SEMICONDUCTOR TECHNICAL DATA
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1 SEMIONUTOR TEHNIL T The M406 and M409 multiplexers/demultiplexers are digitally controlled analog switches featuring low ON resistance and very low leakage current. These devices can be used in either digital or analog applications. The M406 is a 6 channel multiplexer/demultiplexer with an inhibit and four binary control inputs,,, and. These control inputs select of 6 channels by turning ON the appropriate analog switch (see M406 truth table.) The M409 is a differential 8 channel multiplexer/demultiplexer with an inhibit and three binary control inputs,, and. These control inputs select of 8 pairs of channels by turning ON the appropriate analog switches (see M409 truth table). Low OFF Leakage urrent Matched hannel Resistance Low Quiescent Power onsumption Low rosstalk etween hannels Wide Operating Voltage Range: 3 to 8 V Low Noise Pin for Pin Replacement for 406 and 409 L SUFFI ERMI SE 623 ORERING INFORMTION M4P M4L M4W P SUFFI PLSTI SE 09 W SUFFI SOI SE 5E Plastic eramic SOI T = 55 to 25 for all packages. M406 6 hannel nalog Multiplexer/emultiplexer M409 ual 8 hannel nalog Multiplexer/emultiplexer ONTROLS SWITHES IN/OUT INHIIT OMMON OUT/IN = PIN 24 = PIN 2 ONTROLS SWITHES IN/OUT INHIIT Y0 Y Y2 Y3 Y4 Y5 Y6 Y Y OMMONS OUT/IN REV 3 /94 MOTOROL Motorola, Inc. 995 MOS LOGI T M406 M409
2 MIMUM RTINGS* (Voltages Referenced to ) Symbol Parameter Value Unit Supply Voltage 0.5 to Î V, Input or Output Voltage ( or Transient) 0.5 to V Iin Input urrent ( or Transient), ± m Î Î per ontrol Pin Isw Switch Through urrent ± 25 m Î P Power issipation, per Package 500 mw Î Tstg Storage Temperature 65 to + 0 Î TL Lead Temperature (8 Second Soldering) 260 * Maximum Ratings are those values beyond which damage to the device may occur. Temperature erating: Plastic P and /W Packages:.0 mw/ From 65 To 25 eramic L Packages: 2 mw/ From 0 To 25 This device contains protection circuitry to guard against damage due to high static voltages or electric fields. However, precautions must be taken to avoid applications of any voltage higher than maximum rated voltages to this high impedance circuit. For proper operation, and should be constrained to the range ( or ). Unused inputs must always be tied to an appropriate logic voltage level (e.g., either or ). Unused outputs must be left open. M406 TRUTH TLE ontrol Inputs Inh Selected hannel None M409 TRUTH TLE ontrol Inputs Inh Selected hannels None Y Y Y Y Y Y Y6 0 Y = on t are M406 FUNTIONL IGRM M409 FUNTIONL IGRM ONTROL INPUTS INHIIT OF 6 EOER ONTROL INPUTS INHIIT OF 8 EOER IN/OUT OUT/IN IN/OUT Y IN/OUT Y0 Y Y2 Y3 Y4 Y5 Y6 Y OUT/IN Y OUT/IN M406 M409 2 MOTOROL MOS LOGI T
3 Î ELETRIL HRTERISTIS Î Î 25 haracteristic Î Symbol V Test onditions Min Max Min Î Typ # Max Min Max Î Unit SUPPLY REQUIREMENTS (Voltages Referenced to ) Power Supply Voltage Î Î Range V Quiescent urrent Per I 5.0 ontrol Inputs: Î Package = µ Î or, Switch I/O: VI/O Î Î Î 600, and Vswitch500 mv** Î Total Supply urrent I(V) (ynamic Plus 5.0 T = 25 only (The channel component, (0.0 µ/khz) f + I Quiescent, ( )/Ron, is Typical (0.20 µ/khz) f + I µ Î Per Package not included.) (0.36 µ/khz) f + I ONTROL INPUTS INHIIT,,,, (Voltages Referenced to ) Low Level Input Voltage VIL 5.0 Ron = per spec, Ioff = per spec Î V Î Î High Level Input Voltage VIH 5.0 Ron = per spec, Î Ioff = per spec Î Î V Input Leakage urrent Î Iin = 0 or ± ± 0. ± 0. Î.0 µ Input apacitance Î in Î pf SWITHES IN/OUT N OMMONS OUT/IN, Y (Voltages Referenced to ) Recommended Peak to VI/O Peak Voltage Into or hannel On or Off Î Î 0 V 0 Î 0 V V p p Out of the Switch Recommended Static or Î ynamic Voltage cross the Switch * Î Vswitch hannel On Î Î 0 Î mv (Figure ) Output Offset Voltage Î VOO = 0 V, No Load Î µv ON Resistance Î Ron 5.0 Vswitch 500 mv**, 800 Î Ω = VIL or VIH (ontrol), and Î Î Î to (Switch) ON Resistance etweenî Ron 5.0 Î ny Two hannels in the Same Package Ω Off hannel Leakage Î Ioff = VIL or VIH ± 0 Î ± 0.05 ± 0 ±00 n Î urrent (Figure 2) (ontrol) hannel to Î hannel or ny One hannel apacitance, Switch I/O Î I/O Inhibit = Î pf apacitance, ommon O/I Î O/I Inhibit = pf (M406) (M409) 0 60 Î apacitance, Feedthrough I/O Pins Not djacent (hannel Off) 0.4 Î pf Pins djacent ata labeled Typ is not to Î be used for design purposes, but is intended as an indication of the I s Î potential performance. ** For voltage drops across the switch ( Vswitch) > 600 mv ( > mv at high temperature), excessive current may be drawn; i.e. the current out of the switch may contain both and switch input components. The reliability of the device will be unaffected unless the Maximum Ratings are exceeded. (See first page of this data sheet.) MOTOROL MOS LOGI T M406 M409 3
4 Î ELETRIL HRTERISTIS (L = 50 pf, T = 25 ) Î Î haracteristic Î Symbol Vdc Typ # Î Max Unit Î Propagation elay Times Î tplh, tphlî ns Î Î hannel Input to hannel Output (RL = 200 kω) M406 (Figure 3) 5.0 Î 35 Î 90 Î Î 40 Î 2 30 M409 Î Î Î Î Î 25 ns Î 8 ontrol Input to hannel Output tpzh, Î tpzlî ns Î Î hannel Turn On Time (RL = kω) M406/09 (Figure 4) 5.0 Î 240 Î 600 Î 290 Î Î 5 Î 90 hannel Turn Off Time (RL = kω) tphz, tplz ns Î Î M406/09 (Figure 4) Î Î 20 Î Î 5 90 ny Pair of ddress Inputs to Output Î Î tphl Î tplh, ns Î Î M Î Î Î 290 Î 85 2 M409 Î (Figure ) Î ns Î Second Harmonic istortion 0.3 Î (RL = kω, f = khz, = 5 Vp p) Î Î % ON hannel andwidth Î W Î MHz Î Î [RL = kω, = /2 ( ) p p(sine wave)] 20 Log (/) = 3 d M406 (Figure 5) M409 Î 25 Î Î Off hannel Feedthrough ttenuation Î Î Î Î 40 Î d Î [RL = kω, = /2 ( ) p p(sine wave)] fin = 20 MHz M406 (Figure 5) fin = 2 MHz M409Î Î hannel Separation Î Î 40 Î Î d [RL = kω, = /2 ( ) p p (sine wave)] fin = 20 MHz (Figure 6) rosstalk, ontrol Inputs to ommon O/I Î Î Î Î Î (R = kω, RL = kω, Î ontrol tr = tf = 20 ns, Inhibit = ) (Figure ) Î 30 Î mv #ata labelled Typ is not to be used for design purposes but is intended as an indication of the I s potential performance. M406 M409 4 MOTOROL MOS LOGI T
5 ONTROL SETION OF I V ON SWITH LO ONTROL SETION OF I OFF HNNEL UNER TEST OTHER HNNEL(S) SOURE Figure. V cross Switch Figure 2. Off hannel Leakage M406 PIN SSIGNMENT M409 PIN SSIGNMENT Y Y Y Y Y Y Y Y6 INHIIT Y INHIIT MOTOROL MOS LOGI T M406 M409 5
6 PULSE GENERTOR V INH RL V L = 50 pf INH RL L = 50 pf 20 ns 20 ns tplh 90% tphl % V 20 ns 20 ns 90% % tpzh, tpzl 90% % tphz, tplz = V = = V = Figure 3. Propagation elay Test ircuit and Waveforms to Figure 4. Turn On and elay Turn Off Test ircuit and Waveforms,, and inputs used to turn ON or OFF the switch under test. INH RL L = 50 pf INH ON OFF RL RL L = 50 pf Figure 5. andwidth and Off hannel Feedthrough ttenuation Figure 6. hannel Separation (djacent hannels Used for Setup) V INH RL L = 50 pf R Figure. rosstalk, ontrol to ommon O/I M406 M409 6 MOTOROL MOS LOGI T
7 V V INH k KEITHLEY 60 IGITL MULTIMETER kω RNGE Y PLOTTER V V L tphl tplh Figure 8. hannel Resistance (RON) Test ircuit Figure 9. Propagation elay, ny Pair of ddress Inputs to Output TYPIL RESISTNE HRTERISTIS R ON, ON RESISTNE (OHMS) T = R ON, ON RESISTNE (OHMS) T = , INPUT VOLTGE (VOLTS) Figure. =.5 V, =.5 V , INPUT VOLTGE (VOLTS) Figure. = 5.0 V, = 5.0 V R ON, ON RESISTNE (OHMS) T = R ON, ON RESISTNE (OHMS) T = 25 = 2.5 V 5.0 V.5 V , INPUT VOLTGE (VOLTS) Figure 2. = 2.5 V, = 2.5 V , INPUT VOLTGE (VOLTS) Figure. omparison at 25, = MOTOROL MOS LOGI T M406 M409
8 PPLITIONS INFORMTION Figure illustrates use of the nalog Multiplexer/emultiplexer. The 0 to 5 volt igital ontrol signal is used to directly control a 5 Vp p analog signal. The digital control logic levels are determined by and. The voltage is the logic high voltage; the voltage is logic low. For the example. = + 5 V = logic high at the control inputs; = GN = 0 V = logic low. The maximum analog signal level is determined by and. The analog voltage must swing neither higher than nor lower than. The example shows a 5 Vp p signal which allows no margin at either peak. If voltage transients above and/or below are anticipated on the analog channels, external diodes (x) are recommended as shown in Figure. These diodes should be small signal types able to absorb the maximum anticipated current surges during clipping. The absolute maximum potential difference between and is 8.0 volts. Most parameters are specified up to V which is the recommended maximum difference between and. + 5 V V + 5 V 5 Vp p NLOG SIGNL SWITH I/O OMMON O/I 5 Vp p NLOG SIGNL V ETERNL MOS IGITL IRUITRY 0 TO 5 V IGITL ONTROL SIGNLS M406 M409 GN Figure. pplication Example SWITH I/O OMMON O/I Figure. External Germanium or Schottky lipping iodes M406 M409 8 MOTOROL MOS LOGI T
9 OUTLINE IMENSIONS L SUFFI ERMI IP PKGE SE ISSUE M 24 2 F N G K SETING PLNE M L J NOTES:. IMENSION L TO ENTER OF LES WHEN FORME PRLLEL. 2. LES WITHIN 0. (0.005) RIUS OF TRUE POSITION T SETING PLNE T MIMUM MTERIL ONITION (WHEN FORME PRLLEL). MILLIMETERS INHES IM MIN M MIN M F G 2.54 S 0.0 S J K L.24 S S M 0 0 N P SUFFI PLSTI IP PKGE SE ISSUE NOTES:. POSITIONL TOLERNE OF LES (), SHLL E WITHIN 0.25 (0.0) T MIMUM MTERIL ONITION, IN RELTION TO SETING PLNE N EH OTHER. 2. IMENSION L TO ENTER OF LES WHEN FORME PRLLEL. 3. IMENSION OES NOT INLUE MOL FLSH. H G F N K SETING PLNE M L J MILLIMETERS INHES IM MIN M MIN M F G 2.54 S 0.0 S H J K L.24 S S M 0 0 N MOTOROL MOS LOGI T M406 M409 9
10 OUTLINE IMENSIONS W SUFFI PLSTI SOI PKGE SE 5E 04 ISSUE E T SETING PLNE (0.25) M T S S 22 G K P 0.0 (0.25) M M J F M R 45 NOTES:. IMENSIONING N TOLERNING PER NSI Y4.5M, ONTROLLING IMENSION: MILLIMETER. 3. IMENSIONS N O NOT INLUE MOL PROTRUSION. 4. MIMUM MOL PROTRUSION 0. (0.006) PER SIE. 5. IMENSION OES NOT INLUE MR PROTRUSION. LLOWLE MR PROTRUSION SHLL E 0. (0.005) TOTL IN EESS OF IMENSION T MIMUM MTERIL ONITION. MILLIMETERS INHES IM MIN M MIN M F G.2 S S J K M P R Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation consequential or incidental damages. Typical parameters which may be provided in Motorola data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. ll operating parameters, including Typicals must be validated for each customer application by customer s technical experts. Motorola does not convey any license under its patent rights nor the rights of others. Motorola products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other applications intended to support or sustain life, or for any other application in which the failure of the Motorola product could create a situation where personal injury or death may occur. Should uyer purchase or use Motorola products for any such unintended or unauthorized application, uyer shall indemnify and hold Motorola and its officers, employees, subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that Motorola was negligent regarding the design or manufacture of the part. Motorola and are registered trademarks of Motorola, Inc. Motorola, Inc. is an Equal Opportunity/ffirmative ction Employer. How to reach us: US/EUROPE/Locations Not Listed: Motorola Literature istribution; JPN: Nippon Motorola Ltd.; Tatsumi SP JL, 6F Seibu utsuryu enter, P.O. ox 2092; Phoenix, rizona or Tatsumi Koto Ku, Tokyo 5, Japan MF: RMF0@ .sps.mot.com TOUHTONE SI/PIFI: Motorola Semiconductors H.K. Ltd.; 8 Tai Ping Industrial Park, INTERNET: NET.com 5 Ting Kok Road, Tai Po, N.T., Hong Kong M406 M409 MOTOROL MOS LOGI M406/ T
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