Vishay Thermistor, Positive Temperature Coefficient Type 10 mm 30 mm 5.5 mm

RS Stock No.: 252-771Brand: VishayManufacturers Part No.: PTCCL05H150HBE
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Technical documents

Specifications

Brand

Vishay

Product Type

Thermistor

Series

PTCCL - 265 V

Temperature Coefficient Type

Positive Temperature Coefficient

Packaging

Tape & Reel

Automotive Standard

No

Mount Type

Solder

Tolerance ±

20%

Application

Electronic Data Processing, Consumer Electronics, Overload Protection

Pin Count

2

Termination Style

Lead

Length

30mm

Height

10mm

Diameter

20.5 mm

Depth

5.5mm

Standards/Approvals

IEC 60738, UL1434

Maximum Operating Temperature

70°C

Minimum Operating Temperature

0°C

Product details

Thermistors PTC series 660, 661 and 662

PTCs are semiconductor resistors whose resistance, at zero dissipation, increases with the temperature within a determined range.
The temperature variation is obtained either by joule effect, by variation in ambient temperature, or a combination of the two.
Fields of application: stabilisation of current, protection, sensor.

Thermistors

View all in Thermistor ICs

Stock information temporarily unavailable.

P.O.A.

Vishay Thermistor, Positive Temperature Coefficient Type 10 mm 30 mm 5.5 mm

P.O.A.

Vishay Thermistor, Positive Temperature Coefficient Type 10 mm 30 mm 5.5 mm

Stock information temporarily unavailable.

Technical documents

Specifications

Brand

Vishay

Product Type

Thermistor

Series

PTCCL - 265 V

Temperature Coefficient Type

Positive Temperature Coefficient

Packaging

Tape & Reel

Automotive Standard

No

Mount Type

Solder

Tolerance ±

20%

Application

Electronic Data Processing, Consumer Electronics, Overload Protection

Pin Count

2

Termination Style

Lead

Length

30mm

Height

10mm

Diameter

20.5 mm

Depth

5.5mm

Standards/Approvals

IEC 60738, UL1434

Maximum Operating Temperature

70°C

Minimum Operating Temperature

0°C

Product details

Thermistors PTC series 660, 661 and 662

PTCs are semiconductor resistors whose resistance, at zero dissipation, increases with the temperature within a determined range.
The temperature variation is obtained either by joule effect, by variation in ambient temperature, or a combination of the two.
Fields of application: stabilisation of current, protection, sensor.

Thermistors