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MAX4734EUB+ |MAX4734EUBMAXIMN/a1620avai0.8Ω, Low-Voltage, 4-Channel Analog Multiplexer
MAX4734EUB+TMAXIMN/a4262avai0.8Ω, Low-Voltage, 4-Channel Analog Multiplexer


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MAX4734EUB+-MAX4734EUB+T
0.8Ω, Low-Voltage, 4-Channel Analog Multiplexer
General Description
The MAX4734 is a low on-resistance, low-voltage, 4-
channel CMOS analog multiplexer that operates from a
single 1.6V to 3.6V supply. This device has fast switch-
ing speeds (tON= 25ns, tOFF= 20ns max), handles
rail-to-rail analog signals, and consumes less than 4µW
of quiescent power. The MAX4734 has break-before-
make switching.
When powered from a 3V supply, the MAX4734 fea-
tures low 0.8Ω(max) on-resistance (RON), with 0.2Ω
(max) RONmatching and 0.1ΩRONflatness. The digital
logic input is 1.8V CMOS compatible when using a sin-
gle 3V supply.
The MAX4734 is available in space-saving 12-pin thin
QFN (3mm x 3mm) and 10-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
Features
Low RON
0.8Ω(max) (3V Supply)(max) (1.8V Supply)
0.1Ω(max) RONFlatness (3V Supply)1.6V to 3.6V Single-Supply OperationAvailable in Thin QFN (3mm x 3mm) PackageHigh-Current Handling Capacity (150mA
Continuous)
1.8V CMOS-Logic Compatible (3V Supply)Fast Switching: tON= 25ns, tOFF= 20ns
MAX4734
0.8Ω, Low-Voltage, 4-Channel
Analog Multiplexer

TOP VIEW
N.C.NO2COMNO4
N.C.NO1GNDNO3
MAX4734
NO2
COM
NO4NO3
GND
NO1
MAX4734
μMAXEN
LOGICA1A0ENON SWITCH0NONE11121314
X = DON'T CARE
Thin QFN
Pin Configurations/Functional Diagrams/Truth Table
Ordering Information

19-2381; Rev 1; 5/04
PARTTEMP RANGEPIN-PACKAGE

MAX4734EU-40°C to +85°C10 µMAX
MAX4734ETC-40°C to +85°C12 Thin QFN (3mm x 3mm)
MAX4734
0.8Ω, Low-Voltage, 4-Channel
Analog Multiplexer
ABSOLUTE MAXIMUM RATINGS
ELECTRICAL CHARACTERISTICS—Single 3V Supply

(V+ = 2.7V to 3.6V, VIH= 1.4V, VIL= 0.5V, TA= TMINto TMAX, unless otherwise specified. Typical values are at V+ = 3.0V,= +25°C.) (Notes 2, 3)
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.
Note 1:
Signals on COM or NO_ exceeding V+ or GND are clamped by internal diodes. Limit forward current to maximum current rating.
(Voltages Referenced to GND)
V+, A_, EN_..............................................................-0.3V to +4V
COM, NO_ (Note 1)......................................-0.3V to (V+ + 0.3V)
Continuous Current COM, NO_......................................±150mA
Continuous Current (all other pins)...................................±20mA
Peak Current COM, NO_
(pulsed at 1ms 10% duty cycle)..................................±300mA
Continuous Power Dissipation (TA= +70°C)
10-Pin µMAX (derate 5.6mW/°C above +70°C)............444mW
12-Pin Thin QFN (derate 14.7mW/°C above +70°C)..1176mW
Operating Temperature Range...........................-40°C to +85°C
Maximum Junction Temperature.....................................+150°C
Storage Temperature Range.............................-65°C to +150°C
Lead Temperature (soldering, 10s).................................+300°C
PARAMETERSYMBOLCONDITIONSTAMINTYPMAXUNITS
ANALOG SWITCH

Analog Signal RangeVCOM,
VNO_0V+V
+25°C0.60.8
On-Resistance (Note 4)RON
V+ = 2.7V,
ICOM = 100mA,
VNO_ = 1.5VTMIN to TMAX1
+25°C0.10.2On-Resistance Match
Between Channels
(Notes 4, 5)
ΔRON
V+ = 2.7V,
ICOM = 100mA,
VNO_ = 1.5VTMIN to TMAX0.3
+25°C0.050.1On-Resistance Flatness
(Note 6)RFLAT(ON)
V+ = 2.7V,
ICOM_ = 100mA,
VNO_ = 1V, 1.5V, 2VTMIN to TMAX0.2
+25°C-1±0.002+1NO_ Off-Leakage Current
(Note 7)INO_(OFF)
V+ = 3.6V,
VCOM = 0.3V, 3.3V,
VNO_ = 3.3V, 0.3VTMIN to TMAX-5+5
+25°C-1±0.002+1COM Off-Leakage Current
(Note 7)ICOM(OFF)
V+ = 3.6V,
VCOM = 0.3V, 3.3V,
VNO_ = 3.3V, 0.3VTMIN to TMAX-5+5
+25°C-2±0.002+2COM On-Leakage Current
(Note 7)ICOM(ON)
V+ = 3.6V,
VCOM = 3.3V, 0.3V,
VNO_ = 3.3V, 0.3V, or
floatingTMIN to TMAX-10+10
MAX4734
0.8Ω, Low-Voltage, 4-Channel
Analog Multiplexer
ELECTRICAL CHARACTERISTICS—Single 3V Supply (continued)

(V+ = 2.7V to 3.6V, VIH= 1.4V, VIL= 0.5V, TA= TMINto TMAX, unless otherwise specified. Typical values are at V+ = 3.0V,= +25°C.) (Notes 2, 3)
PARAMETERSYMBOLCONDITIONSTAMINTYPMAXUNITS
SWITCH DYNAMIC CHARACTERISTICS

+25°C2025
Turn-On TimetON
VNO_ = 1.5V,
RL = 50Ω, CL = 35pF,
Figure 1TMIN to TMAX30
+25°C1520
Turn-Off TimetOFF
VNO_ = 1.5V,
RL = 50Ω, CL = 35pF,
Figure 1TMIN to TMAX25
+25°C5
Break-Before-Make (Note 8)tBBM
VNO_ = 1.5V,
RL = 50Ω, CL = 35pF,
Figure 2TMIN to TMAX1
Charge InjectionQVGEN = 0, RGEN = 0,
CL = 1.0nF, Figure 3+25°C60pC
NO_ Off-CapacitanceCOFFf = 1MHz, Figure 4+25°C33pF
COM Off-CapacitanceCCOM(OFF)f = 1MHz, Figure 4+25°C117pF
COM On-CapacitanceCCOM(ON)f = 1MHz, Figure 4+25°C171pF
-3dB On-Channel BandwidthBWSignal = 0, RIN = ROUT =
50Ω, CL = 5pF, Figure 590MHz
Off-Isolation (Note 9)VISOf = 1M H z, V C OM = 1V P - P , RL =
50Ω, C L = 5p F, Fi g ur e 5+25°C-56dB
Crosstalk (Note 10)VCTf = 1M H z, V C OM = 1V P - P , RL =
50Ω, C L = 5p F, Fi g ur e 5+25°C-56dB
Total Harmonic DistortionTHDf = 20Hz to 20kHz, VCOM =
2VP-P, RL = 32Ω+25°C0.018%
LOGIC INPUT (A_, EN)

Input Logic HighVIH1.4V
Input Logic LowVIL0.5V
Input Leakage CurrentIINVEN = 0 or 3.6V, VA_ = 0
or 3.6V-10.005+1µA
POWER SUPPLY

Power-Supply RangeV+1.63.6V
Positive Supply CurrentI+V+ = 3.6V, VEN, A_ = 0 or
V+, all channels on or off0.0041µA
MAX4734
0.8Ω, Low-Voltage, 4-Channel
Analog Multiplexer
ELECTRICAL CHARACTERISTICS—Single 1.8V Supply

(V+ = 1.8V, VIH= 1.0V, VIL= 0.4V, TA= TMINto TMAX, unless otherwise specified. Typical values are at TA= +25°C.) (Notes 2, 3)
PARAMETERSYMBOLCONDITIONSTAMINTYPMAXUNITS
ANALOG SWITCH

Analog Signal RangeVCOM,
VNO_0V+V
+25°C1.52On-ResistanceRONICOM_ = 10mA,
VNO_ = 1VTMIN to TMAX3Ω
SWITCH DYNAMIC CHARACTERISTICS

+25°C2530
Turn-On TimetON
VNO_ = 1V,
RL = 50Ω, CL = 35pF,
Figure 1TMIN to TMAX35
+25°C1825
Turn-Off TimetOFF
VNO_ = 1V,
RL = 50Ω, CL = 35pF,
Figure 1TMIN to TMAX28
+25°C7
Break-Before-Make (Note 8)tBBM
VNO_ = 1V,
RL = 50Ω, CL = 35pF,
Figure 2TMIN to TMAX1
Charge InjectionQVGEN = 0, RGEN = 0,
CL = 1nF, Figure 3+25°C35pC
Off-Isolation (Note 9)VISO
f = 1M H z, V N O_ 1V P - P , RL = 50Ω,L = 5p F, Fi g ur e 5
+25°C-56dB
Crosstalk (Note 10)VCT
f = 1M H z, V C OM = 1V P - P ,
RL = 50Ω,L = 5p F, Fi g ur e 5
+25°C-56dB
LOGIC INPUT (A_, EN)

Input Logic HighVIH1V
Input Logic LowVIL0.4V
Input Leakage CurrentIINVEN = 0 or 3.6V,
VA_ = 0 or 3.6V1µA
Note 2:
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:
-40°C specifications are guaranteed by design.
Note 4:
RON and ΔRONmatching specifications for thin QFN packaged parts are guaranteed by design.
Note 5:
ΔRON= RON(MAX)- RON(MIN).
Note 6:
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 7:
Leakage parameters are 100% tested at hot temperature and guaranteed by correlation at room temperature.
Note 8:
Guaranteed by design.
Note 9:
Off-Isolation = 20log10(VCOM/VNO_), VCOM= output, VNO_ = input to off switch.
Note 10:
Between two switches.
MAX4734
0.8Ω, Low-Voltage, 4-Channel
Analog Multiplexer
Typical Operating Characteristics

(TA = +25°C, unless otherwise noted.)
ON-RESISTANCE vs. VCOM
MAX4734 toc01
VCOM (V)
V+ = 1.6V
V+ = 1.8V
V+ = 2.5V
V+ = 3.0VV+ = 3.6V0
ON-RESISTANCE vs. VCOM
AND TEMPERATURE
MAX4734 toc02
VCOM (V)
V+ = 1.8V, TA = -40°C
V+ = 1.8V, TA = +25°C
V+ = 1.8V, TA = +85°C
V+ = 3.0V, TA = +85°C
V+ = 3.0V, TA = +25°CV+ = 3.0V, TA = -40°C
ON/OFF-LEAKAGE CURRENT
vs. TEMPERATURE

MAX4734 toc03
TEMPERATURE (°C)
LEAKAGE CURRENT (pA)3510-15
10,000
OFF, V+ = 3.0V
ON, V+ = 3.0V
ON, V+ = 1.8V
OFF, V+ = 1.8V
CHARGE INJECTION vs. VCOM
MAX4734 toc04
VCOM (V)
Q (pC)
V+ = 3.0V
V+ = 1.8V
SUPPLY CURRENT vs. SUPPLY
VOLTAGE AND TEMPERATURE
MAX4734 toc05
SUPPLY VOLTAGE (V)
SUPPLY CURRENT (nA)
TA = -40°C
TA = +25°C
TA = +85°C
LOGIC-LEVEL THRESHOLD
vs. SUPPLY VOLTAGE
MAX4734 toc06
SUPPLY VOLTAGE (V)
THRESHOLD (V)
RISING
FALLING
TURN-ON/OFF TIME
vs. SUPPLY VOLTAGE

MAX4734 toc07
SUPPLY VOLTAGE (V)
tON
OFF
(ns)
tOFF
tON
TURN-ON/OFF TIME
vs. TEMPERATURE

MAX4734 toc08
TEMPERATURE (°C)
tON
OFF
(ns)3510-15
tON, V+ = 1.8V
tOFF, V+ = 1.8V
tON, V+ = 3.0V
tOFF, V+ = 3.0V
MAX4734
0.8Ω, Low-Voltage, 4-Channel
Analog Multiplexer
Typical Operating Characteristics (continued)

(TA = +25°C, unless otherwise noted.)
0.201001k10k
TOTAL HARMONIC DISTORTION
vs. FREQUENCY

MAX4734 toc10
FREQUENCY (Hz)
THD (%)
100k
V+ = 1.8V
VCOM = 1.2VP-P
V+ = 3.0V
VCOM = 2VP-P
RL = 32Ω
Pin Description
PIN
µMAXQFNNAMEFUNCTION12A0Address 0 Input1NO1Analog Switch 1—Normally Open Terminal2GNDGround3NO3Analog Switch 3—Normally Open Terminal4ENEnable Logic Input6V+Positive-Supply Voltage Input7NO4Analog Switch 4—Normally Open Terminal8COMAnalog Switch Common Terminal9NO2Analog Switch 2—Normally Open Terminal10A1Address 1 Input5, 11N.C.No Connection. Not internally connected.EPExposed Pad. Connect to Ground.
FREQUENCY RESPONSE
MAX4734 toc09
FREQUENCY (MHz)
LOSS (dB)
ON-RESPONSE
OFF-ISOLATION
CROSSTALK
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