LM82CIMQA National Semiconductor, LM82CIMQA Datasheet - Page 4

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LM82CIMQA

Manufacturer Part Number
LM82CIMQA
Description
IC,SSOP,16PIN
Manufacturer
National Semiconductor
Datasheets

Specifications of LM82CIMQA

Rohs Compliant
NO

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Temperature Error using Local Diode
((Note 8))
Temperature Error using Remote
Diode ((Note 8))
Resolution
Conversion Time of All Temperatures
Quiescent Current (Note 9)
D− Source Voltage
Diode Source Current
T_CRIT_A and INT Output Saturation
Voltage
Power-On Reset Threshold
Local and Remote T_CRIT and HIGH
Default Temperature settings
Absolute Maximum Ratings
Temperature-to-Digital Converter Characteristics
Unless otherwise noted, these specifications apply for V
T
MAX
Supply Voltage
Voltage at SMBData,
SMBCLK, T_CRIT_A & INT pins
Voltage at Other Pins
D− Input Current
Input Current at All Other Pins (Note
2)
Package Input Current (Note 2)
SMBData, T_CRIT_A, INT Output
Sink Current
Storage Temperature
Soldering Information, Lead Temperature
; all other limits T
Parameter
A
= T
J
=+25˚C, unless otherwise noted.
T
V
T
V
T
V
T
V
T
V
(Note 10)
SMBus (I
(D+ − D−)=+ 0.65V; high
level
Low level
I
On V
(Note 11)
OUT
A
A
A
A
A
−65˚C to +150˚C
CC
CC
CC
CC
CC
−0.3 V to 6.0 V
= 0 ˚C to +85˚C,
= −40 ˚C to +125˚C,
= +60 ˚C to +100˚C,
= 0 ˚C to +100˚C,
= 0 ˚C to +125˚C,
=+3.3V
=+3.3V
=+3.3V
=+3.3V
=+3.3V
(V
= 3.0 mA
CC
−0.5V to 6V
CC
Conditions
(Note 1)
input, falling edge
−0.3 V to
2
C) Inactive
+ 0.3 V)
±
20 mA
10 mA
1 mA
5 mA
CC
=+3.0 Vdc to 3.6 Vdc. Boldface limits apply for T
4
Operating Ratings
(Notes 1, 5)
QSOP Package (Note 3)
ESD Susceptibility (Note 4)
Specified Temperature Range
LM82
Supply Voltage Range (V
Vapor Phase (60 seconds)
Infrared (15 seconds)
Human Body Model
Machine Model
(Note 6)
Typical
0.500
+127
460
0.7
±
8
1
1
(Note 7)
Limits
0.80
600
125
0.4
2.3
1.8
±
±
±
±
±
60
15
5
CC
3
4
3
3
4
)
−40˚C to +125˚C
+3.0V to +3.6V
A
mA (max)
ms (max)
µA (max)
µA (max)
˚C (max)
˚C (max)
˚C (max)
˚C (max)
˚C (max)
µA (min)
µA (min)
T
= T
V (max)
V (max)
V (min)
(Limit)
MIN
Units
Bits
˚C
˚C
V
J
= T
to T
2000 V
215˚C
220˚C
250 V
MIN
MAX
to

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