MAX4558 Maxim, MAX4558 Datasheet - Page 7

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MAX4558

Manufacturer Part Number
MAX4558
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)
Manufacturer
Maxim
Datasheet

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(V
0.0001
0.001
0.01
CC
0.1
10
160
150
140
130
120
110
100
180
160
140
120
100
170
1
80
60
40
20
90
80
70
60
50
40
0
= +5V, V
-50
-5
0
V
ON-RESISTANCE vs. V
A
V
V
, V
T
V
V
0.5
CC
EE
TEMPERATURE (SINGLE SUPPLY)
-4
A
-30
CC
EE
ON-RESISTANCE vs. V
B
= 0°C
= -2V
, V
= +2V
POWER-SUPPLY CURRENT
= -5V
= +5V
1.0 1.5 2.0
-3 -2 -1
C
EE
, V
-10
±15kV ESD-Protected, Low-Voltage, CMOS
V
V
vs. TEMPERATURE
CC
EE
T
ENABLE
A
(DUAL SUPPLIES)
TEMPERATURE (°C)
= -5V, T
= -5V
= +5V
= -40°C
10
V
V
X
X
_______________________________________________________________________________________
= 0.5V
, V
, V
T
I
T
CC
A
2.5 3.0 3.5 4.0 4.5 5.0
Y
Y
A
0
, V
30
, V
= +85°C
= +25°C
A
Z
Z
I
(V)
(V)
EE
= +25°C, unless otherwise noted.)
1
X
50
, V
V
V
X
CC
EE
2
, V
V
V
Y
= -3V
CC
EE
= +3V
, V
T
70
Y
A
= 0
= +5V
3
, V
Z
= +70°C
AND
Z
4
90
100
5
1000
0.01
100
0.1
10
480
420
360
300
240
180
120
200
180
160
140
120
100
1
60
80
60
40
20
Analog Multiplexers/Switches
0
0
-50
-60
0
OFF_LEAKAGE I
-35
0.5
ON-RESISTANCE vs. V
-40
ON/OFF-LEAKAGE CURRENT
-20 -5
1.0 1.5 2.0
SCR HOLDING CURRENT
-20
ON_LEAKAGE I
vs. TEMPERATURE
vs. TEMPERATURE
(SINGLE SUPPLY)
V
TEMPERATURE (°C)
TEMPERATURE (°C)
CC
X
V
0
10
= +5V
, I
V
X
OFF_LEAKAGE I
, V
Y
CC
, I
I
H
2.5 3.0 3.5 4.0 4.5 5.0
Y
25
20
Z
-
= +2V
, V
X
V
, I
I
Typical Operating Characteristics
Z
H
CC
40
Y
+
(V)
, I
40
= +2.7V
Z
X
55 70
, V
V
V
V
X_
60
CC
EE
CC
Y
, I
V
= -5V
, V
= +5V
= +3.3V
Y_
EE
80
, I
Z
= 0
85
Z_
100
100
140
130
120
110
100
-10
170
150
130
110
12
10
90
80
70
60
50
40
-2
-4
-6
-8
90
70
50
30
8
6
4
2
0
±2.0
-5
-5
ON-RESISTANCE vs. V
T
-4
TEMPERATURE (DUAL SUPPLIES)
-4
A
±2.5
V
V
= -40°C
CC
EE
TURN-ON/TURN-OFF TIME
-3 -2 -1
-3 -2 -1
= -5V
CHARGE INJECTION vs.
±3.0 ±3.5
= +5V
SUPPLY VOLTAGE (V
vs. SUPPLY VOLTAGE
T
A
= +85°C
V
V
V
T
X
X
X
A
, V
, V
, V
= +25°C
±4.0 ±4.5 ±5.0 ±5.5 ±6.0
Y
t
Y
V
V
OFF
0
0
, V
, V
Y
CC
EE
, V
Z
Z
= 0
= +3V
(V)
t
(V)
1
ON
1
X
Z
T
, V
CC
A
= +70°C
2
2
, V
V
V
Y
T
CC
EE
, V
A
EE
V
V
= 0°C
= -5V
CC
EE
3
)
= +5V
3
Z
= 0
= +5V
AND
4
4
5
5
7

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