit 7 Off Isolation 65 db Typ R L = 5 Ω, C L = 5 pf, f = 1 MHz, Test Circuit 8 Channel-to-Channel Crosstalk 7 db Typ R L = 5 Ω, C L = 5 pf, f = 1 MHz, Test Circuit 1 Bandwidth 3 db 25 MHz Typ R L = 5 Ω, C L = 5 pf, Test Circuit 9 C S (OFF) 5 pf Typ f = 1 MHz C (OFF) 17 pf Typ f = 1 MHz C, C S (ON) 18 pf Typ f = 1 MHz POWER REQUIREMENTS = 5.5 V igital Inputs = V or 5.5 V I.1 µa Typ 1. µa Max NOTES 1 Y Version Temperature Range: 4 C to +125 C 2 Guaranteed by design, not subject to production test. Specifications subject to change without notice. REV. 3
5 AG64 SPECIFICATIONS SINGLE SUPPLY 1 ( = 3 V 1%, = V, GN = V. All specifications 4 C to +125 C unless otherwise noted.) 4 C to 4 C to Parameter 25 C +85 C +125 C Unit Test Conditions/Comments ANALOG SWITCH Analog Signal Range V to V = 2.7 V, = V On Resistance (R ON ) Ω Typ = 1.5 V, I S = 1 ma, Test Circuit 1 On Resistance Match Between Channels ( R ON ) 5 Ω Typ = 1.5 V, I S = 1 ma LEAKAGE CURRENTS = 3.3 V Source OFF Leakage I S (OFF) ±.1 na Typ = 1 V/3 V, V = 3 V/1 V, ±.1 ±.25 ± 4 na Max Test Circuit 2 rain OFF Leakage I (OFF) ±.1 na Typ = 1 V/3 V, V = 3 V/1 V, ±.1 ±.5 ± 8 na Max Test Circuit 2 Channel ON Leakage I, I S (ON) ±.1 na Typ = V = 1 V/3 V, ±.1 ±.5 ± 1 na Max Test Circuit 3 IGITAL INPUTS Input High Voltage, V INH 2. V Min Input Low Voltage, V INL.8 V Max Input Current I INL or I INH.5 µa Typ V IN = V INL or V INH ±.1 µa Max C IN, igital Input Capacitance 2 pf Typ YNAMIC CHARACTERISTICS 2 Transition Time 17 ns Typ 1 = 2 V, 4 = V, R L = 3 Ω, ns Max C L = 35 pf, Test Circuit 4 t ON Enable 18 ns Typ R L = 3 Ω, C L = 35 pf ns Max = 2 V, Test Circuit 6 t OFF Enable 1 ns Typ R L = 3 Ω, C L = 35 pf ns Max = 2 V, Test Circuit 6 Break-Before-Make Time elay, t BBM 1 ns Typ R L = 3 Ω, C L = 35 pf, 1 ns Min 1 = 2 = 2 V, Test Circuit 5 Charge Injection.3 pc Typ = V to 3.3 V, R S = Ω, C L = 1 µf, Test Circuit 7 Off Isolation 65 db Typ R L = 5 Ω, C L = 5 pf, f = 1 MHz, Test Circuit 8 Channel-to-Channel Crosstalk 7 db Typ R L = 5 Ω, C L = 5 pf, f = 1 MHz, Test Circuit 1 Bandwidth 3 db 25 MHz Typ R L = 5 Ω, C L = 5 pf, Test Circuit 9 C S (OFF) 5 pf Typ f = 1 MHz C (OFF) 17 pf Typ f = 1 MHz C, C S (ON) 18 pf Typ f = 1 MHz POWER REQUIREMENTS = 3.3 V igital Inputs = V or 3.3 V I.1 µa Typ 1. µa Max NOTES 1 Y Version Temperature Range: 4 C to +125 C 2 Guaranteed by design, not subject to production test. Specifications subject to change without notice. 4 REV.
6 AG64 ABSOLUTE MAXIMUM RATINGS 1 (T A = 25 C unless otherwise noted) to V to GN V to +6.5 V to GN V to 6.5 V Analog Inputs V to +.3 V igital Inputs V to +.3 V or ma, Whichever Occurs First Peak Current, S or ma (Pulsed at 1 ms, 1% uty Cycle Max) Continuous Current, S or ma Operating Temperature Range Automotive (Y Version) C to +125 C Storage Temperature Range C to +15 C Junction Temperature C TSSOP Package JA Thermal Impedance C/W JC Thermal Impedance C/W Lead Temperature, Soldering (1 seconds) C IR Reflow, Peak Temperature C NOTES 1 Stresses above those listed under Absolute Maximum Ratings may cause permanent damage to the device. This is a stress rating only; functional operation of the device at these or any other conditions above those listed in the operational sections of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. Only one absolute maximum rating may be applied at any one time. 2 Overvoltages at EN, A, A1, S, or will be clamped by internal diodes. Current should be limited to the maximum ratings given. ORERING GUIE Model Option Temperature Range Package escription Package AG64YRU 4 C to +125 C Thin Shrink Small Outline (TSSOP) RU-14 PIN CONFIGURATION Table I. Truth Table A EN S2 NC 1 14 A1 2 3 AG GN TOP VIEW 4 11 (Not To Scale) S S4 NC NC NC = NO CONNECT A1 A EN ON Switch X X None CAUTION ES (electrostatic discharge) sensitive device. Electrostatic charges as high as 4 V readily accumulate on the human body and test equipment and can discharge without detection. Although the AG64 features proprietary ES protection circuitry, permanent damage may occur on devices subjected to high-energy electrostatic discharges. Therefore, proper ES precautions are recommended to avoid performance degradation or loss of functionality. WARNING! ES SENSITIVE EVICE REV. 5
7 AG64 TERMINOLOGY Most Positive Power Supply Potential Most Negative Power Supply in a ual Supply Application. In single supply applications, this should be tied to ground at the device. GN Ground ( V) Reference I Positive Supply Current I SS Negative Supply Current S Source Terminal. May be an input or output. rain Terminal. May be an input or output. R ON Ohmic Resistance between and S R ON On Resistance Match between any two channels, i.e., R ON Max R ON Min R FLAT(ON) Flatness is defined as the difference between the maximum and minimum value of On resistance as measured over the specified analog signal range. I S (OFF) Source Leakage Current with the Switch OFF I (OFF) rain Leakage Current with the Switch OFF I, I S (ON) Channel Leakage Current with the Switch ON V, Analog Voltage on Terminals, S V INL Maximum Input Voltage for Logic V INH Minimum Input Voltage for Logic 1 I INL (I INH ) Input Current of the igital Input C S (OFF) Channel Input Capacitance for OFF Condition C (OFF) Channel Output Capacitance for OFF Condition C, C S (ON) On Switch Capacitance C IN igital Input Capacitance t ON (EN) elay time between the 5% and 9% points of the digital input and switch ON condition. t OFF (EN) elay time between the 5% and 9% points of the digital input and switch OFF condition. t TRANSITION elay time between the 5% and 9% points of the digital input and switch ON condition when switching from one address state to another. t BBM OFF time or ON time measured between the 8% points of both switches, when switching from one address state to another. Charge Injection A measure of the glitch impulse transferred from the digital input to the analog output during switching. Crosstalk A measure of unwanted signal that is coupled through from one channel to another as a result of parasitic capacitance. Off Isolation A measure of unwanted signal coupling through an On switch. Bandwidth Frequency Response of the On Switch Insertion Loss Loss ue to the On Resistance of the Switch 6 REV.
8 Typical Performance Characteristics AG64 ON RESISTANCE , = 2.5V, = 3V, = 3.3V T A = 25 C ON RESISTANCE = 5V = V T A = +125 C T A = +85 C 5 5, = 4.5V, = 5V V, V 5. T A = +25 C T A = 4 C V, V TPC 1. On Resistance vs. V ( ), ual Supply TPC 4. On Resistance vs. V ( ) for ifferent Temperatures, Single Supply = 2.7V T A = 25 C = V = +5V = 5V I (OFF) I S (OFF) ON RESISTANCE = 3V = 4.5V = 3.3V CURRENT na I, I S (ON) 1 5 = 5V V, V TEMPERATURE C TPC 2. On Resistance vs. V ( ), Single Supply TPC 5. Leakage Currents vs. Temperature, ual Supply ON RESISTANCE = +5V = 5V T A = +125 C T A = +85 C T A = 4 C T A = +25 C CURRENT na = 5V = V I (OFF) I S (OFF) I, I S (ON) V, V TEMPERATURE C TPC 3. On Resistance vs. V ( ) for ifferent Temperatures, ual Supply TPC 6. Leakage Currents vs. Temperature, Single Supply REV. 7
9 AG64 CHARGE INJECTION pc = 3V = V = +5V = 5V T A = 25 C = +5V = V ATTENUATION db T A = 25 C = +5V = V = +5V = 5V V FREQUENCY MHz TPC 7. Charge Injection vs. Source Voltage TPC 1. Crosstalk vs. Frequency = 5V = V 2 4 T A = 25 C = +5V = 5V TIME ns t ON t OFF = 5V = V = +5V = 5V ATTENUATION db = +5V = V TEMPERATURE C = +5V = 5V FREQUENCY MHz TPC 8. t ON /t OFF Times vs. Temperature TPC 11. On Response vs. Frequency 1 T A = 25 C 2 ATTENUATION db = +5V = V = +5V = 5V FREQUENCY MHz TPC 9. Off Isolation vs. Frequency 8 REV.
10 Test Circuits AG64 I S V1 S R ON = V1/I S I S (OFF) I (OFF) S A A V NC S I (ON) A V Test Circuit 1. On Resistance Test Circuit 2. Off Leakage Test Circuit 3. On Leakage.1 F.1 F A1 A S2 S3 S4 3V ARESS RIVE (V IN ) V V 2 5% 5% 9% 9% t TRANSITION +2.4V EN GN R L 3 C L 35pF t TRANSITION Test Circuit 4. Switching Time of Multiplexer, t TRANSITION.1 F.1 F 5 A1 A S2 S3 S4 ARESS RIVE (V IN ) 3V V 8% 8% +2.4V EN GN R L 3 C L 35pF t BBM Test Circuit 5. Break-Before-Make elay, t BBM.1 F.1 F A1 A S2 ENABLE RIVE (V IN ) 3V V 5% 5% 5 EN GN S3 S4 R L 3 C L 35pF OUTPUT V V.9V.9V t ON (EN) t OFF (EN) Test Circuit 6. Enable elay, t ON (EN), t OFF (EN) REV. 9
11 AG64 Q INJ = C L R S S ECOER C L 1nF V IN SW OFF SW ON SW OFF GN SW ON A1 A2 V IN SW OFF SW OFF EN CHARGE INJECTION = C L Test Circuit 7. Charge Injection.1 F.1 F.1 F.1 F NETWORK ANALYZER NETWORK ANALYZER S 5 5 R L 5 GN R L 5 5 S2 GN R 5 OFF ISOLATION = 2 LOG Test Circuit 8. Off Isolation CHANNEL-TO-CHANNEL CROSSTALK = 2 LOG Test Circuit 1. Channel-to-Channel Crosstalk.1 F.1 F NETWORK ANALYZER S GN 5 R L 5 INSERTION LOSS = 2 LOG WITH SWITCH WITHOUT SWITCH Test Circuit 9. Bandwidth 1 REV.
12 AG64 OUTLINE IMENSIONS imensions shown in inches and (mm). 14-Lead TSSOP Package (RU-14).21 (5.1).193 (4.9) (4.5).169 (4.3).256 (6.5).246 (6.25) PIN 1.6 (.15).2 (.5).433 (1.1) MAX SEATING PLANE.256 (.65) BSC.118 (.3).75 (.19) 8.79 (.2).35 (.9).28 (.7).2 (.5) REV. 11
13 PRINTE IN U.S.A. C2752 2/2() 12
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