N74F3037D,512 [NXP]

Quad 2-input NAND 30 Ω driver SOP 16-Pin;
N74F3037D,512
型号: N74F3037D,512
厂家: NXP    NXP
描述:

Quad 2-input NAND 30 Ω driver SOP 16-Pin

栅 光电二极管 逻辑集成电路 触发器
文件: 总8页 (文件大小:81K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
INTEGRATED CIRCUITS  
74F3037  
Quad 2-input NAND 30driver  
Product specification  
IC15 Data Handbook  
1990 Feb 09  
Philips  
Semiconductors  
Philips Semiconductors  
Product specification  
Quad 2-input NAND 30driver  
74F3037  
transmission line effects of PC boards which appear when  
fast edge rates are used.  
FEATURES  
30line driver  
The drive capability of the 74F3037 is 67mA source and  
160mA sink with a VCC as low as 4.5V. This guarantees  
incident wave switching with VOH not less than 2.0V and VOL  
not more than 0.8mA while driving impedances as low as 30  
ohms. This is applicable with any combination of outputs  
using continuous duty. The propagation delay of the part is  
minimally affected by reflections when terminated only by  
the TTL inputs of other devices. Performances may be  
improved by full or partial line termination.  
67mA output drive capability in the high state  
High speed  
Facilitates incident wave switching  
3nh lead inductance each on VCC and GND when both  
side pins are used  
160mA output drive capability in the low state  
Industrial temperature range available (–40°C to +85°C)  
DESCRIPTION  
The 74F3037 is a high current line driver composed of four  
2–input NAND gates. It has been designed to deal with the  
TYPE  
TYPICAL  
PROPAGATION DELAY  
TYPICAL SUPPLY  
CURRENT( TOTAL)  
74F3037  
2.0ns  
16mA  
ORDERING INFORMATION  
ORDER CODE  
COMMERCIAL RANGE  
= 5V ±10%,  
INDUSTRIAL RANGE  
DESCRIPTION  
PKG DWG #  
V
V
CC  
= 5V ±10%,  
CC  
T
amb  
= 0°C to +70°C  
T
amb  
= –40°C to +85°C  
I74F3037N  
16–pin plastic DIP  
16–pin plastic SOL  
N74F3037N  
N74F3037D  
SOT38-4  
I74F3037D  
SOT162-1  
INPUT AND OUTPUT LOADING AND FAN OUT TABLE  
PINS  
DESCRIPTION  
74F (U.L.) HIGH/LOW  
LOAD VALUE HIGH/LOW  
20µA/0.6mA  
Dna, Dnb  
Data inputs  
Data output  
1.0/1.0  
Qn  
3350/266  
67mA/160mA  
Note to input and output loading and fan out table  
One (1.0) FAST unit load is defined as: 20µA in the high state and 0.6mA in the low state.  
LOGIC DIAGRAM  
FUNCTION TABLE  
INPUTS  
OUTPUT  
1
2
D0a  
3
6
9
Q0  
Q1  
D0b  
Dna  
L
Dnb  
L
Qn  
H
7
8
D1a  
D1b  
L
H
H
10  
11  
D2a  
D2b  
H
L
H
Q2  
Q3  
H
H
L
14  
15  
16  
D3a  
D3b  
Notes to function table  
H = High voltage level  
V
= Pin 12,13  
CC  
GND = Pin 4, 5  
L
= Low voltage level  
SF00569  
2
February 9, 1990  
853 0021 98744  
Philips Semiconductors  
Product specification  
Quad 2-input NAND 30driver  
74F3037  
PIN CONFIGURATION  
IEC/IEEE SYMBOL  
1
2
&
D0a  
D0b  
Q0  
1
2
3
4
5
16 Q3  
15 D3b  
14 D3a  
3
6
7
8
GND  
GND  
13  
12  
V
V
CC  
CC  
10  
11  
9
Q1  
D1a  
D1b  
6
7
8
11 D2a  
10 D2b  
14  
15  
16  
9
Q2  
SF00570  
SF00572  
LOGIC SYMBOL  
1
2
7
8
10 11 14 15  
D0b D1a D1a D2a D2b D3a D3b  
D0a  
Q0 Q1 Q2 Q3  
3
6
9
16  
V
= Pin 12,13  
CC  
GND = Pin 4, 5  
SF00571  
ABSOLUTE MAXIMUM RATINGS  
(Operation beyond the limit set forth in this table may impair the useful life of the device. Unless otherwise noted these limits are over the  
operating free air temperature range.)  
SYMBOL  
PARAMETER  
RATING  
–0.5 to +7.0  
–0.5 to +7.0  
–30 to +5  
UNIT  
V
V
CC  
V
IN  
Supply voltage  
Input voltage  
Input current  
V
I
IN  
mA  
V
I
Voltage applied to output in high output state  
Current applied to output in low output state  
Operating free air temperature range  
–0.5 to V  
V
OUT  
CC  
320  
mA  
°C  
°C  
°C  
OUT  
T
amb  
Commercial range  
Industrial range  
0 to +70  
–40 to +85  
–65 to +150  
T
stg  
Storage temperature range  
3
February 9, 1990  
Philips Semiconductors  
Product specification  
Quad 2-input NAND 30driver  
74F3037  
RECOMMENDED OPERATING CONDITIONS  
SYMBOL  
PARAMETER  
LIMITS  
NOM  
5.0  
T =  
A
–40 to  
+85°C  
V
UNIT  
MIN  
4.5  
MAX  
V
Supply voltage  
5.5  
CC  
IH  
IL  
V
V
High–level input voltage  
Low–level input voltage  
Input clamp current  
2.4  
V
0.8  
–18  
–67  
160  
+70  
V
I
I
I
mA  
mA  
mA  
Ik  
High–level output current  
Low–level output current  
OH  
OL  
T
amb  
Operating free air temperature range  
Commercial range  
Industrial range  
0
°C  
°C  
–40  
+85  
DC ELECTRICAL CHARACTERISTICS  
(Over recommended operating free-air temperature range unless otherwise noted.)  
SYMBOL  
PARAMETER  
TEST  
LIMITS  
UNIT  
1
2
CONDITIONS  
MIN TYP  
MAX  
V
V
= MIN,  
I
= –45mA  
OH  
2.5  
2.7  
V
V
±10%V  
±5%V  
CC  
CC  
V
High–level output voltage  
Low–level output voltage  
= MAX,  
= MIN  
OH  
IL  
CC  
I
=
OH1  
V
V
2.0  
V
V
V
±10%V  
IH  
3
CC  
–67mA  
= 100mA  
OL  
= MIN, V  
=
IL  
CC  
V
OL  
I
0.30  
0.30  
0.50  
0.50  
±10%V  
±5%V  
CC  
MAX,  
I
=
OL1  
V
IH  
= MIN  
4
CC  
160mA  
V
Input clamp voltage  
V
V
= MIN, I = I  
IK  
-0.73 -1.2  
100  
V
IK  
CC  
I
µA  
I
I
Input current at maximum input voltage  
= MAX, V = 7.0V  
I
CC  
µA  
mA  
mA  
mA  
mA  
I
I
I
I
High–level input current  
Low–level input current  
V
CC  
V
CC  
V
CC  
V
CC  
= MAX, V = 2.7V  
20  
IH  
I
= MAX, V = 0.5V  
-0.6  
-200  
IL  
I
5
Output current  
= MAX, V = 2.25V  
-100  
O
O
Supply current (total)  
I
= MAX  
6.0  
30  
9.0  
CC  
CCH  
I
40  
CCL  
Notes to DC electrical characteristics  
1. For conditions shown as MIN or MAX, use the appropriate value specified under recommended operating conditions for the applicable type.  
2. All typical values are at V = 5V, T  
= 25°C.  
amb  
CC  
3. I  
4. I  
is the current necessary to guarantee the low to high transition in a 30 ohm transmission line on the incident wave.  
is the current necessary to guarantee the high to low transition in a 30 ohm transmission line on the incident wave.  
OH1  
OL1  
5. I is tested under conditions that produce current approximately one half of the true short–circuit current (I ).  
O
OS  
AC ELECTRICAL CHARACTERISTICS  
LIMITS  
T
= +25°C  
= +5.0V  
T
= 0°C to +70°C  
= +5.0V ± 10%  
T
=–40°C to +85°C  
= +5.0V ± 10%  
amb  
amb  
amb  
V
V
CC  
SYMBOL  
PARAMETER  
TEST  
V
UNIT  
CC  
CC  
CONDITION  
C = 50pF,  
L
C = 50pF,  
L
C = 50pF,  
L
R = 500Ω  
L
R = 500Ω  
L
R = 500Ω  
L
MIN  
TYP MAX  
MIN  
MAX  
MIN  
MAX  
t
t
Propagation delay  
Dna, Dnb to Qn  
1.0  
1.0  
2.0  
2.0  
5.0  
4.5  
1.0  
1.0  
5.5  
5.0  
1.0  
1.0  
5.5  
5.0  
PLH  
PHL  
Waveform 1  
ns  
4
February 9, 1990  
Philips Semiconductors  
Product specification  
Quad 2-input NAND 30driver  
74F3037  
AC WAVEFORMS  
Dna, Dnb  
V
V
M
t
M
t
PHL  
PLH  
V
V
M
M
Qn  
SF00005  
Waveform 1. Propagation delay for inverting outputs  
Note to AC waveforms  
For all waveforms, V = 1.5V.  
M
TEST CIRCUIT AND WAVEFORMS  
t
w
AMP (V)  
90%  
V
CC  
90%  
NEGATIVE  
PULSE  
V
V
M
M
10%  
10%  
V
V
OUT  
IN  
0V  
PULSE  
GENERATOR  
D.U.T.  
t
t )  
t
t )  
THL ( f  
TLH ( r  
R
C
R
L
t
t )  
T
L
t
t )  
TLH ( r  
THL ( f  
AMP (V)  
90%  
M
90%  
POSITIVE  
PULSE  
V
V
M
10%  
10%  
0V  
Test Circuit for Totem-Pole Outputs  
DEFINITIONS:  
t
w
Input Pulse Definition  
INPUT PULSE REQUIREMENTS  
R
L
C
L
R
T
=
=
=
Load resistor;  
see AC ELECTRICAL CHARACTERISTICS for value.  
Load capacitance includes jig and probe capacitance;  
see AC ELECTRICAL CHARACTERISTICS for value.  
Termination resistance should be equal to Z  
pulse generators.  
family  
74F  
V
rep. rate  
t
t
t
amplitude  
M
w
TLH  
THL  
of  
OUT  
2.5ns 2.5ns  
3.0V  
1.5V  
1MHz  
500ns  
SF00006  
5
February 9, 1990  
Philips Semiconductors  
Product specification  
Quad 2-input NAND 30driver  
74F3037  
DIP16: plastic dual in-line package; 16 leads (300 mil)  
SOT38-4  
6
1990 Feb 09  
Philips Semiconductors  
Product specification  
Quad 2-input NAND 30driver  
74F3037  
SO16: plastic small outline package; 16 leads; body width 7.5 mm  
SOT162-1  
7
1990 Feb 09  
Philips Semiconductors  
Product specification  
Quad 2-input NAND 30driver  
74F3037  
Data sheet status  
[1]  
Data sheet  
status  
Product  
status  
Definition  
Objective  
specification  
Development  
This data sheet contains the design target or goal specifications for product development.  
Specification may change in any manner without notice.  
Preliminary  
specification  
Qualification  
This data sheet contains preliminary data, and supplementary data will be published at a later date.  
Philips Semiconductors reserves the right to make chages at any time without notice in order to  
improve design and supply the best possible product.  
Product  
specification  
Production  
This data sheet contains final specifications. Philips Semiconductors reserves the right to make  
changes at any time without notice in order to improve design and supply the best possible product.  
[1] Please consult the most recently issued datasheet before initiating or completing a design.  
Definitions  
Short-form specification — The data in a short-form specification is extracted from a full data sheet with the same type number and title. For  
detailed information see the relevant data sheet or data handbook.  
Limiting values definition — Limiting values given are in accordance with the Absolute Maximum Rating System (IEC 134). Stress above one  
or more of the limiting values may cause permanent damage to the device. These are stress ratings only and operation of the device at these or  
at any other conditions above those given in the Characteristics sections of the specification is not implied. Exposure to limiting values for extended  
periods may affect device reliability.  
Application information — Applications that are described herein for any of these products are for illustrative purposes only. Philips  
Semiconductors make no representation or warranty that such applications will be suitable for the specified use without further testing or  
modification.  
Disclaimers  
Life support — These products are not designed for use in life support appliances, devices or systems where malfunction of these products can  
reasonably be expected to result in personal injury. Philips Semiconductors customers using or selling these products for use in such applications  
do so at their own risk and agree to fully indemnify Philips Semiconductors for any damages resulting from such application.  
RighttomakechangesPhilipsSemiconductorsreservestherighttomakechanges, withoutnotice, intheproducts, includingcircuits,standard  
cells, and/or software, described or contained herein in order to improve design and/or performance. Philips Semiconductors assumes no  
responsibility or liability for the use of any of these products, conveys no license or title under any patent, copyright, or mask work right to these  
products, and makes no representations or warranties that these products are free from patent, copyright, or mask work right infringement, unless  
otherwise specified.  
Philips Semiconductors  
811 East Arques Avenue  
P.O. Box 3409  
Copyright Philips Electronics North America Corporation 1998  
All rights reserved. Printed in U.S.A.  
Sunnyvale, California 94088–3409  
Telephone 800-234-7381  
print code  
Date of release: 10-98  
9397-750-05203  
Document order number:  
Philips  
Semiconductors  

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