M74HC4053
TRIPLE 2-CHANNEL
ANALOG MULTIPLEXER/DEMULTIPLEXER
s
s
s
s
s
s
s
s
s
s
s
LOW POWER DISSIPATION:
I
CC
= 4µA(MAX.) at T
A
=25°C
LOGIC LEVEL TRANSLATION TO ENABLE
5V LOGIC SIGNAL TO COMMUNICATE
WITH
±5V
ANALOG SIGNAL
LOW "ON" RESISTANCE:
70Ω TYP. (V
CC
- V
EE
= 4.5V)
50Ω TYP. (V
CC
- V
EE
= 9V)
WIDE ANALOG INPUT VOLTAGE RANGE:
±6V
FAST SWITCHING:
t
pd
= 15ns (TYP.) at T
A
= 25 °C
LOW CROSSTALK BETWEEN SWITCHES
HIGH ON/OFF OUTPUT VOLTAGE RATIO
WIDE OPERATING SUPPLY VOLTAGE
RANGE (V
CC
- V
EE
) = 2V TO 12V
LOW SINE WAVE DISTORTION:
0.02% at V
CC
- V
EE
= 9V
HIGH NOISE IMMUNITY:
V
NIH
= V
NIL
= 28% V
CC
(MIN.)
PIN AND FUNCTION COMPATIBLE WITH
74 SERIES 4053
DIP
SOP
TSSOP
ORDER CODES
PACKAGE
DIP
SOP
TSSOP
TUBE
M74HC4053B1R
M74HC4053M1R
T&R
M74HC4053RM13TR
M74HC4053TTR
DESCRIPTION
The M74HC4053 is a triple two-channel analog
MULTIPLEXER/DEMULTIPLEXER
fabricated
2
MOS technology and it is pin to
with silicon gate C
pin compatible with the equivalent metal gate
CMOS4000B series.
PIN CONNECTION AND IEC LOGIC SYMBOLS
It contains 6 bidirectional and digitally controlled
analog switches.
A built-in level shifting is included to allow an input
range up to
±6V
(peak) for an analog signal with
digital control signal of 0 to 6V.
V
EE
supply pin is provided for analog input
signals. It has an inhibit (INH) input terminal to
disable all the switches when high. For operation
as a digital multiplexer/demultiplexer, VEE is
connected to GND.
A, B and C control inputs select one of a pair of
channels.
All inputs are equipped with protection circuits
against static discharge and transient excess
voltage.
May 2004
Rev. 3
1/15
M74HC4053
Table 3: Absolute Maximum Ratings
Symbol
V
CC
V
CC -
V
EE
V
I
V
I/O
I
CK
I
IOK
I
T
Supply Voltage
Supply Voltage
Control Input Voltage
Switch I/O Voltage
Control Input Diode Current
I/O Diode Current
Switch Through Current
Parameter
Value
-0.5 to +7
-0.5 to +13
-0.5 to V
CC
+ 0.5
V
EE
-0.5 to V
CC
+ 0.5
±
20
±
20
±
25
±
50
500(*)
-65 to +150
300
Unit
V
V
V
V
mA
mA
mA
mA
mW
°C
°C
I
CC
or I
GND
DC V
CC
or Ground Current
P
D
Power Dissipation
T
stg
T
L
Storage Temperature
Lead Temperature (10 sec)
Absolute Maximum Ratings are those values beyond which damage to the device may occur. Functional operation under these conditions is
not implied
(*) 500mW at 65
°
C; derate to 300mW by 10mW/
°
C from 65
°
C to 85
°
C
Table 4: Recommended Operating Conditions
Symbol
V
CC
V
EE
V
I
V
I/O
T
op
t
r
, t
f
Supply Voltage
Supply Voltage
Input Voltage
I/O Voltage
Operating Temperature
Input Rise and Fall Time
V
CC
= 2.0V
V
CC
= 4.5V
V
CC
= 6.0V
Parameter
Value
2 to 6
-6 to 0
2 to 12
0 to V
CC
V
EE
to V
CC
-55 to 125
0 to 1000
0 to 500
0 to 400
ns
Unit
V
V
V
V
V
°C
V
CC
- V
EE
Supply Voltage
3/15
M74HC4053
Table 6: AC Electrical Characteristics
(C
L
= 50 pF, Input t
r
= t
f
= 6ns)
Test Condition
Symbol
Parameter
V
CC
(V)
2.0
4.5
6.0
4.5
2.0
4.5
6.0
4.5
2.0
4.5
6.0
4.5
V
EE
(V)
GND
GND
GND
-4.5
GND
GND
GND
-4.5
GND
GND
GND
-4.5
T
A
= 25°C
Min.
Value
-40 to 85°C -55 to 125°C
Min.
Max.
90
18
15
340
68
58
340
68
58
Unit
Typ. Max. Min. Max.
25
6
5
4
50
14
12
14
95
30
26
26
60
12
10
225
45
38
225
45
38
75
15
13
280
56
48
280
56
48
Φ
I/O
Phase Difference
Between Input and
Output
ns
t
PZL
t
PZH
Output Enable
Time
R
L
= 1KΩ
ns
t
PLZ
t
PHZ
Output Disable
Time
R
L
= 1KΩ
ns
Table 7: Capacitive Characteristics
Test Condition
Symbol
Parameter
V
CC
(V)
5.0
5.0
5.0
5.0
5.0
-5.0
-5.0
-5.0
GND
V
EE
(V)
T
A
= 25°C
Min.
Value
-40 to 85°C -55 to 125°C
Min.
Max.
10
20
15
2
pF
pF
pF
pF
pF
Unit
Typ. Max. Min. Max.
5
11
7
0.75
67
10
20
15
2
10
20
15
2
C
IN
C
I/O
C
I/O
C
IOS
C
PD
Input Capacitance
Common Terminal
Capacitance
Switch Terminal
Capacitance
Feed Through
Capacitance
Power Dissipation
Capacitance
(note 1)
1) C
PD
is defined as the value of the IC’s internal equivalent capacitance which is calculated from the operating current consumption without
load. (Refer to Test Circuit). Average operating current can be obtained by the following equation. I
CC(opr)
= C
PD
x V
CC
x f
IN
+ I
CC
5/15