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LM35CZ NOPB Transistor IC Chip Analog Voltage 4V-30V TO-226-3

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LM35CZ NOPB Transistor IC Chip Analog Voltage 4V-30V TO-226-3

Country/Region china
City & Province shenzhen guangdong
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Product Details

LM35CZ NOPB Transistor IC Chip Temperature Sensor -40°C ~ 110°C 10mV/°C

 

Features of LM35CZ NOPB

 

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
Operates from 4 to 30 volts
Less than 60 μA current drain
Low self-heating, 0.08 ̊C in still air
Nonlinearity only ± 1 ⁄4 ̊C typical
Low impedance output, 0.1 Ω for 1 mA load

 

Product Attributes  of LM35CZ NOPB

 

Product 
LM35CZ NOPB
Sensor Type
Analog, Local
Sensing Temperature - Local
-40°C ~ 110°C
Sensing Temperature - Remote
-
Output Type
Analog Voltage
Voltage - Supply
4V ~ 30V
Resolution
10mV/°C
Features
-
Accuracy - Highest (Lowest)
±1°C
Test Condition
25°C
Operating Temperature
-40°C ~ 110°C
Mounting Type
Through Hole
Package / Case
TO-226-3, TO-92-3 (TO-226AA)
Supplier Device Package
TO-92-3
Base Product Number
LM35

 

Environmental & Export Classifications of LM35CZ NOPB

 

ATTRIBUTEDESCRIPTION
RoHS StatusRoHS non-compliant
Moisture Sensitivity Level (MSL)3 (168 Hours)
REACH StatusREACH Affected
ECCNEAR99
HTSUS8542.39.0001

 

Description of LM35CZ NOPB

The LM35 series are precision integrated-circuit temperature
sensors, whose output voltage is linearly proportional to theThe LM35 series are precision integrated-circuit temperature
sensors, whose output voltage is linearly proportional to the
Celsius (Centigrade) temperature. The LM35 thus has an
advantage over linear temperature sensors calibrated in
̊ Kelvin, as the user is not required to subtract a large
constant voltage from its output to obtain convenient Centi-
grade scaling. The LM35 does not require any external
calibration or trimming to provide typical accuracies of ± 1⁄ 4 ̊C
at room temperature and ± 3 ⁄4 ̊C over a full −55 to +150 ̊C
temperature range. Low cost is assured by trimming and
calibration at the wafer level. The LM35’s low output imped-
ance, linear output, and precise inherent calibration make
interfacing to readout or control circuitry especially easy. It
can be used with single power supplies, or with plus and
minus supplies. 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 ̊
with improved accuracy). The LM35 series is available pack-aged in hermetic TO-46 transistor packages, while the
LM35C, LM35CA, and LM35D are also available in the
plastic TO-92 transistor package. The LM35D is also avail-
able in an 8-lead surface mount small outline package and a
plastic TO-220 package


Celsius (Centigrade) temperature. The LM35 thus has an
advantage over linear temperature sensors calibrated in
̊ Kelvin, as the user is not required to subtract a large
constant voltage from its output to obtain convenient Centi-
grade scaling. The LM35 does not require any external
calibration or trimming to provide typical accuracies of ± 1 4 ̊C
at room temperature and ± 3 4 ̊C over a full −55 to +150 ̊C
temperature range. Low cost is assured by trimming and
calibration at the wafer level. The LM35’s low output imped-
ance, linear output, and precise inherent calibration make
interfacing to readout or control circuitry especially easy. It
can be used with single power supplies, or with plus and
minus supplies. 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 ̊
with improved accuracy). The LM35 series is available pack-

 

 

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