NL27WZ02US [ONSEMI]

Dual 2-Input NOR Gate; 双路2输入或非门
NL27WZ02US
型号: NL27WZ02US
厂家: ONSEMI    ONSEMI
描述:

Dual 2-Input NOR Gate
双路2输入或非门

文件: 总6页 (文件大小:58K)
中文:  中文翻译
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NL27WZ02  
Dual 2−Input NOR Gate  
The NL27WZ02 is a high performance dual 2−input NOR Gate  
operating from a 1.65 V to 5.5 V supply.  
Extremely High Speed: t 2.5 ns (typical) at V = 5.0 V  
PD  
CC  
Designed for 1.65 V to 5.5 V V Operation  
Over Voltage Tolerant Inputs  
CC  
http://onsemi.com  
MARKING  
LVTTL Compatible − Interface Capability With 5.0 V TTL Logic  
with V = 3.0 V  
CC  
DIAGRAM  
LVCMOS Compatible  
24 mA Balanced Output Sink and Source Capability  
8
8
Near Zero Static Supply Current Substantially Reduces System  
Power Requirements  
D
1
L3  
Replacement for NC7WZ02  
Chip Complexity: FET = 112  
US8  
US SUFFIX  
CASE 493  
1
D = Date Code  
8
7
6
A1  
B1  
V
CC  
1
2
ORDERING INFORMATION  
See detailed ordering and shipping information in the package  
dimensions section on page 4 of this data sheet.  
Y1  
B2  
A2  
Y2  
3
4
A1  
B1  
w1  
Y1  
Y2  
5
GND  
A2  
B2  
Figure 1. Pinout  
Figure 2. Logic Symbol  
FUNCTION TABLE  
PIN ASSIGNMENT  
Pin  
Function  
Input  
Output  
1
A1  
Y = A + B  
2
3
4
5
6
7
8
B1  
Y2  
A
L
B
L
Y
H
L
GND  
A2  
L
H
L
H
H
L
B2  
H
L
Y1  
V
CC  
Semiconductor Components Industries, LLC, 2004  
1
Publication Order Number:  
March, 2004 − Rev. 6  
NL27WZ02/D  
NL27WZ02  
MAXIMUM RATINGS  
Symbol  
Parameter  
Value  
*0.5 to )7.0  
*0.5 to )7.0  
*0.5 to )7.0  
*50  
Unit  
V
V
V
V
DC Supply Voltage  
CC  
I
DC Input Voltage  
V
DC Output Voltage  
V
O
I
I
I
I
I
DC Input Diode Current  
DC Output Diode Current  
DC Output Sink Current  
DC Supply Current per Supply Pin  
DC Ground Current per Ground Pin  
Storage Temperature Range  
V < GND  
mA  
mA  
mA  
mA  
mA  
°C  
IK  
I
V
< GND  
*50  
OK  
O
O
$50  
$100  
CC  
GND  
$100  
T
T
T
*65 to )150  
260  
STG  
L
Lead Temperature, 1 mm from Case for 10 Seconds  
Junction Temperature under Bias  
Thermal Resistance  
°C  
)150  
°C  
J
q
(Note 1)  
250  
°C/W  
mW  
JA  
P
Power Dissipation in Still Air at 85°C  
Moisture Sensitivity  
250  
D
MSL  
Level 1  
F
R
Flammability Rating  
Oxygen Index: 28 to 34  
UL 94 V−0 @ 0.125 in  
V
ESD  
ESD Withstand Voltage  
Human Body Model (Note 2)  
Machine Model (Note 3)  
Charged Device Model (Note 4)  
> 2000  
> 200  
N/A  
V
Maximum Ratings are those values beyond which damage to the device may occur. Exposure to these conditions or conditions beyond those  
indicated may adversely affect device reliability. Functional operation under absolute maximum−rated conditions is not implied. Functional  
operation should be restricted to the Recommended Operating Conditions.  
1. Measured with minimum pad spacing on an FR4 board, using 10 mm−by−1 inch, 2 ounce copper trace with no air flow.  
2. Tested to EIA/JESD22−A114−A.  
3. Tested to EIA/JESD22−A115−A.  
4. Tested to JESD22−C101−A.  
RECOMMENDED OPERATING CONDITIONS  
Symbol  
Parameter  
Min  
Max  
Unit  
V
CC  
Supply Voltage  
Operating  
Data Retention Only  
1.65  
1.5  
5.5  
5.5  
V
V
V
Input Voltage  
(Note 5)  
0
0
5.5  
V
V
I
Output Voltage  
(HIGH or LOW State)  
V
CC  
O
T
Operating Free−Air Temperature  
Input Transition Rise or Fall Rate  
*40  
)85  
°C  
A
Dt/DV  
V
= 1.8 V $0.15 V  
0
0
0
0
20  
20  
10  
5
ns/V  
CC  
V
V
V
= 2.5 V $0.2 V  
= 3.0 V $0.3 V  
= 5.0 V $0.5 V  
CC  
CC  
CC  
5. Unused inputs may not be left open. All inputs must be tied to a high−logic voltage level or a low−logic input voltage level.  
http://onsemi.com  
2
 
NL27WZ02  
DC ELECTRICAL CHARACTERISTICS  
T
A
= 255C  
Typ  
*405C v T v 855C  
A
V
(V)  
CC  
Min  
Max  
Min  
Max  
Symbol  
Parameter  
Condition  
Unit  
V
V
V
High−Level Input Voltage  
1.65  
2.3 to 5.5  
0.75 V  
0.7 V  
0.75 V  
0.7 V  
V
IH  
CC  
CC  
CC  
CC  
Low−Level Input Voltage  
1.65  
2.3 to 5.5  
0.25 V  
0.3 V  
0.25 V  
0.3 V  
V
V
IL  
CC  
CC  
CC  
CC  
High−Level Output Voltage  
I
I
= −100 mA  
= −4 mA  
= −8 mA  
= −12 mA  
= −16 mA  
= −24 mA  
= −32 mA  
1.65 to 5.5  
1.65  
2.3  
V
− 0.1  
1.29  
V
V
− 0.1  
1.29  
OH  
OH  
OH  
CC  
CC  
CC  
V
IN  
= V or V  
IH  
1.5  
2.1  
2.4  
2.7  
2.5  
4.0  
IL  
I
1.9  
2.2  
2.4  
2.3  
3.8  
1.90  
2.20  
2.40  
2.30  
3.80  
OH  
I
2.7  
3.0  
3.0  
4.5  
OH  
I
OH  
I
OH  
I
OH  
V
OL  
Low−Level Output Voltage  
= V or V  
I
= 100 mA  
= 4 mA  
= 8 mA  
= 12 mA  
= 16 mA  
= 24 mA  
= 32 mA  
1.65 to 5.5  
1.65  
2.3  
0.0  
0.1  
0.24  
0.3  
0.4  
0.4  
0.55  
0.55  
0.1  
0.24  
0.3  
0.4  
0.4  
0.55  
0.55  
V
OL  
V
I
OL  
0.08  
0.20  
0.22  
0.28  
0.38  
0.42  
IN  
IH  
OH  
I
OL  
I
OL  
2.7  
3.0  
3.0  
4.5  
I
OL  
I
OL  
I
OL  
I
I
Input Leakage Current  
V
GND  
= V or  
0 to 5.5  
5.5  
$0.1  
$1.0  
mA  
mA  
IN  
IN  
CC  
Quiescent Supply Current  
V
IN  
= V or  
1.0  
10  
CC  
CC  
GND  
AC ELECTRICAL CHARACTERISTICS t = t = 3.0 ns  
R
F
T
A
= 255C  
*405C v T v 855C  
A
V
CC  
Min  
Typ  
7.4  
3.3  
Max  
9.5  
Min  
2.0  
1.2  
Max  
(V)  
Symbol  
Parameter  
Condition  
R = 1 MW, C = 15 pF  
Unit  
t
t
Propagation Delay  
(Figure 3 and 4)  
1.8 $ 0.15  
2.5 $ 0.20  
3.3 $ 0.30  
2.0  
1.2  
9.7  
ns  
PLH  
PHL  
L
L
5.4  
5.8  
R = 1 MW, C = 15 pF  
0.8  
1.2  
2.6  
3.2  
3.9  
4.8  
0.8  
1.2  
4.3  
5.2  
L
L
R = 500 W, C = 50 pF  
L
L
R = 1 MW, C = 15 pF  
5.0 $ 0.50  
0.5  
0.8  
1.9  
2.5  
3.1  
3.7  
0.5  
0.8  
3.3  
4.0  
L
L
R = 500 W, C = 50 pF  
L
L
CAPACITIVE CHARACTERISTICS  
Symbol  
Parameter  
Condition  
= 5.5 V, V = 0 V or V  
Typical  
Unit  
pF  
C
C
Input Capacitance  
V
CC  
2.5  
IN  
I
CC  
Power Dissipation Capacitance  
(Note 6)  
10 MHz, V = 3.3 V, V = 0 V or V  
9.0  
11.0  
pF  
PD  
CC  
I
CC  
CC  
10 MHz, V = 5.5 V, V = 0 V or V  
CC  
I
6. C is defined as the value of the internal equivalent capacitance which is calculated from the operating current consumption without load.  
PD  
Average operating current can be obtained by the equation: I  
power consumption; P = C V  
) = C V f + I . C is used to determine the no−load dynamic  
CC(OPR  
PD CC in CC PD  
2
f + I V  
.
D
PD  
CC  
in  
CC  
CC  
http://onsemi.com  
3
 
NL27WZ02  
t = 3 ns  
f
t = 3 ns  
f
V
CC  
90%  
50%  
90%  
50%  
INPUT  
A and B  
INPUT  
10%  
10%  
OUTPUT  
GND  
R
C
L
L
t
t
PHL  
PLH  
V
V
OH  
OUTPUT Y  
50%  
50%  
A 1−MHz square input wave is recommended for  
propagation delay tests.  
OL  
Figure 3. Switching Waveform  
Figure 4. Test Circuit  
DEVICE ORDERING INFORMATION  
Device Nomenclature  
Logic  
Circuit  
Indicator  
No. of  
Gates per  
Package  
Temp  
Range  
Identifier  
Device  
Function  
Package  
Suffix  
Device Order  
Number  
Package  
Type  
Tape and  
Reel Size  
Technology  
NL27WZ02US  
NL  
2
7
WZ  
02  
US  
US8  
178 mm, 3000 Unit  
http://onsemi.com  
4
NL27WZ02  
PACKAGE DIMENSIONS  
US8  
US SUFFIX  
CASE 493−02  
ISSUE A  
NOTES:  
1. DIMENSIONING AND TOLERANCING PER  
ANSI Y14.5M, 1982.  
−X−  
−Y−  
2. CONTROLLING DIMENSION: MILLIMETERS.  
3. DIMENSION “A” DOES NOT INCLUDE MOLD  
FLASH, PROTRUSION OR GATE BURR.  
MOLD FLASH. PROTRUSION AND GATE  
BURR SHALL NOT EXCEED 0.140 MM  
(0.0055”) PER SIDE.  
A
J
8
5
4. DIMENSION “B” DOES NOT INCLUDE  
INTER−LEAD FLASH OR PROTRUSION.  
INTER−LEAD FLASH AND PROTRUSION  
SHALL NOT E3XCEED 0.140 (0.0055”) PER  
SIDE.  
DETAIL E  
B
L
5. LEAD FINISH IS SOLDER PLATING WITH  
THICKNESS OF 0.0076−0.0203 MM.  
(300−800 “).  
6. ALL TOLERANCE UNLESS OTHERWISE  
SPECIFIED ±0.0508 (0.0002 “).  
1
4
R
S
U
G
P
MILLIMETERS  
INCHES  
DIM  
A
B
C
D
F
G
H
J
K
L
M
N
P
MIN  
1.90  
2.20  
0.60  
0.17  
0.20  
MAX  
2.10  
2.40  
0.90  
0.25  
0.35  
MIN  
MAX  
0.083  
0.094  
0.035  
0.010  
0.014  
0.075  
0.087  
0.024  
0.007  
0.008  
C
H
−T−  
0.10 (0.004)  
T
K
N
SEATING  
PLANE  
D
0.50 BSC  
0.40 REF  
0.020 BSC  
0.016 REF  
R 0.10 TYP  
M
0.10  
0.18  
0.10  
3.20  
6
0.004  
0.007  
0.004  
0.126  
6
M
0.10 (0.004)  
T
X Y  
0.00  
3.00  
0
0.000  
0.118  
0
V
_
_
_
_
5
10  
5
10  
_
_
_
_
0.23  
0.23  
0.37  
0.60  
0.34  
0.33  
0.47  
0.80  
0.010  
0.009  
0.015  
0.024  
0.013  
0.013  
0.019  
0.031  
R
S
U
V
F
DETAIL E  
0.12 BSC  
0.005 BSC  
SOLDERING FOOTPRINT*  
3.8  
1.8 TYP  
0.5 TYP  
0.3 TYP  
1.0  
(mm)  
*For additional information on our Pb−Free strategy and soldering  
details, please download the ON Semiconductor Soldering and  
Mounting Techniques Reference Manual, SOLDERRM/D.  
http://onsemi.com  
5
NL27WZ02  
ON Semiconductor and  
are registered trademarks of Semiconductor Components Industries, LLC (SCILLC). SCILLC reserves the right to make changes without further notice  
to any products herein. SCILLC makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does SCILLC assume any liability  
arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation special, consequential or incidental damages.  
“Typical” parameters which may be provided in SCILLC data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All  
operating parameters, including “Typicals” must be validated for each customer application by customer’s technical experts. SCILLC does not convey any license under its patent rights  
nor the rights of others. SCILLC products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other applications  
intended to support or sustain life, or for any other application in which the failure of the SCILLC product could create a situation where personal injury or death may occur. Should  
Buyer purchase or use SCILLC products for any such unintended or unauthorized application, Buyer shall indemnify and hold SCILLC and its officers, employees, subsidiaries, affiliates,  
and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death  
associated with such unintended or unauthorized use, even if such claim alleges that SCILLC was negligent regarding the design or manufacture of the part. SCILLC is an Equal  
Opportunity/Affirmative Action Employer. This literature is subject to all applicable copyright laws and is not for resale in any manner.  
PUBLICATION ORDERING INFORMATION  
LITERATURE FULFILLMENT:  
N. American Technical Support: 800−282−9855 Toll Free  
USA/Canada  
ON Semiconductor Website: http://onsemi.com  
Order Literature: http://www.onsemi.com/litorder  
Literature Distribution Center for ON Semiconductor  
P.O. Box 5163, Denver, Colorado 80217 USA  
Phone: 303−675−2175 or 800−344−3860 Toll Free USA/Canada  
Fax: 303−675−2176 or 800−344−3867 Toll Free USA/Canada  
Email: orderlit@onsemi.com  
Japan: ON Semiconductor, Japan Customer Focus Center  
2−9−1 Kamimeguro, Meguro−ku, Tokyo, Japan 153−0051  
Phone: 81−3−5773−3850  
For additional information, please contact your  
local Sales Representative.  
NL27WZ02/D  

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