LM34CAZ National Semiconductor, LM34CAZ Datasheet - Page 3

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LM34CAZ

Manufacturer Part Number
LM34CAZ
Description
IC,TEMPERATURE SENSOR,BIPOLAR,SIP,3PIN,PLASTIC
Manufacturer
National Semiconductor
Datasheets

Specifications of LM34CAZ

Svhc
NO SVHC
Rohs Compliant
NO

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Accuracy (Note 8)
Nonlinearity (Note 9)
Sensor Gain
(Average Slope)
Load Regulation
(Note 4)
Line Regulation
(Note 4)
Quiescent Current
(Note 10)
Change of Quiescent
Current (Note 4)
Temperature Coefficient
of Quiescent Current
Minimum Temperature
for Rated Accuracy
Long-Term Stability
DC Electrical Characteristics
Note 2: Unless otherwise noted, these specifications apply: −50˚F
+32˚F T
also apply from +5˚F to T
Note 3: Thermal resistance of the TO-46 package is 720˚F/W junction to ambient and 43˚F/W junction to case. Thermal resistance of the TO-92 package is 324˚F/W
junction to ambient. Thermal resistance of the small outline molded package is 400˚F/W junction to ambient. For additional thermal resistance information see table
in the Typical Applications section.
Note 4: Regulation is measured at constant junction temperature using pulse testing with a low duty cycle. Changes in output due to heating effects can be computed
by multiplying the internal dissipation by the thermal resistance.
Note 5: Tested limits are guaranteed and 100% tested in production.
Note 6: Design limits are guaranteed (but not 100% production tested) over the indicated temperature and supply voltage ranges. These limits are not used to cal-
culate outgoing quality levels.
Note 7: Specification in BOLDFACE TYPE apply over the full rated temperature range.
Absolute Maximum Ratings
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
Supply Voltage
Output Voltage
Output Current
Storage Temperature,
ESD Susceptibility (Note 12)
Lead Temp.
TO-46 Package
TO-92 Package
SO-8 Package
Parameter
j
+ 212˚F for the LM34D. V
MAX
in the circuit of Figure 1 .
T
T
T
T
T
T
T
T
0
T
5V
V
V
V
V
4V
5V
In circuit of Figure 1 ,
I
T
for 1000 hours
L
A
A
A
A
MIN
MIN
A
MIN
A
j
S
S
S
S
= 0
= T
= +77˚F
= 0˚F
= T
= T
= +77˚F
= +77˚F
= +5V, +77˚F
= +5V
= +30V, +77˚F
= +30V
I
S
L
Conditions
V
V
V
= +5 Vdc and I
MAX
MAX
MIN
S
S
S
T
T
T
1 mA
A
A
A
30V
30V, +77˚F
30V
T
T
T
MAX
MAX
MAX
LOAD
−65˚C to +150˚C
−76˚F to +356˚F
−76˚F to +300˚F
+35V to −0.2V
= 50 µA in the circuit of Figure 2 ; +6 Vdc for LM34 and LM34A for 230˚F T
+6V to −1.0V
(Note 11)
(Notes 2, 7)
Typical
±
+10.0
±
±
+0.30
±
±
±
±
±
±
±
+0.5
+1.0
+3.0
131
132
0.35
0.01
0.02
75
76
0.16
0.4
0.6
0.8
0.8
0.4
0.5
T
10 mA
j
800V
+ 300˚F for the LM34 and LM34A; −40˚F
(Note 5)
Tested
+10.1
±
Limit
LM34A
+9.9,
±
±
±
±
2.0
0.05
90
92
3
1.0
2.0
2.0
1.0
SO Package (Note 13)
LM34, LM34A
LM34C, LM34CA
LM34D
Specified Operating Temp. Range (Note 3)
TO-46 Package
TO-92 Package
Vapor Phase (60 seconds)
Infrared (15 seconds)
(Soldering, 10 seconds)
(Soldering, 10 seconds)
(Note 6)
Design
Limit
±
±
±
+0.5
+5.0
160
163
3.0
0.7
3.0
0.1
Typical
±
±
±
±
+10.0
+0.30
±
±
±
±
±
±
+3.0
116
117
0.5
1.0
0.30
0.01
0.02
0.16
75
76
0.4
0.6
0.8
0.8
0.4
0.5
T
j
(Note 5)
Tested
LM34CA
±
Limit
±
±
±
+230˚F for the LM34C and LM34CA; and
2.0
0.05
90
92
1.0
2.0
1.0
j
(Note 6)
Design
+10.1
300˚F. These specifications
Limit
+9.9,
±
±
±
±
±
+0.5
+5.0
139
142
3.0
2.0
3.0
0.6
3.0
0.1
−50˚F to +300˚F
−40˚F to +230˚F
+32˚F to +212˚F
T
www.national.com
MIN
mV/˚F, max
mV/˚F, min
mV/mA
mV/mA
(Max)
Units
mV/V
mV/V
µA/˚F
to T
+300˚C
+260˚C
µA
µA
µA
µA
µA
µA
˚F
˚F
˚F
˚F
˚F
˚F
˚F
215˚C
220˚C
MAX

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