NSC MM74HC242N

MM54HC242/MM74HC242
Inverting Quad TRI-STATEÉ Transceiver
MM54HC243/MM74HC243 Quad TRI-STATE Transceiver
General Description
These TRI-STATE bidirectional inverting and non-inverting
buffers utilize advanced silicon-gate CMOS technology and
are intended for two-way asynchronous communication between data buses. They have high drive current outputs
which enable high speed operation when driving large bus
capacitances. These circuits possess the low power dissipation and high noise immunity associated with CMOS circuits, but speeds comparable to low power Schottky TTL
circuits. They can also drive 15 LS-TTL loads.
The MM54HC243/MM74HC243 is a non-inverting buffer
and the MM54HC242/MM74HC242 is an inverting buffer.
Each device has one active high enable (GBA), and one
active low enable (GAB). GBA enables the A outputs and
GAB enables the B outputs. This device does not have
Schmitt trigger inputs.
All inputs are protected from damage due to static discharge by diodes to VCC and ground.
Features
Y
Y
Y
Y
Y
Y
Typical propagation delay: 12 ns
TRI-STATE outputs
Two way asynchronous communication
High output current: 6 mA (74HC)
Wide power supply range: 2 – 6V
Low quiescent supply current: 80 mA (74HC)
Connection Diagrams
Dual-In-Line Package
Dual-In-Line Package
TL/L/5019 – 1
Top View
Order Number MM54HC242 or MM74HC242
TL/L/5019 – 2
Top View
Order Number MM54HC243 or MM74HC243
Truth Tables
’HC242
’HC243
Control Inputs
Data Port Status
Control Inputs
Data Port Status
GAB
GBA
A
B
GAB
GBA
A
B
H
L
H
L
H
H
L
L
OUTPUT
Isolated
Isolated
Input
Input
Isolated
Isolated
OUTPUT
H
L
H
L
H
H
L
L
OUTPUT
Isolated
Isolated
Input
Input
Isolated
Isolated
OUTPUT
TRI-STATEÉ is a registered trademark of National Semiconductor Corp.
C1995 National Semiconductor Corporation
TL/L/5019
RRD-B30M115/Printed in U. S. A.
MM54HC242/MM74HC242 Inverting Quad TRI-STATE Transceiver
MM54HC243/MM74HC243 Quad TRI-STATE Transceiver
January 1988
Absolute Maximum Ratings (Notes 1 & 2)
Operating Conditions
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales
Office/Distributors for availability and specifications.
Supply Voltage (VCC)
Supply Voltage (VCC)
DC Input or Output Voltage
(VIN, VOUT)
Operating Temp. Range (TA)
MM74HC
MM54HC
Input Rise or Fall Times
(tr, tf)
VCC e 2.0V
VCC e 4.5V
VCC e 6.0V
b 0.5 to a 7.0V
b 1.5 to VCC a 1.5V
DC Input Voltage (VIN)
b 0.5 to VCC a 0.5V
DC Output Voltage (VOUT)
g 20 mA
Clamp Diode Current (IIK, IOK)
g 35 mA
DC Output Current, per pin (IOUT)
g 70 mA
DC VCC or GND Current, per pin (ICC)
b 65§ C to a 150§ C
Storage Temperature Range (TSTG)
Power Dissipation (PD)
(Note 3)
600 mW
S.O. Package only
500 mW
Lead Temp. (TL) (Soldering 10 seconds)
260§ C
Min
2
0
Max
6
VCC
Units
V
V
b 40
b 55
a 85
a 125
§C
§C
1000
500
400
ns
ns
ns
DC Electrical Characteristics (Note 4)
Symbol
Parameter
Conditions
VCC
TA e 25§ C
74HC
TA eb40 to 85§ C
Typ
54HC
TA eb55 to 125§ C
Units
Guaranteed Limits
VIH
Minimum High Level
Input Voltage
2.0V
4.5V
6.0V
1.5
3.15
4.2
1.5
3.15
4.2
1.5
3.15
4.2
V
V
V
VIL
Maximum Low Level
Input Voltage**
2.0V
4.5V
6.0V
0.5
1.35
1.8
0.5
1.35
1.8
0.5
1.35
1.8
V
V
V
VOH
Minimum High Level
Output Voltage
VIN e VIH or VIL
lIOUTl s20 mA
2.0V
4.5V
6.0V
2.0
4.5
6.0
1.9
4.4
5.9
1.9
4.4
5.9
1.9
4.4
5.9
V
V
V
4.5V
6.0V
4.2
5.7
3.98
5.48
3.84
5.34
3.7
5.2
V
V
2.0V
4.5V
6.0V
0
0
0
0.1
0.1
0.1
0.1
0.1
0.1
0.1
0.1
0.1
V
V
V
VIN e VIH or VIL
lIOUTl s6.0 mA
lIOUTl s7.8 mA
4.5V
6.0V
0.2
0.2
0.26
0.26
0.33
0.33
0.4
0.4
V
V
VIN e VIH or VIL
lIOUTl s6.0 mA
lIOUTl s7.8 mA
VOL
Maximum Low Level
Output Voltage
VIN e VIH or VIL
lIOUTl s20 mA
IIN
Maximum Input
Current
VIN e VCC or GND
6.0V
g 0.1
g 1.0
g 1.0
mA
IOZ
Maximum TRI-STATE
Output Leakage Current
VOUT e VCC or GND
GAB e VIH, GBA e VIL
6.0V
g 0.5
g 5.0
g 10
mA
ICC
Maximum Quiescent
Supply Current
VIN e VCC or GND
IOUT e 0 mA
6.0V
8.0
80
160
mA
Note 1: Absolute Maximum Ratings are those values beyond which damage to the device may occur.
Note 2: Unless otherwise specified all voltages are referenced to ground.
Note 3: Power Dissipation temperature derating Ð plastic ‘‘N’’ package: b 12 mW/§ C from 65§ C to 85§ C; ceramic ‘‘J’’ package: b 12 mW/§ C from 100§ C to 125§ C.
Note 4: For a power supply of 5V g 10% the worst case output voltages (VOH, and VOL) occur for HC at 4.5V. Thus the 4.5V values should be used when
designing with this supply. Worst case VIH and VIL occur at VCC e 5.5V and 4.5V respectively. (The VIH value at 5.5V is 3.85V.) The worst case leakage current (IIN,
ICC, and IOZ) occur for CMOS at the higher voltage and so the 6.0V values should be used.
**VIL limits are currently tested at 20% of VCC. The above VIL specification (30% of VCC) will be implemented no later than Q1, CY’89.
2
AC Electrical Characteristics (MM54HC242/MM74HC242)
VCC e 5V, TA e 25§ C, tr e tf e 6 ns
Symbol
Parameter
Conditions
Typ
Guaranteed Limit
tPHL, tPLH
Maximum Propagation Delay
CL e 45 pF
12
18
Units
ns
tPZH, tPZL
Maximum Output Enable
Time to Active Output
RL e 1kX
CL e 45 pF
17
28
ns
tPHZ, tPHL
Maximum Output Disable
Time from Active Output
RL e 1 kX
CL e 5 pF
15
25
ns
AC Electrical Characteristics (MM54HC242/MM74HC242, MM54HC243/MM74HC243)
VCC e 2.0V to 6.0V, CL e 50 pF, tr e tf e 6 ns (unless otherwise specified)
TA e 25§ C
Symbol
Parameter
Conditions
VCC
Typ
tPHL, tPLH
tPZH, tPZL
Maximum Propagation
Delay
Maximum Output Enable
Time to Active Output
tPHZ, tPLZ
Maximum Output Disable
Time from Active Output
tTLH, tTHL
Maximum Output
Rise and Fall
Time
CPD
Power Dissipation
Capacitance (Note 5)
74HC
TA eb40 to 85§ C
54HC
TA eb55 to 125§ C
Units
Guaranteed Limits
CL e 50 pF
CL e 150 pF
2.0V
2.0V
55
80
100
150
126
190
149
224
ns
ns
CL e 50 pF
CL e 150 pF
4.5V
4.5V
12
22
20
30
25
38
30
45
ns
ns
CL e 50 pF
CL e 150 pF
6.0V
6.0V
11
18
17
26
21
32
25
38
ns
ns
RL e 1 kX
CL e 50 pF
CL e 150 pF
2.0V
2.0V
75
100
150
200
189
252
224
298
ns
ns
CL e 50 pF
CL e 150 pF
4.5V
4.5V
15
30
30
40
38
50
45
60
ns
ns
CL e 50 pF
CL e 150 pF
6.0V
6.0V
13
17
26
34
32
43
38
51
ns
ns
RL e 1 kX
CL e 50 pF
2.0V
4.5V
6.0V
75
15
13
150
30
26
189
38
32
224
45
38
ns
ns
ns
60
12
10
75
15
13
90
18
15
ns
ns
ns
2.0V
4.5V
6.0V
(per buffer)
Outputs Disabled
Outputs Enabled
12
50
pF
pF
CIN
Maximum Input Capacitance
5
10
10
10
pF
COUT
Maximum Output Capacitance
10
20
20
20
pF
Note 5: CPD determines the no load dynamic power consumption, PD e CPD VCC2 f a ICC VCC, and the no load dynamic current consumption, IS e CPD VCC f a ICC.
3
Logic Diagrams
MM54HC242/MM74HC242
MM54HC243/MM74HC243
TL/L/5019 – 4
TL/L/5019 – 3
4
5
MM54HC242/MM74HC242 Inverting Quad TRI-STATE Transceiver
MM54HC243/MM74HC243 Quad TRI-STATE Transceiver
Physical Dimensions inches (millimeters)
Cavity Dual-In Line Package (J)
Order Number MM54HC242J, MM54HC243J, MM74HC242J or MM74HC243J
NS Package Number J14A
LIFE SUPPORT POLICY
Molded Dual-In Line Package (N)
Order Number MM74HC242N or MM74HC243N
NS Package Number N14A
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DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF NATIONAL
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systems which, (a) are intended for surgical implant
into the body, or (b) support or sustain life, and whose
failure to perform, when properly used in accordance
with instructions for use provided in the labeling, can
be reasonably expected to result in a significant injury
to the user.
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2. A critical component is any component of a life
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be reasonably expected to cause the failure of the life
support device or system, or to affect its safety or
effectiveness.
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