Product Information

MAX4639EUE+

MAX4639EUE+ electronic component of Analog Devices

Datasheet
Multiplexer Switch ICs 3.5Ohm, Single 8:1 and Dual 4:1, Low-Voltage Analog Multiplexers

Manufacturer: Analog Devices
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1: USD 10.5037 ea
Line Total: USD 10.5

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MAX4639EUE+
Analog Devices

1 : USD 9.4576
10 : USD 8.2309
96 : USD 6.552
192 : USD 6.4024
288 : USD 6.2528
576 : USD 5.7015

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MAX4639EUE+
Analog Devices

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75 : USD 3.4693
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MAX4639EUE+
Analog Devices

96 : USD 4.3936
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480 : USD 4.039
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MAX4639EUE+
Analog Devices

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25 : USD 5.8616
96 : USD 5.0227
288 : USD 4.857
576 : USD 4.4221
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MAX4639EUE+
Analog Devices

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10 : USD 3.8493

     
Manufacturer
Product Category
Brand
Multiplexer Configuration
No. Of Circuits
On State Resistance Max
Supply Voltage Range
Analogue Multiplexer Case
No. Of Pins
Operating Temperature Min
Operating Temperature Max
Rohs Phthalates Compliant
Msl
Svhc
Analogue Multiplexer Type
Analogue Switch Case Style
Base Number
Ic Temperature Range
No. Of Channels
Operating Temperature Range
Supply Current
Supply Voltage Max
Supply Voltage Min
Supply Voltage Source
Termination Type
LoadingGif

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MAX4638/MAX4639 3.5, Single 8:1 and Dual 4:1, Low-Voltage Analog Multiplexers General Description Features The MAX4638/MAX4639 are single 8:1 and dual 4:1 Guaranteed R ON CMOS analog multiplexers/demultiplexers (muxes/ 3.5 (+5V or 2.5V Supplies) demuxes). Each mux operates from a single +1.8V to 6 (+3V Supply) +5V supply or dual 2.5V supplies. These devices fea- Guaranteed 0.4 R Match Between Channels ON ture 3.5 on-resistance (R ) when powered with a ON single +5V supply and have -75dB off-isolation and Guaranteed 1 R Flatness Over Signal Range ON -85dB crosstalk from the output to each off channel. Guaranteed Low Leakage Currents The switching times are 18ns t and 7ns t . They ON OFF 0.25nA at +25C feature a -3dB 85MHz bandwidth and a guaranteed 0.25nA leakage current at +25C. Switching Times: t = 18ns, t = 7ns ON OFF A +1.8V to +5.5V operating range makes the MAX4638/ +1.8V to +5.5V Single-Supply Operation MAX4639 ideal for battery-powered, portable instru- 2.5V Dual-Supply Operation ments. All channels guarantee break-before-make Rail-to-Rail Signal Handling switching. These parts feature bidirectional operation and can handle Rail-to-Rail analog signals. All control TTL/CMOS-Logic Compatible inputs are TTL/CMOS-logic compatible. Decoding is in Crosstalk: -80dB (1MHz) standard BCD format, and an enable input is provided to Off-Isolation: -60dB (10MHz) simplify cascading of devices. These devices are avail- able in small 16-pin TQFN, TSSOP, and SO packages, as Ordering Information well as a 20-pin TQFN package. PART TEMP RANGE PIN-PACKAGE Applications MAX4638ETE+T -40C to +85C 16 TQFN-EP* (4 4) Automatic Test Equipment MAX4638EUE+T -40C to +85C 16 TSSOP Low-Voltage Data-Acquisition Systems MAX4638ESE+T -40C to +85C 16 SO Audio and Video Signal Routing MAX4638ETP+T -40C to +85C 20 TQFN-EP* (4 4) Medical Equipment +Denotes a lead(Pb)-free/RoHS-compliant package. T = Tape and reel. Battery-Powered Equipment *EP = Exposed pad. Relay Replacement Ordering Information continued at end of data sheet. Pin Configurations/Functional Diagrams TOP VIEW MAX4638 MAX4639 + + A0 1 16 A1 A0 1 16 A1 EN 2 15 A2 EN 2 15 GND LOGIC LOGIC V- 3 14 GND V- 3 14 V+ NO1 4 13 V+ NO1A 4 13 NO1B NO2 5 12 NO5 NO2A 5 12 NO2B NO3 6 NO3A 6 11 NO6 11 NO3B NO4 NO4A 7 NO7 7 NO4B 10 10 COM COMA 8 9 NO8 8 9 COMB TSSOP/SO TSSOP/SO Rail-to-Rail is a registered trademark of Nippon Motorola, Ltd. For pricing, delivery, and ordering information, please contact Maxim Direct at 1-888-629-4642, or visit Maxim Integrateds website at www.maximintegrated.com. 19-1782 Rev 3 10/12MAX4638/MAX4639 3.5, Single 8:1 and Dual 4:1, Low-Voltage Analog Multiplexers ABSOLUTE MAXIMUM RATINGS (Voltages Referenced to GND) Continuous Power Dissipation (T = +70C) A V+ to V- .................................................................................+6V TQFN (derate 16.9mW/C above +70C).....................1349mW V+, A , EN................................................................-0.3V to +6V TSSOP (derate 9.4mW/C above +70C) ....................754.7mW V- ............................................................................+0.3V to -6V SO (derate 8.70mW/C above +70C) ...........................696mW NO , COM (Note 1) ................................... -0.3V to (V+ + 0.3V) Operating Temperature Range Continuous Current A , EN ............................................. 30mA MAX463 E E ................................................-40C to +85C Continuous Current NO , COM .................................. 100mA Junction Temperature......................................................+150C Peak Current (NO , COM ) Storage Temperature Range ............................-65C to +150C (pulsed at 1ms, 10% duty cycle) .............................. 200mA Lead Temperature (soldering, 10s) ................................+300C Soldering Temperature (reflow) ......................................+260C Note 1: Signals on COM , NO exceeding V+ or V- are clamped by internal diodes. A and EN are clamped only to V- and can exceed V+ up to their maximum ratings. Limit forward-diode current to maximum current rating. Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. ELECTRICAL CHARACTERISTICS+5V Single Supply (V+ = +5V 10%, V- = 0, V = +2.4V, V = +0.8V, T = T to T , unless otherwise noted. Typical values are at T = +25C.) (Notes 2, 3) IH IL A MIN MAX A TYP PARAMETER SYMBOL CONDITIONS MIN MAX UNITS ( N o t e 2 ) ANALOG SWITCH V , COM Analog Signal Range 0V+V V NO T = +25C 2.5 3.5 V + = + 4.5V, I = 10mA, C OM A On-Resistance R ON V = +3.5V N O T = T to T 4.5 A MIN MAX T = +25C 0.1 0.4 On-Resistance Match V + = + 4.5V, I = 10mA, A C OM R ON Between Channels (Notes 4, 5) V = +3.5V N O T = T to T 0.5 A MIN MAX T = +25C 0.75 1 V + = + 4.5V I = 10mA A C OM On-Resistance Flatness (Note 6) R FLAT(ON) V = +1V, + 2V , + 3. 5V N O T = T to T 1.2 A MIN MAX T = +25C -0.25 0.01 0.25 NO Off-Leakage Current V + = + 5.5V V = +1V, A C OM I nA NO (OFF) (Note 7) + 4.5V V = +4.5V, +1V N O T = T to T -0.35 0.35 A MIN MAX T = +25C -0.25 0.01 0.25 A COM Off-Leakage Current V + = + 5.5V V = +1V, C OM I nA COM (OFF) (Note 7) + 4.5V V = +4.5V, +1V N O T = T to T -0.75 0.75 A MIN MAX V + = + 5.5V V = +1V, C OM T = +25C -0.25 0.01 0.25 A COM On-Leakage Current I + 4.5V V = +1V, + 4.5 V, nA COM (ON) N O (Note 7) T = T to T -0.75 0.75 A MIN MAX or unco nnected DIGITAL I/O Input Logic High V 2.4 V IH Input Logic Low V 0.8 V IL I , I Input Leakage Current IH IL V = 0 or V+ -0.1 0.005 0.1 A IN Digital Input Capacitance C 2pF IN DYNAMIC R = 100, C L L = 35pF, T = +25C1418 A Transition Time (Note 7) t V ns TRANS N O1 = + 3V or 0, T = T to T 20 A MIN MAX V = 0 or + 3V, F ig ure 2 N O8 Maxim Integrated 2

Tariff Desc

8542.31.00 51 No ..Application Specific (Digital) Integrated Circuits (ASIC)

Electronic integrated circuits: Processors and controllers, whether or not combined with memories, converters, logic circuits, amplifiers, clock and timing circuits, or other circuits
Monolithic integrated circuits:
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