Temperature Sensors - NTC Thermistors

Image Part Number Description / PDF Quantity Rfq
NTCS0603E3202JLT

NTCS0603E3202JLT

Vishay BC Components/Beyshlag/Draloric

THERMISTOR NTC 2KOHM 3420K 0603

11926

SM103J1F

SM103J1F

Wickmann / Littelfuse

THERMISTOR NTC 10KOHM 3892K MELF

498

01C3001SFC3

01C3001SFC3

Vishay BC Components/Beyshlag/Draloric

NTC THERMISTORS

0

ABNTC-0805-222J-3950F-T

ABNTC-0805-222J-3950F-T

Abracon

THERM NTC 2.2KOHM 3950K 0805

0

SC50F103VN

SC50F103VN

Thermometrics (Amphenol Advanced Sensors)

THERMISTOR NTC 10KOHM 3969K BEAD

0

KW104R2

KW104R2

Wickmann / Littelfuse

THERM NTC 100KOHM 4140K BEAD

0

ERT-J1VR104JM

ERT-J1VR104JM

Panasonic

THERM NTC 100KOHM 4200K 0603

5532

NTCLE100E3222GT1A

NTCLE100E3222GT1A

Vishay BC Components/Beyshlag/Draloric

NTC CU 0.6 LD CODED 2K2 2% 1E

0

SM202F1K

SM202F1K

Wickmann / Littelfuse

THERMISTOR NTC 2KOHM 3419K MELF

0

B57891S0203F008

B57891S0203F008

TDK EPCOS

THERMISTOR NTC 20KOHM 4300K DISC

6449

NTCG104QH474JT1

NTCG104QH474JT1

TDK Corporation

THERM NTC 470KOHM 4661K 0402

9627

B57862S0103F040

B57862S0103F040

TDK EPCOS

THERMISTOR NTC 10KOHM 3988K BEAD

1694

RA103J0Q-TR

RA103J0Q-TR

Wickmann / Littelfuse

THERMISTOR NTC 10KOHM 3900K 0402

0

NXFT15XH103FA2B090

NXFT15XH103FA2B090

TOKO / Murata

THERMISTOR NTC 10KOHM 3380K BEAD

0

B57550G1303F000

B57550G1303F000

TDK EPCOS

THERMISTOR NTC 30KOHM 3973K BEAD

0

NTCLE203E3502GB0A

NTCLE203E3502GB0A

Vishay BC Components/Beyshlag/Draloric

NTC NI 0.4 LEAD 5K 2%

0

NKA502C4AR10C

NKA502C4AR10C

Thermometrics (Amphenol Advanced Sensors)

THERMISTOR NTC 5KOHM 3435K BEAD

0

CWF3AA103G3380

CWF3AA103G3380

Cantherm

THERM NTC 10KOHM 3380K PROBE

0

01M1001FF

01M1001FF

Vishay BC Components/Beyshlag/Draloric

NTC THERMISTORS

0

NTCC200E4123FT

NTCC200E4123FT

Vishay BC Components/Beyshlag/Draloric

THERMISTOR NTC 12KOHM 3740K DIE

1695

Temperature Sensors - NTC Thermistors

1. Overview

NTC (Negative Temperature Coefficient) thermistors are temperature-sensitive resistors whose resistance decreases with increasing temperature. This semiconductor ceramic device utilizes metal oxide materials to achieve precise temperature measurement and control. As a fundamental component in thermal management systems, NTC thermistors play critical roles in modern electronics, automotive engineering, and industrial automation due to their high sensitivity ( : 2000-5000 K) and accuracy ( 0.1 C to 5 C).

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Bead ThermistorsSmall size ( 0.5-5mm), fast response (<50ms), glass-encapsulatedMedical probes, liquid temperature monitoring
Disk ThermistorsHigher power rating, epoxy-coated, axial leadsPower supply thermal protection, HVAC systems
Chip ThermistorsSMD packaging, low profile (0.6-3.2mm), RoHS compliantSmartphone thermal management, wearable devices
Glass-EncapsulatedHermetic seal, corrosion resistance, operating temp: -50 C to +300 CAutomotive battery monitoring, aerospace sensors

3. Structure and Composition

Typical NTC thermistor construction includes:

  • Semiconductive ceramic core (Mn-Ni-Co-Ox system)
  • Platinum alloy electrode layers (sintered or plated)
  • Protective epoxy/glass encapsulation (IP67 rated)
  • Lead wires (Cu/Ni alloy, 26-34 AWG)

Manufacturing process involves powder synthesis at 1500 C, isostatic pressing, and controlled atmosphere sintering to achieve desired R-T characteristics.

4. Key Technical Specifications

ParameterDescriptionSignificance
Rated Resistance (R25)Resistance at 25 C (100 -10M range)System compatibility, signal conditioning design
B-Value (K)Material constant (2000-5000K)Determines sensitivity across operating range
ToleranceResistance deviation ( 1% to 15%)Affects measurement accuracy
Operating Temp Range-100 C to +600 C (varies by type)Environmental suitability
Dissipation FactormW/ C (self-heating coefficient)Power consumption and stability considerations

5. Application Fields

Primary industries utilizing NTC thermistors:

  • Industrial: Process control ( 0.5 C accuracy), motor protection
  • Consumer Electronics: Battery management (Li-ion charging), smart thermostats
  • Medical: Patient monitoring (Class F accuracy), lab equipment
  • Automotive: Battery pack thermal monitoring (ISO 14001 compliance), ECU protection

Notable application example: Tesla Model S battery management system uses 48-channel NTC array for cell temperature monitoring ( 1 C accuracy).

6. Leading Manufacturers and Products

ManufacturerKey ProductsTechnical Highlights
Murata ElectronicsNXFT SeriesAutomotive-grade (AEC-Q200), 0.5 C accuracy, -50 C to +150 C range
TE ConnectivityNTCLE SeriesMedical certification (IEC 60601), 3.2mm chip format
Vishay BeyschlagNTCAl SeriesAluminum housing, 50W power handling, IP68 rating

7. Selection Guidelines

Key considerations for NTC thermistor selection:

  1. Resistance-Temperature curve matching application requirements
  2. Environmental factors: humidity (IP rating), vibration (automotive shock specs)
  3. Electrical parameters: operating current (self-heating effects)
  4. Form factor constraints (SMD vs through-hole)
  5. Calibration requirements (standard vs customized R-T tables)

Recommend verifying long-term stability (aging rate <0.2%/year) and RoHS compliance for production applications.

8. Industry Trends

Emerging developments include:

  • Micro-NTC fabrication (MEMS-based, <0.1mm chips)
  • High-temperature stability improvements (up to 600 C operation)
  • Integration with wireless sensor networks (Zigbee/LoRa compatibility)
  • AI-enhanced linearization algorithms (reducing external circuit complexity)

Market growth projected at 8.2% CAGR through 2027 driven by EV battery management demands.

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