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LM393N Datenblatt(PDF) 5 Page - Texas Instruments

Teilenummer LM393N
Bauteilbeschribung  LM193/LM293/LM393/LM2903 Low Power Low Offset Voltage Dual Comparators
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Hersteller  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

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Electrical Characteristics (Continued)
(V
+=5V, T
A = 25˚C, unless otherwise stated)
Parameter
Conditions
LM193
LM293, LM393
LM2903
Units
Min Typ
Max
Min Typ
Max
Min Typ
Max
Supply Current
R
L=
V
+=5V
0.4
1
0.4
1
0.4
1.0
mA
V
+=36V
1
2.5
1
2.5
1
2.5
mA
Voltage Gain
R
L
≥15 kΩ,V+=15V
50
200
50
200
25
100
V/mV
V
O = 1Vto11V
Large Signal Response
V
IN=TTL Logic Swing, VREF=1.4V
300
300
300
ns
Time
V
RL=5V, RL=5.1 k
Response Time
V
RL=5V, RL=5.1 k
Ω (Note 7)
1.3
1.3
1.5
µs
Output Sink Current
V
IN(−)=1V, VIN(+)=0, VO
≤1.5V
6.0
16
6.0
16
6.0
16
mA
Saturation Voltage
V
IN(−)=1V, VIN(+)=0, ISINK
≤4 mA
250
400
250
400
250
400
mV
Output Leakage Current
V
IN(−)=0, VIN(+)=1V, VO=5V
0.1
0.1
0.1
nA
Electrical Characteristics
(V+ = 5V) (Note 4)
Parameter
Conditions
LM193A
Units
Min
Typ
Max
Input Offset Voltage
(Note 9)
4.0
mV
Input Offset Current
I
IN(+)−IIN(−),VCM=0V
100
nA
Input Bias Current
I
IN(+) or IIN(−) with Output in Linear Range,
300
nA
V
CM=0V (Note 5)
Input Common Mode
Voltage Range
V
+=30V (Note 6)
0
V
+−2.0
V
Saturation Voltage
V
IN(−)=1V, VIN(+)=0, ISINK
≤4 mA
700
mV
Output Leakage Current
V
IN(−)=0, VIN(+)=1V, VO=30V
1.0
µA
Differential Input Voltage
Keep All V
IN’s
≥0V (or V, if Used), (Note 8)
36
V
Electrical Characteristics
(V+ = 5V) (Note 4)
Parameter
Conditions
LM193
LM293, LM393
LM2903
Units
Min Typ
Max
Min Typ
Max
Min Typ
Max
Input Offset Voltage
(Note 9)
9
9
9
15
mV
Input Offset Current
I
IN(+)−IIN(−),VCM=0V
100
150
50
200
nA
Input Bias Current
I
IN(+) or IIN(−) with Output in
Linear Range, V
CM=0V
(Note 5)
300
400
200
500
nA
Input Common Mode
Voltage Range
V
+=30V (Note 6)
0
V
+−2.0
0
V
+−2.0
0
V
+−2.0
V
Saturation Voltage
V
IN(−)=1V, VIN(+)=0,
I
SINK
≤4mA
700
700
400
700
mV
Output Leakage Current
V
IN(−)=0, VIN(+)=1V, VO=30V
1.0
1.0
1.0
µA
Differential Input Voltage
Keep All V
IN’s
≥0V (or V,if
Used), (Note 8)
36
36
36
V
Note 1: For operating at high temperatures, the LM393 and LM2903 must be derated based on a 125˚C maximum junction temperature and a thermal resistance
of 170˚C/W which applies for the device soldered in a printed circuit board, operating in a still air ambient. The LM193/LM193A/LM293 must be derated based on
a 150˚C maximum junction temperature. The low bias dissipation and the “ON-OFF” characteristic of the outputs keeps the chip dissipation very small (PD≤100 mW),
provided the output transistors are allowed to saturate.
Note 2: Short circuits from the output to V+ can cause excessive heating and eventual destruction. When considering short circuits to ground, the maximum output
current is approximately 20 mA independent of the magnitude of V+.
Note 3: This input current will only exist when the voltage at any of the input leads is driven negative. It is due to the collector-base junction of the input PNP
transistors becoming forward biased and thereby acting as input diode clamps. In addition to this diode action, there is also lateral NPN parasitic transistor action
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