MC14066B
ELECTRICAL CHARACTERISTICS (Note 4) (CL = 50 pF, TA = 25_C unless otherwise noted.)
Characteristic
VDD
Symbol
Vdc
Typ
Min
(Note 5)
Max
Propagation Delay Times
VSS = 0 Vdc tPLH, tPHL
Input to Output (RL = 10 kW)
tPLH, tPHL = (0.17 ns/pF) CL + 15.5 ns
5.0
−
20
40
tPLH, tPHL = (0.08 ns/pF) CL + 6.0 ns
10
−
10
20
tPLH, tPHL = (0.06 ns/pF) CL + 4.0 ns
15
−
7.0
15
Control to Output (RL = 1 kW) (Figure 2)
Output “1” to High Impedance
tPHZ
5.0
−
40
80
10
−
35
70
15
−
30
60
Output “0” to High Impedance
tPLZ
5.0
−
40
80
10
−
35
70
15
−
30
60
High Impedance to Output “1”
tPZH
5.0
−
60
120
10
−
20
40
15
−
15
30
High Impedance to Output “0”
tPZL
5.0
−
60
120
10
−
20
40
15
−
15
30
Second Harmonic Distortion
VSS = – 5 Vdc
−
(Vin = 1.77 Vdc, RMS Centered @ 0.0 Vdc,
RL = 10 kW, f = 1.0 kHz)
Bandwidth (Switch ON) (Figure 3)
VSS = – 5 Vdc
−
(RL = 1 kW, 20 Log (Vout/Vin) = − 3 dB, CL = 50 pF,
Vin = 5 Vp−p)
Feedthrough Attenuation (Switch OFF)
VSS = – 5 Vdc
−
(Vin = 5 Vp−p, RL = 1 kW, fin = 1.0 MHz) (Figure 3)
Channel Separation (Figure 4)
VSS = – 5 Vdc
−
(Vin = 5 Vp−p, RL = 1 kW, fin = 8.0 MHz)
(Switch A ON, Switch B OFF)
5.0
−
0.1
−
5.0
−
65
−
5.0
−
– 50
−
5.0
−
– 50
−
Crosstalk, Control Input to Signal Output (Figure 5)
VSS = – 5 Vdc
−
(R1 = 1 kW, RL = 10 kW, Control tTLH = tTHL = 20 ns)
5.0
−
300
−
4. The formulas given are for the typical characteristics only at 25_C.
5. Data labelled “Typ” is not to be used for design purposes but is intended as an indication of the IC’s potential performance.
Unit
ns
ns
ns
ns
ns
%
MHz
dB
dB
mVp−p
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4