STMicroelectronics Temperature Sensors 52

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Part RoHS Manufacturer Sensors or Transducers Type Mounting Feature No. of Terminals Output Type Package Shape or Style Package Body Material Maximum Supply Voltage Technology Screening Level No. of Bits Maximum Accuracy (Cel) Body Length/Diameter Body Width Power Supplies (V) Resistance Package Equivalence Code Sub-Category Body Height Minimum Supply Voltage Maximum Operating Temperature Minimum Responsivity Minimum Output Voltage Resistance Tolerance Minimum Operating Temperature Temperature Coef (ppm/Cel) Terminal Finish Maximum Output Voltage Termination Type Output Interface Type Nominal R0 Maximum Operating Current Linearity (Cel) Nominal Output Current Additional Features Housing JESD-609 Code

LM335Z-AP

STMicroelectronics

TEMPERATURE SENSOR,ANALOG,VOLTAGE OUTPUT

THROUGH HOLE MOUNT

3

ROUND

PLASTIC/EPOXY

BIPOLAR

1

5 mm

4 inch

SIP3,.1,50

Other Sensors

5 mm

100 Cel

3 V

-40 Cel

14 V

SOLDER

5 mA

1.50

PLASTIC

LM335AD

STMicroelectronics

TEMPERATURE SENSOR,ANALOG,VOLTAGE OUTPUT

SURFACE MOUNT

8

RECTANGULAR

PLASTIC/EPOXY

BIPOLAR

1

4.9 mm

3.9 inch

SOP8,.3

Other Sensors/Transducers

1.75 mm

100 Cel

2.95 V

-40 Cel

Matte Tin (Sn)

3.01 V

SOLDER

5 mA

1.5

PLASTIC

e3

STTS2002B2DN3F

STMicroelectronics

TEMPERATURE SENSOR,SWITCH/DIGITAL OUTPUT,SERIAL

SURFACE MOUNT

8

RECTANGULAR

PLASTIC/EPOXY

3.6 V

12

3

3 mm

2 inch

2.5/3.3

SOLCC8,.12,20

Other Sensors

.75 mm

2.3 V

125 Cel

-40 Cel

Nickel/Palladium/Gold (Ni/Pd/Au)

SOLDER

2-WIRE INTERFACE

2 mA

e4

STTS424E02BDA6F

STMicroelectronics

TEMPERATURE SENSOR,SWITCH/DIGITAL OUTPUT,SERIAL

SURFACE MOUNT

8

RECTANGULAR

PLASTIC/EPOXY

3.6 V

10

3

3 mm

2 inch

3/3.3

SOLCC8,.11,20

Other Sensors

.85 mm

2.7 V

85 Cel

-40 Cel

SOLDER

2-WIRE INTERFACE

2 mA

HYSTERESIS IS 500MV

Temperature Sensors

Temperature sensors are electronic devices that are used to measure the temperature of a system or environment. They are widely used in a variety of applications, including industrial, automotive, medical, and consumer electronics.

Temperature sensors work based on the principle of converting temperature into an electrical signal. This can be achieved using different sensing technologies, including thermocouples, resistance temperature detectors (RTDs), thermistors, and infrared sensors.

Thermocouples generate a voltage signal in response to temperature changes, while RTDs and thermistors change their resistance as the temperature changes. Infrared sensors measure the thermal radiation emitted by objects and use it to calculate the temperature.

Temperature sensors are used in a wide range of applications, including monitoring temperature in industrial processes, automotive engines, and medical devices. They are also used for temperature control in HVAC systems, refrigeration systems, and cooking appliances.