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LM35DM Datenblatt(PDF) 6 Page - Texas Instruments

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Teilenummer LM35DM
Bauteilbeschribung  Precision Centigrade Temperature Sensors
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LM35
SNIS159F – AUGUST 1999 – REVISED JANUARY 2016
www.ti.com
6.6 Electrical Characteristics: LM35A, LM35CA
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.
LM35A
LM35CA
PARAMETER
TEST CONDITIONS
UNIT
MIN
TYP
MAX
TYP
TYP
MAX
±0.2
±0.2
TA = 25°C
Tested Limit(2)
±0.5
±0.5
Design Limit(3)
±0.3
±0.3
TA = –10°C
Tested Limit(2)
Design Limit(3)
±1
Accuracy(1)
°C
±0.4
±0.4
TA = TMAX
Tested Limit(2)
±1
±1
Design Limit(3)
±0.4
±0.4
TA = TMIN
Tested Limit(2)
±1
Design Limit(3)
±1.5
±0.18
±0.15
TMIN ≤ TA ≤ TMAX,
Nonlinearity(4)
Tested Limit(2)
°C
–40°C
≤ TJ ≤ 125°C
Design Limit(3)
±0.35
±0.3
10
10
TMIN ≤ TA ≤ TMAX
Tested Limit(2)
9.9
Design Limit(3)
9.9
Sensor gain
mV/°C
(average slope)
10
10
–40°C
≤ TJ ≤ 125°C
Tested Limit(2)
10.1
Design Limit(3)
10.1
±0.4
±0.4
TA = 25°C
Tested Limit(2)
±1
±1
Design Limit(3)
Load regulation(5)
mV/mA
0
≤ IL ≤ 1 mA
±0.5
±0.5
TMIN ≤ TA ≤ TMAX,
Tested Limit(2)
–40°C
≤ TJ ≤ 125°C
Design Limit(3)
±3
±3
±0.01
±0.01
TA = 25°C
Tested Limit(2)
±0.05
±0.05
Design Limit(3)
Line regulation(5)
mV/V
±0.02
±0.02
4 V
≤ VS ≤ 30 V,
Tested Limit(2)
–40°C
≤ TJ ≤ 125°C
Design Limit(3)
±0.1
±0.1
(1)
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).
(2)
Tested Limits are ensured and 100% tested in production.
(3)
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.
(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
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