JC502 Series, NTC Thermistors

Results:
6
Manufacturer
Series
Resistance Tolerance
Operating Temperature
B0/50
B25/100
Grade
B Value Tolerance
Mounting Type
B25/75
Length - Lead Wire
Qualification
Resistance in Ohms @ 25°C
Package / Case
Power - Max
B25/50
B25/85
Results remaining6
Applied Filters:
JC502
Select
ImageProduct DetailPriceAvailabilityECAD ModelPower - MaxOperating TemperaturePackage / CaseLength - Lead WireMounting TypeSeriesResistance in Ohms @ 25°CResistance ToleranceB Value ToleranceB0/50B25/50B25/75B25/85B25/100
JC502C3R5/13M
THERMISTOR NTC 5KOHM 3960K CLIP
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
0°C ~ 100°C
Pipe Sensor Assembly
-
Clip On
JC502
5k
±5%
±1%
-
-
-
3960K
-
JC502C3R5/20M
THERMISTOR NTC 5KOHM 3960K CLIP
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
0°C ~ 100°C
Pipe Sensor Assembly
-
Clip On
JC502
5k
±5%
±1%
-
-
-
3960K
-
JC502C3R5/17
THERMISTOR NTC 5KOHM 3960K CLIP
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
0°C ~ 100°C
Pipe Sensor Assembly
-
Clip On
JC502
5k
±5%
±1%
-
-
-
3960K
-
JC502C3R5/13
THERMISTOR NTC 5KOHM 3960K CLIP
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
0°C ~ 100°C
Pipe Sensor Assembly
-
Clip On
JC502
5k
±6.46%
±1%
-
-
-
3960K
-
JC502C3R5/20
THERMISTOR NTC 5KOHM 3960K CLIP
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
0°C ~ 100°C
Pipe Sensor Assembly
-
Clip On
JC502
5k
±6.46%
±1%
-
-
-
3960K
-
JC502C3R5/F
THERMISTOR NTC 5KOHM 3960K CLIP
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
0°C ~ 100°C
Pipe Sensor Assembly
-
Clip On
JC502
5k
±6.46%
±1%
-
-
-
3960K
-

About  NTC Thermistors

NTC thermistors, also known as Negative Temperature Coefficient thermistors, are specialized components designed to exhibit a change in resistance corresponding to variations in temperature. These devices demonstrate a negative coefficient behavior, meaning that their resistance diminishes as the temperature they are exposed to rises. Commonly characterized by specific attributes, NTC thermistors are typically specified in terms of their base resistance value at a designated temperature, often set at 25°C. Additionally, they are defined by B values, which represent the performance curve illustrating the relationship between temperature and resistance, calibrated across two predetermined reference points. This unique property of NTC thermistors makes them valuable for a wide array of temperature sensing and control applications. Their ability to accurately and responsively adjust resistance in accordance with temperature fluctuations enables their use in fields such as automotive, consumer electronics, and industrial equipment, where precise temperature monitoring and regulation are essential for optimal performance and safety.