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MC74HC4066A
http://onsemi.com
4
DC ELECTRICAL CHARACTERISTICS Analog Section (Voltages Referenced to GND)
Symbol
Parameter
Test Conditions
VCC
V
Guaranteed Limit
Unit
– 55 to
25°C
v 85°C
v 125°C
Ron
Maximum “ON” Resistance
Vin = VIH
VIS = VCC to GND
IS v 2.0 mA (Figures 1, 2)
2.0
3.0
4.5
9.0
12.0
120
70
160
85
200
100
W
Vin = VIH
VIS = VCC or GND
(Endpoints)
IS v 2.0 mA (Figures 1, 2)
2.0
3.0
4.5
9.0
12.0
70
50
85
60
120
80
DRon
Maximum Difference in “ON”
Resistance Between Any Two
Channels in the Same Package
Vin = VIH
VIS = 1/2 (VCC GND)
IS v 2.0 mA
2.0
4.5
9.0
12.0
20
15
25
20
30
25
W
Ioff
Maximum OffChannel Leakage
Current, Any One Channel
Vin = VIL
VIO = VCC or GND
Switch Off (Figure 3)
12.0
0.1
0.5
1.0
mA
Ion
Maximum OnChannel Leakage
Current, Any One Channel
Vin = VIH
VIS = VCC or GND
(Figure 4)
12.0
0.1
0.5
1.0
mA
Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product
performance may not be indicated by the Electrical Characteristics if operated under different conditions.
At supply voltage (VCC) approaching 3 V the analog switchon resistance becomes extremely nonlinear. Therefore, for lowvoltage
operation, it is recommended that these devices only be used to control digital signals.
AC ELECTRICAL CHARACTERISTICS (CL = 50 pF, ON/OFF Control Inputs: tr = tf = 6 ns)
Symbol
Parameter
VCC
V
Guaranteed Limit
Unit
– 55 to
25°C
v 85°C
v 125°C
tPLH,
tPHL
Maximum Propagation Delay, Analog Input to Analog Output
(Figures 8 and 9)
2.0
3.0
4.5
9.0
12.0
40
30
10
50
40
13
60
50
15
ns
tPLZ,
tPHZ
Maximum Propagation Delay, ON/OFF Control to Analog Output
(Figures 10 and 11)
2.0
3.0
4.5
9.0
12.0
80
60
30
25
90
70
38
28
110
80
45
30
ns
tPZL,
tPZH
Maximum Propagation Delay, ON/OFF Control to Analog Output
(Figures 10 and 1 1)
2.0
3.0
4.5
9.0
12.0
80
45
25
90
50
32
100
60
37
ns
C
Maximum Capacitance
ON/OFF Control Input
10
10
10
pF
Control Input = GND
Analog I/O
Feedthrough
35
1.0
35
1.0
35
1.0
CPD
Power Dissipation Capacitance (Per Switch) (Figure 13)*
Typical @ 25°C, VCC = 5.0 V
pF
15
* Used to determine the noload dynamic power consumption: PD = CPD VCC2f + ICC VCC.