MC74AC157DTR2G

© Semiconductor Components Industries, LLC, 2015
January, 2015 − Rev. 8
1 Publication Order Number:
MC74AC157/D
MC74AC157, MC74ACT157
Quad 2-Input Multiplexer
The MC74AC157/74ACT157 is a high−speed quad 2−input
multiplexer. Four bits of data from two sources can be selected using
the common Select and Enable inputs. The four outputs present the
selected data in the true (non−inverted) form.
The MC74AC157/74ACT157 can also be used as a function
generator.
Features
Outputs Source/Sink 24 mA
ACT157 Has TTL Compatible Inputs
These are Pb−Free Devices
1516 14 13 12 11 10
21 34567
V
CC
9
8
E
I
0c
I
1c
Z
c
I
0d
I
1d
Z
d
SI
0a
I
1a
Z
a
I
0b
I
1b
Z
b
GND
Figure 1. Pinout: 16−Lead Packages Conductors
(Top View)
TRUTH TABLE
Inputs Outputs
E S I
0
I
1
Z
H X X X L
L H X L L
L H X H H
L L L X L
L L H X H
H = HIGH Voltage Level
L = LOW Voltage Level
X = Immaterial
See detailed ordering and shipping information in the package
dimensions section on page 6 of this data sheet.
ORDERING INFORMATION
FUNCTION
PIN NAMES
I
0a
−I
0d
I
1a
−I
1d
PIN
Source 0 Data Inputs
E
S
Source 0 Data Inputs
Enable Input
Select Input
Outputs
Z
a
−Z
d
www.onsemi.com
SOIC−16
D SUFFIX
CASE 751B
TSSOP−16
DT SUFFIX
CASE 948F
1
16
1
16
MARKING
DIAGRAMS
xxx = AC or ACT
A = Assembly Location
WL or L = Wafer Lot
Y = Year
WW or W = Work Week
G or G = Pb−Free Package
1
16
xxx157G
AWLYWW
xxx
157
ALYWG
G
1
16
(Note: Microdot may be in either location)
MC74AC157, MC74ACT157
www.onsemi.com
2
Figure 2. Logic Symbol
S
EI
0a
I
1a
I
0b
I
1b
Z
b
I
0c
I
1c
I
0d
I
1d
Z
a
Z
c
Z
d
FUNCTIONAL DESCRIPTION
The MC74AC157/74ACT157 is a quad 2−input
multiplexer. It selects four bits of data from two sources
under the control of a common Select input (S). The Enable
input (E
) is active−LOW. When E is HIGH, all of the outputs
(Z) are forced LOW regardless of all other inputs. The
MC74AC157/74ACT157 is the logic implementation of a
4−pole, 2−position switch where the position of the switch
is determined by the logic levels supplied to the Select input.
The logic equations for the outputs are shown below:
Z
a
= E(I
1a
S+I
0a
S)
Z
b
= E(I
1b
S+I
0b
S)
Z
c
= E(I
1c
S+I
0c
S)
Z
d
= E(I
1d
S+I
0d
S)
A common use of the MC74AC157/74ACT157 is the
moving of data from two groups of registers to four common
output busses. The particular register from which the data
comes is determined by the state of the Select input. A less
obvious use is as a function generator. The
MC74AC157/74ACT157 can generate any four of the
sixteen different functions of two variables with one
variable common. This is useful for implementing gating
functions.
Figure 3. Logic Diagram
I
0a
I
1a
I
0b
I
1b
I
0c
I
1c
I
0d
I
1d
E S
Z
a
NOTE: This diagram is provided only for the understanding of logic
operations and should not be used to estimate propagation delays.
Z
b
Z
c
Z
d
MC74AC157, MC74ACT157
www.onsemi.com
3
MAXIMUM RATINGS
Symbol Parameter Value Unit
V
CC
DC Supply Voltage *0.5 to )7.0 V
V
I
DC Input Voltage *0.5 v V
I
v V
CC
)0.5 V
V
O
DC Output Voltage (Note 1) *0.5 v V
O
v V
CC
)0.5 V
I
IK
DC Input Diode Current $20 mA
I
OK
DC Output Diode Current $50 mA
I
O
DC Output Sink/Source Current $50 mA
I
CC
DC Supply Current per Output Pin $50 mA
I
GND
DC Ground Current per Output Pin $50 mA
T
STG
Storage Temperature Range *65 to )150 °C
T
L
Lead temperature, 1 mm from Case for 10 Seconds 260 °C
T
J
Junction temperature under Bias )150 °C
q
JA
Thermal Resistance (Note 2) SOIC
TSSOP
69.1
103.8
°C/W
P
D
Power Dissipation in Still Air at 65°C (Note 3) SOIC
TSSOP
500
500
mW
MSL Moisture Sensitivity Level 1
F
R
Flammability Rating Oxygen Index: 30% − 35% UL 94 V−0 @ 0.125 in
V
ESD
ESD Withstand Voltage Human Body Model (Note 4)
Machine Model (Note 5)
Charged Device Model (Note 6)
> 2000
> 200
> 1000
V
I
Latch−Up
Latch−Up Performance Above V
CC
and Below GND at 85°C (Note 7) $100 mA
Stresses exceeding those listed in the Maximum Ratings table may damage the device. If any of these limits are exceeded, device functionality
should not be assumed, damage may occur and reliability may be affected.
1. I
O
absolute maximum rating must be observed.
2. The package thermal impedance is calculated in accordance with JESD51−7.
3. 500 mW at 65°C; derate to 300 mW by 10 mW/ from 65°C to 85°C.
4. Tested to EIA/JESD22−A114−A.
5. Tested to EIA/JESD22−A115−A.
6. Tested to JESD22−C101−A.
7. Tested to EIA/JESD78.
RECOMMENDED OPERATING CONDITIONS
Symbol Parameter Min Typ Max Unit
V
CC
Supply Voltage
AC 2.0 5.0 6.0
V
ACT 4.5 5.0 5.5
V
IN
, V
OUT
DC Input Voltage, Output Voltage (Ref. to GND) 0 V
CC
V
t
r
, t
f
Input Rise and Fall Time (Note 1)
AC Devices except Schmitt Inputs
V
CC
@ 3.0 V 150
V
CC
@ 4.5 V 40 ns/V
V
CC
@ 5.5 V 25
t
r
, t
f
Input Rise and Fall Time (Note 2)
ACT Devices except Schmitt Inputs
V
CC
@ 4.5 V 10
ns/V
V
CC
@ 5.5 V 8.0
T
J
Junction Temperature (PDIP) 140 °C
T
A
Operating Ambient Temperature Range −40 25 85 °C
I
OH
Output Current − High −24 mA
I
OL
Output Current − Low 24 mA
Functional operation above the stresses listed in the Recommended Operating Ranges is not implied. Extended exposure to stresses beyond
the Recommended Operating Ranges limits may affect device reliability.
1. V
IN
from 30% to 70% V
CC
; see individual Data Sheets for devices that differ from the typical input rise and fall times.
2. V
IN
from 0.8 V to 2.0 V; see individual Data Sheets for devices that differ from the typical input rise and fall times.

MC74AC157DTR2G

Mfr. #:
Manufacturer:
ON Semiconductor
Description:
Encoders, Decoders, Multiplexers & Demultiplexers 2-6V Quad 2-Input
Lifecycle:
New from this manufacturer.
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