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PDF 74AHC1G66GW Data sheet ( Hoja de datos )

Número de pieza 74AHC1G66GW
Descripción Bilateral switch
Fabricantes NXP Semiconductors 
Logotipo NXP Semiconductors Logotipo



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INTEGRATED CIRCUITS
DATA SHEET
74AHC1G66; 74AHCT1G66
Bilateral switch
Product specification
Supersedes data of 2002 Feb 15
2002 Jun 06

1 page




74AHC1G66GW pdf
Philips Semiconductors
Bilateral switch
Product specification
74AHC1G66; 74AHCT1G66
RECOMMENDED OPERATING CONDITIONS
SYMBOL
VCC
VI
VS
Tamb
tr, tf
PARAMETER
CONDITIONS
74AHC1G66
74AHCT1G66
UNIT
MIN. TYP. MAX. MIN. TYP. MAX.
supply voltage
input voltage
switch voltage
operating ambient
temperature
2.0 5.0 5.5 4.5 5.0 5.5 V
0 5.5 0 5.5 V
0 VCC 0 VCC V
see DC and AC 40 +25 +125 40 +25 +125 °C
characteristics per
device
input rise and fall times VCC = 3.3 ±0.3 V − − 100 − − − ns/V
VCC = 5.0 ±0.5 V − − 20 − − 20 ns/V
LIMITING VALUES
In accordance with the Absolute Maximum Rating System (IEC 60134); voltages are referenced to GND (ground = 0 V);
note 1.
SYMBOL
VCC
IIK
ISK
IS
ICC, IGND
Tstg
PD
PARAMETER
supply voltage
input diode current
switch diode current
switch source or sink current
VCC or GND current
storage temperature
power dissipation per package
CONDITIONS
VI < 0.5 V or VI > VCC + 0.5 V
VS < 0.5 V or VS > VCC + 0.5 V
0.5 V < VO < VCC + 0.5 V
for temperature range from 40 to +125 °C
MIN.
0.5
65
MAX. UNIT
+7.0
20
±20
±25
±75
+150
250
V
mA
mA
mA
mA
°C
mW
Note
1. To avoid drawing VCC current out of pin Z, when switch current flows into pin Y, the voltage drop across the
bidirectional switch must not exceed 0.4 V. If the switch current flows into pin Z, no VCC current will flow out of pin Y.
In this case there is no limit for the voltage drop across the switch, but the voltage at pins Y and Z may not exceed
VCC or GND.
2002 Jun 06
5

5 Page





74AHC1G66GW arduino
Philips Semiconductors
Bilateral switch
Product specification
74AHC1G66; 74AHCT1G66
AC CHARACTERISTICS
Type 74AHC1G66
GND = 0 V; tr = tf 3 ns.
SYMBOL PARAMETER
TEST CONDITIONS
WAVEFORMS
CL
(pF)
MIN.
25
TYP.
Tamb (°C)
40 to +85
MAX. MIN. MAX.
40 to +125 UNIT
MIN. MAX.
VCC = 2.0 V; RL = 1 k; note 1
tPHL/tPLH
tPZH/tPZL
propagation delay
Vis to Vos
turn-on time
E to Vos
see Figs 13 and 16 50
see Figs 14 and 16 15
50
tPHZ/tPLZ turn-off time
E to Vos
see Figs 14 and 16 15
50
VCC = 3.0 to 3.6 V; RL = 1 k; note 1
tPHL/tPLH
tPZH/tPZL
propagation delay
Vis to Vos
turn-on time
E to Vos
see Figs 13 and 16 50
see Figs 14 and 16 15
50
tPHZ/tPLZ turn-off time
E to Vos
see Figs 14 and 16 15
50
VCC = 4.5 to 5.5 V; RL = 1 k; note 1
tPHL/tPLH
tPZH/tPZL
propagation delay
Vis to Vos
turn-on time
E to Vos
see Figs 13 and 16 50
see Figs 14 and 16 15
50
tPHZ/tPLZ turn-off time
E to Vos
see Figs 14 and 16 15
50
2.2 5.0
7.0 25.0
11.0 35.0
9.0 25.0
13.0 35.0
1.0 2.0
4.0 11.0
5.8 15.0
6.0 11.0
8.4 15.0
0.6 1.0
3.0 8.0
4.4 11.0
5.0 8.0
6.1 11.0
6.0
33.0
46.0
33.0
46.0
3.0
14.0
20.0
14.0
20.0
2.0
10.0
13.0
10.0
13.0
7.0 ns
40.0 ns
57.0 ns
40.0 ns
57.0 ns
4.0 ns
18.0 ns
25.0 ns
18.0 ns
25.0 ns
3.0 ns
13.0 ns
17.0 ns
13.0 ns
17.0 ns
Note
1. Typical values are measured at VCC = 2.0 V; VCC = 3.3 V or VCC = 5.0 V and Tamb = 25 °C.
2002 Jun 06
11

11 Page







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