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MAX4051/A,
MAX4052/A,
MAX4053/A
Low-Voltage, CMOS Analog
Multiplexers/Switches
10
______________________________________________________________________________________
____________________________Typical Operating Characteristics (continued)
(V+ = +5V, V- = -5V, GND = 0V, TA = +25°C, unless otherwise noted.)
_____________________________________________________________Pin Descriptions
Digital Inhibit Input. Normally connect to GND. Can be driven
to logic high to set all switches off.
6
Negative Analog Supply Voltage Input. Connect to GND for
single-supply operation.
7
Ground. Connect to digital ground. (Analog signals have no
ground reference; they are limited to V+ and V-.)
8
Digital Address “C” Input
—
9
Digital Address “B” Input
9
10
Analog Switch “B” Normally Open Input
—
Analog Switch “B” Normally Closed Input
—
Analog Switch “A” Normally Open Input
—
Analog Switch “A” Normally Closed Input
—
Analog Switch “B” Common
3
—
Analog Switch “B” Inputs 0–3
1, 2, 4, 5
—
Analog Switch Common
—
3
Analog Switch Inputs 0–7
—
1, 2, 4, 5, 12,
13, 14, 15
FUNCTION
Analog Switch “C” Normally Closed Input
—
Analog Switch “C” Normally Open Input
—
Analog Switch “C” Common
—
Digital Address “A” Input
10
11
Analog Switch “A” Inputs 0–3
11, 12, 14, 15
—
Analog Switch “A” Common
13
—
Note: NO, NC, and COM pins are identical and interchangeable. Any may be considered an input or output; signals pass equally
well in both directions.
INH
6
V-
7
GND
8
ADDC
11
ADDB
10
NOB
1
NCB
2
NOA
3
NCA
5
COMB
15
NO0B–NO3B
—
COM
—
NO0–NO7
—
NAME
NCC
12
NOC
13
COMC
14
ADDA
9
NO0A–NO3A
—
COMA
4
MAX4051/
MAX4051A
MAX4052/
MAX4052A
MAX4053/
MAX4053A
0.01
10
100
1k
10k
TOTAL HARMONIC DISTORTION
vs. FREQUENCY
0.1
MAX4051/2/3-10
FREQUENCY (Hz)
THD
(%)
1
10
100
V± = ±5V
600
IN AND OUT
Positive Analog and Digital Supply Voltage Input
16
V+
16
PIN
0
-10
-90
0.01
0.1
1
10
100 300
FREQUENCY RESPONSE
-80
-70
MAX4051/2/3-09
FREQUENCY (MHz)
LOSS
(dB)
PHASE
(DEGREES)
-50
-60
-40
-20
-30
5
0
-40
-35
-30
-20
-25
-15
-5
-10
INSERTION LOSS
50
IN/OUT
OFF-ISOLATION
ON PHASE