DC Output Voltage, Output in Z or LOW State (Note 1)
DC Input Diode Current, V
I
< GND
DC Output Diode Current, V
O
< GND
DC Output Sink Current
DC Supply Current per Supply Pin
DC Ground Current per Ground Pin
Storage Temperature Range
Power Dissipation in Still Air
Thermal Resistance
Lead Temperature, 1 mm from Case for 10 s
Junction Temperature under Bias
ESD Withstand Voltage
Human Body Model (Note 2)
Machine Model (Note 3)
Charged Device Model (Note 4)
Latch−Up Performance
Above V
CC
and Below GND at 85°C (Note 5)
Characteristics
Value
−0.5
to +7.0
−0.5
≤
V
I
≤
+7.0
−0.5
≤
V
O
≤
+7.0
−50
−50
±50
±100
±100
−65
to +150
200
333
260
+150
> 2000
150
N/A
mA
±500
Units
V
V
V
mA
mA
mA
mA
mA
°C
mW
°C/W
°C
°C
V
I
Latch−U
p
Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the
Recommended Operating Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect
device reliability.
1. I
O
absolute maximum rating must be observed.
2. Tested to EIA/JESD22−A114−A
3. Tested to EIA/JESD22−A115−A
4. Tested to JESD22−C101−A
5. Tested to EIA/JESD78
RECOMMENDED OPERATING CONDITIONS
Symbol
V
CC
Supply Voltage
Operating
Data Retention Only
Input Voltage
Output Voltage (High or LOW State)
Operating Free−Air Temperature
Input Transition Rise or Fall Rate
V
CC
= 2.5 V
±0.2
V
V
CC
= 3.0 V
±0.3
V
V
CC
= 5.0 V
±0.5
V
Parameter
Min
1.65
1.5
0
0
−55
0
0
0
Max
5.5
5.5
5.5
5.5
+125
No Limit
No Limit
No Limit
Units
V
V
I
V
O
T
A
Dt/DV
V
V
°C
ns/V
ORDERING INFORMATION
Device
NL27WZ17DFT2G
NLV27WZ17DFT2G*
Package
SC−88 / SOT−363 / SC−70−6
(Pb−Free)
SC−88 / SOT−363 / SC−70−6
(Pb−Free)
Shipping
†
3000 / Tape & Reel
3000 / Tape & Reel
†For information on tape and reel specifications, including part orientation and tape sizes, please refer to our Tape and Reel Packaging
Specifications Brochure, BRD8011/D.
*NLV Prefix for Automotive and Other Applications Requiring Unique Site and Control Change Requirements; AEC−Q100 Qualified and PPAP
Capable.
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2
NL27WZ17
DC ELECTRICAL CHARACTERISTICS
Symbol
V
T
)
Parameter
Positive Input
Threshold Voltage
Condition
V
CC
(V)
1.65
2.3
2.7
3.0
4.5
5.5
1.65
2.3
2.7
3.0
4.5
5.5
1.65
2.3
2.7
3.0
4.5
5.5
I
OH
=
−100
mA
I
OH
=
−3.0
mA
I
OH
=
*8.0
mA
I
OH
=
*12
mA
I
OH
=
*16
mA
I
OH
=
*24
mA
I
OH
=
*32
mA
I
OL
= 100
mA
I
OL
= 4.0 mA
I
OL
= 8.0 mA
I
OL
= 12 mA
I
OL
= 16 mA
I
OL
= 24 mA
I
OL
= 32 mA
V
IN
= 5.5 V or GND
V
IN
= 5.5 V or
V
OUT
= 5.5 V
V
IN
= 5.5 V or GND
1.65
−
5.5
1.65
2.3
2.7
3.0
3.0
4.5
1.65
−
5.5
1.65
2.3
2.7
3.0
3.0
4.5
0 to 5.5
0
5.5
T
A
= 255C
Min
0.6
1.0
1.2
1.3
1.9
2.2
0.2
0.4
0.5
0.6
1.0
1.2
0.1
0.25
0.3
0.4
0.6
0.7
V
CC
−
0.1
1.29
1.9
2.2
2.4
2.3
3.8
Typ
1.0
1.5
1.7
1.9
2.7
3.3
0.5
0.75
0.87
1.0
1.5
1.9
0.48
0.75
0.83
0.93
1.2
1.4
V
CC
1.52
2.1
2.4
2.7
2.5
4.0
0.08
0.2
0.22
0.28
0.38
0.42
0.1
0.24
0.3
0.4
0.4
0.55
0.55
±0.1
1.0
1.0
Max
1.4
1.8
2.0
2.2
3.1
3.6
0.8
1.15
1.4
1.5
2.0
2.3
0.9
1.1
1.15
1.2
1.5
1.7
−555C
3
T
A
3
1255C
Min
0.6
1.0
1.2
1.3
1.9
2.2
0.2
0.4
0.5
0.6
1.0
1.2
0.1
0.25
0.3
0.4
0.6
0.7
V
CC
−
0.1
1.29
1.9
2.2
2.4
2.3
3.8
0.1
0.24
0.3
0.4
0.4
0.55
0.55
±1.0
10
10
Max
1.4
1.8
2.0
2.2
3.1
3.6
0.8
1.15
1.4
1.5
2.0
2.3
0.9
1.1
1.15
1.2
1.5
1.7
Units
V
V
T
−
Negative Input
Threshold Voltage
V
V
H
Input Hysteresis
Voltage
V
V
OH
High−Level Output
Voltage
V
IN
= V
IH
or V
IL
V
V
OL
Low−Level Output
Voltage
V
IN
= V
IH
or V
IL
V
I
IN
I
OFF
I
CC
Input Leakage Current
Power Off
Leakage Current
Quiescent Supply
Current
mA
mA
mA
AC ELECTRICAL CHARACTERISTICS
(Input t
r
= t
f
= 3.0 ns)
Symbol
t
PLH
t
PHL
Parameter
Propagation Delay
Input A to Y
Condition
R
L
= 1.0 MW, C
L
= 15 pF
V
CC
(V)
1.65
1.8
2.5
±
0.2
3.3
±
0.3
5.0
±
0.5
3.3
±
0.3
5.0
±
0.5
T
A
= 255C
Min
2.0
2.0
1.0
1.0
0.5
1.5
0.8
Typ
9.1
7.6
5.0
3.7
3.1
4.4
3.7
Max
15
12.5
9.0
6.3
5.2
7.2
5.9
−555C
3
T
A
3
1255C
Min
2.0
2.0
1.0
1.0
0.5
1.5
0.8
Max
15.6
13
9.5
6.5
5.5
7.5
6.2
Units
ns
R
L
= 500
W,
C
L
= 50 pF
CAPACITIVE CHARACTERISTICS
Symbol
C
IN
C
PD
Parameter
Input Capacitance
Power Dissipation
Capacitance
Condition
V
CC
= 5.5 V,
V
I
= 0 V or V
CC
10 MHz, V
CC
= 3.3 V, V
I
= 0 V or V
CC
10 MHz, V
CC
= 5.5 V, V
I
= 0 V or V
CC
Typical
7.0
9.0
11
Units
pF
pF
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3
NL27WZ17
V
CC
50%
t
PLH
Y
50% V
CC
t
PHL
GND
INPUT
R
L
C
L
OUTPUT
A or B
A 1−MHz square input wave is recommended for
propagation delay tests.
Figure 3. Switching Waveforms
Figure 4. Test Circuit
VT , TYPICAL INPUT THRESHOLD VOLTAGE (VOLTS)
4
3
2
(V
T
))
V
H
typ
1
(V
T
*)
1.65
1.8
2.3
2.7
3
3.5
V
CC
, POWER SUPPLY VOLTAGE (VOLTS)
V
H
typ = (V
T
)
typ)
−
(V
T
*
typ)
3.6
Figure 5. Typical Input Threshold, V
T
)
, V
T
*
versus Power Supply Voltage
V
H
V
in
V
CC
V
T
)
V
T
*
GND
V
OH
V
in
V
H
V
CC
V
T
)
V
T
*
GND
V
OH
V
out
V
OL
(a) A Schmitt−Trigger Squares Up Inputs With
Slow Rise and Fall Times
V
out
V
OL
(b) A Schmitt−Trigger Offers Maximum Noise Immunity
Figure 6. Typical Schmitt−Trigger Applications
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4
NL27WZ17
PACKAGE DIMENSIONS
SC−88/SOT−363/SC70−6
DF SUFFIX
CASE 419B−02
ISSUE W
e
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: INCH.
3. 419B−01 OBSOLETE, NEW STANDARD 419B−02.
D
6
5
4
H
E
1
2
3
−E−
b
6 PL
0.2 (0.008)
M
E
M
A3
C
A
DIM
A
A1
A3
b
C
D
E
e
L
H
E
MILLIMETERS
MIN
NOM MAX
0.80
0.95
1.10
0.00
0.05
0.10
0.20 REF
0.10
0.21
0.30
0.10
0.14
0.25
1.80
2.00
2.20
1.15
1.25
1.35
0.65 BSC
0.10
0.20
0.30
2.00
2.10
2.20
INCHES
NOM MAX
0.037 0.043
0.002 0.004
0.008 REF
0.004 0.008 0.012
0.004 0.005 0.010
0.070 0.078 0.086
0.045 0.049 0.053
0.026 BSC
0.004 0.008 0.012
0.078 0.082 0.086
MIN
0.031
0.000
A1
L
SOLDERING FOOTPRINT*
0.50
0.0197
0.65
0.025
0.65
0.025
0.40
0.0157
1.9
0.0748
SCALE 20:1
mm
inches
*For additional information on our Pb−Free strategy and soldering
details, please download the ON Semiconductor Soldering and
Mounting Techniques Reference Manual, SOLDERRM/D.
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
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For additional information, please contact your local
==========================================================================//-----------------------------------------------------// Design Name : uart // File Name : uart.v// : Si ......
1. Introduction
Electronic scales are gradually replacing traditional measuring tools like springs and balances in everyday life, such as electronic price computing scales and electronic weigh...[详细]