CMOS ±5 V/+5 V, 4 Ω Dual SPST Switches ADG621/ADG622/ADG623

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1 CMO ±5 V/+5 V, 4 Ω ual PT witches AG62/AG622/AG623 FEATURE 5.5 Ω (maximum) on resistance.9 Ω (maximum) on resistance flatness 2.7 V to 5.5 V single supply ±2.7 V to ±5.5 V dual supply Rail-to-rail operation -lead MOP package Typical power consumption (<. µw) TTL-/CMO-compatible inputs APPLICATION Automatic test equipment Power routing Communication systems ata acquisition systems ample-and-hold systems Avionics Relay replacements Battery-powered systems GENERAL ECRIPTION The AG62/AG622/AG623 are monolithic, CMO, single-pole, single-throw (PT) switches. Each switch of the AG62/AG622/AG623 conducts equally well in both directions when on. The AG62/AG622/AG623 contain two independent switches. The AG62 and AG622 differ only in that both switches are normally open and normally closed. In the AG623, witch is normally open, and witch 2 is normally closed. The AG623 exhibits break-before-make switching action. The AG62/AG622/AG623 offer low on resistance of 4 Ω, which is matched to within.25 Ω between channels. These switches also provide low power dissipation yet give high switching speeds. The AG62/AG622/AG623 are available in a -lead MOP package. FUNCTIONAL BLOCK IAGRAM IN2 AG62 IN 2 2 NOTE. WITCHE HOWN FOR A LOGIC INPUT Figure. IN2 AG622 IN 2 2 NOTE. WITCHE HOWN FOR A LOGIC INPUT Figure 2. IN2 AG623 IN 2 2 NOTE. WITCHE HOWN FOR A LOGIC INPUT Figure 3. PROUCT HIGHLIGHT. Low on resistance, R ON (4 Ω typical). 2. ual ±2.7 V to ±5.5 V or single +2.7 V to +5.5 V. 3. Low power dissipation; CMO construction ensures low power dissipation. 4. Tiny -lead MOP package Rev. B 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. pecifications subject to change without notice. No license is granted by implication or otherwise under any patent or patent rights of Analog evices. Trademarks and registered trademarks are the property of their respective owners. One Technology Way, P.O. Box 96, Norwood, MA , U..A. Tel: Fax: Analog evices, Inc. All rights reserved.

2 TABLE OF CONTENT Features... Applications... General escription... Functional Block iagrams... Product Highlights... Revision History... 2 pecifications... 3 ual upply... 3 ingle upply... 4 Absolute Maximum Ratings...5 E Caution...5 Pin Configuration and Function escriptions...6 Terminology...7 Typical Performance Characteristics...8 Test Circuits... Outline imensions...2 Ordering Guide...2 REVIION HITORY /9 Rev. A to Rev. B Changes to Table Changes to Ordering Guide /7 Rev. to Rev. A Change to On Resistance Flatness, R FLAT(ON) pecification (Table )... 3 Change to On Resistance Flatness, R FLAT(ON) pecification (Table 2)... 4 Added Table Changes to Terminology ection... 7 Changes to Figure Updated Outline imensions... 2 Changes to Ordering Guide... 2 / Revision : Initial Version Rev. B Page 2 of 2

3 PECIFICATION UAL UPPLY = +5 V ± %, = 5 V ± %, GN = V, unless otherwise noted. Table. Parameter +25 C 4 C to +85 C Unit Test Conditions/Comments ANALOG WITCH Analog ignal Range to V = +4.5 V, = 4.5 V On Resistance, R ON 4 Ω typ = ±4.5 V, I = ma, see Figure Ω max On Resistance Match Between Channels, R ON.25 Ω typ = ±4.5 V, I = ma.35.4 Ω max On Resistance Flatness, R FLAT(ON).9.9 Ω typ = ±3.3 V, I = ma.5 Ω max LEAKAGE CURRENT = +5.5 V, = 5.5 V ource Off Leakage, I (Off) ±. na typ = ±4.5 V, V = 4.5 V, see Figure 7 ±.25 ± na max rain Off Leakage, I (Off) ±. na typ = ±4.5 V, V = 4.5 V, see Figure 7 ±.25 ± na max Channel On Leakage, I, I (On) ±. na typ = V = ±4.5 V, see Figure 8 ±.25 ± na max IGITAL INPUT Input High Voltage, H 2.4 V min Input Low Voltage, L.8 V max Input Current, I INL or I INH.5 µa typ = L or H ±. µa max igital Input Capacitance, C IN 2 pf typ YNAMIC CHARACTERITIC 2 t ON 75 ns typ R L = 3 Ω, C L = 35 pf; = 3.3 V, see Figure ns max t OFF 45 ns typ R L = 3 Ω, C L = 35 pf; = 3.3 V, see Figure ns max Break-Before-Make Time elay, t BBM (AG623 Only) 3 ns typ R L = 3 Ω, C L = 35 pf; = 2 = 3.3 V ns min ee Figure 2 Charge Injection pc typ = V, R = Ω, C L = nf, see Figure 2 Off Isolation 65 db typ R L = 5 Ω, C L = 5 pf, f = MHz, see Figure 22 Channel-to-Channel Crosstalk 9 db typ R L = 5 Ω, C L = 5 pf, f = MHz, see Figure 23 Bandwidth 3 db 23 MHz typ R L = 5 Ω, C L = 5 pf, see Figure 24 C (Off) 2 pf typ f = MHz C (Off) 2 pf typ f = MHz C, C (On) 7 pf typ f = MHz POWER REQUIREMENT = 5.5 V, = 5.5 V I. µa typ igital inputs = V or 5.5 V. µa max I. µa typ igital inputs = V or 5.5 V Temperature range is as follows: B version, 4 C to +85 C. 2 Guaranteed by design; not subject to production test.. µa max Rev. B Page 3 of 2

4 INGLE UPPLY = 5 V ± %, = V, GN = V, unless otherwise noted. Table 2. Parameter +25 C 4 C to +85 C Unit Test Conditions/Comments ANALOG WITCH Analog ignal Range to V = 4.5 V, = V On Resistance, R ON 7 Ω typ = V to 4.5 V, I = ma, see Figure Ω max On Resistance Match Between Channels, R ON.5 Ω typ = V to 4.5 V, I = ma.75 Ω max On Resistance Flatness, R FLAT(ON).5.5 Ω typ =.5 V to 3.3 V, I = ma.2 Ω max LEAKAGE CURRENT = 5.5 V ource Off Leakage I (Off) ±. na typ = V/4.5 V, V = 4.5 V/ V, see Figure 7 ±.25 ± na max rain Off Leakage I (Off) ±. na typ = V/4.5 V, V = 4.5 V/ V, see Figure 7 ±.25 ± na max Channel On Leakage, I, I (On) ±. na typ = V = V/4.5 V, see Figure 8 ±.25 ± na max IGITAL INPUT Input High Voltage, H 2.4 V min Input Low Voltage, L.8 V max Input Current, I INL or I INH.5 µa typ = L or H ±. µa max igital Input Capacitance, C IN 2 pf typ YNAMIC CHARACTERITIC 2 t ON 2 ns typ R L = 3 Ω, C L = 35 pf; = 3.3 V, see Figure ns max t OFF 5 ns typ R L = 3 Ω, C L = 35 pf; = 3.3 V, see Figure 9 75 ns max Break-Before-Make Time elay, t BBM (AG623 Only) 7 ns typ R L = 3 Ω, C L = 35 pf, = 2 = 3.3 V ns min ee Figure 2 Charge Injection 6 pc typ = V; R = Ω, C L = nf, see Figure 2 Off Isolation 65 db typ R L = 5 Ω, C L = 5 pf, f = MHz, see Figure 22 Channel-to-Channel Crosstalk 9 db typ R L = 5 Ω, C L = 5 pf, f = MHz, see Figure 23 Bandwidth 3 db 23 MHz typ R L = 5 Ω, C L = 5 pf, see Figure 24 C (Off) 2 pf typ f = MHz C (Off) 2 pf typ f = MHz C, C (On) 7 pf typ f = MHz POWER REQUIREMENT = 5.5 V I. µa typ igital Inputs = V or 5.5 V. µa max Temperature range is as follows: B Version, 4 C to +85 C. 2 Guaranteed by design; not subject to production test. Rev. B Page 4 of 2

5 ABOLUTE MAXIMUM RATING T A = 25 C, unless otherwise noted. Table 3. Parameter Rating to 3 V to GN.3 V to +6.5 V to GN +.3 V to 6.5 V Analog Inputs.3 V to +.3 V igital Inputs.3 V to +.3 V or 3 ma, whichever occurs first Peak Current, or ma (pulsed at ms, % duty cycle maximum) Continuous Current, or 5 ma Operating Temperature Range Industrial (B Version) 4 C to +85 C torage Temperature Range 65 C to +5 C Junction Temperature 5 C MOP Package θ JA Thermal Impedance 26 C/W θ JC Thermal Impedance 44 C/W Lead oldering Lead Temperature, oldering 3 C ( sec) IR Reflow, Peak Temperature 22 C Pb-Free oldering Reflow, Peak Temperature 26(+/ 5) C Time at Peak Temperature 2 sec to 4 sec tresses 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. Table 4. AG62/AG622 Truth Table AG62 INx AG622 INx witch x Condition Off On Table 5. AG623 Truth Table IN IN2 witch witch 2 Off On Off Off On On On Off E CAUTION Overvoltages at INx,, or must be clamped by internal diodes. Currents should be limited to the maximum ratings given. Rev. B Page 5 of 2

6 PIN CONFIGURATION AN FUNCTION ECRIPTION 2 IN2 3 GN 4 5 AG62/ AG622/ AG623 TOP VIEW (Not to cale) NC = NO CONNECT IN 2 2 NC Figure 4. -Lead MOP (RM-) Table 6. Pin Function escriptions Pin No. Mnemonic escription, 7, 2 ource Terminal. May be an input or an output. 2, 8, 2 rain Terminal. May be an input or an output. 3, 9 IN2, IN Control Input. 4 GN Ground ( V) Reference. 5 Most Negative Power upply in a ual-upply Application. In single-supply applications, this should be tied to ground at the device. 6 NC No Connect. Most Positive Power upply Potential. Rev. B Page 6 of 2

7 TERMINOLOGY I Positive supply current. I Negative supply current V ( ) Analog voltage on Terminal and Terminal. R ON Ohmic resistance between Terminal and Terminal. R FLAT (ON) On resistance flatness is defined as the difference between the maximum and minimum value of on resistance as measured over the specified analog signal range. R ON On resistance match between any two channels. I (Off) ource leakage current with the switch off. I (Off) rain leakage current with the switch off. I, I (On) Channel leakage current with the switch on. L Maximum input voltage for Logic. H Minimum input voltage for Logic. I INL (I INH ) Input current of the digital input. C (Off) Off switch source capacitance. Measured with reference to ground. C (Off) Off switch drain capacitance. Measured with reference to ground. C, C (On) On switch capacitance. Measured with reference to ground. C IN igital input capacitance. t ON elay time between the 5% and the 9% points of the digital input and switch on condition. t OFF elay time between the 5% and the 9% points of the digital input and switch off condition. t BBM On or off time measured between the 9% 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 on-off switching. Off Isolation A measure of an unwanted signal coupling through an off switch. Crosstalk A measure of an unwanted signal that is coupled through from one channel to another as a result of parasitic capacitance. 3 db Bandwidth The frequency at which the output is attenuated by 3 db. On Response The frequency response of the on switch. Insertion Loss The attenuation between the input and output ports of the switch when the switch is in the on condition and is due to the on resistance of the switch. Rev. B Page 7 of 2

8 TYPICAL PERFORMANCE CHARACTERITIC 8 7 T A = 25 C, = ±2.5V 9 = 5V = V ON REITANCE (Ω) , = ±3V, = ±3.3V, = ±4.5V, = ±5V ON REITANCE (Ω) T A = +85 C T A = +25 C T A = 4 C V, (V) V, (V) Figure 5. On Resistance vs. V, (ual upply) Figure 8. On Resistance vs. V, for ifferent Temperature (ingle upply) 2 = 2.7V T A = 25 C = V.5.4 ON REITANCE (Ω) = 3.3V = 5V = 3V = 4.5V LEAKAGE CURRENT (na) I, I (ON) I (OFF) I (OFF) V, (V) = V.4 V = ±4.5V = ±4.5V TEMPERATURE ( C) Figure 6. On Resistance vs. V, (ingle upply) Figure 9. Leakage Current vs. Temperature (ual upply) 6 5 = 5V ON REITANCE (Ω) T A = +85 C T A = +25 C T A = 4 C LEAKAGE CURRENT (na) I, I (ON) I (OFF) I (OFF) V, (V) = 5V = V.4 V = 4.5V/V = V/4.5V TEMPERATURE ( C) 266- Figure 7. On Resistance vs. V, for ifferent Temperatures (ual upply) Figure. Leakage Current vs. Temperature (ingle upply) Rev. B Page 8 of 2

9 CHARGE INJECTION (pc) T A = 25 C = 5V = V ATTENUATION (db) = 5V T A = 25 C Figure. Charge Injection vs. ource Voltage FREQUENCY (MHz) Figure 4. Crosstalk vs. Frequency TIME (ns) t ON t OFF = V = V = 5V = 5V TEMPERATURE ( C) ATTENUATION (db) = 5V T A = 25 C 4.2 k FREQUENCY (MHz) Figure 2. t ON /t OFF Times vs. Temperature Figure 5. On Response vs. Frequency 2 ATTENUATION (db) = 5V T A = 25 C 9.2 FREQUENCY (MHz) Figure 3. Off Isolation vs. Frequency Rev. B Page 9 of 2

10 TET CIRCUIT I V I (OFF) A I (OFF) A NC I (ON) A R ON = V/I V V NC = NO CONNECT Figure 6. On Resistance Figure 7. Off Leakage Figure 8. On Leakage µF.µF AG62 5% 5% IN R L 3Ω C L 35pF AG622 5% 5% 9% 9% GN t ON t OFF Figure 9. witching Times (t ON, t OFF ).µf.µf 2 2 IN, IN2 GN 2 R L2 3Ω 2 C L2 35pF R L 3Ω C L 35pF 2 V V V 9% 5% 5% t BBM 9% 9% t BBM 9% Figure 2. Break-Before-Make Time elay, t BBM (AG623 Only) W ON W OFF R IN GN C L nf QINJ = CL ΔVOUT Δ Figure 2. Charge Injection Rev. B Page of 2

11 .µf.µf NETWORK ANALYZER IN 5Ω 5Ω GN R L 5Ω OFF IOLATION = 2 LOG Figure 22. Off Isolation.µF.µF NETWORK ANALYZER R L 5Ω 2 2 R 5Ω 5Ω IN GN R 5Ω CHANNEL-TO-CHANNEL CROTALK = 2 LOG Figure 23. Channel-to-Channel Crosstalk µF.µF NETWORK ANALYZER IN GN 5Ω R L 5Ω INERTION LO = 2 LOG WITH WITCH WITHOUT WITCH Figure 24. Bandwidth Rev. B Page of 2

12 OUTLINE IMENION PIN IENTIFIER.5 BC COPLANARITY MAX 6 5 MAX.23.3 COMPLIANT TO JEEC TANAR MO-87-BA Figure 25. -Lead Mini mall Outline Package [MOP] (RM-) imensions shown in millimeters ORERING GUIE Model Temperature Range Package escription Package Option Branding AG62BRM 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- XB AG62BRM REEL7 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- XB AG62BRMZ 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- XB# AG62BRMZ-REEL 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- XB# AG622BRM 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- YB AG622BRM-REEL 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- YB AG622BRM-REEL7 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- YB AG622BRMZ 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- 2 AG622BRMZ-REEL 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- 2 AG622BRMZ-REEL7 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- 2 AG623BRM 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- ZB AG623BRM-REEL 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- ZB AG623BRM-REEL7 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- ZB AG623BRMZ 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- ZB# AG623BRMZ-REEL 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- ZB# AG623BRMZ-REEL7 4 C to +85 C -Lead Mini mall Outline Package [MOP] RM- ZB# Z= RoH Compliant Part, # denotes RoH compliant product and may be top or bottom marked A 2 29 Analog evices, Inc. All rights reserved. Trademarks and registered trademarks are the property of their respective owners /9(B) Rev. B Page 2 of 2

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