NTC Thermistors

Results: 12
Product Status
ActiveObsolete
Resistance in Ohms @ 25°C
1k1.7k1.8k2k8k10k100k
Resistance Tolerance
±2%±10%±20%±25%
B Value Tolerance
±5.8%-
B0/50
3000K-
B25/85
3068K3518K3984K-
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Environmental Options
Media
Marketplace Product
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Mfr Part #
Quantity Available
Price
Series
Package
Product Status
Resistance in Ohms @ 25°C
Resistance Tolerance
B Value Tolerance
B0/50
B25/50
B25/75
B25/85
B25/100
Operating Temperature
Length - Lead Wire
Mounting Type
Package / Case
310
In Stock
1 : ¥173.33000
Bulk
Bulk
Active1k±20%----3068K--60°C ~ 300°C0.38" (9.60mm)Through HoleBead, Glass
1,041
In Stock
1 : ¥183.49000
Bulk
Bulk
Active2k±25%±5.8%---3068K--60°C ~ 300°C0.38" (9.60mm)Through HoleBead, Glass
0
In Stock
Check Lead Time
100 : ¥598.46040
Bulk
Bulk
Active1.7k±10%-------60°C ~ 300°C0.38" (9.60mm)Through HoleBead, Glass
0
In Stock
Check Lead Time
1 : ¥199.83000
Bulk
Bulk
Active10k±20%----3518K--60°C ~ 300°C0.38" (9.60mm)Through HoleBead, Glass
0
In Stock
Check Lead Time
100 : ¥123.78330
Bulk
Bulk
Active8k±20%----3518K--60°C ~ 300°C0.38" (9.60mm)Through HoleBead, Glass
0
In Stock
Check Lead Time
100 : ¥165.41340
Bulk
Bulk
Active2k±25%±5.8%3000K--3068K--60°C ~ 300°C0.38" (9.60mm)Through HoleBead, Glass
0
In Stock
Check Lead Time
100 : ¥246.70330
Bulk
Bulk
Active100k±25%----3984K--60°C ~ 300°C0.38" (9.60mm)Through HoleBead, Glass
0
In Stock
Check Lead Time
100 : ¥319.56130
Bulk
Bulk
Active2k±25%-------60°C ~ 300°C0.38" (9.60mm)Through HoleBead, Glass
0
In Stock
Check Lead Time
100 : ¥412.78620
Bulk
Bulk
Active8k±20%-------60°C ~ 300°C0.38" (9.60mm)Through HoleBead, Glass
0
In Stock
Check Lead Time
200 : ¥539.58690
Bulk
Bulk
Active2k±25%----3068K--60°C ~ 300°C0.38" (9.60mm)Through HoleBead, Glass
0
In Stock
Obsolete
Bulk
Obsolete1.8k±10%-------60°C ~ 300°C0.38" (9.60mm)Through HoleBead, Glass
0
In Stock
Obsolete
Bulk
Obsolete2k±2%-------60°C ~ 300°C0.38" (9.60mm)Through HoleBead, Glass
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NTC Thermistors


NTC Thermistors, or Negative Temperature Coefficient Thermistors, are devices that change resistance in response to changes in temperature. With negative coefficient parts, their resistance decreases as their temperature increases. They are typically defined with variables such as the parts base resistance value at a set temperature, usually 25°C, and B values, the performance curve of temperature vs. resistance calibrated between two fixed points.