CD4051BM CD4051BC CD4052BM CD4052BC CD4053BM CD4053BC
Analog Multiplexer Demultiplexers
October 1989
CD4051BM CD4051BC Single 8-Channel Analog
Multiplexer Demultiplexer
CD4052BM CD4052BC Dual 4-Channel Analog
Multiplexer Demultiplexer
CD4053BM CD4053BC Triple 2-Channel Analog
Multiplexer Demultiplexer
General Description
These analog multiplexers demultiplexers are digitally con-
trolled analog switches having low ‘‘ON’’ impedance and
very low ‘‘OFF’’ leakage currents Control of analog signals
up to 15V
p-p
can be achieved by digital signal amplitudes of
3–15V For example if V
DD
e
5V V
SS
e
0V and V
EE
eb
5V
analog signals from
b
5V to
a
5V can be controlled by digi-
tal inputs of 0–5V The multiplexer circuits dissipate ex-
tremely low quiescent power over the full V
DD
b
V
SS
and
V
DD
b
V
EE
supply voltage ranges independent of the logic
state of the control signals When a logical ‘‘1’’ is present at
the inhibit input terminal all channels are ‘‘OFF’’
CD4051BM CD4051BC is a single 8-channel multiplexer
having three binary control inputs A B and C and an inhibit
input The three binary signals select 1 of 8 channels to be
turned ‘‘ON’’ and connect the input to the output
CD4052BM CD4052BC is a differential 4-channel multiplex-
er having two binary control inputs A and B and an inhibit
input The two binary input signals select 1 or 4 pairs of
channels to be turned on and connect the differential ana-
log inputs to the differential outputs
CD4053BM CD4053BC is a triple 2-channel multiplexer
having three separate digital control inputs A B and C and
an inhibit input Each control input selects one of a pair of
channels which are connected in a single-pole double-throw
configuration
Features
Y
Y
Y
Y
Y
Y
Y
Wide range of digital and analog signal levels digital
3 – 15V analog to 15V
p-p
Low ‘‘ON’’ resistance 80X (typ ) over entire 15V
p-p
sig-
nal-input range for V
DD
b
V
EE
e
15V
High ‘‘OFF’’ resistance channel leakage of
g
10 pA
(typ ) at V
DD
b
V
EE
e
10V
Logic level conversion for digital addressing signals of
3 – 15V (V
DD
b
V
SS
e
3– 15V) to switch analog signals to
15 V
p-p
(V
DD
b
V
EE
e
15V)
Matched switch characteristics
DR
ON
e
5X (typ ) for
V
DD
b
V
EE
e
15V
Very low quiescent power dissipation under all digital-
control input and supply conditions 1
mW
(typ ) at
V
DD
b
V
SS
e
V
DD
b
V
EE
e
10V
Binary address decoding on chip
Connection Diagrams
Dual-In-Line Packages
CD4051BM CD4051BC
CD4052BM CD4052BC
CD4053BM CD4053BC
TL F 5662 – 1
Order Number CD4051B CD4052B or CD4053B
C
1995 National Semiconductor Corporation
TL F 5662
RRD-B30M105 Printed in U S A
Absolute Maximum Ratings
If Military Aerospace specified devices are required
please contact the National Semiconductor Sales
Office Distributors for availability and specifications
b
0 5 V
DC
to
a
18 V
DC
DC Supply Voltage (V
DD
)
b
0 5 V
DC
to V
DD
a
0 5 V
DC
Input Voltage (V
IN
)
b
65 C to
a
150 C
Storage Temperature Range (T
S
)
Power Dissipation (P
D
)
Dual-In-Line
700 mW
Small Outline
500 mW
Lead Temp (T
L
) (soldering 10 sec )
260 C
Recommended Operating
Conditions
DC Supply Voltage (V
DD
)
Input Voltage (V
IN
)
Operating Temperature Range (T
A
)
4051BM 4052BM 4053BM
4051BC 4052BC 4053BC
a
5 V
DC
to
a
15 V
DC
0V to V
DD
V
DC
b
55 C to
a
125 C
b
40 C to
a
85 C
DC Electrical Characteristics
(Note 2)
Symbol
I
DD
Parameter
Quiescent Device Current V
DD
e
5V
V
DD
e
10V
V
DD
e
15V
‘‘ON’’ Resistance (Peak
for V
EE
s
V
IS
s
V
DD
)
R
L
e
10 kX
(any channel
selected)
V
DD
e
2 5V
V
EE
eb
2 5V
or V
DD
e
5V
V
EE
e
0V
V
DD
e
5V
V
EE
eb
5V
or V
DD
e
10V
V
EE
e
0V
V
DD
e
7 5V
V
EE
eb
7 5V
or V
DD
e
15V
V
EE
e
0V
DR
ON
D‘‘ON’’
Resistance
Between Any Two
Channels
R
L
e
10 kX
(any channel
selected)
V
DD
e
2 5V
V
EE
eb
2 5V
or V
DD
e
5V
V
EE
e
0V
V
DD
e
5V
V
EE
eb
5V
or V
DD
e
10V
V
EE
e
0V
V
DD
e
7 5V
V
EE
eb
7 5V
or V
DD
e
15V
V
EE
e
0V
‘‘OFF’’ Channel Leakage
Current any channel
‘‘OFF’’
‘‘OFF’’ Channel Leakage
Current all channels
‘‘OFF’’ (Common
OUT IN)
Control Inputs A B C and Inhibit
V
IL
Low Level Input Voltage
V
EE
e
V
SS
R
L
e
1 kX to V
SS
I
IS
k
2
mA
on all OFF channels
V
IS
e
V
DD
thru 1 kX
V
DD
e
5V
V
DD
e
10V
V
DD
e
15V
V
DD
e
5
V
DD
e
10
V
DD
e
15
35
7
11
V
DD
e
7 5V
V
EE
eb
7 5V
e
g
7 5V I O
e
0V
O I
Inhibit
e
7 5V
V
DD
e
7 5V
V
EE
eb
7 5V
O I
e
0V
I O
e
g
7 5V
CD4051
CD4052
CD4053
g
50
g
200
g
200
g
200
Conditions
b
55 C
a
25
a
125 C
Units
mA
mA
mA
Min
Max
5
10
20
Min
Typ
Max
5
10
20
Min
Max
150
300
600
Signal Inputs (V
IS
) and Outputs (V
OS
)
R
ON
800
270
1050
1300
X
310
120
400
550
X
200
80
240
320
X
10
X
10
X
5
X
g
0 01
g
0 08
g
0 04
g
0 02
g
50
g
200
g
200
g
200
g
500
g
2000
g
2000
g
2000
nA
nA
nA
nA
15
30
40
35
7
11
15
30
40
35
7
11
15
30
40
V
V
V
V
V
V
V
IH
High Level Input Voltage
Note 1
‘‘Absolute Maximum Ratings’’ are those values beyond which the safety of the device cannot be guaranteed Except for ‘‘Operating Temperature Range’’
they are not meant to imply that the devices should be operated at these limits The table of ‘‘Electrical Characteristics’’ provides conditions for actual device
operation
Note 2
All voltages measured with respect to V
SS
unless otherwise specified
2
DC Electrical Characteristics
Symbol
I
IN
Parameter
Input Current
(Note 2) (Continued)
Conditions
b
40 C
a
25 C
a
85 C
Units
Min
V
DD
e
15V
V
IN
e
0V
V
DD
e
15V
V
IN
e
15V
V
DD
e
5V
V
DD
e
10V
V
DD
e
15V
R
L
e
10 kX
(any channel
selected)
V
DD
e
2 5V
V
EE
eb
2 5V
or V
DD
e
5V
V
EE
e
0V
V
DD
e
5V
V
EE
eb
5V
or V
DD
e
10V
V
EE
e
0V
V
DD
e
7 5V
V
EE
eb
7 5V
or V
DD
e
15V
V
EE
e
0V
DR
ON
D‘‘ON’’
Resistance
Between Any Two
Channels
R
L
e
10 kX
(any channel
selected)
V
DD
e
2 5V
V
EE
eb
2 5V
or V
DD
e
5V
V
EE
e
0V
V
DD
e
5V
V
EE
eb
5V
or V
DD
e
10V
V
EE
e
0V
V
DD
e
7 5V
V
EE
eb
7 5V
or V
DD
e
15V
V
EE
e
0V
‘‘OFF’’ Channel Leakage
V
DD
e
7 5V
V
EE
eb
7 5V
e
g
7 5V I O
e
0V
Current any channel ‘‘OFF’’ O I
‘‘OFF’’ Channel Leakage
Current all channels
‘‘OFF’’ (Common
OUT IN)
Control Inputs A B C and Inhibit
V
IL
Low Level Input Voltage
V
EE
e
V
SS
R
L
e
1 kX to V
SS
I
IS
k
2
mA
on all OFF Channels
V
IS
e
V
DD
thru 1 kX
V
DD
e
5V
V
DD
e
10V
V
DD
e
15V
V
DD
e
5
V
DD
e
10
V
DD
e
15
V
DD
e
15V
V
IN
e
0V
V
DD
e
15V
V
IN
e
15V
V
EE
e
0V
V
EE
e
0V
35
7
11
Inhibit
e
7 5V
V
DD
e
7 5V
V
EE
eb
7 5V
O I
e
0V
I O
e
g
7 5V
CD4051
CD4052
CD4053
V
EE
e
0V
V
EE
e
0V
Max
b
0 1
Min
Typ
b
10
b
5
Max
b
0 1
Min
Max
b
1 0
mA
mA
mA
mA
mA
01
20
40
80
10
b
5
01
20
40
80
10
150
300
600
I
DD
Quiescent Device Current
Signal Inputs (V
IS
) and Outputs (V
OS
)
R
ON
‘‘ON’’ Resistance (Peak
for V
EE
s
V
IS
s
V
DD
)
850
270
1050
1200
X
330
120
400
520
X
210
80
240
300
X
10
X
10
X
5
X
g
50
g
200
g
200
g
200
g
0 01
g
0 08
g
0 04
g
0 02
g
50
g
200
g
200
g
200
g
500
g
2000
g
2000
g
2000
nA
nA
nA
nA
15
30
40
35
7
11
b
0 1
b
10
b
5
15
30
40
35
7
11
b
0 1
15
30
40
V
V
V
V
V
V
V
IH
High Level Input Voltage
I
IN
Input Current
b
1 0
mA
mA
01
10
b
5
01
10
Note 1
‘‘Absolute Maximum Ratings’’ are those values beyond which the safety of the device cannot be guaranteed Except for ‘‘Operating Temperature Range’’
they are not meant to imply that the devices should be operated at these limits The table of ‘‘Electrical Characteristics’’ provides conditions for actual device
operation
Note 2
All voltages measured with respect to V
SS
unless otherwise specified
3
AC Electrical Characteristics
Symbol
t
PZH
t
PZL
t
PHZ
t
PLZ
C
IN
Parameter
Propagation Delay Time from
Inhibit to Signal Output
(channel turning on)
Propagation Delay Time from
Inhibit to Signal Output
(channel turning off)
Input Capacitance
Control input
Signal Input (IN OUT)
Output Capacitance
(common OUT IN)
CD4051
CD4052
CD4053
C
IOS
C
PD
Feedthrough Capacitance
Power Dissipation Capacitance
CD4051
CD4052
CD4053
Signal Inputs (V
IS
) and Outputs (V
OS
)
Sine Wave Response
(Distortion)
T
A
e
25 C t
r
e
t
f
e
20 ns unless otherwise specified
Conditions
V
DD
5V
10V
15V
5V
10V
15V
Min
Typ
600
225
160
210
100
75
5
10
Max
1200
450
320
420
200
150
75
15
Units
ns
ns
ns
ns
ns
ns
pF
pF
V
EE
e
V
SS
e
0V
R
L
e
1 kX
C
L
e
50 pF
V
EE
e
V
SS
e
0V
R
L
e
1 kX
C
L
e
50 pF
C
OUT
V
EE
e
V
SS
e
0V
10V
10V
10V
30
15
8
02
pF
pF
pF
pF
110
140
70
pF
pF
pF
R
L
e
10 kX
f
IS
e
1 kHz
V
IS
e
5 V
p-p
V
EE
e
V
SI
e
0V
R
L
e
1 kX V
EE
e
0V V
IS
e
5V
p-p
20 log
10
V
OS
V
IS
eb
3 dB
R
L
e
1 kX V
EE
e
V
SS
e
0V V
IS
e
5V
p-p
20 log
10
V
OS
V
IS
eb
40 dB
R
L
e
1 kX V
EE
e
V
SS
e
0V V
IS
(A)
e
5V
p-p
20 log
10
V
OS
(B) V
IS
(A)
eb
40 dB (Note 3)
V
EE
e
V
SS
e
0V
C
L
e
50 pF
10V
0 04
%
Frequency Response Channel
‘‘ON’’ (Sine Wave Input)
Feedthrough Channel ‘‘OFF’’
Crosstalk Between Any Two
Channels (frequency at 40 dB)
t
PHL
t
PLH
Propagation Delay Signal
Input to Signal Output
10V
10V
10V
5V
10V
15V
40
10
3
25
15
10
55
35
25
MHz
MHz
MHz
ns
ns
ns
Control Inputs A B C and Inhibit
Control Input to Signal
Crosstalk
t
PHL
t
PLH
Propagation Delay Time from
Address to Signal Output
(channels ‘‘ON’’ or ‘‘OFF’’)
V
EE
e
V
SS
e
0V R
L
e
10 kX at both ends
of channel
Input Square Wave Amplitude
e
10V
V
EE
e
V
SS
e
0V
C
L
e
50 pF
10V
5V
10V
15V
65
500
180
120
1000
360
240
mV (peak)
ns
ns
ns
AC Parameters are guaranteed by DC correlated testing
Note 3
A B are two arbitrary channels with A turned ‘‘ON’’ and B ‘‘OFF’’
4