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74HC4066DB Datenblatt(PDF) 9 Page - NXP Semiconductors

Teilenummer 74HC4066DB
Bauteilbeschribung  Quad single-pole single-throw analog switch
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Hersteller  NXP [NXP Semiconductors]
Direct Link  http://www.nxp.com
Logo NXP - NXP Semiconductors

74HC4066DB Datenblatt(HTML) 9 Page - NXP Semiconductors

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74HC_HCT4066
All information provided in this document is subject to legal disclaimers.
© NXP B.V. 2013. All rights reserved.
Product data sheet
Rev. 7 — 2 April 2013
9 of 25
NXP Semiconductors
74HC4066; 74HCT4066
Quad single-pole single-throw analog switch
10. Dynamic characteristics
[1]
Typical values are measured at Tamb = 25 C.
[2]
tpd is the same as tPHL and tPLH.
[3]
ton is the same as tPHZ and tPLZ.
Vis = VCC and Vos = GND
Vis = GND and Vos = VCC
Vis = VCC and Vos = open
Vis = GND and Vos = open
Fig 8.
Test circuit for measuring OFF-state leakage
current
Fig 9.
Test circuit for measuring ON-state leakage
current
ISW
ISW
aaa-003456
VIL
Z
VCC
Yn
E
Vos
Vis
GND
ISW
aaa-003457
VIH
ZYn
E
Vos
Vis
GND
VCC
Table 9.
Dynamic characteristics 74HC4066
GND = 0 V; tr = tf = 6 ns; CL = 50 pF unless specified otherwise; for test circuit see Figure 12.
Vis is the input voltage at a Yn or Z terminal, whichever is assigned as an input.
Vos is the output voltage at a Yn or Z terminal, whichever is assigned as an output.
Symbol Parameter
Conditions
40 C to +85 C
40 C to +125 C Unit
Min
Typ[1]
Max
Min
Max
tpd
propagation delay
nY to nZ or nZ to nY; RL =  ;
see Figure 10
[2]
VCC = 2.0 V
-
8
75
-
90
ns
VCC = 4.5 V
-
3
15
-
18
ns
VCC = 6.0 V
-
2
13
-
15
ns
VCC = 9.0 V
-
2
10
-
12
ns
toff
turn-off time
nE to nY or nZ; see Figure 11
[4]
VCC = 2.0 V
-
44
190
-
225
ns
VCC = 4.5 V
-
16
38
-
45
ns
VCC = 5.0 V; CL = 15 pF
-
13
-
-
-
ns
VCC = 6.0 V
-
13
33
-
38
ns
VCC = 9.0 V
-
16
26
-
30
ns
ton
turn-on time
nE to nY or nZ; see Figure 11
[3]
VCC = 2.0 V
-
36
125
-
150
ns
VCC = 4.5 V
-
13
25
-
30
ns
VCC = 5.0 V; CL = 15 pF
-
11
-
-
-
ns
VCC = 6.0 V
-
10
21
-
26
ns
VCC = 9.0 V
-
8
16
-
20
ns
CPD
power dissipation
capacitance
per switch; VI = GND to VCC
[5]
11
-
-
-
pF


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