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LM193-N
,
LM2903-N
,
LM293-N
,
LM393-N
SNOSBJ6F OCTOBER 1999REVISED DECEMBER 2014
www.ti.com
7 Specifications
7.1 Absolute Maximum Ratings
over operating free-air temperature range (unless otherwise noted)
(1)(2)(3)
MIN MAX UNIT
Differential Input Voltage
(4)
36 V
Input Voltage 0.3 36 V
Input Current (V
IN
<0.3 V)
(5)
50 mA
Power PDIP 780 mW
Dissipation
(6)
TO-99 660 mW
SOIC 510 mW
DSBGA 568 mW
Output Short-Circuit to Ground
(7)
Continu
ous
Lead Temperature (Soldering, 10 seconds) 260 °C
Soldering PDIP Package Soldering (10 seconds) 260 °C
Information
SOIC Package Vapor Phase (60 seconds) 215 °C
Infrared (15 seconds) 220 °C
Storage temperature, T
stg
-65 150 °C
(1) Absolute Maximum Ratings indicate limits beyond which damage may occur. Recommended Operating Conditions indicate conditions
for which the device is intended to be functional, but specific performance is not guaranteed. For guaranteed specifications and test
conditions, see the Electrical Characteristics.
(2) Refer to RETS193AX for LM193AH military specifications and to RETS193X for LM193H military specifications.
(3) If Military/Aerospace specified devices are required, please contact the TI Sales Office/Distributors for availability and specifications.
(4) Positive excursions of input voltage may exceed the power supply level. As long as the other voltage remains within the common-mode
range, the comparator will provide a proper output state. The low input voltage state must not be less than 0.3V (or 0.3V below the
magnitude of the negative power supply, if used).
(5) 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 on the IC chip. This transistor action can cause the output voltages of the comparators to go
to the V
+
voltage level (or to ground for a large overdrive) for the time duration that an input is driven negative. This is not destructive
and normal output states will re-establish when the input voltage, which was negative, again returns to a value greater than 0.3V.
(6) 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 (P
D
100 mW), provided the output transistors are allowed to saturate.
(7) 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
+
.
7.2 ESD Ratings
VALUE UNIT
V
(ESD)
Electrostatic discharge Human-body model (HBM), per ANSI/ESDA/JEDEC JS-001
(1)
±1300 V
(1) JEDEC document JEP155 states that 500-V HBM allows safe manufacturing with a standard ESD control process.
7.3 Recommended Operating Conditions
over operating free-air temperature range (unless otherwise noted)
MIN NOM MAX UNIT
Supply Voltage (V+) - Single Supply 2.0 36 V
Supply Voltage (V+) - Dual Supply ±1.0 ±18 V
Operating Input Voltage on (VIN pin) 0 (V+) -1.5V V
Operating junction temperature, T
J
: LM193/LM193A -55 125 °C
Operating junction temperature, T
J
: LM2903 -40 85 °C
Operating junction temperature, T
J
: LM293 -25 85 °C
Operating junction temperature, T
J
: LM393 0 70 °C
4 Submit Documentation Feedback Copyright © 1999–2014, Texas Instruments Incorporated
Product Folder Links: LM193-N LM2903-N LM293-N LM393-N

LM2903M 数据手册

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