Temperature Sensors - Thermostats - Solid State

Image Part Number Description / PDF Quantity Rfq
LM26CIM5X-TPA/NOPB

LM26CIM5X-TPA/NOPB

Texas Instruments

LM26 FACTORY PRESET TRIP POINT T

22865

LM57BISD-5/NOPB

LM57BISD-5/NOPB

Texas Instruments

THERMOSTAT PROG ACT HI/LOW 8WSON

1489

TMP302CQDRLRQ1

TMP302CQDRLRQ1

Texas Instruments

AUTOMOTIVE GRADE, LOW-POWER, EAS

23699

TMP300BIDCKR

TMP300BIDCKR

Texas Instruments

THERMOSTAT PROG ACTIVE LO SC70-6

4598

TMP300AIDCKRG4

TMP300AIDCKRG4

Texas Instruments

THERMOSTAT PROG ACTIVE LO SC70-6

0

TMP300AIDCKR

TMP300AIDCKR

Texas Instruments

THERMOSTAT PROG ACTIVE LO SC70-6

0

TMP302BDRLR

TMP302BDRLR

Texas Instruments

THERMOSTAT ACT LOW OPEN DRN 6SOT

22495

TMP392A3DRLR

TMP392A3DRLR

Texas Instruments

DUAL TRIP TEMPERATURE SWITCH

3745

TMP300AIDBVR

TMP300AIDBVR

Texas Instruments

SINGLE TRIP POINT SWITCH/DIGITAL

112649

TMP390A3DRLR

TMP390A3DRLR

Texas Instruments

THERMOSTAT PROG ACT LOW OPEN DRN

1716

SM72480SD-125/NOPB

SM72480SD-125/NOPB

Texas Instruments

THERMOSTAT 125DEGC OPN DRN 6WSON

1000

LM26CIM5-DPB/NOPB

LM26CIM5-DPB/NOPB

Texas Instruments

THERMOSTAT 25DEGC ACT LO SOT23-5

0

LM57TQPWQ1

LM57TQPWQ1

Texas Instruments

LM57-Q1 AUTOMOTIVE GRADE, TEMPER

31645

TMP302DDRLT

TMP302DDRLT

Texas Instruments

EASY-TO-USE, LOW-POWER, LOW-SUPP

33023

TMP302BQDRLRQ1

TMP302BQDRLRQ1

Texas Instruments

THERMOSTAT ACT LOW OPEN DRN 6SOT

7942

LM26CIM5-VHA/NOPB

LM26CIM5-VHA/NOPB

Texas Instruments

THERMOSTAT 90DEGC ACT LO SOT23-5

4048

LM26LVCISD-080/NOPB

LM26LVCISD-080/NOPB

Texas Instruments

THERMOSTAT 80DEG ACT HI/LO 6WSON

915

LM26LVCISD-090/NOPB

LM26LVCISD-090/NOPB

Texas Instruments

THERMOSTAT 90DEG ACT HI/LO 6WSON

969

TMP390AQDRLTQ1

TMP390AQDRLTQ1

Texas Instruments

DUAL TRIP TEMPERATURE SWITCH

1054

TMP390AQDRLRQ1

TMP390AQDRLRQ1

Texas Instruments

DUAL TRIP TEMPERATURE SWITCH

7225

Temperature Sensors - Thermostats - Solid State

1. Overview

Solid state temperature sensors and thermostats are electronic devices that detect and regulate temperature using semiconductor-based sensing elements. Unlike mechanical thermostats, these solid state devices offer faster response times, higher precision, and enhanced reliability through electronic signal processing. They play critical roles in industrial automation, consumer electronics, automotive systems, and medical equipment by enabling precise thermal management and energy-efficient operations.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Semiconductor-based SensorsUtilize silicon bandgap technology for linear output, high accuracy ( 0.5 C typical)Computer CPU thermal protection
Thermistor Interface ICsDigital output with integrated ADC, supports I2C/SPI protocolsSmart home thermostats
Thermal SwitchesProgrammable trip points, latching/non-latching modesIndustrial oven controllers
MEMS Thermal SensorsMicromachined structures for miniaturized applicationsWearable health monitors

3. Structure and Components

Typical solid state devices consist of: (1) Semiconductor sensing element (silicon/germanium), (2) Signal conditioning circuitry (amplifiers, ADCs), (3) Protective packaging (epoxy/ ceramic encapsulation), (4) Interface connectors (wire leads/SMD pads). Advanced designs integrate microcontroller units for smart functionality, with temperature-to-digital conversion performed on-chip.

4. Key Technical Specifications

ParameterImportance
Temperature Range (-55 C to +150 C)Determines operational environment suitability
Accuracy ( 0.1 C to 3 C)Critical for precision applications like medical devices
Response Time (1ms-10s)Affects system reaction speed
Output Type (Analog Voltage/PWM/Digital)Dictates compatibility with control systems
Power Consumption (5 A-10mA)Essential for battery-powered devices
Thermal Hysteresis (0.1 C-5 C)Prevents oscillation in switching applications

5. Application Fields

Key industries include: Industrial Process Control (chemical reactors), Medical Equipment (patient monitors), Automotive (battery management systems), Consumer Electronics (smartphones), HVAC systems, and Aerospace (avionics thermal regulation). Specific devices: semiconductor manufacturing tools, electric vehicle battery packs, and refrigeration systems.

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Texas InstrumentsLM75BDigital temperature sensor with 1 C accuracy
STMicroelectronicsL6281Thermal protector for motor drives
HoneywellTSY01-B1Digital thermostat IC for HVAC
Omron ElectronicsD6T-44LMEMS-based thermal array sensor

7. Selection Guidelines

Key considerations: (1) Match temperature range to application environment, (2) Balance accuracy requirements with cost, (3) Verify packaging suitability (IP rating for harsh environments), (4) Check interface compatibility (analog/digital), (5) Evaluate power budget constraints, (6) Consider calibration requirements. For industrial applications, prioritize long-term stability; for consumer devices, focus on size and cost.

8. Industry Trends

Current trends include: Development of wireless temperature nodes for IoT applications, integration with AI-based predictive maintenance systems, advancement of ultra-low-power wake-up sensors (<1 A consumption), adoption of wide bandgap semiconductors for high-temperature operation, and increased use of MEMS technology for flexible form factors. Market growth driven by electric vehicle thermal management and smart building automation demands.

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