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MAX4559 View Datasheet(PDF) - Maxim Integrated

Part NameMAX4559 MaximIC
Maxim Integrated MaximIC
Description±15kV ESD-Protected, Low-Voltage, CMOS Analog Multiplexers/Switches
MAX4559 Datasheet PDF : 16 Pages
1 2 3 4 5 6 7 8 9 10 Next Last
19-1443; Rev 0; 4/99
±15kV ESD-Protected, Low-Voltage, CMOS
Analog Multiplexers/Switches
General Description
The MAX4558/MAX4559/MAX4560 are low-voltage,
CMOS analog ICs configured as an 8-to-1 multiplexer
(MAX4558), a dual 4-to-1 multiplexer (MAX4559), and a
triple single-pole/double-throw (SPDT) switch
(MAX4560). Each switch is protected against ±15kV
electrostatic discharge (ESD) shocks, without latchup
or damage.
These CMOS devices can operate continuously from
dual supplies of ±2V to ±6V or from a +2V to +12V sin-
gle supply. Each switch can handle Rail-to-Rail® ana-
log signals. The off-leakage current is only 1nA at
+25°C or 10nA at +85°C max.
All digital inputs have +0.8V to +2.4V logic thresholds,
ensuring TTL/CMOS-logic compatibility when using a
single +5V supply or dual ±5V supplies.
Applications
Battery-Operated Equipment
Audio and Video Signal Routing
Low-Voltage Data-Acquisition Systems
Communications Circuits
High-ESD Environments
Rail-to-Rail is a registered trademark of Nippon Motorola, Ltd.
Features
o ESD-Protected X, Y, Z and X_, Y_, Z_ Pins
±15kV (Human Body Model)
±12kV (IEC 1000-4-2, Air-Gap Discharge)
±8kV (IEC 1000-4-2, Contact Discharge)
o Pin-Compatible with Industry-Standard
74HC4051/74HC4052/74HC4053
o Guaranteed On-Resistance
220with Single +5V Supply
160with ±5V Supply
o RON Match Between Channels: 2(typ)
o Guaranteed Low leakage Currents
1nA Off-Leakage (at +25°C)
1nA On-Leakage (at +25°C)
o TTL-Compatible Inputs with +5V/±5V Supplies
o Low Distortion: < 0.02% (600)
o Low Crosstalk: < -93dB (50)
o High Off-Isolation: < -96dB (50)
Ordering Information
PART
MAX4558CEE
MAX4558CSE
MAX4558CPE
TEMP. RANGE
0°C to +70°C
0°C to +70°C
0°C to +70°C
PIN-PACKAGE
16 QSOP
16 Narrow SO
16 Plastic DIP
Ordering Information continued at end of data sheet.
Pin Configurations/Functional Diagrams
TOP VIEW
MAX4558
X4 1
X6 2
X3
X7 4
X5 5
ENABLE 6
VEE 7
GND 8
LOGIC
16 VCC
15 X2
14 X1
13 X0
12 X3
11 A
10 B
9C
DIP/SO/QSOP
MAX4559
Y0 1
Y2 2
Y3
Y3 4
Y1 5
ENABLE 6
VEE 7
GND 8
LOGIC
16 VCC
15 X2
14 X1
13 X
12 X0
11 X3
10 A
9B
DIP/SO/QSOP
MAX4560
Y1 1
Y0 2
Z1 3
Z4
Z0 5
ENABLE 6
VEE 7
GND 8
16 VCC
15 Y
14 X
13 X1
12 X0
11 A
10 B
9C
DIP/SO/QSOP
________________________________________________________________ Maxim Integrated Products 1
For free samples & the latest literature: http://www.maxim-ic.com, or phone 1-800-998-8800.
For small orders, phone 1-800-835-8769.
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General Description
The MAX4558/MAX4559/MAX4560 are low-voltage, CMOS analog ICs configured as an 8-to-1 multiplexer (MAX4558), a dual 4-to-1 multiplexer (MAX4559), and a triple single-pole/double-throw (SPDT) switch (MAX4560). Each switch is protected against ±15kV electrostatic discharge (ESD) shocks, without latchup or damage.
These CMOS devices can operate continuously from dual supplies of ±2V to ±6V or from a +2V to +12V single supply. Each switch can handle Rail-to-Rail® analog signals. The off-leakage current is only 1nA at +25°C or 10nA at +85°C max.
All digital inputs have +0.8V to +2.4V logic thresholds, ensuring TTL/CMOS-logic compatibility when using a single +5V supply or dual ±5V supplies.

Features
♦ ESD-Protected X, Y, Z and X_, Y_, Z_ Pins
   ±15kV (Human Body Model)
   ±12kV (IEC 1000-4-2, Air-Gap Discharge)
   ±8kV (IEC 1000-4-2, Contact Discharge)
♦ Pin-Compatible with Industry-Standard 74HC4051/74HC4052/74HC4053
♦ Guaranteed On-Resistance
   220Ω with Single +5V Supply
   160Ω with ±5V Supply
♦ RON Match Between Channels: 2Ω (typ)
♦ Guaranteed Low leakage Currents
   1nA Off-Leakage (at +25°C)
   1nA On-Leakage (at +25°C)
♦ TTL-Compatible Inputs with +5V/±5V Supplies
♦ Low Distortion: < 0.02% (600Ω)
♦ Low Crosstalk: < -93dB (50Ω)
♦ High Off-Isolation: < -96dB (50Ω)

Applications
   Battery-Operated Equipment
   Audio and Video Signal Routing
   Low-Voltage Data-Acquisition Systems
   Communications Circuits
   High-ESD Environments

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