LM92_05 NSC [National Semiconductor], LM92_05 Datasheet - Page 3

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LM92_05

Manufacturer Part Number
LM92_05
Description
Manufacturer
NSC [National Semiconductor]
Datasheet
Accuracy (This is a summary. For
more detailed information please see
(Note 9))
Resolution
Linearity (Note 11)
Offset Error of Transfer Function
(Note 12)
Offset Error of Transfer Function
Supply Sensitivity
Temperature Conversion Time
Quiescent Current
T
T
T
T
Absolute Maximum Ratings
Electrical Characteristics
Temperature-to-Digital Converter Characteristics
Unless otherwise noted, these specifications apply for +V
= T
HYST
LOW
HIGH
C
Supply Voltage
Voltage at any Pin
Input Current at any Pin
Package Input Current (Note 2)
T_CRIT_A and INT Output Sink
Current
T_CRIT_A and INT Output
Voltage
Storage Temperature
ESD Susceptibility (Note 4)
Default Temperature
MIN
Default Temperature
Default Temperature
Default Temperature
to T
MAX
Parameter
; all other limits T
A
= T
J
T
T
to 4.0V
T
3.3V to 4.0V
T
T
4.0V
(Note 10)
+V
2.7V ≤ +V
3.6V ≤ +V
(Note 13)
I
I
Shutdown Mode
(Notes 15, 16)
(Note 16)
(Note 16)
(Note 16)
= +25˚C, unless otherwise noted.
2
2
C Inactive
C Active
A
A
A
A
A
−65˚C to +125˚C
S
= +125˚C, +V
= +30˚C, +V
= 10˚C or +50˚C, +V
= −10 ˚C or +85˚C, +V
= −25˚C to 150˚C, +V
to (+V
= 4.0V
−0.3 V to 6.5V
(Note 1)
S
S
S
Conditions
<
≤ 5.5V
+ 0.3V)
−0.3 V
20 mA
10 mA
3.6V
5 mA
6.5V
S
S
= 3.3V to 4.0V
S
= 4.0V
= +2.7V to +5.5V for LM92CIM . Boldface limits apply for T
S
3
S
= 3.3V
S
=
=
Operating Ratings
Soldering process must comply with National Semiconduc-
tor’s Reflow Temperature Profile specifications. Refer to
www.national.com/packaging. (Note 3)
Specified Temperature Range
(Note 6)
Supply Voltage Range (+V
Human Body Model
Machine Model
(Note 7)
Typical
0.0625
0.35
0.35
500
13
10
64
80
5
2
S
(Note 8)
)
Limits
±
±
±
±
±
0.625
1000
±
(Notes 1, 5)
0.33
0.50
1.00
1.25
1.50
0.5
−55˚C to +150˚C
+2.7V to +5.5V
T
MIN
˚C/V (max)
˚C/V (max)
mA (max)
˚C (max)
˚C (max)
˚C (max)
www.national.com
(Limit)
Units
Bits
mA
to T
ms
µA
˚C
˚C
˚C
˚C
˚C
2500V
250V
A
MAX
= T
J

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