0.8Ω, Low-Voltage, Single-Supply Dual SPST Analog Switches
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1 19-116; Rev ; 1/6.Ω, Low-Voltage, Single-Supply Dual SPST General Description The are low on-resistance, low-voltage, dual single-pole/single-throw (SPST) analog switches that operate from a single +1.6V to +3.6V supply. These devices have fast switching speeds (t ON = 4ns, t OFF = 16ns max), handle rail-to-rail analog signals, and consume less than 1µW of quiescent power. The MAX443 has break-before-make switching. When powered from a +3V supply, the / MAX44/MAX443 feature low.ω (max) on-resistance (R ON ), with.ω (max) R ON matching and.1ω R ON flatness. The digital logic input is 1.V CMOS compatible when using a single +3V supply. The has two normally open (NO) switches, the MAX44 has two normally closed (NC) switches, and the MAX443 has one NO switch and one NC switch. The is available in -pin µdfn (mm x mm), -pin SOT3, and -pin µmax packages. The MAX44/MAX443 are available in -pin SOT3 and -pin µmax packages. Applications Power Routing Battery Powered Systems Audio and Video Signal Routing Low-Voltage Data-Acquisition Systems Communications Circuits PCMCIA Cards Cellular Phones Modems Hard Drives Low R ON :.Ω max (+3V Supply).5Ω max (+1.V Supply).1Ω max R ON Flatness (+3V Supply) +1.6V to +3.6V Single-Supply Operation Available in SOT3 and µmax Packages High-Current Handling Capacity (15mA continuous) 1.V CMOS Logic Compatible (+3V Supply) Fast Switching: t ON = 4ns, t OFF = 16ns PART Features Ordering Information PIN- PACKAGE TOP MARK PACKAGE CODE EKA SOT3- AAIY KS-3 EUA µmax U-1 ELA µdfn +AAV L-1 MAX44EKA SOT3- AAIZ KS-3 MAX44EUA µmax U-1 MAX443EKA SOT3- AAJA KS-3 MAX443EUA µmax U-1 Note: All devices are specified over the -4 C to +5 C operating temperature range. Pin Configurations TOP VIEW NO1 1 MAX44 NC1 1 MAX443 NO1 1 IN1 IN1 IN1 IN 3 6 COM GND 4 5 NO IN 3 6 COM GND 4 5 NC IN 3 6 COM GND 4 5 NC µmax SOT3- Pin Configurations continued at end of data sheet. µmax µmax µmax is a registered trademark of Maxim Integrated Products, Inc. Maxim Integrated Products 1 For pricing, delivery, and ordering information, please contact Maxim/Dallas Direct! at , or visit Maxim s website at
2 .Ω, Low-Voltage, Single-Supply Dual SPST ABSOLUTE MAXIMUM RATINGS Voltages Referenced to GND, IN_...-.3V to +4V COM_, NO_, NC_ (Note 1)...-.3V to ( +.3V) Continuous Current COM_, NO_, NC_...±15mA Peak Current COM_, NO_, NC_ (pulsed at 1ms 1% duty cycle)...±3ma Continuous Power Dissipation (T A = + C) -Pin SOT3 (derate.5mw/ C above + C)...6mW -Pin µmax (derate 4.5mW/ C above + C)...36mW Note 1: Signals on COM_, NO_, or NC_ exceeding or GND are clamped by internal diodes. Limit forward 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 Single +3V Supply -Pin µdfn (derate 4.mW/ C above + C)...31mW Operating Temperature Range...-4 C to +5 C Maximum Junction Temperature C Storage Temperature Range C to +15 C Lead Temperature (soldering, 1s)...+3 C ( = +.V to +3.6V, V IH = +1.4V, V IL = +.5V, T A = T MIN to T MAX, unless otherwise specified. Typical values are at = +3.V, T A = +5 C.) (Notes, 3) PARAMETER SYMBOL CONDITIONS T A MIN TYP MAX UNITS ANALOG SWITCH Analog Signal Range V COM _, V NO _, V NC _ V On-Resistance R ON I COM _ = 1mA, =.V, +5 C.5. V NO _ or V NC _ = 1.5V T MIN to T MAX.9 Ω On-Resistance Match Between Channels (Note 4) R ON =.V, +5 C.5. I COM _ = 1mA, V NO _ or V NC _ = 1.5V T MIN to T MAX.9 Ω On-Resistance Flatness (Note 5) R FLAT(ON) =.V, +5 C.5.1 I COM _ = 1mA, V NO _ or V NC _ = 1V, 1.5V, V T MIN to T MAX. Ω NO_ or NC_ Off-Leakage Current I NO_(OFF), I NC_(OFF) = 3.3V, +5 C -1 1 V COM _ =.3V, 3V, V NO _ or V NC _ = 3V,.3V T MIN to T MAX -5 5 na COM_ Off-Leakage Current I COM_(OFF) V COM _ =.3V, 3V V NO _ or V NC _ = 3V,.3V or = 3.3V, floating COM_ On-Leakage Current I COM_(ON) V COM _ = 3V,.3V; V NO _ or V NC _ = 3V,.3V or = 3.3V, floating +5 C -1 1 T MIN to T MAX C - T MIN to T MAX -1 1 na na
3 .Ω, Low-Voltage, Single-Supply Dual SPST ELECTRICAL CHARACTERISTICS Single +3V Supply (continued) ( = +.V to +3.6V, V IH = +1.4V, V IL = +.5V, T A = T MIN to T MAX, unless otherwise specified. Typical values are at = +3.V, T A = +5 C.) (Notes, 3) PARAMETER SYMBOL CONDITIONS T A MIN TYP MAX UNITS SWITCH DYNAMIC CHARACTERISTICS Turn-On Time t ON R L = 5Ω, C L = 35pF, V NO _, V NC _ = 1.5V, +5 C 1 4 Figure 1 T MIN to T MAX Turn-Off Time t OFF R L = 5Ω, C L = 35pF, V NO _, V NC _ = 1.5V, +5 C 1 16 Figure 1 T MIN to T MAX 1 Break-Before-Make (Note 6) t BBM R L = 5Ω, C L = 35pF, V NO _, V NC _ = 1.5V, +5 C 6 Figure 1 (MAX443) T MIN to T MAX 1 Charge Injection NO_ or NC_ Off- Capacitance Q V GEN =, R GEN =, C L = 1.nF, Figure 3 ns ns ns +5 C pc C OFF f = 1MHz, Figure 4 +5 C 3 pf COM_ Off-Capacitance C COM_(OFF) f = 1MHz, Figure 4 +5 C 3 pf COM_ On-Capacitance C COM_(ON) f = 1MHz, Figure 4 +5 C 44 pf -3dB On-Channel Bandwidth BW Signal =, R IN = R OUT = 5Ω, C L = 5pF, Figure Off-Isolation (Note ) V ISO f = 1M H z, V C OM _ = 1V RM S, R L = 5Ω, C L = 5p F, Fi g ur e 1 MHz +5 C -55 db Crosstalk (Note ) Total Harmonic Distortion LOGIC INPUT THD f = 1M H z, V C OM _ = 1V RM S, R L = 5Ω, C L = 5p F, Fi g ur e f = Hz to khz, V COM _ = Vp-p, R L = 3Ω +5 C -11 db +5 C. % Input Logic High V IH 1.4 V Input Logic Low V IL.5 V Input Leakage Current I IN V IN _ = or µa POWER SUPPLY Power-Supply Range V Positive Supply Current I+ = 3.6V, V IN _ = or, all channels on or off +5 C. µa 3
4 .Ω, Low-Voltage, Single-Supply Dual SPST ELECTRICAL CHARACTERISTICS Single +1.V Supply ( = +1.V, V IH = +1.V, V IL =.4V, T A = T MIN to T MAX, unless otherwise specified. Typical values are at T A = +5 C.) (Notes, 3) PARAMETER SYMBOL CONDITIONS T A MIN TYP MAX UNITS ANALOG SWITCH Analog Signal Range V COM _, V NO _, V NC _ V I +5 C On-Resistance R COM _ = 1mA, ON V NO _ or V NC _ =.9V T MIN to T MAX 5 NO_ or NC_ Off-Leakage Current I NO_(OFF), I NC_(OFF) V COM_ =.3V, 1.5V; +5 C -1 1 V NO _ or V NC _ = 1.5V,.3V T MIN to T MAX -5 5 COM_ Off-Leakage Current I COM_(OFF) V NO _ or V NC _ = 1.5V, V COM _ =.3V, 1.5V; +5 C V T MIN to T MAX -5 5 COM_ On-Leakage Current I COM_(ON) V NO _ or V NC _ =.3V, V COM _ =.3V, 1.5V, +5 C - 1.5V, or floating T MIN to T MAX -1 1 SWITCH DYNAMIC CHARACTERISTICS Turn-On Time t ON RL = 5Ω, C L = 35pF, V NO _, V NC _ = 1.5V, +5 C 5 35 Figure 1 T MIN to T MAX 4 Turn-Off Time t OFF R L = 5Ω, C L = 35pF, V NO _, V NC _ = 1.5V, +5 C 16 5 Figure 1 T MIN to T MAX 3 Ω na na na ns ns Break-Before-Make (Note 6) t BBM R L = 5Ω, C L = 35pF, V NO _, V NC _ = 1.5V, +5 C 1 Figure 1 (MAX443) T MIN to T MAX 1 ns Charge Injection Q V GEN =, R GEN =, C L = 1nF, Figure +5 C 16 pc Off-Isolation (Note ) V ISO = 1V RM S, R L = 5Ω, f = 1M H z, V N O _ = V N C _ C L = 5p F, Fi g ur e +5 C -5 db Crosstalk (Note ) f = 1M H z, V C OM _ = 1V RM S, R L = 5Ω, C L = 5p F, Fi g ur e +5 C -11 db 4
5 .Ω, Low-Voltage, Single-Supply Dual SPST ELECTRICAL CHARACTERISTICS Single +1.V Supply (continued) ( = +1.V, V IH = +1.V, V IL =.4V, T A = T MIN to T MAX, unless otherwise specified. Typical values are at T A = +5 C.) (Notes, 3) LOGIC INPUT PARAMETER SYMBOL CONDITIONS T A MIN TYP MAX UNITS Input Logic High V IH 1 V Input Logic Low V IL.4 V Input Leakage Current I IN V IN _ = or -1 1 µa Note : The algebraic convention, where the most negative value is a minimum and the most positive value is a maximum, is used in this data sheet. Note 3: µdfn and SOT3 packaged parts are 1% tested at +5 C. Limits across the full temperature range are guaranteed by design and correlation. µmax packaged parts -4 C specifications are guaranteed by design. Note 4: R ON = R ON(MAX) - R ON(MIN). Note 5: Flatness is defined as the difference between the maximum and the minimum value of on-resistance as measured over the specified analog signal ranges. Note 6: Guaranteed by design. Note : Off-Isolation = log 1 (V COM _/V NO _), V COM _ = output, V NO _ = input to off switch. Note : Between two switches. (T A = +5 C, unless otherwise noted.) Typical Operating Characteristics RON (Ω) ON-RESISTANCE vs. V COM = +1.V = +.V = +.5V = +.V = +3.V = +3.3V V COM (V) I COM = 1mA = +3.6V toc1 RON (Ω) ON-RESISTANCE vs. V COM AND TEMPERATURE T A = -4 C = +.V I COM = 1mA V COM (V) T A = +5 C T A = +5 C toc ton/toff (ns) TURN-ON/OFF TIME vs. SUPPLY VOLTAGE t ON t OFF (V) toc3 5
6 .Ω, Low-Voltage, Single-Supply Dual SPST (T A = +5 C, unless otherwise noted.) ton/toff (ns) t ON, = +3V t OFF, = +1.V TURN-ON/OFF TIME vs. TEMPERATURE t ON, = +1.V t OFF, = +3V TEMPERATURE ( C) LOSS (db) toc4 ICOM (pa) FREQUENCY RESPONSE ON-RESPONSE OFF-ISOLATION 1, CROSSTALK 1 1 Typical Operating Characteristics (continued) 1 1 LEAKAGE CURRENT vs. TEMPERATURE ON = +3V OFF toc TEMPERATURE ( C) THRESHOLD (V) toc5 Q (pc) CHARGE INJECTION vs. OUTPUT VOLTAGE = +1.V LOGIC THRESHOLD VOLTAGE vs. SUPPLY VOLTAGE RISING FALLING V COM (V) = +3.3V toc toc FREQUENCY (MHz) (V).5. TOTAL HARMONIC DISTORTION vs. FREQUENCY R L = 3Ω = +3V toc SUPPLY CURRENT vs. SUPPLY VOLTAGE AND TEMPERATURE T A = +5 C toc1 THD (%).15.1 I+ (na) 1. T A = +5 C.5.1 T A = -4 C k 1k 1k FREQUENCY (Hz) (V) 6
7 .Ω, Low-Voltage, Single-Supply Dual SPST PIN MAX44 MAX443 µmax/µdfn SOT3- µmax SOT3- µmax SOT3- Detailed Description The are low.ω max (at = +3V) on-resistance, low-voltage, dual analog switches that operate from a +1.6V to +3.6V single supply. CMOS switch construction allows switching analog signals that are within the supply voltage range (GND to ). When powered from a +3V supply, the.ω max R ON allows high continuous currents to be switched in a variety of applications. Applications Information Proper power-supply sequencing is recommended for all CMOS devices. Do not exceed the absolute maximum ratings, because stresses beyond the listed ratings can cause permanent damage to the devices. Always sequence on first, followed by NO_, NC_, or COM_. Although it is not required, power-supply bypassing improves noise margin and prevents switching noise propagation from the supply to other components. A.1µF capacitor, connected from to GND, is adequate for most applications. NAME Pin Description FUNCTION 1 1 NO1 Analog Switch 1 Normally Open 1 NC1 Analog Switch 1 Normally Closed Analog Switch 1 Common IN Logic Control Input Switch GND Ground 5 3 NO Analog Switch Normally Open NC Analog Switch Normally Closed COM Analog Switch Common IN1 Logic Control Input Switch 1 Positive Supply Voltage Analog Signal Levels Analog signals that range over the entire supply voltage ( to GND) can be passed with very little change in onresistance (see Typical Operating Characteristics). The switches are bidirectional, so the NO_, NC_, and COM_ pins can be used as either inputs or outputs. Layout High-speed switches require proper layout and design procedures for optimum performance. Reduce stray inductance and capacitance by keeping traces short and wide. Ensure that bypass capacitors are as close to the device as possible. Use large ground planes where possible. Logic Inputs The logic inputs can be driven up to +3.6V regardless of the supply voltage. For example, with a +1.V supply, IN_ may be driven low to GND and high to +3.6V. Driving IN_ rail-to-rail minimizes power consumption.
8 .Ω, Low-Voltage, Single-Supply Dual SPST OPEN OPEN 5Ω 5Ω NO_ NO_ IN_ COM_ GND NC_ NC_ MAX44 IN_ COM_ GND V NO_ 5Ω V NC_ 5Ω V COM_ 35pF V COM_ 35pF V IH +.5V IN_ 5% 5% V COM_ V NO_ V IH +.5V IN_ V COM_ V NC_ Test Circuits/Timing Diagrams t ON 9% t OFF 5% 5% t OFF 9% t ON t R < 5ns t F < 5ns 9% 9% V S NC_ NO_ MAX443 V S V IH +.5V IN_ 5Ω IN_ GND COM_ 5Ω 35pF V COM_ V S 9% 9% V COM_ t BBM t BBM t BBM = t ON(NO_) - t OFF(NC_) OR t BBM = t ON(NC_) - t OFF(NO_) Figure 1. Switching Times
9 .Ω, Low-Voltage, Single-Supply Dual SPST Figure. Off-Isolation, On-Loss, and Crosstalk V IN 5Ω IN_ MAX44 MAX443 GND MAX44 MAX443 COM_ IN_ GND NO_ OR NC_ MEASUREMENTS ARE STANDARDIZED AGAINST SHORT AT SOCKET TERMINALS. OFF-ISOLATION IS MEASURED BETWEEN COM AND OFF TERMINAL ON EACH SWITCH. ON-LOSS IS MEASURED BETWEEN COM AND ON TERMINAL ON EACH SWITCH. SIGNAL DIRECTION THROUGH SWITCH IS REVERSED; WORST VALUES ARE RECORDED. NO_ OR NC_ COM_ R GEN V OUT C L 1pF V GEN Test Circuits/Timing Diagrams (continued).1µf * V IN V OUT NETWORK ANALYZER 5Ω 5Ω MEAS 5Ω 5Ω REF OFF-ISOLATION = log V OUT V IN ON-LOSS = log V OUT V IN * ADD 5Ω TERMINATION FOR OFF-ISOLATION AS REQUIRED IN_ MAX44 MAX443 GND NO_ OR NC_ COM_ 1MHz CAPACITANCE ANALYZER V IN Figure 4. NO_, NC_, and COM_ Capacitance MAX44 V OUT V OUT V OUT IS THE MEASURED VOLTAGE DUE TO CHARGE TRANSFER ERROR Q WHEN THE CHANNEL TURNS OFF. Q = V OUT x C L Figure 3. Charge Injection 9
10 .Ω, Low-Voltage, Single-Supply Dual SPST TOP VIEW IN1 1 NO 3 6 IN COM 4 5 GND SOT3- NO1 MAX44 IN1 1 NC 3 6 IN COM 4 5 GND SOT3- NO1 1 NC1 IN 3 6 COM GND 4 5 NO µdfn (mm x mm) Pin Configurations (continued) IN1 MAX443 IN1 1 NC 3 6 IN COM 4 5 GND SOT3- NO1 Chip Information TRANSISTOR COUNT = 11 PROCESS = CMOS 1
11 .Ω, Low-Voltage, Single-Supply Dual SPST Package Information (The package drawing(s) in this data sheet may not reflect the most current specifications. For the latest package outline information, go to SOT3, L.EPS.6±.1.6±.1 1 Ø.5±.1 D E H 4X S BOTTOM VIEW 1 DIM A A1 INCHES MIN MAX BSC A.3 b c D e E.116 H.1 L.16 α S. BSC MILLIMETERS MIN MAX BSC BSC LUMAXD.EPS TOP VIEW A A1 A e b c L α FRONT VIEW SIDE VIEW PROPRIETARY INFORMATION TITLE: PACKAGE OUTLINE, L umax/usop APPROVAL DOCUMENT CONTROL NO. REV J
12 .Ω, Low-Voltage, Single-Supply Dual SPST Package Information (continued) (The package drawing(s) in this data sheet may not reflect the most current specifications. For the latest package outline information, go to D XXXX XXXX XXXX PIN 1 INDEX AREA -DRAWING NOT TO SCALE- SAMPLE MARKING A1 COMMON DIMENSIONS SYMBOL MIN. NOM. MAX. A..5. A1 A D E L L1.1 REF. E A b A A L L C L e e EVEN TERMINAL A A (N/ -1) x e) b N 1 e C L ODD TERMINAL PACKAGE OUTLINE, 6,, 1L udfn, xx. mm SOLDER MASK COVERAGE PIN 1.1x45 L1 L A 1 6,, 1L UDFN.EPS PACKAGE VARIATIONS PKG. CODE N e b L BSC.3±.5 L-1 L BSC.4 BSC.5±.5.±.3 (N/ -1) x e 1.3 REF. 1.5 REF. 1.6 REF. PACKAGE OUTLINE, 6,, 1L udfn, xx. mm -DRAWING NOT TO SCALE A Pages changed at Rev : 1, 1 Revision History Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are implied. Maxim reserves the right to change the circuitry and specifications without notice at any time. 1 Maxim Integrated Products, 1 San Gabriel Drive, Sunnyvale, CA Maxim Integrated Products is a registered trademark of Maxim Integrated Products, Inc.
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