Technical Document
Specifications
Brand
VishayProduct 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
Stock information temporarily unavailable.
1.711 OMR
0.342 OMR Each (In a Pack of 5) (ex VAT)
1.797 OMR
0.359 OMR Each (In a Pack of 5) (inc. VAT)
5
1.711 OMR
0.342 OMR Each (In a Pack of 5) (ex VAT)
1.797 OMR
0.359 OMR Each (In a Pack of 5) (inc. VAT)
Stock information temporarily unavailable.
5
| Quantity | Unit price | Per Pack |
|---|---|---|
| 5 - 45 | 0.342 OMR | 1.711 OMR |
| 50 - 120 | 0.290 OMR | 1.450 OMR |
| 125 - 245 | 0.203 OMR | 1.015 OMR |
| 250 - 495 | 0.174 OMR | 0.870 OMR |
| 500+ | 0.157 OMR | 0.783 OMR |
Technical Document
Specifications
Brand
VishayProduct 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.
