MM74C00J [NSC]

IC TTL/H/L SERIES, QUAD 2-INPUT NAND GATE, CDIP14, CERAMIC, DIP-14, Gate;
MM74C00J
型号: MM74C00J
厂家: National Semiconductor    National Semiconductor
描述:

IC TTL/H/L SERIES, QUAD 2-INPUT NAND GATE, CDIP14, CERAMIC, DIP-14, Gate

栅 CD 输入元件 逻辑集成电路
文件: 总6页 (文件大小:145K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
February 1988  
MM54C00/MM74C00 Quad 2-Input NAND Gate  
MM54C02/MM74C02 Quad 2-Input NOR Gate  
MM54C04/MM74C04 Hex Inverter  
MM54C10/MM74C10 Triple 3-Input NAND Gate  
MM54C20/MM74C20 Dual 4-Input NAND Gate  
General Description  
Features  
Y
Wide supply voltage range  
3V to 15V  
1V  
These logic gates employ complementary MOS (CMOS) to  
achieve wide power supply operating range, low power con-  
sumption, high noise immunity and symmetric controlled  
rise and fall times. With features such as this the 54C/74C  
logic family is close to ideal for use in digital systems. Func-  
tion and pin out compatibility with series 54/74 devices mini-  
mizes design time for those designers already familiar with  
the standard 54/74 logic family.  
Y
Guaranteed noise margin  
Y
High noise immunity  
0.45 V (typ.)  
CC  
Y
Low power consumption  
10 nW/package (typ.)  
Fan out of 2  
driving 74L  
Y
Low power  
TTL compatibility  
All inputs are protected from damage due to static dis-  
and GND.  
charge by diode clamps to V  
CC  
Connection Diagrams  
Dual-In-Line Packages  
MM54C02/MM74C02  
MM54C00/MM74C00  
MM54C04/MM74C04  
TL/F/5877–1  
TL/F/5877–2  
TL/F/5877–3  
Top View  
Top View  
Top View  
Order Number MM54C00 or  
MM74C00  
Order Number MM54C02 or  
MM74C02  
Order Number MM54C04  
or MM74C04  
MM54C10/MM74C10  
MM54C20/MM74C20  
TL/F/5877–4  
TL/F/5877–5  
Top View  
Top View  
Order Number MM54C10 or  
MM74C10  
Order Number MM54C20 or  
MM74C20  
C
1995 National Semiconductor Corporation  
TL/F/5877  
RRD-B30M115/Printed in U. S. A.  
Absolute Maximum Ratings  
If Military/Aerospace specified devices are required,  
please contact the National Semiconductor Sales  
Office/Distributors for availability and specifications.  
Operating V Range  
CC  
3.0V to 15V  
18V  
Maximum V Voltage  
CC  
Power Dissipation (P )  
D
Dual-In-Line  
Small Outline  
b
a
0.3V  
Voltage at Any Pin  
0.3V to V  
CC  
700 mW  
500 mW  
Operating Temperature Range  
b
b
a
55 C to 125 C  
54C  
74C  
§
40 C to 85 C  
§
Lead Temperature  
(Soldering, 10 seconds)  
a
§
§
300 C  
§
b
a
65 C to 150 C  
Storage Temperature Range  
§
§
DC Electrical Characteristics  
Min/Max limits apply across the guaranteed temperature range unless otherwise noted  
Symbol  
Parameter  
Conditions  
Min  
Typ  
Max  
Units  
CMOS TO CMOS  
e
e
e
e
e
e
e
e
e
V
V
V
V
Logical ‘‘1’’ Input Voltage  
Logical ‘‘0’’ Input Voltage  
Logical ‘‘1’’ Output Voltage  
Logical ‘‘0’’ Output Voltage  
V
V
V
V
V
V
V
V
V
V
V
5.0V  
10V  
3.5  
8.0  
V
V
IN(1)  
CC  
CC  
CC  
CC  
CC  
CC  
CC  
CC  
CC  
5.0V  
10V  
1.5  
2.0  
V
IN(0)  
V
e b  
5.0V, I  
10 mA  
4.5  
9.0  
V
OUT(1)  
OUT(0)  
O
e b  
10V, I  
10 mA  
V
O
e
5.0V, I  
10 mA  
0.5  
1.0  
1.0  
V
O
e
10V, I  
10 mA  
V
O
e
IN  
I
I
I
Logical ‘‘1’’ Input Current  
Logical ‘‘0’’ Input Current  
Supply Current  
15V, V  
15V, V  
15V  
15V  
0V  
0.005  
mA  
mA  
mA  
IN(1)  
IN(0)  
CC  
e
e
e
IN  
b
b
0.005  
0.01  
1.0  
CC  
CC  
15  
LOW POWER TO CMOS  
e
e
e
e
e
e
e
e
b
b
V
V
V
V
Logical ‘‘1’’ Input Voltage  
Logical ‘‘0’’ Input Voltage  
Logical ‘‘1’’ Output Voltage  
Logical ‘‘0’’ Output Voltage  
54C, V  
74C, V  
54C, V  
74C, V  
54C, V  
74C, V  
54C, V  
74C, V  
4.5V  
V
V
1.5  
1.5  
V
V
V
V
V
V
V
V
IN(1)  
CC  
CC  
CC  
CC  
CC  
CC  
CC  
CC  
CC  
CC  
4.75V  
4.5V  
0.8  
0.8  
IN(0)  
4.75V  
4.5V, I  
e b  
O
10 mA  
4.4  
4.4  
OUT(1)  
OUT(0)  
e b  
4.75V, I  
10 mA  
10 mA  
O
e
4.5V, I  
0.4  
0.4  
O
e
4.75V, I  
10 mA  
O
CMOS TO LOW POWER  
e
e
e
e
e
e
e
e
V
V
V
V
Logical ‘‘1’’ Input Voltage  
Logical ‘‘0’’ Input Voltage  
Logical ‘‘1’’ Output Voltage  
Logical ‘‘0’’ Output Voltage  
54C, V  
74C, V  
54C, V  
74C, V  
54C, V  
74C, V  
54C, V  
74C, V  
4.5V  
4.0  
4.0  
V
V
V
V
V
V
V
V
IN(1)  
CC  
CC  
CC  
CC  
CC  
CC  
CC  
CC  
4.75V  
4.5V  
1.0  
1.0  
IN(0)  
4.75V  
e b  
O
4.5V, I  
360 mA  
2.4  
2.4  
OUT(1)  
OUT(0)  
e b  
4.75V, I  
360 mA  
360 mA  
O
e
4.5V, I  
0.4  
0.4  
O
e
4.75V, I  
360 mA  
O
e
OUTPUT DRIVE (see 54C/74C Family Characteristics Data Sheet) T  
25 C (short circuit current)  
§
A
e
e
e
e
e
e
b
1.75  
I
I
I
I
Output Source Current  
Output Source Current  
Output Sink Current  
Output Sink Current  
V
CC  
V
CC  
V
CC  
V
CC  
5.0V, V  
0V, V  
0V  
0V  
mA  
mA  
mA  
mA  
SOURCE  
SOURCE  
SINK  
IN(0)  
OUT  
OUT  
e
e
b
8.0  
10V, V  
5.0V, V  
0V, V  
IN(0)  
e
e
V
5.0V, V  
1.75  
8.0  
IN(1)  
IN(1)  
OUT  
CC  
e
e
V
10V, V  
10V, V  
OUT  
SINK  
CC  
2
e
e
50 pF, unless otherwise specified  
AC Electrical Characteristics* T  
25 C, C  
§
A
L
Symbol  
Parameter  
Conditions  
Min  
Typ  
Max  
Units  
MM54C00/MM74C00, MM54C02/MM74C02, MM54C04/MM74C04  
e
e
t
, t  
pd0 pd1  
Propagation Delay Time to  
Logical ‘‘1’’ or ‘‘0’’  
V
V
5.0V  
10V  
50  
30  
6.0  
12  
90  
60  
ns  
ns  
pF  
pF  
CC  
CC  
C
C
Input Capacitance  
(Note 2)  
IN  
Power Dissipation Capacitance  
(Note 3) Per Gate or Inverter  
PD  
MM54C10/MM74C10  
, t  
e
e
t
Propagation Delay Time to  
Logical ‘‘1’’ or ‘‘0’’  
V
V
5.0V  
10V  
60  
35  
7.0  
18  
100  
70  
ns  
ns  
pF  
pF  
pd0 pd1  
CC  
CC  
C
C
Input Capacitance  
(Note 2)  
IN  
Power Dissipation Capacitance  
(Note 3) Per Gate  
PD  
MM54C20/MM74C20  
, t  
e
e
t
Propagation Delay Time to  
Logical ‘‘1’’ or ‘‘0’’  
V
V
5.0V  
10V  
70  
40  
9
115  
80  
ns  
ns  
pF  
pF  
pd0 pd1  
CC  
CC  
C
C
Input Capacitance  
(Note 2)  
IN  
Power Dissipation Capacitance  
(Note 3) Per Gate  
30  
PD  
*AC Parameters are guaranteed by DC correlated testing.  
Note 1: ‘‘Absolute Maximum Ratings’’ are those values beyond which the safety of the device cannot be guaranteed. Except for ‘‘Operating Temperature Range’’  
they are not meant to imply that the devices should be operated at these limits. The table of ‘‘Electrical Characteristics’’ provides conditions for actual device  
operation.  
Note 2: Capacitance is guaranteed by periodic testing.  
Note 3: C determines the no load AC power consumption of any CMOS device. For complete explanation see 54C/74C Family Characteristics Application  
PD  
NoteÐAN-90.  
Typical Performance Characteristics  
Power Dissipation vs Frequency  
MM54C00/MM74C00,  
MM54C02/MM74C02,  
Guaranteed Noise Margin  
Over Temperature vs V  
Gate Transfer Characteristics  
MM54C04/MM74C04  
CC  
TL/F/5877–6  
3
Typical Performance Characteristics (Continued)  
Propagation Delay vs  
Ambient Temperature  
MM54C00/MM74C00,  
MM54C02/MM74C02,  
MM54C04/MM74C04  
Propagation Delay vs  
Ambient Temperature  
MM54C00/MM74C00,  
MM54C02/MM74C02,  
MM54C04/MM74C04  
Propagation Delay Time vs  
Load Capacitance  
MM54C00/MM74C00,  
MM54C02/MM74C02,  
MM54C04/MM74C04  
TL/F/5877–7  
Propagation Delay Time vs  
Load Capacitance  
MM54C10/MM74C10  
Propagation Delay Time vs  
Load Capacitance  
MM54C20/MM74C20  
TL/F/5877–8  
TL/F/5877–9  
Switching Time Waveforms and AC Test Circuit  
CMOS to CMOS  
TL/F/587711  
TL/F/587710  
s
f
Note: Delays measured with input t , t  
r
20 ns.  
4
Physical Dimensions inches (millimeters)  
Ceramic Dual-In-Line Package (J)  
Order Number MM54C00J, MM54C02J, MM54C04J, MM54C10J, MM54C20J,  
MM74C00J, MM74C02J, MM74C04J, MM74C10J or MM74C20J  
NS Package Number J14A  
5
Physical Dimensions inches (millimeters) (Continued)  
Molded Dual-In-Line Package (N)  
Order Number MM54C00N, MM54C02N, MM54C04N, MM54C10N, MM54C20N,  
MM74C00N, MM74C02N, MM74C04N, MM74C10N or MM74C20N  
NS Package Number N14A  
LIFE SUPPORT POLICY  
NATIONAL’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT  
DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF NATIONAL  
SEMICONDUCTOR CORPORATION. As used herein:  
1. Life support devices or systems are devices or  
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.  
2. A critical component is any component of a life  
support device or system whose failure to perform can  
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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Corporation  
National Semiconductor  
Europe  
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Hong Kong Ltd.  
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National does not assume any responsibility for use of any circuitry described, no circuit patent licenses are implied and National reserves the right at any time without notice to change said circuitry and specifications.  

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