4 Ω RON, 4-/8-Channel ±15 V/+12 V/±5 V icmos Multiplexers ADG1408-EP/ADG1409-EP
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1 Enhanced Product 4 Ω RON, 4-/-Channel ±5 V/+2 V/±5 V icmos Multiplexers AG4-EP/AG49-EP FEATURES 4.7 Ω maximum on 25 C.5 Ω on resistance flatness Up to 9 ma continuous current Fully specified at ±5 V/+2 V/±5 V 3 V logic-compatible inputs Rail-to-rail operation Break-before-make switching action 6-lead TSSOP ENHANCE PROUCT FEATURES Supports defense and aerospace applications (AQEC standard) Military temperature range: 55 C to Controlled manufacturing baseline One assembly and test site One fabrication site Enhanced product change notification Qualification data available on request GENERAL ESCRIPTION The AG4-EP/AG49-EP are monolithic icmos analog multiplexers comprising eight single channels and four differential channels, respectively. The AG4-EP switches one of eight inputs to a common output, as determined by the 3-bit binary address lines, A, A, and A2. The AG49-EP switches one of four differential inputs to a common differential output, as determined by the 2-bit binary address lines, A and A. An EN input on both devices is used to enable or disable the device. When disabled, all channels are switched off. The icmos (industrial CMOS) modular manufacturing process combines high voltage CMOS (complementary metal-oxide semiconductor) and bipolar technologies. It enables the development of a wide range of high performance analog ICs capable of 33 V operation in a footprint that no other generation of high voltage parts has been able to achieve. Unlike analog ICs using conventional CMOS processes, icmos components can tolerate high supply voltages while providing increased performance, dramatically lower power consumption, and reduced package size. S S FUNCTIONAL BLOCK IAGRAM AG4-EP -OF- ECOER A A A2 EN SA S4A SB S4B Figure. AG49-EP -OF-4 ECOER A A EN The ultralow on resistance and on resistance flatness of these switches make them ideal solutions for data acquisition and gain switching applications where low distortion is critical. icmos construction ensures ultralow power dissipation, making the parts ideally suited for portable and batterypowered instruments. Full details about this enhanced product are available in the AG4/AG49 data sheet, which should be consulted in conjunction with this data sheet. PROUCT HIGHLIGHTS. 4 Ω on resistance 2..5 Ω on resistance flatness 3. 3 V logic-compatible digital input, VINH = 2. V, VINL =. V 4. 6-lead TSSOP package A B 924- Rev. B ocument Feedback 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. Specifications 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.S.A. Tel: Analog evices, Inc. All rights reserved. Technical Support
2 AG4-EP/AG49-EP TABLE OF CONTENTS Features... Enhanced Product Features... Functional Block iagram... General escription... Product Highlights... Revision History... 2 Specifications V ual Supply ingle Supply... 5 Enhanced Product 5 V ual Supply...7 Continuous Current per Channel, S or... Absolute Maximum Ratings...9 ES Caution...9 Pin Configurations and Function escriptions... Typical Performance Characteristics... 2 Test Circuits... 4 Outline imensions... 6 Ordering Guide... 6 REVISION HISTORY /27 Rev. A to Rev. B Changes to Ordering Guide... 6 /27 Rev. to Rev. A Changes to Table 6... Changes to Table /2 Revision : Initial Version Rev. B Page 2 of 6
3 Enhanced Product AG4-EP/AG49-EP SPECIFICATIONS 5 V UAL SUPPLY V = +5 V ± %, VSS = 5 V ± %, GN = V, unless otherwise noted. Table. Parameter 55 C to Unit Test Conditions/Comments ANALOG SWITCH Analog Signal Range VSS to V V On Resistance (RON) 4 Ω typ VS = ± V, IS = ma; see Figure Ω max V = +3.5 V, VSS = 3.5 V On Resistance Match Between.2 Ω typ VS = ± V, IS = ma Channels (ΔRON).7. Ω max On Resistance Flatness (RFLAT(ON)).5 Ω typ VS = ± V, IS = ma Ω max LEAKAGE CURRENTS V = +6.5 V, VSS = 6.5 V Source Off Leakage, IS (Off ) ±.4 na typ VS = ± V, V = V; see Figure 3 ±.2 ±5 na max rain Off Leakage, I (Off ) ±.4 na typ VS = ± V, V = V; see Figure 3 ±.45 ±3 na max Channel On Leakage, I, IS (On) ±. na typ VS = V = ± V; see Figure 4 ±.5 ±3 na max IGITAL INPUTS Input High Voltage, VINH 2. V min Input Low Voltage, VINL. V max Input Current ±.5 µa typ VIN = VGN or V ±. µa max igital Input Capacitance, CIN 4 pf typ YNAMIC CHARACTERISTICS Transition Time, ttransition 4 ns typ RL = Ω, CL = 35 pf 7 24 ns max VS = V, see Figure 5 Break-Before-Make Time elay, tbbm 5 ns typ RL = Ω, CL = 35 pf 9 ns min VS = VS2 = V; see Figure 6 ton (EN) ns typ RL = Ω, CL = 35 pf 2 65 ns max VS = V; see Figure 7 toff (EN) ns typ RL = Ω, CL = 35 pf 2 7 ns max VS = V; see Figure 7 Charge Injection 5 pc typ VS = V, RS = Ω, CL = nf; see Figure Off Isolation 7 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 9 Channel-to-Channel Crosstalk 7 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 2 Total Harmonic istortion, TH + N.25 % typ RL = Ω, 5 V p-p, f = 2 Hz to 2 khz; see Figure 22 3 db Bandwidth RL = 5 Ω, CL = 5 pf; see Figure 2 AG4-EP 6 MHz typ AG49-EP 5 MHz typ Insertion Loss.24 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 2 CS (Off ) 4 pf typ f = MHz C (Off ) AG4-EP pf typ f = MHz AG49-EP 4 pf typ f = MHz C, CS (On) AG4-EP 35 pf typ f = MHz AG49-EP 9 pf typ f = MHz Rev. B Page 3 of 6
4 AG4-EP/AG49-EP Enhanced Product Parameter POWER REQUIREMENTS 55 C to Unit Test Conditions/Comments V = +6.5 V, VSS = 6.5 V I.2 µa typ igital inputs = V or V µa max 22 µa typ igital inputs = 5 V 42 µa max ISS.2 µa typ igital inputs = V, 5 V or V µa max V/VSS ±4.5/±6.5 V min/max Guaranteed by design, not subject to production test. Rev. B Page 4 of 6
5 Enhanced Product AG4-EP/AG49-EP 2 INGLE SUPPLY V = 2 V ± %, VSS = V, GN = V, unless otherwise noted. Table 2. Parameter 55 C to Unit Test Conditions/Comments ANALOG SWITCH Analog Signal Range to V V On Resistance (RON) 6 Ω typ VS = V to V, IS = ma; see Figure 2.2 Ω max V =. V, VSS = V On Resistance Match.2 Ω typ VS = V to V, IS = ma Between Channels (ΔRON).2. Ω max On Resistance Flatness (RFLAT(ON)).5 Ω typ VS = V to V, IS = ma Ω max LEAKAGE CURRENTS V = 3.2 V Source Off Leakage, IS (Off ) ±.4 na typ VS = V/ V, V = V/ V; see Figure 3 ±.2 ±5 na max rain Off Leakage, I (Off ) ±.4 na typ VS = V/ V, V = V/ V; see Figure 3 ±.45 ±37 na max Channel On Leakage, I, IS (On) ±.6 na typ VS = V = V or V; see Figure 4 ±.44 ±32 na max IGITAL INPUTS Input High Voltage, VINH 2. V min Input Low Voltage, VINL. V max Input Current ±.5 µa typ VIN = VGN or V ±. µa max igital Input Capacitance, CIN 5 pf typ YNAMIC CHARACTERISTICS Transition Time, ttransition 2 ns typ RL = Ω, CL = 35 pf 26 3 ns max VS = V; see Figure 5 Break-Before-Make Time elay, tbbm 9 ns typ RL = Ω, CL = 35 pf 4 ns min VS = VS2 = V; see Figure 6 ton (EN) 6 ns typ RL = Ω, CL = 35 pf 2 25 ns max VS = V; see Figure 7 toff (EN) 5 ns typ RL = Ω, CL = 35 pf 45 2 ns max VS = V; see Figure 7 Charge Injection 2 pc typ VS = 6 V, RS = Ω, CL = nf; see Figure Off Isolation 7 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 9 Channel-to-Channel Crosstalk 7 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 2 3 db Bandwidth RL = 5 Ω, CL = 5 pf; see Figure 2 AG4-EP 36 MHz typ AG49-EP 72 MHz typ Insertion Loss.5 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 2 CS (Off ) 25 pf typ f = MHz C (Off ) AG4-EP 65 pf typ f = MHz AG49-EP pf typ f = MHz C, CS (On) AG4-EP 2 pf typ f = MHz AG49-EP 2 pf typ f = MHz Rev. B Page 5 of 6
6 AG4-EP/AG49-EP Enhanced Product Parameter POWER REQUIREMENTS 55 C to Unit Test Conditions/Comments V = 3.2 V I.2 µa typ igital inputs = V or V µa max 22 µa typ igital inputs = 5 V 42 µa max V 5/6.5 V min/max VSS = V, GN = V Guaranteed by design, not subject to production test. Rev. B Page 6 of 6
7 Enhanced Product AG4-EP/AG49-EP 5 V UAL SUPPLY V = +5 V ± %, VSS = 5 V ± %, GN = V, unless otherwise noted. Table 3. Parameter 55 C to Unit Test Conditions/Comments ANALOG SWITCH Analog Signal Range VSS to V V On Resistance (RON) 7 Ω typ VS = ±4.5 V, IS = ma; see Figure Ω max V = +4.5 V, VSS = 4.5 V On Resistance Match Between.3 Ω typ VS = ±4.5 V, IS = ma Channels (ΔRON).7. Ω max On Resistance Flatness (RFLAT(ON)).5 Ω typ VS = ±4.5 V; IS = ma Ω max LEAKAGE CURRENTS V = +5.5 V, VSS = 5.5 V Source Off Leakage, IS (Off ) ±.2 na typ VS = ±4.5 V, V = 4.5 V; see Figure 3 ±.2 ±5 na max rain Off Leakage, I (Off ) ±.2 na typ VS = ±4.5 V, V = 4.5 V; see Figure 3 ±.45 ±2 na max Channel On Leakage, I, IS (On) ±.4 na typ VS = V = ±4.5 V; see Figure 4 ±.3 ±22 na max IGITAL INPUTS Input High Voltage, VINH 2. V min Input Low Voltage, VINL. V max Input Current ±.5 µa typ VIN = VGN or V ±. µa max igital Input Capacitance, CIN 5 pf typ YNAMIC CHARACTERISTICS Transition Time, ttransition 33 ns typ RL = Ω, CL = 35 pf ns max VS = 5 V; see Figure 5 Break-Before-Make Time elay, tbbm ns typ RL = Ω, CL = 35 pf 45 ns min VS = VS2 = 5 V; see Figure 6 ton (EN) 245 ns typ RL = Ω, CL = 35 pf ns max VS = 5 V; see Figure 7 toff (EN) 25 ns typ RL = Ω, CL = 35 pf ns max VS = 5 V; see Figure 7 Charge Injection pc typ VS = V, RS = Ω, CL = nf; see Figure Off Isolation 7 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 9 Channel-to-Channel Crosstalk 7 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 2 Total Harmonic istortion, TH + N.6 % typ RL = Ω, 5 V p-p, f = 2 Hz to 2 khz; see Figure 22 3 db Bandwidth RL = 5 Ω, CL = 5 pf; see Figure 2 AG4-EP 4 MHz typ AG49-EP MHz typ Insertion Loss.5 db typ RL = 5 Ω, CL = 5 pf, f = MHz; see Figure 2 CS (Off ) 2 pf typ f = MHz C (Off ) AG4-EP 3 pf typ f = MHz AG49-EP 65 pf typ f = MHz C, CS (On) AG4-EP pf typ f = MHz AG49-EP 2 pf typ f = MHz Rev. B Page 7 of 6
8 AG4-EP/AG49-EP Enhanced Product Parameter POWER REQUIREMENTS 55 C to Unit Test Conditions/Comments V = +5.5 V, VSS = 5.5 V I. µa typ igital inputs = V or V µa max ISS. µa typ igital inputs = V, 5 V or V µa max V/VSS ±4.5/±6.5 V min/max Guaranteed by design, not subject to production test. CONTINUOUS CURRENT PER CHANNEL, S OR Table 4. Parameter 25 C 5 C 25 C Unit Test Conditions/Comments CONTINUOUS CURRENT, S or 5 V ual Supply V = +3.5 V, VSS = 3.5 V AG4-EP ma max AG49-EP ma max 2 ingle Supply V =. V, VSS = V AG4-EP ma max AG49-EP ma max 5 V ual Supply V = +4.5 V, VSS = 4.5 V AG4-EP ma max AG49-EP ma max Guaranteed by design, not subject to production test. Rev. B Page of 6
9 Enhanced Product ABSOLUTE MAXIMUM RATINGS TA = 25 C, unless otherwise noted. Table 5. Parameter V to VSS V to GN VSS to GN Analog Inputs, igital Inputs Rating 35 V.3 V to +25 V +.3 V to 25 V VSS.3 V to V +.3 V or 3 ma, whichever occurs first Continuous Current, S or Table 4 data + % Peak Current, S or (Pulsed at ms, 35 ma % uty Cycle Maximum) Operating Temperature Range 55 C to Storage Temperature Range 65 C to +5 C Junction Temperature 5 C θja 5.4 C/W θjc 5 C/W Lead Temperature, Soldering Vapor Phase (6 sec) 25 C Infrared (5 sec) 22 C AG4-EP/AG49-EP Stresses at or above those listed under Absolute Maximum Ratings may cause permanent damage to the product. This is a stress rating only; functional operation of the product at these or any other conditions above those indicated in the operational section of this specification is not implied. Operation beyond the maximum operating conditions for extended periods may affect product reliability. Only one absolute maximum rating can be applied at any one time. ES CAUTION Overvoltages at A, EN, S, or are clamped by internal diodes. Current should be limited to the maximum ratings given. Rev. B Page 9 of 6
10 AG4-EP/AG49-EP Enhanced Product PIN CONFIGURATIONS AN FUNCTION ESCRIPTIONS A 6 A EN 2 5 A2 S S AG4-EP TOP VIEW (Not to Scale) GN S5 S3 6 S6 S4 7 S7 9 S Figure 2. AG4-EP Pin Configuration Table 6. AG4-EP Pin Function escriptions Pin No. Mnemonic escription A Logic Control Input. 2 EN Active High igital Input. When low, the device is disabled and all switches are off. When high, Ax logic inputs determine on switches. 3 VSS Most Negative Power Supply Potential. In single supply applications, it can be connected to ground. 4 S Source Terminal. Can be an input or an output. 5 S2 Source Terminal 2. Can be an input or an output. 6 S3 Source Terminal 3. Can be an input or an output. 7 S4 Source Terminal 4. Can be an input or an output. rain Terminal. Can be an input or an output. 9 S Source Terminal. Can be an input or an output. S7 Source Terminal 7. Can be an input or an output. S6 Source Terminal 6. Can be an input or an output. 2 S5 Source Terminal 5. Can be an input or an output. 3 V Most Positive Power Supply Potential. 4 GN Ground ( V) Reference. 5 A2 Logic Control Input. 6 A Logic Control Input Table 7. AG4-EP Truth Table A2 A A EN On Switch X X X None Rev. B Page of 6
11 Enhanced Product AG4-EP/AG49-EP A 6 A EN 2 5 GN SA S2A AG49-EP TOP VIEW (Not to Scale) SB S2B S3A 6 S3B S4A 7 S4B A 9 B Figure 3. AG49-EP Pin Configuration (TSSOP) Table. AG49-EP Pin Function escriptions Pin No. Mnemonic escription A Logic Control Input. 2 EN Active High igital Input. When low, the device is disabled and all switches are off. When high, Ax logic inputs determine on switches. 3 VSS Most Negative Power Supply Potential. In single supply applications, it can be connected to ground. 4 SA Source Terminal A. Can be an input or an output. 5 S2A Source Terminal 2A. Can be an input or an output. 6 S3A Source Terminal 3A. Can be an input or an output. 7 S4A Source Terminal 4A. Can be an input or an output. A rain Terminal A. Can be an input or an output. 9 B rain Terminal B. Can be an input or an output. S4B Source Terminal 4B. Can be an input or an output. S3B Source Terminal 3B. Can be an input or an output. 2 S2B Source Terminal 2B. Can be an input or an output. 3 SB Source Terminal B. Can be an input or an output. 4 V Most Positive Power Supply Potential. 5 GN Ground ( V) Reference. 6 A Logic Control Input Table 9. AG49-EP Truth Table A A EN On Switch Pair X X None Rev. B Page of 6
12 AG4-EP/AG49-EP Enhanced Product TYPICAL PERFORMANCE CHARACTERISTICS 7 = +5V = 5V 45 4 ON RESISTANCE (Ω) C 4 C 55 C TIME (ns) = +5V = 5V = +2V = V = +5V = 5V SOURCE OR RAIN VOLTAGE (V) Figure 4. On Resistance vs. V, VS for ifferent Temperatures; 5 V ual Supply TEMPERATURE ( C) Figure 7. Transition Time vs. Temperature ON RESISTANCE (Ω) = +5V = 5V +5 C 4 C 55 C LEAKAGE CURRENT (na) I S (OFF) + I (OFF) + I S (OFF) + I (OFF) + I, I S (ON) ++ I, I S (ON) = +5V = 5V V BIAS = +V/ V SOURCE OR RAIN VOLTAGE (V) TEMPERATURE ( C) 924- Figure 5. On Resistance vs. V, VS for ifferent Temperatures; 5 V ual Supply Figure. Leakage Current vs. Temperature; 5 V ual Supply ON RESISTANCE (Ω) C 4 C 55 C LEAKAGE CURRENT (na) I S (OFF) + I (OFF) + I S (OFF) + I (OFF) + I, I S (ON) ++ I, I S (ON) = +5V = 5V V BIAS = +V/ V = 2V = V SOURCE OR RAIN VOLTAGE (V) TEMPERATURE ( C) Figure 6. On Resistance vs. V, VS for ifferent Temperatures; 2 ingle Supply Figure 9. Leakage Current vs. Temperature; 5 V ual Supply Rev. B Page 2 of 6
13 Enhanced Product AG4-EP/AG49-EP LEAKAGE CURRENT (na) I S (OFF) + I (OFF) + I S (OFF) + I (OFF) + I, I S (ON) ++ I, I S (ON) = +5V = 5V V BIAS = +4.5V/ 4.5V LEAKAGE CURRENT (na) I S (OFF) + I (OFF) + I S (OFF) + I (OFF) + I, I S (ON) ++ I, I S (ON) = 2V = V V BIAS = V/V TEMPERATURE ( C) Figure. Leakage Current vs. Temperature; 5 V ual Supply TEMPERATURE ( C) Figure. Leakage Current vs. Temperature; 2 ingle Supply Rev. B Page 3 of 6
14 AG4-EP/AG49-EP Enhanced Product TEST CIRCUITS V S I S (OFF) A S I (OFF) A NC S I (ON) A I S V NC = NO CONNECT V Figure 2. On Resistance Figure 3. Off Leakage Figure 4. On Leakage 3V ARESS RIVE (V IN ) V 5% 5% t r < 2ns t f < 2ns V IN 5Ω A A A2 S S2 TO S7 t TRANSITION t TRANSITION S OUTPUT 9% AG4-EP 2.4V EN OUTPUT 9% GN Ω 35pF SIMILAR CONNECTION FOR AG49-EP Figure 5. Address to Output Switching Times, ttransition 3V ARESS RIVE (V IN ) V V IN 5Ω A A A2 S S2 TO S7 S OUTPUT % % AG4-EP 2.4V EN OUTPUT GN Ω 35pF t BBM SIMILAR CONNECTION FOR AG49-EP Figure 6. Break-Before-Make elay, tbbm 3V ENABLE RIVE (V IN ) V 5% 5% A A A2 S S2 TO S t ON (EN).9V O.9V O t OFF (EN) AG4-EP EN OUTPUT OUTPUT V IN 5Ω GN Ω 35pF Figure 7. Enable elay, ton (EN), toff (EN) SIMILAR CONNECTION FOR AG49-EP Rev. B Page 4 of 6
15 Enhanced Product AG4-EP/AG49-EP 3V A V IN A A2 AG4-EP V OUT Q INJ = C L ΔV OUT ΔV OUT R S V IN S EN GN C L nf V OUT SIMILAR CONNECTION FOR AG49-EP Figure. Charge Injection.µFV.µF.µFV.µF NETWORK ANALYZER NETWORK ANALYZER S GN 5Ω 5Ω R L 5Ω V OUT S GN 5Ω V OUT R L 5Ω OFF ISOLATION = 2 log V OUT V OUT WITH SWITCH INSERTION LOSS = 2 log V OUT WITHOUT SWITCH Figure 9. Off Isolation Figure 2. Insertion Loss.µFV.µF NETWORK ANALYZER.µFV.µF V OUT R L 5Ω S S2 GN R 5Ω IN S AUIO PRECISION R S V p-p CHANNEL-TO-CHANNEL CROSSTALK = 2 log V OUT V IN GN R L kω V OUT Figure 2. Channel-to-Channel Crosstalk Figure 22. TH + Noise Rev. B Page 5 of 6
16 AG4-EP/AG49-EP Enhanced Product OUTLINE IMENSIONS BSC.5.5 PIN.65 BSC.3.9 COPLANARITY..2 MAX SEATING PLANE.6.45 COMPLIANT TO JEEC STANARS MO-53-AB Figure Lead Thin Shrink Small Outline Package [TSSOP] (RU-6) imensions shown in millimeters ORERING GUIE Model Temperature Range Package escription Package Option AG4SRUZ-EP 55 C to 6-Lead Thin Shrink Small Outline Package [TSSOP] RU-6 AG4SRUZ-EP-RL7 55 C to 6-Lead Thin Shrink Small Outline Package [TSSOP] RU-6 AG4SRU-EP 55 C to 6-Lead Thin Shrink Small Outline Package [TSSOP] RU-6 AG4SRU-EP-RL7 55 C to 6-Lead Thin Shrink Small Outline Package [TSSOP] RU-6 AG49SRUZ-EP 55 C to 6-Lead Thin Shrink Small Outline Package [TSSOP] RU-6 AG49SRUZ-EP-RL7 55 C to 6-Lead Thin Shrink Small Outline Package [TSSOP] RU-6 AG49SRU-EP 55 C to 6-Lead Thin Shrink Small Outline Package [TSSOP] RU-6 AG49SRU-EP-RL7 55 C to 6-Lead Thin Shrink Small Outline Package [TSSOP] RU-6 Z = RoHS Compliant Part Analog evices, Inc. All rights reserved. Trademarks and registered trademarks are the property of their respective owners /7(B) Rev. B Page 6 of 6
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