HITACHI HD74AC138

HD74AC138/HD74ACT138
1-of-8 Decoder/Demultiplexer
Description
The HD74AC138/HD74ACT138 is a high-speed 1-of-8 decoder/demultiplexer. This device is ideally
suited for high-speed bipolar memory chip select address decoding. The multiple input enables allow
parallel expansion to a 1-of-24 decoder using just three HD74AC138/HD74ACT138 devices or a 1-of-32
decoder using four HD74AC138/HD74ACT138 devices and one inverter.
Features
•
•
•
•
•
Demultiplexing Capability
Multiple Input Enable for Easy Expansion
Active LOW Mutually Exclusive Outputs
Outputs Source/Sink 24 mA
HD74ACT138 has TTL-Compatible Inputs
HD74AC138/HD74ACT138
Pin Arrangement
A0 1
16 VCC
A1 2
15 O0
A2 3
14 O1
E1 4
13 O2
E2 5
12 O3
E3 6
11 O4
O7 7
10 O5
GND 8
9 O6
(Top view)
Logic Symbol
A0 A1 A2
E1
E2 E3
O0 O1 O2 O3 O4 O5 O6 O7
Pin Names
A0 to A2
E1 to E 2
E3
O0 to O 7
2
Address Inputs
Enable Inputs
Enable Input
Outputs
HD74AC138/HD74ACT138
Functional Description
The HD74AC138/HD74ACT138 high-speed 1-of-8 decoder/demultiplexer accepts three binary weighted
inputs (A0, A1, A2) and, when enabled, provides eight mutually exclusive active-LOW outputs (O0 to O7).
The HD74AC138/HD74ACT138 features three Enable inputs, two active-Low (E1, E2) and one active-High
(E3). All outputs will be High unless E1 and E2 are Low and E 3 is High. This multiple enabled function
allows easy parallel expansion of the device to a 1-of-32 (5 lines to 32 lines) decoder with just four
HD74AC138/HD74ACT138 devices and one inverter (See Figure a). The HD74AC138/HD74ACT138
can be used as an 8-output demultiplexer by using one of the active Low Enable inputs as the data input
and the other Enable inputs as strobes. The Enables inputs which are not used must be permanently tied to
their appropriate active-High or active-Low state.
Truth Table
Inputs
Outputs
E1
E2
E3
A0
A1
A2
O0
O1
O2
O3
O4
O5
O6
O7
H
X
X
X
X
X
H
H
H
H
H
H
H
H
X
H
X
X
X
X
H
H
H
H
H
H
H
H
X
X
L
X
X
X
H
H
H
H
H
H
H
H
L
L
H
L
L
L
L
H
H
H
H
H
H
H
L
L
H
H
L
L
H
L
H
H
H
H
H
H
L
L
H
L
H
L
H
H
L
H
H
H
H
H
L
L
H
H
H
L
H
H
H
L
H
H
H
H
L
L
H
L
L
H
H
H
H
H
L
H
H
H
L
L
H
H
L
H
H
H
H
H
H
L
H
H
L
L
H
L
H
H
H
H
H
H
H
H
L
H
L
L
H
H
H
H
H
H
H
H
H
H
H
L
H :
L :
X :
High Voltage Level
Low Voltage Level
Immaterial
3
HD74AC138/HD74ACT138
Logic Diagram
A2
O7
A1
E1 E2 E3
A0
O6
O5
O4
O3
O2
O1
O0
Please note that this diagram is provided only for the understanding of logic operations and should not be
used to estimate propagation delays.
Figure a: Expansion of 1-of-32 Decoding
A0
A1
A2
’04
A3
A4
H
123
A0 A1 A2
E
O0 O1 O2 O3 O4 O5 O6 O7
O0
4
123
123
A0 A1 A2
E
O0 O1 O2 O3 O4 O5 O6 O7
A0 A1 A2
E
O0 O1 O2 O3 O4 O5 O6 O7
123
A0 A1 A2
E
O0 O1 O2 O3 O4 O5 O6 O7
O31
HD74AC138/HD74ACT138
DC Characteristics (unless otherwise specified)
Item
Symbol
Max
Unit
Condition
Maximum quiescent supply current
I CC
80
µA
VIN = VCC or ground, VCC = 5.5 V,
Ta = Worst case
Maximum quiescent supply current
I CC
8.0
µA
VIN = VCC or ground, VCC = 5.5 V,
Ta = 25°C
Maximum ICC/input (HD74ACT138)
I CCT
1.5
mA
VIN = VCC – 2.1 V, VCC = 5.5 V
Ta = Worst case
AC Characteristics: HD74AC138
Ta = +25°C
CL = 50 pF
Ta = –40°C to +85°C
CL = 50 pF
Item
Symbol
VCC (V)*1
Min
Typ
Max
Min
Max
Unit
Propagation delay
t PLH
3.3
1.0
8.5
13.0
1.0
15.0
ns
5.0
1.0
6.5
9.5
1.0
10.5
3.3
1.0
8.0
12.5
1.0
14.0
5.0
1.0
6.0
9.0
1.0
10.5
3.3
1.0
11.0
15.0
1.0
16.0
5.0
1.0
8.0
11.0
1.0
12.0
3.3
1.0
9.5
13.5
1.0
15.0
5.0
1.0
7.0
9.5
1.0
10.5
3.3
1.0
11.0
15.5
1.0
16.5
5.0
1.0
8.0
11.0
1.0
12.5
3.3
1.0
8.5
13.0
1.0
14.0
5.0
1.0
6.0
8.0
1.0
9.5
An to On
Propagation delay
t PHL
An to On
Propagation delay
t PLH
E1 or E 2 to On
Propagation delay
t PHL
E1 or E 2 to On
Propagation delay
t PLH
E3 to On
Propagation delay
E3 to On
Note:
t PHL
ns
ns
ns
ns
ns
1. Voltage Range 3.3 is 3.3 V ± 0.3 V
Voltage Range 5.0 is 5.0 V ± 0.5 V
5
HD74AC138/HD74ACT138
AC Characteristics: HD74ACT138
Ta = +25°C
CL = 50 pF
Ta = –40°C to +85°C
CL = 50 pF
Item
Symbol
VCC (V)*1
Min
Typ
Max
Min
Max
Unit
Propagation delay
An to On
t PLH
5.0
1.0
7.0
10.5
1.0
11.5
ns
Propagation delay
An to On
t PHL
5.0
1.0
6.5
10.5
1.0
11.5
ns
Propagation delay
E1 or E 2 to On
t PLH
5.0
1.0
8.0
11.5
1.0
12.5
ns
Propagation delay
E1 or E 2 to On
t PHL
5.0
1.0
7.5
11.5
1.0
12.5
ns
Propagation delay
E3 to On
t PLH
5.0
1.0
8.0
12.0
1.0
13.0
ns
Propagation delay
E3 to On
t PHL
5.0
1.0
6.5
10.5
1.0
11.5
ns
Note:
1. Voltage Range 5.0 is 5.0 V ± 0.5 V
Capacitance
Item
Symbol
Typ
Unit
Condition
Input capacitance
CIN
4.5
pF
VCC = 5.5 V
Power dissipation capacitance
CPD
60.0
pF
VCC = 5.0 V
6
Unit: mm
19.20
20.00 Max
1
7.40 Max
9
6.30
16
8
1.3
0.48 ± 0.10
2.54 Min 5.06 Max
2.54 ± 0.25
0.51 Min
1.11 Max
7.62
+ 0.13
0.25 – 0.05
0° – 15°
Hitachi Code
JEDEC
EIAJ
Weight (reference value)
DP-16
Conforms
Conforms
1.07 g
Unit: mm
10.06
10.5 Max
9
1
8
1.27
*0.42 ± 0.08
0.40 ± 0.06
0.10 ± 0.10
0.80 Max
*0.22 ± 0.05
0.20 ± 0.04
2.20 Max
5.5
16
0.20
7.80 +– 0.30
1.15
0° – 8°
0.70 ± 0.20
0.15
0.12 M
*Dimension including the plating thickness
Base material dimension
Hitachi Code
JEDEC
EIAJ
Weight (reference value)
FP-16DA
—
Conforms
0.24 g
Unit: mm
9.9
10.3 Max
9
1
8
0.635 Max
*0.42 ± 0.08
0.40 ± 0.06
0.15
*0.22 ± 0.03
0.20 ± 0.03
1.27
0.11
0.14 +– 0.04
1.75 Max
3.95
16
0.10
6.10 +– 0.30
1.08
0° – 8°
0.67
0.60 +– 0.20
0.25 M
*Dimension including the plating thickness
Base material dimension
Hitachi Code
JEDEC
EIAJ
Weight (reference value)
FP-16DN
Conforms
Conforms
0.15 g
Unit: mm
4.40
5.00
5.30 Max
16
9
1
8
0.65
0.13 M
1.10 Max
0.65 Max
0.10
*Dimension including the plating thickness
Base material dimension
6.40 ± 0.20
0.07 +0.03
–0.04
0.20 ± 0.06
1.0
*0.17 ± 0.05
0.15 ± 0.04
0.08
*0.22 +– 0.07
0° – 8°
0.50 ± 0.10
Hitachi Code
JEDEC
EIAJ
Weight (reference value)
TTP-16DA
—
—
0.05 g
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received the latest product standards or specifications before final design, purchase or use.
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contact Hitachi’s sales office before using the product in an application that demands especially high
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4. Design your application so that the product is used within the ranges guaranteed by Hitachi particularly
for maximum rating, operating supply voltage range, heat radiation characteristics, installation
conditions and other characteristics. Hitachi bears no responsibility for failure or damage when used
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