M74HC353TTR [STMICROELECTRONICS]

HC/UH SERIES, DUAL 4 LINE TO 1 LINE MULTIPLEXER, INVERTED OUTPUT, PDSO16, TSSOP-16;
M74HC353TTR
型号: M74HC353TTR
厂家: ST    ST
描述:

HC/UH SERIES, DUAL 4 LINE TO 1 LINE MULTIPLEXER, INVERTED OUTPUT, PDSO16, TSSOP-16

光电二极管 输出元件 逻辑集成电路
文件: 总11页 (文件大小:187K)
中文:  中文翻译
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M74HC353  
DUAL 4 CHANNEL MULTIPLEXER  
WITH 3 STATE OUTPUT (INVERTING)  
HIGH SPEED:  
= 18ns (TYP.) at V = 6V  
t
PD  
CC  
LOW POWER DISSIPATION:  
= 4µA(MAX.) at T =25°C  
I
CC  
A
HIGH NOISE IMMUNITY:  
= V = 28 % V (MIN.)  
V
NIH  
NIL  
CC  
DIP  
SOP  
TSSOP  
T & R  
SYMMETRICAL OUTPUT IMPEDANCE:  
|I | = I = 4mA (MIN)  
OH  
OL  
BALANCED PROPAGATION DELAYS:  
t
t
ORDER CODES  
PACKAGE  
PLH  
PHL  
WIDE OPERATING VOLTAGE RANGE:  
(OPR) = 2V to 6V  
TUBE  
V
CC  
DIP  
SOP  
M74HC353B1R  
M74HC353M1R  
PIN AND FUNCTION COMPATIBLE WITH  
74 SERIES 353  
M74HC353RM13TR  
M74HC353TTR  
TSSOP  
DESCRIPTION  
The M74HC353 is an high speed CMOS DUAL 4  
CHANNEL MULTIPLEXER fabricated with silicon  
gate C MOS technology.  
(G) can be used to inhibit the data output; the  
output of M74HC353 is at high impedance,  
unconditionally.  
2
Each of these data (1C0-1C3, 2C0-2C3) is  
selected by the two address inputs A and B.  
Separate strobe inputs (1G, 2G) are provided for  
each of the two four-line sections. The strobe input  
All inputs are equipped with protection circuits  
against static discharge and transient excess  
voltage.  
PIN CONNECTION AND IEC LOGIC SYMBOLS  
July 2001  
1/11  
M74HC353  
INPUT AND OUTPUT EQUIVALENT CIRCUIT  
PIN DESCRIPTION  
PIN No  
SYMBOL  
1G, 2G  
NAME AND FUNCTION  
1, 15  
Output Enable Inputs  
6, 5, 4, 3  
1C0 to 1C3 Data Inputs From  
Source 1  
7
9
1Y  
Data Outputs from  
Source 1  
2Y  
Data Outputs from  
Source 2  
10, 11, 12,  
13  
2C0 to 2C3 Data Inputs From  
Source 2  
14, 2  
A, B  
Common Data Select  
Input  
8
GND  
Ground (0V)  
16  
V
Positive Supply Voltage  
CC  
TRUTH TABLE  
SELECT INPUTS  
DATA INPUTS  
STROBE  
OUTPUT Y  
G
C
C
C
C
B
A
0
1
2
3
X
L
X
L
X
X
X
X
X
X
X
L
X
H
L
L
L
L
L
L
L
L
Z
H
L
L
H
X
X
X
X
X
X
X
X
L
X
X
X
X
X
X
L
L
L
L
H
H
L
H
L
L
H
X
X
X
X
H
H
H
H
H
L
L
H
X
X
H
H
H
L
H
X : Don’t Care  
Z : High Impedance  
2/11  
M74HC353  
LOGIC DIAGRAM  
This logic diagram has not be used to estimate propagation delays  
ABSOLUTE MAXIMUM RATINGS  
Symbol  
Parameter  
Value  
Unit  
V
Supply Voltage  
-0.5 to +7  
V
V
CC  
V
DC Input Voltage  
-0.5 to V + 0.5  
I
CC  
V
DC Output Voltage  
DC Input Diode Current  
DC Output Diode Current  
DC Output Current  
-0.5 to V + 0.5  
V
O
CC  
I
± 20  
± 20  
mA  
mA  
mA  
mA  
mW  
°C  
IK  
I
OK  
I
± 35  
O
I
or I  
DC V  
or Ground Current  
CC  
± 70  
CC  
GND  
P
Power Dissipation  
500(*)  
-65 to +150  
300  
D
T
Storage Temperature  
Lead Temperature (10 sec)  
stg  
T
°C  
L
Absolute Maximum Ratings are those values beyond which damage to the device may occur. Functional operation under these conditions is  
not implied  
(*) 500mW at 65 °C; derate to 300mW by 10mW/°C from 65°C to 85°C  
3/11  
M74HC353  
RECOMMENDED OPERATING CONDITIONS  
Symbol  
Parameter  
Value  
Unit  
V
Supply Voltage  
2 to 6  
0 to V  
V
V
CC  
V
Input Voltage  
I
CC  
V
Output Voltage  
0 to V  
CC  
V
O
T
Operating Temperature  
Input Rise and Fall Time  
-55 to 125  
0 to 1000  
0 to 500  
0 to 400  
°C  
ns  
ns  
ns  
op  
V
V
V
= 2.0V  
= 4.5V  
= 6.0V  
CC  
CC  
CC  
t , t  
r
f
DC SPECIFICATIONS  
Test Condition  
Value  
-40 to 85°C -55 to 125°C Unit  
T
= 25°C  
Symbol  
Parameter  
A
V
CC  
(V)  
Min. Typ. Max. Min. Max. Min. Max.  
V
High Level Input  
Voltage  
2.0  
4.5  
6.0  
2.0  
4.5  
6.0  
2.0  
1.5  
3.15  
4.2  
1.5  
3.15  
4.2  
1.5  
3.15  
4.2  
IH  
V
V
V
Low Level Input  
Voltage  
0.5  
1.35  
1.8  
0.5  
1.35  
1.8  
0.5  
1.35  
1.8  
IL  
V
High Level Output  
Voltage  
I =-20 µA  
1.9  
4.4  
5.9  
2.0  
4.5  
6.0  
1.9  
4.4  
1.9  
4.4  
OH  
O
I =-20 µA  
4.5  
6.0  
4.5  
6.0  
2.0  
4.5  
6.0  
4.5  
6.0  
O
I =-20 µA  
5.9  
5.9  
V
V
O
I =-4.0 mA  
4.18 4.31  
4.13  
5.63  
4.10  
5.60  
O
I =-5.2 mA  
5.68  
5.8  
0.0  
0.0  
0.0  
O
V
Low Level Output  
Voltage  
I =20 µA  
0.1  
0.1  
0.1  
0.1  
0.1  
0.1  
0.1  
OL  
O
I =20 µA  
O
I =20 µA  
0.1  
0.1  
O
I =4.0 mA  
0.17 0.26  
0.18 0.26  
0.33  
0.33  
0.40  
0.40  
O
I =5.2 mA  
O
I
Input Leakage  
Current  
I
V = V  
or GND  
CC  
6.0  
6.0  
6.0  
± 0.1  
± 0.5  
4
± 1  
± 5  
40  
± 1  
± 5  
80  
µA  
µA  
µA  
I
I
I
High Impedance  
Output Leakage  
Current  
OZ  
V = V or V  
IL  
I
IH  
V
= V or GND  
CC  
O
Quiescent Supply  
Current  
CC  
V = V  
or GND  
CC  
I
4/11  
M74HC353  
AC ELECTRICAL CHARACTERISTICS (C = 50 pF, Input t = t = 6ns)  
L
r
f
Test Condition  
Value  
-40 to 85°C -55 to 125°C Unit  
T
= 25°C  
Symbol  
Parameter  
A
V
CC  
(V)  
Min. Typ. Max. Min. Max. Min. Max.  
t
t
Output Transition  
Time  
2.0  
4.5  
6.0  
2.0  
4.5  
6.0  
2.0  
4.5  
6.0  
2.0  
4.5  
6.0  
2.0  
4.5  
6.0  
30  
8
75  
15  
95  
19  
110  
22  
TLH THL  
ns  
ns  
ns  
ns  
ns  
7
13  
16  
19  
t
t
t
Propagation Delay  
Time (Cn - Y)  
64  
16  
14  
84  
21  
18  
64  
16  
14  
44  
11  
9
125  
25  
155  
31  
95  
PLH PHL  
38  
21  
26  
32  
t
Propagation Delay  
Time (A, B - Y)  
150  
30  
190  
38  
225  
45  
PLH PHL  
26  
33  
38  
t
t
t
High Impedance  
Output Enable  
Time (G - Y)  
115  
23  
145  
29  
175  
35  
PZL PZH  
R = 1K  
L
20  
25  
30  
t
High Impedance  
Output Disable  
Time (G - Y)  
100  
20  
125  
25  
150  
30  
PLZ PHZ  
R = 1KΩ  
L
17  
21  
26  
CAPACITIVE CHARACTERISTICS  
Test Condition  
Value  
-40 to 85°C -55 to 125°C Unit  
T
= 25°C  
Symbol  
Parameter  
A
V
CC  
(V)  
Min. Typ. Max. Min. Max. Min. Max.  
C
Input Capacitance  
5.0  
5
10  
10  
10  
pF  
pF  
IN  
C
Power Dissipation  
Capacitance (note  
1)  
PD  
5.0  
61  
1) C is defined as the value of the IC’s internal equivalent capacitance which is calculated from the operating current consumption without  
PD  
load. (Refer to Test Circuit). Average operating current can be obtained by the following equation. I  
= C x V x f + I  
CC(opr)  
PD CC IN CC  
5/11  
M74HC353  
TEST CIRCUIT  
TEST  
SWITCH  
t
t
t
, t  
Open  
PLH PHL  
, t  
V
CC  
PZL PLZ  
, t  
GND  
PZH PHZ  
C
R
R
= 50pF/150pF or equivalent (includes jig and probe capacitance)  
L
1
T
= 1Kor equivalent  
= Z  
of pulse generator (typically 50)  
OUT  
WAVEFORM 1 : PROPAGATION DELAY TIME (f=1MHz; 50% duty cycle)  
6/11  
M74HC353  
WAVEFORM 2 : OUTPUT ENABLE AND DISABLE TIME (f=1MHz; 50% duty cycle)  
7/11  
M74HC353  
Plastic DIP-16 (0.25) MECHANICAL DATA  
mm.  
TYP  
inch  
TYP.  
DIM.  
MIN.  
0.51  
0.77  
MAX.  
MIN.  
0.020  
0.030  
MAX.  
a1  
B
b
1.65  
0.065  
0.5  
0.020  
0.010  
b1  
D
E
e
0.25  
20  
0.787  
8.5  
2.54  
17.78  
0.335  
0.100  
0.700  
e3  
F
7.1  
5.1  
0.280  
0.201  
I
L
3.3  
0.130  
Z
1.27  
0.050  
P001C  
8/11  
M74HC353  
SO-16 MECHANICAL DATA  
mm.  
inch  
TYP.  
DIM.  
MIN.  
TYP  
MAX.  
1.75  
0.2  
MIN.  
MAX.  
0.068  
0.007  
0.064  
0.018  
0.010  
A
a1  
a2  
b
0.1  
0.003  
1.65  
0.46  
0.25  
0.35  
0.19  
0.013  
0.007  
b1  
C
0.5  
0.019  
c1  
D
45° (typ.)  
9.8  
5.8  
10  
0.385  
0.228  
0.393  
0.244  
E
6.2  
e
1.27  
8.89  
0.050  
0.350  
e3  
F
3.8  
4.6  
0.5  
4.0  
5.3  
0.149  
0.181  
0.019  
0.157  
0.208  
0.050  
0.024  
G
L
1.27  
0.62  
M
S
8° (max.)  
PO13H  
9/11  
M74HC353  
TSSOP16 MECHANICAL DATA  
mm.  
inch  
TYP.  
DIM.  
MIN.  
TYP  
MAX.  
1.2  
MIN.  
MAX.  
0.047  
0.006  
0.041  
0.012  
0.0089  
0.201  
0.260  
0.176  
A
A1  
A2  
b
0.05  
0.8  
0.15  
1.05  
0.30  
0.20  
5.1  
0.002  
0.031  
0.007  
0.004  
0.193  
0.244  
0.169  
0.004  
0.039  
1
0.19  
0.09  
4.9  
c
D
5
6.4  
0.197  
0.252  
E
6.2  
6.6  
E1  
e
4.3  
4.4  
4.48  
0.173  
0.65 BSC  
0.0256 BSC  
K
0°  
8°  
0°  
8°  
L
0.45  
0.60  
0.75  
0.018  
0.024  
0.030  
A2  
A
K
L
b
e
A1  
c
E
D
E1  
PIN 1 IDENTIFICATION  
1
0080338D  
10/11  
M74HC353  
Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the  
consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from  
its use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications  
mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information  
previously supplied. STMicroelectronics products are not authorized for use as critical components in life support devices or  
systems without express written approval of STMicroelectronics.  
© The ST logo is a registered trademark of STMicroelectronics  
© 2001 STMicroelectronics - Printed in Italy - All Rights Reserved  
STMicroelectronics GROUP OF COMPANIES  
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© http://www.st.com  
11/11  

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