Rectangular Positive Temperature Coefficient (PTC) Thermistors
Positive Temperature Coefficient (PTC) Themistors
Pelonis Technologies' innovative PTC Thermistors are at the heart of Fin PTC Air Heaters and PTC Heat Conductors and are a great choice for providing controlled electrical heat. Their design flexibility and self-regulating electric heat characteristics make them ideal for increased heat transfer and they are uniquely engineered to provide safe and energy efficient heating and long life operation.
Unit of Measure
Items |
KLC0121401500210-198 12 Volt (V) Rated Voltage and 2.1 Millimeter (mm) Thickness Rectangular Positive Temperature Coefficient (PTC) Thermistor |
KLC0121401500150-245 12 Volt (V) Rated Voltage and 1.5 Millimeter (mm) Thickness Rectangular Positive Temperature Coefficient (PTC) Thermistor |
KLC0125000780110-160 12 Volt (V) Rated Voltage and 1.1 Millimeter (mm) Thickness Rectangular Positive Temperature Coefficient (PTC) Thermistor |
KLC0121401500210-245 12 Volt (V) Rated Voltage and 2.1 Millimeter (mm) Thickness Rectangular Positive Temperature Coefficient (PTC) Thermistor |
KLC0121401500210-245 24 Volt (V) Rated Voltage and 2.1 Millimeter (mm) Thickness Rectangular Positive Temperature Coefficient (PTC) Thermistor |
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Description | N/A Pelonis Technologies' innovative PTC Thermistors are at the heart of Fin PTC Air Heaters and PTC Heat Conductors and are a great choice for providing controlled electrical heat. Their design flexibility and self-regulating electric heat characteristics make them ideal for increased heat transfer and they are uniquely engineered to provide safe and energy efficient heating and long life operation. | |||||||||
Brands | N/A Pelonis Technologies | |||||||||
Rated Voltage | N/A 12 V | N/A 12 V | N/A 12 V | N/A 12 V | N/A 24 V | |||||
Resistance at 25 Degree Celsius (ºC) Temperature | N/A 1 to 3 Ohm | N/A 1 to 3 Ohm | N/A 3 to 10 Ohm | N/A 3 to 10 Ohm | N/A 10 to 20 Ohm | |||||
Surface Temperature | N/A 198 ºC | N/A 245 ºC | N/A 160 ºC | N/A 245 ºC | N/A 245 ºC | |||||
Voltage | N/A 6 to 16 V | N/A 6 to 16 V | N/A 8 to 18 V | N/A 8 to 18 V | N/A 12 to 24 V | |||||
Width | N/A 15 mm | N/A 15 mm | N/A 7.8 mm | N/A 15 mm | N/A 15 mm | |||||
Length | N/A 21.4 mm | N/A 21.4 mm | N/A 25 mm | N/A 21.4 mm | N/A 21.4 mm | |||||
Thickness | N/A 2.1 mm | N/A 1.5 mm | N/A 1.1 mm | N/A 2.1 mm | N/A 2.1 mm | |||||
Conductive Layer | N/A Aluminum (Al) + Tin (Sn) | |||||||||
Positive Temperature Coefficient (PTC) Characteristics | N/A PTC Thermistors have self-regulating characteristics and will not overheat. If a current runs through each thermistor, it will auto-stabilize at a certain temperature. This results in safer operation, better conductivity, greater operating efficiency, a stable electronics response, and longer life expectancy. | |||||||||
Innovative Features |
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Custom Designs |
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Standard PTC Thermistors are supplied in round, square, or rectangular shapes. Additional sizes and configurations can be customized depending on application requirements and order quantities. PTC Thermistors can be used in a variety of applications, including:
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Note |
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Models listed in the specifications table can be portioned into smaller sizes (MIN= 2.5 x 2.5 mm). The resistance of segmented PTC thermistors will increase in proportion with their size. Example
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N/A
Models listed in the specifications table can be portioned into smaller sizes (MIN= 2.5 x 2.5 mm). The resistance of segmented PTC thermistors will increase in proportion with their size. Example
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N/A
Models listed in the specifications table can be portioned into smaller sizes (MIN= 2.5 x 2.5 mm). The resistance of segmented PTC thermistors will increase in proportion with their size. Example
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N/A
Models listed in the specifications table can be portioned into smaller sizes (MIN= 2.5 x 2.5 mm). The resistance of segmented PTC thermistors will increase in proportion with their size. Example
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N/A
Models listed in the specifications table can be portioned into smaller sizes (MIN= 2.5 x 2.5 mm). The resistance of segmented PTC thermistors will increase in proportion with their size. Example
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