
AC Electrical Characteristics
*
T
A
e
25
§
C, t
r
e
t
f
e
20 ns, unless otherwise specified.
Symbol
Parameter
Conditions
V
DD
Min
Typ
Max
Units
t
PZH,
t
PZL
Propagation Delay Time from
Inhibit to Signal Output
(channel turning on)
V
EE
e
V
SS
e
0V
R
L
e
1 k
X
C
L
e
50 pF
5V
10V
15V
600
225
160
1200
450
320
ns
ns
ns
t
PHZ,
t
PLZ
Propagation Delay Time from
Inhibit to Signal Output
(channel turning off)
V
EE
e
V
SS
e
0V
R
L
e
1 k
X
C
L
e
50 pF
5V
10V
15V
210
100
75
420
200
150
ns
ns
ns
C
IN
Input Capacitance
Control input
Signal Input (IN/OUT)
5
10
7.5
15
pF
pF
C
OUT
Output Capacitance
(common OUT/IN)
CD4051
CD4052
CD4053
10V
10V
10V
30
15
8
pF
pF
pF
V
EE
e
V
SS
e
0V
C
IOS
Feedthrough Capacitance
0.2
pF
C
PD
Power Dissipation Capacitance
CD4051
CD4052
CD4053
110
140
70
pF
pF
pF
Signal Inputs (V
IS
) and Outputs (V
OS
)
Sine Wave Response
(Distortion)
R
L
e
10 k
X
f
IS
e
1 kHz
V
IS
e
5 V
p-p
V
EE
e
V
SI
e
0V
10V
0.04
%
Frequency Response, Channel
‘‘ON’’ (Sine Wave Input)
R
L
e
1 k
X
, V
EE
e
0V, V
IS
e
5V
p-p
,
20 log
10
V
OS
/V
IS
eb
3 dB
10V
40
MHz
Feedthrough, Channel ‘‘OFF’’
R
L
e
1 k
X
, V
EE
e
V
SS
e
0V, V
IS
e
5V
p-p
,
20 log
10
V
OS
/V
IS
eb
40 dB
10V
10
MHz
Crosstalk Between Any Two
Channels (frequency at 40 dB)
R
L
e
1 k
X
, 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)
10V
3
MHz
t
PHL
t
PLH
Propagation Delay Signal
Input to Signal Output
V
EE
e
V
SS
e
0V
C
L
e
50 pF
5V
10V
15V
25
15
10
55
35
25
ns
ns
ns
Control Inputs, A, B, C and Inhibit
Control Input to Signal
Crosstalk
V
EE
e
V
SS
e
0V, R
L
e
10 k
X
at both ends
of channel.
Input Square Wave Amplitude
e
10V
10V
65
mV (peak)
t
PHL,
t
PLH
Propagation Delay Time from
Address to Signal Output
(channels ‘‘ON’’ or ‘‘OFF’’)
V
EE
e
V
SS
e
0V
C
L
e
50 pF
5V
10V
15V
500
180
120
1000
360
240
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