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LM35CAH/NOPB Datasheet(PDF) 8 Page - Texas Instruments

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Part # LM35CAH/NOPB
Description  Precision Centigrade Temperature Sensors
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

LM35CAH/NOPB Datasheet(HTML) 8 Page - Texas Instruments

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LM35
SNIS159F – AUGUST 1999 – REVISED JANUARY 2016
www.ti.com
6.7 Electrical Characteristics: LM35, LM35C, LM35D Limits
Unless otherwise noted, these specifications apply:
−55°C ≤ TJ ≤ 150°C for the LM35 and LM35A; −40°C ≤ TJ ≤ 110°C for the
LM35C and LM35CA; and 0°C
≤ TJ ≤ 100°C for the LM35D. VS = 5 Vdc and ILOAD = 50 μA, in the circuit of Full-Range
Centigrade Temperature Sensor. These specifications also apply from 2°C to TMAX in the circuit of Figure 14.
LM35
LM35C, LM35D
PARAMETER
TEST CONDITIONS
UNIT
TYP
TESTED
DESIGN
TYP
TESTED
DESIGN
LIMIT(1)
LIMIT(2)
LIMIT(1)
LIMIT(2)
TA = 25°C
±0.4
±1
±0.4
±1
TA = –10°C
±0.5
±0.5
±1.5
Accuracy, LM35,
°C
LM35C(3)
TA = TMAX
±0.8
±1.5
±0.8
±1.5
TA = TMIN
±0.8
±1.5
±0.8
±2
TA = 25°C
±0.6
±1.5
Accuracy, LM35D(3)
TA = TMAX
±0.9
±2
°C
TA = TMIN
±0.9
±2
TMIN ≤ TA ≤ TMAX,
Nonlinearity(4)
±0.3
±0.5
±0.2
±0.5
°C
–40°C
≤ TJ ≤ 125°C
TMIN ≤ TA ≤ TMAX,
10
9.8
10
9.8
Sensor gain
–40°C
≤ TJ ≤ 125°C
mV/°C
(average slope)
10
10.2
10
10.2
TA = 25°C
±0.4
±2
±0.4
±2
Load regulation(5)
mV/mA
TMIN ≤ TA ≤ TMAX,
0
≤ IL ≤ 1 mA
±0.5
±5
±0.5
±5
–40°C
≤ TJ ≤ 125°C
TA = 25°C
±0.01
±0.1
±0.01
±0.1
Line regulation(5)
mV/V
4 V
≤ VS ≤ 30 V,
±0.02
±0.2
±0.02
±0.2
–40°C
≤ TJ ≤ 125°C
VS = 5 V, 25°C
56
80
56
80
VS = 5 V, –40°C ≤ TJ ≤ 125°C
105
158
91
138
Quiescent current(6)
µA
VS = 30 V, 25°C
56.2
82
56.2
82
VS = 30 V, –40°C ≤ TJ ≤ 125°C
105.5
161
91.5
141
4 V
≤ VS ≤ 30 V, 25°C
0.2
2
0.2
2
Change of quiescent
µA
4 V
≤ VS ≤ 30 V,
current(5)
0.5
3
0.5
3
–40°C
≤ TJ ≤ 125°C
Temperature
coefficient of
–40°C
≤ TJ ≤ 125°C
0.39
0.7
0.39
0.7
µA/°C
quiescent current
Minimum temperature
In circuit of Figure 14, IL = 0
1.5
2
1.5
2
°C
for rate accuracy
Long term stability
TJ = TMAX, for 1000 hours
±0.08
±0.08
°C
(1)
Tested Limits are ensured and 100% tested in production.
(2)
Design Limits are ensured (but not 100% production tested) over the indicated temperature and supply voltage ranges. These limits are
not used to calculate outgoing quality levels.
(3)
Accuracy is defined as the error between the output voltage and 10 mv/°C times the case temperature of the device, at specified
conditions of voltage, current, and temperature (expressed in °C).
(4)
Non-linearity is defined as the deviation of the output-voltage-versus-temperature curve from the best-fit straight line, over the rated
temperature range of the device.
(5)
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.
(6)
Quiescent current is defined in the circuit of Figure 14.
8
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