LM35DZ/NOPB National Semiconductor, LM35DZ/NOPB Datasheet

IC, TEMPERATURE SENSOR, ± 0.4°C, TO-92-3

LM35DZ/NOPB

Manufacturer Part Number
LM35DZ/NOPB
Description
IC, TEMPERATURE SENSOR, ± 0.4°C, TO-92-3
Manufacturer
National Semiconductor
Datasheets

Specifications of LM35DZ/NOPB

Ic Output Type
Voltage
Sensing Accuracy Range
± 0.4°C
Supply Current
91.5µA
Supply Voltage Range
4V To 30V
Sensor Case Style
TO-92
No. Of Pins
3
Msl
MSL 1 - Unlimited
Body Style
TO-92
Brand/series
LM35
Current, Switching
10 mA
Function
Temperature
Mounting Type
PCB
Output
Voltage
Primary Type
Temperature
Range, Measurement
150 °C
Termination
3-Wire Connector
Voltage, Supply
35 V
Voltage, Switching
6 V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LM35DZ/NOPB
Manufacturer:
TI
Quantity:
1 720
Part Number:
LM35DZ/NOPB
Manufacturer:
TI/德州仪器
Quantity:
20 000
Part Number:
LM35DZ/NOPB
0
Company:
Part Number:
LM35DZ/NOPB
Quantity:
9 600
Features
• Low cost due to wafer-level trimming
• Operates from 4 to 30 volts
• Less than 60 µA current drain
• Low self-heating, 0.08°C in still air
• Nonlinearity only ±¼°C typical
• Low impedance output, 0.1 Ohm for 1 mA load
• Calibrated directly in ° Celsius (Centigrade)
• Linear + 10.0 mV/°C scale factor
• 0.5°C accuracy guaranteeable (at +25°C)
• Rated for full -55° to +150°C range
• Suitable for remote applications
LM35 - Precision Centigrade Temperature Sensor
Typical Application
Parametric Table
Parametric Table
Parametric Table
Supply Min
Supply Min
Supply Min
Supply Min
Supply Min
Supply Min
Supply Min
Supply Min
Supply Min
Supply Min
Quiescent Current_ 56 uA
Quiescent Current_ 56 uA
Quiescent Current_ 56 uA
Quiescent Current_ 56 uA
Quiescent Current_ 56 uA
Quiescent Current_ 56 uA
Quiescent Current_ 56 uA
Quiescent Current_ 56 uA
Quiescent Current_ 56 uA
Quiescent Current_ 56 uA
Temperature Min
Temperature Min
Temperature Min
Temperature Min
Temperature Min
Temperature Min
Temperature Min
Temperature Min
Temperature Min
Temperature Min
Temperature Max
Temperature Max
Temperature Max
Temperature Max
Temperature Max
Temperature Max
Temperature Max
Temperature Max
Temperature Max
Temperature Max
Sensor Gain
Sensor Gain
Sensor Gain
Sensor Gain
Sensor Gain
Sensor Gain
Sensor Gain
Sensor Gain
Sensor Gain
Sensor Gain
4 Volt
4 Volt
4 Volt
4 Volt
4 Volt
4 Volt
4 Volt
4 Volt
4 Volt
4 Volt
-40, -55, 0 deg C
-40, -55, 0 deg C
-40, -55, 0 deg C
-40, -55, 0 deg C
-40, -55, 0 deg C
-40, -55, 0 deg C
-40, -55, 0 deg C
-40, -55, 0 deg C
-40, -55, 0 deg C
-40, -55, 0 deg C
100, 110, 150 deg C
100, 110, 150 deg C
100, 110, 150 deg C
100, 110, 150 deg C
100, 110, 150 deg C
100, 110, 150 deg C
100, 110, 150 deg C
100, 110, 150 deg C
100, 110, 150 deg C
100, 110, 150 deg C
10 mV/Deg C
10 mV/Deg C
10 mV/Deg C
10 mV/Deg C
10 mV/Deg C
10 mV/Deg C
10 mV/Deg C
10 mV/Deg C
10 mV/Deg C
10 mV/Deg C
expand
expand
expand

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LM35DZ/NOPB Summary of contents

Page 1

... LM35 - Precision Centigrade Temperature Sensor Features • Calibrated directly in ° Celsius (Centigrade) • Linear + 10.0 mV/°C scale factor • 0.5°C accuracy guaranteeable (at +25°C) • Rated for full -55° to +150°C range • Suitable for remote applications • Low cost due to wafer-level trimming • ...

Page 2

... As it draws only 60 µA from its supply, it has very low self-heating, less than 0.1˚C in still air. The LM35 is rated to operate over a −55˚ to +150˚C temperature range, while the LM35C is rated for a −40˚ to +110˚C range (−10˚ ...

Page 3

... 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 Temp.; TO-46 Package, TO-92 Package, SO-8 Package, TO-220 Package, Lead Temp.: TO-46 Package, (Soldering, 10 seconds) ...

Page 4

... For additional thermal resistance information see table in the Applications section. Note 3: 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. ...

Page 5

Block Diagram Physical Dimensions inches (millimeters) unless otherwise noted (Continued) Order Number LM35CZ, LM35CAZ or LM35DZ Order Number LM35CZ, LM35CAZ or LM35DZ Order Number LM35CZ, LM35CAZ or LM35DZ Order Number LM35CZ, LM35CAZ or LM35DZ Order Number LM35CZ, LM35CAZ or LM35DZ ...

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