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DS14C88 Datasheet(PDF) 2 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor. Click here to check the latest version.
Part No. DS14C88
Description  QUAD CMOS Line Driver
Download  6 Pages
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Maker  NSC [National Semiconductor (TI)]
Homepage  http://www.national.com
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DS14C88 Datasheet(HTML) 2 Page - National Semiconductor (TI)

   
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Absolute Maximum Ratings (Note 1)
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
Supply Voltage
V
+ Pin
+13V
V
Pin
−13V
Driver Input Voltage
(V
+) +0.3V to GND
−0.3V
Driver Output Voltage
|(V
+)−V
O| ≤ 30V
|(V
)−V
O| ≤ 30V
Continuous Power Dissipation @+25˚C (Note 2)
N Package
1513 mW
M Package
1063 mW
Junction Temperature
+150˚C
Lead Temperature
(Soldering 4 seconds)
+260˚C
Storage Temperature Range
−65˚C to +150˚C
This Product does not meet 2000V ESD rating. (Note 9)
Recommended Operating
Conditions
Min
Max
Units
V
+ Supply (GND = 0V)
+4.5 +12.6
V
V
Supply (GND = 0V)
−4.5 −12.6
V
Operating Free Air Temp.
(T
A)
DS14C88
0
+75
˚C
Electrical Characteristics
Over Recommended Operating Conditions, unless otherwise specified
Symbol
Parameter
Conditions
Min
Typ
Max
Units
I
IL
Maximum Low Input
Current
V
IN = GND
+10
µA
I
IH
Maximum High Input
Current
V
IN = V
+
−10
µA
V
IL
Low Level Input Voltage
V
+
≥ +7V, V≤ −7V
GND
0.8
V
V
+
< +7V, V> −7V
GND
0.6
V
V
IH
High Level Input Voltage
2.0
V
+
V
V
OL
Low Level Output Level
V
IN = VIH
V
+ = 4.5V, V= −4.5V
−4.0
−3.0
V
R
L = 3kΩ
V
+ = 9V, V= 9V
−8.0
−6.5
V
or7k
V
+ = 12V, V= −12V
−10.5
−9.0
V
V
OH
High Level Output Level
V
IN = VIL
V
+ = 4.5V, V= −4.5V
3.0
4.0
V
R
L = 3kΩ
V
+ = 9V, V= −9V
6.5
8.0
V
or7k
V
+ = 12V, V= −12V
9.0
10.5
V
I
OS+
High Level Output Short
V
IN = 0.8V, VO = GND
V
+ = +12V,
−45
mA
Circuit Current (Note 3)
V
= −12V
I
OS−
Low Level Output Short
V
IN = 2.0V, VO = GND
+45
mA
Circuit Current (Note 3)
R
OUT
Output Resistance
V
+ = V= GND = 0V
300
−2V
≤ V
O ≤ +2V (Note 4) (Figure 1 )
I
CC+
Positive Supply Current
V
IN =
V
ILmax
V
+ = 4.5V, V= −4.5V
10
µA
R
L = OPEN
V
+ = 9V, V= −9V
30
µA
V
+ = 12V, V= −12V
60
µA
V
IN =
V
IHmin
V
+ = 4.5V, V= −4.5V
50
µA
R
L = OPEN
V
+ = 9V, V= −9V
300
µA
V
+ = 12V, V= −12V
500
µA
I
CC-
Negative Supply Current
V
IN =
V
ILmax
V
+ = 4.5V, V= −4.5V
−10
µA
R
L = OPEN
V
+ = 9V, V= −9V
−10
µA
V
+ = 12V, V= −12V
−10
µA
V
IN =
V
IHmin
V
+ = 4.5V, V= −4.5V
−30
µA
R
L = OPEN
V
+ = 9V, V= −9V
−30
µA
V
+ = 12V, V= −12V
−60
µA
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